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Study on coupling vibration of passenger-vehicle-bridge system and influence on the ride comfort

机译:客车桥系统耦合振动及其对乘坐舒适性的影响研究

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Based on the classical spring-mass and simple supported beam model, the passenger model in the car body is established, then the passenger-vehicle-bridge coupling vibration system is formed. The differential equations of vibration in generalized coordinates system are obtained, Newmark integral method is used to solve the equations, and a corresponding program is written. Compared the difference of the vibration response time history curves of the vehicle carriage with the passenger, it is shown that vehicle's vibration acceleration cannot exactly estimate the passengers' riding comfort grade. The dynamic responses extremum change tendency with the vehicle speed is analyzed, and it is demonstrated that the speed is the main factor on the ride comfort assessment.
机译:基于经典的弹簧质量和简支梁模型,建立了车身中的乘员模型,形成了乘车桥耦合振动系统。得到了广义坐标系中振动的微分方程,采用Newmark积分法求解,并编写了相应的程序。比较了车辆与乘客的振动响应时间历程曲线的差异,可以看出车辆的振动加速度不能准确估计乘客的乘坐舒适度。分析了随着车速的动态响应极值变化趋势,并证明了速度是驾驶舒适性评估的主要因素。

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