论文标题

具有磁性硬和柔软微粒混合物的弹性体的磁截图:非线性磁化和基质刚度的影响

Magnetostriction in elastomers with mixtures of magnetically hard and soft microparticles: effects of non-linear magnetization and matrix rigidity

论文作者

Stolbov, Oleg V., Sánchez, Pedro A., Kantorovich, Sofia S., Raikher, Yuriy L.

论文摘要

在此贡献中,考虑了混合含量的磁性弹性弹性(MAE),即,考虑了填充有磁性柔软和磁性硬球颗粒的混合物的聚合物基质。我们集中在该复合材料的基本单元中的对象,为此,我们将其组成,该集合由一个永久的球形微型磁体组成,该弹性体层包围着充满磁性微粒的弹性体层。我们从两个本质上不同的观点对该单元进行了比较处理。第一个是粗粒分子动力学模拟模型,该模型将复合材料作为珠子弹簧组件呈现,并能够提供组件的所有微观结构变化的信息。第二种方法完全基于系统的连续磁力机械描述,其直接产率是MACOPIC场诱导的MAE对外部磁场的响应,因为该模型忽略了磁化过程的所有微观结构细节。我们发现,在某些细节上有所不同,这两个框架在预测一个包含磁性柔软和硬颗粒的单元可能显示出在所施加的田间强度变化下的非平凡的重新输入(pr酸/扁平/扁平/pr酸)轴向变形。 提出的两个互补框架组合的灵活性使我们能够更深入地研究磁反应的表现:关于磁性软颗粒,我们将磁化的线性磁化状态与饱和度进行了比较,我们通过fröhlich-kennelly近似来描述。关于聚合物基质,我们分析了再租赁变形对其刚性的依赖性。

In this contribution a magnetoactive elastomer (MAE) of mixed content, i.e., a polymer matrix filled with a mixture of magnetically soft and magnetically hard spherical particles, is considered. The object we focus at is an elementary unit of this composite, for which we take a set consisting of a permanent spherical micromagnet surrounded by an elastomer layer filled with magnetically soft microparticles. We present a comparative treatment of this unit from two essentially different viewpoints. The first one is a coarse-grained molecular dynamics simulation model, which presents the composite as a bead-spring assembly and is able to deliver information of all the microstructural changes of the assembly. The second approach is entirely based on the continuum magnetomechanical description of the system, whose direct yield is the macroscopic field-induced response of the MAE to external field, as this model ignores all the microstructural details of the magnetization process. We find that, differing in certain details, both frameworks are coherent in predicting that a unit comprising magnetically soft and hard particles may display a non-trivial re-entrant (prolate/oblate/prolate) axial deformation under variation of the applied field strength. The flexibility of the proposed combination of the two complementary frameworks enables us to look deeper into the manifestation of the magnetic response: with respect to the magnetically soft particles, we compare the linear regime of magnetization to that with saturation, which we describe by the Fröhlich-Kennelly approximation; with respect to the polymer matrix, we analyze the dependence of the re-rentrant deformation on its rigidity.

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