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首页> 外文期刊>Journal of terramechanics >Finite element modeling of tire/terrain interaction: Application to predicting soil compaction and tire mobility
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Finite element modeling of tire/terrain interaction: Application to predicting soil compaction and tire mobility

机译:轮胎/地形相互作用的有限元建模:在预测土壤压实度和轮胎流动性中的应用

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摘要

Tire/terrain interaction has been an important research topic in terramechanics. For off-road vehicle design, good tire mobility and little compaction on terrain are always strongly desired. These two issues were always investigated based on empirical approaches or testing methods. Finite element modeling of tire/terrain interaction seems a good approach, but the capability of the finite element has not well demonstrated. In this paper, the fundamental formulations on modeling soil compaction and tire mobility issues are further introduced. The Drucker-Prager/Cap model implemented in ABAQUS is used to model the soil compaction. A user subroutine for finite strain hyperelasticity model is developed to model nearly incompressible rubber material for tire. In order to predict transient spatial density, large deformation finite element formulation is used to capture the configuration change, which combines with soil elastoplastic model to calculate the transient spatial density due to tire compaction on terrain. Representative simulations are provided to demonstrate how the tire/terrain interaction model can be used to predict soil compaction and tire mobility in the field of terramechanics. © 2010 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:轮胎/地形相互作用一直是地力学中的重要研究课题。对于越野车辆设计,始终强烈希望轮胎具有良好的机动性并且在地形上的压实度很小。始终根据经验方法或测试方法对这两个问题进行调查。轮胎/地形相互作用的有限元建模似乎是一种很好的方法,但有限元的功能尚未得到很好的证明。在本文中,进一步介绍了对土壤压实度和轮胎流动性模型进行建模的基本公式。在ABAQUS中实施的Drucker-Prager / Cap模型用于对土壤压实进行建模。开发了用于有限应变超弹性模型的用户子例程,以对轮胎的几乎不可压缩的橡胶材料进行建模。为了预测瞬态空间密度,采用大变形有限元公式描述结构变化,并结合土壤弹塑性模型计算轮胎压实引起的瞬态空间密度。提供了代表性的仿真来演示如何在轮胎力学领域中使用轮胎/地形相互作用模型来预测土壤压实度和轮胎流动性。 ©2010 ISTVS。由Elsevier Ltd.出版。保留所有权利。

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