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Study of Flow-Induced Vibration Phenomena in Automotive Shock Absorbers

机译:汽车减震器流动振动现象研究

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The purpose of this study was to develop a model of the dynamic behavior of a hydraulic vehicle double-tube shock absorber. The model accounts for the effects of compressibility, valve stiction, inertia, etc. and can be suitable for use in the analyses on flow-induced pressure fluctuations in the device. The author highlights all major variables to influence the output of the shock absorber, and then proceeds by performing a series of simulations using the developed model. The model is demonstrated to operate well in the large amplitude and low frequency range as well as the small amplitude and high frequency excitation operation regimes. The results are presented in the form of time histories of pressures in each fluid volume of the damper, flow rates through the valves, piston rod acceleration and force. Fast Fourier Transform (FFT) graphs are presented, too, in order to identify major components of the pressure fluctuation phenomena in frequency domain.
机译:本研究的目的是开发一种模型的液压车辆双管减震器的动态行为。该模型占压缩性,阀门稳定,惯性等的影响,并且可以适用于在装置中流动诱导的压力波动的分析中使用。作者突出显示所有主要变量来影响减震器的输出,然后通过使用开发模型进行一系列模拟来进行。该模型被证明在大幅度和低频范围内以及小幅度和高频激励操作方案中运行良好。结果以阻尼器的每个流体体积的压力的时间历史形式呈现,通过阀门,活塞杆加速度和力的流速。快速傅里叶变换(FFT)图也呈现,以识别频域中的压力波动现象的主要组件。

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