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Phase transformations in electrically conductive ferromagnetic shape-memory alloys, their thermodynamics and analysis

机译:导电铁磁形状记忆合金的相变,热力学和分析

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摘要

We derive a thermodynamically consistent general continuum-mechanical model describing mutually coupled martensitic and ferro/paramagnetic phase transformations in electrically-conductive magnetostrictive materials such as NiMnGa. We use small-strain and eddy-current approximations, yet large velocities and electric current injected through the boundary are allowed. Fully nonlinear coupling of magneto-mechanical and thermal effects is considered. The existence of energy-preserving weak solutions is proved by showing convergence of time-discrete approximations constructed by a carefully designed semi-implicit regularized scheme. The research that led to the present paper was partially supported by a grant of the group GNFM of INdAM
机译:我们导出了一个热力学一致的通用连续体力学模型,该模型描述了导电磁致伸缩材料(例如NiMnGa)中马氏体和铁/顺磁相耦合。我们使用小应变和涡流近似,但允许大速度和通过边界注入的电流。考虑了磁机械效应和热效应的完全非线性耦合。通过显示由精心设计的半隐式正则化方案构造的时间离散近似的收敛,证明了能量守恒弱解的存在。导致本论文的研究部分得到了INdAM GNFM小组的资助

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  • 作者

    Roubíček T; Tomassetti G;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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