固化电流对磁流变弹性体刚度和阻尼性能的影响

N. Hapipi, S. Mazlan, S. Aziz, U. Ubaidillah, Seung-bok Choi
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引用次数: 3

摘要

实验研究了固化过程中施加的磁场强度对磁流变弹性体(MREs)刚度和阻尼性能的粘弹性影响。为了观察效果,分别施加相当于70 mT、309 mT和345 mT磁场的0.1 A、0.3 A和0.5 A固化电流制备了三种不同的MRE样品。所有样品按重量百分比由30%硅橡胶和70%羰基铁颗粒(cip)组成。通过扫描电镜观察形貌图像后,评估和比较了这些样品的动态性能,如存储模量和损耗因子作为磁场强度或振荡频率的函数。结果表明,在0.5A下固化的样品在频域表现出最高的存储模量。此外,对三种样品的MR效应进行了鉴定,发现在0.5A下固化的样品具有最高的绝对MR效应和相对MR效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Curing Current on Stiffness and Damping Properties of Magnetorheological Elastomers
In this study, the viscoelastic effects of the magnetic field strength imposed for curing process on the stiffness and damping properties of magnetorheological elastomers (MREs) are experimentally investigated. In order to observe the effect, three different samples of MRE are fabricated by imposing curing current of 0.1 A, 0.3 A and 0.5 A which is equivalent to the magnetic field of 70 mT, 309 mT, and 345 mT, respectively. All samples consist of 30% silicone rubber and 70% carbonyl iron particles (CIPs) by weight percentages. After observing the morphological images via SEM, the dynamic performances of these samples, such as storage modulus and loss factor are evaluated and compared as a function of the magnetic field intensity or oscillation frequency. It is shown that the sample cured at 0.5A exhibits the highest storage modulus in the frequency domain. In addition, MR effects of three samples are identified, and it is found that the sample cured at 0.5A shows the highest absolute and relative MR effect.
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