首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Comfort-oriented Semi-active Matching Design with a Magneto-Rheological Air Suspension Mechanism
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Comfort-oriented Semi-active Matching Design with a Magneto-Rheological Air Suspension Mechanism

机译:带磁流变空气悬架机构的舒适的半主干配套设计

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摘要

This study aims to present a method for matching the stiffness and damping of a magneto-rheological (MR) air suspension system that will ensure optimal ride comfort of a road vehicle traveling on roads with different roughness and speeds. The authors study the matching of the damping coefficient with the damping ratio, and obtain the adjustment range of the damping coefficient. Based on the linearization of the air spring, a suspension model with adjustable stiffness and adjustable damping has been established. To improve the ride comfort of the vehicle and to control the dynamic deflection and dynamic load, the optimal matching of stiffness and damping under different working conditions has been analyzed by using the stepwise optimal solution method. Then, the authors design four stiffness levels and five damping levels, and propose the parameter matching scheme of the MR air suspension system. The theoretical analysis shows that the proposed scheme can improve vehicle vertical dynamic performance. Four levels of adjustment for the width of the orifice between the air spring and auxiliary chamber and six levels of adjustment for the MR damper have been designed respectively. The findings of this study will inform other studies on vibration control.
机译:本研究旨在提出一种匹配磁阻(MR)空气悬架系统的刚度和阻尼的方法,该方法将确保在具有不同粗糙度和速度的道路上行驶的公路车辆的最佳乘坐舒适度。作者研究阻尼系数与阻尼比的匹配,并获得阻尼系数的调整范围。基于空气弹簧的线性化,已经建立了具有可调节刚度和可调节阻尼的悬架模型。为了提高车辆的乘坐舒适性并控制动态偏转和动态载荷,通过使用逐步最佳解决方法,分析了在不同工作条件下刚度和阻尼的最佳匹配。然后,作者设计了四个刚度水平和五个阻尼水平,并提出了MR空气悬架系统的参数匹配方案。理论分析表明,该方案可以提高车辆垂直动态性能。分别设计了四个调节的空气弹簧和辅助室之间的孔的宽度以及MR阻尼器的六个调节。本研究的结果将为其他研究提供关于振动控制的研究。

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