伺服阀主级内泄漏二维CFD分析

P. Tamburrano, A. Plummer, P. Elliott, W. Morris, Sam Page, E. Distaso, R. Amirante, P. Palma
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引用次数: 6

摘要

本文研究了伺服阀主级中几何缺陷和公差对零位附近内泄漏的影响。具体而言,采用二维计算流体动力学分析方法预测了阀芯与衬套之间的重叠和间隙以及阀芯和衬套边缘的圆度对直接泄漏流量的影响。本文给出了三种压降值下沿边重叠时直接泄漏流量的预测结果,具有普遍的有效性。对于不同的压降值,可以使用从这些图中检索的数据应用分析相关性。分析表明,上述几何参数对泄漏流量的影响很大。正如预期的那样,对于给定的重叠和径向间隙值,由制造过程或磨损引起的边缘圆度越大,泄漏流量越高。为了实现低泄漏和低功率损耗要求,阀芯和衬套上的半径以及间隙必须保持尽可能低。此外,众所周知,阀芯及其衬套之间的重叠可以帮助减少零泄漏流量,并且边缘圆度对这种减少的影响现在被揭示出来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2D CFD Analysis of Servovalve Main Stage Internal Leakage
This paper presents research aimed at understanding the effects of geometrical imperfections and tolerances upon the internal leakage occurring around null in the main stages of servovalves. Specifically, a two-dimensional (2D) computational fluid dynamic analysis was used to predict the direct leakage flow as a function of the overlap and clearance between the spool and bushing sleeve, as well as the roundness on the edges of the spool and bushing sleeve. Predictions of direct leakage flow against edge overlap, which have general validity, are provided in the paper for three selected values of the pressure drop. For different values of the pressure drop, analytical correlations can be applied using the data retrieved from these graphs. The analysis shows that the leakage flow is highly affected by the above-mentioned geometrical parameters. As expected, for given values of overlap and radial clearance, the greater the roundness of the edges caused by manufacturing processes or wear, the higher the leakage flow. For low leakage and hence low power loss requirement, the radii on the spool and bushing sleeve as well as the clearance must be maintained as low as possible. In addition, it is well-known that overlap between the spool and its bushing sleeve can help to reduce the leakage flow at null, and the effect of edge roundness on this reduction is now revealed.
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