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An eddy current effect on the response time of a magnetorheological damper: Analysis and experimental validation

机译:对磁流变阻尼器响应时间的涡流效应:分析与实验验证

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摘要

This work proposes a new magnetorheological (MR) damper which can produce sufficient damping force within a few millisecond. Firstly, damping force mechanisms of MR damper are analyzed by deriving several equations representing the flow motion. Then, the eddy current analysis of several different core materials is undertaken since it most significantly influences to the time delay of MR damper. After analyzing several candidates of the magnetic core material, the soft magnetic composite (SMC) is selected which has relatively high electric resistivity. In addition, the inner surface of the housing is machined to have many grooves around the housing to reduce the eddy current magnitude. After confirming that the proposed MR damper causes a very small eddy current distribution, two MR dampers are designed and manufactured by considering the order of the influence level of the factors determined on the basis of Taguchi method. The field-dependent damping force to the step input current is then measured in time domain and the response time of MR damper is calculated. It is shown through experimental tests that very fast response time of MR damper can be achieved by reducing the eddy current around the magnetic field zone. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种新的磁流变学(MR)阻尼器,其可以在几毫秒内产生足够的阻尼力。首先,通过导出表示流动运动的若干方程来分析MR DAMPER的阻尼力机制。然后,采取了几种不同核心材料的涡流分析,因为它最显着影响了MR阻尼器的时间延迟。在分析磁芯材料的几个候选物之后,选择具有相对高电阻率的软磁复合物(SMC)。另外,壳体的内表面被加工成具有许多围绕壳体的凹槽,以减小涡流幅度。在确认所提出的MR阻尼器导致非常小的涡流分布之后,通过考虑基于Taguchi方法确定的因子的影响水平的顺序来设计和制造两个MR阻尼器。然后在时间域中测量对步进输入电流的现场依赖性阻尼力,并计算MR DAMPER的响应时间。通过实验测试示出,通过减小磁场区周围的涡电流可以实现MR阻尼器的非常快的响应时间。 (c)2019 Elsevier Ltd.保留所有权利。

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