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Energy-based model for the magnetostrictive behavior of polycrystalline iron-gallium alloys

机译:多晶铁镓合金磁致伸缩行为的能量基础型

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This paper attempts to model the actuation and sensing behavior of polycrystalline magnetostrictive samples by treating them as composed of multiple grains of single-crystals, each with a different orientation to the loading axis. The texture analysis of a typical cross-section of the sample will be used to estimate the fraction of grains that are close to <100>, <110> and <111> orientation. A simple model based on the law of mixtures will be proposed to represent the behavior of the polycrystal in terms of the behavior of <100>, <110> and <111> oriented single crystals. However, the magnetomechanical behavior along each of the crystallographic directions will be simulated using an energy based model as discussed in Ref. 5 and Ref. 9
机译:本文试图通过将多个单晶的多晶硅组成来模拟多晶磁致伸缩样品的致动和感测行为,每个单晶组成,每个晶粒具有不同的取向到装载轴。样品的典型横截面的纹理分析将用于估计靠近<100>,<110>和<1111个取向的晶粒的级分。基于混合物规律的简单模型将提出在100>,<110>和<1111种取向单晶的行为方面代表多晶的行为。然而,沿着每个晶体方向的磁机电行为将使用基于能量的模型进行模拟,如参考文献所讨论的。 5和参考。 9.

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