基于磁流变的两轮汽车半主动悬架系统试验研究

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引用次数: 0

摘要

将车轮与底盘连接起来的机械连接、弹簧、阻尼器系统被理解为悬架。磁流变阻尼器在减小车辆振动方面起着重要的作用,控制车辆的操纵和制动以确保车辆的安全,并使乘客免受颠簸、振动等影响。磁流变液一直以来都受到人们的极大关注,因为它可以非常快地改变其特性,在护理中,只需在施加磁通的情况下进行控制。这些流体有能力在流体的帮助下以受控的方式传递力,因此提高它们的性能,特别是在需要控制流体运动的领域。如果系统内部出现故障,磁流变阻尼器仍将作为一个被动阻尼系统运行,其性能参数取决于内部磁流变流体的非状态特性。这项工作包括自适应磁流变(MR)的风格和发展,主要基于半主动悬架的特定汽车应用。通过实验和与被动悬架的对比,对其进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Testing Of Magneto Rheological Based Automotive Semi Active Suspension System for Two Wheeler
A system of mechanical linkages, springs, damper that's wont to connect the wheels to the chassis is understood as suspension. it's sometimes done two works-controlling the vehicle’s handling and braking for safety and keeping the passengers snug from bumps, vibrations etc. magneto rheological (MR) damper is plays important role to cut back the vibration. Mr fluid has been attracting nice great attention as a result of it will modification its characteristics terribly quickly Associate in Nursingd controlled simply within the presence of an applied flux. These fluids have the power to transmit force during a controlled manner with the assistance of flux, so up their performance particularly in areas controlled fluid motion is needed. If there's a fault within the system, the Mr damper will still operate as a passive damping system among bound performance parameters betting on the off-state characteristics of the Mr fluid within. This work includes, style and development of adaptive magneto rheological (MR) based mostly semi-active suspension for specific automobile application. Its analysis is to be allotted through an experiment and comparison of results with passive suspension.
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