Surrogate model based mechanical characterization of lead-free soldered joint material exhibiting ratcheting behavior: An advanced methodology

B. Dompierre, L. Barrière, A. François, E. Wyart
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Abstract

This study is focused on the methodology dedicated to the identification of parameters of a general Chaboche model [1] for a nanosilver sintered material. This material is used, in particular, for die-attachment in power electronics applications under harsh temperature conditions. This material model is an elastic-viscous-plastic constitutive model accounting for creep and kinematic hardening mechanisms which underlie ratcheting behavior. The proposed methodology relies on an evolutionary algorithm which is coupled with state-of-the-art surrogate modeling. The implemented procedure enables an efficient and robust identification of the parameters of the constitutive model. The methodology is applied to the characterization of a sintered nanosilver joint. Experimental data are extracted from literature in the case of a classical lap-shear test [2]. The Chaboche model is identified for three temperatures from 25°C to 325°C. A monotonic variation of the parameters in function of the temperature is imposed in order to ease the interpolation of parameters inside the temperature range. The parameters identified for the Chaboche model present a better correlation with experiments for each temperature than the Ohno-Wang and Anand constitutive models identified in [2].
基于代理模型的无铅焊接材料棘轮行为力学表征:一种先进的方法
本研究的重点是用于确定纳米银烧结材料的一般Chaboche模型[1]参数的方法。这种材料特别用于在恶劣温度条件下的电力电子应用中的模具附件。该材料模型是一个考虑蠕变和运动硬化机制的弹-粘-塑性本构模型,这是棘轮行为的基础。所提出的方法依赖于一种进化算法,该算法与最先进的代理建模相结合。所实现的方法能够有效、鲁棒地识别本构模型的参数。将该方法应用于烧结纳米银接头的表征。实验数据摘自文献中的经典拉剪试验[2]。Chaboche模型在25°C至325°C的三种温度下被确定。为了简化参数在温度范围内的插值,使参数随温度的变化呈单调变化。与[2]中确定的Ohno-Wang和Anand本构模型相比,为Chaboche模型确定的参数与每个温度下的实验具有更好的相关性。
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