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Dynamic Performance of Different Metal Foam Magnetorheological Fluid Materials

机译:不同金属泡沫磁流变材料的动态性能

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This paper investigates the dynamic response of different metal foam magnetorheological (MR) fluid materials experimentally. Metal foam MR fluid materials can be used to manufacture the low-cost controllable damping devices without the need of a seal and provide a long service life. The MR fluid is stored in metal foam mainly by the capillary force. In the action of magnetic field, the MR fluid will be extracted out from metal foam and fill up the shear gap, and then, produce the MR effect. Three types of metal foams with different relative permeability, such as Fe, Ni, and Cu, are applied to store the MR fluid. A set of testing systems, including the plate-on-plate shear test rig, electromotor, and force sensor, is built to investigate the dynamic performance of these materials. In order to describe the dynamic response accurately, three parameters of response time are introduced and defined. The magnetic field, both in the shear gap and the pore of metal foam, is simulated by finite element method software. The experimental results show that the response time of metal foam MR fluid materials will change with different currents, which provides the theoretical and experimental basis for the further development of metal foam MR fluid dampers or actuators.
机译:本文研究了不同金属泡沫磁流变(MR)流体材料的动力响应。金属泡沫MR流体材料可用于制造低成本的可控阻尼装置,而无需密封,并且使用寿命长。 MR流体主要通过毛细作用力存储在金属泡沫中。在磁场作用下,MR流体将从金属泡沫中抽出并填充剪切间隙,然后产生MR效应。三种类型的相对渗透性不同的金属泡沫(例如,Fe,Ni和Cu)用于存储MR流体。建立了一套测试系统,包括板对板剪切试验台,电动机和力传感器,以研究这些材料的动态性能。为了准确地描述动态响应,引入并定义了响应时间的三个参数。通过有限元方法软件模拟了剪切间隙和泡沫金属孔隙中的磁场。实验结果表明,金属泡沫磁阻流体材料的响应时间会随电流的变化而变化,这为金属泡沫磁阻流体阻尼器或执行器的进一步开发提供了理论和实验基础。

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