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首页> 外文期刊>Journal of intelligent material systems and structures >Design of magnetorheological damper with short time response
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Design of magnetorheological damper with short time response

机译:短时响应的磁流变阻尼器设计

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摘要

For efficient fast control of suspension systems with magnetorheological dampers controlled by semi-active algorithms, the time response of the magnetorheological damper is one of the most important parameters which influences the performance of the suspension system. The time response of commercial magnetorheological dampers with common controllers is in the range of tens of milliseconds, which is too long for efficient real-time control of car suspension. This article describes the ways how to design magnetorheological damper with short response time. First part describes the elimination of long time response caused by high inductance of electrical circuit of magnetorheological damper using current controller. The second part describes elimination of long time response caused by eddy currents which are induced in the magnetic circuit of magnetorheological damper. The new piston of the magnetorheological damper is designed from material with high relative permeability but low electrical conductivity (ferrite). The time responses of magnetic induction and damper forces were measured and compared to original commercial Delphi damper. Results showed rapid improvement in time response when the current controller is used and when the piston is constructed from ferrite materials.
机译:为了通过半主动算法控制具有磁流变阻尼器的悬架系统的快速有效控制,磁流变阻尼器的时间响应是影响悬架系统性能的最重要参数之一。带有通用控制器的商用磁流变阻尼器的时间响应在数十毫秒的范围内,对于汽车悬架的有效实时控制而言,这太长了。本文介绍了如何设计响应时间短的磁流变阻尼器。第一部分描述了使用电流控制器消除磁流变阻尼器电路高电感引起的长时间响应。第二部分描述了消除由磁流变阻尼器的磁路中感应出的涡流引起的长时间响应。磁流变阻尼器的新活塞是由相对磁导率高但电导率低(铁氧体)的材料设计的。测量了磁感应和阻尼力的时间响应,并将其与原始的商用德尔福阻尼器进行了比较。结果表明,当使用电流控制器以及活塞由铁氧体材料制成时,时间响应迅速提高。

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