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中国物理学会期刊

空间太阳电池阵应变规律研究

CSTR: 32037.14.aps.70.20210320

Strain-testing research of space solar cell array

CSTR: 32037.14.aps.70.20210320
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  • 空间太阳电池阵是卫星的唯一供电来源, 其在轨服役期间所受的力学作用将直接影响卫星的正常工作, 因此研究空间太阳电池阵的应力应变规律具有重要意义. 本文自主研制了空间太阳电池阵应变测试系统, 该系统可监测空间太阳电池阵在模拟真空热循环温度场环境下的应变规律. 研究结果表明, 空间太阳电池阵在高温发生压缩形变, 低温发生拉伸形变. 相同测试条件自由电池和粘接电池最大应变总量分别为1270 和1320 με. 此外, 空间太阳电池片中心区域应变值比边缘区域高113%. 空间太阳电池片断裂应变值为2080 με. 本研究为空间太阳电池阵抗力学性能研究提供了技术支撑.

     

    Space solar cell array is the only power source for satellites, and the mechanical impact on solar array during its in-orbit service will directly affect the normal operation of the satellites. Therefore, it is of great significance to study the stress and strain law of space solar array. In this paper, we establish a strain-testing system for space solar array, and this system can help test the strain data of space solar array under simulated space vacuum and thermal cycling field. We find that the space solar cells suffer compression deformation at high temperature and tensile deformation at low temperature. The total maximum strain of the free cell and pasted cell under the same conditions are 1270 and 1320 με, respectively. In addition, the strain of middle area is 113% higher than that of the edge area in one space solar cell. The rupturing strain of space solar cell is 2080 με. These measured data conduce to studying the deformation characteristics of solar cells in space environment, which can help researchers get the deformation regularity of space solar cells. They also provide experimental basis for stress-relieving arrangement of space solar array. This research provides technical support for studying the deformation resistance of space solar cells.

     

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