首页> 外文期刊>International Journal of Automotive Technology >MEASUREMENT AND CHARACTERIZATION OF FRICTION IN AUTOMOTIVE DRIVESHAFT JOINTS
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MEASUREMENT AND CHARACTERIZATION OF FRICTION IN AUTOMOTIVE DRIVESHAFT JOINTS

机译:汽车传动轴接头中摩擦的测量和表征

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摘要

The typical design of automotive driveshafts generally utilizes Constant Velocity (CV) joints as a solution to NVH. CV joints are an integral part of vehicles and significantly affect steering, suspension, and vehicle vibration comfort levels. Thus, CV joints have been favored over universal joints due to the constant velocity torque transfer and plunging capability. Although CV joints are common in vehicle applications, current research works on modeling CV joint friction and assumes constant empirical friction coefficient values. However, such models are long known to be inaccurate, especially under dynamic conditions, which is the case for CV joints. In this paper, an instrumented advanced CV joint friction apparatus was developed to measure the internal friction behavior of CV joints using actual tripod-type joint assemblies. The setup is capable of measuring key performance of friction under different realistic operating conditions of oscillatory speeds, torque and joint installation angles. The apparatus incorporates a custom-installed tri-axial force sensor inside of the joint to measure the internal CV joint forces (including friction). Using the designed test setup, the intrinsic interfacial parameters of CV joints were investigated in order to understand their contact and friction mechanisms. The results provide a better understanding of CV joint friction characteristics in developing improved automotive driveshafts.
机译:汽车传动轴的典型设计通常利用恒速(CV)接头作为NVH的解决方案。等速万向节是车辆必不可少的部分,会显着影响转向,悬架和车辆振动的舒适度。因此,由于恒速扭矩传递和插入能力,CV接头优于万向接头。尽管等速万向节在车辆应用中很常见,但当前的研究工作是对等速万向节的摩擦建模,并假定经验摩擦系数值恒定。但是,众所周知,这种模型是不准确的,特别是在动态条件下,对于CV接头就是这种情况。在本文中,开发了一种使用仪器的先进的CV接头摩擦装置,以使用实际的三脚架型接头组件测量CV接头的内部摩擦性能。该设置能够在摆动速度,扭矩和关节安装角度的不同实际操作条件下测量关键摩擦性能。该设备在关节内部装有定制安装的三轴力传感器,用于测量内部CV关节力(包括摩擦力)。使用设计的测试设置,研究了CV接头的固有界面参数,以了解其接触和摩擦机理。结果为开发改进的汽车传动轴提供了对CV接头摩擦特性的更好理解。

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