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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental and theoretical studies on the pressure fluctuation of an internal gear pump with a high pressure
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Experimental and theoretical studies on the pressure fluctuation of an internal gear pump with a high pressure

机译:高压内齿轮泵压力波动的实验与理论研究

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In this paper, the flow ripple equation is derived to analyze the effect of working condition on pressure pulsations of an internal gear pump. Results indicate that working pressure has a significant effect on pressure fluctuation of the internal gear pump, while the rotating speed has a complex influence on the pressure pulsation behavior. Then, pressure pulsations of the internal gear pump under different working conditions are discussed by experimental investigations. Results show that the internal gear pump taken for analysis has a low-pressure pulsation at a high working pressure and a relatively high rotational speed. Regarding the frequency spectrum of the pressure pulsation, the dominant frequency is Z*f(n), i.e. the product of the tooth number of the driving gear (gear shaft) and its rotational frequency for many working conditions, caused by the inevitable unsteady discharge process of gear pumps. It transforms to the rotational frequency of the gear shaft (f(n)) for a high rotational speed or a high operating pressure, but to the rotating frequency of the internal gear ring (2/3 f(n)) only for a high operating pressure. The occurrence of the two frequencies (2/3 f(n) and f(n)) may result from the deformation of the gear ring and the gear shaft under the unbalanced radial forces caused by a high working pressure. Moreover, the frequency spectrum of the inlet pressure pulsation presents some differences from that of the outlet pressure pulsation. This is because the inlet pressure may be influenced by cavity generated at the suction side of the pump.
机译:本文衍生流动纹波方程以分析工作条件对内部齿轮泵的压力脉动的影响。结果表明,工作压力对内齿轮泵的压力波动具有显着影响,而旋转速度对压力脉动行为具有复杂的影响。然后,通过实验研究讨论了在不同工作条件下的内齿轮泵的压力脉动。结果表明,用于分析所采用的内齿轮泵具有高压脉动,高工作压力和相对高的旋转速度。关于压力脉动的频谱,主频率是Z * F(n),即驱动齿轮(齿轮轴)的齿数的乘积及其旋转频率,对于许多工作条件,由不可避免的不稳定放电引起齿轮泵的过程。它变换到齿轮轴(F(n))的旋转频率,用于高旋转速度或高工作压力,而是仅适用于高齿轮环的旋转频率(2/3 f(n))运营压力。两个频率(2/3 f(n)和f(n))的发生可能是由于齿轮环和齿轮轴的变形而在由高工作压力引起的不平衡径向力下的变形。此外,入口压力脉动的频谱与出口压力脉动的频谱具有一些差异。这是因为入口压力可能受到在泵的吸入侧产生的腔体的影响。

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