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Flexible identification procedure for thermodynamic constitutive models for magnetostrictive materials

机译:磁致伸缩材料热力学本构模型的灵活识别程序

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摘要

We present a novel approach for identifying a multiaxial thermodynamic magneto-mechanical constitutive law by direct bi- or trivariate spline interpolation from available magnetization and magnetostriction data. Reference data are first produced with a multiscale model in the case of a magnetic field and uniaxial and shear stresses. The thermodynamic model fits well to the results of the multiscale model, after which the models are compared under complex multiaxial loadings. A surprisingly good agreement between the two models is found, but some differences in the magnetostrictive behaviour are also pointed out. Finally, the model is fitted to measurement results from an electrical steel sheet. The spline-based constitutive law overcomes several drawbacks of analytical approaches used earlier. The presented models and measurement results are openly available.
机译:我们提出了一种新的方法,可通过从可用磁化和磁致伸缩数据中直接进行二元或三元样条插值来确定多轴热力学磁机械本构律。在磁场以及单轴和剪应力情况下,首先使用多尺度模型生成参考数据。热力学模型非常适合多尺度模型的结果,然后在复杂的多轴载荷下对模型进行比较。在两个模型之间发现了令人惊讶的良好一致性,但是还指出了磁致伸缩行为的一些差异。最后,将模型拟合到电工钢板的测量结果。基于样条的本构定律克服了先前使用的分析方法的一些缺点。所提供的模型和测量结果可公开获得。

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