Effect of ultrasonic vibration time on the Cu/Sn-Ag-Cu/Cu joint soldered by low-power-high-frequency ultrasonic-assisted reflow soldering

焊接 材料科学 金属间化合物 超声波传感器 接头(建筑物) 复合材料 溶解 微观结构 冶金 回流焊 抗剪强度(土壤) 锡膏 合金 结构工程 声学 化学 土壤科学 土壤水分 物理化学 工程类 物理 环境科学
作者
Ai Ting Tan,Ai Wen Tan,Farazila Yusof
出处
期刊:Ultrasonics Sonochemistry [Elsevier BV]
卷期号:34: 616-625 被引量:41
标识
DOI:10.1016/j.ultsonch.2016.06.039
摘要

Techniques to improve solder joint reliability have been the recent research focus in the electronic packaging industry. In this study, Cu/SAC305/Cu solder joints were fabricated using a low-power high-frequency ultrasonic-assisted reflow soldering approach where non-ultrasonic-treated samples were served as control sample. The effect of ultrasonic vibration (USV) time (within 6s) on the solder joint properties was characterized systematically. Results showed that the solder matrix microstructure was refined at 1.5s of USV, but coarsen when the USV time reached 3s and above. The solder matrix hardness increased when the solder matrix was refined, but decreased when the solder matrix coarsened. The interfacial intermetallic compound (IMC) layer thickness was found to decrease with increasing USV time, except for the USV-treated sample with 1.5s. This is attributed to the insufficient USV time during the reflow stage and consequently accelerated the Cu dissolution at the joint interface during the post-ultrasonic reflow stage. All the USV-treated samples possessed higher shear strength than the control sample due to the USV-induced-degassing effect. The shear strength of the USV-treated sample with 6s was the lowest among the USV-treated samples due to the formation of plate-like Ag3Sn that may act as the crack initiation site.
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