CN218253830U - Perforating device is used in new forms of energy battery manufacturing - Google Patents

Perforating device is used in new forms of energy battery manufacturing Download PDF

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Publication number
CN218253830U
CN218253830U CN202222229245.4U CN202222229245U CN218253830U CN 218253830 U CN218253830 U CN 218253830U CN 202222229245 U CN202222229245 U CN 202222229245U CN 218253830 U CN218253830 U CN 218253830U
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China
Prior art keywords
dustproof
connecting block
electric telescopic
axle
polishing
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CN202222229245.4U
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Chinese (zh)
Inventor
陈正斌
黄慧媚
陈志道
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Hubei Xiangdian New Energy Technology Co ltd
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Hubei Xiangdian New Energy Technology Co ltd
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Abstract

The utility model relates to a perforating device for new forms of energy battery manufacturing includes XY axle link gear and Z axle fixed block, Z axle fixed block is equipped with Z axle link gear, Z axle link gear is connected with the hole puncher, Z axle fixed block is connected with C type connecting block, XY axle link gear is equipped with the loading board, the loading board is equipped with the constant head tank, C type connecting block is equipped with grinding machanism, lift electric telescopic handle assembles in C type connecting block, the platform of polishing assembles in lift electric telescopic handle upper end, the sander assembles in the platform of polishing upper end, dustproof extension board assembles in C type connecting block left and right sides, dustproof extension board is equipped with the pivot, the pivot is equipped with dustproof baffle, branch assembles in two dustproof baffle lower extremes, branch is equipped with the balancing weight, be equipped with two cylinder branches that correspond with branch around the platform of polishing, through setting up grinding machanism, the burr that produces when punching battery case polishes, the problem of burr that produces when punching the battery case influences subsequent processing has been solved.

Description

Perforating device is used in new forms of energy battery manufacturing
Technical Field
The utility model belongs to the technical field of new energy battery makes, concretely relates to perforating device is used in new energy battery manufacturing.
Background
In the manufacturing process of batteries made of new energy batteries, the battery shell can be punched, the subsequent battery installation is facilitated, most of the battery shell is made of aluminum alloy, burrs are easy to appear on the punched back face of the softer aluminum alloy when the battery shell is punched, so that the subsequent processing is influenced, the existing punching device does not have the function of processing the burrs, and accordingly the punching device for manufacturing the new energy batteries is provided.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an aim at: aiming at providing a perforating device for manufacturing new energy batteries, which is used for solving the problems existing in the background technology.
In order to realize the technical purpose, the utility model discloses a technical scheme as follows:
a perforating device for manufacturing a new energy battery comprises an XY axis linkage mechanism and a Z axis fixing block, wherein the Z axis linkage mechanism is arranged on the front side of the Z axis fixing block and connected with a puncher, a C-shaped connecting block is connected to the back of the Z axis fixing block, a bearing plate is arranged in the middle of the XY axis linkage mechanism, a positioning groove is formed in the center of the bearing plate, a fixing component is arranged in the positioning groove, and a polishing mechanism is arranged at the lower part of the C-shaped connecting block;
the polishing mechanism comprises a lifting electric telescopic rod, a polishing platform, a polisher, a dustproof support plate, a dustproof baffle and a support rod, wherein the lifting electric telescopic rod is fixedly assembled at the upper side of the lower end of the C-shaped connecting block, the polishing platform is fixedly assembled at the upper end of the lifting electric telescopic rod, the polisher is fixedly assembled at the upper end of the polishing platform, the polisher coincides with the upper central shaft and the lower central shaft of the puncher, the dustproof support plate is respectively assembled at the left side and the right side of the lower end of the C-shaped connecting block, a rotating shaft is arranged at the upper end of the dustproof support plate in a rotating mode, the rotating shaft is fixedly assembled with the dustproof baffle, the dustproof baffle is obliquely arranged towards the upper end of the polisher, the support rods are respectively and fixedly assembled at the lower ends of the two dustproof baffle, the two support rods extend to form central symmetry with the central shaft of the lifting electric telescopic rod, the tail ends of the support rods are provided with balancing weights, and the front and back of the polishing platform are fixedly provided with two cylindrical support rods corresponding to the support rods.
The utility model discloses a battery grinder, including grinding machine, lift electric telescopic handle, pivot, dustproof baffle, cylinder branch, balancing weight, sander, grinding platform, dustproof extension board, pivot, dustproof baffle, pole and pole support, the lift electric telescopic handle is used for driving the platform of polishing with the sander goes up and down, the platform of polishing is used for bearing the sander, the sander is used for polishing battery case, dustproof extension board is used for supporting the pivot with dustproof baffle, the pivot is used for rotating dustproof baffle, dustproof baffle is used for keeping out the waste material that battery case produced when punching, prevents that the waste material from falling to the sander, branch is used for driving the pivot with dustproof baffle rotates, cylinder branch is used for driving branch rotates, the balancing weight is used for reseing branch with dustproof baffle.
The dustproof baffle is arranged in an L shape, and the dustproof baffles are arranged above the sander in a vertically staggered mode.
The dustproof support plate is detachably and fixedly assembled on the C-shaped connecting block.
The constant head tank is big-end-up and is the ladder setting, fixed subassembly includes fixed block and spacing electric telescopic handle, the constant head tank lateral wall upper portion all around corresponds the ladder mesa and has seted up fixed spout, the fixed block slides and locates inside the fixed spout, the fixed block with fixed assembly has between the fixed spout inner wall spacing electric telescopic handle.
The C-shaped connecting block is provided with a supporting rod at each corner.
Through setting up grinding machanism, the burr that produces when punching battery case polishes, has solved the burr that produces when punching battery case and has influenced the problem of follow-up processing.
Drawings
The invention can be further illustrated by means of non-limiting examples given in the figures.
Fig. 1 is a schematic structural view of a first embodiment of the punching device for manufacturing a new energy battery of the present invention;
fig. 2 is a schematic cross-sectional view of a first embodiment of the punching device for manufacturing a new energy battery of the present invention;
FIG. 3 is an enlarged schematic view of the structure at A in FIG. 2;
fig. 4 is an enlarged schematic view of a portion B in fig. 2.
The main component symbols are as follows:
XY axis linkage mechanism 100, C-shaped connecting block 101, puncher 102, bearing plate 103, supporting rod 104 and Z axis fixing block
105. Z axle link gear 106, lift electric telescopic handle 200, platform 201 of polishing, sander 202, dustproof extension board 203, dustproof baffle 204, branch 205, pivot 206, balancing weight 207, cylinder branch 208, constant head tank 300, fixed block 301, spacing electric telescopic handle 302.
Detailed Description
In order to make the present invention better understood by those skilled in the art, the technical solutions of the present invention are further described below with reference to the accompanying drawings and examples.
The first embodiment is as follows:
as shown in fig. 1-3, the perforating device for manufacturing the new energy battery comprises an XY axis linkage mechanism 100 and a Z axis fixing block 105, wherein the front of the Z axis fixing block 105 is provided with a Z axis linkage mechanism 106, the Z axis linkage mechanism 106 is connected with a perforator 102, the back of the Z axis fixing block 105 is connected with a C-shaped connecting block 101, the middle part of the XY axis linkage mechanism 100 is provided with a bearing plate 103, the center of the bearing plate 103 is provided with a positioning groove 300, a fixing component is arranged in the positioning groove 300, and the lower part of the C-shaped connecting block 101 is provided with a polishing mechanism;
grinding machanism includes lift electric telescopic handle 200, the platform 201 of polishing, sander 202, dustproof extension board 203, dustproof baffle 204 and branch 205, lift electric telescopic handle 200 is fixed to be assembled in the terminal upside in C type connecting block 101 lower part, platform 201 of polishing is fixed to be assembled in lift electric telescopic handle 200 upper end, sander 202 is fixed to be assembled in platform 201 upper end of polishing, and sander 202 and hole puncher 102 center pin coincidence from top to bottom, dustproof extension board 203 assembles respectively in C type connecting block 101 lower extreme left and right sides, dustproof extension board 203 upper end is rotated and is equipped with pivot 206, pivot 206 is fixed to be equipped with dustproof baffle 204, and dustproof baffle 204 sets up to sander 202 upper end slope, branch 205 is fixed respectively to be assembled in two dustproof baffle 204 lower extremes, and two branches 205 prolong lift electric telescopic handle 200 center pin and become central symmetry setting, branch 205 end is equipped with balancing weight 207, platform 201 is fixed around being equipped with two cylinder branches 208 that correspond with branch 205.
The XY-axis linkage mechanism 100 and the Z-axis fixing block 105 are used for driving the puncher 102 and the sander 202 to move, the puncher 102 is used for punching, the bearing plate 103 is used for bearing a battery shell, the positioning groove 300 is used for positioning the battery shell, the lifting electric telescopic rod 200 is used for driving the polishing platform 201 and the sander 202 to lift, the polishing platform 201 is used for bearing the sander 202, the sander 202 is used for polishing the battery shell, the dustproof support plate 203 is used for supporting the rotating shaft 206 and the dustproof baffle 204, the rotating shaft 206 is used for rotating the dustproof baffle 204, the dustproof baffle 204 is used for resisting waste materials generated when the battery shell is punched, the waste materials are prevented from falling onto the sander 202, the supporting rod 205 is used for driving the rotating shaft 206 and the dustproof baffle 204 to rotate, the cylindrical supporting rod 208 is used for driving the supporting rod 205 to rotate, the balancing weight 207 is used for resetting the supporting rod 205 and the dustproof baffle 204, the XY-axis linkage mechanism 100, the Z-axis fixing block 105 and the Z-axis linkage mechanism 106 are the prior art, and detailed description is omitted here.
In the embodiment, the puncher 102 is started to punch the battery shell during use, after punching is completed, the lifting electric telescopic rod 200 is started, the lifting electric telescopic rod 200 bears the sander 202 to ascend, meanwhile, in the ascending process, due to the ascending of the cylindrical supporting rod 208, the supporting rod 205 also ascends along with rotation under the abutting of the cylindrical supporting rod 208, at the moment, the dustproof baffle 204 fixedly connected with the supporting rod 205 also starts to rotate to open, then the sander 202 starts to grind according to the reverse sequence of the punching sequence of the puncher 102 when ascending to the position of the battery shell, the function can be realized by additionally programming through the original program of the puncher 102, detailed description is omitted, after grinding is completed, the lifting electric telescopic rod 200 drives the sander 202 to descend, meanwhile, due to the effect of the balancing weight 207, the supporting rod 205 rotates along with the descending above the cylindrical supporting rod 208, the rotation of the supporting rod 205 drives the rotation of the dustproof baffle 204, and therefore the dustproof baffle 204 slowly closes along with the descending of the sander 202, and returns to the initial position.
This embodiment, through setting up grinding machanism, the burr that produces when punching battery case is polished, has solved the burr that produces when punching battery case and has influenced the problem of follow-up processing.
In the preferred embodiment, the dust-proof baffles 204 are arranged in an L-shape, and the two dust-proof baffles 204 are staggered up and down above the sander 202.
Preferably, the dust-proof support plate 203 is detachably and fixedly assembled to the C-shaped connecting block 101, so that the sander 202 can be cleaned and maintained conveniently.
In the preferred embodiment, the C-shaped connecting block 101 is provided with the supporting rods 104 at each corner, so that the C-shaped connecting block 101 is more stable.
Example two:
as shown in fig. 4, on the basis of the first embodiment, a perforating device for manufacturing a new energy battery is further described, the positioning groove 300 is arranged in a stepped manner, the fixing component comprises a fixing block 301 and a limiting electric telescopic rod 302, the upper portion of the peripheral side wall of the positioning groove 300 corresponds to the stepped table surface and is provided with a fixing chute, the fixing block 301 is arranged inside the fixing chute in a sliding manner, and the limiting electric telescopic rod 302 is fixedly assembled between the fixing block 301 and the inner wall of the fixing chute.
In the embodiment, after the battery case is placed into the positioning groove 300, the limiting electric telescopic rod 302 is started to push out the fixing block 301, so that the middle table boards of the fixing block 301 and the positioning groove 300 clamp the battery case, and the battery case is positioned and fixed.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. Modifications and variations can be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (5)

1. The utility model provides a perforating device is used in new forms of energy battery manufacturing, includes XY axle link gear and Z axle fixed block, Z axle fixed block openly is equipped with Z axle link gear, Z axle link gear is connected with the hole puncher, Z axle fixed block is connected with C type connecting block, its characterized in that at the back: a bearing plate is arranged in the middle of the XY-axis linkage mechanism, a positioning groove is formed in the center of the bearing plate, a fixing assembly is arranged in the positioning groove, and a polishing mechanism is arranged at the lower part of the C-shaped connecting block;
the polishing mechanism comprises a lifting electric telescopic rod, a polishing platform, a polisher, a dustproof support plate, a dustproof baffle and a support rod, wherein the lifting electric telescopic rod is fixedly assembled at the upper side of the lower end of the C-shaped connecting block, the polishing platform is fixedly assembled at the upper end of the lifting electric telescopic rod, the polisher is fixedly assembled at the upper end of the polishing platform, the polisher coincides with the upper central shaft and the lower central shaft of the puncher, the dustproof support plate is respectively assembled at the left side and the right side of the lower end of the C-shaped connecting block, a rotating shaft is arranged at the upper end of the dustproof support plate in a rotating mode, the rotating shaft is fixedly assembled with the dustproof baffle, the dustproof baffle is obliquely arranged towards the upper end of the polisher, the support rods are respectively and fixedly assembled at the lower ends of the two dustproof baffle, the two support rods extend to form central symmetry with the central shaft of the lifting electric telescopic rod, the tail ends of the support rods are provided with balancing weights, and the front and back of the polishing platform are fixedly provided with two cylindrical support rods corresponding to the support rods.
2. The perforating device for manufacturing the new energy battery as recited in claim 1, wherein: the dustproof baffle is arranged in an L shape, and the dustproof baffles are arranged above the sander in a vertically staggered mode.
3. The perforating device for manufacturing the new energy battery as recited in claim 1, wherein: the dustproof support plate is detachably and fixedly assembled on the C-shaped connecting block.
4. The perforating device for manufacturing the new energy battery as defined in claim 1, wherein: the constant head tank is big-end-up and is the ladder setting, fixed subassembly includes fixed block and spacing electric telescopic handle, the constant head tank lateral wall upper portion all around corresponds the ladder mesa and has seted up fixed spout, the fixed block slides and locates inside the fixed spout, the fixed block with fixed assembly has between the fixed spout inner wall spacing electric telescopic handle.
5. The perforating device for manufacturing the new energy battery as recited in claim 1, wherein: the C-shaped connecting block is provided with a supporting rod at each corner.
CN202222229245.4U 2022-08-22 2022-08-22 Perforating device is used in new forms of energy battery manufacturing Active CN218253830U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222229245.4U CN218253830U (en) 2022-08-22 2022-08-22 Perforating device is used in new forms of energy battery manufacturing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222229245.4U CN218253830U (en) 2022-08-22 2022-08-22 Perforating device is used in new forms of energy battery manufacturing

Publications (1)

Publication Number Publication Date
CN218253830U true CN218253830U (en) 2023-01-10

Family

ID=84776627

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222229245.4U Active CN218253830U (en) 2022-08-22 2022-08-22 Perforating device is used in new forms of energy battery manufacturing

Country Status (1)

Country Link
CN (1) CN218253830U (en)

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