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The Damping Properties of Plate-Like Magnetorheological Elastomer

机译:板状磁流变弹性体的阻尼性能

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This paper aims to investigate the damping properties of plate-like carbonyl iron particle (CIP) magnetorheological elastomer (MRE). The damping properties of MRE is mainly dependent on the strength of magnetic field. Anisotropic MRE was fabricated under various magnetic fields strength (70, 210, 345, and 482 mT) and its damping property prior to frequency-dependent was measured using a rheometer. Firstly, the plate-like CIP was first synthesized from spherical CIP using a ball-milling method. The microstructure of plate-like CIP was observed using low vacuum scanning electron microscope. Subsequently, two types of MREs which are isotropic and anisotropic were fabricated using 70 weight percent (wt.%) of plate-like CIP. The experimental results showed that the anisotropic MRE has lower damping factor than isotropic MRE. Meanwhile, the damping factor increases with the increase of frequency.
机译:本文旨在研究板状羰基铁颗粒(CIP)磁流变弹性体(MRE)的阻尼性能。 MRE的阻尼性质主要取决于磁场的强度。在各种磁场强度(70,210,345和482mt)下制造各向异性MRE,并且使用流变仪测量在依赖于频率之前的阻尼性。首先,首先使用球磨方法从球形CIP合成板状CIP。使用低真空扫描电子显微镜观察板状CIP的微观结构。随后,使用70重量%(WT.%)的板状CIP制备两种类型的MRES。实验结果表明,各向异性MRE具有比各向同性的较低的阻尼因子。同时,阻尼因子随着频率的增加而增加。

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