首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure, Wetting, and Tensile Behaviors of Sn-Ag Alloy Reinforced with Copper-Coated Carbon Nanofibers Produced by the Melting and Casting Route
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Microstructure, Wetting, and Tensile Behaviors of Sn-Ag Alloy Reinforced with Copper-Coated Carbon Nanofibers Produced by the Melting and Casting Route

机译:用熔化浇铸型铜涂层碳纳米纤维增强Sn-Ag合金的微观结构,润湿和拉伸行为

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摘要

A Cu-coated C nanofiber (Cu-CNF) composite is added to a Sn-3.5Ag alloy to fabricate a solder nanocomposite using mechanical stirring and a melting technique. The microstructural features of the samples, i.e., the beta-Sn grain size and the distribution and thickness of the Ag3Sn intermetallic compound (IMC), are statistically measured. The wettability of the developed solders is tested on a Cu substrate by contact-angle and spreading-factor measurements. The experimental results indicate that the presence of up to 0.05 wt pct Cu-CNFs in the solder matrix reduces the beta-Sn secondary dendritic arm spacing significantly. Additionally, the spread ratio and spread factor are improved to 93 and 96 pct, respectively, owing to the adsorption of surface-active CNFs in the solder matrix. Furthermore, the addition of 0.05 wt pct Cu-CNFs to the Sn-Ag (SA) alloy increases the microhardness, tensile strength, elongation percentage (El pct), and toughness by 40, 35, 11, and 33 pct, respectively. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:将Cu-涂覆的C纳米纤维(Cu-CNF)复合材料加入到Sn-3.5Ag合金中以使用机械搅拌和熔化技术制造焊料纳米复合物。样品的微观结构特征,即β-Sn粒度和Ag3Sn金属间化合物(IMC)的分布和厚度在统计测量。通过接触角和扩展因子测量在Cu衬底上测试开发焊料的润湿性。实验结果表明,在焊料基质中存在高达0.05wt PCT Cu-CNF的存在显着降低了β-Sn次级树突臂间距。另外,由于在焊料基质中吸附表面活性CNFS,分别对扩展比和扩散因子分别改善为93和96pct。此外,向Sn-Ag(SA)合金的添加0.05wt PCT Cu-CNFS分别增加了微硬度,拉伸强度,伸长率(EL PCT)和韧性40,35,11和33pct。 (c)2019年矿物质,金属和材料协会和ASM国际

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