转向架
阻尼器
振动
控制理论(社会学)
结构工程
加速度
随机振动
机制(生物学)
扭转振动
动力传动系统
振动控制
工程类
轴
传输(电信)
动力减振器
阻尼转矩
悬挂(拓扑)
优化设计
阻尼比
隔振
计算机科学
调谐质量阻尼器
帧(网络)
直线(几何图形)
衰减
输电线路
激发
减震器
频率响应
信号(编程语言)
能量(信号处理)
计算机模拟
匹配(统计)
作者
Zhanghui Xia,Rui Zhang,Chengcheng Jiang,Dao Gong,Ziqiang Xu,Xiaoqing Dong
标识
DOI:10.1177/09544097261434619
摘要
Aiming at the vertical abnormal vibration problem of a new type of rail vehicle bogie frame, through line test and theoretical analysis, it is revealed that the root cause is the poor transmission relationship of primary suspension system. The vehicle vibration model considering the viscous constitutive of the damper is established. The virtual excitation method is used to numerically analyze the system response under the random irregularity excitation of the track, and the optimal damping value of the primary vertical damper is determined. Furthermore, the optimal damping ratio design method of generalized bogie system is proposed by analytical derivation, and the optimal damping ratio is 0.285, which is consistent with the result of random response analysis and numerical simulation results. Finally, the line test shows that the RMS value of the vertical vibration acceleration of the optimized frame is reduced by 47 %, and the vibration energy of the axle box-frame is significantly attenuated, which effectively suppresses the abnormal vibration. This study provides a theoretical basis and engineering reference for the vibration transmission optimization and damping parameter fast matching of rail vehicle bogies.
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