首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Railway carriage simulation model to study the influence of vertical secondary suspension stiffness on ride comfort of railway carbody
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Railway carriage simulation model to study the influence of vertical secondary suspension stiffness on ride comfort of railway carbody

机译:研究垂直二级悬架刚度对铁路车厢乘坐舒适性影响的铁路车厢仿真模型

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A mathematical model of a railway carriage moving on tangent tracks is constructed by deriving the equations of motion concern the model in which single-point and two-point wheel-rail contacts are considered. The presented railway carriage model comprises front and rear simple conventional bogies with two leading and trailing wheelsets attached to each bogie. The railway carriage is modeled using 31 degrees of freedom which govern vertical displacement, lateral displacement, roll angle, and yaw angle dynamic response of wheelset, whereas vertical displacement, lateral displacement, roll angle, pitch angle, and yaw angle dynamic response carbody and each of the two bogies were also studied. Linear stiffness and damping parameters of longitudinal, lateral, and vertical primary and secondary suspensions are provided to the railway carriage model. Combination of linear Kalker's theory and non-linear Heuristic model is adopted to calculate the creep forces introduced at wheel and rail contact patch area. Computer-aided simulation is constructed to solve the governing differential equations of the mathematical model using Runge-Kutta fourth-order method. Principle of limit cycle and phase plane approach is applied to realize the stability and evaluate the concerning critical hunting velocity at which the railway carriage starts to hunt. The numerical simulation model is used to study the influence of vertical secondary suspension spring stiffness on the ride passenger comfort of railway carbody at speeds below and at critical hunting velocity. High magnitudes of vertical secondary spring stiffness suspension introduce undesirable roll and yaw dynamic responses in which affect ride passenger comfort at critical hunting velocity.
机译:通过推导与考虑单点和两点轮轨接触的模型有关的运动方程,可以构建在切线轨道上移动的铁路车厢的数学模型。提出的铁路运输车模型包括前后简单的常规转向架,每个转向架都带有两个前后轮组。使用31个自由度对火车车厢进行建模,该自由度控制车轮对的垂直位移,横向位移,侧倾角和偏航角动态响应,而垂直位移,横向位移,侧倾角,俯仰角和偏航角动态响应车身还研究了两个转向架中的一个。纵向,横向和垂直一级和二级悬架的线性刚度和阻尼参数被提供给铁路车厢模型。采用线性卡尔克理论和非线性启发式模型相结合的方法来计算在车轮和轨道接触面区域引入的蠕变力。构建计算机辅助仿真,以使用Runge-Kutta四阶方法求解数学模型的控制微分方程。应用极限环和相平面法的原理来实现稳定性并评估铁路车厢开始寻迹的相关临界寻迹速度。数值模拟模型用于研究垂直二级悬架弹簧刚度对车体在低于或低于临界转速时的乘坐乘客舒适度的影响。较高的垂直第二弹簧刚度悬架的高强度会带来不良的侧倾和偏航动态响应,从而影响临界追捕速度下的乘车乘客舒适度。

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