A Rayleigh-Step Face Seal with Reverse Steps

K. Ikeuchi, H. Mori, Tohru Nishida
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引用次数: 2

Abstract

This paper presents a new hydrodynamic seal, in which the pressure drops caused by the reverse steps reduce the hydrodynamic film force, while they scarcely affect the film stiffness if the step recesses are deep enough. Thus, the clearance is controlled at high-speed operation. The numerical analysis clarifies that the leakage flow rate of the seal is less than a critical value over the entire range of rotating velocities. The critical leakage flow rate which corresponds to a zero hydrodynamic film force condition is determined by the seal face design, and it is independent of the balance ratio. If the seal operates at a relatively low balance ratio, a hydrodynamic lubricating film is formed at a low velocity. In addition, leakage is limited at a high velocity. The experimental results confirm that a seal with reverse steps shows excellent performance over a wide range of rotating velocities.
瑞利台阶面密封与反向步骤
本文提出了一种新型的液动密封,在这种密封中,反台阶引起的压降降低了液动膜力,而如果台阶凹槽足够深,压降对液动膜刚度几乎没有影响。因此,间隙在高速运行时得到控制。数值分析表明,在整个转速范围内,密封泄漏流量小于临界值。对应于零水动膜力条件的临界泄漏流量由密封面设计决定,与平衡比无关。如果密封在相对较低的平衡比下工作,则在低速下形成流体动力润滑膜。此外,泄漏在高速下是有限的。实验结果表明,在较宽的转速范围内,反阶密封具有良好的密封性能。
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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