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CONSTITUTIVE MODELS FOR MAGNETOSTRICTIVE MATERIALS

机译:磁致伸缩材料的本构模型

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A new general nonlinear constitutive model is proposed for giant magnetostrictive materials. For the convenience of engineering applications, the expressions of the 3-D (bulk), 2-D (film) and 1-D (rod) models are respectively given for an isotropic material and their applicable regions are also identified. It is found that the new model can accurately predict the magnetostrictive strain curves in low, moderate and high magnetic field regions for various compressive pre-stress levels. The numerical simulation illustrates that, the new model, whether for magnetostrictive rods or for thin films, can effectively describe the effects of the pre-stress or residual stress on the magnetization and the magnetostrictive strain curves, which can not be captured by previous models.
机译:提出了一种新的一般非线性本构模型,用于巨型磁致伸缩材料。为了便于工程应用,分别给出了三维(块状),2-D(薄膜)和1-D(杆)模型的表达,并鉴定了各向同性材料及其适用的区域。发现新模型可以精确地预测用于各种压缩预应力水平的低,中等和高磁场区域的磁致伸缩应变曲线。数值模拟说明,新模型,无论是用于磁致伸缩杆还是薄膜,都可以有效地描述预应力或残余应力对磁化的影响和磁致伸缩应变曲线,这不能被先前模型捕获。

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