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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >On anisotropic mechanical properties of heterogeneous magnetic polymeric composites
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On anisotropic mechanical properties of heterogeneous magnetic polymeric composites

机译:关于异质磁聚合物复合材料的各向异性力学性能

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This study is devoted to the magneto-mechanical characterization of heterogeneous magnetoactive elastomers based on an elastic polydimethylsiloxane matrix with embedded spherical magnetic soft microparticles and magnetic hard microparticles of irregular shape. An issue of the anisotropic mechanical properties of these smart composites is considered. Non-magnetized and pre-magnetized specimens are characterized using a planar shear and axial loading in an externally applied homogeneous magnetic field. The field direction differs relative to the direction of the field used for the specimens pre-magnetization. Results of the different methods allow comparison of the tensile shear moduli for the samples with an initially identical composition. Obtained results demonstrate a strong correlation between the composite behaviour and orientation of the magnetic field used for the pre-magnetization of the sample relative to the external field applied to a sample during the test. Composites pre-magnetized in the direction parallel to an applied mechanical force and external magnetic field show higher magnetorheological response than composites pre-magnetized transversally to the force and the field. Application of the external field directed opposite to the direction of the pre-magnetization reduces the observed stiffening. Moreover, in this situation a softening of the material can be observed, depending on the magnitude of the external field and the field used for pre-magnetization.
机译:该研究致力于基于弹性聚二甲基硅氧烷基质的非均相磁性弹性体的磁性机械表征,其具有嵌入式球形磁性软微粒和不规则形状的磁性硬微粒。考虑了这些智能复合材料的各向异性机械性能的问题。使用外部施加的均匀磁场中的平面剪切和轴向载荷表征了非磁化和预磁化样品。场方向相对于用于样品预磁化的场的方向不同。不同方法的结果允许使用最初相同的组合物对样品进行拉伸剪切模量。获得的结果表明,用于在试验期间,用于相对于应用于样品的外部场的样品预磁化的磁场的复合行为和取向之间的强相关性。复合材料在平行于施加的机械力和外部磁场的方向上磁化的复合材料显示出比复合材料横向于横向磁化到力和场的复合材料的更高的磁流变响应。与预磁化方向相反的外部场的应用降低了观察到的加强。此外,在这种情况下,可以观察到材料的软化,这取决于外场的大小和用于预磁化的场。

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