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A new tyre-soil interaction model for vehicle simulation on deformable ground

机译:用于可变形地面上车辆模拟的新轮胎-土壤相互作用模型

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In cooperation with the Ford Research Center Aachen the new tyre-soil interaction model AS~2TM for MATLAB/Simulink was developed by Automotive Engineering, Software and Consulting (AESCO). The model is based on the principles introduced by Bekker [Bekker, M.G., 1956, Theory of Land Locomotion: The Mechanics of Vehicle Mobility (Ann Arbor, Michigan: University of Michigan Press); Bekker, M.G., 1960, Off the Road Locomotion (Ann Arbor, Michigan: University of Michigan Press); Bekker, M.G., 1960, Introduction to Terrain-Vehicle Systems (Ann Arbor, Michigan: University of Michigan Press).] and by Janosi and Hanamoto [Janosi, Z. and Hanamoto, B., 1961, Analytical determination of draw bar pull as a function of slip for tracked vehicles in deformable soils. Proceedings of the 1st International Conference of the International Society for Terrain-Vehicles Systems, Turin, Italy.] and takes advantage of more than a decade of research work in the field of terra-mechanics at the former Institut fuer Kraftfahrwesen und Kolbenmaschinen of the University of the Federal Armed Forces Hamburg under the charge of Professor I.C. Schmid. In this paper, firstly, the theoretical approach of AS~2TM is discussed and the implementation of significant soft soil-elastic tyre interaction effects described and, secondly, the stand-alone model has been investigated and validated for steady-state conditions by using a virtual tyre test environment. Furthermore AS~2TM is implemented as an S function into veDYNA applying the TYDEX standard tyre interface. The vehicle dynamic behaviour on deformable ground in a full vehicle simulation is highlighted and a comparison of the predicted vehicle performances on various terrains is presented.
机译:与福特汽车研究中心亚琛合作,由汽车工程,软件和咨询公司(AESCO)开发了用于MATLAB / Simulink的新型轮胎-土壤相互作用模型AS〜2TM。该模型基于Bekker提出的原理[Bekker,M.G.,1956年,《土地运动理论:车辆机动性》(密歇根州安阿伯市:密歇根大学出版社);贝克尔,医学硕士,1960年,《越野运动》(密歇根州安阿伯市:密歇根大学出版社); MG,贝克勒,1960年,《地形车辆系统介绍》(密歇根州安阿伯市:密歇根大学出版社)。以及Janosi和Hanamoto撰写[Janosi,Z。和Hanamoto,B.,1961年,拉杆拉力的分析测定为履带车辆在可变形土壤中的滑移功能。 [国际地形车辆系统协会第一次会议国际会议论文集,意大利都灵。],并利用了大学前原德国工业大学和Kolbenmaschinen研究所在机械力学领域十多年的研究成果由IC教授负责的汉堡联邦武装部队施密德。在本文中,首先讨论了AS〜2TM的理论方法,并描述了重要的软土-弹性轮胎相互作用效应的实现,其次,对独立模型进行了研究并通过稳态模型验证了稳态条件。虚拟轮胎测试环境。此外,使用TYDEX标准轮胎接口,将AS〜2TM作为S函数实现到veDYNA中。突出显示了在完整的车辆模拟中可变形地面上的车辆动态行为,并给出了在各种地形上预测的车辆性能的比较。

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