电池片传输设备

By introducing limiting components and clamping mechanisms into the cell transfer equipment, the problem of cell overlap during cell transfer was solved, achieving stable cell transfer and high-yield production.

CN224521582UActive Publication Date: 2026-07-17TONGWEI SOLAR ENERGY (CHENGDU) CO LID

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TONGWEI SOLAR ENERGY (CHENGDU) CO LID
Filing Date
2025-06-18
Publication Date
2026-07-17

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Abstract

本实用新型提供一种电池片传输设备,包括传输跑道及规整机构。传输跑道包括具有第一工位的传输组件。传输组件沿垂直于传输方向的两侧分别设有至少一个第一限位件和至少一个第二限位件,各个第二限位件与各个第一限位件对应设置并形成第一夹持位。规整机构被配置为当传输组件将电池片传输至第一工位时将电池片规整至第一夹持位内。本申请中的规整机构能够将电池片规整值第一夹持位内,保证电池片位于第一限位件与第二限位件之间,避免电池片与第一限位件的顶部或第二限位件的顶部搭边,保证电池片在后续传输过程中不存在左右搭边的情况,减少因电池片搭边而导致的碎片等系列问题,提高电池片的良率及生产效率。
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Claims

1. A cell sheet transfer apparatus, characterized by, include: The transmission runway (100) includes a transmission component (110) with a first station. The transmission component (110) is provided with at least one first limiting member (121) and at least one second limiting member (122) on both sides perpendicular to the transmission direction. Each second limiting member (122) is correspondingly arranged with each first limiting member (121) to form a first clamping position. A straightening mechanism (200) is installed at the first station and configured to straighten the battery cell (20) into the first clamping position when the transfer component (110) transfers the battery cell (20) to the first station.

2. The cell transfer apparatus of claim 1, wherein, The transmission assembly (110) includes a first transmission belt (111) and a second transmission belt (112) spaced apart along a direction perpendicular to the transmission direction. Each of the first limiting members (121) is installed on the first transmission belt (111) at circumferential intervals along the first transmission belt (111), and each of the second limiting members (122) is installed on the second transmission belt (112) at circumferential intervals along the second transmission belt (112).

3. The cell transfer apparatus of claim 1, wherein, The transmission component (110) is also provided with at least one third limiting member (123), each of the third limiting members (123) is arranged at intervals along the circumference of the transmission component (110), and two adjacent third limiting members (123) cooperate to form a second clamping position.

4. The cell transfer apparatus of claim 1, wherein, The transmission component (110) further includes a detection element (130) and a controller. The controller is communicatively connected to the detection element (130) and the straightening mechanism (200). The detection element (130) is used to detect whether the battery cell (20) is transmitted to the first station.

5. The cell transfer apparatus of claim 1, wherein, The straightening mechanism (200) includes a first clamping piece (210), a second clamping piece (220), and a driving assembly (230). The first clamping piece (210) and the second clamping piece (220) are respectively located on both sides of the transmission assembly (110) perpendicular to the transmission direction. The driving assembly (230) is connected to both the first clamping piece (210) and the second clamping piece (220) so that the first clamping piece (210) and the second clamping piece (220) can reciprocate in directions that are close to or far from each other.

6. The cell transfer apparatus of claim 5, wherein, Both the first clamping member (210) and the second clamping member (220) are provided with at least one clamping portion (211), and each of the clamping portions (211) on the first clamping member (210) and each of the clamping portions (211) on the second clamping member (220) are spaced apart along the transmission direction.

7. The cell transfer apparatus according to any one of claims 1 to 6, characterized by, The cell transfer device (10) further includes a buffer mechanism (300), which is installed on the outside of the transfer component (110) and is used to buffer the cells (20) after they have been regulated by the regulating mechanism (200).

8. The cell transfer apparatus of claim 7, wherein, The buffer mechanism (300) includes a drive member (310) and a buffer member (320). The buffer member (320) is provided with a buffer cavity (321) through which the transmission component (110) passes. The buffer cavity (321) is provided with at least one support part (322) on each of the two inner sidewalls perpendicular to the transmission direction. The support parts (322) located on the two inner sidewalls of the buffer cavity (321) are respectively arranged and spaced apart in the vertical direction. The drive member (310) is connected to the buffer member (320) and is used to drive the buffer member (320) to move up and down.

9. The cell transfer apparatus of claim 8, wherein, The straightening mechanism (200) is located inside the buffer (320), and the buffer cavity (321) is also provided with a first clearance groove (323) along the two inner sidewalls perpendicular to the transmission direction. The first clearance groove (323) is used to avoid the straightening mechanism (200).

10. The cell transfer apparatus according to any one of claims 1 to 6, characterized by, The transmission component (110) also has a second station located downstream of the first station, and the cell transmission device (10) further includes a lifting platform (400) installed at the second station and used to lift the cell (20). And / or, the transfer assembly (110) also has a third station located upstream of the first station, and the cell transfer device (10) further includes a cell extraction device installed at the third station for extracting the cell (20) and transferring the cell (20) onto the transfer assembly (110).