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首页> 外文期刊>International Journal of Photoenergy >Study on Mitigation Method of Solder Corrosion for Crystalline Silicon Photovoltaic Modules
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Study on Mitigation Method of Solder Corrosion for Crystalline Silicon Photovoltaic Modules

机译:减轻晶体硅光伏组件焊料腐蚀的方法研究

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The corrosion of 62Sn36Pb2Ag solder connections poses serious difficulties for outdoor-exposed photovoltaic (PV) modules, as connection degradation contributes to the increase in series resistance (RS) of PV modules. In this study, we investigated a corrosion mitigation method based on the corrosion mechanism. The effect of added sacrificial metal on the reliability of PV modules was evaluated using the oxidation-reduction (redox) reaction under damp heat (DH) conditions. Experimental results after exposure to DH show that the main reason for the decrease in power was a drop in the module’s fill factor. This drop was attributed to the increase ofRS. The drop in output power of the PV module without added sacrificial metal is greater than that of the sample with sacrificial metal. Electroluminescence and current-voltage mapping analysis also show that the PV module with sacrificial metal experienced less degradation than the sample without sacrificial metal.
机译:62Sn36Pb2Ag焊料连接的腐蚀对暴露在户外的光伏(PV)模块造成了严重困难,因为连接质量下降会导致PV模块的串联电阻(RS)增大。在这项研究中,我们研究了基于腐蚀机理的腐蚀缓解方法。使用湿热(DH)条件下的氧化还原(redox)反应评估了牺牲金属添加对光伏组件可靠性的影响。暴露于DH后的实验结果表明,功率降低的主要原因是模块的填充系数下降。该下降归因于RS的增加。不添加牺牲金属的PV模块的输出功率下降幅度大于带有牺牲金属的样品的功率下降幅度。电致发光和电流-电压映射分析还显示,与不使用牺牲金属的样品相比,使用牺牲金属的PV模块的降解程度较小。

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