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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Finite Element Analysis of Phase Transformation Dynamics in Shape Memory Alloys with a Consistent Landau-Ginzburg Free Energy Model
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Finite Element Analysis of Phase Transformation Dynamics in Shape Memory Alloys with a Consistent Landau-Ginzburg Free Energy Model

机译:具有一致的Landau-Ginzburg自由能模型的形状记忆合金相变动力学的有限元分析

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摘要

The Landau theory of phase transition has been successfully applied to solve a number of important problems in the dynamics of martensitic phase transformations in alloys. On the other hand, although a precise mathematical description of the microstructures is known within the framework of Cauchy-Born hypothesis, its discrete versiori is not well elucidated in the literature, especially for multivariant transformations in three-dimensional samples. A major reason for such a situation lies with computational difficulties connected with quasi-convexity of the associated minimization problem. In this paper we develop a Landau-Ginzburg free energy model for dynamic problems of phase transformations and show a possible link of the developed framework with the continuum description of phase transformations. We demonstrate how the precise description of compatible microstructures in the phase-field model can be used in computational finite element models. The developed framework is sufficiently general to be applied to different types of phase transforming alloys and under general thermo-mechanical loadings. We exemplify the developed technique and its finite element implementation on cubic to tetragonal transformations.
机译:Landau相变理论已经成功地用于解决合金中马氏体相变动力学中的许多重要问题。另一方面,尽管在Cauchy-Born假设的框架内已经知道了微观结构的精确数学描述,但在文献中并未很好地阐明其离散的Versiori,特别是对于三维样本中的多变量转换。这种情况的主要原因在于与相关的最小化问题的拟凸性相关的计算困难。在本文中,我们针对相变的动态问题开发了Landau-Ginzburg自由能模型,并展示了已开发框架与相变连续描述之间的可能联系。我们演示了如何在计算有限元模型中使用相场模型中兼容的微结构的精确描述。所开发的框架具有足够的通用性,可以在一般的热机械载荷下应用于不同类型的相变合金。我们举例说明了所开发的技术及其在三次到四方转换中的有限元实现。

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