Forming, grading, discharging and overturning assembly

By designing a batching, capacity-setting, and flipping assembly, and utilizing a conveyor motor and a rotary motor to flip cells with opposite tab orientations, the problem of inconsistent tab orientations in lithium battery production was solved, improving production efficiency and reducing labor costs.

CN223606485UActive Publication Date: 2025-11-28GUANGDONG HUAXIA TECH CO LTD
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Patent Information

Application Number
CN202423273665.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-28
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In lithium battery production, inconsistent orientation of cell tabs makes manual placement difficult, affecting production efficiency and increasing costs.

Method used

Design a cell-forming, capacity-controlled feeding and flipping assembly, including a conveyor motor, a rotary motor and an adsorption platform, which uses a robotic arm to flip cells with opposite tab orientations to ensure tab consistency.

Benefits of technology

This achieved consistent feeding of battery cell tabs, reduced labor costs, and improved production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a formation and capacity grading blanking and overturning assembly which comprises a first support, a conveying motor, a driving shaft, a driven shaft, a blanking belt, a second support, a fixed base, a rotating motor, a rotating shaft and an adsorption platform, the conveying motor is arranged on the first support, and the driving shaft and the driven shaft are arranged at the two ends of the first support in a relatively rotating mode. An output shaft of the conveying motor is in transmission connection with the driving shaft, the discharging belt is wound around the driving shaft and the driven shaft, the fixed base is arranged on the second support and located on one side of the input end of the discharging belt, the rotating motor is arranged on the fixed base, and the rotating shaft is rotationally arranged on the fixed base. An output shaft of the rotating motor is connected with the rotating shaft, and the adsorption platform is rotationally connected with the rotating shaft. According to the utility model, the battery cells with opposite tab directions can be turned over and then discharged, so that the consistency of the tabs of the discharged battery cells is ensured, the labor cost is greatly reduced, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lithium battery production technical field, concretely relates to a formation and capacity unloading and turnover subassembly. BACKGROUND

[0002] In the production of lithium battery, the electric core needs to be formed and capacity under the condition of heating and pressurization, and is placed on the unloading belt by the mechanical hand after formation and capacity and is unloaded. However, since the tab of the electric core in the previous process can be towards left or right, the electric core needs to be placed manually in the subsequent process, which greatly affects the production efficiency, and the labor cost is high. SUMMARY

[0003] The utility model discloses a formation and capacity unloading and turnover subassembly which overcomes the defects of the prior art.

[0004] The technical scheme of the utility model is as follows:

[0005] A formation and capacity unloading and turnover subassembly, comprising a first support, a conveying motor, a driving shaft, a driven shaft, an unloading belt, a second support, a fixed base, a rotary motor, a rotating shaft and a suction platform, the conveying motor is arranged on the first support, the driving shaft and the driven shaft are rotatably arranged at the two ends of the first support, the output shaft of the conveying motor is in transmission connection with the driving shaft, the unloading belt is wound on the driving shaft and the driven shaft, the fixed base is arranged on the second support and located at the input end side of the unloading belt, the rotary motor is arranged on the fixed base, the rotating shaft is rotatably arranged on the fixed base, the output shaft of the rotary motor is connected with the rotating shaft, and the suction platform is rotatably connected with the rotating shaft.

[0006] Further, the output shaft of the rotary motor is connected with the rotating shaft through a shaft coupling.

[0007] Further, the height of the suction platform is higher than the height of the unloading belt.

[0008] Further, the output end side of the unloading belt is provided with a pushing motor, the output shaft of the pushing motor faces the unloading belt and is connected with a pushing block.

[0009] Further, the output end of the unloading belt is provided with a positioning block.

[0010] Compared with the prior art, the utility model has the beneficial effects that: the utility model can unload the electric core after turning over the electric core with opposite tab directions, thereby ensuring the consistency of the tabs of the unloaded electric core, greatly reducing the labor cost and improving the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0011] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative effort.

[0012] Figure 1 The structure diagram of the formation and sub-portion feeding and turnover assembly is provided. DETAILED DESCRIPTION

[0013] In order to make the purpose, technical solutions and advantages of the present application more clear, the following will further describe the present application in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.

[0014] In order to illustrate the technical solutions of the present application, the following will be described through specific embodiments.

[0015] EMBODIMENT

[0016] Please refer to Figure 1 The present embodiment provides a formation and sub-portion feeding and turnover assembly, which comprises a first support 1701, a conveying motor 1702, a driving shaft 1703, a driven shaft 1704, a feeding belt 1705, a second support 1706, a fixed base 1707, a rotary motor 1708, a shaft coupling 1709, a rotating shaft 1710 and a suction platform 1711. The conveying motor 1702 is arranged on the first support 1701. The driving shaft 1703 and the driven shaft 1704 are arranged at opposite ends of the first support 1701. The output shaft of the conveying motor 1702 is in transmission connection with the driving shaft 1703. The feeding belt 1705 is arranged around the driving shaft 1703 and the driven shaft 1704. The fixed base 1707 is arranged on the second support 1706 and located at the input end side of the feeding belt 1705. The rotary motor 1708 is arranged on the fixed base 1707. The rotating shaft 1710 is rotatably arranged on the fixed base 1707. The output shaft of the rotary motor 1708 is connected with the rotating shaft 1710 through the shaft coupling 1709. The suction platform 1711 is rotatably connected with the rotating shaft 1710. The rotary motor 1708 can drive the suction platform 1711 to turn over in the direction of the feeding belt 1705 through the rotating shaft 1710. The polar ear direction opposite electric core can be placed on the suction platform 1711 and adsorbed by the feeding mechanical arm, and then turned over by 180° to the feeding belt 1705. Note that the height of the suction platform 1711 needs to be higher than the height of the feeding belt 1705.

[0017] Further, the output end side of the discharging belt 1705 is also provided with a pushing motor 1712, the output shaft of the pushing motor 1712 is towards the discharging belt 1705 and is connected with a pushing block 1713. The battery cell reaching the end of the discharging belt 1705 can be pushed to one side by the pushing block 1713, so as to facilitate carrying away, and the output end of the discharging belt 1705 is provided with a positioning block 1714 to block the battery cell from continuing to move forward.

[0018] The above are only preferred embodiments of the present application, and are not used to limit the present application, and any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A chemical composition, dispensing, and flipping assembly, characterized in that: The utility model relates to a kind of automatic feeding device, including first support, conveying motor, driving shaft, driven shaft, blanking belt, second support, fixed base, rotary motor, rotating shaft and adsorption platform, the conveying motor is set on first support, the driving shaft and driven shaft are oppositely rotated and set in the both ends of first support, the output shaft of conveying motor is drivingly connected with driving shaft, the blanking belt is around and is set on driving shaft and driven shaft, the fixed base is set on second support and is located in the input end side of blanking belt, the rotary motor is set on fixed base, the rotating shaft is rotationally set on fixed base, the output shaft of rotary motor is connected with rotating shaft, the adsorption platform is rotationally connected with rotating shaft.

2. The formation, dispensing, turning and weighing assembly according to claim 1, characterized in that: The output shaft of the rotary motor is connected with the rotating shaft through a shaft coupling.

3. The formation, dispensing, turning and weighing assembly according to claim 1, characterized in that: The height of the adsorption platform is higher than the height of the blanking belt.

4. The formation, dispensing, turning and weighing assembly of claim 1, wherein: A pushing motor is arranged on the output end side of the blanking belt, and the output shaft of the pushing motor faces the blanking belt and is connected with a pushing block.

5. The formation, dispensing, and turnover assembly of claim 4, wherein: A positioning block is arranged on the output end of the blanking belt.