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Domain Patterns and Hysteresis in Phase-Transforming Solids: Analysis and Numerical Simulations of a Sharp Interface Dissipative Model Via Phase-Field Approximation

机译:相变固体中的畴模式和滞后现象:锐利的界面耗散模型通过相场近似的分析和数值模拟

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摘要

We propose a sharp-interface model which describes rate-independent hysteresis in phase-transforming solids (such as shape memory alloys) by resolving explicitly domain patterns and their dissipative evolution. We show that the governing Gibbs' energy functional is the G-limit of a family of regularized Gibbs' energies obtained through a phase-field approximation. This leads to the convergence of the solution of the quasistatic evolution problem associated with the regularized energy to the one corresponding to the sharp interface model. Based on this convergence result, we propose a numerical scheme which allows us to simulate mechanical experiments for both spatially homogeneous and heterogeneous samples. We use the latter to assess the role that impurities and defects may have in determining the response exhibited by real samples. In particular, our numerical results indicate that small heterogeneities are essential in order to obtain spatially localized nucleation of a new martensitic variant from a pre-existing one in stress-controlled experiments.
机译:我们提出了一个清晰的界面模型,该模型通过显式解析畴模式及其耗散演化来描述相变固体(如形状记忆合金)中速率无关的磁滞。我们证明控制吉布斯的能量函数是通过相场近似获得的正规化吉布斯能量族的G极限。这导致与正则化能量相关的准静态演化问题的解决方案收敛到与尖锐界面模型相对应的问题。基于此收敛结果,我们提出了一种数值方案,该方案允许我们模拟空间均质和异质样品的力学实验。我们使用后者来评估杂质和缺陷在确定真实样品表现出的响应中所起的作用。尤其是,我们的数值结果表明,为了在应力控制实验中从先前存在的马氏体变体中获得新的马氏体变体的空间局部成核,较小的异质性至关重要。

著录项

  • 作者

    De Simone, A.; Kruzik, M.;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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