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Effect of magnetic particles on the microstructure and wettability of Sn-Zn lead-free solders

机译:磁性颗粒对Sn-Zn无铅焊料微观结构和润湿性的影响

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Sn-Zn solder has gained much attention because of its low soldering temperature, excellent mechanical properties and low-cost. However, there are two main problems that restrict its applications, poor wettability and poor oxidation resistance. To improve the wettability of the Sn-Zn solders, magnetic particles (Fe and Ni) were added into the alloys. The microstructure and interfacial reaction were examined by backscatter electron microscopy (BSE) and the phases were identified by energy-dispersive spectroscopy (EDS). The results indicated that the Fe particles were mainly distributed in the surface of solder and intermetallic (IMC) was not observed at the interface between Fe particles and solder matrix. However, the Ni particles were distributed in the solder matrix uniformly and the Ni-Zn IMC was formed at the interface between Ni and solder. The wettability of these composites were also investigated in this paper. The results of wettability tests showed that the wettability noticeably improved after adding the magnetic particles. With vertically down and move magnetic field, the wetting angle decreased from 64.9 to 8.7 and 15.2 for Fe and Ni, respectively, when the mass fraction of magnetic particles increased from 0 to 6%.
机译:由于其低焊接温度,优异的机械性能和低成本,SN-ZN焊料效率受到了很多关注。但是,有两个主要问题限制了其应用,润湿性差和抗氧化性差。为了改善Sn-Zn焊料的润湿性,将磁性颗粒(Fe和Ni)加入合金中。通过背散电子显微镜(BSE)检查微观结构和界面反应,通过能量分散光谱(EDS)鉴定各相。结果表明,在Fe颗粒和焊料基质之间的界面处未观察到Fe颗粒主要分布在焊料表面和金属间质(IMC)中。然而,Ni颗粒均匀地分布在焊料基质中,并且在Ni和焊料之间的界面处形成Ni-Zn IMC。本文还研究了这些复合材料的润湿性。润湿性试验结果表明,在添加磁性颗粒后,润湿性明显改善。随着垂直下降和移动磁场,当磁性颗粒的质量分数从0升至6%时,润湿角度分别从64.9〜8.7和15.2分别降低Fe和Ni。

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