Determination of shear behavior of magneto-rheological elastomers under harmonic loading

Uğur Mazlum, I. Celik
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Abstract

Magneto-rheological (MR) materials can respond reversibly and quickly under the effect of an external magnetic field. MR materials contain micron-sized iron particles. These iron particles are typically dispersed in an elastomer or a liquid. These materials due to their properties constitute a kind of smart material in terms of engineering material. Such materials are used as isolators in various engineering applications, structures, and sound control subsystems. This study aimed to determine the mechanical properties for shear behavior of MR materials for under harmonic loading. Parameters such as matrix materials with different hardness values, powder types, magnetic field, frequency, and deformation were studied. The parameters related to the MR material itself were analyzed with the obtained data. The present study reveals that considering the sensitivity to magnetic field parameter, composite materials having the most suitable properties were produced with Shore 2 hardness value and SQ magnetic powder. It had been observed on increase about 200% at the rate of Shore A10 and A2 as a result of comparing the hardness scale. Also according to the powder rate while there was an increase on worth effect of relative MR, it is seen that the biggest increase had been in SQ powder with 199% worth. When looked some studies in literature, about comparing different hardness values such as matrix materials powder types etc. there aren’t any studies. The state of magnetic field thinks that features such as MR effect, Storage, and Loss modulus haven’t been examined yet.
磁流变弹性体在谐波载荷下剪切性能的测定
磁流变(MR)材料在外加磁场的作用下具有快速可逆的响应特性。磁流变材料含有微米级的铁颗粒。这些铁颗粒通常分散在弹性体或液体中。这些材料由于其自身的特性,在工程材料方面构成了一种智能材料。这些材料在各种工程应用、结构和声音控制子系统中用作隔离器。本研究旨在确定MR材料在谐波荷载作用下的剪切力学性能。研究了不同硬度值的基体材料、粉末类型、磁场、频率和变形等参数。利用所得数据分析了与磁流变材料本身有关的参数。本研究表明,考虑到对磁场参数的敏感性,采用邵氏硬度值和SQ磁粉制备性能最合适的复合材料。通过对硬度标尺的比较,发现其硬度以邵氏A10和邵氏A2的速率提高了约200%。在相对MR值效应增加的同时,根据粉率,可以看出SQ粉值增加最多,达到199%。在文献中,关于比较不同硬度值的研究,如基体材料、粉末类型等,没有任何研究。磁场状态认为MR效应、Storage、损耗模量等特性还没有得到检验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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