Forming, grading, feeding, shaping and overturning assembly

By designing a capacity-forming, feeding, shaping, and flipping assembly, and utilizing a rotary motor and a shaping motor to achieve horizontal and vertical flipping of the battery cells, the problems of large space occupation and long movement paths in existing technologies are solved, thereby improving the production efficiency of lithium batteries.

CN223606484UActive Publication Date: 2025-11-28GUANGDONG HUAXIA TECH CO LTD
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Patent Information

Application Number
CN202423272097.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-28
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In current lithium battery production, the cell forming and shaping components occupy a large space and have a long movement path, which affects production efficiency.

Method used

Design a cell-forming, capacity-feeding, shaping, and flipping assembly, including a support, a rotary motor, a fixed base, a rotating shaft, a rotating base, an adsorption platform, a shaping motor, and a pressing block. By flipping the battery cells horizontally and vertically, the movement path of the robotic arm is shortened, and the space occupied is reduced.

Benefits of technology

By performing horizontal and vertical flipping operations on the battery cells, space occupation and robot movement paths are reduced, thus improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a formation and capacity grading feeding, shaping and overturning assembly which comprises a support, a rotating motor, a fixed base, a rotating shaft, a rotating base, an adsorption platform, two shaping motors and two shaping pressing blocks, the rotating motor, the fixed base, the first shaping motor and the second shaping motor are all arranged on the support, and the rotating shaft is rotationally arranged in the fixed base. An output shaft of the rotating motor is connected with the rotating shaft, the adsorption platform is rotationally connected with the rotating shaft through the rotating base, the first shaping motor and the second shaping motor are located on the two sides of the fixed base correspondingly, and a space allowing the adsorption platform to be overturned to be horizontal is formed between the first shaping motor and the second shaping motor. An output shaft of the first shaping motor faces upwards and is connected with the first shaping lower pressing block, and an output shaft of the second shaping motor faces upwards and is connected with the second shaping lower pressing block. According to the utility model, the occupied space can be greatly reduced, the required moving path of the capacity grading manipulator is shortened, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lithium battery production technical field, concretely relates to a kind of forming and capacity loading shaping turnover subassemblies. BACKGROUND

[0002] The cell of lithium battery is needed to be carried out forming and capacity after production is completed, forming is that cell is carried out charge-discharge to be activated, and capacity is that capacity sorting is carried out.Forming and capacity need to be carried out shaping to cell before forming and capacity, shaping is completed after again by transfer manipulator cell is transferred to transfer platform and is waited for forming and capacity manipulator to grab.The shaping subassembly of existing forming and capacity cell is by loading manipulator cell is grabbed and is placed on shaping station to carry out shaping operation, and cell is placed on shaping station after shaping again by transfer manipulator horizontal grabbing and is placed on transfer platform, and this mode is needed for large quantities of lithium battery production, and the required moving path of forming and capacity manipulator is longer, and it is not conducive to the improvement of production efficiency. UTILITY MODEL CONTENT

[0003] The utility model aims at overcoming the insufficient of prior art, provide a kind of forming and capacity loading shaping turnover subassembly.

[0004] The technical scheme of the utility model is as follows:

[0005] A kind of forming and capacity loading shaping turnover subassembly, including support, rotating motor, fixed base, rotating shaft, rotary base, adsorption platform, first shaping motor, second shaping motor, first shaping lower pressure block and second shaping lower pressure block, the rotating motor, fixed base, first shaping motor, second shaping motor are all set on support, the rotating shaft is rotationally arranged in fixed base, the output shaft of rotating motor is connected with rotating shaft, the adsorption platform is rotationally connected with rotating shaft by rotary base, the first shaping motor and second shaping motor are located at the two sides of fixed base respectively, and the space that the adsorption platform can be overturned to horizontal is equipped between the first shaping motor and second shaping motor, the output shaft of first shaping motor is connected with first shaping lower pressure block upwards, the output shaft of second shaping motor is connected with second shaping lower pressure block upwards.

[0006] Further, the output shaft of the rotating motor is connected with the rotating shaft by the shaft coupling.

[0007] Further, vacuum gauge connected with the adsorption platform is provided on the support.

[0008] Further, the side of the fixed base is provided with limiting block limiting the adsorption platform to be overturned to vertical.

[0009] Further, the bottom of the first shaping lower pressure block and the second shaping lower pressure block is provided with textured bump.

[0010] Further, the texture bump is composed of a plurality of equidistant parallel distributed convex lines.

[0011] Compared with the prior art, the utility model has the advantages that: the utility model discloses a support, a rotary motor, a fixed base, a rotating shaft, a rotary base, an adsorption platform, a first shaping motor, a second shaping motor, a first shaping lower pressing block and a second shaping lower pressing block, the electric core is adsorbed by the adsorption platform and can be horizontally turned over and vertically turned over, the electric core is horizontally placed when shaping, the electric core is shaped by the first shaping lower pressing block and the second shaping lower pressing block, the electric core is turned over to be vertically placed after shaping, the electric core is vertically grabbed by the transfer manipulator and is vertically placed on the transfer platform, thereby the occupied space can be greatly reduced, the required moving path of the formation and component distribution manipulator is shortened, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.

[0013] Figure 1 The structure diagram of the formation and component distribution feeding and shaping turnover assembly is provided. DETAILED DESCRIPTION

[0014] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model will be further described in detail below by combining with the drawings and embodiments.It should be understood that the specific embodiments described here are only used to explain the utility model, and are not used to limit the utility model.

[0015] In order to illustrate the technical scheme described in the utility model, the following will be described by specific embodiments.

[0016] EMBODIMENT

[0017] Please refer to Figure 1The embodiment provides a forming, component, feeding, shaping and overturning assembly, which comprises a support 1, a rotating motor 2, a fixed base 3, a rotating shaft 4, a rotating base 5, an adsorption platform 6, a first shaping motor 7, a second shaping motor 8, a first shaping lower pressing block 9 and a second shaping lower pressing block 10. The rotating motor 2, the fixed base 3, the first shaping motor 7 and the second shaping motor 8 are all arranged on the support 1. The rotating shaft 4 is rotatably arranged in the fixed base 3. The output shaft of the rotating motor 2 is connected with the rotating shaft 4 through a shaft coupling 11. The adsorption platform 6 is rotatably connected with the rotating shaft 4 through the rotating base 5. The first shaping motor 7 and the second shaping motor 8 are respectively located on the two sides of the fixed base 3. A space, in which the adsorption platform 6 can be overturned to be horizontal, is arranged between the first shaping motor 7 and the second shaping motor 8. The output shaft of the first shaping motor 7 is upwardly connected with the first shaping lower pressing block 9. The output shaft of the second shaping motor 8 is upwardly connected with the second shaping lower pressing block 10. A limiting block 12, which limits the adsorption platform 6 to be vertically overturned, is arranged on one side of the fixed base 3.

[0018] When the shaping operation is performed, the battery cell is horizontally placed on the adsorption platform 6 and is adsorbed by vacuum. Then the first shaping motor 7 drives the first shaping lower pressing block 9 to move downward to the direction of the battery cell and abuts against the battery cell to perform the shaping operation. The second shaping motor 8 drives the second shaping lower pressing block 10 to move downward to the direction of the battery cell and abuts against the battery cell to perform the shaping operation. After the shaping operation is completed, the first shaping motor 7 drives the first shaping lower pressing block 9 to reset, the second shaping motor 8 drives the second shaping lower pressing block 10 to reset, and then the rotating motor 2 drives the adsorption platform 6 to overturn to abut against the limiting block 12. At this time, the battery cell is vertically placed and will not fall under the action of vacuum adsorption. The subsequent transfer robot vertically grabs the battery cell and vertically places the battery cell on the transfer platform.

[0019] The forming, component, feeding, shaping and overturning assembly can greatly reduce the space occupied by the battery cell on the transfer platform, shorten the required moving path of the forming, component, feeding robot and help to improve the production efficiency.

[0020] Further, a vacuum table 13 connected with the adsorption platform 6 is arranged on the support 1 and is used for displaying the vacuum adsorption pressure.

[0021] Preferably, the bottom of the first shaping lower pressing block 9 and the second shaping lower pressing block 10 is provided with a textured convex block 14, which is composed of a plurality of convex strips distributed equidistantly and parallelly. Through the design, the appearance of the battery cell can be improved after the shaping operation of the first shaping lower pressing block 9 and the second shaping lower pressing block 10.

[0022] The above merely describes the preferred embodiments of the present application, and is not used to limit the present application, and any modification, equivalent replacement, and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A formation, dispensing, loading, shaping and turning assembly, characterized in that: The device comprises a support, a rotating motor, a fixed base, a rotating shaft, a rotating base, an adsorption platform, a first shaping motor, a second shaping motor, a first shaping lower pressing block and a second shaping lower pressing block, the rotating motor, the fixed base, the first shaping motor and the second shaping motor are arranged on the support, the rotating shaft is rotatably arranged in the fixed base, the output shaft of the rotating motor is connected with the rotating shaft, the adsorption platform is rotatably connected with the rotating shaft through the rotating base, the first shaping motor and the second shaping motor are respectively located on the two sides of the fixed base, and a space for the adsorption platform to be flipped to horizontal is arranged between the first shaping motor and the second shaping motor, the output shaft of the first shaping motor is upwardly connected with the first shaping lower pressing block, and the output shaft of the second shaping motor is upwardly connected with the second shaping lower pressing block.

2. The formation, dispensing, loading, shaping and turning assembly according to claim 1, characterized in that: The output shaft of the rotating motor is connected with the rotating shaft through a shaft coupling.

3. The formation, dispensing, loading, shaping and turning assembly according to claim 1, characterized in that: A vacuum table for connecting the adsorption platform is arranged on the support.

4. The formation, dispensing, loading, shaping and turning assembly according to claim 1, characterized in that: A limiting block for limiting the adsorption platform to be flipped to vertical is arranged on one side of the fixed base.

5. The formation, dispensing, loading, shaping and turning assembly according to claim 1, characterized in that: Texture protrusions are arranged on the bottom of the first shaping lower pressing block and the second shaping lower pressing block.

6. The formation, dispensing, loading, shaping and turning assembly according to claim 5, characterized in that: The texture protrusions are composed of a plurality of equidistant parallel protrusions. The texture protrusions are composed of a plurality of equidistant parallel protrusions.