Automatic processing equipment for battery parts

By using automated conveying, cutting, bending, and inspection mechanisms, combined with stop and limit components, the problems of low efficiency and inaccurate position control in battery component processing have been solved, achieving efficient and accurate battery electrode processing.

CN224011682UActive Publication Date: 2026-03-20SHENZHEN CITY FUJIADA HARDWARE PLASTIC PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Traditional battery component processing relies on manual operation, which is inefficient and prone to errors. Existing equipment has not achieved automation of conveying, cutting, bending and inspection, making it difficult to meet the needs of large-scale production, and it cannot accurately control the position of battery electrodes.

Method used

The system employs automated conveying, cutting, bending, and inspection mechanisms to achieve conveying, cutting, bending, and inspection. Combined with stop and limit components, it precisely controls the position of the battery electrode sheets, ensuring the orderly progress of the processing flow.

Benefits of technology

It improves processing efficiency and consistency, reduces labor costs, and ensures the accuracy and consistency of processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses automatic processing equipment for battery parts, and relates to the technical field of battery part processing. The automatic machining equipment for the battery parts comprises a workbench, a conveying mechanism used for conveying a battery pole piece, a cutting mechanism used for cutting the battery pole piece, a bending mechanism used for bending the battery pole piece and a detection mechanism used for detecting whether the appearance of the battery pole piece meets the requirement or not, and the conveying mechanism is transversely arranged on the workbench; the cutting mechanism, the bending mechanism and the detecting mechanism are sequentially distributed in the conveying direction of the conveying mechanism. The conveying mechanism is provided with a material placing seat for placing a battery pole piece and a stopping and limiting assembly for stopping and limiting the material placing seat, the material placing seat is movably positioned on the working table, and the output end of the stopping and limiting assembly corresponds to the material placing seat; by adopting the stop limiting assembly, the position of the battery pole piece can be accurately controlled, and the accuracy in different processing links is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to battery parts processing technical field especially is a kind of battery parts automatic processing equipment. BACKGROUND

[0002] In the processing field of battery parts, the traditional processing mode often relies on manual operation, which is inefficient and prone to errors, making it difficult to meet the needs of mass production. The existing processing equipment does not use a conveying mechanism, a cutting mechanism, a bending mechanism, and a detection mechanism to automatically realize conveying, cutting, bending, and detection, and the work efficiency needs to be improved. By using a stop limiting component, the position of the battery pole piece is accurately controlled, and the accuracy in different processing links is ensured. Therefore, in view of the current situation, it is urgent to develop a battery parts automatic processing equipment to meet the needs of actual use. SUMMARY

[0003] Therefore, the utility model provides a kind of battery parts automatic processing equipment, which realizes conveying, cutting, bending and detection by using conveying mechanism, cutting mechanism, bending mechanism and detection mechanism automation, makes the whole processing procedure orderly, improves processing efficiency and coherence, reduces labor cost, improves work efficiency, accurately controls the position of battery pole piece by using stop limiting component, and ensures the accuracy in different processing links.

[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0005] A kind of battery parts automatic processing equipment, including workbench, conveying mechanism for conveying battery pole piece, cutting mechanism for cutting battery pole piece, bending mechanism for bending battery pole piece and detection mechanism for detecting whether the appearance of battery pole piece meets the requirement, the conveying mechanism is transversely arranged on workbench, the cutting mechanism, bending mechanism and detection mechanism are sequentially distributed along the conveying direction of conveying mechanism;The conveying mechanism has a material placing seat for placing battery pole piece and a stop limiting component for stopping and limiting the material placing seat, the material placing seat is movably located on workbench, and the output end of the stop limiting component corresponds to the material placing seat.

[0006] As a preferred scheme: the stop limiting component includes a stop limiting drive cylinder and a stop block, the stop block is installed on the output end of the stop limiting drive cylinder, and the stop block movably corresponds to the material placing seat.

[0007] As a preferred scheme: the cutting mechanism comprises a longitudinal driving assembly, a vertical driving assembly installed at the output end of the longitudinal driving assembly, and a cutting assembly installed at the output end of the vertical driving assembly, and the cutting assembly is movably arranged corresponding to the battery pole piece.

[0008] As a preferred scheme: the cutting assembly comprises a lifting driving cylinder installed at the output end of the vertical driving assembly and a cutting knife installed at the output end of the lifting driving cylinder.

[0009] As a preferred scheme: the bending mechanism comprises a bending driving cylinder vertically arranged on the workbench and a bending block installed at the output end of the bending driving cylinder, and the bending block is arranged to be lowered to abut on the battery pole piece.

[0010] As a preferred scheme: the bending mechanism further comprises a guide rail for limiting the bending block, the guide rail is vertically arranged on the workbench, and the bending block is in sliding fit with the guide rail.

[0011] As a preferred scheme: the detection mechanism comprises a support and a CCD camera installed on the support, and the CCD camera faces the battery pole piece.

[0012] The utility model discloses a battery part automatic processing equipment, which has the advantages of the prior art and beneficial effects, and specifically, the above technical scheme can realize the conveying, cutting, bending and detection automatically through the conveying mechanism, the cutting mechanism, the bending mechanism and the detection mechanism, so that the whole processing procedure is orderly carried out, the processing efficiency and continuity are improved, the labor cost is reduced, and the work efficiency is improved.

[0013] To make the structure features and functions of the utility model clearer, the utility model will be described in detail below with reference to the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic diagram of the battery part automatic processing equipment of the utility model;

[0015] Figure 2 It is a three-dimensional structure schematic diagram of the stop limiting assembly of the utility model;

[0016] Figure 3 It is a three-dimensional structure schematic diagram of the cutting mechanism of the utility model;

[0017] Figure 4 It is a three-dimensional structure schematic diagram of the bending mechanism of the utility model;

[0018] Figure 5 This is a three-dimensional structural diagram of the testing mechanism of this utility model.

[0019] Explanation of reference numerals in the attached diagram:

[0020] In the diagram: 10. Workbench; 20. Conveying mechanism; 21. Stop and limit assembly; 211. Stop and limit drive cylinder; 212. Stop block; 30. Cutting mechanism; 31. Longitudinal drive assembly; 32. Vertical drive assembly; 33. Lifting drive cylinder; 34. Cutting blade; 40. Bending mechanism; 41. Bending drive cylinder; 42. Bending block; 43. Guide rail; 50. Detection mechanism; 51. Support; 52. CCD camera. Detailed Implementation

[0021] This utility model is as follows Figures 1 to 5 As shown, an automated processing equipment for battery components includes a worktable 10, a conveying mechanism 20 for conveying battery electrode sheets, a cutting mechanism 30 for cutting the battery electrode sheets, a bending mechanism 40 for bending the battery electrode sheets, and an inspection mechanism 50 for detecting whether the appearance of the battery electrode sheets meets the requirements, wherein:

[0022] The conveying mechanism 20 is arranged laterally on the workbench 10. The cutting mechanism 30, bending mechanism 40 and detection mechanism 50 are distributed sequentially along the conveying direction of the conveying mechanism 20. The conveying mechanism 20 has a feeding seat for placing battery electrode sheets and a stop and limit assembly 21 for stopping and limiting the feeding seat. The feeding seat is movably located on the workbench 10, and the output end of the stop and limit assembly 21 corresponds to the feeding seat.

[0023] The conveying mechanism 20 conveys battery electrode sheets forward. When the conveying mechanism 20 conveys the battery electrode sheets to the side of the cutting mechanism 30, the stop and limit component 21 stops and limits the feeding seat, and the cutting mechanism 30 cuts the battery electrode sheets. When the conveying mechanism 20 conveys the battery electrode sheets to the side of the bending mechanism 40, the stop and limit component 21 stops and limits the feeding seat, and the bending mechanism 40 bends the battery electrode sheets. When the conveying mechanism 20 conveys the battery electrode sheets to the side of the inspection mechanism 50, the stop and limit component 21 stops and limits the feeding seat, and the inspection mechanism 50 inspects whether the appearance of the battery electrode sheets meets the requirements.

[0024] By employing a conveying mechanism 20, a cutting mechanism 30, a bending mechanism 40, and an inspection mechanism 50, the conveying, cutting, bending, and inspection processes are automated, ensuring the entire processing flow is orderly, improving processing efficiency and continuity; reducing labor costs and increasing work efficiency; and by using a stop and limit assembly 21, the position of the battery electrode can be precisely controlled, ensuring accuracy at different processing stages.

[0025] The conveying mechanism 20 further comprises a conveying drive motor and a conveying belt, which is installed on the output end of the conveying drive motor.

[0026] The stop limiting assembly 21 comprises a stop limiting drive cylinder 211 and a stop block 212, which is installed on the output end of the stop limiting drive cylinder 211 and is movably corresponding to the discharging seat; the discharging seat is provided with a positioning hole, and the front end of the stop block 212 is provided with a positioning pin matched with the positioning hole; the setting of the conveying drive motor and the conveying belt provides power for the conveying of the battery tab, ensuring the stability and reliability of the conveying; the cooperation of the stop limiting drive cylinder 211 and the stop block 212 can flexibly stop and limit the discharging seat, and the positioning is accurate, which can meet the needs of different processing positions; the positioning hole on the discharging seat and the positioning pin at the front end of the stop block 212 are matched, further enhancing the accuracy and stability of the positioning.

[0027] The cutting mechanism 30 comprises a longitudinal driving assembly 31, a vertical driving assembly 32 and a cutting assembly, the vertical driving assembly 32 is installed on the output end of the longitudinal driving assembly 31, and the cutting assembly is installed on the output end of the vertical driving assembly 32, and the cutting assembly is movably corresponding to the battery tab.

[0028] The longitudinal driving assembly 31 adopts a longitudinal drive motor, a longitudinal screw and a longitudinal sliding seat, the longitudinal screw is installed on the output end of the longitudinal drive motor, and the longitudinal screw is rotationally matched with the longitudinal sliding seat; the vertical driving assembly 32 comprises a vertical driving cylinder and a vertical sliding seat, the vertical driving cylinder is installed on the longitudinal sliding seat, and the vertical sliding seat is installed on the output end of the vertical driving cylinder.

[0029] The cutting assembly comprises a lifting drive cylinder 33 and a cutting knife 34, the lifting drive cylinder 33 is installed on the output end of the vertical driving assembly 32, and the cutting knife 34 is installed on the output end of the lifting drive cylinder 33.

[0030] The longitudinal driving assembly 31 can accurately control the position of the cutting assembly in the longitudinal direction through the longitudinal drive motor, the longitudinal screw and the longitudinal sliding seat, ensuring the accuracy of the cutting; the vertical driving assembly 32 is composed of a vertical driving cylinder and a sliding seat, which can adjust the position of the cutting assembly in the vertical direction, and adapt to the cutting needs of battery tabs with different thicknesses; the setting of the lifting drive cylinder 33 and the cutting knife 34 makes the cutting action liftable, which is convenient for adjusting the cutting height and improves the flexibility and adaptability of the cutting.

[0031] The bending mechanism 40 comprises a bending driving cylinder 41 vertically arranged on the workbench 10 and a bending block 42 installed on the output end of the bending driving cylinder 41, wherein the bending block 42 can be lowered to abut on the battery pole piece; the feeding seat is provided with a groove matched with the shape of the battery pole piece to be bent, and the bending block is lowered to bend the battery pole piece.

[0032] The bending mechanism 40 further comprises a guide rail 43 for limiting the bending block 42, wherein the guide rail 43 is vertically arranged on the workbench 10, and the bending block 42 is in sliding fit with the guide rail 43.

[0033] The bending driving cylinder 41 is vertically arranged and can provide sufficient force to lower the bending block 42 to abut on the battery pole piece to realize the bending operation; the guide rail 43 is arranged to make the bending block 42 in sliding fit with the guide rail 43, thereby ensuring the stability and accuracy of the bending process and improving the bending quality.

[0034] The detection mechanism 50 comprises a support 51 and a CCD camera 52 installed on the support 51 and facing the battery pole piece; the CCD camera 52 is installed on the support 51 and faces the battery pole piece, and can accurately detect whether the appearance of the battery pole piece meets the requirements, thereby providing a reliable basis for quality control.

[0035] The use method and principle of the battery part automatic processing equipment are as follows:

[0036] The conveying mechanism conveys the battery pole piece forward, the stop limiting assembly stops and limits the feeding seat when the conveying mechanism conveys the battery pole piece to the side of the cutting mechanism, the cutting mechanism cuts the battery pole piece; the stop limiting assembly stops and limits the feeding seat when the conveying mechanism conveys the battery pole piece to the side of the bending mechanism, the bending mechanism bends the battery pole piece; the stop limiting assembly stops and limits the feeding seat when the conveying mechanism conveys the battery pole piece to the side of the detection mechanism, and the detection mechanism detects whether the appearance of the battery pole piece meets the requirements.

[0037] The design focus of the utility model lies in that the conveying, cutting, bending and detection are realized automatically by adopting the conveying mechanism, the cutting mechanism, the bending mechanism and the detection mechanism, so that the whole processing process is orderly carried out, the processing efficiency and continuity are improved, the labor cost is reduced, and the work efficiency is improved; the position of the battery pole piece can be accurately controlled by adopting the stop limiting assembly, and the accuracy in different processing links is ensured.

[0038] The above is only a preferred embodiment of the utility model, and does not limit the technical range of the utility model, so any slight modification, equivalent change and modification made according to the technical essence of the utility model to the above embodiment still belongs to the range of the technical scheme of the utility model.

Claims

1. An automated processing equipment for battery components, characterized in that: The device includes a workbench, a conveying mechanism for conveying battery electrode sheets, a cutting mechanism for cutting the battery electrode sheets, a bending mechanism for bending the battery electrode sheets, and a detection mechanism for detecting whether the appearance of the battery electrode sheets meets the requirements. The conveying mechanism is arranged laterally on the workbench, and the cutting mechanism, bending mechanism, and detection mechanism are distributed sequentially along the conveying direction of the conveying mechanism. The conveying mechanism has a feeding seat for placing battery electrode sheets and a stop and limit assembly for stopping and limiting the feeding seat. The feeding seat is movably located on the workbench, and the output end of the stop and limit assembly corresponds to the feeding seat.

2. The automated processing equipment for battery components according to claim 1, characterized in that: The stop and limit assembly includes a stop and limit drive cylinder and a stop block. The stop block is installed at the output end of the stop and limit drive cylinder and is movable to correspond to the feeding seat.

3. The automated processing equipment for battery components according to claim 1, characterized in that: The cutting mechanism includes a longitudinal drive component, a vertical drive component, and a cutting component. The vertical drive component is installed at the output end of the longitudinal drive component, and the cutting component is installed at the output end of the vertical drive component. The cutting component is movably positioned to correspond to the battery electrode.

4. The automated processing equipment for battery components according to claim 3, characterized in that: The cutting assembly includes a lifting drive cylinder and a cutting blade. The lifting drive cylinder is installed at the output end of the vertical drive assembly, and the cutting blade is installed at the output end of the lifting drive cylinder.

5. The automated processing equipment for battery components according to claim 1, characterized in that: The bending mechanism includes a bending drive cylinder and a bending block. The bending drive cylinder is vertically mounted on the worktable, and the bending block is installed at the output end of the bending drive cylinder. The bending block can be lowered to abut against the battery electrode.

6. The automated processing equipment for battery components according to claim 5, characterized in that: The bending mechanism also includes a guide rail for limiting the bending block. The guide rail is vertically arranged on the worktable, and the bending block slides in cooperation with the guide rail.

7. The automated processing equipment for battery components according to claim 1, characterized in that: The detection mechanism includes a support and a CCD camera, which is mounted on the support and faces the battery electrode.