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Magnetoelastic modelling of elastomers

机译:弹性体的磁弹性建模

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In this paper we first summarize the equations governing the deformation of magneto-sensitive (MS) elastic solids with particular reference to elastomers whose mechanical properties may be changed rapidly by the application of a magnetic field. These 'smart materials' typically consist of micron-sized ferrous particles dispersed within an elastomeric matrix. Constitutive relations for isotropic MS-elastic solids are examined. The equations are then applied to a representative geometry appropriate for applications, that in which the material is confined to a circular cylindrical tube in the presence of a radial magnetic field. The material is then subject to an axial shear deformation. Results are illustrated for two specific material models, for each of which the shear stiffness of the material increases with the magnetic field strength, as observed in experiments on MS elastomers.
机译:在本文中,我们首先总结了控制磁敏(MS)弹性固体变形的方程式,特别是参考了弹性体,这些弹性体的机械性能可能会由于施加磁场而迅速改变。这些“智能材料”通常由分散在弹性体基质中的微米级亚铁颗粒组成。研究了各向同性MS弹性固体的本构关系。然后将这些方程式应用于适用的代表性几何形状,在该几何形状中,在存在径向磁场的情况下,将材料限制在圆柱管中。然后使材料经受轴向剪切变形。举例说明了两种特定材料模型的结果,对于每种模型,材料的剪切刚度均随磁场强度的增加而增加,如在MS弹性体上的实验中所观察到的。

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