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Generalization of lubricating and sealing performance using dimensionless parameters on low-friction and zero-leakage mechanical seals

机译:低摩擦和零泄漏机械密封件使用无量纲参数的润滑和密封性能的概括

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Surface texturing techniques on the sliding surfaces for mechanical seals have been studied to achieve the contradictory functions of sealing and lubrication. In this study, the dimensionless load-carrying capacity and stiffness coefficient are defined to express the performance of hydrodynamic lubrication for textured surface structures in order to eliminate the effects of shaft size, rotation speed, and type of fluid as design parameters. A database of the relationship between dimensionless load-carrying capacity and aspect ratio of Rayleigh-steps arranged at the outer side of the sliding surface are calculated in advance. The hydrodynamic pressure distributions are calculated by solving the Reynolds equation in the steady-state condition. Consequently, the dimensional load-carrying capacity and film stiffness coefficient could be obtained instantly without solving the Reynolds equation. Furthermore, the dimensionless cavitation pressure is defined, and the sealing performance of the reversed Rayleigh-step is evaluated. JFO boundary condition is applied to the cavitation boundary in order to consider the mass conservation at the cavitation regions. The results indicate that the sealing performance could be changed depending on the value of the dimensionless cavitation pressure.
机译:研究了机械密封滑动表面上的表面纹理技术,以实现密封和润滑的矛盾功能。在该研究中,定义无量纲载荷能力和刚度系数以表达用于纹理表面结构的流体动力润滑的性能,以消除轴尺寸,转速和流体类型作为设计参数的影响。预先计算布置在滑动表面的外侧的无量纲承载能力和横梁的长度载荷容量和纵横比的关系数据库。通过在稳态条件下求解雷诺等式来计算流体动力学压力分布。因此,可以立即获得尺寸承载能力和膜刚度系数而不求解雷诺方程。此外,空化量纲压力被定义,和的密封性能逆转瑞利步骤进行评价。 JFO边界条件被应用于空化边界,以考虑空化区域的质量保守。结果表明,可以根据无量纲空化压力的值改变密封性能。

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