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Parallel-gap resistance welding between gold-plated silver interconnects and silver electrodes in germanium solar cells

机译:锗太阳能电池中镀金的银互连线和银电极之间的平行间隙电阻焊接

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Thermal cycling becomes a major factor in the reliability of the interconnect systems of solar cells in Low Earth Orbit Satellite. Low Earth Orbit Satellite (LEO) has the orbit altitude between 200 and 1000 km, thereby leading to its short orbit period and shallow discharge depth. Hence, the power supply experiences a frequent charge-discharge process. In this paper, we study the reliability of the joints between gold-plated silver interconnects and silver electrodes of germanium solar cells of a Low Earth Orbit Satellite, that is, the optimization of the welding process, and the assessment of the reliability. Parallel gap resistance welding was used to fabricate the interconnect-electrode joints. The three main welding parameters were carefully adjusted to investigate their effects on the property of the joints. Particularly, one of the parameters kept the same value to determine the effective welding range of the other parameters in order to minimize the influence of parameter disturbance on the welding quality. Then a pull test with the angle of 45 was carried out to obtain the mechanical property of the joints under the different welding parameters. In addition, the appearance, microstructure, and atom diffusion of the joints were analyzed. We compared the microstructure of the joints obtained with different welding parameters. Particularly, we investigated if it had apparent pores and cracks, and whether each layer in the joints has a full diffusion. Moreover, the EDS analysis of fracture surface demonstrated that broken location is not at the interfaces of the joint, and fracture mode is Ductile. The characteristic of cleavage fracture and dimples is also discovered in the SEM image.
机译:热循环成为低地球轨道卫星中太阳能电池互连系统可靠性的主要因素。低地球轨道卫星(LEO)的轨道高度在200到1000公里之间,从而导致其较短的轨道周期和较浅的排放深度。因此,电源经历频繁的充电-放电过程。在本文中,我们研究了低地球轨道卫星的镀金银互连和锗太阳能电池的银电极之间接头的可靠性,即焊接工艺的优化以及可靠性的评估。平行间隙电阻焊用于制造互连电极接头。仔细调整了三个主要焊接参数,以研究它们对接头性能的影响。特别地,参数中的一个保持相同的值以确定其他参数的有效焊接范围,以最小化参数干扰对焊接质量的影响。然后以45度角进行拉力试验,以获得不同焊接参数下接头的机械性能。另外,分析了接头的外观,微观结构和原子扩散。我们比较了采用不同焊接参数获得的接头的显微组织。特别是,我们调查了它是否具有明显的孔和裂纹,以及接头中的每一层是否具有完全的扩散。此外,断裂表面的EDS分析表明,断裂位置不在接头的界面处,断裂模式是韧性的。在SEM图像中也发现了乳沟破裂和酒窝的特征。

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