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A phenomenological friction model of tripod constant velocity (CV) joints

机译:三脚架恒速(CV)接头的现象学摩擦模型

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摘要

Constant velocity (CV) joints have been favored for automotive applications, compared to universal joints, due to their superiority of constant velocity torque transfer and plunging capability. 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 a more thorough understanding of their internal friction characteristics. In this paper, a phenomenological CV joint friction model was developed to model the friction behavior of tripod CV joints by using an instrumented CV joint friction apparatus with tripod-type joint assemblies. Experiments were conduced under different operating conditions of oscillatory speeds, CV joint articulation angles, lubrication, and torque. The experimental data and physical parameters were used to develop a physics-based phenomenological CV joint dynamic friction model. It was found that the proposed friction model captures the experimental data well, and the model was used to predict the external generated axial force, which is the main source of force that causes vehicle vibration problems.
机译:与万向节相比,恒速(CV)接头在汽车应用中受到青睐,因为它们具有等速转矩传递和插入能力强的优点。具有大关节铰接角的高速和运动型多功能车要求其CV关节内部的插入摩擦​​更低,以满足噪声和振动的要求,因此需要更全面地了解其内部摩擦特性。本文建立了一种现象学的CV接头摩擦模型,通过使用带有三脚架型接头组件的仪器化的CV接头摩擦装置来对三脚架CV接头的摩擦行为进行建模。在不同的振荡速度,等速万向节铰接角度,润滑和扭矩的工作条件下进行了实验。实验数据和物理参数被用来建立基于物理学的现象学的CV关节动态摩擦模型。结果发现,提出的摩擦模型很好地捕获了实验数据,并且该模型用于预测外部产生的轴向力,这是导致车辆振动问题的主要力源。

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