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首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Study of the Physical Properties of Carbonyl Iron Particles-Oriented Magneto-Rheological Elastomer
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Study of the Physical Properties of Carbonyl Iron Particles-Oriented Magneto-Rheological Elastomer

机译:羰基铁颗粒磁流变弹性体的物理性能研究

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摘要

The physical properties of an anisotropic magneto-rheological elastomer were examined. The magneto-responsible particles were incorporated into a natural rubber matrix at a volume fraction of 0,10,20,30,40 and 50 vol. %. The magneto-rheological elastomers were prepared using a newly proposed neodymium magnet inserted into the mold to align the particles efficiently. The tensile strength of the anisotropic magneto-rheological elastomer decreased abruptly, whereas the hardness was higher than that of isotropic magneto-rheological elastomer. At an input current of 3A, magneto-rheological elastomer containing 30 vol. % magneto-responsible particle showed the maximum magneto-rheological effect, Which was explained by the ratio of the shear modulus of anisotropic magneto-rheological elastomer with that of isotropic magneto-rheological elastomer and the ratio of the shear modulus shift was 59 %. Based on these results, the orientation of magneto-responsible particle can affect the damping properties of magneto-rheological elastomer.
机译:检查了各向异性磁流变弹性体的物理性质。将磁敏颗粒以0、10、20、30、40和50体积%的体积分数掺入天然橡胶基质中。 %。磁流变弹性体是使用新提出的钕磁体制备的,该钕磁体插入模具中以有效地排列颗粒。各向异性的磁流变弹性体的拉伸强度急剧下降,而硬度高于各向同性的磁流变弹性体。在3A的输入电流下,磁流变弹性体含量为30 vol。百分率的磁敏感颗粒显示出最大的磁流变效应,这可以通过各向异性磁流变弹性体的剪切模量与各向同性磁流变弹性体的剪切模量之比和剪切模量位移的比率为59%来解释。基于这些结果,磁敏感颗粒的取向会影响磁流变弹性体的阻尼性能。

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