低温和低温下体积收缩的微型BGA结构Cu/Sn-3.0Ag-0.5Cu/Cu接头的剪切性能

Wang-yun Li, Guanghua Peng, Tianwen Cheng, H. Qin, Jia-Qiang Huang, Dao-Guo Yang
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引用次数: 2

摘要

研究了焊盘直径为320 μm、焊头高度为220 μm、焊料球直径为600、500和400 μm(即不同焊料体积)的微尺度BGA结构Cu/Sn-3.0Ag-0.5Cu/Cu接头在25 ~ -120℃温度下的剪切变形和断裂行为。结果表明:当钎料球直径为600 μm时,钎料的抗剪强度随温度的降低而升高;当钎料球直径减小至500 μm和400 μm时,钎料抗剪强度在-100℃和-80℃出现峰值。此外,所有接头的断裂行为都与温度有关。无论焊料球直径如何,在较高温度下,接头断裂位置保持在焊料基体中,在较低温度下,断裂位置转移到焊料与界面Cu6Sn5层之间的界面上,并且随着温度的下降,断裂模式呈现韧脆转变。此外,韧脆转变的温度与接头尺寸有关,随着焊料球直径的减小而降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shear performance of microscale BGA structure Cu/Sn-3.0Ag-0.5Cu/Cu joints with shrinking volume at low and cryogenic temperatures
Shear deformation and fracture behavior of microscale BGA structure Cu/Sn-3.0Ag-0.5Cu/Cu joints with a pad diameter 320 μm and a joint height 220 μm and different solder ball diameters 600, 500 and 400 μm (i.e., different solder volumes) were investigated at a temperature from 25 to -120 ºC in this study. Results show that, when the solder ball diameter of the solder joint is 600 μm, the shear strength increases with the descending temperature; while, as the solder ball diameter of the solder joint decreases to 500 and 400 μm, a peak shear strength appeared at -100 and -80 ºC, respectively. Moreover, the fracture behavior of all the joints is temperature dependent. Regardless of the solder ball diameter, the joint fracture position keeps in the solder matrix at a higher temperature, which shifts to the interface between the solder and the interfacial Cu6Sn5 layer at a lower temperature, and the fracture mode shows a ductile-to-brittle transition with the descending temperature. Moreover, the temperature of the ductile-to-brittle transition is joint size dependent, which is lowered as the solder ball diameter decreases.
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