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The Vibration Response Analysis about High-Speed Train's Braking Wing

机译:高速列车制动翼的振动响应分析

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With the rapid development of high-speed railway in China, the aerodynamic brake is very likely to be an important emergency braking mode of high-speed train in the future. This paper takes aerodynamic braking wing as the object, and uses the finite element software to divide the meshes, then analyses the model influenced by static stress. After simulating the vibratory frequency response of the model in the flow field, it finds that the largest deformation happens in the middle of the upper edge of the wind wing, when the wind speed gets to 500km/h and the load frequency to 4Hz. Some conclusions of this thesis can provide reference for researching the applying the aerodynamic brake in the high-speed trains and laying the foundation for solving the riding and braking safety problems.
机译:随着中国高速铁路的快速发展,空气动力学制动器将来很可能是未来高速列车的重要紧急制动模式。 本文采用空气动力学制动翼作为对象,并使用有限元软件划分网格,然后分析受静态应力影响的模型。 在模拟流场中模型的振动频率响应之后,当风速达到500km / h时,当风速达到4Hz时,它发现最大的变形在风翼的上边缘的中间。 本文的一些结论可以为研究高速列车应用空气动力学制动并奠定解决骑行和制动安全问题的基础提供参考。

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