首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >An experimental study for effect factors of the roller tappet induced impact noise in high-pressure fuel system of GDi engine
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An experimental study for effect factors of the roller tappet induced impact noise in high-pressure fuel system of GDi engine

机译:GDI发动机高压燃料系统辊挺杆诱导冲击噪声影响因素的实验研究

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摘要

With the wide application of gasoline direct injection system, its noise problem is becoming increasingly prominent under serious competitive environment. As the primary noise source of the engine in idle condition, the significant noise generated by the low-to-high pressure transmission part of high-pressure fuel pump becomes more and more serious. This paper focuses on the driving component of high-pressure fuel pump, the roller tappet, and experimentally studies effect factors of impact noise induced by it at engine idle. Both the impact occurrence time and position are analyzed from the combined vibration acceleration and crankshaft/camshaft rotation angle signals in the time domain according to the structure and kinematic mechanism of the roller tappet. The influences of the axial clearance between roller and tappet shell, the engine rotation speed and the lubrication conditions are investigated by experiments. The experimental results show that the lubrication is the primary factor for the roller tappet induced impact noise reduction. A significant improvement about 83% can be achieved under pressure lubrication.
机译:随着汽油直接注射系统的广泛应用,其噪音问题在严重的竞争环境下变得越来越突出。作为怠速状态下发动机的主要噪声源,高压燃料泵的低压传递部分产生的显着噪声变得越来越严重。本文侧重于高压燃料泵,滚筒挺杆和实验研究其在发动机怠速引起的冲击噪声的影响因素的驱动元件。根据辊挺杆的结构和运动机构,从时域中的组合振动加速度和曲轴/凸轮轴旋转角度分析冲击发生时间和位置。实验研究了滚子和挺杆壳之间的轴向间隙,发动机转速和润滑条件的影响。实验结果表明,润滑是滚子挺杆诱导的冲击降噪的主要因素。在压力润滑下可以实现约83%的显着改善。

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