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A Model for Combined Tire Cornering and Braking Forces with Anisotropic Tread and Carcass Stiffness

机译:具有各向异性胎面和胎体刚度的轮胎转弯和制动力的模型

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The objective of this paper is to enhance the accuracy of tire model combined tire cornering and braking forces with anisotropic tread and carcass stiffness. The difference of tire longitudinal slip stiffness and cornering stiffness will arouse that the direction of tire resultant shear stress in adhesion region is not the same as that in sliding region. Then the direction of total friction force in the whole tire-road contact patch will change under different combined cornering/braking situations. Generally speaking, there is a basic premise: "the direction of resultant shear stress in sliding region will be the same as that in adhesion region" in the existing tire models, in which the anisotropy of tread and carcass stiffness is neglected. Therefore, these models don't work well when the tire tread and carcass stiffness has a strong anisotropy. The direction of tire shear stress in the adhesion and the sliding region of the contact patch is discussed in this paper and a modification factor is proposed basing on the UniTire semi-physical model to modify the direction of resultant shear stress, which can describe the variation tendency of the total friction force direction in the tire-road contact patch with different combination of cornering and braking conditions. Finally, the UniTire semi-physical tire model contained modification factor is validated by the experimental data, which indicates the accuracy of combined tire forces has been enhanced significantly.
机译:本文的目的是提高轮胎模型组合轮胎转弯和制动力的准确性,具有各向异性胎面和胎体刚度。轮胎纵向滑动刚度和转弯刚度的差异将引起粘附区域中的轮胎所得剪切应力的方向与滑动区域的方向不同。然后,整个轮胎道路接触贴片中总摩擦力的方向将在不同的组合转弯/制动情况下改变。一般而言,存在一个基本前提:“滑动区域中所得到的剪切应力的方向将与现有轮胎模型中的粘附区域中的方向相同,其中忽略了胎面和胎体刚度的各向异性。因此,当轮胎胎面和胎体刚度具有强大的各向异性时,这些模型效果不佳。在本文中讨论了粘附性和接触贴片的滑动区域的轮胎剪切应力方向,并提出了在集合体半物理模型上基于集合的半物理模型来改变所得剪切应力的方向,这可以描述该变化的方向轮胎道路接触贴片中总摩擦力方向的倾向,具有不同的转弯和制动条件的组合。最后,通过实验数据验证了集合半物理轮胎模型的修改因子,该实验数据表明了组合的轮胎力的准确性显着提高。

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