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Analysis of Non-Steady State Tire Cornering Properties Based on String-Concept Deformation and Geometric Relationship of Contact Patch

机译:基于弦概念变形和接触贴片几何关系的非稳态轮胎转弯特性分析

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Vehicle handling and stability performances are greatly determined by non-steady state (NSS) tire cornering properties. Analytical derivation of NSS tire cornering models are presented in this paper based on Pacejka's string-concept assumption, in which carcass is assumed to be a stretched string with lateral deformation and lateral relaxation. The lateral inputs of the models are either displacement-based (lateral displacement and yaw angle) or slip-based (slip angle and turn slip). The transient deformations in spatial domain in both longitudinal and lateral directions are obtained directly from geometric relationship of contact patch. The additional self-aligning moment due to longitudinal deformation of contact patch after effect of tire width is considered is also achieved according to geometric relationship of contact patch in longitudinal direction and two transient geometric conditions of contact point. The presented analytical method is significantly different from and is regarded to be much simpler than that of Pacejka's although both derived models are consistent. The model derived by Pacejka is originally based on slip velocity of contact center and sliding velocity components (longitudinal and lateral) of contact point. Non-dimensional simplification of the NSS models and frequency responses (Bode plots) at different model parameters are presented in this paper.
机译:通过非稳态(NSS)轮胎转弯性能大大确定车辆处理和稳定性性能。基于Pacejka的弦概念假设,本文提出了NSS轮胎转弯模型的分析推导,其中假设胎体是具有横向变形和横向松弛的拉伸串。模型的横向输入是基于位移的(横向位移和偏航角)或滑动角(滑动角度和转动滑动)。在纵向和横向方向上的空间域中的瞬态变形直接从接触贴片的几何关系获得。由于在纵向方向和两个瞬态几何条件的接触点的两个瞬态几何条件下,考虑了由于轮胎宽度的纵向变形而导致的接触贴片的纵向变形的额外自对准矩。呈现的分析方法与Pacejka的分析方法显着不同,尽管衍生的模型是一致的。 Pacejka的模型最初基于接触中心的滑动速度和接触点的滑动速度分量(纵向和横向)。本文介绍了不同型号参数的NSS模型和频率响应(BODE图)的非维度简化。

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