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CN116985263B - Mixing device for ceramic equipment - Google Patents

Mixing device for ceramic equipment Download PDF

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Publication number
CN116985263B
CN116985263B CN202311068007.2A CN202311068007A CN116985263B CN 116985263 B CN116985263 B CN 116985263B CN 202311068007 A CN202311068007 A CN 202311068007A CN 116985263 B CN116985263 B CN 116985263B
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China
Prior art keywords
plate
mixing drum
pipe
driving
mounting
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Application number
CN202311068007.2A
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Chinese (zh)
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CN116985263A (en
Inventor
黄长耀
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Lile Smart Manufacturing Guangdong Co ltd
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Lile Smart Manufacturing Guangdong Co ltd
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Priority to CN202311068007.2A priority Critical patent/CN116985263B/en
Publication of CN116985263A publication Critical patent/CN116985263A/en
Application granted granted Critical
Publication of CN116985263B publication Critical patent/CN116985263B/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28CPREPARING CLAY; PRODUCING MIXTURES CONTAINING CLAY OR CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28C3/00Apparatus or methods for mixing clay with other substances
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28CPREPARING CLAY; PRODUCING MIXTURES CONTAINING CLAY OR CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28C7/00Controlling the operation of apparatus for producing mixtures of clay or cement with other substances; Supplying or proportioning the ingredients for mixing clay or cement with other substances; Discharging the mixture
    • B28C7/0007Pretreatment of the ingredients, e.g. by heating, sorting, grading, drying, disintegrating; Preventing generation of dust

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  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention discloses a mixing device for ceramic equipment, which relates to the technical field of ceramic mixing equipment and has the advantage of being convenient for uniformly mixing ceramic raw materials, and the technical scheme is as follows: including fixed plate, mixing drum and the mounting panel of setting on the fixed plate top, coaxial rotation is connected with the pivot between top and the bottom in the mixing drum, is equipped with in the pivot if the interference moving plate, and one side rotation of mounting panel is connected with the drive shaft, and the mixing drum passes through the setting of mounting slope and deviates from one side of mounting panel at the drive shaft, is equipped with on the mounting panel and is used for driving the drive shaft rotation and drives the pivot simultaneously and drive the piece at mixing drum internal rotation's drive, and outer wall one side top of mixing drum is equipped with the material pipe with mixing drum intercommunication, is equipped with the stop valve on the material pipe, and the one end mouth of pipe that the mixing drum was kept away from to the material pipe up.

Description

Mixing device for ceramic equipment
Technical Field
The invention relates to the technical field of ceramic mixing equipment, in particular to a mixing device for ceramic equipment.
Background
Ceramics are a general term for pottery and porcelain, and common ceramic materials include clay, alumina, kaolin, and the like. Ceramic materials generally have higher hardness but poorer plasticity, and besides being used for tableware and decoration, ceramics play an important role in the development of science and technology.
At present, chinese patent application number on the market is CN201721659889.X discloses a multi-functional ration blendor is used in ceramic processing, including blendor body, spiral (mixing) shaft and feed bin, the bottom of blendor body is provided with the base, evenly distributed's damper and bottom plate elastic connection are passed through at the top of base, the top symmetry of bottom plate is provided with the support curb plate, and rotates through pivot and mixing silo between two support curb plates to be connected, the top of mixing silo is equipped with the electronic scale, and the central point department of electronic scale is equipped with the solenoid valve, the top of electronic scale is equipped with the feed bin, and the inside of mixing silo is provided with the spiral (mixing) shaft, and the bottom of spiral (mixing) shaft passes through the shaft coupling and is connected with first motor drive, and first motor passes through fixing bolt and mixing silo's bottom fixed connection.
The prior art solves the problems that the existing mixer is single in function and often cannot effectively mix ceramic raw materials, so that the production efficiency is low, and therefore, the applicant develops a new technical scheme in the actual production process to solve the technical problems.
Disclosure of Invention
The invention aims to provide a mixing device for ceramic equipment, which has the advantage of being convenient for uniformly mixing ceramic raw materials.
In order to solve the technical problems, the invention adopts the following technical scheme:
the invention provides a mixing device for ceramic equipment, which comprises a fixed plate, a mixing drum and a mounting plate arranged at the top end of the fixed plate, wherein a rotating shaft is coaxially and rotatably connected between the top end and the bottom end in the mixing drum, a driving shaft is rotatably connected to one side of the mounting plate if a moving plate is interfered on the rotating shaft, the mixing drum is obliquely arranged at one side of the driving shaft, which is away from the mounting plate, through a mounting piece, the mounting plate is provided with a driving piece for driving the driving shaft to rotate and simultaneously driving the rotating shaft to rotate in the mixing drum, a material pipe communicated with the mixing drum is arranged above one side of the outer wall of the mixing drum, a stop valve is arranged on the material pipe, and one end of the material pipe, which is far away from the mixing drum, faces upwards.
Through adopting above-mentioned technical scheme, during the use, open the stop valve and put into the blending tank through the material pipe with the raw materials, then close the stop valve, then drive the drive shaft through the driver and rotate and drive simultaneously the pivot in the blending tank internal rotation can, this moment install in the drive shaft because of the blending tank is through the installed part slope, so when the drive shaft rotates, the blending tank then can follow the drive shaft through the installed part and overturn along the axis of rotation of drive shaft, can mix the raw materials in the blending tank through the blending tank of upset this moment, drive the piece and drive the pivot and rotate in the blending tank when the blending tank upset, through a plurality of disturbance pieces of pivot and the blending tank of upset this moment, can be convenient for evenly mixing the raw materials in the blending tank, and is simple to use.
Preferably, the mounting comprises a vertical plate which is vertically arranged on one side of the driving shaft away from the mounting plate through a bolt and a horizontal plate which is horizontally arranged on the top end of the vertical plate, wherein a first mounting block is arranged at one end of the horizontal plate away from the vertical plate, a second mounting block opposite to the first mounting block is arranged below one side of the vertical plate, the mixing drum is fixedly connected between the first mounting block and the second mounting block, the vertical plate is connected with the horizontal plate through an inclined reinforcing rod, the reinforcing rod is parallel to the mixing drum, and the reinforcing rod and the vertical plate form a right triangle with the horizontal plate in a surrounding mode.
Preferably, the driver is including setting up the driving motor that is used for driving the drive shaft pivoted on the mounting panel, and driving motor sets up the one side that deviates from the drive shaft at the mounting panel, one side fixedly connected with solid fixed ring that the mounting panel is close to the blending tank, and gu fixed ring is located between vertical board and the mounting panel, gu fixed ring and the coaxial setting of drive shaft, the one end that the pivot is close to the second installation piece passes blending tank and second installation piece and is equipped with the driving disk, gu fixed ring is close to one side external diameter that the mounting panel is greater than gu fixed ring and keeps away from the mounting panel, one side diameter that the driving disk deviates from the pivot is greater than one side diameter that the driving disk is close to the pivot, at this moment along gu fixed ring's circumference evenly distributed have a plurality of first teeth on gu fixed ring's the outer wall, be equipped with a plurality of second teeth with first tooth meshing on the driving disk, and each second tooth is all along the circumference evenly distributed of driving disk.
Preferably, the material pipe comprises a first pipe vertically arranged at one end, close to the horizontal plate, of the mixing barrel, the top end of the first pipe penetrates through the horizontal plate and is provided with a second pipe, the inner diameter of the pipe opening at the top end of the second pipe is larger than that of the pipe opening at the bottom end of the second pipe, the stop valve is arranged on the first pipe, and a filter piece which is positioned above the second pipe and used for filtering raw materials is arranged on the horizontal plate.
Preferably, the filter element comprises a baffle rotationally connected above the second pipe, a baffle ring corresponding to the second pipe is arranged at the top end of the baffle, a plurality of filter holes are formed in the baffle, the filter holes are all located in the baffle ring, and when the rotating shaft rotates in the mixing barrel, a transmission assembly for driving the baffle plate to rotate is arranged on the rotating shaft.
Preferably, the transmission assembly is including rotating the steering column of connection on the horizontal plate top, baffle fixed connection is on the top of steering column, the one end that the pivot is close to first installation piece passes mixing drum and first installation piece and is equipped with the driving disk, coaxial fixedly connected with driven plate on the steering column, the diameter of one side that the driving disk deviates from the pivot is greater than the diameter of one side that the driving disk is close to the pivot, the top diameter of driven plate is greater than the bottom diameter of driven plate, at this moment on the driving disk along the circumference evenly distributed of driving disk have a plurality of third tooth, be equipped with a plurality of fourth tooth with third tooth engaged with on the driven plate, and each fourth tooth all follows the circumference evenly distributed of driven plate.
Preferably, the top of fixed plate is equipped with the baffle through the support frame slope, and the baffle is located the material pipe under, the collection box that is located baffle below one side is placed on the top of fixed plate, the baffle is kept away from the one end upward sloping of collection box.
Preferably, the fixing plate is provided with a support member opposite to the mounting plate and supporting the mixing tub.
Preferably, the support piece is including setting up the backup pad on the fixed plate top, the supporting groove has been seted up to one side of backup pad, and supporting groove and the top intercommunication of backup pad, one side that the blending tank deviates from the mounting panel is equipped with the back shaft coaxial with the drive shaft, and the one end level that the blending tank was kept away from to the back shaft passes from the supporting groove, coaxial rotation is connected with the supporting ring that is located the supporting groove on the back shaft, and the outer wall of supporting ring and the relative both sides cell wall of supporting groove and the bottom cell wall contact of supporting groove.
Preferably, the bottom four corners of fixed plate all is equipped with gyro wheel and vertical post, four the bottom of vertical post all is equipped with the screw thread groove, and equal threaded connection has the screw rod in four screw thread grooves, four the screw rod deviates from the one end of screw thread groove tank bottom and all extends to the screw thread groove outside and all rotates to be connected with the conflict board, four equal coaxial fixedly connected with is located the external rotating disk of screw thread groove on the screw rod.
The invention has the beneficial effects that: when the rotary mixer is used, the stop valve is opened to put raw materials into the mixing barrel through the material pipe, then the stop valve is closed, then the driving shaft is driven to rotate through the driving piece and simultaneously the rotating shaft is driven to rotate in the mixing barrel, at the moment, the mixing barrel is obliquely arranged on the driving shaft through the mounting piece, so that when the driving shaft rotates, the mixing barrel can overturn along the rotation axis of the driving shaft through the mounting piece, the raw materials in the mixing barrel can be mixed through the overturned mixing barrel, the driving piece drives the rotating shaft to rotate in the mixing barrel when the mixing barrel overturns, and at the moment, the raw materials in the mixing barrel can be uniformly mixed through a plurality of disturbance pieces on the rotating shaft and the overturned mixing barrel, so that the rotary mixer is simple and convenient to use.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the invention, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural view of the present embodiment;
fig. 2 is a schematic structural view of the reinforcing rod according to the present embodiment;
FIG. 3 is an enlarged schematic view of the portion A of FIG. 1;
FIG. 4 is an enlarged schematic view of the structure of the portion B in FIG. 2;
fig. 5 is a schematic structural view of the support frame according to the present embodiment;
fig. 6 is a schematic view of the structure when the pipe orifice is turned downward at the end of the pipe far from the mixing drum.
Reference numerals illustrate:
in the figure: 1. a fixing plate; 2. a mixing drum; 3. a mounting plate; 4. a rotating shaft; 5. a disturbance piece; 6. a drive shaft; 7. a material pipe; 8. a stop valve; 9. a bolt; 10. a vertical plate; 12. a horizontal plate; 13. a first mounting block; 14. a second mounting block; 15. a reinforcing rod; 16. a driving motor; 17. a fixing ring; 18. a drive plate; 19. a first tooth; 20. a second tooth; 21. a first tube; 22. a second tube; 23. a baffle; 24. a baffle ring; 26. a filter hole; 27. a rotating column; 28. a drive plate; 29. a driven plate; 30. a third tooth; 31. a fourth tooth; 32. a support frame; 33. a guide plate; 34. a collection box; 35. a support plate; 36. a support groove; 37. a support shaft; 38. a support ring; 39. a roller; 40. a vertical column; 41. a thread groove; 42. a screw; 43. a contact plate; 44. the disk is rotated.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The utility model provides a compounding device that ceramic equipment was used, as fig. 1 and 2, including fixed plate 1, mixing drum 2 and set up the mounting panel 3 on the fixed plate 1 top, coaxial rotation is connected with pivot 4 between top and the bottom in mixing drum 2, be equipped with in the pivot 4 if disturbing moving sheet 5, one side rotation of mounting panel 3 is connected with drive shaft 6, mixing drum 2 is through the setting of mounting slope in one side that drive shaft 6 deviates from mounting panel 3, be equipped with on the mounting panel 3 and be used for driving drive shaft 6 rotation and drive pivot 4 simultaneously in mixing drum 2 pivoted driving piece, outer wall one side top of mixing drum 2 is equipped with the material pipe 7 with mixing drum 2 intercommunication, be equipped with stop valve 8 on the material pipe 7, and the one end mouth of pipe that mixing drum 2 was kept away from to material pipe 7 is up.
When the mixer is used, as shown in fig. 1 and 2, the stop valve 8 is opened to put raw materials into the mixing barrel 2 through the material pipe 7, then the stop valve 8 is closed, then the driving shaft 6 is driven to rotate through the driving piece and the rotating shaft 4 is driven to rotate in the mixing barrel 2, at the moment, the mixing barrel 2 is obliquely arranged on the driving shaft 6 through the mounting piece, so that when the driving shaft 6 rotates, the mixing barrel 2 can turn over along the rotation axis of the driving shaft 6 through the mounting piece, at the moment, the raw materials in the mixing barrel 2 can be mixed through the turned-over mixing barrel 2, and when the mixing barrel 2 turns over, the driving piece drives the rotating shaft 4 to rotate in the mixing barrel 2, at the moment, the raw materials in the mixing barrel 2 can be uniformly mixed through the interference moving piece 5 on the rotating shaft 4 and the turned-over mixing barrel 2;
when the pipe 7 is turned downwards away from the pipe orifice at one end of the mixing barrel 2 along with the turning of the mixing barrel 2, and after the raw materials in the mixing barrel 2 are mixed (as shown in fig. 6), the driving part is closed, then the stop valve 8 is opened, and at the moment, the raw materials in the mixing barrel 2 can be discharged through the pipe 7;
when the mixing drum 2 is used for a long time or an external object collides with the mixing drum, and the damage of the mixing drum is required to be changed, the mixing drum 2 is detached from the driving shaft 6 through the mounting part, the whole device is not required to be replaced, the cost is saved, and the use is simple and convenient.
As shown in fig. 1 and 2, the mounting piece includes vertical board 10 and horizontal board 12 that the level set up on the vertical board 10 top of keeping away from mounting panel 3 side at drive shaft 6 through bolt 9, the one end that vertical board 10 was kept away from to horizontal board 12 is equipped with first installation piece 13, one side below of vertical board 10 is equipped with the second installation piece 14 that is opposite with first installation piece 13, mixing drum 2 fixed connection is between first installation piece 13 and second installation piece 14, connect through inclined stiffener 15 between vertical board 10 and the horizontal board 12, stiffener 15 is parallel with mixing drum 2, stiffener 15 and vertical board 10 and horizontal board 12 enclose right angled triangle this moment, this setting's aim at, when needs install mixing drum 2 on drive shaft 6, only need install vertical board 10 on drive shaft 6 through bolt 9, the simple dismantlement is convenient for installation, when drive shaft 6 rotates, mixing drum 2 then can rotate along drive shaft 6's axis of rotation through first installation piece 13 and second installation piece 14 and horizontal board 12, it is simple to use.
As shown in fig. 1 and 2, the driving piece comprises a driving motor 16 which is arranged on the mounting plate 3 and used for driving the driving shaft 6 to rotate, the driving motor 16 is arranged on one side, away from the driving shaft 6, of the mounting plate 3, one side, close to the mixing drum 2, of the mounting plate 3 is fixedly connected with a fixing ring 17, the fixing ring 17 is positioned between the vertical plate 10 and the mounting plate 3, the fixing ring 17 and the driving shaft 6 are coaxially arranged, one end, close to the second mounting block 14, of the rotating shaft 4 penetrates through the mixing drum 2 and the second mounting block 14 and is provided with a driving disc 18, the outer diameter of one side, close to the mounting plate 3, of the fixing ring 17 is larger than the outer diameter of one side, away from the mounting plate 3, of the fixing ring 17, is larger than the diameter of one side, close to the rotating shaft 4, of the driving disc 18, is provided with a plurality of first teeth 19 uniformly distributed along the circumference of the fixing ring 17, a plurality of second teeth 20 meshed with the first teeth 19 are arranged on the driving disc 18, and each second tooth 20 uniformly distributed along the circumference of the driving disc 18.
As shown in fig. 1 and fig. 2, when the driving shaft 6 needs to be driven to rotate and the rotating shaft 4 is driven to rotate in the mixing drum 2, only the driving motor 16 needs to be turned on, at this time, the rotating shaft of the driving motor 16 drives the driving shaft 6 to rotate, the mixing drum 2 rotates along the rotating axis of the driving shaft 6 along the driving shaft 6 through the first mounting block 13, the second mounting block 14, the horizontal plate 12 and the vertical plate 10, the mixing drum 2 drives the driving disc 18 to rotate along the rotating axis of the driving shaft 6 through the rotating shaft 4, at this time, the second teeth 20 on the driving disc 18 are meshed with the first teeth 19 on the fixing ring 17, and the fixing ring 17 is fixedly connected to the mounting plate 3, and the fixing ring 17 is coaxial with the driving shaft 6, so that when the mixing drum 2 drives the driving disc 18 to rotate along the rotating axis of the driving shaft 6 through the second teeth 20 on the driving disc 18 and the first teeth 19 on the fixing ring 17, the driving disc 18 can rotate in the mixing drum 2 along the rotating axis of the driving shaft 6, and the use is simple and convenient.
As shown in fig. 1, 2 and 4, the material pipe 7 comprises a first pipe 21 vertically arranged at one end of the mixing drum 2 near the horizontal plate 12, the top end of the first pipe 21 passes through the horizontal plate 12 and is provided with a second pipe 22, the top end pipe orifice inner diameter of the second pipe 22 is larger than the bottom end pipe orifice inner diameter of the second pipe 22, the stop valve 8 is arranged on the first pipe 21, the horizontal plate 12 is provided with a filter element which is arranged above the second pipe 22 and is used for filtering the raw materials, when the raw materials are required to be placed in the mixing drum 2, the raw materials are firstly placed in the filter element, the agglomerated raw materials in the raw materials can be filtered through the filter element, the non-agglomerated raw materials pass through the filter element and enter the second pipe 22, then enter the mixing drum 2 from the second pipe 22 through the first pipe 21, the agglomerated raw materials can be reduced through the filter element and then enter the mixing drum 2, the agglomerated raw materials can not be fully and uniformly mixed together, and the agglomerated raw materials stay on the filter element, so that the device is simple and convenient to use.
As shown in fig. 1, 2 and 4, the filter element comprises a baffle plate 23 rotatably connected above the second pipe 22, a baffle ring 24 corresponding to the second pipe 22 is arranged at the top end of the baffle plate 23, a plurality of filter holes 26 are formed in the baffle plate 23, each filter hole 26 is positioned in the baffle ring 24, when the rotating shaft 4 rotates in the mixing drum 2, a transmission component for driving the baffle plate 23 to rotate is arranged on the rotating shaft 4, the purpose of the arrangement is that when the pipe opening of one end of the second pipe 22 far away from the first pipe 21 faces upwards, the baffle ring 24 on the baffle plate 23 corresponds to the second pipe 22, at the moment, raw materials are placed in the baffle ring 24, the raw materials agglomerated in the raw materials can be filtered through each filter hole 26 positioned in the baffle ring 24 on the baffle plate 23, when the mixing drum 2 overturns and the rotating shaft 4 rotate, the baffle 23 then can follow the rotation axis rotation of mixing drum 2 along mixing drum 2 through horizontal plate 12, pivoted pivot 4 then can drive baffle 23 through drive assembly and rotate on horizontal plate 12, when mixing drum 2 upset makes the one end mouth of pipe that first pipe 21 was kept away from to second pipe 22 down, baffle 24 on baffle 23 then can rotate and leave second pipe 22 and second pipe 22 dislocation, can reduce first pipe 21 and second pipe 22 discharge raw materials this moment, the condition that baffle 23 influences second pipe 22 discharge raw materials takes place (as fig. 6), when mixing drum 2 upset makes the one end mouth of pipe that first pipe 21 was kept away from to second pipe 22 up again, baffle 24 on baffle 23 then can correspond with second pipe 22 again, it is simple to use.
As shown in fig. 1, fig. 2 and fig. 4, the transmission assembly comprises a rotating column 27 rotatably connected to the top end of the horizontal plate 12, a baffle 23 is fixedly connected to the top end of the rotating column 27, one end of the rotating shaft 4, which is close to the first mounting block 13, passes through the mixing drum 2 and the first mounting block 13 and is provided with a transmission disc 28, a driven disc 29 is coaxially and fixedly connected to the rotating column 27, the diameter of one side, which is away from the rotating shaft 4, of the transmission disc 28 is larger than the diameter of one side, which is close to the rotating shaft 4, of the transmission disc 28, the diameter of the top end of the driven disc 29 is larger than the diameter of the bottom end of the driven disc 29, at this time, a plurality of third teeth 30 are uniformly distributed on the upper edge of the transmission disc 28 in the circumferential direction of the transmission disc 28, a plurality of fourth teeth 31 meshed with the third teeth 30 are uniformly distributed on the driven disc 29, and each fourth tooth 31 is uniformly distributed in the circumferential direction of the driven disc 29.
As shown in fig. 1, fig. 2 and fig. 4, when the rotating shaft 4 rotates, the rotating shaft 4 drives the driving disc 28 to rotate, and at this time, because the third tooth 30 on the driving disc 28 is meshed with the fourth tooth 31 on the driven disc 29, when the driving disc 28 rotates, the driven disc 29 can be driven to rotate through the cooperation of the third tooth 30 on the driving disc 28 and the fourth tooth 31 on the driven disc 29, at this time, the driven disc 29 drives the rotating column 27 to rotate on the horizontal plate 12, and at this time, the baffle 23 can rotate along the rotation axis of the rotating column 27 along with the rotating column 27.
As shown in figure 1, the top of the fixed plate 1 is obliquely provided with a guide plate 33 through a supporting frame 32, the guide plate 33 is positioned under the material pipe 7, a collecting box 34 positioned at one side below the guide plate 33 is arranged at the top of the fixed plate 1, one end of the guide plate 33, which is far away from the collecting box 34, is inclined upwards, and the aim of the arrangement is that when the mouth of the material pipe 7 discharges the raw materials downwards, the discharged raw materials can fall onto the guide plate 33, then roll or slide towards the direction close to the collecting box 34 through the inclined guide plate 33 until the raw materials on the guide plate 33 fall into the collecting box 34, at the moment, the raw materials discharged from the material pipe 7 can be guided to one side below the mixing drum 2 through the guide plate 33, the raw materials can be collected through the collecting box 34, the raw materials are reduced to be directly discharged below the mixing drum 2, the condition of inconvenient collection is caused, and the use is simple and convenient.
As shown in fig. 1, the fixing plate 1 is provided with a support piece opposite to the mounting plate 3 and supporting the mixing drum 2, the mixing drum 2 can be supported by the support piece, the stability of the mixing drum 2 during turning movement can be improved, and the support piece can not influence the turning of the mixing drum 2, so that the use is simple and convenient.
As shown in fig. 1, fig. 2 and fig. 3, the support member comprises a support plate 35 disposed at the top end of the fixing plate 1, one side of the support plate 35 is provided with a support groove 36, and the support groove 36 is communicated with the top end of the support plate 35, one side of the mixing drum 2, which is away from the mounting plate 3, is provided with a support shaft 37 coaxial with the drive shaft 6, one end of the support shaft 37, which is far away from the mixing drum 2, horizontally passes through the support groove 36, a support ring 38 disposed in the support groove 36 is coaxially connected with the support shaft 37 in a rotating manner, and the outer wall of the support ring 38 is in contact with the opposite side groove walls of the support groove 36 and the bottom groove wall of the support groove 36, and the purpose of the arrangement is that, when the drive shaft 6 rotates, the mixing drum 2 drives the support shaft 37 to rotate, and at the moment, the support shaft 37 is coaxially disposed with the drive shaft 6, so that the turning motion of the mixing drum 2 is not influenced, and the outer wall of the support ring 38 is rotatably connected to the support shaft 37, and the outer wall of the support ring 38 is in contact with the opposite side groove walls of the support groove 36 and the bottom end of the support groove 36 on the support plate 35, so that the support shaft 35 is in contact with the support groove wall of the support shaft 36, and the support shaft 37.
As shown in fig. 1 and 5, the four corners of the bottom of the fixing plate 1 are respectively provided with a roller 39 and a vertical column 40, the bottoms of the four vertical columns 40 are respectively provided with a thread groove 41, the four thread grooves 41 are internally and respectively connected with a screw rod 42 in a threaded manner, one ends of the four screw rods 42, which deviate from the bottoms of the thread grooves 41, are respectively extended to the outside of the thread grooves 41 and respectively rotate and are respectively connected with a conflict plate 43, the four screw rods 42 are respectively and coaxially fixedly connected with a rotating disc 44 positioned outside the thread grooves 41, the roller 39 at the bottom of the fixing plate 1 can be used for conveniently moving the whole device, after moving to a proper position, the rotating discs 44 are rotated to drive the screw rods 42 to rotate, so that the screw rods 42 gradually rotate out of the thread grooves 41 until the conflict plates 43 on the screw rods 42 are in conflict with the ground, and the roller 39 is separated from the ground, meanwhile, the influence on the device due to the uneven ground can be reduced, and the use is simple and convenient.
It will be apparent to those skilled in the art that various modifications and variations can be made to the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention also include such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.

Claims (8)

1. The utility model provides a compounding device that ceramic equipment was used, its characterized in that includes fixed plate (1), mixing drum (2) and sets up mounting panel (3) on fixed plate (1) top, coaxial rotation is connected with pivot (4) between top and the bottom in mixing drum (2), be equipped with on pivot (4) if disturb moving plate (5), one side rotation of mounting panel (3) is connected with drive shaft (6), mixing drum (2) are through the setting of mounting slope one side that drive shaft (6) deviates from mounting panel (3), be equipped with on mounting panel (3) and be used for driving drive shaft (6) rotation and drive pivot (4) simultaneously at mixing drum (2) pivoted driving piece, mixing drum (2) outer wall one side top be equipped with mixing drum (2) intercommunication material pipe (7), be equipped with stop valve (8) on material pipe (7), and the one end mouth of pipe (7) of keeping away from mixing drum (2) up;
the mounting piece comprises a vertical plate (10) vertically mounted on one side, deviating from the mounting plate (3), of the driving shaft (6) through bolts (9) and a horizontal plate (12) horizontally arranged at the top end of the vertical plate (10), a first mounting block (13) is arranged at one end, far away from the vertical plate (10), of the horizontal plate (12), a second mounting block (14) opposite to the first mounting block (13) is arranged below one side of the vertical plate (10), the mixing drum (2) is fixedly connected between the first mounting block (13) and the second mounting block (14), the vertical plate (10) is connected with the horizontal plate (12) through an inclined reinforcing rod (15), the reinforcing rod (15) is parallel to the mixing drum (2), and at the moment, the reinforcing rod (15) is enclosed with the vertical plate (10) and the horizontal plate (12) to form a right triangle;
the driving piece comprises a driving motor (16) which is arranged on the mounting plate (3) and used for driving the driving shaft (6) to rotate, and the driving motor (16) is arranged at one side of the mounting plate (3) away from the driving shaft (6), one side of the mounting plate (3) close to the mixing barrel (2) is fixedly connected with a fixing ring (17), and the fixed ring (17) is positioned between the vertical plate (10) and the mounting plate (3), the fixed ring (17) and the driving shaft (6) are coaxially arranged, one end of the rotating shaft (4) close to the second mounting block (14) penetrates through the mixing drum (2) and the second mounting block (14) and is provided with a driving disc (18), the outer diameter of one side of the fixed ring (17) close to the mounting plate (3) is larger than the outer diameter of one side of the fixed ring (17) far away from the mounting plate (3), the diameter of one side of the driving disc (18) deviating from the rotating shaft (4) is larger than the diameter of one side of the driving disc (18) close to the rotating shaft (4), at the moment, a plurality of first teeth (19) are uniformly distributed on the outer wall of the fixed ring (17) along the circumferential direction of the fixed ring (17), the driving disk (18) is provided with a plurality of second teeth (20) meshed with the first teeth (19), and each second tooth (20) is uniformly distributed along the circumference of the driving disk (18).
2. A mixing device for ceramic equipment according to claim 1, characterized in that the material pipe (7) comprises a first pipe (21) vertically arranged at one end of the mixing drum (2) close to the horizontal plate (12), the top end of the first pipe (21) penetrates through the horizontal plate (12) and is provided with a second pipe (22), the inner diameter of the top end pipe orifice of the second pipe (22) is larger than that of the bottom end pipe orifice of the second pipe (22), the stop valve (8) is arranged on the first pipe (21), and a filter piece which is arranged above the second pipe (22) and is used for filtering raw materials is arranged on the horizontal plate (12).
3. A mixing device for ceramic equipment according to claim 2, characterized in that the filter element comprises a baffle plate (23) rotatably connected above the second pipe (22), a baffle ring (24) corresponding to the second pipe (22) is arranged at the top end of the baffle plate (23), a plurality of filter holes (26) are formed in the baffle plate (23), each filter hole (26) is located in the baffle ring (24), and when the rotary shaft (4) rotates in the mixing drum (2), a transmission assembly for driving the baffle plate (23) to rotate is arranged on the rotary shaft (4).
4. A mixing device for ceramic equipment according to claim 3, characterized in that the transmission assembly comprises a rotating column (27) rotatably connected to the top end of the horizontal plate (12), the baffle (23) is fixedly connected to the top end of the rotating column (27), one end of the rotating shaft (4) close to the first mounting block (13) penetrates through the mixing drum (2) and the first mounting block (13) and is provided with a transmission disc (28), a driven disc (29) is fixedly connected to the rotating column (27) coaxially, the diameter of one side of the transmission disc (28) deviating from the rotating shaft (4) is larger than the diameter of one side of the transmission disc (28) close to the rotating shaft (4), the diameter of the top end of the driven disc (29) is larger than the diameter of the bottom end of the driven disc (29), at this time, a plurality of third teeth (30) are uniformly distributed on the upper edge of the transmission disc (28), a plurality of fourth teeth (31) meshed with the third teeth (30) are arranged on the driven disc (29), and the driven discs (31) are uniformly distributed along the circumference of the driven disc (29).
5. A mixing device for ceramic equipment according to claim 1, characterized in that the top end of the fixing plate (1) is provided with a guide plate (33) in an inclined manner through a supporting frame (32), the guide plate (33) is positioned right below the material pipe (7), the top end of the fixing plate (1) is provided with a collecting box (34) positioned on one side below the guide plate (33), and one end of the guide plate (33) away from the collecting box (34) is inclined upwards.
6. A mixing device for ceramic equipment according to claim 1, characterized in that the fixing plate (1) is provided with a support element opposite to the mounting plate (3) and supporting the mixing bowl (2).
7. A mixing device for ceramic equipment according to claim 6, characterized in that the support member comprises a support plate (35) arranged at the top end of the fixing plate (1), a support groove (36) is formed in one side of the support plate (35), the support groove (36) is communicated with the top end of the support plate (35), a support shaft (37) coaxial with the drive shaft (6) is arranged on one side of the mixing drum (2) away from the mounting plate (3), one end of the support shaft (37) far away from the mixing drum (2) horizontally penetrates through the support groove (36), a support ring (38) positioned in the support groove (36) is coaxially connected to the support shaft (37) in a rotating mode, and the outer wall of the support ring (38) is in contact with the groove walls on two opposite sides of the support groove (36) and the groove wall at the bottom end of the support groove (36).
8. Mixing device for ceramic equipment according to claim 1, characterized in that the four corners of the bottom end of the fixing plate (1) are respectively provided with a roller (39) and a vertical column (40), the bottom ends of four vertical columns (40) are respectively provided with a thread groove (41), the four thread grooves (41) are internally and respectively connected with a screw rod (42), one ends of the four screw rods (42) deviating from the bottoms of the thread grooves (41) are respectively extended out of the thread grooves (41) and respectively connected with a contact plate (43) in a rotating way, and the four screw rods (42) are respectively and coaxially fixedly connected with a rotating disc (44) positioned outside the thread grooves (41).
CN202311068007.2A 2023-08-23 2023-08-23 Mixing device for ceramic equipment Active CN116985263B (en)

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CN116985263B true CN116985263B (en) 2024-04-05

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1386571A (en) * 2001-04-05 2002-12-25 梅田工业株式会社 Stirring mixer
CN201573279U (en) * 2009-12-11 2010-09-08 佛山市南海金刚新材料有限公司 Special vertical mixer for ceramic rolling rod blanks
CN206748726U (en) * 2017-06-01 2017-12-15 鹰牌陶瓷实业(河源)有限公司 A kind of blender for ceramic production line
CN210910573U (en) * 2019-09-23 2020-07-03 济源市东方自动化设备有限公司 Ceramic powder mixing device
CN113650162A (en) * 2021-09-10 2021-11-16 广州市苏恩利混凝土有限公司 Cohesion formula agitating unit for concrete

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1386571A (en) * 2001-04-05 2002-12-25 梅田工业株式会社 Stirring mixer
CN201573279U (en) * 2009-12-11 2010-09-08 佛山市南海金刚新材料有限公司 Special vertical mixer for ceramic rolling rod blanks
CN206748726U (en) * 2017-06-01 2017-12-15 鹰牌陶瓷实业(河源)有限公司 A kind of blender for ceramic production line
CN210910573U (en) * 2019-09-23 2020-07-03 济源市东方自动化设备有限公司 Ceramic powder mixing device
CN113650162A (en) * 2021-09-10 2021-11-16 广州市苏恩利混凝土有限公司 Cohesion formula agitating unit for concrete

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