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Simulation of magnetostrictive properties of Galfenol under thermomechanical deformation

机译:Galfenol热机械变形下的磁致伸缩性能模拟

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摘要

A recently discovered alloy, Galfenol, has been shown to exhibit magnetostrictive strains up to 400 micro-mm in single crystal form (more than 10 times that of Alpha Fe). However, it has proved difficult to retain the property in the polycrystalline fOrm, for example, cold rolled specimens often lose their magnetostriction. We have developed a microstructure evolution model that is used to study the interplay of microstructure, crystallographic texture development and residual stresses in the evolution of magnetostrictive properties. Finite strain homogenization Within a crystal plasticity model is used to investigate microstructural response of processed specimens under coupled magnetic and stress fields.
机译:最近发现的合金Galfenol已显示出单晶形式的磁致伸缩应变高达400微毫米(是Alpha Fe的10倍以上)。然而,事实证明很难在多晶形式中保持其特性,例如,冷轧试样常常失去其磁致伸缩性。我们已经开发了一个微结构演化模型,用于研究磁致伸缩性能演化过程中的微结构,晶体学织构发展和残余应力之间的相互作用。晶体塑性模型内的有限应变均质化用于研究在耦合磁场和应力场下加工后的试样的微观结构响应。

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