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Performance Analysis of Passenger Vehicle Featuring ER Damper with Different Tire Pressure

机译:具有不同胎压的ER减震器的乘用车性能分析

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This paper presents performance analysis of a controllable electro-rheological (ER) damper for a passenger vehicle with different tire pressure. In order to achieve this research goal, an ER damper, which satisfies design specifications for a mid-sized passenger vehicle, is designed and manufactured. After experimentally evaluating the field-dependent characteristics of the manufactured ER damper, the quarter-vehicle suspension system consisting of sprung mass, spring, tire and the ER damper is constructed in order to investigate the ride comfort with different tire pressure. After deriving the equations of the motion for the proposed quarter-vehicle ER suspension system, vertical tire stiffness with respect to different tire pressure is experimentally identified. Ride comfort characteristics such as vertical acceleration RMS (root mean square) of sprung mass are evaluated under bump road conditions using a quarter-vehicle test facility.
机译:本文介绍了一种用于具有不同轮胎压力的乘用车的可控电流变(ER)阻尼器的性能分析。为了实现该研究目标,设计并制造了满足中型乘用车的设计规格的ER阻尼器。通过实验评估所制造的ER减震器的取决于现场的特性后,构造了由弹簧质量,弹簧,轮胎和ER减震器组成的四分之一车辆悬架系统,以研究不同轮胎压力下的乘坐舒适性。在推导所提出的四轮车辆ER悬架系统的运动方程后,通过实验确定了相对于不同胎压的垂直轮胎刚度。使用四分之一车辆测试设备在颠簸道路条件下评估了乘坐舒适性特性,例如弹簧质量的垂直加速度RMS(均方根)。

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