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Microstructure and mechanical properties of lead-free PV ribbon

机译:无铅PV带的微观结构和力学性能

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Photovoltaic (PV) ribbon is one of the PV cell assembly components used to connect cells to form a PV array working at proper current and voltage. It is a copper ribbon coated with tin-lead or lead-free solders, which provide solderable areas to form solder joints and protect the copper ribbon surface from oxidization. Tin-lead solder has been widely used in PV ribbon manufacturing because of its satisfactory solderability and low price. However, lead is a hazard to human health since it can pollute the soils and ground water when disposed in landfills. Although lead-free alternatives to tin- lead solder have been extensively investigated by the printed-circuit-board industry rare literatures have been reported on the lead-free coating for PV industry. Lead-free PV assembly will be a future prospect without doubts. Thus, it is important for PV industry to minimize or avoid the use of lead in PV modules. In this work, PV ribbons coated with lead-free solders were examined through mechanical testing and microstructural characterization. Variation of mechanical properties and microstructural evolution of the solder coatings at different processing states were examined. When tensile rate is below 50 mm/min tensile strength increased with increase of the tensile rate but a higher tensile rate had no effect on enhancing the tensile strength. Heat-treatment at temperatures ranging from 180 °C to 220 °C was performed and we found an increase of grain size with increase of the temperature. It was found that the N2 atmosphere with low O2 concentration was beneficial for obtaining fine microstructure when the PV ribbons were reflowed at N2 atmosphere.
机译:光伏(PV)带是用于连接电池以在适当的电流和电压下工作以形成PV阵列的PV电池组件组件之一。它是涂有锡铅或无铅焊料的铜丝带,其提供可焊接区域以形成焊点并保护铜带表面免受氧化。由于其令人满意的可焊性和低价格,锡铅焊料已广泛用于光伏带制造厂。然而,铅是对人类健康的危害,因为它可以在垃圾填埋场中污染土壤和地面水。虽然通过印刷电路板行业的稀有铅焊料的无铅替代品已被印刷电路板行业罕见的文献,但在PV工业的无铅涂层上报道了罕见的文献。无铅光伏组件将成为未经疑虑的未来前景。因此,对于PV工业来说是重要的,以最小化或避免使用光伏模块的铅。在这项工作中,通过机械测试和微观结构表征来检查涂有无铅焊料的光伏带。检查了不同加工状态下焊料涂层机械性能和微观结构演化的变化。当拉伸速率低于50mm /最小的拉伸强度随着拉伸率的增加而增加,但较高的拉伸速率对增强拉伸强度没有影响。在180&#x00b0的温度下进行热处理,在180° c至220° c,并且我们发现随着温度的增加,粒度的增加。结果发现,当PV带回流在N 2 气氛中时,N 2 浓度的气氛有利于获得细微结构。

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