首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural influences on thermomechanical fatigue behaviour of third generation high Ag content Pb-Free solder alloys
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Microstructural influences on thermomechanical fatigue behaviour of third generation high Ag content Pb-Free solder alloys

机译:微观结构对第三代高含银量无铅焊料合金热机械疲劳行为的影响

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摘要

New third generation lead free alloys are being targeted for use in harsh environments requiring resistance to both thermal and mechanical loading. In applications such as the engine compartment of motor vehicles where extreme thermal cycles and long dwell are common, it has been necessary to look for strengthening mechanisms that better survive extremes of temperature and strain. Alloys are being designed to improve toughness of interfacial intermetallic layers and provide solid solution strengthening to compensate for the loss of strength once the Ag3Sn particles coarsen. Results show that while solid solution-strengthening by additions of Sb is effective, it is not sufficient, and other strengthening options through the introduction of additional precipitates and solid solution strengthening using Bi is most desirable. The role of Ni is difficult to discern but it is most concentrated in the Cu6Sn5 intermetallic phase located at the interface between the solder and the copper substrate. This presumably has a toughening effect on the intermetallic thereby inhibiting crack formation and growth. (C) 2016 Elsevier B.V. All rights reserved.
机译:新型第三代无铅合金的目标是在要求抗热和机械负载的恶劣环境中使用。在诸如机动车辆的发动机舱之类的应用中,极端的热循环和较长的保压时间是普遍的,因此有必要寻找能够更好地承受极端温度和应变的加强机制。合金被设计用来提高界面金属间层的韧性,并提供固溶强化以补偿Ag3Sn颗粒变粗后强度的损失。结果表明,尽管通过添加Sb固溶强化是有效的,但这还不够,并且通过引入额外的沉淀物和使用Bi固溶强化的其他强化选择是最理想的。 Ni的作用很难辨认,但它最集中在位于焊料和铜基板之间界面的Cu6Sn5金属间相中。据推测这对金属间化合物具有增韧作用,从而抑制了裂纹的形成和扩展。 (C)2016 Elsevier B.V.保留所有权利。

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