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Micromechanical model for the ferromagnetic shape memory alloy-epoxy resin composite considering variant reorientation and magneto-mechanical coupling

机译:考虑变体重新定向和磁力机械耦合的铁磁形状记忆合金 - 环氧树脂复合材料的微机械模型

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摘要

The mechanical and magnetic properties of Ferromagnetic Shape Memory Alloy-Epoxy Resin (FSMA-ER) composite which is a new kind of functional composite material are investigated in this work. Based on the MoriTanaka method and equivalent inclusion theory of the micromechanics, a micromechanical constitutive model in the form of tensor for this new composite is established, which considers the interaction between different variants in FSMA, as well as the interaction between FSMA and epoxy resin. The mechanical and magnetic behavior of the FSMA-ER composite under complex loads can be well described by this model. Numerical results show that the FSMA-ER composite exhibits a good pseudoelastic property due to the reorientation of different variants in FSMA. Several other particular features of this new composite are also observed through the numerical results, which can content many special requirements in the actual applications. This research not only displays the particular mechanical and magnetic behavior of the FSMA-ER composite but also provides a base for the design of this kind of material.
机译:本文研究了新型功能复合材料铁磁形状记忆合金-环氧树脂(FSMA-ER)复合材料的力学和磁学性能。基于MoriTanaka方法和细观力学中的等效夹杂理论,建立了这种新型复合材料的张量形式的细观力学本构模型,该模型考虑了FSMA中不同变体之间的相互作用,以及FSMA与环氧树脂之间的相互作用。该模型能很好地描述FSMA-ER复合材料在复杂载荷下的力学和磁行为。数值结果表明,由于FSMA中不同变体的重新定向,FSMA-ER复合材料表现出良好的伪弹性特性。数值结果还观察到了这种新型复合材料的其他一些特殊特性,可以满足实际应用中的许多特殊要求。本研究不仅揭示了FSMA-ER复合材料独特的力学和磁性行为,而且为此类材料的设计提供了依据。

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