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Adhesion Improvement for Solder Interconnection of Wet Chemically Coated Aluminum Surfaces

机译:湿化学涂层铝表面的焊料互连的粘附性改进

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Reliable solder interconnection is essential for the performance and the long-term stability of photovoltaic (PV) modules. The rear electrode of standard passivated emitter and rear cells (PERC) is made of aluminum, which cannot be electrically contacted with the established solder interconnection parameters of PV module fabrication. The aim of this contribution is to address this recurring topic of contacting aluminum (Al) surfaces. Not altering the soldering parameters, cost efficient wet chemical coating processes are targeted to achieve strong and reliable solder joints on Al surfaces: a (single/double) zincate process (< 90 s) followed by electroless plating of nickel (Ni). We characterize the coatings and solder joints in terms of wettability, adhesion after soldering, fracture mechanism and microstructure. The fundamental understanding of the interaction of the involved materials (i.e. Al, Zn, Ni, Sn) is investigated on 200 μm thick monolithic Al foils. The Ni-coated foils show perfect wetting with liquid SnPb-based solder (contact angle < 30°), resulting in high peel forces of > 5 N/mm after soldering ribbons. We analyze the microstructure of these void-free solder joints, presenting cross section SEM images and EDX mappings. A detailed investigation of the fracture after the peel test shows a mixed fracture pattern and no dominant failure interface. Based on those results on Al foils, we apply the double zincate process with subsequent electroless Ni plating to the rear side of PERC-type solar cells. As the screen printed Al has not been optimized as substrate for soldering, peel tests show an adhesive failure between Al and silicon wafer. Neglecting this limitation, a successful Ni coating of different screen printed and fired Al rear side pastes could be demonstrated.
机译:可靠的焊料互连对于光伏(PV)模块的性能和长期稳定性至关重要。标准钝化发射极和后电池(PERC)的后电极由铝制成,不能与PV模块制造的已建立的焊料互连参数电接触。这种贡献的目的是解决接触铝(Al)表面的这种重复课题。不改变焊接参数,成本效率的湿化学涂覆工艺旨在实现Al表面上的强且可靠的焊点:(单/双)锌酸锌工艺(<90秒),然后是镍(Ni)的化学镀。在润湿性,焊接后的粘合性方面,我们在涂层和焊点上表征涂层,骨折机理和微观结构。对涉及材料(即Al,Zn,Ni,Sn)的相互作用的基本理解在200μm厚整体铝箔上研究。 Ni涂覆的箔显示液体SNPB的焊料(接触角<30°)显示完美的润湿,导致焊接丝带后> 5 n / mm的高剥离力。我们分析了这些无空隙焊点的微观结构,提出了横截面SEM图像和EDX映射。剥离试验后对骨折的详细研究表明混合骨折图案和无主导失效界面。基于Al箔上的结果,我们将双锌酸盐工艺应用于随后的无电镀Ni电镀到Perc型太阳能电池的后侧。由于丝网印刷Al未被优化作为用于焊接的基板,因此剥离试验显示Al和硅晶片之间的粘合衰竭。忽略这种限制,可以证明可以证明不同丝网的成功Ni涂层和烧制的Al后侧浆料。

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