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首页> 外文期刊>Journal of Sound and Vibration >Time domain contact model for tyre/road interaction including nonlinear contact stiffness due to small-scale roughness
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Time domain contact model for tyre/road interaction including nonlinear contact stiffness due to small-scale roughness

机译:轮胎/道路相互作用的时域接触模型,包括由于小尺度粗糙度引起的非线性接触刚度

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Rolling resistance, traction, wear, excitation of vibrations, and noise generation are all attributes to consider in optimisation of the interaction between automotive tyres and wearing courses of roads. The key to understand and describe the interaction is to include a wide range of length scales in the description of the contact geometry. This means including scales on the order of micrometres that have been neglected in previous tyre/road interaction models. A time domain contact model for the tyre/road interaction that includes interfacial details is presented. The contact geometry Is discretised into multiple elements forming pairs of matching points. The dynamic response of the tyre is calculated by convolving the contact forces with pre-calculated Green's functions. The smaller-length scales are included by using constitutive interfacial relations, i.e. by using nonlinear contact springs, for each pair of contact elements. The method is presented for normal (out-of-plane) contact and a method for assessing the stiffness of the nonlinear springs based oil detailed geometry and elastic data of the tread is suggested. The governing equations of the nonlinear contact problem are solved with the Newton-Raphson iterative scheme. Relations between force, indentation, and contact stiffness are calculated for a single tread block in contact with a road surface. The calculated results have the same character as results from measurements found in literature. Comparison to traditional contact formulations shows that the effect of the smallscale roughness is large; the contact stiffness is only up to half of the stiffness that would result if contact is made over the whole element directly to the bulk of the tread. It is concluded that the suggested contact formulation is a suitable model to include more details of the contact interface. Further, the presented result for the tread block in contact with the road is a suitable input for a global tyre/road interaction model that is also based on the presented contact formulation. (C) 2008 Elsevier Ltd. All rights reserved.
机译:滚动阻力,牵引力,磨损,振动激发和噪声产生都是在优化汽车轮胎与道路磨损路线之间的相互作用时要考虑的属性。理解和描述相互作用的关键是在接触几何形状的描述中包括各种长度标尺。这意味着包括以前轮胎/道路相互作用模型中已忽略的微米级别的尺度。提出了包含界面细节的轮胎/道路交互作用的时域接触模型。触点几何形状离散为多个元素,形成成对的匹配点。通过将接触力与预先计算的格林函数进行卷积,可以计算出轮胎的动态响应。对于每对接触元件,通过使用本构界面关系,即通过使用非线性接触弹簧,来包括较小长度的标尺。提出了用于法向(平面外)接触的方法,并提出了一种用于评估基于非线性弹簧的刚度的方法,该方法基于油的详细几何形状和胎面的弹性数据。用牛顿-拉夫森迭代法求解非线性接触问题的控制方程。对于与路面接触的单个胎面块,计算了力,压痕和接触刚度之间的关系。计算结果与文献中的测量结果具有相同的特征。与传统的接触配方的比较表明,小尺寸粗糙度的影响很大。接触刚度仅达到在整个元件直接接触胎面整体的情况下刚度的一半。结论是建议的触点配方是包括更多接触界面细节的合适模型。此外,与道路接触的胎面花纹的呈现结果是也基于呈现的接触公式的全球轮胎/道路相互作用模型的合适输入。 (C)2008 Elsevier Ltd.保留所有权利。

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