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Optimum design of tilting bogie frame in consideration of fatigue strength and weight

机译:考虑疲劳强度和重量的倾斜转向架框架的优化设计

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This paper addresses the use of finite-element (FE) analysis to calculate the fatigue strength of a bogie frame, for the development of tilting trains in Korea. A multi-body dynamic analysis was performed to extract the load condition by tilting on curves. Using the results of the multi-body dynamic analysis and the load scenario setout in the UIC standard, FE analysis was performed to obtain the stress distribution and to calculate the fatigue strength. An attempt was made to minimize the weight of the bogie frame using a back-propagation artificial neural network (ANN). The results of this study reveal that the stresses at some nodes are near the fatigue limit in the Goodman diagram and by using back-propagation ANN, the weight of the bogie frame could be reduced by 4.7%.
机译:本文介绍了有限元(FE)分析在计算转向架车架的疲劳强度方面的应用,以用于韩国的倾斜列车的发展。进行了多体动力学分析,以通过倾斜曲线来提取载荷条件。使用多体动力学分析的结果和UIC标准中列出的载荷情况,进行了有限元分析,以获得应力分布并计算疲劳强度。尝试使用反向传播人工神经网络(ANN)将转向架框架的重量降至最低。研究结果表明,在某些节​​点上的应力接近Goodman图中的疲劳极限,并且通过使用反向传播ANN,转向架框架的重量可以减少4.7%。

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