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Importance of tread inertia and damping on the tyre/road contact stiffness

机译:胎面惯性和阻尼对轮胎/道路接触刚度的重要性

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Predicting tyre/road interaction processes like roughness excitation, stick-slip, stick-snap, wear and traction requires detailed information about the road surface, the tyre dynamics and the local deformation of the tread at the interface. Aspects of inertia and damping when the tread is locally deformed are often neglected in many existing tyre/road interaction models. The objective of this paper is to study how the dynamic features of the tread affect contact forces and contact stiffness during local deformation. This is done by simulating the detailed contact between an elastic layer and a rough road surface using a previously developed numerical time domain contact model. Road roughness on length scales smaller than the discretisation scale is included by the addition of nonlinear contact springs between each pair of contact elements. The dynamic case, with an elastic layer impulse response extending in time, is compared with the case where the corresponding quasi-static response is used. Results highlight the difficulty of estimating a constant contact stiffness as it increases during the indentation process between the elastic layer and the rough road surface. The stiffness-indentation relation additionally depends on how rapidly the contact develops; a faster process gives a stiffer contact. Material properties like loss factor and density also alter the contact development. This work implies that dynamic properties of the local tread deformation may be of importance when simulating contact details during normal tyre/road interaction conditions. There are however indications that the significant effect of damping could approximately be included as an increased stiffness in a quasi-static tread model.
机译:预测轮胎/道路相互作用过程(例如,粗糙度激励,粘滑,粘扣,磨损和牵引)需要有关路面,轮胎动力学以及胎面在界面处的局部变形的详细信息。在许多现有的轮胎/道路相互作用模型中,胎面局部变形时的惯性和阻尼方面常常被忽略。本文的目的是研究胎面的动态特征如何在局部变形过程中影响接触力和接触刚度。这是通过使用先前开发的数值时域接触模型模拟弹性层和粗糙路面之间的详细接触来完成的。通过在每对接触元件之间添加非线性接触弹簧,可以使道路粗糙度小于离散化尺度。将具有随时间变化的弹性层脉冲响应的动态情况与使用相应的准静态响应的情况进行比较。结果凸显了估算恒定接触刚度的难度,因为在弹性层和粗糙路面之间的压痕过程中,接触刚度会增加。刚度-压痕关系还取决于接触的发展速度。更快的过程使接触更牢固。诸如损耗因子和密度之类的材料特性也会改变接触的发展。这项工作表明,在正常轮胎/道路相互作用条件下模拟接触细节时,局部胎面变形的动力学特性可能很重要。但是,有迹象表明,在准静态胎面模型中,阻尼的显着影响可以被视为刚度的增加。

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