首页> 外文期刊>International Journal of Automotive Technology >EXPERIMENTAL INVESTIGATION OF THE VALVETRAIN FRICTION IN ACTUAL ENGINE OPERATION CONDITIONS
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EXPERIMENTAL INVESTIGATION OF THE VALVETRAIN FRICTION IN ACTUAL ENGINE OPERATION CONDITIONS

机译:实际发动机工况下阀门摩擦的实验研究

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摘要

Recently, the demands for improved fuel economy have been continually rising because of environmental protection policies, legislative pressures on emissions and increases in the price of oil. Reducing the friction power loss in a production engine may be regarded as one of the most effective technologies for improving fuel economy because the technology is cost effective and applicable to a great number of vehicles. This paper describes attempts to measure the torque needed to drive a camshaft and to examine the sources of the torque fluctuations in order to analyze the friction in valvetrains. The measurements were performed through a cam sprocket-type torquemeter, which was able to measure the torque of the valvetrain under actual engine operating conditions. In the cam torque measured, the fluctuations were mainly dependent on the primary oscillations caused by cam events and the secondary oscillations caused by the valvetrain natural frequency. The range of the fluctuations became greater at high speed because of the inertial mass. The resulting FMEP (friction mean effective pressure) of the valvetrain decreased, and the effective peak tension increased with an increase in the engine speed.
机译:最近,由于环境保护政策,排放立法压力和油价上涨,对提高燃油经济性的要求一直在不断上升。降低生产引擎中的摩擦功率损失可以被认为是用于改善燃料经济性的最有效技术之一,因为该技术具有成本效益并且可应用于大量车辆。本文介绍了尝试测量驱动凸轮轴所需的扭矩并检查扭矩波动的来源以分析气门机构摩擦的尝试。通过凸轮链轮式扭矩计进行测量,该扭矩计能够在实际发动机工况下测量气门机构的扭矩。在测量的凸轮转矩中,波动主要取决于由凸轮事件引起的一次振荡和由气门传动系统固有频率引起的二次振荡。由于惯性质量,波动范围在高速下变得更大。随着发动机转速的增加,所得的气门机构的FMEP(摩擦平均有效压力)减小,有效峰值张力增大。

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