首页> 外文会议>Symposium on Smart Materials for Engineering and Biomedical Applications; 20040516-19; Suzhou(CN) >AN OPTIMAL DESIGN METHOD AND EXPERIMENTAL TEST OF MAGNETORHEOLOGICAL FLUID SHOCK ABSORBER FOR MINI-BUS SUSPENSION SYSTEM
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AN OPTIMAL DESIGN METHOD AND EXPERIMENTAL TEST OF MAGNETORHEOLOGICAL FLUID SHOCK ABSORBER FOR MINI-BUS SUSPENSION SYSTEM

机译:微型客车悬架系统磁流变流体减震器的优化设计方法和试验研究

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摘要

Magnetorheological (MR) fluids exhibit controllable rheological behavior in the presence of magnetic field. In order to develop automotive semi-active suspension system, which consists of passive spring and active shock absorber with adjustable damping force for different road conditions and automobile running conditions, some design methods of MR fluid shock absorber have received considerable attention in recent years. In this paper, nonlinear magnetic behaviors of soft magnetic material and MR fluid have been coupled to the non-Newtonian fluid mechanics. To minimize the power consumption and inductive time constant and to maximize the control ratio of the MR fluid shock absorber, objective function with bus MR fluid shock absorber has been designed and fabricated at Chongqing University according to the optimal design method. The performances of MR fluid shock absorber have been tested from sine excitation with frequency 1.97Hz, maximum piston velocity 0.3m/s and maximum displacement 25mm in The National Center for Test and Supervision of Coach Quality of China in the light of requirements of Chang' an mini-bus suspension system. The experimental results demonstrate that damping force offered by MR fluid shock absorber can be controlled by application of magnetic field (current) to meet the requirements of ride comfort and driving safety of mini-bus, control ratio of the MR fluid shock absorber is larger than that of previous MR fluid shock absorber, the power consumption is less than 5 watts. Research on dynamic response of MRF shock absorber is under way.
机译:磁流变(MR)流体在存在磁场的情况下表现出可控的流变行为。为了开发由被动弹簧和具有可调节阻尼力的主动减震器组成的汽车半主动悬架系统,以适应不同的路况和汽车行驶条件,近年来,MR流体减震器的一些设计方法受到了广泛的关注。在本文中,软磁材料和MR流体的非线性磁行为已与非牛顿流体力学耦合。为了最小化功耗和电感时间常数,并最大程度地提高MR流体减震器的控制比,重庆公交大学已根据最佳设计方法设计并制造了带有总线MR流体减震器的目标函数。 MR流体减震器的性能已在中国国家汽车质量监督检验总局的要求下,通过频率为1.97Hz,最大活塞速度为0.3m / s,最大排量为25mm的正弦激励进行了测试。小巴悬架系统。实验结果表明,通过施加磁场(电流)可以控制MR流体减震器提供的阻尼力,以满足乘坐舒适性和小客车行驶安全性的要求,MR流体减震器的控制比大于与以前的MR流体减震器相比,功耗不到5瓦。 MRF减震器的动力响应研究正在进行中。

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