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The Impact of Material Composition and Process Parameters on the cSi Solar Cell Interconnection

机译:材料组成和工艺参数对CSI太阳能电池互连的影响

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In this paper the effects of soldering process parameters and used materials on wettability characteristics and the mechanical properties in photovoltaics solder joints were investigated. The soldering and wetting behaviour of solder joints and its industry standard testing methods has been well studied in electronics packaging applications [1-3]. In photovoltaics lesser extent is made to characterize solder joint formation and their influencing parameters, such as process parameters, surface finishes, fluxes, solder composition, etc. [4-6]. In several experiments we focused on a comparative characterization of different process parameters, a variation in solder alloys and the aspects of different solar cells for solar cell string assembly. The mechanical strength of the solder joint interconnection was measured by mechanical pull tests, correlating the force-way-sequence with the fracture mode alongside the pad structure. We conducted wetting balance and surface measurements on solar cell metallizations, indicating the significant difference between used cells and surface finishes on the interconnection process for the equipment suppliers.
机译:本文研究了焊接工艺参数和使用材料对润湿性特性的影响和光伏焊点中的机械性能。焊点及其行业标准检测方法的焊接和润湿行为在电子包装应用中得到了很好地研究[1-3]。在光伏较小程度上,使焊接接头形成及其影响参数等程度较小,例如工艺参数,表面饰面,助熔剂,焊料组合物等。[4-6]。在几个实验中,我们专注于不同工艺参数的比较表征,焊料合金的变化以及太阳能电池串组件的不同太阳能电池的各个方面。通过机械拉动测试测量焊接接头互连的机械强度,与垫结构沿着裂缝模式相关的力序列。我们在太阳能电池金属化上进行了润湿平衡和表面测量,表明使用的电池和表面饰面对设备供应商的互连过程之间的显着差异。

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