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Modeling the behaviour of shape memory materials under large deformations

机译:在大变形下建模形状记忆材料的行为

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In this study, the models describing the behavior of shape memory alloys, ferromagnetic materials and polymers have been constructed, using a formalized approach to develop the constitutive equations for complex media under large deformations. The kinematic and constitutive equations, satisfying the principles of thermodynamics and objectivity, have been derived. The application of the Galerkin procedure to the systems of equations of solid mechanics allowed us to obtain the Lagrange variational equation and variational formulation of the magnetostatics problems. These relations have been tested in the context of the problems of finite deformation in shape memory alloys and ferromagnetic materials during forward and reverse martensitic transformations and in shape memory polymers during forward and reverse relaxation transitions from a highly elastic to a glassy state.
机译:在本研究中,使用正式的方法构建了描述形状记忆合金,铁磁材料和聚合物的行为的模型,以在大变形下形成复杂培养基的本构体方程。推导出满足热力学和客观性原理的运动和本构体方程。 Galerkin程序在固体力学的方程中的应用使我们获得拉长变分方程和磁静静电问题的变分制剂。在正向和反向马氏体变换期间的形状记忆合金和铁磁材料的有限变形问题的背景下已经测试了这些关系,以及在向前和反向松弛期间的形状记忆聚合物从高度弹性到玻璃状的转变。

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