中国机械工程 ›› 2025, Vol. 36 ›› Issue (05): 933-941,953.DOI: 10.3969/j.issn.1004-132X.2025.05.005

• 机械基础工程 • 上一篇    下一篇

扩压式自泵送机械密封端面的液膜汽化及其结构优化研究

饶远1;孙见君1*;闻兰2   

  1. 1.南京林业大学机械电子工程学院,南京,210037
    2.江苏华青流体科技有限公司,苏州,215600
  • 出版日期:2025-05-25 发布日期:2025-06-24
  • 作者简介:饶远,男,1999年生,硕士研究生。研究方向为机械密封技术。E-mail:870556457@qq.com。
  • 基金资助:
    国家自然科学基金(52075268);江苏省重点研发计划(SBE2021030576)

Research on Liquid Film Vaporization and Structural Optimization of End Faces for Diffuser Self-pumping Mechanical Seals

RAO Yuan1;SUN Jianjun1*;WEN Lan2   

  1. 1.Department of Mechanical and Electronic Engineering,Nanjing Forestry University,Nanjing,210037
    2.Jiangsu Huaqing Fluid Technology Co.,Ltd.,Suzhou,Jiangsu,215600
  • Online:2025-05-25 Published:2025-06-24

摘要: 针对扩压式自泵送机械密封的液膜汽化问题,建立了基于Mixture两相流模型、黏温方程、饱和汽化压力和温度关系式的液膜汽化计算模型,研究了中高温工况下密封界面间液膜相变的主要区域和原因,并通过均匀实验法和NSGA-Ⅱ算法求得393 K工况下的最优端面结构参数。研究结果表明:相变主要产生于扩压环槽和密封面内径侧;随着介质温度的升高,气相体积分数增大以及介质的黏度降低,泵送效应减弱,高压区和低压区面积都减小;在保证密封运行稳定的前提下,求得刚漏比的最优解为257.17 GN·h/(m·L),此时的端面结构参数螺旋角β、密封坝坝长wd、螺旋槽槽长wg、螺旋槽槽深hg、扩压环槽宽wk分别为34.4°、5.2 mm、8.9 mm、43.3 μm、5 mm。研究结果对端面结构优化设计、控制液膜相变和提高扩压式自泵送机械密封的密封性能具有指导意义。

关键词: 机械密封, 汽化, 流体动压, 密封性能, 多目标优化

Abstract: For the issues of liquid film vaporization in the diffuser self-pumping mechanical seals, a fluid film vaporization calculation model was established based on the Mixture two-phase flow model, viscosity-temperature equation, saturation vapor pressure-temperature relationship. The main regions and reasons were investigated for the phase transition of the liquid films between the sealing interfaces under medium and high temperature conditions. Through uniform experimentation and the NSGA-Ⅱ algorithm, the optimal sealing face structural parameters were obtained at a temperature of 393 K. The results show that phase transition mainly occurs on the inner diameter side of the sealing faces and the diffuser grooves. As the temperature of the medium increases, the vapor phase volume fraction increases and the viscosity of the medium decreases, the pumping effect weakens, and both the areas of the high and low pressure regions decrease. Under the premise of ensuring the stable operations of the seals, the optimal solution of the ratio of stiffness to leakage is as 257.17  GN·h/(m·L), and the sealing face structural parameters of helix angle β, sealing dam length wd, spiral groove length wg, spiral groove depth hg and diffuser groove width wk are as 34.4°, 5.2 mm, 8.9 mm, 43.3 μm and 5 mm respectively. These research results provide guidance for the optimization of sealing face structure design, control of liquid film phase transition, and enhancement of the sealing performance of the diffuser self-pumping mechanical seals.

Key words: mechanical seal, vaporization, fluid dynamic pressure, sealing performance, multi-objective optimization

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