一种隧道式超级电容双炉老化测试设备

The automated design of the tunnel-type supercapacitor dual-furnace aging test equipment has solved the problems of uneven heating and low efficiency of traditional aging equipment, realizing continuous production of supercapacitors and improving production efficiency and product quality.

CN224518873UActive Publication Date: 2026-07-17SHENZHEN CHIXIANG NEW ENERGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN CHIXIANG NEW ENERGY CO LTD
Filing Date
2025-08-05
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional supercapacitor aging equipment suffers from uneven heating, low efficiency, inaccurate polarity confirmation, and low automation, which affect product quality and production efficiency.

Method used

Design a tunnel-type supercapacitor dual-furnace aging test equipment, which adopts a feeding mechanism, a loading mechanism, a conveying mechanism, a unloading mechanism, a charging aging test chamber and a high-temperature static aging test chamber to achieve automated aging treatment. The charging aging chamber and the high-temperature static aging chamber are connected in series, and the supercapacitor is seamlessly connected to the high-temperature static aging after charging aging. A main shaft cam feeding structure and a polarity detection unit are used for precise control.

Benefits of technology

This has enabled an automated continuous aging process for supercapacitors, shortening the production cycle, improving production efficiency, and meeting the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种隧道式超级电容双炉老化测试设备,包括送料机构、上料机构、输送机构、下料机构、充电老化测试箱、高温静置老化测试箱和控制柜;所述送料机构与所述上料机构相连接;所述上料机构与所述输送机构对接;所述输送机构将超级电容依次传输经过充电老化测试箱、高温静置老化测试箱和下料机构;所述充电老化测试箱和所述高温静置老化测试箱均设置有进出料单元;所述充电老化测试箱和所述高温静置老化测试箱分别通过进出料单元将所述输送机构上的物料送入至箱内进行老化测试,并将测试后的物料送出至所述输送机构中继续输送至下一工位;所述下料机构的与输送机构对接,将物料输出至设备外;所述控制柜用于控制整个设备的运行。
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Claims

1. A tunnel supercapacitor dual furnace aging test apparatus, characterized in that, The system includes a feeding mechanism (1), a loading mechanism (2), a conveying mechanism (3), a unloading mechanism (4), a charging aging test chamber (5), a high-temperature static aging test chamber (6), and a control cabinet (7); the output end of the feeding mechanism (1) is connected to the input end of the loading mechanism (2); the output end of the loading mechanism (2) is connected to the conveying mechanism (3); the conveying mechanism (3) sequentially transmits the supercapacitor through the charging aging test chamber (5), the high-temperature static aging test chamber (6), and the unloading mechanism (4); the charging aging test... Both the test chamber (5) and the high-temperature static aging test chamber (6) are equipped with feeding and discharging units; the charging aging test chamber (5) and the high-temperature static aging test chamber (6) respectively feed the material on the conveying mechanism (3) into the chamber for aging test through the feeding and discharging units, and send the tested material out to the conveying mechanism (3) to continue to convey to the next station; the input end of the unloading mechanism (4) is connected to the conveying mechanism (3) to output the material that has completed the aging test to the outside of the equipment; the control cabinet (7) is used to control the operation of the entire equipment.

2. The tunnel supercapacitor dual furnace burn-in test apparatus of claim 1, wherein, The feeding mechanism (1) adopts a vibratory feeder.

3. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The charging aging test box (5) is equipped with 100-500 racks and brush groups of the same number as the racks, so as to realize individual charging and discharging tests for each rack.

4. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The high-temperature static aging test chamber (6) is equipped with 100-500 racks, each rack holding 10-100 supercapacitors.

5. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The feeding and discharging unit adopts a main shaft cam feeding structure.

6. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The charging aging test chamber (5) and the high temperature static aging test chamber (6) are also respectively equipped with a discharge cooling unit for cooling the output material.

7. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The charging aging test chamber (5) and the high temperature static aging test chamber (6) are also equipped with polarity detection units to perform three polarity confirmation tests on the supercapacitors inside the chambers.

8. The tunnel supercapacitor dual-furnace aging test apparatus of claim 1, wherein, The control cabinet (7) is equipped with two temperature controllers for independently controlling the working temperature of the charging aging test chamber (5) and the high-temperature static aging test chamber (6).