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Mechanical Properties of Magneto-Sensitive Elastomers in a Homogeneous Magnetic Field: Theory and Experiment

机译:均匀磁场中磁敏弹性体的力学性能:理论与实验

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The aim of this study is to present a microscopic theory which describes the mechanical behaviour of magneto-sensitive elastomers (MSEs) under a uniform external magnetic field. For this we use a model where magnetic particles are located on the sites of the regular rectangular lattice. We introduce a structure parameter to describe isotropic, chain-like and plane-like particle distributions. Our theory is based on the equation for free energy as a function of strain. The magnetoinduced deformation and the shear modulus are calculated as functions of the magnetization. It is shown that interaction between the magnetic particles results in the contraction of an elastomer along the homogeneous magnetic field. With increasing magnetic field the shear modulus for the shear deformation perpendicular to the magnetic field increases for all spatial distributions of magnetic particles. Furthermore, we have compared our result for the shear modulus to the experimental data and found good agreement.
机译:该研究的目的是提出一种微观理论,其描述在均匀的外部磁场下磁敏弹性体(MSES)的机械性能。为此,我们使用磁性颗粒位于常规矩形晶格的位点上的型号。我们介绍了一种结构参数来描述各向同性,链状和平面颗粒分布。我们的理论基于作为菌株的函数的自由能的等式。磁诱导变形和剪切模量作为磁化的函数计算。结果表明,磁性粒子之间的相互作用导致弹性体沿均匀磁场的收缩。随着磁场的增加,对于磁场的所有空间分布,垂直于磁场的剪切变形的剪切模量增加。此外,我们将我们的结果与实验数据进行了比较,并找到了良好的一致性。

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