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Large strain elasto-plasticity for diffuse interface models

机译:扩散界面模型的大应变弹塑性

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Most solid-state phase transformations are accompanied by large deformations, stemming either from external load, transformation strains or plasticity. The consideration of such large deformations will affect the numerical treatment of such transformations. In this paper, we present a new scheme to embed large deformations in an explicit phase-field scheme and its implementation in the open-source framework OpenPhase. The suggested scheme combines the advantages of a spectral solver to calculate the mechanical boundary value problem in a small strain limit and an advection procedure to transport field variables over the calculation grid. Since the developed approach should be used for various sets of problems, e.g. simulations of thermodynamically driven phase transformations, the mechanic formulation is kept general. However, to ensure compatibility with phase-field methods using the concept of diffuse interface, the latter is treated with special care in the present work.
机译:大多数固态相变都伴随有大的变形,这是由于外部载荷,变形应变或可塑性引起的。考虑到如此大的变形将影响此类转换的数值处理。在本文中,我们提出了一种将大变形嵌入显式相场方案中的新方案,并在开源框架OpenPhase中实现该方案。所提出的方案结合了频谱求解器的优势,可以在较小的应变极限下计算机械边界值问题,以及对流过程,可以在计算网格上传输场变量。由于开发的方法应用于各种问题,例如在热力学驱动的相变的模拟中,力学公式保持通用。但是,为了确保使用扩散接口概念的相场方法的兼容性,在当前工作中应特别注意后者。

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