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Leakage performance of labyrinth seal for oil sealing of aero-engine

机译:航空发动机油封迷宫式密封的泄漏性能

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摘要

Experimental investigation has been done to evaluate the leakage performance of labyrinth seal for oil sealing on high-speed sealing test rig at different working and geometric parameters. Typical values of pressure ratio ranging from 1.0 to 2.0 were used and the rotating speed varied from 0 to 30,000 rpm. Dimensionless Taylor number was invited to response the effect of rotation. Oil was injected at the rate from 1.2 L/min to 2.8 L/min to check the sealing capacity. Leakage was measured at different seal configurations including sealing clearance, tooth tip thickness, pitch, teeth number, front inclined angle and oil-throwing angle. Different from gas sealing, the application of oil-throwing tooth in oil sealing attracted much interest as an obvious alternative to the conventional labyrinth seal. A blocking ring was captured during testing, which establishes understanding of underlying flow mechanisms in the clearance and plays an important role in oil sealing. There is a critical Taylor number at which the leakage coefficient drops drastically. After the critical Taylor number, a parabola rule appears. An optimal composition of tooth tip thickness, teeth number, oil-throwing angle and front inclined angle exists where the leakage performance behaves better.
机译:通过实验研究,评价了高速密封试验台在不同工作和几何参数下油封用迷宫密封的泄漏性能。使用1.0至2.0的典型压力比值,转速从0到30,000 rpm变化。无量纲泰勒数被邀请来响应旋转的影响。以 1.2 L/min 至 2.8 L/min 的速率注入油以检查密封能力。在不同的密封配置下测量泄漏,包括密封间隙、齿尖厚度、节距、齿数、前倾角和喷油角。与气体密封不同,喷油齿在油封中的应用引起了人们的极大兴趣,作为传统迷宫密封的明显替代品。在测试过程中捕获了一个阻挡环,这建立了对间隙中潜在流动机制的理解,并在油封中发挥着重要作用。有一个临界泰勒数,在该数处泄漏系数急剧下降。在临界泰勒数之后,出现抛物线规则。在漏液性能表现较好的情况下,存在齿尖厚度、齿数、喷油角和前倾角的最佳组合。

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