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Dynamic characterization of bimodal particle mixtures in silicone rubber magnetorheological materials

机译:硅橡胶磁流变材料中双峰颗粒混合物的动态表征

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Samples of a magnetorheological composite comprised of a silicone elastomer containing varying mixtures of 40- and 10-mu m iron particles were tested in dynamic shearing experiments. These bimodal mixtures were used in order to determine whether such particle combinations might influence the composite's behavior as evidenced by changes in the relative magnetorheological (MR) effect, Delta G. Field-dependent results are consistent with Delta G proportional to M-2, M being the magnetization, and allow one to extrapolate a maximum relative MR effect. The extrapolated maximal Delta G values were effectively independent of particle-size ratio for fixed 30% [v/v%] Fe, suggesting that volume fraction was the important parameter and that particle positions were disordered. However, for 1% [v/v%] of the 10-mu m particles to 30% [v/v%] 40-mu m particles, there was enhanced response, perhaps due to the smaller particles sitting in beneficial interstitial positions. Further addition of 10-mu m particles resulted in decreased performance. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在动态剪切实验中测试了包含有机硅弹性体的磁流变复合材料样品,该弹性体包含40和10微米铁粒子的各种混合物。使用这些双峰混合物来确定这种颗粒组合是否会影响复合材料的性能,这是通过相对磁流变(MR)效应Delta G的变化证明的。场相关结果与与M-2,M成正比的Delta G一致是磁化强度,并且可以推断出最大的相对MR效应。对于固定的30%[v / v%] Fe,推断出的最大Delta G值实际上与粒径比无关,这表明体积分数是重要的参数,并且颗粒位置无序。但是,对于10%的颗粒的1%[v / v%]到30%[v / v%]的40μm颗粒,响应增强了,这可能是由于较小的颗粒位于有利的间隙位置。进一步添加10微米颗粒会导致性能下降。 (C)2008 Elsevier Ltd.保留所有权利。

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