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首页> 外文期刊>Heavy vehicle systems: A Special Series of the International Journal of Vehicle Design >Estimation of tyre-road contact pressure distribution based on nonlinear finite element analysis
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Estimation of tyre-road contact pressure distribution based on nonlinear finite element analysis

机译:基于非线性有限元分析的轮胎-路面接触压力分布估计

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摘要

A methodology to estimate the tyre-road contact pressure distribution in x-z plane as functions of inflation pressure and normal load for a truck tyre is proposed. The modelling process is based on the 3D pressure fields obtained through the nonlinear static stress analysis of a finite element (FE) tyre mode], which considers the structural geometry, the anistropic material properties of the multiple layers and the nearly-incompressible property of the tread rubber block. The 3D pressure fields are analysed to derive 2D contact pressure distribution using the equivalent work as the basis. Curve fitting techniques are applied to derive a polynomial function to describe the contact pressure distribution as function of the normal load, inflation pressure and co-ordinate along the contact patch. The polynomial function is then applied to derive an estimate of the contact patch length and contact pressure distribution corresponding to specific values of resultant tyre force and inflation pressure. The validity of the estimated contact pressure with that obtained fi-om the FE tyre model. It is concluded that the proposed polynomial is capable of predicting the 2D contact pressure distributions in the longitudinal direction when the inflation pressure and the normal load of the tyre are known. The proposed polynomial function and the methodology, which are mostly in conjunction with simplified point-contact tyre model, can thus be applied to study the distributed pavement loads due to truck tyres.
机译:提出了一种方法来估计x-z平面中的轮胎-道路接触压力分布,该压力是卡车轮胎的充气压力和法向载荷的函数。建模过程基于通过有限元(FE)轮胎模式的非线性静应力分析获得的3D压力场],其中考虑了结构几何形状,多层的各向异性材料特性以及轮胎的几乎不可压缩的特性。胎面胶块。以等效功为基础,分析3D压力场以得出2D接触压力分布。应用曲线拟合技术来推导多项式函数,以描述接触压力分布作为法向载荷,膨胀压力和沿接触面的坐标的函数。然后应用多项式函数得出与合成轮胎力和充气压力的特定值相对应的接触斑块长度和接触压力分布的估计值。从FE轮胎模型获得的估计接触压力的有效性。结论是,当已知轮胎的充气压力和法向载荷时,所提出的多项式能够预测纵向的二维接触压力分布。所提出的多项式函数和方法论(通常与简化的点接触轮胎模型结合使用)可以用于研究由于卡车轮胎而引起的分布路面载荷。

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