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The effects of tyre material and structure properties on relaxation length using finite element method

机译:轮胎材料和结构性能对松弛长度的有限元分析

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This study investigates the influence of tyre structural layup and material properties on the relaxation length of a rolling tyre using finite element analysis. Relaxation length for rolling tyre under different operating conditions has been studied recently. However, the effects of tyre structural layup and material properties on relaxation length were ignored. In this present work, a finite element (FE) tyre model was built based on the material and geometry properties obtained from measurements of the tyre provided by a vehicle company. Rather than the common method (steady state rolling analysis) used for cornering behaviour simulations, ABAQUS/Explicit program was used for prediction of the cornering performance and relaxation length for a constant slip angle of the rolling tyre. Two different steer inputs were applied to the rolling tyre in terms of slip angle variation, namely step input and ramp input. The effects of various factors, including cross-section area, spacing, crown angle and strength of the tyre reinforcement cords, on relaxation length of the rolling tyre were investigated by numerical experiments using the design of experiment (DOE) method. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究使用有限元分析研究了轮胎结构铺层和材料性能对滚动轮胎的松弛长度的影响。最近已经研究了在不同操作条件下滚动轮胎的松弛长度。然而,轮胎结构铺层和材料性能对松弛长度的影响被忽略了。在本工作中,基于从汽车公司提供的轮胎测量中获得的材料和几何特性,建立了有限元(FE)轮胎模型。 ABAQUS / Explicit程序不是用于转弯行为模拟的常用方法(稳态滚动分析),而是用于预测恒定滚动角轮胎的转弯性能和松弛长度。根据滑移角的变化,将两个不同的转向输入应用于滚动轮胎,即步进输入和坡道输入。通过实验设计(DOE)方法,通过数值实验研究了横截面面积,间距,胎冠角度和轮胎增强帘线强度等各种因素对滚动轮胎松弛长度的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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