Crystal plasticity finite element model (CPFEM) is a powerful numerical simulation in the integrated computational materials engineering (ICME) toolboxes that relates microstructures to homogenized materials properties and establishes the structure-property linkages in computational materials science. However, to establish the predictive capability, one needs to calibrate the underlying constitutive model, verify the solution and validate the model prediction against experimental data. Bayesian optimization (BO) has stood out as a gradient-free efficient global optimization algorithm that is capable of calibrating constitutive models for CPFEM. In this paper, we apply a recently developed asynchronous parallel constrained BO algorithm to calibrate phenomenological constitutive models for stainless steel 304L, Tantalum, and Cantor high-entropy alloy.
翻译:水晶可塑性限定元素模型(CPFEM)是综合计算材料工程(ICME)工具箱中一个强大的数字模拟,它把微结构与同质材料特性联系起来,并在计算材料科学中建立了结构-财产联系,然而,为了建立预测能力,需要根据实验数据校准基本构件模型,核实解决办法和验证模型预测。贝叶斯优化(BO)作为一个无梯度高效全球优化算法,能够校准CFPEM的组成模型。在本文件中,我们应用了最近开发的一种非同步平行的、受限制的BO算法来校准不锈钢304L、坦坦坦勒和坎托尔高元素有机合金的苯性成像模型。</s>