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2D FE-DEM analysis of contact stress and tractive performance of a tire driven on dry sand

机译:在干沙上行驶的轮胎的接触应力和牵引性能的二维FE-DEM分析

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Normal and tangential stresses acting over a contact interface of a tire driven on dry sand were investigated to expand the applicability of our model incorporating 2D FE-DEM with proportional integral derivative (PID) control. A simple averaging method for contact reaction was introduced: computational segments were defined over the lower half part of the tire circumference that translates without rotation with the tire; then the contact stresses were calculated segment by segment. For the analysis, it was assumed that the tire was in rigid contact mode and that it would travel on the model sand terrain in stationary condition. The integration of normal and tangential contact stresses with respect to the angle of rotation was then applied to calculate the vertical contact load, gross tractive effort, net traction, and running resistance of the tire by parametric (or semi-empirical) analysis. The result of tractive performance obtained through the parametric analysis was found to be similar to the result of tractive performance obtained directly using FE-DEM analysis. A forward shift of the consistent angle of rotation for maximum normal contact stress and that for maximum tangential contact stress with the increase of slip from 22% was also observed in the FE-DEM result. (C) 2017 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:研究了作用在干砂上的轮胎的接触界面上的法向和切向应力,以扩大我们的模型的适用性,该模型结合了具有比例积分微分(PID)控制的2D FE-DEM。引入了一种简单的平均接触反应方法:在轮胎圆周的下半部分定义计算段,该段不随轮胎旋转而平移。然后逐段计算接触应力。为了进行分析,假设轮胎处于刚性接触模式,并且可以在固定条件下在模型沙地上行驶。然后将法向和切向接触应力相对于旋转角度的积分应用于参数化(或半经验)分析的垂直接触载荷,总牵引力,净牵引力和轮胎的行驶阻力。发现通过参数分析获得的牵引性能结果与直接使用FE-DEM分析获得的牵引性能结果相似。在FE-DEM结果中,还观察到最大法向接触应力和最大切向接触应力的一致旋转角向前移动,滑移从22%增加。 (C)2017年ISTVS。由Elsevier Ltd.出版。保留所有权利。

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