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Methodology on a novel magnetorheological valve controlled damper synthesis design

机译:新型磁流变阀控制阻尼器合成设计的方法

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摘要

Semi-active suspension has been increasing interests for its outstanding performance and high cost effectiveness, and the magnetorheological (MR) damper is a hotspot in these decades. For the MR damper design, here still are some farther challenges, such as, (1) how to cascade the ideal damper characteristic from full vehicle performance, and what is the ideal off-state performance and the controllable ratio; (2) how to fix the MR damper brought additional mass since the MR fluid density is three times than the traditional damper oil's, and a promising lightweight and effective configuration and its systematical design approaches should be explored. In this article, the novel MR valve controlled damper (MRVD) and its top-down design methodology are proposed via both the configuration design and system syntheses. Results manifest that the developed MRVD prototype matches the target minibus requirement very well with consumption of 3 W drive power and 6.1 ml MR fluids, demonstrating superior dynamic performance, lightweight compact structure, low energy consumption and cost, and a promising application in semi-active suspensions.
机译:半主动悬架对其出色的性能和高成本效益越来越兴趣,并且磁流变(MR)阻尼器是这些十年中的热点。对于Damper设计,这里仍然存在一些进一步的挑战,例如,(1)如何级联从全车性能级联的理想阻尼特性,以及理想的断开状态性能和可控比率是什么; (2)如何修复MR阻尼器带来额外的质量,因为MR流体密度是传统阻尼油的三次,并且应该探索有前途的轻量级和有效的配置及其系统设计方法。在本文中,通过配置设计和系统合成来提出新的MR阀控制阻尼器(MRVD)及其自上而下的设计方法。结果表明,发达的MRVD原型非常符合3 W驱动功率和6.1毫升液体的消耗量,展示优越的动态性能,轻质紧凑结构,低能耗和成本,以及在半活动中的有希望的应用暂停。

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