Analysis of Tire Tractive Performance on Deformable Terrain by Finite Element-Discrete Element Method

H. Nakashima, Yuzuru Takatsu
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引用次数: 31

Abstract

The goal of this study is to develop a practical and fast simulation tool for soil-tire interaction analysis, where finite element method (FEM) and discrete element method (DEM) are coupled together, and which can be realized on a desktop PC. We have extended our formerly proposed dynamic FE-DE method (FE-DEM) to include practical soil-tire system interaction, where not only the vertical sinkage of a tire, but also the travel of a driven tire was considered. Numerical simulation by FE-DEM is stable, and the relationships between variables, such as load-sinkage and sinkage-travel distance, and the gross tractive effort and running resistance characteristics, are obtained. Moreover, the simulation result is accurate enough to predict the maximum drawbar pull for a given tire, once the appropriate parameter values are provided. Therefore, the developed FE-DEM program can be applied with sufficient accuracy to interaction problems in soil-tire systems.
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变形地形上轮胎牵引性能的有限元-离散元分析
本研究的目标是开发一种实用、快速的土-轮胎相互作用分析仿真工具,将有限元法(FEM)和离散元法(DEM)耦合在一起,并可在桌面PC上实现。我们扩展了以前提出的动态FE-DE方法(FE-DEM),以包括实际的土-轮胎系统相互作用,其中不仅考虑了轮胎的垂直下沉,而且考虑了驱动轮胎的行程。FE-DEM数值模拟结果稳定,得到了载荷沉降、沉降行程等变量与总牵引力和运行阻力特性之间的关系。此外,一旦提供适当的参数值,仿真结果足够准确,可以预测给定轮胎的最大拉杆拉力。因此,所开发的有限元dem程序能够以足够的精度应用于土-轮胎系统的相互作用问题。
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