一种电池组激光雕刻设备及电池组加工系统

By designing a material transfer mechanism for a battery pack laser engraving equipment, and using robotic arms and fixtures to adjust the position of the battery pack, the problem of adapting to photolithography processing of different battery packs was solved, achieving efficient and flexible battery photolithography processing, and improving production efficiency and compatibility.

CN224508735UActive Publication Date: 2026-07-17BOZHON PRECISION IND TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BOZHON PRECISION IND TECH CO LTD
Filing Date
2025-08-12
Publication Date
2026-07-17

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Abstract

本实用新型提供了一种电池组激光雕刻设备及电池组加工系统,其包括:光刻机构;移料机构,其包括机械臂、固定板、固定夹具及升降夹具,固定板连接于机械臂的自由端,固定夹具以及升降夹具均连接于固定板,固定夹具与固定板固接,升降夹具沿垂直于固定板所在平面的方向滑动连接于固定板。本实用新型可通过移料机构带动不同电池组进入光刻机构进行光刻加工,在此过程中,固定夹具与升降夹具能够依据实际光刻需求夹持不同电池组,并调节其相对位置,由此仅仅通过一次移料即可实现对不同电池包的光刻加工。相比于现阶段常规光刻技术来说,本申请兼具使用灵活、兼容性强、适用场景广泛以及加工效率高等优势,在本行业内具有广阔的使用前景。
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Claims

1. A battery laser engraving apparatus, characterized by: include: A lithography mechanism, comprising a lithography machine; A material transfer mechanism includes a robotic arm, a fixed plate, at least one fixed clamp, and at least one lifting clamp. The robotic arm is disposed on one side of the lithography machine. The fixed plate is connected to the free end of the robotic arm. Both the fixed clamp and the lifting clamp are connected to the fixed plate and enter / exit the lithography machine through the robotic arm. The fixed clamp is fixedly connected to the fixed plate to hold one type of battery pack, and the lifting clamp is slidably connected to the fixed plate in a direction perpendicular to the plane of the fixed plate to hold another type of battery pack.

2. The battery laser-engraving apparatus of claim 1, wherein: The fixing clamp includes a first driver and at least two first jaws. The first driver is fixed to the fixing plate, and the at least two first jaws are respectively connected to the working end of the first driver to move relatively closer to / away from each other.

3. The battery laser-engraving apparatus of claim 1, wherein: The lifting clamp includes a lifting driver, a lifting module, and a lifting slide plate. The lifting driver and the lifting module are both connected to the fixed plate. The lifting module extends in a direction perpendicular to the plane of the fixed plate. The lifting slide plate is connected to the working end of the lifting driver and is slidably connected to the lifting module.

4. The battery laser engraving apparatus of claim 3, wherein: The lifting clamp also includes a second driver and at least two second grippers. The second driver is fixed to the lifting slide plate, and the at least two second grippers are respectively connected to the working end of the second driver to move relatively closer to / away from each other.

5. The battery laser-engraving apparatus of claim 1, wherein: The material transfer mechanism further includes at least two detection components, each of which corresponds to at least one of the fixed clamps and at least one of the lifting clamps.

6. The battery laser-engraving apparatus of claim 5, wherein: The detection component includes a detector and a mounting bracket. The mounting bracket is disposed on one side of the fixed clamp or the lifting clamp. The detector is connected to the mounting bracket and is positioned facing the battery pack.

7. The battery laser-engraving apparatus of claim 1, wherein: The lithography mechanism includes a protective box and a frame. The lithography machine is disposed inside the frame, and the protective box is supported on the frame and arranged around the working end of the lithography machine.

8. The battery laser-engraving apparatus of claim 1, wherein: The battery pack laser engraving equipment also includes a barcode scanning mechanism, which includes a barcode scanner and an adjustment frame. The adjustment frame is located on one side of the photolithography mechanism, and the barcode scanner is located on the adjustment frame.

9. The battery laser-engraving apparatus of claim 8, wherein: The battery pack laser engraving equipment also includes an electronic control mechanism, and the material transfer mechanism, the photolithography mechanism, and the barcode scanning mechanism are respectively connected to the electronic control mechanism.

10. A battery pack processing system characterized by: The battery pack laser engraving equipment includes any one of claims 1 to 9.