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首页> 外文期刊>Energies >Comparison of the 60Sn40Pb and 62Sn2Ag36Pb Solders for a PV Ribbon Joint in Photovoltaic Modules Using the Thermal Shock Test
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Comparison of the 60Sn40Pb and 62Sn2Ag36Pb Solders for a PV Ribbon Joint in Photovoltaic Modules Using the Thermal Shock Test

机译:使用热冲击测试比较光伏模块中光伏带状接头的60Sn40Pb和62Sn2Ag36Pb焊料

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摘要

In this study, the characteristics of a photovoltaic (PV) ribbon ( t = 0.25 mm) joint with 60Sn40Pb and 62Sn2Ag36Pb solders were evaluated using thermal shock tests. The thermal shock tests were performed under three conditions: ?40–65 °C, ?40–85 °C, and ?40–105 °C. The results of these tests were analyzed using electroluminescence (EL) and cross-sectional images. Following testing, broken metal fingers (MFs) were confirmed near the solder joint. PV module degradation was attributed to the broken finger ratio (BFR) based on quantitative analysis of the dark rectangular (DR) regions on the EL images. In addition, the activation energy of the broken MFs was calculated from the increasing BFR. Thermal characteristic variations due to the added Ag in the PV ribbon solder joints were evaluated through observation of solder micro-structure changes following thermal shock tests.
机译:在这项研究中,使用热冲击试验评估了带有60Sn40Pb和62Sn2Ag36Pb焊料的光伏(PV)带(t = 0.25 mm)接头的特性。热冲击测试是在三种条件下进行的:?40–65°C,?40–85°C和?40–105°C。使用电致发光(EL)和横截面图像分析了这些测试的结果。测试后,确认在焊点附近金属手指断裂(MF)。基于对EL图像上暗矩形(DR)区域的定量分析,PV模块的退化归因于手指折断率(BFR)。另外,由增加的BFR计算出断裂的MF的活化能。通过观察热冲击试验后焊料微观结构的变化,评估了由于PV带焊点中添加Ag而引起的热特性变化。

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