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The microstructure and properties of as-cast Sn-Zn-Bi solder alloys

机译:铸态Sn-Zn-Bi焊料合金的组织与性能

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Research on the lead-free solders has attracted wide attention, mostly as the result of the implementation of the Directive on the Restriction of the Use of Hazardous Substances in Electrical and Electronic Equipment. The Sn-Zn solder alloys have been considered to be one of the most attractive lead-free solders due to its ability to easily replace Sn-Pb eutectic alloy without increasing the soldering temperature. Furthermore, the mechanical properties are comparable or even superior to those of Sn-Pb solder. However, other problems still persist. The solution to overcoming these drawbacks is to add a small amount of alloying elements (Bi, Ag, Cr, Cu, and Sb) to the Sn-Zn alloys. Microstructure, tensile strength, and hardness of the selected Sn-Zn-Bi ternary alloys have been investigated in this study. The SEM-EDS was used for the identification of co-existing phases in the samples. The specimens’ microstructures are composed of three phases: Sn-rich solid solution as the matrix, Bi-phase and Zn-rich phase. The Bi precipitates are formed around the Sn-dendrit grains as well as around the Zn-rich phase. The amount of Bi segregation increases with the increase of Bi content. The Sn-Zn-Bi alloys exhibit the high tensile strength and hardness, but the values of these mechanical properties decrease with the increase of Bi content, as well as the reduction of Zn content. The results presented in this paper may offer further knowledge of the effects various parameters have on the properties of lead-free Sn-Zn-Bi solders.
机译:无铅焊料的研究引起了广泛的关注,这主要是由于实施了《电气和电子设备中限制使用有害物质指令》的结果。 Sn-Zn焊料合金被认为是最有吸引力的无铅焊料之一,因为它能够轻松替代Sn-Pb共晶合金而无需提高焊接温度。此外,其机械性能与Sn-Pb焊料相当甚至更好。但是,其他问题仍然存在。克服这些缺点的解决方案是向Sn-Zn合金中添加少量合金元素(Bi,Ag,Cr,Cu和Sb)。在这项研究中,已研究了所选Sn-Zn-Bi三元合金的显微组织,拉伸强度和硬度。 SEM-EDS用于鉴定样品中的共存相。试样的微观结构由三个阶段组成:以富锡固溶体为基质,双相和富锌相。 Bi沉淀物在Sn树枝晶晶粒周围以及富锌相周围形成。 Bi偏析量随Bi含量的增加而增加。 Sn-Zn-Bi合金具有高的拉伸强度和硬度,但是这些机械性能的值随着Bi含量的增加以及Zn含量的降低而降低。本文介绍的结果可能会提供有关各种参数对无铅Sn-Zn-Bi焊料性能的影响的进一步知识。

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