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首页> 外文期刊>Journal of Applied Polymer Science >Enhancement of the rheological properties of magnetorheological elastomer via polystyrene-grafted carbonyl iron particles
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Enhancement of the rheological properties of magnetorheological elastomer via polystyrene-grafted carbonyl iron particles

机译:通过聚苯乙烯接枝羰基铁颗粒增强磁流变弹性体的流变性能

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In this work, carbonyl iron particles (CIP) was grafted with polystyrene coating on its surface via polymerization method, and the coated-CIPs were then embedded into a silicone rubber with the ratio of 70:30 of CIP to silicone rubber in order to enhance the rheological properties of magnetorheological elastomer (MRE) in terms of lower initial storage modulus and higher MR effect. By using field emission scanning electron microscopy (FESEM) that is equipped with the energy dispersive X-ray spectroscopy for elemental analysis, it was observed that elements of C, N, O, Si, Fe, Br, Cu, and Sn were detected, confirming that the coating layer has been successfully developed on the CIP. Additionally, the investigation of the rheological characteristics was conducted at 25 degrees C with three different sweep conditions using rheometer MCR 302. Firstly the strain amplitude was swept from 0.001% to 10% strain with 1 Hz frequency. Then, the frequency was varied from 1 Hz to 100 Hz under 0.01% strain at an applied current of 0-5 A. Lastly, the current was swept from 0 to 5 A under 0.01% strain amplitude and 1 Hz excitation frequency. It was discovered that the storage modulus of the polystyrene-coated CIP MRE is lower than that of uncoated-CIP MRE in all three sweep profiles. Advantageously, the magnetorheological (MR) effect of the coated-CIP MRE sample is higher than that of the uncoated-CIP MRE by 28.04%. Moreover, it was found that the coated-CIP MRE exhibited higher damping behavior with more than 0.14 loss factor than 0.12 loss factor of the uncoated sample. The dimensional stability of polystyrene coating on the CIP was an attributing factor to this enhanced damping behavior of the coated-CIP MRE. Thus, it became clear that the polystyrene-coated CIP embedment in MRE is more desirable than that of MRE with uncoated CIP.
机译:本工作通过聚合方法将羰基铁颗粒(CIP)表面接枝聚苯乙烯涂层,然后将涂层的CIP嵌入CIP与硅橡胶的比例为70:30的硅橡胶中,以提高磁流变弹性体(MRE)的流变性能,从而降低初始储能模量和提高MR效应。通过使用配备有用于元素分析的能量色散X射线光谱的场发射扫描电子显微镜(FESEM),观察到C、N、O、Si、Fe、Br、Cu和Sn元素被检测到,证实涂层已在CIP上成功形成。此外,使用流变仪MCR 302在25摄氏度和三种不同的扫描条件下对流变特性进行了研究。首先,以1Hz的频率将应变振幅从0.001%扫至10%。然后,在0.01%应变和0-5 A的外加电流下,频率从1 Hz变化到100 Hz。最后,在0.01%应变振幅和1 Hz激励频率下,电流从0扫描到5 A。研究发现,在所有三种扫描剖面中,聚苯乙烯涂层CIP-MRE的储能模量均低于未涂层CIP-MRE。有利的是,涂层CIP-MRE样品的磁流变(MR)效应比未涂层CIP-MRE样品高28.04%。此外,发现涂层CIP MRE表现出更高的阻尼性能,其损耗因子大于0.14,而非涂层样品的损耗因子大于0.12。CIP上聚苯乙烯涂层的尺寸稳定性是涂层CIP MRE阻尼性能增强的一个归因因素。因此,很明显,在MRE中嵌入聚苯乙烯涂层的CIP比未涂覆CIP的MRE更理想。

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