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首页> 外文期刊>Smart Materials & Structures >To the theory of elastic properties of isotropic magnetic gels. Effect of interparticle interaction
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To the theory of elastic properties of isotropic magnetic gels. Effect of interparticle interaction

机译:各向同性磁性凝胶的弹性性能理论。 颗粒间相互作用的影响

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摘要

The paper deals with theoretical study of elastic shear properties of a magnetic gel, consisting of spherical magnetizable particles, randomly (gas-like) distributed in an elastic matrix. We suppose that the composite is placed in a magnetic field, perpendicular to the direction of the sample shear. In order to get mathematically rigorous results, we have restricted ourselves by the analysis of the system with a low concentration of the particles. Magnetic and elastic (through the matrix deformation) interactions between them are considered in the framework of the regular pair approximation. Analysis shows that external magnetic field decreases the macroscopic shear modulus of the composite with a low concentration of the particles. The decreasing dependence of the modulus on the macroscopic shear is estimated. We believe that the suggested rigorous approach can be a robust background for the study of the systems with a high concentration of the particles.
机译:本文涉及磁性凝胶弹性剪切特性的理论研究,由球形可磁化颗粒组成,随机(气体状)分布在弹性基质中。 我们假设将复合材料放置在垂直于样品剪切方向的磁场中。 为了获得数学上严谨的结果,我们通过对粒子浓度低的系统分析来限制自己。 在规则对近似的框架中考虑它们之间的磁性和弹性(通过基质变形)相互作用。 分析表明,外部磁场通过低浓度的颗粒降低了复合物的宏观剪切模量。 估计模量对宏观剪切对模量的依赖性降低。 我们认为,建议的严格方法可以是具有高浓度颗粒的系统的鲁棒背景。

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