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Dynamic Analysis of Support System of Permanent Magnet Traction Motors for High- Speed Trains

机译:高速列车永磁牵引电动机支撑系统的动力学分析

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During the operation,the high speed train will be subject to random vibration load induced by the roughness of the rail and will cause the vibration.Traction motor is critical component of traction system for high-speed train.It is subject to not only static loads,but also random vibration load.This kind of random vibration load may easily lead to fatigue damage of the structure,which will finally cause adversely effect to the motor.Thus,in this paper,a 3-dimension model of the support system of traction motors in high-speed train applications is built,and the static and modal analyses are undertaken using finite element calculation software.The simulation results confirm that the support system is robust enough to meet the design requirements of strength and stiffness.Furthermore,it has a larger margin of safety in a typical case which meets the technical requirements for safe operation of the high-speed train.
机译:在运行过程中,高速火车会受到铁轨粗糙度引起的随机振动载荷的影响,并会引起振动。牵引电动机是高速火车牵引系统的关键部件,不仅承受静载荷。这种随机振动载荷很容易导致结构疲劳损坏,最终对电动机产生不利影响。因此,本文提出了一种牵引力支撑系统的三维模型建立了高速列车应用中的电动机,并使用有限元计算软件进行了静力和模态分析。仿真结果表明,该支撑系统足够坚固,可以满足强度和刚度的设计要求。在满足高速火车安全运行技术要求的典型情况下,具有更大的安全裕度。

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