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Locomotive wheel failure from gauge widening/condemning: Effect of wheel profile, brake block type, and braking conditions

机译:计距加宽/修理导致机车车轮故障:车轮轮廓,制动块类型和制动条件的影响

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A finite element model accounting for heat partitioning at brake block-wheel and rail-wheel interfaces is used to investigate the effect of locomotive wheel profile, wheel diameter, brake block type, nature of braking (independent, synchronized, and drag), braking frequency and braking cycles on wheel gauge for tread braked, locomotive wheel sets. A train running model estimates heat generation rates during braking for assumed operating and braking conditions. Wheel profiles and brake block types used in the work, match with that used by Indian Railways. Bending at hub-disc and disc-rim interfaces is seen to primarily control axial deflection of wheels. While gauge reduction is observed during braking, gauge increase is seen during subsequent cooling. Maximum gauge increase occurs as the wheels finally cool down to room temperature. S-shaped wheels are seen to be better suited than straight plate and parabolic profile wheels for avoiding excessive gauge change. Locomotive wheel failure from gauge widening and condemning, albeit at different times, is seen to occur with independent braking for locomotives fitted with straight plate, S-shaped as well as parabolic profile wheels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:有限元模型解决了制动块-车轮和轨道-车轮界面处的热分配问题,用于研究机车车轮轮廓,车轮直径,制动块类型,制动性质(独立,同步和拖动),制动频率的影响胎面制动机车轮对的车轮规上的制动和制动周期。列车运行模型针对假定的运行和制动条件估算制动期间的热量产生率。工作中使用的车轮轮廓和制动块类型与印度铁路公司使用的相匹配。轮毂盘和轮辋边缘的弯曲被认为主要控制车轮的轴向偏转。在制动过程中观察到仪表减小,而在随后的冷却过程中发现仪表增大。当车轮最终冷却到室温时,最大规格增加。可以看出,S形砂轮比直板砂轮和抛物线型砂轮更适合用于避免过度改变规格。尽管在不同的时间出现了轨距扩大和谴责的机车车轮故障,但对于装有直板,S形和抛物线轮廓车轮的机车,独立制动会发生这种情况。 (C)2015 Elsevier Ltd.保留所有权利。

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