Flow turning and overturning platform system for battery box production

By designing a flow-direction flipping platform system that includes a main frame, a flipping device, and a pin locking device, the problems of low efficiency, high cost, and high safety risks in the battery box production process are solved, and efficient, safe, and flexible battery box flipping operation is achieved.

CN224171876UActive Publication Date: 2026-04-28HUBEI MINNENG AUTOMOTIVE PARTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI MINNENG AUTOMOTIVE PARTS CO LTD
Filing Date
2025-02-19
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The existing battery box production process suffers from problems such as low efficiency, high cost, and high safety risks. In particular, the process of transfer and flipping is labor-intensive and risky. Furthermore, the high degree of automation of existing equipment leads to expensive equipment, complex structure, or simple equipment that cannot meet the requirements of high efficiency and safety.

Method used

Design a flow-oriented flipping platform system including a main frame, a flipping device, a pin locking device, and a clamping device. The system utilizes a flipping arm and leverage to achieve automatic flipping of the battery box, and combines guide grooves, guide wheels, and limit blocks to ensure stability. The system reduces manual operation time and equipment costs by simplifying the operation process.

Benefits of technology

It improves production efficiency, reduces equipment costs and maintenance expenses, enhances operational safety, and adapts to battery boxes of different weights and sizes, exhibiting good versatility and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of battery box processing equipment, and provides a flow turning and overturning platform system for battery box production, which comprises a main body frame, two overturning devices, a bolt locking device and a pressing device, the pressing devices are arranged on the periphery of the body frame, a battery box to be machined is guided into the body frame through the guiding device and then pressed by the pressing devices, the two turnover devices are connected with the body frame, and a turnover arm is arranged on the bolt locking device and connected with the bolt locking device. And when the bolt locking device is released, the overturning arm automatically overturns the battery box to the other side under the action of gravity and lever force. The device has the advantages that the efficiency is improved, the manual operation time is remarkably shortened, and the overall production efficiency is improved; the cost is reduced: no complex automation equipment is needed, and the initial investment and maintenance cost are reduced; the safety is enhanced; and the operation process is simplified.
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Description

Technical Field

[0001] This utility model belongs to the technical field of battery box processing equipment, specifically relating to a flow-turning and flipping platform system for battery box production. Background Technology

[0002] With the rapid development of the new energy vehicle industry, the production efficiency and safety of power battery boxes, as key components, have become a focus of industry attention. In traditional production methods, battery boxes weighing up to 100KG face many difficulties in the process of handling and flipping them, which is not only labor-intensive and inefficient, but also increases operational risks. Therefore, there is an urgent need for a new flipping table design that can reduce the burden on personnel, improve production efficiency, and ensure safety. Most of the battery box flipping devices currently on the market have the following problems: First, the high degree of automation leads to high equipment costs and is not suitable for all production scenarios; second, although they can achieve flipping, the structure is complex and maintenance is difficult; third, some simple devices cannot meet the needs of efficient and safe production, such as manual flipping, which is inefficient and prone to errors. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a flow-turning and flipping platform system for battery box production, which addresses the problems of low efficiency, high cost, and high safety risks in the flow-turning and flipping process of existing new energy battery boxes.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: a flow-turning platform system for battery box production, characterized in that it includes a main frame, two turning devices, a pin locking device, and a pressing device. The main frame has an inlet space composed of turning arms for loading the battery boxes to be processed. A guide device is arranged on the main frame, and multiple pressing devices are arranged around the main frame. The battery boxes to be processed are guided into the main frame by the guide device and then pressed by the pressing device. The two turning devices are connected to the main frame. The pin locking device is provided with a turning arm and connected to the pin locking device. When the pin locking device is released, the turning arm automatically turns the battery box to the other side under the action of gravity and leverage.

[0005] In the aforementioned flow-turning platform system for battery box production, guide grooves are provided on both sides of the main frame and multiple side guide wheels are arranged. A front guide wheel is arranged at the front of the main frame, and limiting blocks for positioning the battery box are provided around the main frame and at the rear.

[0006] In the aforementioned flow-turning platform system for battery box production, the clamping device includes an operating wrench and a clamping component, wherein the operating wrench and the clamping component are mechanically connected by a hinged component.

[0007] In the aforementioned flow-turning platform system for battery box production, the pin locking device includes a pin rod and a pin block. The pin block is height-adjustable and mounted on the main frame. The pin rod is fixed to the pin block and its head can be inserted into the turning arm.

[0008] Compared with existing technologies, the advantages of this utility model are: improved efficiency, significantly reduced manual operation time and improved overall production efficiency through mechanized design such as flipping device and pin locking device; reduced cost, as no complex automated equipment is required, reducing initial investment and maintenance costs; enhanced safety, as simplified operation process, reduced human error, and ensured operator safety; and high flexibility, adaptable to battery boxes of different weights and sizes, with good versatility and scalability. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the flow-direction flipping platform system used in battery box production. Detailed Implementation

[0010] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0011] In the figure, the main frame is 100; the flipping arm is 101; the flipping device is 200; the pin locking device is 300; the pin rod is 301; the pin block is 302; the clamping device is 400; the operating wrench is 401; the clamping part is 402; the side guide wheel is 500; the front guide wheel is 600; the limit block is 700; and the battery box to be processed is 800.

[0012] like Figure 1As shown, this flow-direction flipping platform system for battery box production includes a main frame 100, two flipping devices 200, a pin locking device 300, and a clamping device 400. The main frame 100 has an inlet space composed of flipping arms 101 for loading the battery box 800 to be processed. A guide device is arranged on the main frame 100. The entire main frame 100 is constructed of a sturdy and durable material with an anti-slip texture on the surface to ensure stable placement of the battery box. Guide grooves are provided on both sides of the main frame 100, and multiple side guide wheels 500 are arranged thereon. A front guide wheel 600 is arranged at the front of the main frame 100. The main frame 100 is provided around its perimeter and at its rear for... The positioning limit block 700 of the battery box facilitates the accurate positioning of the battery box 800 to be processed, ensuring the stability and accuracy of the battery box during flipping and pushing. Multiple clamping devices 400 are arranged around the main frame 100. After the battery box 800 to be processed is guided into the main frame 100 by the guide device, it is clamped by the clamping devices 400. For easy operation, the clamping device 400 includes an operating wrench 401 and a clamping component 402. The operating wrench 401 and the clamping component 402 are mechanically connected by a hinge component. The clamping and releasing of the battery box can be achieved through simple manual operation. The clamping device 400 is equipped with a spring or hydraulic mechanism to ensure that the clamping force is moderate and uniform.

[0013] Two flipping devices 200 are connected to the main frame 100. A flipping arm 101 is provided on the pin locking device 300 and connected to the pin locking device 300. The pin locking device 300 includes a pin rod 301 and a pin block 302. The pin block 302 is mounted on the main frame 100 with adjustable height. The pin rod 301 is fixed to the pin block 302 and its head can be inserted into the flipping arm 101. Specifically, when the pin locking device 300 is released, the flipping arm 101 automatically flips the battery box to the other side under the action of gravity and leverage. This patent mainly uses the lever principle to design the flipping arm 101, which is connected to the pin locking device 300. When the pin locking device 300 is released, the flipping arm 101 automatically flips the battery box to the other side under the action of gravity and leverage. During the flipping process, the limit block 700 and safety device are used to prevent the battery box from slipping or accidentally colliding.

[0014] The specific embodiments described herein are merely illustrative examples of the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications to the described specific embodiments or adopt similar methods to replace them, but without departing from the scope defined by the spirit of this utility model.

Claims

1. A flow-direction flipping platform system for battery box production, characterized in that, The device includes a main frame, two flipping devices, a pin locking device, and a clamping device. The main frame has an inlet space consisting of flipping arms for loading battery boxes to be processed. A guide device is arranged on the main frame, and multiple clamping devices are arranged around the main frame. The battery boxes to be processed are guided into the main frame by the guide device and then clamped by the clamping devices. The two flipping devices are connected to the main frame. The pin locking device is equipped with a flipping arm and is connected to the pin locking device. When the pin locking device is released, the flipping arm automatically flips the battery box to the other side under the action of gravity and leverage.

2. The flow-direction flipping platform system for battery box production according to claim 1, characterized in that, The main frame has guide grooves on both sides and multiple side guide wheels. A front guide wheel is arranged at the front of the main frame. Limiting blocks for positioning the battery box are provided around the main frame and at the rear.

3. The flow-direction flipping platform system for battery box production according to claim 2, characterized in that, The clamping device includes an operating wrench and a clamping component, wherein the operating wrench and the clamping component are mechanically connected by a hinge component.

4. The flow-direction flipping platform system for battery box production according to claim 3, characterized in that, The aforementioned pin locking device includes a pin rod and a pin block. The pin block is mounted on the main frame with adjustable height. The pin rod is fixed to the pin block and its head can be inserted into the flip arm.