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首页> 外文期刊>Journal of Tribology >Gas Lubrication Analysis Method of Step-Dimpled Face Mechanical Seals
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Gas Lubrication Analysis Method of Step-Dimpled Face Mechanical Seals

机译:阶梯凹面机械密封的气体润滑分析方法

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摘要

In solving Reynolds equation with the conventional finite difference method, keeping the flow continuity has ofen been ignored, which will lead to an analysis error in the pressure distribution and leakage rate, especially for discontinuous clearance caused by step structures such as laser surface texturing sealing surfaces. In this paper, a finite difference method is introduced to satisfy the flow continuity to solve the Reynolds equation. Then, the pressure distribution for a typical rectangular step structure is obtained via two different methods: a numerical solution of the exact full Navier-Stokes equations, and a solution of the Reynolds equation solved by the previously mentioned method. A comparison between the two solution methods illustrates that, for both pressure flow and shear flow, the pressure distribution from the new difference method is in good agreement with that from the Navier-Stokes equations, and the new difference method can reflect the characteristic of the pressure sudden-change of the shear flow at the steps. Finally, the pressure distribution and leakage rate of a step-dimpled seal face are acquired with the presented method. The results show that the presented method allows gas-lubricating analysis of mechanical face seals with discontinuous clearance, and can keep the leakage rate continuous in the radial direction.
机译:在使用常规有限差分法求解雷诺方程时,经常会忽略保持流动连续性,这将导致压力分布和泄漏率的分析误差,特别是对于由阶梯结构(例如激光表面纹理化密封面)引起的不连续间隙。本文介绍了一种有限差分方法来满足流动连续性,以解决雷诺方程。然后,通过两种不同的方法获得典型矩形台阶结构的压力分布:精确的完整Navier-Stokes方程的数值解,以及通过前述方法求解的Reynolds方程的解。两种解法的比较表明,对于压力流和剪切流,新的差分方法的压力分布与Navier-Stokes方程的压力分布非常吻合,并且新的差分方法可以反映出特征量。阶跃时剪切流的压力突然变化。最后,利用所提出的方法获得了台阶状密封面的压力分布和泄漏率。结果表明,该方法可以对间隙不连续的机械端面密封件进行气体润滑分析,并且可以使泄漏率沿径向连续。

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