吸取机构和圆柱电池生产设备
By combining a fixed structure, a guiding structure, and a cam structure on the turret, efficient collection of defective caps is achieved while the turret is rotating continuously. This solves the problem of low production efficiency in existing technologies and improves the automation and efficiency of lithium cylindrical battery production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUXI LEAD INTELLIGENT EQUIP CO LTD
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-17
AI Technical Summary
In the existing technology, the mechanism for picking up the caps of cylindrical lithium batteries can only be operated after the turntable stops, resulting in low production efficiency and making it difficult to meet the demand for high-efficiency production.
A suction mechanism was designed, including a turret, a fixed structure, a guide structure, an adsorption structure, and a cam structure. By utilizing the cooperation between the cam structure and the adsorption structure while the turret is constantly rotating, it slides along the guide structure to achieve efficient suction of defective caps.
With the turret constantly rotating, the adsorption structure can accurately absorb and release defective caps, improving production efficiency and automation, and avoiding the time wastage caused by frequent start-stop cycles of the turret.
Smart Images

Figure CN224512576U_ABST
Abstract
Claims
1. A suction mechanism characterized by, include: A turret (1) is provided with multiple sets of corresponding fixed structures (11) and guide structures (12) in the circumferential direction; Multiple adsorption structures (2) are slidably engaged with multiple guide structures (12) in the axial direction of the turret (1); A cam structure (3) is provided at intervals on the periphery of the turret (1). The cam structure (3) cooperates with a plurality of adsorption structures (2) so that the adsorption structures (2) can slide along the guide structure (12) while rotating.
2. The suction mechanism according to claim 1, characterized by The cam structure (3) includes a first support surface (31), and the adsorption structure (2) includes a first follower part (21). The first follower part (21) slides and is supported on the first support surface (31) in conjunction with the guide structure (12).
3. The suction mechanism according to claim 2, characterized by The adsorption structure (2) further includes a second follower (22) and an adsorption part (23). The first follower (21) is provided with a follower slide rail (211), and the second follower (22) slides in cooperation with the follower slide rail (211). The adsorption part (23) is connected to the second follower part (22) and is used to pick up the battery cap.
4. The suction mechanism according to claim 3, characterized by The cam structure (3) includes a first cam (32) and a second cam (33) spaced apart. The first cam (32) has a first support surface (31) on the side away from the second cam (33), and the second cam (33) has a second support surface (34) on the side close to the first cam (32). The adsorption structure (2) includes a stop (24), the first follower (21) is supported on the first support surface (31), the stop (24) is connected to the first follower (21), the second follower (22) cooperates with the second support surface (34) so that the second follower (22) and the adsorption part (23) slide along the follower slide rail (211), and the stop (24) is used to separate the battery cap and the adsorption part (23).
5. The suction mechanism according to claim 4, characterized by When the adsorption part (23) picks up the battery cap, the end face of the adsorption part (23) and the end face of the stop part (24) are flush.
6. The suction mechanism according to claim 4, wherein The stop portion (24) has a through hole (241) formed inside, and the adsorption portion (23) is inserted and engaged with the through hole (241).
7. The suction mechanism according to claim 6, characterized by The adsorption part (23) includes a guide rod (231) and a magnetic head (232). One end of the guide rod (231) is connected to the second follower part (22), and the other end of the guide rod (231) is provided with the magnetic head (232).
8. The suction mechanism according to claim 4, wherein The cam structure (3) includes a limiting part (35), which is disposed on the side of the first cam (32) away from the second cam (33) to form a limiting channel between the limiting part (35) and the first support surface (31) of the first cam (32).
9. The suction mechanism according to claim 4, wherein It also includes a collection structure (4), which is disposed on the side of the second cam (33) away from the first cam (32) and is used to collect the battery cap.
10. The suction mechanism according to claim 1, wherein The turret (1) is provided with a magnetic attraction structure (14) in the circumferential direction, which cooperates with the fixed structure (11) to form a battery fixing space.
11. A cylindrical battery production apparatus characterized by comprising: The application further provides a battery pack comprising the suction mechanism of any one of claims 1-10.