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Dynamic friction characterization of tripod constant velocity (CV) joints: Experiments, analysis and modeling.

机译:三脚架恒速(CV)接头的动摩擦特性:实验,分析和建模。

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摘要

Constant Velocity (CV) joints have been favored for automotive applications primarily due to their superiority of constant velocity torque transfer and plunging capability, compared to universal joints. High speed and sport utility vehicles with large joint articulation angles, demand lower plunging friction inside their CV joints to meet noise and vibration requirements, thus requiring more in depth understanding of their internal friction characteristics.;The main goal of this thesis is to develop a physics-based internal friction model of tripod CV joints that can be readily applied during new vehicle development. This model will replace current practices of using empirical fixed friction coefficient values. In order to achieve this goal, a prototype well-instrumented CV joint friction apparatus was designed, built and successfully used to measure the internal friction behavior of actual CV joints. The apparatus is capable of measuring a key performance parameter of friction under different realistic vehicle operating conditions of stroke speeds, CV joint articulation angles and torque variations. The validity of the experimental measurements was confirmed through FE analysis. Also, the validity of Hertzian contact analysis in a CV joint was assessed using the FE method, and found that the Hertzian solutions are practically applicable under low contacting load. These contact results were incorporated in the friction model. Subsequently the friction behavior in CV joints in terms of sliding and rolling friction was investigated by measuring the slip to roll ratio, pure sliding friction coefficient, and also by comparing these results with an elastic-plastic static friction, and rolling friction models. These measurement results and essential friction parameters were subsequently incorporated in the proposed CV joint total friction model, which includes both static and dynamic friction terms. Using the physics-based dynamic friction model, we also developed a model for the Generated-Axial-Force (GAF), which is a practical design variable as is the undesirable force that is seen at a vehicles wheel shaft. The validity of the proposed GAF model was then shown through direct comparison to actual experimental measurements. Finally, using the proposed friction and GAF models, design guidelines in terms of CV joint friction performance were suggested.
机译:等速万向节(CV)接头在汽车应用中受到青睐,主要是因为与万向节相比,其等速转矩传递和插入能力优越。关节铰接角度大的高速运动型多用途车,要求其CV关节内的插入摩擦​​较低,以满足噪声和振动的要求,因此需要更深入地了解其内部摩擦特性。基于物理学的三脚架CV接头内部摩擦模型,可以在新车开发过程中轻松应用。该模型将替代使用经验性固定摩擦系数值的当前做法。为了实现这一目标,设计,建造了原型良好的CV接头摩擦装置,并成功地用于测量实际CV接头的内部摩擦性能。该设备能够在冲程,CV关节铰接角度和扭矩变化的不同实际车辆工况下测量关键的摩擦性能参数。通过有限元分析证实了实验测量的有效性。此外,使用有限元方法评估了CV接头中赫兹接触分析的有效性,发现赫兹解决方案在低接触载荷下实际上是适用的。这些接触结果被纳入摩擦模型。随后,通过测量滑移比,纯滑动摩擦系数,并将这些结果与弹塑性静摩擦和滚动摩擦模型进行比较,研究了CV接头在滑动和滚动摩擦方面的摩擦行为。随后将这些测量结果和基本摩擦参数合并到建议的CV接头总摩擦模型中,该模型包括静态和动态摩擦项。使用基于物理学的动态摩擦模型,我们还开发了“生成轴向力”(GAF)模型,该模型是一个实用的设计变量,在车轮轴上会看到不希望的力。然后通过与实际实验测量值直接比较来证明所提出的GAF模型的有效性。最后,使用建议的摩擦和GAF模型,就CV接头摩擦性能提出了设计指南。

著录项

  • 作者

    Lee, Chul Hee.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Mechanical engineering.;Automotive engineering.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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