论文标题

磁场诱导的重组对磁活性弹性体的弹性性能的影响

Effect of Magnetic-Field-Induced Restructuring on the Elastic Properties of Magnetoactive Elastomers

论文作者

Snarskii, Andrei, Shamonin, Mikhail, Yuskevich, Pavel

论文摘要

将磁性微米大小的颗粒嵌入到符合符号的聚合物基质中的复合材料称为磁性或磁性弹性弹性体(MAES)。它们的区别是它们在磁场中的物理特性的巨大变化,这通常归因于填充物的重组。磁性弹性体中磁场诱导的重组的过程被解释为向渗透的发展。这种物理模型先前用于解释MAE对磁场强度的磁渗透性和介电介电常数的依赖性。基于这一假设,理论上考虑了MAES中的磁性效应。理论方法建立在弹性特性的自洽有效的中等理论上,该理论扩展到变量(磁场依赖)渗透阈值。提出的模型允许人们描述这些复合材料的有效弹性模量的较大变化(几个数量级),称为巨型磁性(MR)和野外延伸效应。预测巨型磁极效应的存在。讨论了拟议模型与MAE中MR效应的现有理论的关系。结果对于MAE在磁场受控振动阻尼器和隔离器中的应用可能很有用。

Composite materials where magnetic micrometer-sized particles are embedded into a compliant polymer matrix are known as magnetorheological or magnetoactive elastomers (MAEs). They are distinguished by huge variations of their physical properties in a magnetic field, which is commonly attributed to the restructuring of the filler. The process of the magnetic-field-induced restructuring in a magnetorheological elastomer is interpreted as progression towards percolation. Such a physical model was previously used to explain the dependence of the magnetic permeability and dielectric permittivity of MAEs on the magnetic field strength. Based on this hypothesis, the magnetorheological effect in MAEs is considered theoretically. The theoretical approach is built upon a self-consistent effective-medium theory for the elastic properties, extended to the variable (field dependent) percolation threshold. The proposed model allows one to describe the large variations (over several orders of magnitude) of the effective elastic moduli of these composite materials, known as the giant magnetorheological (MR) and field-stiffening effects. An existence of a giant magnetic Poisson effect is predicted. The relation of the proposed model to the existing theories of the MR effect in MAEs is discussed. The results can be useful for applications of MAEs in magnetic-field controlled vibration dampers and isolators.

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