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The improved Volumetric Efficiency of an Axial-Piston Pump Utilizing a Trapped-Volume Design

机译:利用截留容积设计提高了轴向柱塞泵的容积效率

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In this research, the volumetric efficiency of the axial-piston pump is examined as it relates to the compressibility losses of the fluid. In particular, two valve-plate geometries are compared to show that alterations in the valve-plate design can cause differences in the operating efficiency of the pump. In this paper, a standard valve-plate design which utilizes slots is compared to a trapped-volume design which eliminates the slots altogether. In the analytical result of this paper, it may be shown that the standard valve-plate design introduces a volumetric loss which may be accounted for by the uncontrolled expansion and compression of the fluid that occurs through the slots themselves. By eliminating these slots, and utilizing a trapped volume design, it may be shown that improvements in the operating efficiency can be achieved. Though this paper does not claim to provide the ideal valve-plate design for all pump applications, it does provide the theoretical reason for utilizing trapped volumes and lends general insight into the overall problem of vale-plate design.
机译:在这项研究中,检查了轴向柱塞泵的容积效率,因为它与流体的可压缩性损失有关。特别是,比较了两个阀板的几何形状,以显示阀板设计的变更会导致泵的工作效率差异。在本文中,将利用缝隙的标准阀板设计与完全消​​除缝隙的截留容积设计进行了比较。从本文的分析结果中可以看出,标准的阀板设计会引入体积损失,这可能是由于通过狭缝本身发生的流体不受控制的膨胀和压缩而造成的。通过消除这些狭槽,并利用捕集的容积设计,可以表明可以实现操作效率的提高。尽管本文并未声称为所有泵应用提供理想的阀板设计,但确实提供了利用滞留体积的理论原因,并为阀瓣设计的整体问题提供了一般见识。

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