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Reduction of Thermomechanical Stress Using Electrically Conductive Adhesives

机译:使用导电胶减少热机械应力

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摘要

We compare the thermomechanical stresses in solar cell interconnections based on electrically conductive adhesives (ECA) with soldered joints by using bending experiments and finite element analysis (FEA). Additionally, the influence of an increasing number of busbars is studied. The FEA is validated by measuring the bending of cell strips after cooling down from a single-sided interconnection process. The material parameters are determined by tensile tests, microscopy and nanoindentation. The comparison of ECA and soldering shows that an elastomer with a Young's modulus of below 0.5 GPa is capable of reducing the thermomechanical stress effectively resulting in, approximately, a mean tensile stress in the ECA of 5 MPa, 110 MPa in the ribbon, and a maximum compressive stress in the silicon of 75 MPa. Increasing the number of busbars from three to five leads to a reduction in compressive stresses in the silicon and a slight increase of the peak tensile stress in the busbars.
机译:我们通过弯曲实验和有限元分析(FEA)比较了基于导电胶(ECA)和焊接接头的太阳能电池互连中的热机械应力。另外,研究了越来越多的母线的影响。通过测量单面互连工艺冷却后的电池条的弯曲度来验证FEA。材料参数通过拉伸试验,显微镜和纳米压痕确定。 ECA和焊接的比较表明,杨氏模量低于0.5 GPa的弹性体能够有效降低热机械应力,从而导致ECA中的平均拉应力约为5 MPa,带中的平均拉应力为110 MPa,硅中的最大压缩应力为75 MPa。将汇流排的数量从三增加到五个会导致硅中压缩应力的减少和汇流排中峰值拉伸应力的轻微增加。

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