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Strength Check Analysis of Axle Box and Bolted Joints of High-Speed Motor Trains

机译:高速列车轴箱和螺栓接头的强度检查分析

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In order to simulate the matching relationship between split axle boxes and consider the influence of bolt preload on the axle box, every part of the axle box body is modeled by ANSYS. At the same time, in order to simulate the transmission of the lateral force, the false shaft and the false bearing are established to cooperate with the axle housing. The static strength and fatigue strength of the axle box and bolt couplings are analyzed under the calculated loads and operating conditions specified in the EN 13749-2005 "Railway Applications - Wheelsets and Bogies Regulations for Bogies - Frame Structure Requirements" standard. In the assessment of fatigue strength, since the fatigue curve of steel used in China's railways is not currently available, the Goodman-smith steel fatigue limit diagram provided by ORE B12/RP17 (82) is temporarily replaced with the three-direction stress state into a one-way stress state, in order to calculate the average stress and stress amplitude of the stress cycle. It can be seen from the calculation that the static strength and fatigue strength of the high-speed EMU axle box and bolt coupling meet the design requirements under the load specified in EN13749.
机译:为了模拟分离式轴箱之间的匹配关系并考虑螺栓预紧力对轴箱的影响,使用ANSYS对轴箱主体的每个部分进行建模。同时,为了模拟横向力的传递,建立了假轴和假轴承以与轴箱配合。在EN 13749-2005“铁路应用-转向架的轮对和转向架规定-框架结构要求”标准中指定的计算载荷和运行条件下,分析了轴箱和螺栓联轴器的静态强度和疲劳强度。在疲劳强度评估中,由于目前尚无中国铁路使用的钢的疲劳曲线,因此将ORE B12 / RP17(82)提供的Goodman-smith钢疲劳极限图暂时替换为三向应力状态。单向应力状态,以便计算应力循环的平均应力和应力振幅。从计算结果可以看出,高速动车组轴箱和螺栓联接的静强度和疲劳强度在EN13749规定的载荷下均满足设计要求。

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