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Predicting effective magnetostriction and moduli of magnetostrictive composites by using the double-inclusion method

机译:双夹杂法预测磁致伸缩复合材料的有效磁致伸缩和模量

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摘要

The most important properties of magnetostrictive composites are the effective magnetostriction and effective elastic moduli. In this paper, an attempt was made to predict the effective properties of magnetostrictive composites consisting of magnetostrictive particles dispersed in a non-magnetostrictive matrix. This was done by extending the double-inclusion model to deal with magnetoelastic problems. It has been shown that the magnetostriction of magnetostrictive composites depends not only on the volume fraction and material properties, but also on the shape and orientation of the ellipsoidal inhomogeneities and the common magnetostriction constants of the cubic microcrystallite. The analytical results have been compared with the existing experimental results to demonstrate the applicability of the proposed double-inclusion model.
机译:磁致伸缩复合材料最重要的性能是有效的磁致伸缩和有效的弹性模量。在本文中,试图预测由分散在非磁致伸缩基体中的磁致伸缩颗粒组成的磁致伸缩复合材料的有效性能。这是通过扩展双包含模型来处理磁弹性问题来完成的。已经表明,磁致伸缩复合材料的磁致伸缩不仅取决于体积分数和材料特性,而且还取决于椭圆形不均匀性的形状和取向以及立方微晶的共同磁致伸缩常数。将分析结果与现有实验结果进行了比较,以证明所提出的双重包含模型的适用性。

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