Development of an on-board system for diagnosing the technical condition of the tread surface of the wheels of wagons

I. A. Gadzhiev
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Abstract

Introduction. The aim of the study is to develop a basic configuration of the on-board system for diagnosing the technical condition of the wheels tread surface of a wagon while the train is running and to model its operation.Materials and methods. The theoretical studies are based on the methods of Lagrange's analytical mechanics, the theory of oscillations and classical electrodynamics. The simulation was carried out for a flat design scheme using numerical methods. The results were processed using the developed algorithm implemented in the programming language of the Mathcad system.Results. This article studies the problem of the negative impact of local wear of the wheel tread surface on the state of the carriage chassis of the car and the rail track, as well as on the safety of train traffic. The authors propose a basic configuration of an on-board system for diagnosing wheel pairs of a wagon with an autonomous power supply with a power of up to 10 W, which simultaneously acts as a sensor. A mathematical model of diagnostic signals for local wheel wear has been constructed, and an algorithm for their detection has been developed based on the results. A criterion for estimating the geometric parameters of wear is formulated and its threshold values for slots of various depths are calculated. Alarms have been identified that suggest a reduction in the speed of the train.Discussion and conclusion. The solution of the stated problem is important both in the operation of existing cars and in the development of new, innovative cars with an axle load of 27–30 tf and speeds of up to 140 km/h. Timely detection of local wear of the tread surface of wagon wheels will increase the level of traffic safety and reduce the cost of repairing cars and rail tracks.
车载货车车轮踏面技术状况诊断系统的研制
介绍。研究的目的是开发一种用于列车运行时车轮踏面技术状况诊断的车载系统的基本配置,并对其运行进行建模。材料和方法。理论研究以拉格朗日分析力学、振荡理论和经典电动力学方法为基础。采用数值方法对平面设计方案进行了仿真。使用开发的算法对结果进行处理,该算法以Mathcad系统的编程语言实现。本文主要研究车轮踏面局部磨损对汽车车厢底盘和轨道状态的负面影响,以及对列车行车安全的影响问题。作者提出了一种车载系统的基本配置,该系统具有功率高达10 W的自主电源,同时充当传感器,用于诊断货车的车轮对。建立了车轮局部磨损诊断信号的数学模型,并在此基础上提出了局部磨损诊断信号的检测算法。提出了一种估计磨损几何参数的准则,并计算了不同深度槽的阈值。警报器已经被识别出来,表明火车的速度在下降。讨论与结论。上述问题的解决对于现有汽车的运行和新型创新汽车的开发都很重要,这些汽车的轴重为27-30 tf,速度高达140公里/小时。及时检测货车车轮踏面局部磨损,将提高交通安全水平,降低修理车辆和轨道的成本。
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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