一种宽温域柔性太阳电池组件及制备方法

By using modular encapsulation and liquid silicone adhesive technology, the problems of temperature range and adhesive strength of flexible solar cell modules in space environment have been solved, achieving high-strength bonding and bubble-free effect for flexible solar cells with a wide temperature range, making them suitable for space applications.

CN115985986BActive Publication Date: 2026-07-17SHANGHAI INST OF SPACE POWER SOURCES

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANGHAI INST OF SPACE POWER SOURCES
Filing Date
2022-11-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing flexible solar cell modules suffer from problems such as limited temperature resistance in space environments, poor adhesive strength, fragility, and difficulty in eliminating air bubbles, making it difficult to meet the application requirements of wide temperature range and high reliability.

Method used

A modular approach is adopted for battery module encapsulation. Through SiOx film evaporation, surface plasma treatment, and venting hole processing, combined with liquid silicone adhesive application, bubble-free and high-strength bonding between the transparent encapsulation material and the battery module is achieved, thus fabricating a wide-temperature-range flexible solar cell module.

Benefits of technology

It achieves bubble-free, lightweight, flexible, and high- and low-temperature resistant high-strength bonding in space environments, meeting the needs of space applications.

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Abstract

本申请公开了一种宽温域柔性太阳电池组件及制备方法,涉及航天器能源系统领域,柔性太阳电池组件包括依次连接的柔性透明封装膜、透明胶粘层、薄膜太阳电池、底片胶、柔性电路基板;薄膜太阳电池通过底片胶粘贴到柔性电路基板上,薄膜太阳电池为分模块设置,相邻模块的薄膜太阳电池之间连接;柔性透明封装膜通过透明胶粘层粘接于薄膜太阳电池表面,柔性透明封装膜与透明胶粘层接触的一侧设置微结构层、另一侧设置设置SiOx膜层。实现透明封装材料与电池组件之间无气泡、高强度粘结,促进柔性太阳电池空间工程应用。
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