Application of elastically protected hydraulic vibration damper in spring suspension of locomotives

A. Savos’kin, N. Lavlinskaya, P. Ivanov
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Abstract

Introduction. In the undercarriage of modern locomotives hydraulic vibration dampers are widely used to dampen vertical vibrations that occur in the axlebox stage of the spring suspension. Their resistance force is directly proportional to the deformation rate of the spring set. High levels of vibration frequencies and amplitudes in the axlebox stage lead to a significant increase in the strain rate and dissipative forces, which causes frequent failures of hydraulic vibration dampers. Therefore, issues related to improving the performance of axlebox hydraulic dampers are actual.Materials and methods. In order to evaluate the effectiveness of elastically protected hydraulic vibration damper in axlebox suspension, the authors studied the vibrations of a simplified model of a 2ES5K electric locomotive with a typical layout of the axlebox stage of spring suspension and a circuit with an elastically protected hydraulic vibration damper. The authors used a high-frequency random process as a kinematic perturbation of vibrations. The system of differential equations was solved in the MatLab — Simulink software package by numerical integration using the Runge — Kutta method of the fourth order. As a result of the solution, realisation of stationary and ergodic random processes were obtained. Results. The comparison of the obtained characteristics of random processes of vibrations of these two options showed that the use of an elastically protected axlebox vibration damper significantly reduces the frequency range and amplitudes of dissipative forces, which ensures a reduction in the number of axlebox damper failures and an increase in the number of runs before replacement is required.Discussion and conclusion. The shown efficiency of using an elastically protected axlebox vibration damper allows increasing the reliability of the damper. In order to determine the distance run between overhauls, it is necessary to carry out a controlled operation cycle or test the prototype axlebox assembly with the elastically protected vibration damper and measure the parameters of such assembly.  
弹性保护液压减振器在机车弹簧悬架中的应用
介绍。在现代机车底盘中,液压减振器被广泛用于抑制弹簧悬架轴箱段的垂直振动。它们的阻力与弹簧组的变形率成正比。轴箱段的高振动频率和幅值会导致应变速率和耗散力的显著增加,从而导致液压减振器频繁失效。因此,有关提高轴箱液压阻尼器性能的问题是现实的。材料和方法。为了评价弹性保护液压减振器在轴箱悬架中的有效性,对采用典型弹簧悬架轴箱级布置和带弹性保护液压减振器回路的2ES5K型电力机车简化模型的振动进行了研究。作者使用高频随机过程作为振动的运动学扰动。在MatLab - Simulink软件包中,采用四阶龙格-库塔法对微分方程组进行数值积分求解。求解的结果,实现了平稳和遍历随机过程。结果。两种方案随机振动过程特性的比较表明,弹性保护轴箱减振器的使用显著降低了耗散力的频率范围和幅值,从而保证了轴箱减振器失效次数的减少和更换前运行次数的增加。讨论与结论。所显示的使用弹性保护轴箱减振器的效率允许增加减振器的可靠性。为了确定大修之间的运行距离,有必要对带有弹性保护减振器的原型轴箱总成进行受控运行周期或测试,并测量该总成的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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