Stability Analysis of Spools with Imperfect Sealing Gap Geometries

IF 0.7 Q4 ENGINEERING, MECHANICAL
R. Rituraj, R. Scheidl
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引用次数: 2

Abstract

Spools in hydraulic valves are prone to sticking caused by unbalanced lateral forces due to geometric imperfections of their sealing lands. This sticking problem can be related to the stability of the coaxial spool position. Numerical methods are commonly used to study this behaviour. However, since several parameters can influence the spool stability, parametric studies become significantly computationally expensive and graphical analysis of the numerical results in multidimensional parameter space becomes difficult. To overcome this difficulty, in this work, an analytical approach for studying the stability characteristics of the spool valve is presented. A Rayleigh-Ritz method is used for solving the Reynolds equation in an approximate way in order to determine an analytical expression for the lateral force on the sealing lands. This analytical expression allows stability analysis of the spool via analytical means which finally results in the expression of critical axial velocity which demarcates the regions of stable behaviour. Simplicity of the expression allows an immediate insight into the role of design parameters in the stability of the spool. To verify the analytical model, a numerical model for spool dynamics is developed in this work and the numerical results are found to match the analytical model in terms of the stability behaviour of the spool.
密封间隙几何形状不完美的线轴稳定性分析
液压阀中的阀芯由于其密封面的几何缺陷而容易因不平衡的侧向力而发生卡滞。此卡滞问题可能与同轴滑阀位置的稳定性有关。数值方法通常用于研究这种行为。然而,由于几个参数会影响阀芯的稳定性,因此参数研究在计算上变得非常昂贵,并且在多维参数空间中对数值结果进行图形分析变得困难。为了克服这一困难,本文提出了一种研究滑阀稳定性特性的分析方法。瑞利-里兹方法用于近似求解雷诺方程,以确定密封面上横向力的解析表达式。该分析表达式允许通过分析手段对阀芯进行稳定性分析,最终得出临界轴向速度的表达式,该表达式划定了稳定行为的区域。表达式的简洁性使我们能够立即深入了解设计参数在阀芯稳定性中的作用。为了验证分析模型,本文建立了阀芯动力学的数值模型,并发现数值结果在阀芯的稳定性方面与分析模型相匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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