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WO2010057359A1 - Récipient pliable et procédé de pliage correspondant - Google Patents

Récipient pliable et procédé de pliage correspondant Download PDF

Info

Publication number
WO2010057359A1
WO2010057359A1 PCT/CN2009/001215 CN2009001215W WO2010057359A1 WO 2010057359 A1 WO2010057359 A1 WO 2010057359A1 CN 2009001215 W CN2009001215 W CN 2009001215W WO 2010057359 A1 WO2010057359 A1 WO 2010057359A1
Authority
WO
WIPO (PCT)
Prior art keywords
joint
shaped
door
seal
plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2009/001215
Other languages
English (en)
Chinese (zh)
Inventor
蔡良仪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
CENTURY WEALTH COMMERCIAL (SHANGHAI) Co Ltd
Original Assignee
CENTURY WEALTH COMMERCIAL (SHANGHAI) Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by CENTURY WEALTH COMMERCIAL (SHANGHAI) Co Ltd filed Critical CENTURY WEALTH COMMERCIAL (SHANGHAI) Co Ltd
Publication of WO2010057359A1 publication Critical patent/WO2010057359A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/52Large containers collapsible, i.e. with walls hinged together or detachably connected
    • B65D88/522Large containers collapsible, i.e. with walls hinged together or detachably connected all side walls hingedly connected to each other or to another component of the container

Definitions

  • the present invention relates to the field of folding container technology, and in particular to a folding container cabinet and a folding method of the folding container cabinet. Background technique
  • the inventor of the case began to research the folding cabinet in 2005 and applied for a number of patents on folding containers. These patented technologies solved the problem that the existing container cabinets could not be folded when the empty cabinets were returned, and saved the cost of returning the empty cabinets.
  • the side plates on both sides of the cabinet are divided into upper and lower parts, wherein the top side of the upper side plate and the top plate of the cabinet are hinged by the upper joint assembly, and the lower side
  • the bottom edge of the plate and the bottom plate of the cabinet are hinged by the lower joint assembly, and the upper and lower side plates are hinged by the middle joint assembly, so when the folded container cabinet is folded, the bottom side and the lower side of the upper side plate are folded
  • the top edge of the panel is simultaneously inwardly contracted to achieve folding of the folding container cabinet.
  • such a folding container cabinet employs a large number of joints, and since the side panels are divided into upper and lower side panels, the cost of the entire folding container cabinet is high, and folding
  • One of the technical problems to be solved by the present invention is to provide a folding container cabinet to solve the many deficiencies of the existing folding cabinet.
  • the second technical problem to be solved by the present invention is to provide a folding method for the above folded container cabinet.
  • the folding container cabinet comprises:
  • a front upper corner piece and two rear upper corner pieces are fixed at four corners of the top plate with respect to the top plate of the bottom plate;
  • a door frame relative to the front frame, together forming a rectangular body
  • a front cymbal is fixed between the two front upper corner members, and the front cymbal is fixedly and sealingly connected to the front side of the top plate;
  • a sill is fixed between the two rear upper corner members, and the sill is fixedly and sealingly connected to the rear side of the top plate;
  • the lower edge of the front frame is hinged to the two front lower corner members, and the upper edge of the front frame is connected to the front cymbal by a detachable fastener; the two sides of the lower end of the door frame are hinged to the two rear lower corner members, The upper edge of the door frame is detachably tight with the sill Firmware connection; characterized in that
  • the two opposite side plates are divided into a first side plate and a second side plate, wherein:
  • the front and rear ends of the lower edge of the first side plate are respectively hinged to the front and rear lower corner pieces of the first side of the bottom plate through a set of first lower joint sets, and the middle part of the first side plate passes through the first lower middle joint assembly and the bottom plate
  • One side hinged; the upper edge of the first side plate and the first top side ⁇ are connected by a detachable fastener, the first top side ⁇ is sealingly fixed to the first side of the top plate;
  • the front and rear ends of the lower edge of the second side panel are respectively hinged to the front and rear corner members of the second side of the bottom plate through a set of second lower joint assemblies, and the middle portion of the second side plate passes through the second lower middle joint assembly and the bottom plate
  • the two sides are hinged; the upper edge of the second side panel is connected to the second top side ⁇ by a detachable fastener, and the second top side ⁇ is sealingly fixed to the second side of the top panel;
  • a height between the first lower joint assembly hinge point and the first lower joint joint hinge point from the bottom plate is lower than a twist between the second lower joint assembly hinge point and the second lower middle joint assembly hinge point from the bottom plate
  • the height of the upper edge of the first side plate and the first top side ⁇ fixed point from the bottom plate is lower than the height between the upper edge of the second side plate and the second top side ⁇ fixed point away from the bottom plate
  • the first lower joint a height between the hinge point of the component and the first lower joint assembly hinge point and the first side plate edge and between the second lower joint assembly hinge point and the second lower joint assembly hinge point and the second side plate edge
  • the height should be less than the width of the bottom plate.
  • Each set of folding cabinet locks includes a lock nut fixed to the first top side or second top side end and a bolt sleeve fixed to an outer side of the first lower joint assembly or the second lower joint assembly and a locking bolt disposed in the bolt sleeve is opened at a top of the bolt sleeve, so that the locking bolt protrudes from the bolt sleeve, and a convenient foreign object is opened on the sleeve wall of the bolt sleeve
  • the opening of the locking bolt is raised, and the locking bolt is provided with a square neck for facilitating the screwing of the wrench; the locking nut is located on the same axis as the central axis of the locking bolt and the locking nut And the bolt sleeve shall not protrude outside the corner piece.
  • the front frame of the present invention comprises a front top beam, a front bottom beam, two front frame columns and a front end plate connected to the front top beam, the front bottom beam and the two front frame columns; two ends are fixed at the two ends of the front bottom beam a front sill joint, the two front sill joints have a shape adapted to the front lower corner piece, and are respectively hingedly connected to the two front lower corner pieces, and are provided on each front lower corner piece to support two front and bottom parts a receiving block of the beam joint;
  • the cross-sectional shape of the front top beam is a u-shaped groove structure having an upper outer flange, and a front frame upper seal is disposed on the upper outer flange;
  • the cross section has an inverted L shape, so that an upper outer flange on the front top beam and the front sill form a mutual engagement structure, so as to restrict the front frame from being inverted only inwardly and not outwardly, the front sill
  • the upper outer flange and the front cymbal are
  • the front frame upper sealing member is composed of a U-shaped sealing sleeve and two O-shaped sealing tubes disposed on the U-shaped sealing sleeve, the U-shaped sealing sleeve is sleeved on the upper outer flange, and the two 0-shaped sealing tubes Contact with the front raft.
  • the front frame side seal is composed of a u-shaped sealing sleeve and two 0-shaped sealing tubes disposed on the U-shaped sealing sleeve, the U-shaped sealing sleeve is sleeved on the second flange, and the two 0-shaped sealing tubes Contacting the hook portion on the front corner post.
  • a groove member is fixed between the bottom surface of the front side of the bottom plate and the two front lower corner members, and the groove of the groove member faces the front bottom beam;
  • the side of the beam facing the front end plate is a step surface having a high surface and a low surface, and the high surface is sealed and welded between the front end plate;
  • the lower surface is covered by a front frame lower sealing member, and the front frame lower sealing member is A U-shaped sealing sleeve and two O-shaped sealing tubes disposed on the U-shaped sealing sleeve, the U-shaped sealing sleeve is sleeved on the low surface, and the two O-shaped sealing tubes are in contact with the groove-shaped member.
  • the front frame In order to make the front frame in the loading state, it can be firmly connected with the front corner post, and in the empty cabinet, the front frame can be separated from the front corner post and smoothly flipped, and the present invention is in the front frame of the front frame.
  • a plurality of detachable locking mechanisms are provided between the column and the front corner post.
  • the hinge connection between the two front sill joints and the front lower corner piece includes two front living hinge seats fixed on the upper corner surface of the front lower corner piece, and each of the front living hinge seats is provided with a hinge for the said The front living hinge seat and the front hinge pin of the front sill joint, the front sill joint is turned around the axis of the front hinge pin, thereby driving the entire front frame to reverse.
  • the first side panel and the second side panel of the present invention have substantially the same structure except that the dimensions are slightly different.
  • the structures of the first lower joint assembly and the second lower joint assembly are substantially the same, but only slightly different in size, wherein:
  • the first side plate comprises a first upper side edge, a plurality of first lower side edge beams, a front corner column, a door corner column and a periphery sealed with the first upper side edge, the first lower side edge beam, the front corner column and the door corner column a first side plate surface of the fixed connection is formed, and a locking nut is welded to the front and rear ends of the first top side; the first upper side is formed at a right angle to the upper end of the front corner post and the front corner post.
  • the first top side sill and the first upper side sill are mounted in a mutual coupling manner and are connected by a plurality of detachable bolts penetrating from the first upper side along the inner surface of the cymbal, on the first upper side a side plate seal is disposed between the first top side sill; a lower joint of the first lower joint assembly of the first side of the bottom plate and a lower joint of the first lower middle joint assembly, and two first lower middle joint assemblies Between the lower joints, the lower joint of
  • the second side plate includes a second side sill, a plurality of second lower side sills, a front corner post, a door corner post and a periphery of the second upper side ⁇ , the second lower side rim, the front corner post, the door corner post sealing and fixed connection
  • the second side panel is formed with a lock nut welded to the front and rear ends of the second top side, and the second upper side is fixedly connected with the front corner post and the upper end of the corner post at a right angle.
  • Two upper edge turns and two second side turns are coupled in a mutual coupling manner and are connected by a plurality of detachable bolts penetrating from the second upper side along the inner surface of the crucible, on the second upper side and the second top side a side plate seal is disposed between the jaws; a lower joint of the second lower joint assembly of the second side of the bottom plate and a lower joint of the second lower middle joint assembly, and a lower joint of the second lower middle joint assembly a plurality of second bottom side beams are fixedly connected between the lower joint of the second lower middle joint assembly and the lower joint joint of the second lower joint assembly, and the plurality of second bottom side beams are also sealingly fixedly connected with the second side of the bottom plate;
  • the upper joint of the second lower joint assembly and the second lower middle The upper side of the joint assembly, the upper joint of the two second lower middle joint assemblies, the upper joint of the second lower middle joint assembly, and the upper joint of the second lower joint assembly pass the second lower side Connected along the beam, a plurality
  • the first lower joint assembly includes an upper joint, a lower joint, a joint shaft, and a joint seal
  • the upper joint is provided with a joint head protruding in an upward joint motion direction, the joint head is located in the middle of the entire upper joint, and one joint is arranged in the joint head a joint shaft hole whose axis is perpendicular to the direction of movement of the upper joint; a joint head groove matching the joint head is disposed on the lower joint, the joint head is embedded in the joint head groove; the joint head groove of the lower joint
  • Two sides of the joint shaft hole perpendicular to the direction of movement of the lower joint are disposed on both sides, and the joint shaft is passed through the joint shaft hole and the joint shaft hole to form an articulation of the upper and lower joints
  • a joint seal is disposed between the upper and lower joints; the upper joint and the lower joint are extended, and are connected by joint bolts; and the bolt sleeve is fixed on an outer side surface of the lower joint;
  • the second lower joint assembly includes an upper joint, a lower joint, a joint shaft, and a joint seal
  • the upper joint is provided with a joint head protruding in an upward joint motion direction, the joint head is located in the middle of the entire upper joint, and one joint is arranged in the joint head a joint shaft hole whose axis is perpendicular to the direction of movement of the upper joint; a joint head groove matching the joint head is disposed on the lower joint, the joint head is embedded in the joint head groove; the joint head groove of the lower joint
  • Two sides of the joint shaft hole perpendicular to the direction of movement of the lower joint are disposed on both sides, and the joint shaft is passed through the joint shaft hole and the joint shaft hole to form an articulation of the upper and lower joints
  • a joint seal is disposed between the upper and lower joints; the upper joint and the lower joint are extended by joint bolts; and the bolt sleeve is fixed on an outer side surface of the lower joint.
  • the first top side ⁇ is made of a shaped square tube and has an inverted L shape; the first upper side is shaped by a square tube
  • the second top side is made of a deformed square tube, and the cross section is inverted L-shaped; the second upper side is made of a deformed square tube, and the section is L-shaped;
  • the lower side edge beam is made of a special-shaped square tube, and the section is inverted L-shaped;
  • the plurality of first bottom side beams are made of a deformed square, and the section is an inverted L shape; and the thousand second bottom side beam is made of a shaped square tube
  • the cross section is inverted L-shaped; the second lower side is made of a deformed square tube, and the cross section is inverted L-shaped; the vertical cross-sectional shape of the upper joint is along with the first lower side beam or the second lower side along the beam
  • the cross-sectional shape is similar, and the vertical cross-sectional shape of the lower joint is similar to the cross-sectional shape
  • the first top side ⁇ is manufactured by bending a plate, and the cross section is a C-shape with an opening facing inward; the first upper side is made by bending a plate, and the cross section is reverse S-shaped; the first bottom sides are The beam is made of sheet metal bending, the upper section is reverse S-shaped, the lower section is C-shaped with the opening facing outward; the second top side ⁇ and the second upper side ⁇ are made of sheet bending, and the section is S-shaped;
  • the first lower side edge beam is manufactured by bending a plate, and the section is S-shaped; the plurality of second bottom side beams are made by bending a plate, the upper section is S-shaped, and the lower section is a C-shaped opening facing outward;
  • the second lower side is manufactured by bending a sheet material along a beam, and the section is S-shaped.
  • the first top side ⁇ is made by bending a plate and has an S-shaped cross section; the first upper side is made of a plate bent and has a cross-S shape; the second top side ⁇ is bent by a plate.
  • the cross section is reverse S-shaped; the second upper side is manufactured by bending the slab with a plate, and the section is S-shaped; the first lower side is made of sheet metal bending, and the section is S-shaped;
  • the bottom side beam is made of sheet metal bending, the upper section is S-shaped, the lower section is C-shaped with the opening facing outward; the second lower side is made of sheet metal bending, and the section is S-shaped.
  • the upper and lower joints of the first lower joint assembly, the upper and lower joints of the second lower joint assembly, the upper and lower joints of the first lower middle joint assembly, and the upper and lower joints of the second lower middle joint assembly Between the first top side ⁇ and the first upper side ⁇ , between the second top side ⁇ and the second upper side ⁇ , between the first bottom side sill and the first lower side sill,
  • the second bottom side beam is the same as the second lower side along the beam, and is installed in a mutual coupling manner to form a labyrinth sealing structure.
  • the sealing member can form a good seal to prevent water from penetrating into the box from outside the box.
  • the outer seam between the first top side ⁇ and the first upper side ⁇ is lower than the inner seam between the first top side ⁇ and the first upper side ⁇ , the second top side ⁇ and the second upper
  • the outer seam between the side edges is lower than the inner seam between the second top side ⁇ and the second upper side ⁇ , and the outer seam between the first bottom side sill and the first lower side sill is lower than
  • the inner seam between the first bottom side beam and the first lower side edge beam, the outer joint between the second bottom side beam and the second lower side edge is lower than the second bottom side beam and the second
  • the inner seam between the side edge beams, the outer joint between the upper and lower joints of the first lower joint assembly is lower than the inner joint between the upper and lower joints of the first lower joint assembly, and the upper and lower joints of the second lower joint assembly
  • the outer seam between the lower joints is lower than the inner joint between the upper and lower joints of the second lower joint assembly, and the outer joint between the upper and lower joints of the first lower middle joint assembly is lower than the upper joint between
  • a joint head is arranged at the L-shaped corner of the upper joint of the second lower joint assembly, and a sealing rib corresponding to the length of the entire upper joint is arranged on the inner side of the top of the L-shaped vertical side, and one joint is arranged on each side of the joint head.
  • a joint head groove is disposed on the L-shaped vertical side of the lower joint, and two joint joint shaft holes and two stepped holes are disposed on both sides of the joint head groove, and the upper joint is disposed at an L-shaped corner of the lower joint
  • the upper sealing ribs are matched with the sealing groove, the joint seal is mounted at the L-shaped corner of the lower joint; the sealing rib on the upper joint presses the joint seal portion into the sealing concave of the lower joint
  • An effective seal is formed in the groove, and a seal on both sides of the seal on the joint seal forms a further seal with the upper joint.
  • a joint head is disposed at an L-shaped corner of the upper joint of the first lower middle joint assembly, and a sealing rib corresponding to the length of the entire upper joint is disposed at the inner side of the top of the L-shaped vertical side, and one side is embedded on each side of the joint head a joint nut; a joint head groove is arranged on the L-shaped vertical side of the lower joint, and two joint joint shaft holes and two stepped holes are arranged on both sides of the joint head groove, and the L-shaped corner of the lower joint is provided with a sealing rib on the upper joint matching the sealing groove, the joint seal being mounted at an L-shaped corner of the lower joint; a sealing rib on the upper joint pressing the joint seal portion into the lower joint' An effective seal is formed in the sealing groove, and a sealing strip on both sides of the sealing port on the joint seal can form a further seal with the upper joint.
  • a joint head is disposed at an L-shaped corner of the upper joint of the second lower joint assembly, and a sealing rib corresponding to the length of the entire upper joint is disposed on the inner side of the top of the L-shaped vertical side, and one side is embedded on each side of the joint head a joint nut; a joint head groove is arranged on the L-shaped vertical side of the lower joint, and two joint joint shaft holes and two stepped holes are arranged on both sides of the joint head groove, and the upper joint is provided at an L-shaped corner a sealing rib on the joint matching the sealing groove, the joint seal being mounted at an L-shaped corner of the lower joint; a sealing rib on the upper joint pressing the joint seal portion into the lower joint seal An effective seal is formed in the groove, and a seal on both sides of the seal on the joint seal forms a further seal with the upper joint.
  • the side plate, the lower sealing member and the joint seal have a triangular tube shape, wherein the two straight sides are fixed and sealed, and the oblique side is broken to form a sealing port.
  • the side plate and the lower sealing member are respectively composed of a U-shaped sealing sleeve and two O-shaped sealing tubes disposed on the ⁇ -shaped sealing sleeve, and the U-shaped sealing sleeve of the sealing member on the side plate is sleeved in the
  • the upper side is along the upper side and the second upper side is along the upper side, and the side plate is dense.
  • a two-shaped sealing tube of the seal is in contact with the first top side or the second top side to seal the inner seam or the second between the first top side and the first upper side
  • An inner seam between the top side sill and the second upper side sill; the U-shaped sealing sleeve of the side sill lower seal is sleeved on the second bottom side sill and the second bottom side sill, and the side sill is sealed
  • a two-shaped sealing tube of the piece is in contact with the first lower side along the beam or the second lower side to seal the inner seam or the first joint between the first bottom side beam and the first lower side edge beam
  • the inner joint between the second bottom side beam and the second lower side edge beam; the joint seal has a triangular tube shape, wherein the two straight sides are fixed and sealed, and the oblique side is broken to form a sealing port.
  • the side plate sealing member is a right-angled trapezoidal groove sealing strip structure, wherein the straight side of the right-angled trapezoidal groove sealing strip structure is fixed on the first top side ⁇ or the second top side ,, the oblique side and the first upper side edge ⁇ or the second wound side ⁇ contact to seal the inner seam between the first top side ⁇ and the inner seam and the outer seam of the first upper side rim and the second top side ⁇ and the second upper side ⁇ Between the outer seam and the outer joint;
  • the side lower seal is composed of a U-shaped sealing sleeve and two 0-shaped sealing tubes disposed on the U-shaped sealing sleeve, and the U-shaped sealing sleeve of the lower sealing member of the side panel is disposed at the On the second bottom side beam and the second bottom side beam, the two 0-shaped sealing tubes of the side lower sealing member are in contact with the first lower side beam or the second lower side along the beam to seal the first An inner seam between the bottom side beam and the first lower side edge
  • the door frame of the invention comprises two container doors, a door beam, a door sill, a plurality of door lock bar assemblies and a hinge plate having a door post; two sill joints are fixed at two ends of the sill, on the rear lower corner piece The end face is provided with two rear movable hinge seats, and the door joints are respectively hinged with the two rear hinge hinges by two rear hinge pins to realize the turning; a bearing force is fixed on the inner side surface of the rear corner lower corner pieces a seat, when the door frame is turned to a vertical state, the bottom surface of the sill joint is seated on the bearing seat, the weight of the door frame is transmitted to the bearing seat, and the threshold is passed between the sill joint and the rear lower corner piece
  • the bolt is detachably connected; the door lock lever assembly is mounted on the container door and the door top beam and the door sill, so that the container door is connected with the door top beam and the sill; the door top beam and the sill are detachable Connecting and installing an upper door seal between the
  • a vertical counterbore and a support sleeve coaxial with the vertical counterbore are further disposed on the sill joint; a top surface of the rear lower corner member is coaxial with the support sleeve A screw hole, a fastening bolt is screwed into the screw hole from above the long side of the sill joint through the vertical counterbore hole and the support sleeve, so that the sill joint and the rear lower corner piece are detachably connected.
  • the present invention fixes a grooved member between the bottom surface of the bottom plate and the two rear lower corner members, the notch of the groove member facing the rear of the entire folding container, the threshold facing the container
  • the side of the door is a step surface having a high surface and a low surface, and the upper surface is sealed by the existing door seal between the high surface and the door sheet;
  • a lower door sealing member is fixed on the lower surface, and the lower door sealing member is a U-shaped sealing sleeve and two O-shaped sealing tubes disposed on the U-shaped sealing sleeve, the U-shaped sealing sleeve of the lower door sealing member is sleeved on the low surface, the two O-shaped sealing tubes and the trough-shaped member Contact.
  • the upper and lower limit stops are protruded or parallel to the hinge plate to facilitate the smooth introduction of the hinge plate.
  • the door connecting bolt passes through the hinge plate bolt hole on the hinge plate from the outer side of the hinge plate, and then protrudes from the inner side of the door post through the door stud hole and is screwed into the inner side of the door post.
  • the door is connected to the nut. Since the door connecting nut is closed at one end and the other end is welded and sealed to the inner surface of the door post, the water does not penetrate into the container by the hinge plate bolt holes and the door stud holes on the hinge plate, which is very good. Water seal effect.
  • a sealing member is disposed between the two container doors, between each container door and the door sill and the door top beam.
  • the side panel of the folding container cabinet of the invention adopts a monolithic structure, which saves the number of joint components, has a simpler structure, reduces product cost, and improves the efficiency of folding and unfolding.
  • FIG. 1 is a schematic view showing the connection between the opposite side plates and the top plate and the bottom plate of the folding container cabinet of the present invention.
  • FIG. 2 is a schematic view showing the connection between the front frame, the door frame and the top plate and the bottom plate of the folding container cabinet of the present invention.
  • Figure 3 is a schematic view of the A direction of Figure 1.
  • Figure 4 is a schematic view of the B direction of Figure 1.
  • Figure 5 is a schematic view showing the relationship between the first bottom side member of the present invention and the lower joint of the first lower middle joint assembly, the lower joint of the first lower joint assembly, the front, and the rear corner member.
  • FIG. 6 is a schematic view showing the relationship between the lower joint of the second bottom side member and the second lower joint joint assembly, the lower joint of the second lower joint assembly, and the front and rear corner members of the present invention.
  • Figure 7 is a schematic view showing the structure of the first side plate.
  • Figure 8 is a schematic view showing a connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • Figure 9 is a schematic view showing a connection relationship between the first bottom side beam and the first lower side edge beam in the folding container cabinet of the present invention.
  • Figure 10 is a schematic illustration of another connection between the first top side weir and the first upper side weir in the folding container cabinet of the present invention.
  • Figure 11 is a schematic illustration of another connection between the first bottom side rail and the first lower side edge beam in the folded container cabinet of the present invention.
  • Figure 12 is a schematic view showing still another connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • Figure 13 is a schematic view showing still another connection relationship between the first bottom side beam and the first lower side edge beam in the folding container cabinet of the present invention.
  • Figure 14 is a schematic view showing the connection relationship of the first lower joint assembly of the present invention.
  • Figure 15 is a schematic view showing the structure of the upper joint in the first lower joint assembly.
  • Figure 16 is a left side view of Figure 15.
  • Figure 17 is a schematic view showing the combined structure of the lower joint and the bolt sleeve in the first lower joint assembly of the present invention.
  • Figure 18 is a cross-sectional view taken along line A-A of Figure 17;
  • Figure 19 is a schematic view showing the structure of the lower joint and the bolt sleeve in the first lower joint assembly in which the bolts are mounted in the bolt sleeve.
  • Figure 20 is a schematic view showing the connection relationship of the first lower middle joint assembly of the present invention.
  • Figure 21 is a schematic view showing the structure of the upper joint in the first lower middle joint assembly of the present invention.
  • Figure 22 is a left side view of Figure 21.
  • Figure 23 is a schematic view showing the structure of the lower joint in the first lower middle joint assembly of the present invention.
  • Figure 24 is a left side view of Figure 23.
  • Figure 25 is a schematic view showing the structure of the second side plate.
  • Figure 26 is a schematic view showing a connection relationship between the second top side weir and the second upper side weir in the folding container cabinet of the present invention. .
  • Figure 27 is a schematic view showing a connection relationship between the second bottom side rail and the second lower side edge beam in the folding container cabinet of the present invention.
  • Figure 28 is a schematic illustration of another connection between the second top side weir and the second upper side weir in the folded container cabinet of the present invention.
  • Figure 29 is a schematic illustration of another connection between the second bottom side rail and the second lower side rail in the folding container cabinet of the present invention.
  • Figure 30 is a schematic illustration of still another connection between the second top side weir and the second upper side weir in the folding container cabinet of the present invention.
  • Figure 31 is a schematic view showing still another connection relationship between the second bottom side rail and the second lower side edge beam in the folding container cabinet of the present invention.
  • Figure 32 is a schematic view showing the connection relationship of the second lower joint assembly of the present invention.
  • Figure 33 is a schematic view showing the structure of the upper joint in the second lower joint assembly.
  • Figure 34 is a left side view of Figure 33.
  • Figure 35 is a schematic view showing the combined structure of the lower joint and the bolt sleeve in the second lower joint assembly of the present invention.
  • Figure 36 is a cross-sectional view taken along line A-A of Figure 35.
  • Figure 37 is a schematic view showing the structure of the lower joint and the bolt sleeve in the second lower joint assembly in which the bolts are mounted in the bolt sleeve.
  • Figure 38 is a schematic view showing the connection relationship of the second lower joint assembly of the present invention.
  • Figure 39 is a schematic view showing the structure of the upper joint in the second lower middle joint assembly of the present invention.
  • Figure 40 is a left side view of Figure 39.
  • Figure 41 is a schematic view showing the structure of the lower joint in the first lower middle joint assembly of the present invention.
  • Figure 42 is a left side view of Figure 41.
  • ⁇ 43 is a schematic structural view of the front frame area of the folding container cabinet of the present invention.
  • Figure 44 is a cross-sectional view taken along line A-A of Figure 43.
  • Figure 45 is a cross-sectional view taken along line B-B of Figure 43.
  • Figure 46 is an enlarged schematic view taken along line C of Figure 43.
  • Figure 47 is an enlarged view of the direction D in Figure 43.
  • Figure 48 is a cross-sectional view taken along line E-E of Figure 43.
  • Figure 49 is a schematic view showing the structure of a door portion of the present invention.
  • Figure 50 is a cross-sectional view taken along line A-A of Figure 49;
  • Figure 51 is an enlarged schematic view of the portion D of Figure 49;
  • Figure 52 is a cross-sectional view taken along line A-A of Figure 51;
  • Figure 53 is an enlarged schematic view of E at Figure 49;
  • Figure 54 is a cross-sectional view taken along line A-A of Figure 53;
  • Fig. 55 is a view showing the state between the sill and the rear lower corner piece when the container frame is folded to the horizontal state according to the present invention.
  • Figure 56a is a schematic view showing the state in which the front frame and the door frame of the present invention are ready to be turned down.
  • Figure 56b is a schematic view showing the state of the front frame and the door frame of the present invention when it is turned down.
  • Figure 56c is a schematic view showing the front frame and the door frame of the present invention turned to a horizontal state.
  • Figure 57 is a schematic view showing the state in which the first side panel of the present invention is turned down.
  • Figure 58 is a schematic view showing the state in which the second side panel of the present invention is turned down.
  • Figure 59 is a schematic view showing the state of the folded container cabinet of the present invention after being folded. detailed description
  • Figure 1 is a schematic view showing the connection between the opposite side panels and the top and bottom panels of the folding container cabinet of the present invention.
  • 2 is a schematic view showing the connection between the front frame, the door frame and the top plate and the bottom plate of the folding container cabinet of the present invention.
  • the folding container cabinet includes a bottom plate 100, a top plate 200 opposite to the bottom plate, a first side plate 300, a second side plate 400, a front frame 500 and a door frame 600 relative to the front frame 500, which together form a rectangular body.
  • Two front upper corner pieces 210 and two rear upper corner pieces 220 are fixed at four corners of the top plate 200.
  • the structures of the front upper corner piece 210 and the rear upper corner piece 220 are substantially the same as the existing corner pieces, and Do a detailed description.
  • a front sill 230 is fixed between the two front upper corner members 210, and a sill 240 is fixed between the two rear upper corner members 220.
  • the front cymbal 230 and the sill 240 are also fixedly connected to the front and rear edges of the top plate 200, respectively. , such as soldered connections.
  • the two sides of the top plate 200 are divided into a first side and a second side, wherein a first top side is fixed between the front upper corner piece 210 and the rear upper corner piece 220 on the first side of the top plate 200.
  • a second top side ⁇ 260 is fixed between the front upper corner piece 210 and the rear upper corner piece 220 on the second side of the top plate 200, and the first top side ⁇ 250 and the second top side ⁇ 260 are also combined with the top plate 200
  • Side seals are fixedly connected, such as welded connections.
  • the front sill 230 has an inverted L shape
  • the sill 240 is made of a section steel having a reversed L shape, and the ribs are provided with reinforcing ribs in the middle of the steel to meet the design requirements of the container.
  • the main purpose of the front sill 230 and the sill 240 is to use an inverted L-shaped and inverted L-shaped steel profile.
  • the main purpose is to separately connect the front frame 500 and the upper edge of the door frame 600, and the second is to limit the front frame. 500.
  • the door frame 600 can only be turned inwardly and cannot be turned outwards to achieve the purpose of folding the folding container cabinet of the present invention.
  • FIG. 3 is a schematic view of the A direction of FIG. 1; and FIG. 4 is a schematic view of the B direction of FIG.
  • a lock nut 920 in a locking device is welded to each of the first top side ⁇ 250 and the second top side 260 260. However, the lock nut 920 does not protrude beyond the front upper corner piece 210 and the rear upper corner piece 220. The function of the lock nut 920 will be described in detail later.
  • FIG. 5 is a lower joint of the first bottom side member and the first lower middle joint assembly of the present invention, Schematic diagram of the relationship between the lower joint, the front and rear corners of the joint assembly.
  • a lower joint 710 of the three sets of first lower middle joint assemblies, a lower joint 810 of the two sets of first lower joint assemblies, and four first sections are fixed between the front lower corner piece 110 and the rear lower corner piece 120 on the first side of the bottom plate 100.
  • the bottom side member 130 wherein the lower joints 810 of the two sets of first lower joint assemblies are welded to the front lower corner piece 110 and the rear lower corner piece 120, respectively, while the lower joint in the first lower joint assembly at the front lower corner piece 110
  • a bolt sleeve 910 is welded to the front side of the 810, and a bolt sleeve 910 is also welded to the rear side of the lower joint 810 in the first lower joint assembly at the rear lower corner member 120, but the bolt sleeve 910 cannot protrude the front lower corner member 110.
  • the function of the bolt sleeve 910 will be described in detail later than the rear lower corner piece 120.
  • Both ends of the first bottom side member 130 of the first segment are welded to the lower joint 810 of the first lower joint assembly and the lower joint 710 of the first lower middle joint assembly, respectively, and the two ends of the first bottom side beam 130 of the fourth stage Separating with the lower joint 710 of the first lower middle joint assembly and the lower joint 810 of the first lower joint assembly, respectively, the two ends of the first bottom side beam 130 of the middle section are respectively associated with the two sets of the first lower middle joint assembly
  • the lower joint 710 is welded, and the first bottom side rails 130 of each section are hermetically welded to the first side edges of the bottom plate 100.
  • FIG. 6 is a lower joint and a second lower joint assembly of the second bottom side member and the second lower middle joint assembly of the present invention. Schematic diagram of the relationship between the lower joint, the front and rear corner pieces.
  • a lower joint 710a of the three sets of second lower middle joint assemblies, a lower joint 810a and a fourth section of the second lower joint assembly are fixed between the front lower corner piece 110 and the rear lower corner piece 120 on the second side of the bottom plate 100.
  • the bottom side member 140 wherein the lower joints 810a of the two sets of second lower joint assemblies are welded to the front lower corner piece 110 and the rear lower corner piece 120, respectively, while the lower joint in the second lower joint assembly at the front lower corner piece 110
  • a bolt sleeve 910 is welded to the front side of the 810a, and a bolt sleeve 910 is also welded to the rear side of the lower joint 810a of the second lower joint assembly at the rear lower corner member 120, but the bolt sleeve 910 cannot protrude the front lower corner member 110. Outside of the lower corner piece 120, the function of the bolt sleeve 910 will be described later.
  • Both ends of the second bottom side member 140 of the first stage are welded to the lower joint 810a of the second lower joint assembly and the lower joint 710a of the second lower middle joint assembly, respectively, and the ends of the second bottom side beam 140 of the fourth stage Separating with the lower joint 710a of the second lower middle joint assembly and the lower joint 810a of the second lower joint assembly, respectively, the two ends of the second bottom side beam 140 of the middle section are respectively associated with the two sets of the second lower middle joint assembly
  • the lower joint 710a is welded, and the second bottom side rail 140 of each section is hermetically welded to the second side edge of the bottom plate 100. .
  • the first bottom side member 130 and the second bottom side member 140 have the same shape but different sizes, and the height of the first bottom side member 130 is lower than the height of the second bottom side member 140, and the height difference between the two is basically The upper portion is equivalent to the thickness of the second side plate 400.
  • the cross-sectional shape of the lower joint 810 in the first lower joint assembly, the lower joint 710 in the middle first joint assembly, the lower joint 810a in the second lower joint assembly, and the lower joint 710a in the intermediate second joint assembly are L-shaped.
  • the lower joint 810 in the first lower joint assembly is the same shape as the lower joint 810a in the second lower joint assembly, but the size is different, and the lower joint 810 in the first lower joint assembly is higher in height than the second lower joint assembly
  • the height of the lower joint 810a is low, and the height difference between the two is substantially equivalent to the thickness of the second side plate 400.
  • the lower joint 710 in the middle first joint assembly has the same shape as the lower joint 710a in the middle second joint assembly, but the size is different, and the height of the lower joint 710 in the middle first joint assembly is higher than that in the middle second joint assembly
  • the height of the lower joint 710a is low, and the difference in height between the two is substantially equivalent to the thickness of the second side plate 400.
  • FIG 7 is a schematic view of the structure of the first side panel.
  • the first side plate 300 includes a first upper side edge 310, four first side lower edge beams 320, a front corner post 330, a door corner post 340, and a periphery and a first upper side edge 310, a first lower side edge beam 320,
  • the front corner post 330 and the corner post 340 are formed by sealing and fixedly connecting the first side plate surface 350.
  • the first upper side is fixedly connected at a right angle to the upper end of the front corner post 330 and the upper corner post 340 along the front and rear ends of the crucible 310.
  • Upper joints 820 of the first lower joint assembly are respectively welded to the lower ends of the front corner post 330 and the corner post 340, and the upper joints 720 of the three sets of the first lower middle joint assemblies are welded at the lower edge of the first side plate surface 350.
  • the first lower side of the first segment is welded along the upper joint 820 of the first lower joint assembly and the upper joint 720 of the first lower joint assembly, respectively, along the upper side of the beam 320
  • the first lower side of the fourth section is along the beam
  • the two ends of the 320 are respectively welded with the upper joint 720 of the first lower middle joint assembly and the upper joint 820 of the first lower joint assembly, and the first section of the middle section
  • Both ends of the side edge beam 320 are welded to the upper joints 720 of the two sets of first lower middle joint assemblies, respectively.
  • Figure 8 is a schematic view showing a connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • the first upper side is formed by a deformed square tube, and has a cross-sectional shape of an inverted L shape.
  • On the first upper side a plurality of through holes are spaced apart along the vertical side of the inverted L shape of the ⁇ 310, and a step is arranged in the through holes.
  • the shaped sleeve 360 is provided with a plurality of holes on the vertical side of the inverted top of the first top side ⁇ 250.
  • the holes are provided with a nut 370.
  • the nut 370 When the first side plate 300 is turned up to the vertical state, the nut 370 is The corresponding sleeve 360 is concentric so that an inner detachable bolt 380 is screwed from the first upper side along the inner surface of the raft 310 through the sleeve 360 into the nut 370, so that the first upper side along the raft 310 and the first top
  • the side sills 250 are locked together.
  • a side plate seal 390 is disposed between the first upper side edge 310 and the first top side turn 250, and the side plate seal 390 has a triangular tube shape in cross section, and the two straight sides 391 and 392 are fixed.
  • the bevel 393 is broken in the middle to form a sealing opening 394.
  • the first top side cymbal 250 and the first upper side rim 310 are coupled to each other in a mutual coupling manner to form a labyrinth seal structure, the purpose of which is to water outside the box even if the side plate seal 390 is not installed.
  • the structure of the mutual coupling between the first top side crucible 250 and the first upper side edge crucible 310 is not limited to this one, and there are many kinds of structural forms.
  • the seal 390 on the side panel can form a good seal to prevent water from penetrating into the box from the outside of the box, wherein the outer seam between the first top side ⁇ 250 and the first upper side ⁇ 310 is lower than the first seam.
  • Difficulty, and the present invention further provides a side panel seal 390 between the first top side weir 250 and the first upper side weir 310.
  • the first side panel 300 is turned up to the vertical state, the first top side
  • the inner corner of the bottom of the crucible 250 distracts the sealing opening 394 of the seal 390 on the side panel and presses the bevel 393 to form an effective seal to form a double seal.
  • the side panel seal 390 is not limited to the above construction.
  • Figure 9 is a schematic view showing a connection relationship between the first bottom side rail and the first lower side edge beam in the folding container cabinet of the present invention.
  • the first lower side edge beam 320 is made of a deformed square tube and has an inverted L shape.
  • the first bottom side member 130 is made of a deformed square tube, and has a cross-sectional shape of an inverted L shape.
  • a side lower plate sealing member 390a is disposed between the first lower side edge beam 320 and the first bottom side beam 130, and the side plate lower sealing member is disposed.
  • the cross section of the 390a is a triangular tube shape, the two straight sides 391a and 392a are fixed and sealed, and the oblique side 393a is disconnected to form a sealing opening 394a.
  • the first bottom side beam 130 and the first lower side edge beam 320 are coupled to each other in a mutual coupling manner to form a labyrinth sealing structure, the purpose of which is to water outside the box even if the side plate lower sealing member 390a is not installed.
  • the structure of the mutual coupling between the first bottom side beam 130 and the first lower side edge beam 320 is not limited to this one, and there are many kinds of structural forms.
  • the combination of the side lower seal 390a can form a good seal to prevent water from penetrating into the box from the outside of the box, wherein the outer seam between the first bottom side beam 130 and the first lower side along the beam 320 is lower than the first The inner joint between the bottom side beam 130 and the first lower side along the beam 320, so that the water outside the box needs to penetrate into the box, requiring By climbing a certain distance, it can penetrate into the box from the inner joint, thus increasing the difficulty of penetration, and the present invention further provides a side plate lower seal between the first bottom side beam 130 and the first lower side edge beam 320.
  • the first lower side supports the sealing opening 394a of the side panel lower sealing member 390a along the inner corner of the bottom of the beam 320, and presses the oblique side 393a to form an effective seal. Double seal.
  • the side plate lower seal 390a is not limited to the above structure.
  • Fig. 10 is a schematic view showing another connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • the first top side ⁇ 250' is made of sheet metal bent with a C-shaped opening facing inward, and a plurality of nuts 370 are disposed in the first top side ⁇ 250'.
  • the first upper side is formed by bending the plate ⁇ 310', and the cross section is reverse S-shaped.
  • the first upper side is provided with a plurality of holes 360 ′ along the ⁇ 310 ′, when the first side plate 300 is turned up to the vertical state.
  • Each nut 370 is concentric with its corresponding hole 360' so that a first detachable bolt 380 is screwed from the first upper side along the inner surface of the raft 310' through the hole 360' into the nut 370, so that the first upper side can be
  • the ⁇ 310' is locked with the first top side ⁇ 250'.
  • a side plate seal 390' is mounted on the upper side of the first upper side along the opposite S-shape of the ⁇ 310', and the side plate seal 390' is provided by a U-shaped seal sleeve 391' and on the U-shaped seal sleeve 391'.
  • the two-shaped sealing tube 392' is composed of a U-shaped sealing sleeve 391' on the upper side of the first upper side along the opposite S-shape of the crucible 310', and the two O-shaped sealing tubes 392' are opposite to the first top side crucible 250' Contacting to seal the inner seam between the first top side ⁇ 250 ′ and the first upper side ⁇ 310 ′; the first top side ⁇ 250 ′ and the first upper side ⁇ 310 ′ are mutually coupled Installation, forming a labyrinth seal structure, the purpose is that the water outside the box does not climb a certain height into the box even if the side plate seal 390' is not installed, the first top side ⁇ 250' and the first
  • the structure of the mutual coupling between the upper side along the ⁇ 310' is not limited to this one, and there are many kinds of structural forms.
  • can form a good seal to prevent water from penetrating into the box from the outside of the box, where the outer seam between the first top side ⁇ 250' and the first upper side along the ⁇ 310' is low
  • the present invention further provides a side plate seal 390' between the first top side ⁇ 250' and the first upper side ⁇ 310', and the first side plate 300 is turned up to In the vertical state, the two O-shaped sealing tubes 392' are in contact with the first top side cymbal 250' to form an effective seal to form a double seal.
  • the side plate seal 390' is not limited to the above structure.
  • FIG 11 is a schematic view showing another connection relationship between the first bottom side rail and the first lower side edge beam in the folding container cabinet of the present invention.
  • Each of the first bottom side members 130' is made of sheet metal bending, the upper section 131' is S-shaped, and the lower section 132' is C-shaped with the opening facing outward; each first lower side along the beam 320' is made of sheet metal bending , the section is anti-S shape.
  • a lower side lower seal 390a' is mounted on the lower side of the first lower side along the opposite side of the beam 320'.
  • the side lower seal 390a' is provided by a U-shaped seal sleeve 391a' and on the U-shaped seal sleeve 391a'.
  • the two-shaped sealing tube 392a' is composed, and the U-shaped sealing sleeve 391a' is sleeved on the lower side of the first lower side along the opposite S-shape of the beam 320', and the two-shaped sealing tube 392' is in contact with the first bottom side beam 130'.
  • the first bottom side beam 130' and the first lower side edge beam 320' are installed in a mutual coupling manner to form a labyrinth sealing structure, the purpose of which is that the water outside the box does not climb up even if the side plate lower sealing member 390a' is not installed.
  • the height of the entry into the box, the mutual coupling structure between the first bottom side beam 130' and the first lower side edge beam 320' is not limited to this one, and there are many kinds of structural forms.
  • the combination of the side panel lower seals 390a' provides a good seal to prevent water from penetrating into the tank from outside the tank.
  • the outer seam between the first bottom side beam 130' and the first lower side edge beam 320' is lower than the inner seam between the first bottom side beam 130' and the first lower side edge beam 320', such a box
  • the outside water needs to penetrate into the box and needs to be climbed for a certain distance to penetrate into the box from the inner joint, thus increasing the difficulty of penetration, and the present invention is again on the first bottom side beam 130' and the first lower side edge.
  • a side plate lower seal 390a' is disposed between the beams 320'.
  • the two 0-shaped sealing tubes 392' are in contact with the bottom side ⁇ 130' to form an effective seal, which constitutes a double seal.
  • the side plate lower seal 390a' is not limited to the above structure.
  • Fig. 12 is a schematic view showing still another connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • the first top side ⁇ 250" is made of sheet metal, with an S-shaped section, and a number of nuts 370 are placed in the first top side ⁇ 250".
  • the first upper side along the crucible 310" is made of sheet metal bending, and the cross section is reverse S-shaped, and a plurality of holes 360" are formed on the first upper side along the crucible 310".
  • Each of the nuts 370 is concentric with its corresponding bore 360" such that a detachable bolt 380 is threaded from the first upper side along the inner surface of the bore 310" through the bore 360" into the nut 370, thereby engaging the first upper side.
  • the 310" is locked with the first top side ⁇ 250".
  • a side plate seal 390" is disposed between the first top side ⁇ 250" and the first upper side ⁇ 310 , and the side plate seal 390" is a right-angled trapezoidal groove seal structure, wherein the right angle trapezoidal groove seal
  • the straight edge 391" of the strip structure is fixed on the first top side ⁇ 250", and the oblique side 392" is in contact with the first upper side along the ⁇ 310" to seal the first top side ⁇ 250" and the first upper side ⁇ Between the inner seam of the 310" and the outer seam; the first top side ⁇ 250" and the first upper side along the ⁇ 310" are mutually coupled to form a labyrinth seal structure, the purpose of which is even if not In the case of installing the side plate seal 390", the water outside the box does not climb a certain height into the box, and the first top side ⁇ 250" and the first upper side along the ⁇ 310" are mutually coupled.
  • the sealing member 390" on the side panel can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer seam between the first top side ⁇ 250" and the first upper side along the ⁇ 310" is low.
  • the present invention further provides a side plate seal 390" between the first top side ⁇ 250 ⁇ and the first upper side ⁇ 310 ,, and the first side plate 300 is turned up to In the vertical state, the side plate seal 390 "the beveled edge 392" of the right-angled trapezoidal groove seal structure is in contact with the first upper side along the ⁇ 310" to form an effective seal to form a double seal.
  • the side plate seal 390" It is not limited to the above structural form.
  • FIG 13 is a schematic view showing still another connection relationship between the first bottom side beam and the first lower side edge beam in the folding container cabinet of the present invention.
  • Each of the first bottom side members 130" is made of sheet metal bending, and the upper section 131" is S-shaped, and the lower portion is broken.
  • the face 132" is a C-shaped opening facing outward; each of the first lower side along the beam 320" is manufactured by bending a plate, and the cross section is reverse S-shaped.
  • a side lower plate seal 390a is mounted on the lower side of the first lower side along the opposite side of the beam 320", the side plate lower seal 390a” is provided by a U-shaped seal sleeve 391a” and is disposed on the U-shaped seal sleeve 391a"
  • the two O-shaped sealing tubes 392a" are formed, and the U-shaped sealing sleeve 391a” is sleeved on the lower side of the first lower side along the opposite S-shape of the beam 320", and the two O-shaped sealing tubes 392 "contact the first bottom side beam 130" , to seal the outer joint between the first bottom side beam 130" and the first lower side edge beam 320"; the first bottom side beam 130" and the first lower side edge beam 320" are mutually coupled , forming a labyrinth seal structure, the purpose of which is that the water outside the box does not climb a certain height into the box even if the side plate lower seal 390a" is not installed, the
  • the seal is combined to form a good seal to prevent water from penetrating into the tank from outside the tank.
  • the outer seam between the first bottom side beam 130 ⁇ and the first lower side edge beam 320 ⁇ is lower than the inner seam between the first bottom side beam 130′′ and the first lower side edge beam 320”, such a box
  • the outside water needs to penetrate into the tank, and it needs to climb a certain distance to penetrate into the box from the inner joint, thus increasing the difficulty of penetration, and the present invention is again on the first bottom side beam 130" and the first lower side edge
  • a side plate lower seal 390a is disposed between the beams 320".
  • the two 0-shaped sealing tubes 392 "contact the bottom side ⁇ 130" to form an effective seal, forming a double seal.
  • the side lower seal 390a is not limited to the above construction.
  • Figure 14 is a schematic view showing the connection relationship of the first lower joint assembly of the present invention.
  • the first lower joint assembly 800 includes an upper joint 820, a lower joint 810, a joint shaft 830, a joint bolt 860, and a joint seal 840.
  • Figure 15 is a schematic view of the upper joint structure in the first lower joint assembly
  • Figure 16 is a left side view of Figure 15.
  • the vertical sectional shape of the upper joint 820 is an inverted L shape, and an articulation head 821 protruding in the upward joint motion direction is provided at the L-shaped transition of the upper joint 820, and the joint head 821 is located in the middle of the entire upper joint 820, in the joint head 821
  • a joint shaft hole 824 having an axis perpendicular to the moving direction of the upper joint 820 is disposed;
  • a sealing rib 822 is formed on the inner side of the top of the L-shaped vertical side to match the length of the entire upper joint 820, and is embedded on both sides of the joint head 821
  • a joint nut 850 is
  • FIG. 17 is a schematic structural view showing a combination of a lower joint and a bolt sleeve in a first lower joint assembly according to the present invention
  • FIG. 18 is a cross-sectional view taken along line AA of FIG. 17,
  • FIG. 19 is a lock installed in the bolt sleeve.
  • the vertical end face of the lower joint 810 has an inverted L shape.
  • a joint head groove 811 is matched with the joint head 821 on the L-shaped vertical side of the lower joint 810, and both side joint shaft holes 812 and two stepped holes 813 are provided on both sides of the joint head groove 811, and L at the lower joint 810
  • a sealing groove 814 is provided at the corner of the corner to match the sealing bead 822 on the upper joint 820.
  • the joint seal is mounted at the L-shaped corner of the lower joint 810; the shape of the joint seal 840 is the same as that of the first seal 390 .
  • a bolt sleeve 910 is spliced to an outer side of the lower joint 810 if the first lower joint assembly 800 is located throughout the fold At the front of the container cabinet, the bolt sleeve 910 is welded to the front outer side of the lower joint 810. If the first lower joint assembly 800 is located at the rear of the entire folded container cabinet, the bolt sleeve 910 is welded to the rear outer side of the lower joint 810.
  • a cutout 911 is formed on the top of the bolt sleeve 910. The diameter of the cutout 911 is smaller than the bolt of the locking bolt 930, so that the stud of the locking bolt 930 protrudes from the bolt sleeve 910, but does not make the entire lock.
  • the bolt 930 is dropped from the bolt sleeve 910.
  • An opening 912 is provided on the sleeve wall of the bolt sleeve 910 for facilitating the lifting of the locking bolt 930 by the external object.
  • the locking bolt 930 is provided with a square neck 931 for facilitating the wrenching.
  • the locking bolt 930 is movably disposed on the bolt.
  • a top post 940 is defined at the bottom of the bolt sleeve 930 to limit the height of the bolt 930 extending beyond the bolt sleeve 930.
  • the upper joint 820 of the first lower joint assembly 800 is first welded to the bottom end of the front corner post 330 or the corner post 340, and the lower joint 810 and the bolt sleeve 930 of the first lower joint assembly 800 are welded together.
  • the bolt sleeve 930 does not protrude outside the front lower corner piece 110 or the rear lower corner piece 120, and the aforementioned lock nut 920 should be welded with the bolt sleeve 930 to ensure After assembly of the entire folding container cabinet, the lock nut 920 is on the same axis as the central axis of the lock bolt 930.
  • the joint head 821 on the upper joint 820 is inserted into the joint head groove 811 of the lower joint 810, and the joint shaft 830 is passed through the both joint joint shaft holes 812 and the joint shaft hole 824 to make the upper and lower joints 820,
  • the 810 connections form an articulation.
  • the sealing bead 822 on the upper joint 820 presses the joint seal .840 portion into the sealing groove 814 of the lower joint 810 to form an effective seal, while the joint seal 841 is on
  • the bevel seal on both sides of the seal can form a further seal with the upper joint 820.
  • the upper joint 820 and the lower joint 810 are installed in a mutual manner to form a labyrinth seal structure.
  • the purpose is that the water outside the box does not climb a certain height into the box even if the joint seal 840 is not installed.
  • the structure of the mutual coupling between the upper joint 820 and the lower joint 810 is not limited to this one, and there are many kinds of structural forms.
  • the joint seal 840 can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer joint between the upper joint 820 and the lower joint 810 is lower than the inner joint 820 and the lower joint 810. Seams, so that the water outside the box should penetrate into the box, and it needs to climb a certain distance to penetrate into the box from the inner seam, thus increasing the difficulty of penetration.
  • the joint seal 840 is also not limited to the above construction.
  • the two joint bolts 860 are used to pass through the stepped holes 813 in the lower joint 810 from the inner surface of the lower joint 810, and are screwed into In the joint nut 850 of the upper joint 820, the upper joint 820 and the lower joint 810 can be locked, and when the upper joint 820 and the lower joint 810 need to be turned over, the joint bolt 860 can be removed.
  • Figure 20 is a schematic view showing the connection relationship of the first lower middle joint assembly of the present invention.
  • the first lower middle joint assembly 700 includes an upper joint 720, a lower joint 710, a joint shaft 730, a joint bolt 760, and a joint seal 740.
  • Figure 21 is a schematic view showing the structure of the upper joint in the first lower middle joint assembly of the present invention
  • Figure 22 is a left side view of Figure 21.
  • the vertical sectional shape of the upper joint 720 is similar to the sectional shape of the first lower side along the beam 320, and both are inverted L-shaped.
  • a joint head 721 protruding in the upward joint motion direction is provided, and the joint The head 721 is located in the middle of the entire upper joint 720, and a joint shaft hole 724 whose axis is perpendicular to the moving direction of the upper joint 720 is disposed in the joint head 721; and a length corresponding to the length of the entire upper joint 720 is disposed inside the top of the L-shaped vertical side.
  • a sealing bead 722 is embedded with a joint nut 750 on each side of the joint head 721.
  • Figure 23 is a schematic view showing the structure of the lower joint in the first lower middle joint assembly of the present invention
  • Figure 24 is a left side view of Figure 23.
  • the vertical end face of the lower joint 710 has an inverted L shape.
  • a joint head groove 711 is matched with the joint head 721, and both side joint shaft holes 712 and two stepped holes 713 are provided on both sides of the joint head groove 711, and L at the lower joint 710
  • a sealing groove 714 is provided at the corner of the corner to match the sealing rib 722 on the upper joint 720.
  • the joint seal 740 is mounted at the L-shaped corner of the lower joint 710; the shape of the joint seal 740 and the structure of the first seal 390 the same.
  • the upper joint 720 of the first lower middle joint assembly 700 is first sealed with the bottom edge of the first side plate surface 350 and the first lower side is welded along the beam 320, and the first lower middle joint assembly 700 is
  • the lower joint 710 is hermetically welded to the first side 'edge of the bottom plate 100 and the first bottom side rail 130.
  • the joint head 721 on the upper joint 720 is inserted into the joint head groove 711 of the lower joint 710, and the joint shaft 730 is passed through the both joint joint shaft holes 712 and the joint shaft hole 724 to make the upper and lower joints 720,
  • the 710 connections form an articulation.
  • the sealing bead 722 on the upper joint 720 partially presses the joint seal 740 into the sealing groove 714 of the lower joint 710 to form an effective seal, while the joint seal 741 A bevel seal on either side of the seal can form a further seal with the upper joint 720.
  • the upper joint 720 and the lower joint 710 are installed in a mutual coupling manner to form a labyrinth seal structure.
  • the purpose is that the water outside the box does not climb a certain height into the box even if the joint seal 740 is not installed.
  • the structure of the mutual coupling between the upper joint 720 and the lower joint 710 is not limited to this one, and there are many kinds of structural forms.
  • the joint seal 740 can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer joint between the upper joint 720 and the lower joint 710 is lower than the inner joint 720 and the lower joint 710.
  • joint seal 740 is also not limited to the above construction.
  • the two joint bolts 760 are passed from the inner surface of the lower joint 710 through the stepped hole 713 in the lower joint 710, and screwed into Joint of upper joint 720 In the nut 750, the upper joint 720 and the lower joint 710 can be locked, and when the upper joint 720 and the lower joint 710 need to be turned over, the joint bolt 760 can be removed.
  • FIG 25 is a schematic view of the structure of the second side panel.
  • the second side plate 400 includes a second upper side edge 410, four second lower side edge beams 420, a front corner column 430, a door corner column 440, and four sides and a second upper side edge 410, and a second lower side edge beam 420.
  • the front corner post 430 and the corner post 440 are formed by sealing and fixedly connecting the second side plate surface 450.
  • the second upper side of the crucible 410 has a right angle fixed connection with the front corner post 430 and the upper end of the corner post 440.
  • the upper joint 820a of the second lower joint assembly is welded to the lower end of the front corner post 430 and the corner post 440, respectively, and the upper joint 720a of the three second lower middle joint assemblies are welded at the lower edge of the second side plate surface 450 at intervals.
  • the second lower side of the first segment is welded along the upper joint 820a of the second lower joint assembly and the upper joint 720a of the second lower joint assembly, respectively, along the upper side of the beam 420, and the second lower side of the fourth section is along the beam
  • the two ends of the 420 are respectively welded with the upper joint 720a of the second lower middle joint assembly and the upper joint 820a of the second lower joint assembly, and the second lower side of the middle section is respectively along the two ends of the ⁇ 420 and the two sets of the second lower middle
  • the upper joint 720a in the joint assembly is welded.
  • Fig. 26 is a schematic view showing the connection relationship between the second top side sill and the second upper side sill in the folding container cabinet of the present invention.
  • the second upper side of the crucible 410 is made of a deformed square tube, the cross-sectional shape is L-shaped, and the second top side crucible 260 is made of a deformed square tube, and the cross-sectional shape is inverted L-shaped.
  • a plurality of through holes are spaced apart on the second upper side along the vertical side of the ⁇ 410 L shape, and a stepped sleeve 460 is disposed in the through holes, and the second top side ⁇ 260 is opened on the vertical side of the L shape
  • the nut 470 is concentric with its corresponding sleeve 460, so that an inner detachable bolt 480 is used from the second upper side.
  • the inner surface of the crucible 10 is screwed into the nut 470 through the sleeve 460 to lock the second upper side along the crucible 410 and the second top side crucible 260.
  • a side plate seal 490 is disposed between the second upper side edge 410 and the second top side turn 260.
  • the cross-section of the side plate seal 490 is a triangular tube shape, and the two straight sides 491 and 492 are fixed.
  • the bevel 493 is broken in the middle to form a sealing port 494.
  • the second top side ⁇ 260 and the second upper side ⁇ 410 are mounted in a mutual coupling manner to form a labyrinth seal structure, the purpose of which is to water outside the box even if the side plate seal 490 is not installed.
  • the structure of the mutual coupling between the second top side ⁇ 260 and the second upper side ⁇ 410 is not limited to this one, and there are many kinds of structural forms.
  • the sealing member 490 on the side panel can form a good seal to prevent water from penetrating into the box from the outside of the box, wherein the outer seam between the second top side ⁇ 260 and the second upper side ⁇ 410 is lower than the second joint.
  • the present invention further provides a side plate seal 490 between the second top side ⁇ 260 and the second upper side ⁇ 410, when the second side plate 400 is turned up to the vertical state, the second top side
  • the inner corner of the bottom of the crucible 260 opens the sealing opening 494 of the sealing member 490 on the side panel to press the beveled edge 493 to form an effective seal to form a double seal.
  • the side plate seal 490 is not limited to the above structure.
  • Figure 27 is a schematic view showing the connection relationship between the second bottom side beam and the second lower side edge beam in the folding container cabinet of the present invention.
  • the second lower side beam 420 is made of a deformed square tube, and the cross-sectional shape is inverted L-shaped; the second bottom side beam 140 is made of a shaped square tube, and the cross-sectional shape is L-shaped.
  • a side plate lower sealing member 490a is disposed between the second lower side edge beam 420 and the second bottom side beam 140.
  • the second sealing member 490a has a triangular tube shape in cross section, and the two straight sides 491a and 492a are fixed and sealed. Acting, the oblique side 493a is broken in the middle to form a sealing opening 494a.
  • the second bottom side beam 140 and the second lower side edge beam 420 are coupled to each other in a mutual coupling manner to form a labyrinth sealing structure, the purpose of which is to water outside the box even if the side plate lower sealing member 490a is not installed.
  • the structure of the mutual coupling between the second bottom side beam 140 and the second lower side edge beam 420 is not limited to this one, and there are many kinds of structural forms.
  • the sealing seal can form a good seal to prevent water from penetrating into the tank from outside the tank, wherein the outer joint between the second bottom side rail 140 and the second lower side along the beam 420 is lower than the second bottom side beam 140
  • the inner joint between the second lower side and the second side of the beam 420 so that the water outside the box is to be infiltrated into the box, and it is necessary to climb a certain distance to penetrate into the box from the inner joint, thereby increasing the difficulty of penetration.
  • the present invention further provides a side plate lower seal 490a between the second bottom side beam 140 and the second lower side edge beam 420. When the second side plate 400 is turned up to the vertical state, the second lower side is along the bottom of the beam 420. The inner corner of the side panel lower seal 490a is expanded to press the bevel 493a to form an effective seal to form a double seal.
  • the side plate lower seal 490a is not limited to the above structure.
  • Fig. 28 is a schematic view showing another connection relationship between the second top side sill and the second upper side sill in the folding container cabinet of the present invention.
  • the second top side ⁇ 260' is made of sheet metal bending and has an S-shaped cross section, and a plurality of nuts 470 are disposed in the S-shaped lower portion of the first top side ⁇ 260 '.
  • the second upper side along the crucible 410' is made of sheet metal bending and has an S-shaped cross section.
  • a plurality of holes 460' are opened along the upper portion of the crucible 410', and the second side plate 400 is turned up to the vertical state.
  • the second upper side can be screwed into the nut 470 from the first upper side along the inner surface of the crucible 410' through the hole 460' by a detachable bolt 480.
  • a side plate seal 490' is mounted along the upper side of the S-shape of the crucible 410', and the side plate seal 490' is provided by a U-shaped gland 491' and a U-shaped gland 491'.
  • the two-shaped sealing tube 492' is composed, and the U-shaped sealing sleeve 491' is sleeved on the upper side of the second upper side along the S-shape of the crucible 310', and the two O-shaped sealing tubes 492' are in contact with the second top side crucible 260'.
  • the second top side ⁇ 260 ′ and the second upper side ⁇ 410 ′ are mutually coupled, Forming a labyrinth seal structure, the purpose of which is that the water outside the box does not climb a certain height into the box even if the side plate seal 490' is not installed, the second top side ⁇ 260 ' and the second upper
  • the mutual coupling structure between the side edges 410' is not limited to this one, and there are many kinds of structural forms.
  • the sealing seal can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer seam between the second top side ⁇ 260 ' and the second upper side ⁇ 410 ' is lower than the second top side ⁇ 260 'and the inner seam between the second upper side along the ⁇ 410 ', so that the water outside the box should penetrate into the box, it needs to climb a certain distance to penetrate into the box from the inner seam, thus increasing the seepage
  • the difficulty of the penetration and the present invention further provides a side plate seal 490' between the second top side ⁇ 260' and the second upper side ⁇ 410', when the first side plate 300 is turned up to the vertical state, The two O-ring seals 492' are in contact with the second top side weir 260' to form an effective seal to form a double seal.
  • the side panel seal '490' is not limited to the above structure.
  • Fig. 29 is a schematic view showing another connection relationship between the second bottom side rail and the second lower side edge beam in the folding container cabinet of the present invention.
  • Each of the second bottom side members 140' is made of sheet metal bending, the upper section 141' is S-shaped, and the lower section 142' is C-shaped with the opening facing outward; each second lower side is formed by bending the sheet along the beam 420' , the section is S-shaped.
  • a lower side lower seal 490a' is mounted on the second lower side along the S-shaped lower side of the beam 420'.
  • the side lower seal 490a' is composed of a U-shaped seal sleeve 491a' and two U-shaped seal sleeves 491a'.
  • the 0-shaped sealing tube 492a' is composed, and the U-shaped sealing sleeve 491a' is sleeved on the lower side of the second lower side along the S-shape of the beam 420', and the two O-shaped sealing tubes 492' are in contact with the second bottom side beam 140' to Sealing the outer joint between the second bottom side beam 140' and the second lower side edge beam 420'; the second bottom side beam 140' and the second lower side edge beam 420' are mutually coupled to each other to form a labyrinth seal structure, the purpose of which is that the water outside the tank does not climb a certain height into the box even if the side plate lower seal 490a' is not installed, the second bottom side beam 140' and the second lower side
  • the mutual coupling structure between the beams 420' is not limited to this one, and there are many kinds of structural forms.
  • the combined side panel lower seal 490a' provides a good seal to prevent water from penetrating into the tank from outside the tank.
  • the outer seam between the second bottom side beam 140' and the second lower side edge beam 420' is lower than the inner seam between the second bottom side beam 140' and the second lower side edge beam 420', such a box
  • the outside water needs to penetrate into the tank, and it needs to climb a certain distance to penetrate into the box from the inner joint, thus increasing the difficulty of penetration, and the present invention is again on the second bottom side beam 140' and the second lower side edge.
  • a side plate lower sealing member 490a' is disposed between the beams 420'.
  • the two O-shaped sealing tubes 492' are in contact with the second bottom side beam 140' to form an effective seal. Form a double seal.
  • the side lower seal 490a' is not limited to the above construction.
  • FIG. 30 is a schematic diagram showing another connection relationship between the first top side sill and the first upper side sill in the folding container cabinet of the present invention.
  • the second top side ⁇ 260" is made of sheet metal bending, the section is reverse S-shaped, and a plurality of nuts 470 are disposed in the second top side ⁇ 260".
  • the second upper side along the crucible 410" is made of sheet metal bending, the section is S-shaped, and the second upper side is provided with a plurality of holes 460" along the crucible 410".
  • each A nut 470 is concentric with its corresponding aperture 460, such that a detachable bolt 480 is threaded from the second upper side along the inner surface of the bore 410" through the bore 460 into the nut 470, thereby placing the second upper side along the crucible 410. "Locked with the second top side ⁇ 260 ⁇ .
  • the utility model has a straight-angle trapezoidal groove sealing strip structure, wherein a straight side 491" of the right-angled trapezoidal groove sealing strip structure is fixed on the second top side crucible 260", and the oblique side 492" is in contact with the second upper side along the crucible 410" to seal
  • the second top side ⁇ 260" and the second upper side ⁇ 410" are mutually coupled , forming a labyrinth seal structure, the purpose of which is that the water outside the box does not climb up even if the side plate seal 490" is not installed.
  • the fixed height enters the box, and the mutual coupling structure between the second top side ⁇ 260" and the second upper side ⁇ 410" is not limited to this one, and there are many kinds of structural forms.
  • the sealing of the side plate seal 490 ⁇ can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer seam between the second top side ⁇ 260" and the second upper side along the ⁇ 410" is low.
  • the inner joint between the second top side ⁇ 260" and the second upper side along the ⁇ 410 so that the water outside the box should penetrate into the box, and it is necessary to climb a distance to penetrate the box into the box.
  • the present invention further provides a side plate seal 490"' between the second top side ⁇ 260" and the second upper side ⁇ 410".
  • the side plate seal 490 "the oblique side 492" of the right-angled trapezoidal groove seal structure is in contact with the second upper side along the crucible 410" to form an effective seal, forming a double seal.
  • the side panel seal 490" is not limited to the above construction.
  • Fig. 31 is a schematic view showing still another connection relationship between the first bottom side beam and the first lower side edge beam in the folding container cabinet of the present invention.
  • Each of the second bottom side members 140" is made of sheet metal bending, the upper section 141" is S-shaped, and the lower section 142" is C-shaped with the opening facing outward; each second lower side along the beam 420 is made of sheet metal bending. , the section is S-shaped.
  • a lower side lower seal 490a" is mounted on the second lower side along the S-shaped lower side of the beam 420", the side lower seal 490a” is provided by a U-shaped seal sleeve 491a” and two on the U-shaped seal sleeve 491a
  • the 0-shaped sealing tube 492a “composed, the U-shaped sealing sleeve 491a” is sleeved on the lower side of the second lower side along the S-shape of the beam 420", and the two O-shaped sealing tubes 492 "contact the second bottom side beam 140" to Sealing the outer joint between the second bottom side beam 140" and the second lower side along the beam 420"; the second bottom side beam 140" and the second lower side along the beam 420" are mutually coupled, forming
  • the labyrinth seal structure is designed so that the water outside the box does not climb a certain height into the box even if the side plate lower seal 490a is not installed, and the second bottom side beam 140" and the second
  • a good seal can be formed to prevent water from penetrating into the tank from outside the tank.
  • the outer seam between the second bottom side beam 140" and the second lower side edge beam 420" is lower than the inner seam between the second bottom side beam 140" and the second lower side edge beam 420", such a box
  • the outside water needs to penetrate into the box and needs to be climbed for a certain distance to penetrate into the box from the inner joint, thus increasing the difficulty of penetration, and the present invention is again in the second bottom side beam 140" and the second lower side edge
  • the side plate lower seal 490a is disposed between the beams 420".
  • the two O-shaped sealing tubes 492 "contact the second bottom side members 140" to form an effective seal. Form a double seal.
  • the side plate lower seal 490a is not limited to the above structure.
  • Figure 32 is a schematic view showing the connection relationship of the second lower joint assembly of the present invention.
  • the second lower joint assembly 800a includes an upper joint 820a, a lower joint 810a, a joint shaft 830a, and a joint seal 840a.
  • Figure 33 is a schematic view of the upper joint structure in the second lower joint assembly
  • Figure 34 is a left side view of Figure 33.
  • the vertical sectional shape of the upper joint 820a is similar to the sectional shape of the second lower side along the beam 420, and both are inverted L-shaped, and the joint head 821a protruding from the upward joint motion direction is provided at the L-shaped transition of the upper joint 820a, the joint 821 a head located throughout the central joint 820a, 820a is provided with a movement direction of an axis perpendicular to the joint turned at the joint head 821a
  • the shaft hole 824a; a sealing rib 822a corresponding to the length of the entire upper joint 820a is disposed on the inner side of the top of the L-shaped vertical side, and a joint nut 850a is embedded on each side of the joint head 821a.
  • FIG. 35 is a schematic view showing the structure of the lower joint and the bolt sleeve in the second lower joint assembly of the present invention
  • FIG. 36 is a cross-sectional view taken along line AA of FIG. 35
  • FIG. 37 is a lock installed in the bolt sleeve.
  • the vertical end face shape of the lower joint 810a is similar to the cross-sectional shape of the second bottom side member 140, and is L-shaped.
  • a joint head groove 811a is matched with the joint head 821a on the L-shaped vertical side of the lower joint 810a, and both side joint shaft holes 812a and two stepped holes 813a are provided on both sides of the joint head groove 811a, and L at the lower joint 810a
  • a sealing groove 814a is provided at the corner of the corner to match the sealing bead 822a on the upper joint 820a, and the joint seal 840a is mounted at the L-shaped corner of the lower joint 810a; the joint seal 840a is identical in structure to the second seal 490.
  • a bolt sleeve 910 is welded to an outer side of the lower joint 810a. If the second lower joint assembly 800a is located at the front of the entire folding container cabinet, the bolt sleeve 910 is welded to the front outer side of the lower joint 810a, if the second lower joint assembly 800a Located at the rear of the entire folding container cabinet, the bolt sleeve 910 is welded to the rear outer side of the lower joint 810a.
  • a cutout 911 is formed on the top of the bolt sleeve 910. The diameter of the cutout 911 is smaller than the bolt of the locking bolt 930, so that the stud of the locking bolt 930 protrudes from the bolt sleeve 910, but does not make the entire lock.
  • the bolt 930 is dropped from the bolt sleeve 910.
  • An opening 912 is provided on the sleeve wall of the bolt sleeve 910 for facilitating the lifting of the locking bolt 930 by the external object.
  • the locking bolt 930 is provided with a square neck 931 for facilitating the wrenching.
  • the locking bolt 930 is movably disposed on the bolt.
  • a top post 940 is defined at the bottom of the bolt sleeve 930 to limit the height of the bolt 930 extending beyond the bolt sleeve 930.
  • the upper joint 820a in the second lower joint assembly 800a and the bottom end of the front corner post 430 or the corner post 440 are firstly connected to the lower joint 810a and the bolt sleeve 930 in the second lower joint assembly 800a.
  • the bolt sleeve 930 does not protrude outside the front lower corner piece 110 or the rear lower corner piece 120, and the aforementioned lock nut 920 should be welded with the bolt sleeve 930 to ensure After assembly of the entire folding container cabinet, the lock nut 920 is on the same axis as the central axis of the lock bolt 930.
  • the 810a is connected to form a joint connection.
  • the sealing bead 822a on the upper joint 820a presses the joint seal 840a portion into the sealing groove 814a of the lower joint 810a to form an effective seal, while the joint seal 841a
  • the bevel 843a seal strips on both sides of the seal port 844a can form a further seal with the upper joint 820a.
  • the upper joint 820a and the lower joint 810a are coupled to each other in a mutual coupling manner to form a labyrinth seal structure.
  • the purpose is that the water outside the tank does not climb a certain height into the box even if the joint seal 840a is not installed.
  • Upper joint 820a The structure of the mutual coupling with the lower joint 810a is not limited to this one, and there are many kinds of structural forms.
  • the joint seal 840a can be combined to form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer seam between the upper joint 820a and the lower joint 810a is lower than the inner joint 820a and the lower joint 810a. Seams, so that the water outside the box should penetrate into the box, and it needs to climb a certain distance to penetrate into the box from the inner seam, thus increasing the difficulty of penetration.
  • the joint seal 840a is not limited to the above construction.
  • the two joint bolts 860a are passed from the inner surface of the lower joint 810a through the stepped hole 813a in the lower joint 810a, and screwed into In the joint nut 850a of the upper joint 820a, the upper joint 820a and the lower joint 810a can be locked, and when the upper joint 820a and the lower joint 810a need to be turned over, the joint bolt 860a can be removed.
  • Figure 38 is a schematic view showing the connection relationship of the second lower middle joint assembly of the present invention.
  • the second lower middle joint assembly 700a includes an upper joint 720a, a lower joint 710a. an joint shaft 730a, a joint bolt 760a, and a joint seal 740a.
  • Figure 39 is a schematic view showing the structure of the upper joint in the second lower middle joint assembly of the present invention.
  • Figure 40 is a left side view of Figure 39.
  • the vertical sectional shape of the upper joint 720a is similar to the sectional shape of the second lower side along the beam 420, and both are inverted L-shaped, and the joint head 721a protruding from the upward joint motion direction is provided at the L-shaped transition of the upper joint 720a, the joint
  • the head 721a is located in the middle of the entire upper joint 720a, and a joint shaft hole 724a whose axis is perpendicular to the moving direction of the upper joint 720a is disposed in the joint head 721a; and a length corresponding to the length of the entire upper joint 720a is disposed inside the top of the L-shaped vertical side.
  • the sealing bead 722a is inlaid with a joint nut 750a on each side of the joint head 721a.
  • Fig. 41 is a schematic structural view of the lower joint in the first lower middle joint assembly of the present invention
  • Fig. 42 is a left side view of Fig. 41.
  • the vertical end face shape of the lower joint 710a is similar to the cross-sectional shape of the second bottom side member 140, and is L-shaped.
  • a joint head groove 711a is matched with the joint head 721a on the L-shaped vertical side of the lower joint 710a, and both side joint shaft holes 712a and two stepped holes 713a are provided on both sides of the joint head groove 711a, and L at the lower joint 710a
  • a sealing groove 714a is provided at the corner of the corner to match the sealing bead 722a on the upper joint 720a, and the joint seal 740a is mounted at the L-shaped corner of the lower joint 710a; the joint seal 740a is identical in structure to the second seal 490.
  • the upper joint 720a of the second lower middle joint assembly 700a and the bottom edge of the second side plate surface 450 and the second lower side of the second side plate 450 are first hermetically welded along the beam 420 to lower the second lower middle joint assembly 700a.
  • the joint 710a is hermetically welded to the second side edge of the bottom plate 100 and the second bottom side rail 140.
  • the joint head 721a on the upper joint 720a is fitted into the joint head groove 711a of the lower joint 710a, and the joint shaft 730a passes through the both joint joint shaft holes 712a and the joint shaft hole 724a to make the upper and lower joints 720a,
  • the 710a connection forms an articulation.
  • the upper joint 720a is The sealing rib 722a presses the joint seal 740a into the sealing groove 714a of the lower joint 710a to form an effective seal, and the bevel seal on both sides of the seal on the joint seal 741a can be connected to the upper joint 720a. A further seal is formed.
  • the upper joint 720a and the lower joint 710a are coupled to each other in a mutual coupling manner to form a labyrinth seal structure.
  • the purpose is that the water outside the tank does not climb a certain height into the box even if the joint seal 740a is not installed.
  • the mutual coupling structure between the upper joint 720a and the lower joint 710a is not limited to this one, and there are many kinds of structural forms.
  • the joint seal 740a can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer joint between the upper joint 720a and the lower joint 710a is lower than the inner joint 720a and the lower joint 710a. Seams, so that the water outside the box should penetrate into the box, and it needs to climb a certain distance to penetrate into the box from the inner seam, thus increasing the difficulty of penetration.
  • the joint seal 740a is not limited to the above construction.
  • the two joint bolts 760a are passed through from the inner surface of the lower joint 710a through the stepped hole 713a in the lower joint 710a, and are screwed into In the joint nut 750a of the upper joint 720a, the upper joint 720a and the lower joint 710a can be locked, and when the upper joint 720a and the lower joint 710a need to be turned over, the joint bolt 760 can be removed.
  • the first lower joint assembly 800 hinge point and the first lower middle joint assembly 700 are hinged away from the bottom plate 100.
  • the height between the hinge point of the second lower joint assembly 800a and the hinge point of the second lower middle joint assembly 700a is lower than the height between the bottom plate 100, and the upper edge of the first side panel 300 is fixed away from the first top side ⁇ 250.
  • the height between the bottom plates 100 is lower than the height between the upper edge of the second side plate 400 and the second top side ⁇ 260 from the bottom plate 100, while the first lower joint assembly 800 hinge point and the intermediate first joint assembly 700 are hinged.
  • the height between the point and the upper edge of the first side panel 300 and the height between the second lower joint assembly 800a hinge point and the intermediate second joint assembly 700a hinge point and the upper edge of the second side panel 400 should be less than the width of the bottom panel 100.
  • the first side panel 300 and the second side panel 400 can be smoothly flipped down in sequence.
  • FIG. 43 is a schematic structural view of a front frame of a folding container cabinet according to the present invention
  • FIG. 44 is a cross-sectional view taken along line AA of FIG. 43
  • FIG. 45 is a partial cross-sectional view taken along line BB of FIG. 43
  • FIG. 47 is an enlarged view of a direction D in FIG. 43
  • FIG. 48 is a cross-sectional view taken along line E-E of FIG.
  • the front frame 500 includes a front top beam 510, a front bottom beam 520, two front frame columns 530, and a front end plate 540 circumferentially welded to the front top beam 510, the front bottom beam 520, and the two front frame columns 530.
  • a front sill joint 521 is welded to each end of the front sill 520, and the front sill joint 521 has a shape adapted to the front lower corner member 110, such as an inverted L shape.
  • the hinge connection between the two front sill joints 521 and the front lower corner member 110 is achieved using a front hinge member.
  • the front hinge member includes two front living hinge seats 522 fixed to the upper corner surface of the front lower corner member 110, and the front living hinge seat Each of the 522s is provided with a front hinge pin 523 for articulating the front living hinge base 522 and the lateral side of the front sill joint 521 such that the front sill joint 521 can be turned around the axis of the front hinge pin 523. In turn, the entire front frame 500 is turned over.
  • a receiving block 524 for supporting the vertical sides of the two front sill joints 521 is welded to the inner surface of each of the front lower corner members 110, and the front sill joint 521 is used when the entire front frame 500 is turned to the vertical state. The bottom of the vertical side is just supported on the receiving block 524 so that the entire front frame 500 is well supported.
  • the present invention fixes a groove member 150 between the bottom surface of the front side of the bottom plate 100 and the two front lower corner members 110, and the groove of the groove member 150
  • the mouth faces the front of the entire folded container.
  • the side of the front sill 520 facing the front end plate 540 is a step surface having a high surface 525 and a low surface 526.
  • the high surface 525 is sealingly welded to the front end plate 540; and the lower surface 526 is fixed with a front frame lower sealing member.
  • the front frame lower seal 527 is composed of a U-shaped sealing sleeve 527 'and two O-shaped sealing tubes 527 ′′ disposed on the U-shaped sealing sleeve 527 ′, and the U-shaped sealing sleeve 527 ′′ is placed on the low surface 526 Upper, the two O-ring seals 527" are in contact with the inner groove side walls of the channel member 150.
  • the two 0-shaped sealing tubes 527 ′′ of the front frame lower sealing member 527 on the lower surface 526 of the front bottom beam 520 are pressed tightly on the inner groove side wall of the channel member 150 to form An effective seal to prevent water from penetrating into the tank.
  • the front cymbal 230 is made of a profiled steel pipe having a transverse end face of an inverted L shape, and the cross section of the front header 510 is a U-shaped groove structure having an upper outer rim 511, so that the front sill 510 is The upper outer flange 511 and the front weir 230 form a mutual engagement structure to restrict the front frame 500 from being inverted only inwardly and not outwardly.
  • Front end joints 231 are welded to both ends of the front weir 230, and the front weir joint 231 is hermetically welded to the front upper corner piece 210.
  • a plurality of through holes are spaced apart from the upper outer flange 511 of the front top beam 510, and a plurality of holes are formed in the vertical side of the front sill 230, and a nut 570 is disposed in the hole, and the front frame 500 is turned up.
  • the nut 570 is concentric with the hole in the upper outer flange 511 of the corresponding front header 510, so that a detachable bolt 580 is used to screw the inner surface of the front header 510 through the hole into the nut 570.
  • the front header 510 is locked to the front cymbal 230.
  • a front frame upper sealing member 550 is disposed on the upper outer flange 511 of the front header beam 510.
  • the front frame upper sealing member 550 is formed by a U-shaped sealing sleeve 551 and two O-shaped sealing tubes 552 disposed on the U-shaped sealing sleeve 551.
  • the U-shaped sealing sleeve 551 is sleeved on the upper outer flange 511, and the two-shaped sealing tube 552 is in contact with the vertical edge of the front ⁇ 230 inverted L-shaped.
  • the two 0-shaped sealing tubes 552 of the front frame upper sealing member 550 on the outer flange 511 of the front bottom beam 520 are pressed tightly on the vertical side of the front ⁇ 230 inverted L shape, forming an effective Seal to prevent water from penetrating into the box.
  • the front top beam 510 and the front sill 230 are coupled to each other in a mutual coupling manner to form a labyrinth seal structure.
  • the purpose is that the water outside the box does not climb a certain height even if the front frame upper seal 550 is not installed.
  • the mutual coupling structure between the front top beam 510 and the front cymbal 230 is not limited to this one, and there are many kinds of structural forms.
  • the sealing member can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer joint between the front top beam 510 and the front weir 230 is low.
  • the present invention further provides a front frame upper seal 550 between the front top beam 510 and the front sill 230.
  • the front frame 500 is turned up to the vertical state, the front frame is sealed on the outer rim 511 of the front sill 520.
  • the two O-shaped sealing tubes 552 of the member 550 are pressed tightly against the vertical sides of the inverted L-shaped front sill 230 to form an effective seal to form a double seal.
  • the front frame upper seal 550 is not limited to the above structure.
  • the cross-sectional shape of the two front frame columns 530 is a U-shaped groove 533 structure having two outer flanges 531 and 532, wherein the first outer flange 531 is fixedly connected to the front end plate (not shown).
  • the second flange 532 is provided with a front frame side seal 550a; the front side of the front corner posts 330 and 430 is provided with inwardly folded hook portions 331 and 431, and the second flange 532 and the front corner post on the front frame column 530
  • the hooks 331 and 431 on the 330 and 430 cooperate to limit the front frame 500 from being inverted only inwardly and not outwardly.
  • the front frame side seal 550a is composed of a U-shaped sealing sleeve 550a' and two O-shaped sealing tubes 550a" disposed on the U-shaped sealing sleeve 550a'.
  • the U-shaped sealing sleeve 550a' is sleeved on the second flange 532, two The O-ring seal 550a" is in contact with the hook portions 331 and 431 of the front corner posts 330 and 430.
  • the two 0-shaped sealing tubes 550a" of the front frame side seal 550a are tightly pressed against the hook portions 331 and 431 of the front corner posts 330 and 430 to form an effective seal to prevent water from penetrating. Inside the box.
  • the front frame 500 In order to make the front frame in the loading state, it can be firmly connected with the front corner posts 330 and 430, and in the empty cabinet, the front frame 500 can be separated from the front corner posts 330 and 430 and smoothly flipped.
  • the present invention is in the front frame 500.
  • a detachable locking mechanism 532 is disposed between the front frame post 530 and the front corner posts 330, 430.
  • Each of the locking mechanisms 532 includes a hinge ring 532a, a nut 532b welded to the groove wall in the U-shaped groove 533 of the front frame post 530, and an L-shaped lock lever 532d hinged to the hinge ring 532a via the hinge pin 532c, welded to
  • the lock block 532e and the locking bolt 532f on the front corner posts 330 and 430 are provided with a lock cover 532g on the L-shaped lock lever 532d away from the hinge end, and a through hole (not shown) is disposed on the lock cover 532g.
  • the block 532e is a frustum, a bolt hole is formed in the lock block 532e, and a cone cavity is disposed in the lock cover 532g, so that the lock cover 532g is fastened on the lock block 532e, and after the current frame 500 is turned to the vertical state, the L
  • the lock lever 532d is turned out from the inside of the U-shaped groove 533, so that the lock cover 532g is fastened on the lock block 532e.
  • the through hole on the lock cover 532g is aligned with the bolt hole on the lock block 532e, and the lock bolt is further tightened.
  • FIG. 49 is a schematic view showing the structure of the door portion of the present invention.
  • FIG. 50 is a cross-sectional view taken along line AA of FIG. 49;
  • FIG. 51 is an enlarged view of the portion D of FIG. 49;
  • Figure 53 is an enlarged view of a portion E of Figure 49;
  • Figure 54 is a cross-sectional view taken along line AA of Figure 53;
  • Figure 55 is a schematic view showing a state between a sill and a rear lower corner member when the container frame is folded to a horizontal state according to the present invention.
  • the door frame 600 includes two container doors 610 having a door post 611, a door top beam 620, a door sill 630, four sets of door lock bar assemblies 640, and eight hinge plates 650; two ends are welded at the ends of the door 630 A threshold joint 631.
  • the sill joint 631 is an inverted L-shaped member, the short side of the inverted L-shaped member is welded to the end of the sill 630, and the rear end of the rear lower corner member 120 is provided with two rear activities.
  • the hinge seat 632, the long side of the inverted L-shaped member of the sill joint 631 is hinged to the two rear living hinge seats 632 by two rear hinge pins 633, respectively, to effect the turning of the entire door frame 600.
  • a bearing seat is fixed to the inner side surface of the rear lower corner member 120.
  • the threshold adapter 631 is provided with a vertical spigot 631a and a counter bore coaxial with the vertical support sleeve 631b; 631b defines a coaxial threaded hole of the support sleeve 121 in the top surface of the lower corner member 120, with A fastening bolt 631c is inserted into the screw hole 121 from the upper side of the L-shaped member of the sill joint 631 through the vertical counterbore hole 631a and the support sleeve 631b, so that the sill joint 631 and the rear lower corner member 120 are detachably connected. .
  • the fastening bolt 631c should be removed first, and the sill joint 631 can be turned over.
  • the fastening bolt 631c is screwed into the screw hole 121 and tightened.
  • the present invention fixes a groove member 160 between the bottom surface of the rear side of the bottom plate 100 and the two rear lower corner members 120.
  • the groove of the groove member 160 faces the entire folded container. Behind.
  • the side of the door 630 facing the container door is a stepped surface having a high face 635 and a low face 636, and the upper face 635 is sealed with the container door 610 by an existing container door seal (not shown);
  • a lower door sealing member 637 is fixed on the lower surface 636;
  • the lower door sealing member 637 is composed of a U-shaped sealing sleeve 637 'and two O-shaped sealing tubes 637 ′ disposed on the U-shaped sealing sleeve 637 ′, the lower door sealing member
  • the U-shaped gland 637' of the 637 is placed over the lower face 636, and the two O-ring seals 637" are in contact with the inner groove side walls of the channel member 160.
  • each set of door lock bar assembly 640 includes a door lock bar 641, an upper fixed lock seat 642, and a lower fixed lock seat 643.
  • the upper fixed lock seat 642 and the lower fixed lock seat 643 are respectively fixed to the door top beam 620, respectively.
  • the door lock lever 641 is mounted on the container door 610, and the upper and lower ends of the door lock lever 641 can be locked to the upper fixed lock base 642 and the lower fixed lock seat 643 when the door is closed.
  • the sill 240 has an inverted L shape, and the cross-sectional shape of the door sill 620 is a U-shaped groove structure having an upper outer edging 621, which is also hinged to the door 611.
  • the upper outer flange 621 on the door top beam 620 and the door sill 240 form a mutual engagement structure to limit the door frame 600 from being inverted only inwardly and not outwardly.
  • a sill joint 241 (see Fig. 51) is welded to both ends of the sill 240, and the sill joint 241 is sealingly welded to the rear upper corner piece 220.
  • a plurality of through holes are spaced apart from the upper outer flange 621 of the door top beam 620, and a plurality of holes are formed in the vertical side of the sill 240 opposite to the L shape.
  • the holes are provided with a nut 470, and the door frame 600 is turned up to the vertical In the state, the nut 470 is concentric with the hole in the door beam 620, so that a detachable bolt 580 is screwed from the inner surface of the door beam 620 through the hole in the door beam to the nut 470, and the door beam 620 and the door sill can be used.
  • 240 locks together.
  • a door frame upper sealing member 670 is disposed on the upper outer flange 621 of the door top beam 620.
  • the door frame upper sealing member 670 is composed of a U-shaped sealing sleeve 671 and two O-shaped sealing tubes 672 disposed on the U-shaped sealing sleeve 671.
  • the U-shaped sealing sleeve 671 is sleeved on the upper outer flange 621 of the door top beam 620, and the two zero-shaped sealing tubes 672 are in contact with the threshold 240.
  • the door beam 620 and the door sill 240 are coupled to each other in a mutual coupling manner to form a labyrinth seal structure.
  • the purpose is that the water outside the box does not climb a certain height into the box even if the door frame upper seal 670 is not installed.
  • the structure of the mutual coupling between the door beam 620 and the door sill 240 is not limited to this one, and there are many kinds of structural forms.
  • the sealing member can form a good seal to prevent water from penetrating into the box from outside the box, wherein the outer joint between the door top beam 620 and the door sill 240 is lower than the inner seam between the door top beam 620 and the door sill 240 Therefore, the water outside the box is to be infiltrated into the box, and it needs to be climbed for a certain distance to penetrate into the box from the inner joint, thereby increasing the difficulty of penetration, and the present invention is further disposed between the door top beam 620 and the threshold 240.
  • the door frame upper sealing member 670 when the door frame 600 is turned up to the vertical state, the two O-shaped sealing tubes 672 on the door frame upper sealing member 670 are pressed against the sill 240 to form an effective seal to form a double seal.
  • the door frame seal 670 is not limited to the above structure.
  • the rear pre-solid plate 680 has a through hole formed in the rear pre-solid plate 680, and a hole is formed in the L-shaped lateral side of the door top beam 620, and a nut 622 is installed in the hole.
  • the detachable bolt 591 passes through the through hole in the rear pre-fixing plate 680 and is screwed into the nut 622 to connect the rear pre-solid plate 680 with the door top beam 620.
  • the door frame 600 does not fall down. Only when the operator leaves the container cabinet and goes outside the door frame 600 to remove the outer detachable bolt 591, the door frame 600 can be lowered.
  • each hinge plate 650 is divided into two groups, four in each group, respectively hinged on the door corner posts 340 and 440; the upper and lower sides of each hinge plate 650 are welded to the door post 611 of the container door 610.
  • a corresponding door stud hole and a hinge plate bolt hole are formed in the joint position of the door post 611 of the container door and the hinge plate 650, and a hinge plate 650 and a door post 340 or 440 are used between each of the hinge plates 650 and 440.
  • a door connecting nut 653 closed at one end and a door connecting bolt 654 are detachably connected.
  • the door is connected to the nut 653 with one end closed, so that the water does not penetrate the hinge plate bolt hole and the door stud hole on the hinge plate 650 into the container, thereby achieving a good water sealing effect.
  • the door attachment bolts 654 on each side of the door post 611 are mounted in a swivel and flip-fit manner, with at least one of the door attachment bolts 654 being flipped.
  • a container door seal 660 having a cross-section of the inverted " ⁇ " structure is used between the door post 611 and the corner post 340 or 440, the container door seal The 660 is mounted on the door post 611 by a weather strip pressure plate 661.
  • the folding method of the above-mentioned folding container cabinet includes a folding method and an unfolding method, and the folding method includes the following steps:
  • the operator moves to the outside of the folding container cabinet, and gradually lowers the front frame 500 to the bottom plate 100.
  • the front frame 500 is turned down and down, the front frame 500 is wound with the front bottom beam and the front bottom beam joint 521 at both ends of the front bottom beam.
  • the front hinge pin 523 on the movable hinge base 522 is flipped to a horizontal state and falls on the bottom plate 100; the container door 610 is locked, and all the door connecting bolts passing through the hinge plate bolt holes from the outer side of the hinge plate are removed, outward Flip all the hinge plates 650, then remove the outer detachable bolts between the rear pre-solid plate and the door top beam on the sill, and gradually lower the door frame 600 to the bottom plate 100.
  • the door frame 600 together with the sill and the sill joint 631 at both ends of the sill After the winding, the rear hinge pin 633 on the living hinge seat 632 is flipped to a horizontal state and falls on the bottom plate 100;
  • the first side panel 300, the second side panel 400 and the top panel 200 are controlled, and the operator moves into the folding container cabinet, and the first upper side edge and the first top side of the upper edge of the first side panel 300 are removed.
  • a detachable bolt between the second upper side of the upper edge of the second side plate 400 and the second top side sill, and the first lower joint assembly, the first lower middle joint assembly and the second lower joint assembly, the second The joint bolt on the lower middle joint assembly, the operator moves to the outside of the folding container cabinet, first releases the first side panel 300, inverts the first side panel 300 to the front frame 500 and the door frame 600, and then releases the second side a plate 400, inverting the second side plate 400 to the first side plate 300;

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Assembled Shelves (AREA)

Abstract

La présente invention concerne un récipient pliable et un procédé de pliage correspondant. Le récipient pliable comprend deux plaques latérales, un cadre de porte et un cadre avant. Les deux plaques latérales, le cadre de porte et le cadre avant peuvent être pliés vers l'intérieur afin de permettre au récipient de se plier de manière compacte sans laisser d’espace libre et faciliter ainsi son transport. Lorsqu’il est plié, le cadre supérieur peut être commandé de manière à dévisser les boulons d’assemblage sur les positions correspondantes, puis le cadre de porte, le cadre avant et les deux plaques latérales peuvent être pliés successivement vers l’intérieur, le cadre supérieur peut ensuite être plié vers le bas et, pour finir, le cadre de porte et le cadre avant peuvent être bloqués et raccordés l’un à l'autre. La plaque latérale du récipient pliable est formée en un seul bloc ce qui permet de réduire le nombre d'éléments charnière et de réduire ainsi le coût de production et améliorer l'efficacité du pliage.
PCT/CN2009/001215 2008-11-20 2009-11-02 Récipient pliable et procédé de pliage correspondant Ceased WO2010057359A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN200810203014 2008-11-20
CN200810203014.8 2008-11-20

Publications (1)

Publication Number Publication Date
WO2010057359A1 true WO2010057359A1 (fr) 2010-05-27

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Family Applications (2)

Application Number Title Priority Date Filing Date
PCT/CN2009/000003 Ceased WO2010057353A1 (fr) 2008-11-20 2009-01-04 Procédé de pliage pour récipient pliable et récipient pliable
PCT/CN2009/001215 Ceased WO2010057359A1 (fr) 2008-11-20 2009-11-02 Récipient pliable et procédé de pliage correspondant

Family Applications Before (1)

Application Number Title Priority Date Filing Date
PCT/CN2009/000003 Ceased WO2010057353A1 (fr) 2008-11-20 2009-01-04 Procédé de pliage pour récipient pliable et récipient pliable

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103434720B (zh) * 2013-09-19 2015-03-11 常熟市翔鹰特纤有限公司 一种隔离定位折叠式物品周转箱
CN111980149B (zh) * 2020-07-31 2024-11-22 四川新航钛科技有限公司 一种轻量化方舱角件
CN113562351A (zh) * 2021-08-12 2021-10-29 深圳市九州企业咨询管理有限公司 一种铝制集装箱

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DE4344759A1 (de) * 1993-07-23 1995-06-29 Juergens Walter Transportgestell
JP2002205791A (ja) * 2000-10-31 2002-07-23 Raisen:Kk 折り畳み式コンテナー
DE20320857U1 (de) * 2003-12-22 2005-03-31 New Logistics Gmbh Zusammenfaltbarer Schüttgutcontainer
CN2761544Y (zh) * 2004-07-23 2006-03-01 顺汇企业有限公司 折叠式货柜
CN201140878Y (zh) * 2007-12-11 2008-10-29 上海富日商务咨询有限公司 一种可折叠式集装箱
CN201264785Y (zh) * 2008-09-04 2009-07-01 上海富日商务咨询有限公司 一种折叠集装箱柜

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Publication number Priority date Publication date Assignee Title
SE501645C2 (sv) * 1992-05-11 1995-04-03 Thor Pedersen Hopfällbar container
DE19928944A1 (de) * 1999-06-24 2001-01-04 Fritz Neidhart Gmbh & Co Kg Ho Mehrweg-Transportbehälter
CN2895308Y (zh) * 2005-12-27 2007-05-02 扬州通利冷藏集装箱有限公司 折叠式集装箱

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4344759A1 (de) * 1993-07-23 1995-06-29 Juergens Walter Transportgestell
JP2002205791A (ja) * 2000-10-31 2002-07-23 Raisen:Kk 折り畳み式コンテナー
DE20320857U1 (de) * 2003-12-22 2005-03-31 New Logistics Gmbh Zusammenfaltbarer Schüttgutcontainer
CN2761544Y (zh) * 2004-07-23 2006-03-01 顺汇企业有限公司 折叠式货柜
CN201140878Y (zh) * 2007-12-11 2008-10-29 上海富日商务咨询有限公司 一种可折叠式集装箱
CN201264785Y (zh) * 2008-09-04 2009-07-01 上海富日商务咨询有限公司 一种折叠集装箱柜

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