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Optimum Design of Flat End Face Mechanical Seal Based on Coupling Analysis

机译:基于耦合分析的平端面部机械密封的最佳设计

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The flat end face mechanical seals are widely used in shaft sealing at moderate rotational speed. The thermal deformation of the rotating and stationary rings initiated by friction heat of fluid film should be primarily considered in the design of mechanical seal. In consideration of the coupling effect among the thermal deformation of sealing rings, the fluid flow in the gap composed by end faces of sealing rings and the heat transfer from fluid film to sealing rings, the optimum design method for flat end face mechanical seal is established. The end faces are fabricated to form a divergent gap at the inner side of the sealing rings, and a convergent gap will occur at the outer side and a parallel gap will be obtained at where the original divergent gap is due to the thermal deformation. After optimization, the leakage rate can be reduced while the bearing force of fluid film is still large enough to keep the fluid lubrication of the end faces.
机译:扁平端面机械密封件广泛用于适中的旋转速度的轴密封。 通过摩擦摩擦摩擦热的旋转和静止环的热变形应主要考虑在机械密封的设计中。 考虑到密封环的热变形之间的耦合效果,通过密封环的端面组成的间隙中的流体流动和从流体膜到密封环的热传递,建立了扁平端面机械密封的最佳设计方法 。 端面被制造成在密封环的内侧形成发散间隙,并且在外侧发生会聚间隙,并且在原始发散间隙由于热变形而导致的地方将获得平行间隙。 优化后,可以减小泄漏率,同时流体膜的轴承力足够大以使末端面的流体润滑。

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