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Ride Comfort Analysis of Math Ride Dynamics Model of Full Tracked Vehicle with Trailing Arm Suspension

机译:拖曳臂悬架的全追踪车辆数学骑行动力学模型的舒适分析

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A detailed ride mathematical model of a full tracked vehicle, consisting of 17 dof, with trailing arm hydro-gas suspensions, is developed. The non-linear coupled governing differential equations of motion are derived for the sprung mass and fourteen unsprung masses, incorporating actual trailing arm kinematics and inertia coupling effects. The non-linear equations are solved using Matlab and validated using a multi-body dynamic model developed in MSC.Adams. Parametric studies and ride analyses have been carried out with different suspension characteristics, over random terrain. This full tracked vehicle mathematical vibration model is generic, computationally efficient and a useful tool for suspension design of tracked vehicles.
机译:开发了由17个DOF组成的完整车辆的详细乘坐数学模型,具有尾随扶手悬浮液。 导出用于簧盖质量和十四个Unsrung群众的运动的非线性耦合的控制差动方程,包括实际的尾随动力学和惯性耦合效果。 使用MATLAB解决非线性方程,并使用MSC.ADAMS中开发的多体动态模型进行验证。 参数研究和骑行分析已经进行了不同的悬浮特性,随机地形。 这种完整的跟踪车辆数学振动模型是通用的,计算上高效,以及跟踪车辆悬架设计的有用工具。

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