电池模组吊运与入箱工装

By designing a hoisting frame and suction cup module tooling suitable for CTP battery modules, the problems of CTP battery modules having no end plates, diverse specifications, and integrated hoisting and boxing were solved, achieving efficient tooling adaptation and low-cost hoisting, transportation, and boxing operations.

CN224512982UActive Publication Date: 2026-07-17中汽新能(天津)电池科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
中汽新能(天津)电池科技有限公司
Filing Date
2025-08-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing hoisting fixtures cannot meet the needs of CTP battery modules with no end plates, diverse specifications, and integrated hoisting and boxing. They have poor adaptability and high procurement costs, while traditional cylinder extrusion methods lack flexibility.

Method used

Design a tooling structure that includes a lifting frame module and a lifting suction cup module. Use a lead screw structure to replace the cylinder, combined with an optical axis guide rod and double clamping force to ensure that it can be adapted to CTP battery modules of different specifications and realize the functions of lifting, transportation and boxing.

Benefits of technology

This improved the overall utilization rate of tooling, reduced procurement costs, and ensured the safety and high efficiency of battery modules through a flexible boxing process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224512982U_ABST
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Abstract

本实用新型属于锂离子电池技术领域,具体涉及一种电池模组吊运与入箱工装,包括吊装框架模块和吊装吸盘模块;所述吊装框架模块包括框架梁、后端夹爪固定板、前端夹爪固定板、电池模组夹爪及后端挤压丝杠;所述吊装吸盘模块包括吸盘固定板、电芯吸盘及入箱挤压丝杠;所述吊装吸盘模块通过框架模块与吸盘吊装模块连接固定板与吊装框架模块连接,共同实现电池模组的吊运和入箱。本装置通过将工装分为吊装框架与吊装吸盘两个模块,实现了一套工装同时具备CTP电池模组的吊装转运和入箱功能,无需额外配备多套设备,显著提升了工装的综合利用率。
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Claims

1. A tooling for lifting and placing battery modules into a box, characterized in that, The system includes a lifting frame module (2) and a lifting suction cup module (3). The lifting frame module includes a frame beam (201), a rear-end gripper fixing plate (202), a front-end gripper fixing plate (205), a battery module gripper (207), and a rear-end compression screw (208). The rear-end gripper fixing plate (202) and the front-end gripper fixing plate (205) are respectively connected to the frame beam (201). The battery module gripper (207) is installed on the rear-end gripper fixing plate (202) and the front-end gripper fixing plate (205). The extrusion screw (208) is used to drive the battery module gripper (207) to clamp the battery module; the lifting suction cup module includes a suction cup fixing plate (301), a cell suction cup (303) and an in-box extrusion screw (307). The cell suction cup (303) is installed on the suction cup fixing plate (301), and the in-box extrusion screw (307) is located above the lifting suction cup module; the lifting suction cup module is connected to the lifting frame module through the frame module and the suction cup lifting module connecting fixing plate (206), so as to realize the lifting and in-boxing of the battery module.

2. The tooling of claim 1, wherein, The frame beam (201) has two beams, and the rear end gripper fixing plate (202) and the front end gripper fixing plate (205) are both connected and fixed to the two frame beams (201) by bolts.

3. The tooling of claim 2, wherein, The frame beam (201) is provided with multiple threaded holes. The rear gripper fixing plate (202) and the front gripper fixing plate (205) are connected to the threaded holes at the corresponding positions by bolts to adapt to battery modules of different lengths.

4. The tooling of claim 1, wherein, The hoisting frame module also includes a frame hoisting ring (203) and a frame fixing ring (204). Both the frame hoisting ring (203) and the frame fixing ring (204) are connected to the threaded holes of the frame beam (201) by bolts, and the frame hoisting ring (203) can move along the frame beam (201) to adjust its position.

5. The tooling of claim 1, wherein, Both the rear gripper fixing plate (202) and the front gripper fixing plate (205) are provided with threaded holes, and the battery module gripper (207) is fixed to the threaded holes by bolts.

6. The tooling of claim 1, wherein, The hoisting frame module also includes a rear slide rail (210), which is fixed to the rear gripper fixing plate (202) by bolts. The battery module gripper (207) can move along the rear slide rail (210).

7. The tooling of claim 1, wherein, The hoisting frame module also includes a wire displacement sensor (209), which is located on the rear gripper fixing plate (202) and is used to monitor the extrusion distance of the rear extrusion screw (208).

8. The tooling of claim 1, wherein, The lifting suction cup module also includes a lifting plate (304) and a lifting beam (305). The lifting plate (304) and the lifting beam (305) are fixed together by bolts, and the suction cup fixing plate (301) and the lifting beam (305) are fixed together by bolts.

9. The tooling of claim 8, wherein, The lifting suction cup module also includes a cell pressure plate (302), which is bolted to both sides and the middle of the suction cup fixing plate (301) to squeeze the battery module when the module is placed into the box.

10. The tooling of claim 1, wherein, The lifting suction cup module further comprises an optical axis guide rod (306) which is arranged in parallel with the in-box extrusion screw rod (307) and is used for guiding during in-box extrusion.