首页> 外文会议>ASME Rail Transportation Division Conference >INCREASE OF RAILWAY TRANSPORTATION SAFETY BY A NEW METHOD OF DETERMINATION OF WHEEL PAIR AND RAIL WEAR AND DAMAGE
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INCREASE OF RAILWAY TRANSPORTATION SAFETY BY A NEW METHOD OF DETERMINATION OF WHEEL PAIR AND RAIL WEAR AND DAMAGE

机译:通过新方法增加铁路运输安全性的车轮对与轨道磨损和损坏

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As a result of interaction between the wheel pairs and rails during rolling stock movement, lateral, longitudinal and torsional creep forces are created. Over the long term these forces cause wear and damage of the wheel pairs and rails. Accordingly railway safety decreases and the probability of derailment increases. Development of modern railways largely depends on controlling the proper functionality of wheel pairs and rails. It is impossible to ensure safety and increase the speed of railway traffic without providing such control. Detection of the wheel pair and rail wear damage is one of the key problems of railway science. Many scientific studies have been performed and a number of devices have been developed in this field, but the mentioned problem still remains urgent. In order to increase railway safety, the authors of this paper have proposed a conceptual design of a mobile device for detection of wheel pair and rail wear and damage. Such a device does not currently exist. By installation of the proposed device on each wheel pair of each railcar, the automatic control of wheel pair and rail condition will be achieved. Namely: Detection of the worn out wheel pair and determination of the degree of wear; Detection of the damaged wheel pair; Identification of the worn out or damaged wheel pair. Also possible, on the basis of elaborated mathematical model: Detection of the worn out rail; Detection of the damaged rail; Identification of location of the worn out or damaged rail. Information obtained from the device would be constantly connected to the locomotive computer system. Therefore, for checking rolling stock, there could no longer be a need to build expensive stationary systems or to move trains great distances for their inspection. As a result, the time lost due to equipment stoppage will be saved. Also, with the help of the proposed mobile device, railway safety could improve, while at the same time expenses for detection of wheel pair wear and damage could potentially decrease. This could result in significant economic savings.
机译:由于车轮对运动期间的滚动和轨道之间的相互作用,产生横向,纵向和扭转蠕变力。长期以来,这些力导致车轮对和轨道的磨损和损坏。因此,铁路安全减少,脱轨的概率增加。现代铁路的发展在很大程度上取决于控制轮对和轨道的适当功能。不可能确保安全性并提高铁路交通的速度而不提供这种控制。检测车轮对和轨道磨损是铁路科学的关键问题之一。已经进行了许多科学研究,并在该领域开发了许多设备,但提到的问题仍然是迫切的。为了增加铁路安全,本文的作者提出了一种移动设备的概念设计,用于检测车轮对和轨道磨损和损坏。这种设备目前尚不存在。通过在每个轨道电路的每个车轮对上安装所提出的装置,将实现轮对的自动控制和轨道状态。即:检测磨损的车轮对和磨损程度的测定;检测损坏的车轮对;识别磨损或损坏的轮对。也可以在阐述的数学模型的基础上:检测破旧的铁路;检测损坏的轨道;识别磨损或损坏的轨道的位置。从设备获得的信息将不断连接到机车计算机系统。因此,为了检查滚动股票,不再需要建立昂贵的固定系统或移动火车距离的距离。结果,将节省设备停止导致的时间。此外,借助于所提出的移动设备,铁路安全可以改善,同时有时用于检测车轮对磨损和损坏可能会降低。这可能导致显着的经济储蓄。

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