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Aerostatic and Aerodynamic Performance of an Out-Pump Spirally Grooved Thrust Bearing: Analysis and Comparisons to Static Load Experiments

机译:出油槽螺旋推力轴承的空气静力和空气动力性能:静载荷实验的分析和比较

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摘要

The combined effects of external pressurization and out-pump spiral grooves are studied according to the incompressible fluid Whipple analysis on spirally grooved gas bearings. The results are examined in terms of non-dimensional parameters that bring out the interaction between the action of spiral groove self-pressurization and external pressurization through orifices. It is found that interaction is beneficial when the supply pressure level to the orifices is near the peak pressure that can be reached by the spiral grooves alone. An optimized interacting design can improve the bearing stiffness and load carrying capacity. However, when the action of spiral groove self-pressurization dominates, the orifices are merely a resistance of inlet because of the strong out-pump action of spiral grooves. On the other hand, when the action of external pressurization dominates, the spiral grooves still add to the bearing stiffness and load-carrying capacity even though the action of the spiral groove self-pressurization is at a low level. The orifice flow tends to be saturated ahead because of the spiral grooves in stationary state and their out-pump self-pressurization in steady state. Out-pump spiral grooving is found to be the preferred configuration to combine aerostatic and aerodynamic actions. These predicted trends are qualitatively substantiated by static load tests without rotation.
机译:根据螺旋槽气体轴承上的不可压缩流体Whipple分析,研究了外部增压和泵外螺旋槽的组合效应。根据无量纲参数检查结果,该参数显示出螺旋槽自加压的作用与通过孔口的外部加压之间的相互作用。发现当孔口的供应压力水平接近仅由螺旋槽可达到的峰值压力时,相互作用是有益的。优化的相互作用设计可以提高轴承的刚度和承载能力。但是,当螺旋槽自加压作用占主导时,由于螺旋槽的强力泵出作用,孔口仅仅是入口的阻力。另一方面,当外部加压作用占主导时,即使螺旋槽自加压作用很小,螺旋槽仍会增加轴承刚度和承载能力。由于处于静止状态的螺旋形凹槽和处于稳定状态的其出油口自加压,孔口流向前方趋于饱和。发现泵外螺旋切槽是将空气静力和空气动力作用相结合的首选配置。这些预测的趋势在没有旋转的情况下通过静载荷测试得到了定性的证实。

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