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Non-linear simulation model for articulated vehicles with controllable dampers and flexible sub-structures

机译:可控阻尼器和柔性子结构的铰接式车辆的非线性模拟模型

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In this paper, a non-linear simulation analysis for a 4 axles tractor semitrailer vehicle is addressed using a 14- degrees-of-freedom ride model that includes the structural dynamics of both tractor and semitrailer frames. The system non-linearity is arising due to the inclusion of switchable dampers in the vehicle cab suspension systems. The modal properties of the articulated vehicle frames are calculated using the FEM (finite element method) and then incorporated with the rigid parameters and motions of the different components of the vehicle system. The equations of motion are derived taking into account the interaction between both tractor and semitrailer frames. The Runge-Kutta method has been used to solve the non-linear differential equations of motion of the vehicle system in the time domain. Random signals are used to simulate the road surface irregularities and to excite the components of the vehicle system with low and high roughness levels (smooth and rough roads). The effect of controllable dampers including two-state switching systems on the ride performance are investigated and compared to a passive system. During the modelling and assessment stages, reasonable damping constrains as well as vehicle loading and velocity conditions are taken into consideration. The results showed that suspension systems equipped with controllable dampers could reduce the vibrations levels of the vehicle cab and then improve the ride quality, which affect the driver and vehicle safety, within the scope of the factors considered in this study.
机译:在本文中,使用具有14级自由度的乘坐模型来解决4轴拖拉机半拖车车辆的非线性模拟分析,该模型包括拖拉机和半拖射器框架的结构动态。由于在车辆驾驶室悬架系统中包含可切换阻尼器,因此产生的系统非线性。铰接式车辆框架的模态特性使用FEM(有限元方法)计算,然后用车辆系统的不同部件的刚性参数和运动结合。考虑到拖拉机和半拖射框架之间的相互作用,导出运动方程。 Runge-Kutta方法已被用于解决时域中车辆系统的非线性微分方程。随机信号用于模拟道路表面不规则性,并激发车辆系统的部件,具有低粗糙度水平(平滑和粗糙的道路)。研究了包括双状态切换系统对骑行性能的可控阻尼器的影响,并与被动系统进行比较。在建模和评估阶段期间,考虑合理的阻尼约束以及车辆装载和速度条件。结果表明,配备可控阻尼器的悬架系统可以降低车辆驾驶室的振动水平,然后提高影响驾驶员和车辆安全的乘积质量,在本研究中考虑的因素的范围内。

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