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Coupling Analysis of Fluid Film and Thermal Deformation of Sealing Members in Spiral Groove Mechanical Seal

机译:螺旋槽机械密封件流体薄膜和密封构件热变形的耦合分析

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The thermo-hydrodynamic effect in the spiral groove mechanical seal was investigated. The coupling analysis of the fluid film and the thermal deformation of sealing rings was carried out, the separation angle obtained, and the shape of the gap between the two deformed end faces determined. The results indicate that the increase of the temperature of the fluid film and the thermal deformation of the sealing rings cause the increase of the leakage rate. There exists a critical rotating speed, when the rotating speed is lower than the critical speed, the bearing force increases with the increase of the rotating speed, and once the rotating speed is higher than the critical speed, the bearing force decreases reversely. The thermal deformation weakens the hydrodynamic effect of the spiral groove mechanical seals.
机译:研究了螺旋槽机械密封中的热流体动力学效果。进行了流体膜的耦合分析和密封环的热变形,得到的分离角,并且确定了两个变形端面之间的间隙的形状。结果表明,流体膜的温度的增加和密封环的热变形导致泄漏率的增加。当旋转速度低于临界速度时,轴承力随着旋转速度的增加而增加,并且一旦旋转速度高于临界速度,轴承力反向减小。热变形削弱了螺旋槽机械密封的流体动力学效果。

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