首页> 外文会议>ASME international mechanical engineering congress and exposition >AXIAL BALANCE OF EXTERNAL GEAR PUMPS AND MOTORS: MODELLING AND DISCUSSING THE INFLUENCE OF ELASTOHYDRODYNAMIC LUBRICATION IN THE AXIAL GAP
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AXIAL BALANCE OF EXTERNAL GEAR PUMPS AND MOTORS: MODELLING AND DISCUSSING THE INFLUENCE OF ELASTOHYDRODYNAMIC LUBRICATION IN THE AXIAL GAP

机译:外部齿轮泵和电机的轴向平衡:弹性液动力润滑在轴向间隙中的建模与讨论

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This paper focuses on the analysis of hydraulically balanced external gear pumps, in particular on the lubricating gap between the bushes and the gears. This topic is of key importance for the optimization of the machine efficiency because it both influences the mechanical-viscous friction and the volumetric losses. In this paper the intent is to investigate the role of the elastic deformation of the bushes surfaces, to compare the analysis done with rigid and elastic surfaces and finally to correlate the results with the design of the bushes balancing surfaces. A numerical procedure for the determination of the pressure distribution inside the gap bounded by gears sides and the bushes internal surfaces is presented and applied. With respect to past works of the authors, the procedure has been integrated taking into account the elastic deformation of the internal surfaces of the bushes and the variation of the dynamic viscosity of fluid, two well recognized phenomena that can play a key role on the determination of the bushes behaviour and lubricating gap pressure distribution. It is shown that, when the design of the bushes rear surfaces determines a strong balancing thrust, the bushes themselves need to tilt strongly with respect to the gears to generate an opportune widening thrust to avoiding contact with the gears. Useful suggestions for the bushes balancing surface design may be drawn from the analysis of the balancing maps reported in the paper, which illustrate the widening thrust magnitude and position in both the pure hydrodynamic and elasto-hydrodynamic cases, for different tilted positions and operating conditions.
机译:本文着重分析液压平衡外齿轮泵,特别是衬套和齿轮之间的润滑间隙。该主题对于优化机器效率至关重要,因为它会影响机械-粘滞摩擦和体积损失。本文旨在研究衬套表面弹性变形的作用,比较刚性和弹性表面的分析结果,最后将结果与衬套平衡表面的设计联系起来。提出并应用了确定齿轮侧和衬套内表面所限定间隙内部压力分布的数值程序。关于作者过去的工作,该程序已综合考虑到衬套内表面的弹性变形和流体动态粘度的变化,这两个公认的现象可以在确定中起到关键作用衬套性能和润滑间隙压力分布的关系。结果表明,当衬套后表面的设计确定了很强的平衡推力时,衬套本身需要相对于齿轮强烈倾斜,以产生适当的加宽推力,从而避免与齿轮接触。有关衬套平衡面设计的有用建议可从对本文报道的平衡图的分析中得出,这些图说明了在纯流体动力和弹性流体动力情况下,在不同的倾斜位置和工作条件下,推力幅值和位置不断加宽。

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