Analysis of the Modernised Railway Vehicle Component with Regard to Reliability and Operational Safety

Stanisław Młynarski, R. Pilch, Maksymilian Smolnik, J. Szybka
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Abstract

This paper presents an analysis of the design of the bogie pivot of an electric multiple unit, which is cast in cast steel to replace the forged pivot used to date. The change in pivot manufacturing technology is justified for eco - nomic reasons, but may affect the reliability and operational safety of multiple units. The authors analysed to what extent the change in pivot manufacturing technology from forged to cast can affect the operational reliability of the upgraded structural component and what requirements should be met so that the introduced upgrade does not reduce the operational safety of the electric multiple unit. An important part of the analysis is the consideration of the effect of preventive replacements of the rubber element of the vibration damper on damage to the pivot and vibra - tion damper system. The dependence of damage to the cooperating components of the pivot elements and vibration damper in the system is demonstrated. The lifespan of the rubber element of the damper is considerably less than that of the bogie pivot of the electric traction unit, and its damage increases the probability of damage to the cast steel pivot. This relationship is critical and, in order to ensure the required reliability of the traction unit, a strategy of preventive replacement of the rubber element of the damper was proposed and achieved in the simulation model developed. This issue is presented in this paper because it is fundamental to the safe operation of rail vehicles.
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现代化铁路车辆部件的可靠性和运行安全性分析
本文分析了电力动车组转向架枢轴的设计,该枢轴采用铸钢铸造,以取代迄今为止使用的锻造枢轴。枢轴制造技术的改变是出于生态原因,但可能会影响多联机组的可靠性和运行安全性。作者分析了枢轴制造技术从锻造到铸造的变化会在多大程度上影响升级后结构部件的运行可靠性,以及应满足哪些要求才能使引入的升级不会降低电动多联机组的运行安全性。分析的一个重要部分是考虑预防性更换减震器橡胶元件对枢轴和减震器系统损坏的影响。该分析表明了系统中枢轴元件和减震器配合部件的损坏情况。减振器橡胶元件的使用寿命大大低于电力牵引装置转向架枢轴的使用寿命,其损坏会增加铸钢枢轴损坏的概率。这种关系至关重要,为了确保牵引装置所需的可靠性,我们提出了预防性更换减振器橡胶元件的策略,并在所开发的仿真模型中实现了这一目标。本文之所以提出这一问题,是因为它对轨道车辆的安全运行至关重要。
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