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Development of an algorithm for investigation of technical state of wagons’ running gears during their derailment

机译:开发一种用于研究旅行车行走装置脱轨过程中的技术状态的算法

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A freight wagon is a collection of a large number of parts and assemblies that form a single structure. During wagon operation, there are gradual changes in the characteristics and parameters of its structural elements. That is, the parameters of its constituent elements change – their numerical values increase or decrease that result in a change of the unit’s technical state, and, in turn, affects the totality of its performance. Gradually accumulating, the changes in the parameters of the structural elements of a wagon reach such a level that radical, sometimes abrupt qualitative change occurs. A malfunction that has not been repaired timely may lead to a failure of a wagon structural element, which, in turn, may result in rolling stock derailment. It has been established that the loss of stability of freight wagons during their movement is most often due to their unsatisfactory dynamic properties, which can be explained by design features and technical state of running gears. In this regard, the authors of the article have developed an algorithm for investigation technical state of running gears of freight wagons and determined the effect of their parameters’ deviation on rolling stock operation with possible further derailment.
机译:货车是形成单个结构的大量零件和组件的集合。货车运行期间,其结构元件的特性和参数会逐渐变化。也就是说,其组成元素的参数会发生变化–它们的数值会增大或减小,从而导致设备的技术状态发生变化,进而影响设备的整体性能。逐渐累积,货车的结构参数的变化达到了这样的水平,即发生了根本的,有时是突然的质变。未能及时修复的故障可能会导致货车结构部件故障,进而导致机车车辆出轨。已经确定的是,货运货车在其运动过程中稳定性的损失通常是由于它们的动态特性不令人满意,这可以通过行走机构的设计特征和技术状态来解释。在这方面,本文的作者开发了一种算法,用于研究货车行走机构的技术状态,并确定其参数偏差对可能进一步脱轨的机车车辆运行的影响。

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