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EP3060511B1 - Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction - Google Patents

Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction Download PDF

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Publication number
EP3060511B1
EP3060511B1 EP14771843.1A EP14771843A EP3060511B1 EP 3060511 B1 EP3060511 B1 EP 3060511B1 EP 14771843 A EP14771843 A EP 14771843A EP 3060511 B1 EP3060511 B1 EP 3060511B1
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EP
European Patent Office
Prior art keywords
pallet
projection
shoulder
fastening device
traction means
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.)
Active
Application number
EP14771843.1A
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German (de)
English (en)
Other versions
EP3060511A1 (fr
Inventor
Michael Matheisl
Thomas Illedits
Werner EIDLER
Robert Schulz
Wolfgang Neszmerak
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.)
Inventio AG
Original Assignee
Inventio AG
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
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Priority to EP14771843.1A priority Critical patent/EP3060511B1/fr
Publication of EP3060511A1 publication Critical patent/EP3060511A1/fr
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Publication of EP3060511B1 publication Critical patent/EP3060511B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B23/00Component parts of escalators or moving walkways
    • B66B23/08Carrying surfaces
    • B66B23/12Steps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B21/00Kinds or types of escalators or moving walkways
    • B66B21/02Escalators
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B21/00Kinds or types of escalators or moving walkways
    • B66B21/10Moving walkways
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B23/00Component parts of escalators or moving walkways
    • B66B23/08Carrying surfaces
    • B66B23/10Carrying belts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B19/00Mining-hoist operation
    • B66B19/007Mining-hoist operation method for modernisation of elevators

Definitions

  • the invention relates to a fastening device for connecting a step of an escalator or a pallet of a moving walkway with a traction means.
  • Passenger conveyors such as escalators and moving walks are well-known and efficient means of transporting people. Escalators are typically used for transporting people in a vertical direction, for example, from one floor of a building to another, while moving walkways are mostly used for transporting people in a horizontal or slight incline up to 12 degrees from one point to another become.
  • the length and width of the passenger conveyor are selected depending on the expected passenger traffic in the particular application.
  • Escalator steps and pallets are designed as one-piece or multi-part components and their parts usually produced by casting, extrusion, forging and the like more.
  • Several stages are usually connected by means of two traction means to a step band of an escalator.
  • a moving walkway or an escalator usually has a supporting structure or truss with two deflection areas, between which the pallet belt or the step belt is guided circumferentially.
  • connection between the traction means and the step or pallet must be safe and durable, since disengaging the connection during operation of the personal transport device can have catastrophic consequences for the users.
  • the WO 03/051754 A2 discloses a pallet strip whose pallets are fastened with screws and entrainment elements on the traction means.
  • the disadvantage of this type of connection is that a very large number of screws per pallet must be installed so that this connection is sufficiently safe.
  • the high number of screws is not only From a manufacturing point of view consuming and expensive, but also significantly affects the assembly time. But since steps and pallets or the traction means must be replaced due to damage or wear or after a predetermined number of operating hours, this assembly time is not only in the production of an escalator or moving walk, but several times in the maintenance of these passenger transport systems.
  • the WO 2005/073112 A2 discloses another pallet band of the prior art.
  • the screws are arranged in the vertical direction and therefore have a nearly parallel alignment with the pressure loading direction of the pallet or step.
  • the amplitudes of vibrations occurring during operation are mostly in the same orientation, whereby the tightened screws can be loosened.
  • Settling phenomena in the area of the screw connections can also lead to a loss of the screw pretensioning force and thus to a loosening of the screw connection. Therefore, threadlockers are often used in addition.
  • the object of the present invention is therefore to provide a fastening device for connecting a step or pallet with a traction device, which is simple and inexpensive to produce, which is quick and easy to install and which despite its simple structure has a high security against loosening or loosening.
  • a fastening device for connecting a step of an escalator or a pallet of a moving walkway with a traction device, wherein the fastening device comprises a shoulder, at least one wedge connector and at least one projection.
  • the fastening device comprises a shoulder, at least one wedge connector and at least one projection.
  • the at least one projection protrudes through an opening in the shoulder.
  • the at least one wedge connector is at least partially disposed between the shoulder and the projection.
  • the traction means may for example be a link chain, a belt a rope or the like.
  • the designated as a wedge connector element is used to connect two components, wherein on one component, a projection and the other component, the shoulder is formed.
  • the wedge connector can be mounted in a simple manner by driving between the projection or between a contour of the projection and the shoulder and the two components are firmly connected.
  • the wedge connector has at least one wedge-shaped region through which a biasing force can be generated for a given drive-in force as a function of the wedge angle of the wedge-shaped region. A loss of biasing force is not expected, since the wedge angle of the wedge connector can be kept so low that due to the frictional forces a self-assurance despite occurring during operation shocks and vibrations or vibrations is present.
  • the wedge connector can be arranged orthogonal to the main direction of the above-mentioned amplitudes.
  • a particular advantage of the fastening device according to the invention is also that a faulty installation is immediately recognizable, since the steps or pallets fall off the traction means in the case of non-assembled or incorrectly mounted wedge connectors, even before the passenger transport device is put into operation. If the wedge connector has just been plugged in but not driven, the steps or pallets rattle and the wedge connector projects out visibly.
  • a correct fit of the wedge connector are monitored by the position of one of its ends is scanned, for example, optically or mechanically. The number of monitoring sensors depends on the number of rows of fastening devices and thus on the number of traction means of a step belt or pallet belt.
  • the traction means is a link chain with link plates.
  • the link plates are connected by means of hinge pins serving as hinge points.
  • At each of the link plates may be formed between two hinge points a receiving location for a part of an associated pallet or stage. This receiving point is in the assembled state in conjunction with the associated stage or pallet.
  • the at least one projection on the step or pallet and the shoulder may be formed in the region of the receiving location of the link plate.
  • the step or pallet is limited in its width by two parallel, extending in the intended direction of movement of the step or pallet end faces. If the step band or pallet band to be produced comprises two traction means, at least one projection can be arranged on each of the two end faces. As a result, the steps or pallets between the two traction means can be arranged and connect them to each other transversely to the intended direction of movement.
  • the shoulder may also be formed on the step or pallet and the at least one projection in the region of the receiving location of the link plate.
  • the step or pallet may be limited in width by two parallel, extending in the intended direction of movement of the step or pallet end faces.
  • at least one shoulder can be arranged on each of the two end faces.
  • rails are usually arranged in the structure. Sliding elements or rollers slide on these rails, which are arranged on the traction means or on the steps or on the pallets. If articulated chains are used, the rollers are preferably arranged in the region of the articulation points on the traction means. This has the advantage that the connecting bolts of the articulated chain used in the joints serve at the same time as roller axles.
  • the wedge connector may have as a wedge-shaped portion at least one elastic Veilzunge, which V-tongue is arranged in the assembled state between the projection and the shoulder.
  • the elastic tongue has the advantage that manufacturing tolerances between the projection and the shoulder do not lead to different end positions of the wedge connector in the assembled state. Namely, if the wedge connector had a rigid tongue, it could only be driven in as far between the projection and the shoulder, as the existing distance between a projection contour or nose of the projection and a shoulder surface of the shoulder permits. Due to the elastic tongue, the wedge connector can adapt to the distance available and fix the stage or pallet biased on the traction means.
  • the wedge connector may be L-shaped and have a first leg and a second leg. On the first leg, the at least one Veilzunge is formed.
  • the second leg serves as a point of attachment for tools to drive the first leg or the tongue arranged on the first leg (elastic or rigid) between the projection and the shoulder.
  • the second leg may also serve as a point of attachment to remove the wedge connector when disassembly of the step or pallet from the traction means is required.
  • the first leg may have at least one receiving opening for receiving a nose of the projection.
  • the at least one Veilzunge is preferably formed at the edge of this receiving opening.
  • an attachment point for a fastening means may be formed on the second leg, which firmly connects the second leg with the adjacent contour.
  • the fastening means may be a screw, rivet, clamping claw, detent spring, and the like.
  • the projection can be configured as desired.
  • the only requirement of the projection is that it has at least one nose, so that the wedge connector has a lug contour to find support on the projection.
  • the preparation is particularly simple and inexpensive if the nose of the projection is created by means of a groove formed on the projection. Instead of the groove, the nose can also be generated by means of a milled or a puncture or an undercut or an undercut or a back turn.
  • the step or pallet has a tread that the users step on when the step belt or pallet belt is in operation.
  • the entry of the tread and possibly contaminants on the above-mentioned rails can cause vibrations and shocks whose amplitudes occur mainly in the orthogonal direction to the tread. Therefore, the at least one wedge connector is preferably inserted in a direction parallel to the tread assembly direction between the associated shoulder and the associated projection.
  • an existing moving walkway or an existing escalator can be modernized by replacing the existing pallet strip by a pallet strip according to the invention or the existing step strip by a step strip according to the invention.
  • FIG. 1 schematically shows in side view a moving walkway 11, which connects a first floor E1 with a second floor E2.
  • the moving walk 11 could also connect two places on the same level, as is often the case in long corridors of airports.
  • the moving walk 11 has a supporting structure 16 or truss 16 with two deflection areas 17, 18, between which a pallet belt 15 is guided circumferentially.
  • the pallet band has traction means 19, on which pallets 14 are arranged.
  • a handrail 13 is arranged on a balustrade 12.
  • the balustrade 12 is connected at the lower end by means of a Balustradensockels 20 to the supporting structure 16.
  • the FIG. 2 shows an exploded view of a portion of the in the FIG. 1
  • the pallet strip 15 has two traction means 19A, 19B.
  • the illustrated traction means 19A, 19B are sections of two link chains 19A, 19B, the link plates 21 are connected by means of chain pins 22 with each other to two endless link chains 19A, 19B.
  • the chain pins 22 serve not only as hinge points 22, but at the same time as axles 22 for rollers 23.
  • These rollers 23 run on rails, not shown, in the supporting structure 16 of the in FIG. 1 shown moving walks 11 are arranged. By the rails, the rollers 23 and thus the traction means 19A, 19B out and supported against gravity, so that the pallet belt 15 does not sag between the two deflection areas 17, 18.
  • a plurality of pallets 14 are arranged, wherein for reasons of clarity in the FIG. 2 only one pallet 14 is shown.
  • a receiving point 24 for a part of an associated pallet 14 is formed in each case between two hinge points 22. This receiving point 24 is in the assembled state in conjunction with the associated pallet fourteenth
  • the pallet 14 is limited in its width by two parallel, extending in the intended direction of movement X of the pallet end faces 25, 26. Between the two end faces 25, 26 extends a rectangular tread surface 27.
  • the top of the tread surface 27 has a tread pattern in the form of a series of parallel, extending from the front edge 28 to the trailing edge 29 of the tread surface 27 ribs or webs.
  • the ribs thus also extend in the intended direction of movement X of the pallet 14. Further, the ribs are dimensioned for engagement in comb structures, not shown, which are arranged in the deflection regions 17, 18 of the moving walk 11.
  • a shoulder 31 is arranged at each of the two end faces 25, 26 .
  • the pallets 14 can be arranged between the two traction means 19A, 19B and connect them to each other transversely to the intended direction of movement X.
  • the shoulder 31 belongs to a fastening device 30 for connecting or fastening a pallet 14 or step with a traction means 19A, 19B.
  • the fastening device 30 or the correct fit of the wedge connector 32 can be monitored by means of a monitoring sensor 55 arranged in the escalator or in the moving pavement.
  • the monitoring sensor 55 is fixedly attached to the supporting structure, not shown, so that in a complete rotation of the pallet belt 15 each fastening device 30 has passed the monitoring sensor 55.
  • the position of one end of the spline connector 32 is preferably optically or mechanically scanned.
  • the minimum number of monitoring sensors 55 per escalator or moving walk depends on the number of rows of fastening devices 30 and thus on the number of traction means 19A, 19B of a step belt or pallet belt.
  • FIG. 3 shows in three-dimensional representation the in FIG. 2 shown fastening device 30 in the preassembled state, and the laying of the pallet 14 on the traction means 19A as a first assembly step.
  • FIG. 4 shows FIG. 4 in three-dimensional representation the fixation of in FIG. 3 pallet 14 shown on the traction means 19A by means of the spline connector 32nd
  • FIG. 5 is shown in three-dimensional, enlarged view of the wedge connector 32.
  • the wedge connector 32 is L-shaped and has a first leg 34 and a second leg 35.
  • the second leg 35 serves as a point of attachment for tools to move the first leg 34.
  • the second leg 35 may also serve as a point of attachment to remove the wedge connector 32 when disassembly of the pallet 14 by the traction means 19A is required.
  • On the first leg 34 two receiving openings 37 are arranged, wherein in the assembled state by each receiving opening 37 per a nose of the projection 33 protrudes, as in FIG. 4 is shown.
  • Each elastic Veilzunge 36 is generated in the present embodiment by bending a material region of the first leg 34 along an obliquely to the sliding direction Y extending bending line 48.
  • the wedge connector 32 may be made of suitable metals or suitable plastics.
  • the wedge connector 32 is made of spring steel sheet.
  • metal-plastic combinations are possible, so that, for example, the legs 34, 35 made of steel and the Veilzept are made of a plastic.
  • the shoulder 31 is disposed on the end face 25 of the pallet 14 and extends substantially in a direction parallel to the tread surface 27 Level.
  • the shoulder 31 has a bearing point 38 directed against the traction means 19A and a projection surface 39 facing away from the traction means 19A.
  • the support point 38 is in the assembled state in the receiving point 24 of the traction means 19A.
  • two openings 40 are further formed. These are matched to the distance between the two mutually parallel link plates 21 of the traction means 19A and thus to the distance of the projections 33 formed on each link plate 21.
  • the projections 33 are formed centrally in the receiving points 24 and each have two lateral grooves 41. Through these grooves 41, the projection 33 has two lugs 42, which serve as a shoulder contour for the splines 36 of the wedge connector 32.
  • the pallet 14 is to be connected to the traction means 19A, as in the FIG. 3 shown, first a wedge connector 32 so arranged on the shoulder surface 39 of the shoulder 31, that the openings 40 of the shoulder 31 and the receiving openings 37 are aligned with the largest possible passage cross-section to each other.
  • the wedge connector 37 is in the present embodiment in a slot 44 (see FIG. 2 ) of the end face 25 is arranged and guided.
  • the pallet 14 is placed in the vertical direction V on the traction means 19A, so that the projections 33 protrude through the associated openings 40 of the shoulder 31 and through the receiving openings 37.
  • the second leg 35 limits the displacement by being present at the end face 25 of the pallet 14.
  • the elastic splines 36 are arranged in the assembled state between the projection 33 and the shoulder 31.
  • the elastic Vertex 36 has the advantage that manufacturing tolerances between the lower edge of the nose 42 and the shoulder surface 39 do not lead to different end positions of the wedge connector 32 in the assembled state. Namely, if the wedge connector 32 had a rigid tongue, this could only be so far between the projection 33 and the shoulder 31 are driven, as permitted by the existing distance between the nose 42 of the projection 33 and the shoulder surface 39 of the shoulder 31 and the ductility of the materials.
  • the wedge connector 32 can adapt to the respectively available distance and fix the pallet 14 prestressed on the traction means 19A.
  • an attachment point 47 for a fastener 46 may be formed on the second leg 35 .
  • the attachment means 46 is a screw
  • the attachment point 47 is a through-hole.
  • a threaded hole 45 is disposed in the front side. The fastening means 46 projects in the assembled state, the attachment point 47 and the end face 25, so that it connects the second leg 35 with the end face 25 fixed.
  • a catch 49 can be formed on at least one of the elastic splines 36. This allows a partial spring back elastic tongue 34 after insertion of the wedge connector 32. The detent 49 is then the form-fitting to the projection 33 and thereby holds the wedge connector 32 permanently in position.
  • 36 notches 49 may be formed on all elastic splines, wherein care must be taken in the embodiment of the elastic splines 36 to a sufficiently remaining biasing force thereof in the assembled state.
  • the second leg can also serve as a disassembly aid.
  • a threaded bore can be arranged.
  • the front site 25 may not have a threaded hole.
  • FIG. 6 shows one Exploded view of a section of the step belt 115 shown in half.
  • the step 114 itself does not differ from conventional steps, and therefore a more detailed description thereof is omitted.
  • a step axis 151 is arranged at the step 114, which has a pivot bearing 153 with two projections 133 at each of its ends 152 (only one end 152 shown).
  • the pivot bearing 153 is rotatably mounted on the step axis 151 so that the stage 114 can align during circulation to the rails, not shown.
  • the traction means 119 has chain links 121, wherein each two mutually parallel chain links 121 are connected by a shoulder 131 with each other. Also, this shoulder 131 has openings 140 for insertion of the projections 133.
  • the attachment 131 provided therewith corresponds to a step 114 for connecting the shoulder 131 and the projections 133 to the previously described wedge connector 32 a traction means 119 exactly in the FIGS. 2 to 4 illustrated fastening device 30 for connecting a pallet 14 with a traction means 19A, 19B.
  • a step belt or pallet belt may also have only one traction means, which is preferably arranged centrally of the steps or the pallets.

Landscapes

  • Escalators And Moving Walkways (AREA)

Claims (16)

  1. Dispositif de fixation (30, 130), destiné à relier une marche (114) d'un escalier roulant ou une palette (14) d'un trottoir roulant (11), comportant au moins un moyen de traction (19, 19A, 19B, 119), caractérisé en ce que le dispositif de fixation (30, 130) comprend un épaulement (31, 131), au moins un connecteur en coin (32) et au moins une saillie (33, 133), l'au moins une saillie (33, 133) saillant par un passage (40, 140) de l'épaulement (31, 131) lorsque le dispositif de fixation (30, 130) est monté, l'au moins un connecteur en coin (32) étant disposé au moins partiellement entre l'épaulement (31, 131) et la saillie (33, 133), et la marche (114) ou la palette (14) étant fixée par le biais du connecteur en coin au moyen de traction (19, 19A, 19B, 119) en étant précontrainte contre celui-ci.
  2. Dispositif de fixation (30, 130) selon la revendication 1, dans lequel le moyen de traction (19, 19A, 19B, 119) est une chaîne à articulations comportant des éclisses de chaîne (21, 121), lesquelles éclisses de chaîne (21, 121) sont reliées entre elles au moyen de points d'articulation (22), et un emplacement de réception (24) étant formé au niveau de chaque éclisse d'articulation (21, 121) à chaque fois entre deux points d'articulation (22), lequel emplacement de réception (24) est relié, à l'état monté, à une marche (114) ou une palette (14) associée.
  3. Dispositif de fixation (30, 130) selon la revendication 2, dans lequel l'au moins une saillie (33, 133) au niveau de la marche (114) ou de la palette (14) et l'épaulement (31, 131) sont formés dans la zone de l'emplacement de réception (24) de l'éclisse de chaîne (21, 121).
  4. Dispositif de fixation (30, 130) selon la revendication 3, dans lequel la marche (114) respectivement la palette (14) est limitée dans sa largeur par deux faces avant (25, 26) parallèles s'étendant dans la direction de mouvement prévue (X) de la marche (114) ou de la palette (14), et au moins une saillie (33, 133) est disposée sur chacune des deux faces avant (25, 26).
  5. Dispositif de fixation (30, 130) selon la revendication 2, dans lequel l'épaulement (31, 131) au niveau de la marche (114) ou de la palette (14) et l'au moins une saillie (33, 133) sont formés dans la zone de l'emplacement de réception (24) de l'éclisse de chaîne (21, 121).
  6. Dispositif de fixation (30, 130) selon la revendication 5, dans lequel la marche (114) respectivement la palette (14) est limitée dans sa largeur par deux faces avant (25, 26) parallèles s'étendant dans la direction de mouvement prévue de la marche (114) ou de la palette (14) et au moins un épaulement (31, 131) est disposé sur chacune des deux faces avant (25, 26).
  7. Dispositif de fixation (30, 130) selon l'une des revendications 2 à 6, dans lequel, dans la zone des points d'articulation (22), des galets de roulement (27) sont disposés au niveau du moyen de traction (19, 19A, 19B, 119).
  8. Dispositif de fixation (30, 130) selon l'une des revendications 1 à 7, dans lequel le connecteur en coin (32) comporte au moins une languette en coin (36) élastique, laquelle languette en coin (36) est disposée, à l'état monté, entre la saillie (33, 133) et l'épaulement (31, 131).
  9. Dispositif de fixation (30, 130) selon l'une des revendications 1 à 8, dans lequel le connecteur en coin (32) a une forme de L et comporte une première branche (34) et une seconde branche (35).
  10. Dispositif de fixation (30, 130) selon la revendication 9, dans lequel la première branche (34) comporte au moins un emplacement de réception (37) destiné à recevoir un ergot (42) de la saillie (33, 133) et un emplacement d'attache (47) destiné à un moyen de fixation (46) est formé au niveau de la seconde branche (35).
  11. Dispositif de fixation (30, 130) selon l'une des revendications 1 à 10, dans lequel un ergot (42) de la saillie (33, 133) est formé au moyen d'une rainure (41) ménagée au niveau de la saillie (33, 133).
  12. Dispositif de fixation (30, 130) selon l'une des revendications 1 à 11, dans lequel la marche (114) ou la palette (14) possède une surface de pas (27) et l'au moins un connecteur en coin (32) est inséré entre l'épaulement associé (31, 131) et la saillie associée (33, 133) dans une direction de montage (Y) parallèle à la surface de pas (27).
  13. Bande à marches (115) comportant deux moyens de traction (19, 19A, 19B, 119) et une pluralité de marches (114), caractérisée en ce que les marches (114) sont fixées aux moyens de traction (19, 19A, 19B, 119) à l'aide de dispositifs de fixation (30, 130) selon l'une des revendications 1 à 12.
  14. Bande à palettes (15) comportant deux moyens de traction (19, 19A, 19B, 119) et une pluralité de palettes (14), caractérisée en ce que les palettes (14) sont fixées aux moyens de traction (19, 19A, 19B, 119) à l'aide de dispositifs de fixation (30, 130) selon l'une des revendications 1 à 12.
  15. Escalier roulant comportant une bande à marches (115) selon la revendication 13 ou trottoir roulant (11) comportant une bande à palettes (15) selon la revendication 14.
  16. Procédé de modernisation d'un trottoir roulant (11) par remplacement de la bande à palettes existante par une bande à palettes (15) selon la revendication 14 ou de modernisation d'un escalier roulant par remplacement de la bande à marches existante par une bande à marches (115) selon la revendication 13.
EP14771843.1A 2013-10-23 2014-09-18 Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction Active EP3060511B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP14771843.1A EP3060511B1 (fr) 2013-10-23 2014-09-18 Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
EP13189806 2013-10-23
EP14771843.1A EP3060511B1 (fr) 2013-10-23 2014-09-18 Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction
PCT/EP2014/069857 WO2015058909A1 (fr) 2013-10-23 2014-09-18 Dispositif de fixation pour fixer une marche ou une palette à un moyen de traction

Publications (2)

Publication Number Publication Date
EP3060511A1 EP3060511A1 (fr) 2016-08-31
EP3060511B1 true EP3060511B1 (fr) 2018-05-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP14771843.1A Active EP3060511B1 (fr) 2013-10-23 2014-09-18 Dispositif de fixation pour la fixation d'un gradin ou d'une palette à un moyen de traction

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Country Link
US (1) US9682847B2 (fr)
EP (1) EP3060511B1 (fr)
CN (1) CN105683080B (fr)
ES (1) ES2674545T3 (fr)
WO (1) WO2015058909A1 (fr)

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EP3231760A1 (fr) 2016-04-15 2017-10-18 Otis Elevator Company Modules de fixation et palettes pour un convoyeur de palette
EP3231761B1 (fr) 2016-04-15 2019-02-20 Otis Elevator Company Convoyeur à palettes
TWI720212B (zh) * 2016-06-21 2021-03-01 瑞士商伊文修股份有限公司 將手扶梯或移動步道現代化之方法、用於此方法的裝置組合及新的橫樑
EP3269675B1 (fr) * 2016-07-15 2020-11-18 Otis Elevator Company Élément de transport pour un dispositif de transport de personnes
EP3511284B1 (fr) 2018-01-10 2021-09-15 Otis Elevator Company Trottoir roulant
EP3747822B1 (fr) 2019-06-03 2024-05-01 Otis Elevator Company Élément de transport pour un convoyeur de personnes
EP3747821B1 (fr) 2019-06-04 2024-11-27 Otis Elevator Company Convoyeurs de personnes à entraînement par courroie
EP4263411B1 (fr) * 2020-12-21 2024-06-19 Inventio Ag Dispositif de fixation de rail pour des sections de rail de guidage d'un escalier roulant ou d'un trottoir roulant

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US9682847B2 (en) 2017-06-20
ES2674545T3 (es) 2018-07-02
US20160257532A1 (en) 2016-09-08
WO2015058909A1 (fr) 2015-04-30
EP3060511A1 (fr) 2016-08-31
CN105683080A (zh) 2016-06-15
CN105683080B (zh) 2017-10-03

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