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Influence of Rim Thickness on Crack Initiation Life of Wheel Web Plate for Freight Car

机译:轮辋厚度对货车车轮腹板裂纹萌生寿命的影响

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The temperature and stress distribution in freight car wheel are very important to the operation life. According to the data of investigation,the relationship among the wheel service life,crack rate on web hole and rim thickness is analyzed. The loads,boundary conditions and loading processes in the finite element analysis of temperature,stress field and wheel-railway mechanical stress are discussed according to the heat transfer theory,tread braking principle of wheel and UIC standard. Based on the wheel operation conditions,the influence of different rim thickness on grade braking thermal stress and wheel-railway mechanical stress is simulated with finite element method. The prediction model of crack initiation life for the wheel web hole,which has been taken into consideration for rim thickness,is established. The results show that the high stress at the web hole edge appears under grade braking load cases combined with mechanical load cases. The stress at wheel web hole edge will be increased as the rim thickness reduces,and the increase of thermal stress is much more obvious. Mechanical stress combined with thermal stress is absolutely necessary for crack initiation on wheel web hole. With the service time increases,the rim thickness will be reduced gradually,and the fatigue damage on web hole will be accelerated. The crack initiation life prediction is close to the practical situation.
机译:货车车轮中的温度和应力分布对于使用寿命至关重要。根据调查数据,分析了车轮使用寿命,腹板开裂率与轮辋厚度之间的关系。根据传热理论,车轮胎面制动原理和UIC标准,对温度,应力场和轮轨机械应力的有限元分析中的载荷,边界条件和载荷过程进行了讨论。根据车轮运行条件,采用有限元方法模拟了不同轮辋厚度对坡度制动热应力和轮轨机械应力的影响。建立了考虑轮辋厚度的轮辐孔裂纹萌生寿命预测模型。结果表明,在坡度制动载荷工况和机械载荷工况下,腹板孔边缘处会出现高应力。随着轮辋厚度的减小,轮辐孔边缘处的应力将增加,而热应力的增加更为明显。机械应力和热应力是车轮腹板孔上产生裂纹的绝对必要条件。随着使用时间的增加,轮辋的厚度将逐渐减小,并加速对腹板孔的疲劳损伤。裂纹萌生寿命的预测接近实际情况。

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