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首页> 外文期刊>Journal of materials science >Cantilever testing of sintered-silver interconnects
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Cantilever testing of sintered-silver interconnects

机译:烧结银互连的悬臂测试

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AbstractCantilever testing is an underutilized test method from which results and interpretations promote greater understanding of the tensile and shear failure responses of interconnects, metallizations, or bonded joints. The use and analysis of this method were pursued through the mechanical testing of sintered-silver interconnects that joined Ni/Au-plated copper pillars or Ti/Ni/Ag-plated silicon pillars to Ag-plated direct bonded copper substrates. Sintered-silver was chosen as the interconnect test medium because of its high electrical and thermal conductivities and high-temperature capability—attractive characteristics for a candidate interconnect in power electronic components and other devices. Deep beam theory was used to improve upon the estimations of the tensile and shear stresses calculated from classical beam theory. The failure stresses of the sintered-silver interconnects were observed to be dependent on test-condition and test-material-system. The experimental simplicity of cantilever testing, and the ability to analytically calculate tensile and shear stresses at failure, result in it being an attractive mechanical test method to evaluate the failure response of interconnects.
机译: 摘要 悬臂测试是一种未得到充分利用的测试方法,其结果和解释有助于更好地理解拉伸和剪切破坏互连,金属化或粘结接头的响应。该方法的使用和分析是通过对将镀镍/镀金铜柱或镀钛/镍/银镀硅柱与镀银直接键合铜基板相连的烧结银互连进行的机械测试而进行的。烧结银之所以被选作互连测试介质,是因为其具有高的电导率和导热率以及高温性能,这对于电力电子元件和其他设备中的候选互连具有吸引人的特性。深梁理论被用来改进对经典梁理论计算得出的拉伸应力和剪切应力的估计。观察到烧结银互连的失效应力取决于测试条件和测试材料系统。悬臂测试的实验简便性以及分析失效时拉伸应力和剪切应力的能力,使其成为评估互连件失效响应的有吸引力的机械测试方法。

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