CN216624373U - Two side coating machines suitable for small-size battery - Google Patents

Two side coating machines suitable for small-size battery Download PDF

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Publication number
CN216624373U
CN216624373U CN202122778190.8U CN202122778190U CN216624373U CN 216624373 U CN216624373 U CN 216624373U CN 202122778190 U CN202122778190 U CN 202122778190U CN 216624373 U CN216624373 U CN 216624373U
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China
Prior art keywords
tape
pressing
work material
rubberizing
glue
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CN202122778190.8U
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张栋
吕隆敏
金国领
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Shenzhen Xinjiazhicheng Automation Co ltd
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Shenzhen Xinjiazhicheng Automation Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

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Abstract

The utility model discloses a double-side rubberizing machine suitable for a small-sized battery, which comprises a work material transfer mechanism, a left-side rubberizing working mechanism and a right-side rubberizing working mechanism, wherein the work material transfer mechanism sequentially moves work materials conveyed by a feeding line to the left-side rubberizing working mechanism and the right-side rubberizing working mechanism for rubberizing processing; the left side rubberizing operating mechanism and the right side rubberizing operating mechanism both comprise a single-side glue preparation and rubberizing mechanism, a single-side glue rolling mechanism and a work material pressing mechanism, and the work material pressing mechanism presses work materials on the single-side glue preparation and rubberizing mechanism and the single-side glue rolling mechanism through pressing blocks. According to the adhesive tape sticking machine, the work material transfer mechanism is used for completing work material carrying between the left side adhesive tape sticking working mechanism and the right side adhesive tape sticking working mechanism, two sides of work materials are subjected to adhesive tape sticking processing, the adhesive tape sticking machine is suitable for performing adhesive tape sticking processing on small new energy lithium batteries, and the universality is high.

Description

Two side coating machines suitable for small-size battery
Technical Field
The utility model relates to the technical field of battery rubberizing equipment, in particular to a double-side rubberizing machine suitable for a small battery.
Background
The new energy lithium battery is used as a battery class which can be charged, discharged and recycled for many times, and the larger electric capacity is the mainstream of the existing battery, so that the demand of the lithium battery is larger and larger along with the development of new energy enterprises, and the improvement of the production efficiency of the lithium battery is particularly important; the lithium metal has very active chemical characteristics, the lithium metal has very high requirements on environment in processing, storage and use, the aluminum plastic film of a single folded edge of the lithium battery can leak the metal film in the production process, and the metal edge can touch a circuit board outside to cause short circuit, so that the safety performance of the lithium battery product is ensured to be more important.
The battery side-gluing machine used by most manufacturers at present is also called a two-side gluing machine and a high-temperature gluing machine, and can cut and cut high-temperature glue with different widths according to the length of a battery, then the high-temperature glue is adhered to two sides of the battery through a gluing mechanism, and then the high-temperature glue is adhered and compressed through a glue rolling mechanism. However, the existing two-side adhesive tape sticking machine is not suitable for small new energy lithium batteries (such as digital batteries and small bluetooth batteries), and the small new energy lithium batteries cannot roll the adhesive on two sides due to small size.
The above disadvantages need to be improved.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a double-side adhesive tape sticking machine suitable for a small-sized battery.
The technical scheme of the utility model is as follows:
a double-side rubberizing machine suitable for small batteries comprises a work material transfer mechanism, a left rubberizing working mechanism and a right rubberizing working mechanism, wherein the work material transfer mechanism sequentially moves work materials conveyed by a feeding line to the left rubberizing working mechanism and the right rubberizing working mechanism for rubberizing processing;
the left side rubberizing operating device with right side rubberizing operating device all includes that the unilateral is equipped with to glue and rubberizing mechanism, unilateral rubber coating mechanism and work material hold-down mechanism, work material hold-down mechanism compresses tightly through the briquetting the unilateral is equipped with to glue and rubberizing mechanism with on the unilateral rubber coating mechanism work material.
According to the utility model of the scheme, the work material pressing mechanism comprises a first pressing block, a first pressing material lifting cylinder, a second pressing block, a second pressing material lifting cylinder and a pressing material telescopic cylinder, the first pressing block is connected with the first pressing lifting cylinder, the first pressing lifting cylinder drives the first pressing block to press the work material on the single-side glue preparing and sticking mechanism, the second pressing block is connected with the second pressing lifting cylinder, the second pressing lifting cylinder drives the second pressing block to press the work material on the single-side glue rolling mechanism, the first material pressing lifting cylinder and the second material pressing lifting cylinder are connected with the material pressing telescopic cylinder through a connecting plate, the material pressing telescopic cylinder drives the first pressing block and the second pressing block to be close to the work material on the single-side glue preparation and sticking mechanism and the single-side glue rolling mechanism.
According to the utility model of the scheme, the single-side glue preparing and sticking mechanism comprises a glue preparing mechanism, a glue cutting mechanism and a glue sticking mechanism, wherein the glue preparing mechanism stretches a glue tape to the glue sticking mechanism, the glue cutting mechanism cuts the glue tape, a glue sticking sucker is arranged on the glue sticking mechanism, and the glue sticking sucker is driven by a glue sticking servo motor to attach the glue tape to one side of the work material.
Further, the glue preparation mechanism is provided with a glue disc, the glue disc is fixed on the glue preparation movable plate through a glue disc shaft, a glue tape guide wheel is arranged in front of the glue disc, a glue pressing tongue and a glue pressing block are arranged in front of the glue tape guide wheel, the glue disc shaft is connected with a glue disc feeding air cylinder, the glue disc feeding air cylinder drives the glue disc shaft to rotate, and the glue tape is pulled out of the glue disc and guided by the glue tape guide wheel to extend forwards between the glue pressing tongue and the glue pressing block.
Furthermore, the glue pressing tongue is connected with a first glue pressing cylinder, the first glue pressing cylinder drives the glue pressing tongue to press one end of the adhesive tape, the glue pressing block is connected with a second glue pressing cylinder, and the second glue pressing cylinder drives the glue pressing block to press the other end of the adhesive tape.
Further, the rubber cutting mechanism comprises a cutter and a cutter cylinder, the cutter is connected with the cutter cylinder, and the cutter cylinder drives the cutter to move up and down to cut off the rubber belt.
Further, rubberizing mechanism includes the rubberizing platform, be provided with on the rubberizing platform the rubberizing sucking disc, the rubberizing sucking disc removes under rubberizing servo motor's drive, the rubberizing sucking disc adsorbs the sticky tape extremely work material department is fixed.
According to the scheme, the single-side glue rolling mechanism comprises an upper roller mechanism and a side jacking mechanism, the upper roller mechanism is provided with an upper roller and a roller transferring mechanism, the upper roller is connected with the roller transferring mechanism, and the roller transferring mechanism drives the upper roller to move towards the work material direction, so that the upper roller is in contact with the work material and rolls along the upper end and the top surface of one side of the work material; the side top mechanism is provided with a top plate and a top plate transferring mechanism, the top plate is connected with the top plate transferring mechanism, and the top plate transferring mechanism drives the top plate to move towards the direction of the work material, so that the top plate is propped against the lower end of one side of the work material.
According to the utility model of the scheme, the work material transferring mechanism comprises a transferring cross rod and a plurality of transferring suckers arranged on the transferring cross rod and used for adsorbing the work materials, the transferring cross rod is arranged on a transferring vertical slide rail and moves up and down along the transferring vertical slide rail, and the transferring vertical slide rail is arranged on a transferring horizontal slide rail and slides left and right along the transferring horizontal slide rail.
According to the scheme, the machine further comprises a rack, and the work material transferring mechanism, the left side rubberizing working mechanism and the right side rubberizing working mechanism are all arranged on the rack.
According to the utility model of the scheme, the beneficial effects of the utility model are as follows:
according to the rubberizing machine, work material carrying between the left rubberizing working mechanism and the right rubberizing working mechanism is completed through the work material transfer mechanism, two-side rubberizing processing of the work material is achieved, a middle conveying mechanism is saved, the occupied area of a single device is reduced, the production space utilization rate is improved, and therefore the production efficiency is improved, and higher production benefits are obtained; simultaneously, adopt work material hold-down mechanism to compress tightly the work material in left side rubberizing operating mechanism and right side rubberizing operating mechanism, be applicable to and carry out the rubberizing processing to miniature new forms of energy lithium cell (such as digital battery, little bluetooth battery), and need not often change the mould of putting the work material, the commonality is strong.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a side view of the structure of the present invention;
FIG. 3 is a schematic structural view of a work material hold-down mechanism of the present invention;
FIG. 4 is a schematic structural view of a left side glue preparing and applying mechanism and a left side glue rolling mechanism according to the present invention;
FIG. 5 is a top view of the left side glue preparing and applying mechanism and the left side glue rolling mechanism of the present invention;
FIG. 6 is a side view of the left side glue preparing and applying mechanism and the left side glue rolling mechanism of the present invention.
In the figures, the reference numerals are as follows:
1. a frame;
2. a work material transfer mechanism; 21. transferring a cross bar; 22. transferring a sucker; 23. transferring a vertical sliding rail; 24. transferring a horizontal sliding rail;
3. a left side rubberizing working mechanism;
31. a left side glue preparing and sticking mechanism; 3111. a rubber plate; 3112. a reel shaft; 3113. a tape guide wheel; 3114. pressing a rubber tongue; 3115. pressing a rubber block; 3116. a first glue pressing cylinder; 3117. a second glue pressing cylinder; 312. a glue cutting mechanism; 313. a gluing mechanism; 3131. a rubberizing platform; 3132. sticking a rubber sucker; 3133. a rubberizing servo motor;
32. a left side glue rolling mechanism; 321. a roller is arranged; 322. a roller transfer mechanism; 323. a top plate; 324. a top plate transfer mechanism;
33. a work material pressing mechanism; 331. a first pressing block; 332. a first material pressing lifting cylinder; 333. a second pressing block; 334. a second material pressing lifting cylinder; 335. a material pressing telescopic cylinder; 336. a connecting plate;
4. a right side rubberizing working mechanism;
5. and (7) a feeding line.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present invention more clearly apparent, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.
It should be noted that the terms "disposed," "connected," "fixed," and the like are used in a broad sense, and for example, the terms "disposed," "connected," and "fixed" may be fixedly connected, detachably connected, or integrated; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", and the like indicate orientations or positions based on the orientations or positions shown in the drawings, and are for convenience of description only and should not be construed as limiting the technical solution. The terms "first", "second" and "first" are used merely for descriptive purposes and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "plurality" is two or more unless specifically limited otherwise.
Please refer to fig. 1 and 2, the embodiment provides a double-side adhesive tape sticking machine suitable for a small battery, which includes a frame 1, a work material transfer mechanism 2, a left side adhesive tape sticking working mechanism 3 and a right side adhesive tape sticking working mechanism 4, the work material transfer mechanism 2, the left side adhesive tape sticking working mechanism 3 and the right side adhesive tape sticking working mechanism 4 are all installed on the frame 1, the work material transfer mechanism 2 sequentially moves the work material conveyed by a feeding line 5 to the left side adhesive tape sticking working mechanism 3 and the right side adhesive tape sticking working mechanism 4 for adhesive tape sticking processing, so as to realize the double-side adhesive tape sticking processing of the work material.
Referring to fig. 1, the left side adhesive coating working mechanism 3 includes a left side adhesive preparing and coating mechanism 31, a left side adhesive rolling mechanism 32 and a work material pressing mechanism 33, the work material pressing mechanism 33 presses the work materials on the left side adhesive preparing and coating mechanism 31 and the left side adhesive rolling mechanism 32 through a pressing block, the left side adhesive preparing and coating mechanism 31 attaches the adhesive tape to the left side of the work material, and the left side adhesive rolling mechanism 32 rolls the work material with the adhesive tape attached to the left side. The right rubberizing operating mechanism 4 has the same structure as the left rubberizing operating mechanism 3, and the description thereof is not repeated.
Referring to fig. 3, the workpiece pressing mechanism 33 includes a first pressing block 331, a first pressing lifting cylinder 332, a second pressing block 333, a second pressing lifting cylinder 334 and a pressing telescopic cylinder 335, the first pressing block 331 is connected to the first pressing lifting cylinder 332, the first pressing lifting cylinder 332 drives the first pressing block 331 to press the workpiece on the left glue preparing and gluing mechanism 31, the second pressing block 333 is connected to the second pressing lifting cylinder 334, the second pressing lifting cylinder 334 drives the second pressing block 333 to press the workpiece on the left glue rolling mechanism 32, the first pressing lifting cylinder 332 and the second pressing lifting cylinder 334 are connected to the pressing telescopic cylinder 335 through a connecting plate 336, and the pressing telescopic cylinder 335 drives the first pressing block 331 and the second pressing block 333 to approach the workpiece on the left glue preparing and gluing mechanism 31 and the workpiece on the left glue rolling mechanism 32. During left side rubberizing processing, press material telescopic cylinder 335 to drive first briquetting 331 and second briquetting 333 to be close to the work material on left side spare rubber and rubberizing mechanism 31 and the left side rubber rolling mechanism 32 simultaneously, then first material lift cylinder 332 drives first briquetting 331 and compresses tightly the work material on left side spare rubber and rubberizing mechanism 31, second material lift cylinder 334 drives second briquetting 333 and compresses tightly the work material on left side rubber rolling mechanism 32, compress tightly the work material after, left side spare rubber and rubberizing mechanism 31 and left side rubber rolling mechanism 32 carry out rubberizing processing to the left side of work material.
Referring to fig. 4 and 5, the left side glue preparing and pasting mechanism 31 includes a glue preparing mechanism 311, a glue cutting mechanism 312 and a pasting mechanism 313, the glue preparing mechanism 311 stretches the adhesive tape onto the pasting mechanism 313, the glue cutting mechanism 312 cuts the adhesive tape, the pasting mechanism 313 is provided with a pasting sucker 3132, and the pasting sucker 3132 is driven by a pasting servo motor 3133 to attach the adhesive tape to the left side of the work material. It is provided with the glue tray 3111 to prepare gluey mechanism 311, and glue tray 3111 is fixed on being equipped with gluey fly leaf through glue tray axle 3112, and the place ahead of glue tray 3111 is provided with sticky tape leading wheel 3113, and the place ahead of sticky tape leading wheel 3113 is provided with presses gluey tongue 3114 and moulding 3115, and glue tray axle 3112 is connected the glue tray and is sent gluey cylinder, and the glue tray send gluey cylinder to drive the rotation of glue tray axle 3112, and the sticky tape is pulled out from glue tray 3111, is guided by sticky tape leading wheel 3113, stretches into forward between pressing gluey tongue 3114 and the moulding 3115. The moulding tongue 3114 is connected with first moulding cylinder 3116, and first moulding cylinder 3116 drives moulding tongue 3114 and pushes down the one end of sticky tape, and moulding piece 3115 is connected with second moulding cylinder 3117, and second moulding cylinder 3117 drives moulding piece 3115 and pushes down the other end of sticky tape. The adhesive tape cutting mechanism 312 comprises a cutter and a cutter cylinder, the cutter is connected with the cutter cylinder, and the cutter cylinder drives the cutter to move up and down to cut off the adhesive tape. The adhesive tape sticking mechanism 313 comprises an adhesive tape sticking platform 3131, an adhesive tape sticking sucking disc 3132 is arranged on the adhesive tape sticking platform 3131, the adhesive tape sticking sucking disc 3132 is driven by an adhesive tape sticking servo motor 3133 to move, and the adhesive tape sticking sucking disc 3132 adsorbs an adhesive tape to a workpiece to be fixed.
Referring to fig. 4 to 6, the left side glue rolling mechanism 32 includes an upper roller mechanism and a side top mechanism, the upper roller mechanism is provided with an upper roller 321 and a roller transfer mechanism 322, the upper roller 321 is connected with the roller transfer mechanism 322, and the roller transfer mechanism 322 drives the upper roller 321 to move towards the work material direction, so that the upper roller 321 contacts with the work material and rolls along the left upper end and the top surface of the work material, and the adhesive tape is tightly attached to the left upper end and the top surface of the work material; the side top mechanism is provided with a top plate 323 and a top plate transferring mechanism 324, the top plate 323 is connected with the top plate transferring mechanism 324, and the top plate transferring mechanism 324 drives the top plate 323 to move towards the direction of the work material, so that the top plate 323 supports against the lower end of the left side of the work material, and the adhesive tape is tightly attached to the lower end of the left side of the work material.
Referring to fig. 1 and 2, the work material transfer mechanism 2 includes a transfer cross bar 21 and a plurality of transfer suckers 22 disposed on the transfer cross bar 21 for sucking the work material, the transfer cross bar 21 is disposed on a transfer vertical slide rail 23 and moves up and down along the transfer vertical slide rail 23, and the transfer vertical slide rail 23 is disposed on a transfer horizontal slide rail 24 and slides left and right along the transfer horizontal slide rail 24. The work material transferring mechanism 2 sequentially moves the work materials conveyed by the feeding line 5 to the left rubberizing working mechanism 3 and the right rubberizing working mechanism 4 for rubberizing processing through the transferring cross rod 21, the transferring suction cup 22, the transferring vertical slide rail 23 and the transferring horizontal slide rail 24.
It will be understood that modifications and variations can be made by persons skilled in the art in light of the above teachings and all such modifications and variations are intended to be included within the scope of the utility model as defined in the appended claims.
The utility model is described above with reference to the accompanying drawings, which are illustrative, and it is obvious that the implementation of the utility model is not limited in the above manner, and it is within the scope of the utility model to adopt various modifications of the inventive method concept and technical solution, or to apply the inventive concept and technical solution to other fields without modification.

Claims (10)

1. A double-side rubberizing machine suitable for a small-sized battery is characterized by comprising a work material transfer mechanism, a left-side rubberizing working mechanism and a right-side rubberizing working mechanism, wherein the work material transfer mechanism sequentially moves work materials conveyed by a feeding line to the left-side rubberizing working mechanism and the right-side rubberizing working mechanism for rubberizing processing;
the left side rubberizing operating device with right side rubberizing operating device all includes that the unilateral is equipped with to glue and rubberizing mechanism, unilateral rubber coating mechanism and work material hold-down mechanism, work material hold-down mechanism compresses tightly through the briquetting the unilateral is equipped with to glue and rubberizing mechanism with on the unilateral rubber coating mechanism work material.
2. The double-sided adhesive tape dispenser for small-sized batteries according to claim 1, the work material pressing mechanism comprises a first pressing block, a first pressing lifting cylinder, a second pressing block, a second pressing lifting cylinder and a pressing telescopic cylinder, the first pressing block is connected with the first pressing lifting cylinder, the first pressing lifting cylinder drives the first pressing block to press the work material on the single-side glue preparing and sticking mechanism, the second pressing block is connected with the second pressing lifting cylinder, the second pressing lifting cylinder drives the second pressing block to press the work material on the single-side glue rolling mechanism, the first material pressing lifting cylinder and the second material pressing lifting cylinder are connected with the material pressing telescopic cylinder through a connecting plate, the material pressing telescopic cylinder drives the first pressing block and the second pressing block to be close to the work material on the single-side glue preparation and sticking mechanism and the single-side glue rolling mechanism.
3. The double-sided tape dispenser for small-sized batteries according to claim 1, wherein the single-sided tape preparing and applying mechanism comprises a tape preparing mechanism, a tape cutting mechanism and a tape applying mechanism, the tape preparing mechanism stretches a tape onto the tape applying mechanism, the tape cutting mechanism cuts the tape, the tape applying mechanism is provided with a tape applying suction cup, and the tape applying suction cup is driven by a tape applying servo motor to attach the tape to one side of the work material.
4. The double-sided tape dispenser for small-sized batteries according to claim 3, wherein the tape dispenser is provided with a tape dispenser, the tape dispenser is fixed on the tape dispenser movable plate by a tape dispenser shaft, a tape guide wheel is arranged in front of the tape dispenser, a tape pressing tongue and a tape pressing block are arranged in front of the tape guide wheel, the tape dispenser shaft is connected with a tape dispenser cylinder, the tape dispenser cylinder drives the tape dispenser shaft to rotate, and the tape is pulled out from the tape dispenser and guided by the tape guide wheel to extend forward between the tape pressing tongue and the tape pressing block.
5. The double-sided tape dispenser for small-sized batteries according to claim 4, wherein said pressing tongue is connected to a first pressing cylinder, said first pressing cylinder drives said pressing tongue to press one end of said tape, said pressing block is connected to a second pressing cylinder, said second pressing cylinder drives said pressing block to press the other end of said tape.
6. The double-sided tape dispenser for small-sized batteries according to claim 3, wherein said tape dispenser comprises a cutter and a cutter cylinder, said cutter is connected to said cutter cylinder, said cutter cylinder drives said cutter to move up and down to cut off said tape.
7. The double-sided tape sticking machine suitable for small batteries according to claim 3, wherein the tape sticking mechanism comprises a tape sticking platform, the tape sticking platform is provided with the tape sticking sucker, the tape sticking sucker is driven by a tape sticking servo motor to move, and the tape sticking sucker sucks the tape to fix the work material.
8. The double-sided adhesive tape sticking machine suitable for small batteries according to claim 1, wherein the single-sided adhesive rolling mechanism comprises an upper roller mechanism and a side top mechanism, the upper roller mechanism is provided with an upper roller and a roller transfer mechanism, the upper roller is connected with the roller transfer mechanism, and the roller transfer mechanism drives the upper roller to move towards the work material, so that the upper roller is in contact with the work material and rolls along the upper end and the top surface of one side of the work material; the side top mechanism is provided with a top plate and a top plate transferring mechanism, the top plate is connected with the top plate transferring mechanism, and the top plate transferring mechanism drives the top plate to move towards the direction of the work material, so that the top plate is propped against the lower end of one side of the work material.
9. The double-sided adhesive tape dispenser for small-sized batteries according to claim 1, wherein the work material transfer mechanism comprises a transfer cross bar and a plurality of transfer suction cups for sucking the work material, the transfer cross bar is disposed on a transfer vertical slide rail and moves up and down along the transfer vertical slide rail, and the transfer vertical slide rail is disposed on a transfer horizontal slide rail and slides left and right along the transfer horizontal slide rail.
10. The double-sided adhesive tape dispenser for small-sized batteries according to claim 1, further comprising a frame, wherein said work material transfer mechanism, said left-side adhesive tape dispensing mechanism and said right-side adhesive tape dispensing mechanism are mounted on said frame.
CN202122778190.8U 2021-11-12 2021-11-12 Two side coating machines suitable for small-size battery Active CN216624373U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122778190.8U CN216624373U (en) 2021-11-12 2021-11-12 Two side coating machines suitable for small-size battery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122778190.8U CN216624373U (en) 2021-11-12 2021-11-12 Two side coating machines suitable for small-size battery

Publications (1)

Publication Number Publication Date
CN216624373U true CN216624373U (en) 2022-05-27

Family

ID=81698262

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122778190.8U Active CN216624373U (en) 2021-11-12 2021-11-12 Two side coating machines suitable for small-size battery

Country Status (1)

Country Link
CN (1) CN216624373U (en)

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