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Stress Analysis Of A Multi-laminated Tractor Tyre Using Non-linear 3d Finite Element Analysis

机译:基于非线性3d有限元分析的多层拖拉机轮胎应力分析

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摘要

To analyse the off-road tyre-road contact pressure distribution as a function of inflation pressure and normal load, a non-linear multi-laminated model of a tractor tyre was developed. The modelling process is based on the 3D pressure fields obtained through the non-linear static stress analysis of a finite element (FE) tyre model, which considers the structural geometry, the anisotropic material properties of the multiple layers and the nearly incompressible property of the tread rubber block. Increased levels of tyre-road interface stress were found near the centre of the tyre-road model when inflation pressure was increased and near the edge when load was increased. The peak interface pressure results showed that the greatest ratio of peak interface pressure to inflation pressure was 2.5 and the lowest ratio was 0.21. The computed tyre-road contact lengths are qualitatively compared with the measured data to examine the validity of the model. It is concluded that the proposed model can provide reliable predictions for the three-dimensional stress field in the multi-laminated system and the contact pressure distribution throughout the tractor tyre-road interface.
机译:为了分析越野轮胎与路面的接触压力分布与充气压力和法向负荷的关系,建立了拖拉机轮胎的非线性多层模型。建模过程基于通过有限元(FE)轮胎模型的非线性静态应力分析获得的3D压力场,该3D压力场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。当充气压力增加时,在轮胎-道路模型的中心附近发现了轮胎-道路界面应力的增加,而在负荷增加时,在边缘附近发现了轮胎-道路界面应力的增加。峰值界面压力结果表明,峰值界面压力与充气压力的最大比为2.5,最低比为0.21。将计算出的轮胎-道路接触长度与测量数据进行定性比较,以检验模型的有效性。结论是,所提出的模型可以为多层系统中的三维应力场以及整个拖拉机轮胎-道路界面的接触压力分布提供可靠的预测。

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