首页> 外文会议>ASME biennial conference on engineering systems design and analysis >COMPARISONS BETWEEN DYNAMIC CHARACTERISTICS OF PNEUMATIC, MAGNETORHEOLOGICAL, AND HYDRAULIC SHOCK ABSORBERS
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COMPARISONS BETWEEN DYNAMIC CHARACTERISTICS OF PNEUMATIC, MAGNETORHEOLOGICAL, AND HYDRAULIC SHOCK ABSORBERS

机译:气动,磁流变和液压减震器动力特性的比较

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The dynamic performance of automotive vehicles is influenced by the suspension system design. Suspensions owing damping elements with a wide range of non-linear behaviour can provide higher mobility and better ride comfort performances. Pneumatic suspensions due to their inherent nonlinear behaviour can provide high mobility performance while suspensions with MR dampers can provide this nonlinearity through the controllable damping force produced by the control of the MR fluid. The pneumatic and MR suspension models are usually developed from experimental force-displacement and force-velocity characteristics. The purpose of this paper is to measure and compare the dynamic characteristics of pneumatic, magnetorheological, and hydraulic shock absorbers. The study is carried out through measuring the characteristics of the different types of dampers at different frequencies and amplitudes using an Electro-Servo Hydraulic (ESH) testing machine. The shock absorber is subjected to sinusoidal excitation of frequency varying from 0 to 10 Hz, and amplitude varying from 0 to 10 mm. In the case of the MR damper, the tests are also done at different current levels of between 0 and 2 amp. The input displacement and acceleration to the shock absorber were measured using an LVDT (Linear Voltage Displacement Transducer) and an accelerometer, respectively while the input velocity was derived from the measured displacement and acceleration. This dual identification of the input velocity was done in order to ensure accurate representation of the velocity. The output force response of the shock absorber was measured by means of a force transducer. The force-displacement and force-velocity characteristics of each shock absorber were subsequently derived from the measured data. The results show the tunability of the MR damper characteristics in comparison to those of the pneumatic and hydraulic dampers.
机译:汽车的动态性能受悬架系统设计的影响。由于减震元件具有广泛的非线性特性,因此可以提供更高的机动性和更好的乘坐舒适性。气动悬架由于其固有的非线性特性,可以提供高迁移率性能,而带有MR阻尼器的悬架可以通过控制MR流体产生的可控阻尼力来提供这种非线性。气动和MR悬架模型通常是根据实验力-位移和力-速度特性开发的。本文的目的是测量和比较气动,磁流变和液压减震器的动力学特性。该研究是通过使用电子伺服液压(ESH)测试机测量不同类型的阻尼器在不同频率和振幅下的特性来进行的。减震器受到正弦激励,其频率在0到10 Hz之间变化,振幅在0到10 mm之间变化。对于MR阻尼器,还可以在0至2安培之间的不同电流水平下进行测试。减震器的输入位移和加速度分别使用LVDT(线性电压位移传感器)和加速度计进行测量,而输入速度则由测得的位移和加速度得出。为了确保准确表示速度,对输入速度进行了双重识别。减震器的输出力响应通过力传感器测量。随后从测量数据中得出每个减震器的力-位移和力-速度特性。结果表明,与气动和液压阻尼器相比,MR阻尼器特性具有可调性。

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