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Non-linear analysis of a quarter-car model with stroke-dependent twin-tube shock absorber

机译:具有行程相关双管减震器的四分之一汽车模型的非线性分析

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The work presents results of the analysis of a quarter-car model with a modified twin-tube hydraulic shock absorber. In comparison with a classical damper, this shock absorber possesses an additional double-chamber cylinder. The flow of oil into these chambers is controlled by relative displacement of the auxiliary piston and by pressure difference in the adjacent chambers. The introduced nonlinear spring element - bumper - protects the shock absorber against damage in the case of large amplitudes of excitations. Performance efficiency of the shock absorber model within the range of both large amplitudes and high excitation frequencies ensures that the change of the oil bulk modulus resulting from a change in pressure is accounted for. The introduction of additional chambers into the shock absorber leads to a change in the characteristics of the damping force. Within the range of small amplitudes and high frequencies the system acts like a shock absorber with a soft characteristic, which improves the driving comfort. In resonance ranges the increase in the damping force ensures higher driving safety. The analysis of the system response to the harmonic excitation of variable frequency and amplitude as well as to the random excitation permits to examine the impact of excitation parameters and construction parameters on the indicators characterizing the driving comfort and safety. The results of numerical simulations are illustrated with the graphs of time histories, spectral analyses, characteristics of the damping force, and others, illustrating the processes of controlling oil flow. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作提出了具有改进的双管液压减震器的四分之一汽车模型的分析结果。与传统的减震器相比,该减震器拥有一个额外的双腔缸。进入这些腔室的机油流量由辅助活塞的相对位移和相邻腔室中的压差控制。引入的非线性弹簧元件-保险杠-在大振幅激励的情况下保护减震器免受损坏。减震器模型在大振幅和高激励频率范围内的性能效率可确保考虑到因压力变化而引起的机油体积模量的变化。在减震器中引入额外的腔室会导致阻尼力特性发生变化。在小振幅和高频率范围内,系统就像具有柔软特性的减震器一样工作,从而提高了驾驶舒适性。在共振范围内,阻尼力的增加可确保更高的行驶安全性。通过对系统对可变频率和振幅的谐波激励以及随机激励的响应进行分析,可以检查激励参数和构造参数对表征驾驶舒适性和安全性的指示器的影响。数值模拟的结果通过时间历史图,频谱分析,阻尼力特性等进行了说明,并说明了控制油流的过程。 (C)2018 Elsevier Ltd.保留所有权利。

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