CN211247127U - Wheel surface gluing equipment - Google Patents

Wheel surface gluing equipment Download PDF

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Publication number
CN211247127U
CN211247127U CN201921871178.8U CN201921871178U CN211247127U CN 211247127 U CN211247127 U CN 211247127U CN 201921871178 U CN201921871178 U CN 201921871178U CN 211247127 U CN211247127 U CN 211247127U
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China
Prior art keywords
wheel
module
glue
sliding seat
centering
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CN201921871178.8U
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Chinese (zh)
Inventor
招雪健
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Golden Wheel Technology Co ltd
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Golden Wheel Technology Co ltd
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Priority to CN201921871178.8U priority Critical patent/CN211247127U/en
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Abstract

The utility model aims at providing a rubberizing equipment on wheel surface full automatization, easy and simple to handle and work efficiency is high. The utility model discloses a board, carousel and controller, carousel normal running fit is in on the board, the controller sets up on the board, the board is provided with rubberizing mechanism, rubberizing mechanism with the carousel all with controller signal connection, rubberizing mechanism includes rubber roll rubberizing module and the rotatory module of first centering, works as first centering rotatory module with when the wheel on the carousel is fit for mutually, the rotatory module of first centering drives the wheel rotates, the rubber roll rubberizing module is to the surface of wheel carries out the rubberizing. The utility model discloses be applied to the production field of wheel.

Description

Wheel surface gluing equipment
Technical Field
The utility model discloses be applied to the production field of wheel, in particular to rubberizing equipment on wheel surface.
Background
In the production process of the wheel, the wheel hub needs to be glued, but the existing gluing mode is manual gluing, so that the gluing efficiency is low, the labor cost is high, and the development of enterprises is not facilitated. If a gluing device for the surface of the wheel, which is full-automatic, simple and convenient to operate and high in working efficiency, can be designed, the problems can be well solved.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome prior art not enough, provide a rubberizing equipment on wheel surface full automatization, easy and simple to handle and work efficiency is high.
The utility model adopts the technical proposal that: the utility model discloses a board, carousel and controller, carousel normal running fit is in on the board, the controller sets up on the board, the board is provided with rubberizing mechanism, rubberizing mechanism with the carousel all with controller signal connection, rubberizing mechanism includes rubber roll rubberizing module and the rotatory module of first centering, works as first centering rotatory module with when the wheel on the carousel is fit for mutually, the rotatory module of first centering drives the wheel rotates, the rubber roll rubberizing module is to the surface of wheel carries out the rubberizing.
According to the scheme, the controller is used for controlling the operation of the turntable, the rubber roller gluing module and the first centering rotation module in a full-automatic mode, when the first centering rotation module is matched with the wheel on the turntable, the wheel can perform centering rotation on the turntable under the action of the first centering rotation module, the rotating rubber roller on the rubber roller gluing module glues the surface of the wheel, the surface of the wheel can be glued quickly, stably and uniformly, and when a plurality of wheels are placed on the turntable, the surfaces of the wheels can be glued by the rubber roller gluing module in sequence under the action of interval rotation of the turntable, so that the gluing efficiency of the wheels is greatly improved, and the labor cost in the production process is greatly reduced.
Further, a gluing equipment on wheel surface is still including clearance mechanism, clearance mechanism sets up on the board, clearance mechanism with controller signal connection, clearance mechanism includes frictioning module and the rotatory module of second centering, works as the rotatory module of second centering with when the wheel is fit for, the rotatory module of second centering drives the wheel rotates, the frictioning module is right the clearance of scraping glue is carried out to the upper and lower both sides face of wheel. Therefore, after the surface of the wheel is glued, a certain amount of glue can be remained on the upper side surface and the lower side surface of the wheel, and subsequent assembly of the wheel can be influenced.
Further, the rubber roll gluing module comprises a rubber roll assembly and a glue supply assembly, the glue supply assembly comprises a first slide rail, a glue groove and a first stepping motor, the first slide rail is arranged on the machine table, the glue groove is in transmission connection with the first stepping motor, the first stepping motor is in signal connection with the controller, and the glue groove is in horizontal sliding fit on the slide rail.
Further, the rubber roller subassembly includes first sliding seat, rubber roll, axis of rotation, first cylinder, second step motor and second slide rail, the second slide rail sets up on the board, the second step motor with first sliding seat transmission is connected, first sliding seat horizontal sliding fit is in on the second slide rail, first cylinder sets up on the first sliding seat, the axis of rotation with first cylinder transmission is connected, the rubber roll normal running fit is in the axis of rotation, first cylinder with the second step motor all with controller signal connection, works as when during the rubberizing module operation, the rubber roll passes through the axis of rotation rotates to the up end in gluey groove.
According to the scheme, a certain amount of glue is added into the glue groove, when the glue groove slides forwards through the first sliding rail, the glue roller on the first sliding seat rotates to the upper end face of the glue groove through the rotating shaft to be stained with glue, then the glue groove rotates to the initial position through the rotating shaft, meanwhile, the glue groove slides backwards to return to the initial position, finally, the first sliding seat slides forwards through the second sliding rail until the glue roller is attached to the wheel, after the glue roller is matched with the wheel in a rolling mode, the wheel can be uniformly stained with the glue, the first sliding seat slides backwards to return to the initial position to be stained with the glue on the glue groove again, and therefore circulation is achieved, full automation of machinery is achieved, the problem that manual gluing is low in efficiency is solved, and production efficiency of enterprises is greatly improved.
Further, the frictioning module includes second sliding seat, third slide rail, second cylinder and two blades, the third slide rail sets up on the board, the second sliding seat with the transmission of second cylinder is connected, the horizontal sliding fit of second sliding seat is in on the third slide rail, two the blade all sets up on the second sliding seat, the second cylinder with controller signal connection works as when the frictioning module operation, two the blade respectively with the last side and the downside of wheel laminate mutually. Therefore, when the second sliding seat slides forwards through the third sliding rail, the two blades are respectively attached to the upper side face and the lower side face of the wheel in a rotating state, so that the rubber material remained on the two side faces of the wheel can be comprehensively cleaned, the integral neatness of the wheel is ensured, and the influence of the rubber material remained on the two side faces of the wheel on subsequent assembly is avoided.
Still further, the first centering rotating module and the second centering rotating module both comprise a supporting frame, a third sliding seat, a fourth sliding rail, a third cylinder and a rotating rod, the supporting frame is arranged on the machine table, the fourth sliding rail is arranged on the supporting frame, the third sliding seat is in transmission connection with the third cylinder, the third sliding seat is vertically matched on the fourth sliding rail in a sliding way, the rotating rod is connected with the third sliding seat through a connecting shaft and is positioned below the third sliding seat, the rotating rod is in transmission connection with a third stepping motor, the rotating rod is in rotating fit with the connecting shaft, the third air cylinder and the third stepping motor are in signal connection with the controller, when the first centering rotating module and the second centering rotating module operate, the lower end of the rotating rod is matched with the central through hole of the wheel. Therefore, when the first centering rotary module or the second centering rotary module operates, the third sliding seat slides downwards through the fourth sliding rail until the lower end of the rotary rod is matched with the central through hole of the wheel, the rotary rod rotates under the driving of the third stepping motor at the moment, and the wheel is driven to rotate.
Still further, the top in gluey groove is provided with keeps off gluey subassembly, keep off gluey subassembly including fixed column, fixed plate and baffle, the fixed column is fixed on the board, the fixed plate is fixed on the fixed column and be located the top in gluey groove, the upper end of baffle is fixed the lower terminal surface of fixed plate, the lower extreme of baffle is close to the up end in gluey groove. Therefore, when the rubber roll is transferred to the rubber groove to be stained with rubber, in order to avoid the waste of rubber dripping and rubber leakage caused by excessive gum staining of the rubber roll, the baffle is arranged above the rubber groove, because the lower end of the baffle is close to the upper end face of the rubber groove, and the distance between the lower end of the baffle and the upper end face of the rubber groove is within a proper range, when the rubber groove slides forwards, the rubber material in the front half part of the rubber groove can become a layer of rubber material with proper thickness, at the moment, the rubber roll rotates to the front half part of the rubber groove to be stained with rubber and glued, and the waste phenomenon of rubber dripping and rubber leakage of the rubber roll is well avoided.
Still further, a plurality of positioning columns are arranged on the upper end face of the rotary table and are uniformly distributed on the periphery of the rotary table, and the upper ends of the positioning columns are matched with the central through holes of the wheels. Therefore, the upper ends of the positioning columns are matched with the central through holes of the wheels, so that the plurality of wheels can be placed on the rotary table, and the rotary table rotates under the control of the controller, so that the wheels on the rotary table can be glued and scraped.
Still further, a rubberizing equipment on wheel surface is still including correlation formula sensor, correlation formula sensor with controller signal connects, correlation formula sensor includes transmitter and receiver, the transmitter sets up on the board, the receiver sets up on the carousel, the output of transmitter with the input of receiver sets up relatively, works as when the carousel is rotatory, a plurality of the wheel all is located in proper order the transmitter with between the receiver.
According to the scheme, if the wheels are properly arranged on the positioning columns, the infrared signals emitted by the emitters are blocked by the wheels, the receivers cannot receive the infrared signals, the wheels are properly arranged on the positioning columns, and the programs of the controllers automatically control the rotating discs to rotate; if the locating column does not have the wheel of fit on, then the infrared ray signal that the transmitter sent just can be received smoothly to the receiver, and the controller procedure will send out the warning suggestion staff this moment. Thus, the correlation sensor can be prepared to determine whether the positioning post is fitted with a wheel.
Still further, still be provided with the injecting glue jar on the board, be provided with on the fixed plate and spout gluey ware, spout gluey ware spout gluey end with the up end in gluey groove sets up relatively, the injecting glue jar through the confession rubber tube with spout gluey ware and be linked together. Therefore, the glue spraying end of the glue sprayer is arranged opposite to the upper end face of the glue groove, the glue injection tank is communicated with the glue sprayer through the glue supply pipe, therefore, when the glue on the glue groove is insufficient, the valve of the glue sprayer can be opened, the glue can be conveyed to the glue sprayer through the glue supply pipe by the glue injection tank, and then the glue can be sprayed to the glue groove by the glue sprayer, so that the supply and demand of the sufficient glue can be guaranteed.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the glue applicator module;
FIG. 3 is a perspective view of the squeegee module;
fig. 4 is a perspective view of the first centering rotation module.
Detailed Description
As shown in fig. 1, in this embodiment, the utility model discloses a board 1, carousel 2 and controller 3, 2 normal running fits of carousel are in on the board 1, controller 3 sets up on the board 1, board 1 is provided with rubberizing mechanism, rubberizing mechanism with carousel 2 all with 3 signal connection of controller, rubberizing mechanism includes rubber roll rubberizing module 4 and first centering rotation module 5, works as first centering rotation module 5 with when the wheel on the carousel 2 suits, first centering rotation module 5 drives the wheel rotates, rubber roll rubberizing module 4 is right the surface of wheel is rubberized.
As shown in fig. 1, in this embodiment, a rubberizing equipment on wheel surface still includes clearance mechanism, clearance mechanism sets up on the board 1, clearance mechanism with 3 signal connection of controller, clearance mechanism includes frictioning module 6 and the rotatory module 7 of second centering, works as the rotatory module 7 of second centering with the wheel is when fitting mutually, the rotatory module 7 of second centering drives the wheel rotates, frictioning module 6 is right the clearance of frictioning is carried out to the upper and lower both sides face of wheel.
As shown in fig. 1 and fig. 2, in this embodiment, the glue roller gluing module 4 includes a glue roller assembly 41 and a glue supply assembly 42, the glue supply assembly 42 includes a first slide rail 421, a glue groove 422 and a first stepping motor 423, the first slide rail 421 is disposed on the machine platform 1, the glue groove 422 is in transmission connection with the first stepping motor 423, the first stepping motor 423 is in signal connection with the controller 3, and the glue groove 422 is in horizontal sliding fit with the first slide rail 421.
As shown in fig. 1 and fig. 2, in this embodiment, the glue roller assembly 41 includes a first sliding seat 411, a glue roller 412, a rotating shaft 413, a first air cylinder 414, a second stepping motor 415, and a second sliding rail 416, the second sliding rail 416 is disposed on the machine platform 1, the second stepping motor 415 is in transmission connection with the first sliding seat 411, the first sliding seat 411 is horizontally and slidably fitted on the second sliding rail 416, the first air cylinder 414 is disposed on the first sliding seat 411, the rotating shaft 413 is in transmission connection with the first air cylinder 414, the glue roller 412 is rotatably fitted on the rotating shaft 413, both the first air cylinder 414 and the second stepping motor 415 are in signal connection with the controller 3, and when the glue roller gluing module 4 operates, the glue roller 412 rotates to an upper end surface of the glue groove 422 through the rotating shaft 413.
As shown in fig. 1 and 3, in this embodiment, the frictioning module 6 includes a second sliding seat 61, a third sliding rail 62, a second cylinder 63 and two blades 64, the third sliding rail 62 is disposed on the machine platform 1, the second sliding seat 61 is in transmission connection with the second cylinder 63, the second sliding seat 61 is in horizontal sliding fit on the third sliding rail 62, the two blades 64 are both disposed on the second sliding seat 61, the second cylinder 63 is in signal connection with the controller 3, and when the frictioning module 6 operates, the two blades 64 are respectively attached to the upper side and the lower side of the wheel.
As shown in fig. 1 and 4, in this embodiment, each of the first centering rotary module 5 and the second centering rotary module 7 includes a support frame 51, a third sliding seat 52, a fourth sliding rail 53, a third air cylinder 54, and a rotary rod 55, the support frame 51 is disposed on the machine platform 1, the fourth sliding rail 53 is disposed on the support frame 51, the third sliding seat 52 is in transmission connection with the third air cylinder 54, the third sliding seat 52 is vertically and slidably fitted on the fourth sliding rail 53, the rotary rod 55 is connected with the third sliding seat 52 through a connecting shaft 56 and is located below the third sliding seat 52, the rotary rod 55 is in transmission connection with a third stepper motor, the rotary rod 55 is in rotational fit on the connecting shaft 56, the third air cylinder 54 and the third stepper motor are both in signal connection with the controller 3, and when the first centering rotary module 5 and the second centering rotary module 7 operate, the lower end of the rotating rod 55 is fitted with the central through hole of the wheel.
As shown in fig. 1 and fig. 2, in this embodiment, a glue blocking assembly 8 is disposed above the glue groove 422, the glue blocking assembly 8 includes a fixing column 81, a fixing plate 82 and a baffle 83, the fixing column 81 is fixed on the machine table 1, the fixing plate 82 is fixed on the fixing column 81 and located above the glue groove 422, an upper end of the baffle 83 is fixed on a lower end surface of the fixing plate 82, and a lower end of the baffle 83 is close to an upper end surface of the glue groove 422.
As shown in fig. 1, in this embodiment, a plurality of positioning pillars 9 are disposed on an upper end surface of the turntable 2, the positioning pillars 9 are uniformly distributed around the turntable 2, and an upper end of each positioning pillar 9 is matched with a central through hole of each wheel.
As shown in fig. 1, in this embodiment, the sizing apparatus for a wheel surface further includes an opposite-type sensor 10, the opposite-type sensor 10 is in signal connection with the controller 3, the opposite-type sensor 10 includes a transmitter 101 and a receiver 102, the transmitter 101 is disposed on the machine platform 1, the receiver 102 is disposed on the turntable 2, an output end of the transmitter 101 is disposed opposite to an input end of the receiver 102, and when the turntable 2 rotates, a plurality of wheels are sequentially disposed between the transmitter 101 and the receiver 102.
As shown in fig. 1, in this embodiment, the machine table 1 is further provided with a glue injection tank 11, the fixing plate 82 is provided with a glue sprayer 13, a glue spraying end of the glue sprayer 13 is opposite to an upper end surface of the glue groove 422, and the glue injection tank 11 is communicated with the glue sprayer 13 through a glue supply pipe.
As shown in fig. 1 to 4, in this embodiment, the working principle of the present invention is as follows:
when the utility model discloses when starting to operate, carousel 2 at first can with wheel 12 takes to first centering rotation module 5 the below of rotatory stick 55, and at this moment gluey groove 422 passes through first slide rail 421 forward slides, on the first sliding seat 411 the rubber roll 412 will pass through axis of rotation 413 rotates to gluey groove 422's up end is stained with gluey, then the rethread axis of rotation 413 rotates to initial position, at the same time gluey groove 422 also can slide backward and get back to initial position, rotatory stick 55 can move down under the drive of the third sliding seat 52 of first centering rotation module 5 until with the central through-hole looks adaptation of wheel 12, and rotatory stick 55 can rotate under the effect of third step motor, consequently can drive wheel 12 rotates together, at last first sliding seat 411 slides forward through second slide rail 416 until the rubber roll 412 with wheel 12 laminates mutually After the rubber roller 412 is matched with the wheel 12 in a rolling manner, the wheel 12 can be uniformly stained with the rubber material, the first sliding seat 411 slides backwards to return to the initial position to be stained with the rubber material on the rubber groove 422 again, and the rotary table 2 can continuously drive the next wheel 12 to be positioned below the rotating rod 55, so that the circulation is realized, the full automation of machinery is realized, the problem of low efficiency of manual sizing is solved, and the production efficiency of enterprises is greatly improved.
Similarly, the turntable 2 will continue to bring the glued wheel 12 under the rotating rod 55 of the second centering and rotating module 7, the rotating rod 55 will move downwards under the driving of the third sliding seat 52 of the second centering and rotating module 7 until it fits into the central through hole of the wheel 12, the rotating rod 55 will rotate under the driving of the third stepping motor, so as to drive the glued wheel 12 to rotate together, the second sliding seat 61 will slide forwards through the third sliding rail 62, and the two blades 64 will respectively fit with the upper side and the lower side of the wheel 12, so that the glue remained on both sides of the wheel 12 can be completely cleaned.

Claims (10)

1. The utility model provides a rubberizing equipment on wheel surface, it includes board (1), carousel (2) and controller (3), carousel (2) normal running fit is in on board (1), controller (3) set up on board (1), its characterized in that: board (1) is provided with rubberizing mechanism, rubberizing mechanism with carousel (2) all with controller (3) signal connection, rubberizing mechanism includes rubber roll rubberizing module (4) and first rotatory module of centering (5), works as first rotatory module of centering (5) with when the wheel on carousel (2) suits mutually, first rotatory module of centering (5) drives the wheel rotates, rubber roll rubberizing module (4) are right the rubberizing is carried out on the surface of wheel.
2. A wheel surface sizing apparatus according to claim 1, wherein: a wheel sub-surface rubberizing equipment is still including clearance mechanism, clearance mechanism sets up on board (1), clearance mechanism with controller (3) signal connection, clearance mechanism includes frictioning module (6) and second centering rotation module (7), works as second centering rotation module (7) with when the wheel is fit for mutually, second centering rotation module (7) drives the wheel rotates, frictioning module (6) are right the clearance of scraping gluey is carried out to the upper and lower both sides face of wheel.
3. A wheel surface sizing apparatus according to claim 1, wherein: glue module (4) are glued including rubber roll subassembly (41) and confession and are glued subassembly (42), supply to glue subassembly (42) including first slide rail (421), gluey groove (422) and first step motor (423), first slide rail (421) set up on board (1), glue groove (422) with first step motor (423) transmission is connected, first step motor (423) with controller (3) signal connection, gluey groove (422) horizontal sliding fit is in on first slide rail (421).
4. A wheel surface sizing apparatus according to claim 3, wherein: the glue roller assembly (41) comprises a first sliding seat (411), a glue roller (412), a rotating shaft (413), a first air cylinder (414), a second stepping motor (415) and a second sliding rail (416), the second sliding rail (416) is arranged on the machine table (1), the second stepping motor (415) is in transmission connection with the first sliding seat (411), the first sliding seat (411) is in horizontal sliding fit on the second sliding rail (416), the first air cylinder (414) is arranged on the first sliding seat (411), the rotating shaft (413) is in transmission connection with the first air cylinder (414), the glue roller (412) is in rotating fit on the rotating shaft (413), the first air cylinder (414) and the second stepping motor (415) are in signal connection with the controller (3), when the glue roller gluing module (4) runs, the rubber roller (412) rotates to the upper end face of the rubber groove (422) through the rotating shaft (413).
5. A wheel surface sizing apparatus according to claim 2, wherein: frictioning module (6) includes second sliding seat (61), third slide rail (62), second cylinder (63) and two blade (64), third slide rail (62) set up on board (1), second sliding seat (61) with second cylinder (63) transmission is connected, second sliding seat (61) horizontal sliding fit is in on third slide rail (62), two blade (64) all set up on second sliding seat (61), second cylinder (63) with controller (3) signal connection, works as when frictioning module (6) moves, two blade (64) respectively with the last side and the downside of wheel are laminated mutually.
6. A wheel surface sizing apparatus according to claim 2, wherein: the first centering and rotating module (5) and the second centering and rotating module (7) respectively comprise a support frame (51), a third sliding seat (52), a fourth sliding rail (53), a third air cylinder (54) and a rotating rod (55), the support frame (51) is arranged on the machine table (1), the fourth sliding rail (53) is arranged on the support frame (51), the third sliding seat (52) is in transmission connection with the third air cylinder (54), the third sliding seat (52) is vertically in sliding fit with the fourth sliding rail (53), the rotating rod (55) is connected with the third sliding seat (52) through a connecting shaft (56) and is positioned below the third sliding seat (52), the rotating rod (55) is in transmission connection with a third step motor, the rotating rod (55) is in rotating fit with the connecting shaft (56), and the third air cylinder (54) and the third step motor are in signal connection with the controller (3), when the first centering rotating module (5) and the second centering rotating module (7) operate, the lower end of the rotating rod (55) is matched with the central through hole of the wheel.
7. A wheel surface sizing apparatus according to claim 3, wherein: glue the top in groove (422) and be provided with and keep off gluey subassembly (8), keep off gluey subassembly (8) including fixed column (81), fixed plate (82) and baffle (83), fixed column (81) are fixed on board (1), fixed plate (82) are fixed on fixed column (81) and be located glue the top in groove (422), the upper end of baffle (83) is fixed the lower terminal surface of fixed plate (82), the lower extreme of baffle (83) is close to glue the up end in groove (422).
8. A wheel surface sizing apparatus according to claim 1, wherein: the upper end face of carousel (2) is provided with a plurality of reference column (9), a plurality of reference column (9) evenly distributed is in the periphery of carousel (2), the upper end of reference column (9) with the central through-hole looks adaptation of wheel.
9. A wheel surface sizing apparatus according to claim 8, wherein: the utility model provides a rubberizing equipment on wheel surface still is including correlation formula sensor (10), correlation formula sensor (10) with controller (3) signal connection, correlation formula sensor (10) are including transmitter (101) and receiver (102), transmitter (101) set up on board (1), receiver (102) set up on carousel (2), the output of transmitter (101) with the input of receiver (102) sets up relatively, works as when carousel (2) is rotatory, a plurality of the wheel all is located in proper order transmitter (101) with between receiver (102).
10. An apparatus for sizing a wheel surface according to claim 7, wherein: still be provided with on board (1) and annotate gluey jar (11), be provided with on fixed plate (82) and spout gluey ware (13), spout gluey ware (13) spout glue hold with the up end of gluing groove (422) sets up relatively, annotate gluey jar (11) through the confession rubber pipe with spout gluey ware (13) and be linked together.
CN201921871178.8U 2019-11-01 2019-11-01 Wheel surface gluing equipment Active CN211247127U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921871178.8U CN211247127U (en) 2019-11-01 2019-11-01 Wheel surface gluing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921871178.8U CN211247127U (en) 2019-11-01 2019-11-01 Wheel surface gluing equipment

Publications (1)

Publication Number Publication Date
CN211247127U true CN211247127U (en) 2020-08-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921871178.8U Active CN211247127U (en) 2019-11-01 2019-11-01 Wheel surface gluing equipment

Country Status (1)

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CN (1) CN211247127U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112718366A (en) * 2020-12-10 2021-04-30 珠海烯蟀科技有限公司 Graphene coating brushing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112718366A (en) * 2020-12-10 2021-04-30 珠海烯蟀科技有限公司 Graphene coating brushing device

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