磁道(磁盘驱动器)
压舱物
振动
刚度
灵活性(工程)
行驶质量
航程(航空)
工程类
Timoshenko梁理论
频率响应
结构工程
模态分析
频域
随机振动
情态动词
梁(结构)
汽车工程
声学
计算机科学
有限元法
机械工程
物理
材料科学
数学
航空航天工程
高分子化学
计算机视觉
电气工程
统计
作者
Wenjing Sun,Jinsong Zhou,David Thompson,Dao Gong
标识
DOI:10.1080/00423114.2014.884227
摘要
A vertical vehicle–track coupled dynamic model, consisting of a high-speed train on a continuously supported rail, is established in the frequency-domain. The solution is obtained efficiently by use of the Green's function method, which can determine the vibration response over a wide range of frequency without any limitations due to modal truncation. Moreover, real track irregularity spectra can be used conveniently as input. The effect of the flexibility of both track and car body on the entire vehicle–track coupled dynamic response is investigated. A multi-body model of a vehicle with either rigid or flexible car body is defined running on three kinds of track: a rigid rail, a track stiffness model and a Timoshenko beam model. The results show that neglecting the track flexibility leads to an overestimation of both the contact force and the whole vehicle vibration response. The car body flexibility affects the ride quality of the vehicle and the coupling through the track and can be significant in certain frequency ranges. Finally, the effect of railpad and ballast stiffness on the vehicle–track coupled vibration is analysed, indicating that the stiffness of the railpad has an influence on the system in a higher frequency range than the ballast.
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