DETERMINATION OF THE FREQUENCY OF NATURAL OSCILLATIONS OF THE ELEMENTS OF THE MECHANICAL SYSTEM OF THE MOTOR CARRIAGE ROLLING STOCK

V. Tishchenko, O. Lohvinenko, M. Odegov
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Abstract

The article is devoted to highlighting the peculiarities of determining the frequencies of natural oscillations of the elements of the mechanical system of modern rolling stock. A significant volume of passenger transportation in suburban traffic on railway networks of Ukraine is carried out by the operating fleet of rolling stock, most of which are operated overtime. Taking into account the relatively slow pace of renewal of Ukrzaliznytsia's rolling stock fleet, scientific research aimed at maintaining a high level of technical and economic indicators of electric trains in operation becomes especially important. Therefore, research aimed at improving performance indicators of structural elements of rolling stock should be considered relevant. As one of the most responsible units of the mechanical system of modern rolling stock, the crew part can be singled out, which includes a traction electric drive, during the operation of which the phenomenon of jolts is observed in some modes of operation. Such a phenomenon is observed in resonant modes of operation, that is, the coincidence of the frequencies of natural and forced oscillations, which negatively affects the reliability and durability of the mechanical system as a whole. Therefore, the task of identifying resonant frequencies and eliminating the manifestation of the negative phenomenon of resonance arises. One of the possible ways to solve the given problem is to adjust the operation of the traction drive mechanism in non-resonant modes, which in turn requires research on the torsional oscillations of the mechanical drive system. The article presents an approach using geometric models of the design elements of the traction drive of electric trains, the corresponding mathematical model, and the results of modeling the shape of the frequency of natural oscillations of the traction drive of an electric train. Based on the results of the calculations, it was determined that the form of natural oscillation frequencies of the considered mechanical system has a two-node character. The proposed approach is based on the use of a tabular form of calculation of recurrent formulas. Based on the results of the research, recommendations are given for the further use of the obtained results. Keywords: motor-wagon rolling stock, electric train, traction drive, self-oscillations.
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机车车辆机械系统元件自然振荡频率的测定
这篇文章致力于强调确定现代机车车辆机械系统的元件的自然振荡频率的特点。在乌克兰的铁路网络上,郊区交通的大量客运是由营运的机车车队进行的,其中大多数是加班运营的。考虑到乌克兰铁路车辆更新速度相对较慢,旨在保持运行中的电动列车的高水平技术和经济指标的科学研究变得尤为重要。因此,针对改善机车车辆结构构件性能指标的研究应被认为是相关的。作为现代铁路车辆机械系统中最重要的单元之一,机组部分可以单独列出,其中包括牵引电力传动装置,在运行过程中,在某些运行模式下可以观察到颠簸现象。在谐振工作模式中观察到这种现象,即自然振荡和强迫振荡的频率重合,这对整个机械系统的可靠性和耐久性产生负面影响。因此,识别谐振频率和消除谐振负面现象的表现的任务就出现了。解决该问题的一种可能方法是将牵引传动机构调整为非谐振模式,这就需要对机械传动系统的扭振进行研究。本文介绍了利用电力列车牵引传动设计要素的几何模型、相应的数学模型以及对电力列车牵引传动的自然振荡频率形状的建模结果的方法。根据计算结果,确定了所考虑的机械系统的固有振荡频率形式具有双节点特征。所提出的方法是基于循环公式计算的表格形式的使用。根据研究结果,提出了进一步利用所得结果的建议。关键词:机车车辆,电动列车,牵引传动,自振荡。
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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4 weeks
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