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A generally applicable 3D truck ride simulation with coupled rigid bodies and finite element models

机译:具有耦合刚体和有限元模型的通用3D卡车行驶模拟

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摘要

The aim of this paper is to present a three dimensional ride simulation for a medium weight truck equipped with two axles. The dynamics of both a rigid body and a flexible frame structure are considered in the vehicle model. The road surface irregularities are modelled as stationary Gaussian random excitations taking into account the cross correlation between the vehicle axles and tracks. The free-free modal properties of the frame structure have been calculated using the FEM (finite-element method) considering two different configurations for the vehicle frame. The results from the FE models are incorporated with the general vehicle model to study their effect on the vehicle ride behaviour. The equations of motion of the general vehicle model have been formulated applying the Lagrangian approach and the modal superposition theory. Random responses, including power spectral densities and root mean square values, are calculated and analysed. The results covered 23 response variables including driver, cab and body accelerations and the induced dynamic forces in the cab and main suspension systems and tyres. The results showed that the structure dynamics of the frame strongly affects several response variables. Moreover, it has been found that the present simulation technique is practical, powerful, and economic, and can be commercially used for the assessment of truck dynamics. Conclusions and recommendations for further work are given.
机译:本文的目的是为装有两根轴的中型卡车提供三维行驶模拟。在车辆模型中考虑了刚体和柔性框架结构的动力学。考虑到车轴和轨道之间的相互关系,将路面不规则性建模为固定的高斯随机激励。框架结构的自由-自由模态特性已使用FEM(有限元法)计算,并考虑了两种不同的车架配置。 FE模型的结果与普通车辆模型结合在一起,以研究它们对车辆行驶行为的影响。通用汽车模型的运动方程是使用拉格朗日方法和模态叠加理论制定的。计算和分析随机响应,包括功率谱密度和均方根值。结果涵盖了23个响应变量,包括驾驶员,驾驶室和车身的加速度以及驾驶室,主悬架系统和轮胎中的感应动力。结果表明,框架的结构动力学强烈影响几个响应变量。而且,已经发现,当前的仿真技术是实用,强大和经济的,并且可以在商业上用于卡车动力学的评估。给出了进一步工作的结论和建议。

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