期刊文献+

Leakage Prediction Method for Contacting Mechanical Seals with Parallel Faces 被引量:16

Leakage Prediction Method for Contacting Mechanical Seals with Parallel Faces
下载PDF
导出
摘要 Since the beginning of the 20th century, many researches on the sealing characteristic of mechanical seals were carried out broadly and in depth by various methods and some leakage models were built. But due to the lack of the way to characterize the main factors of influence on the leakage, most of the early researches were based on the assumptions that the seal faces topography and the frictional conditions were invariant. In the early built models, the effect of the surface topography change of the seal face on the leakage rate was neglected. Based on the fractal theory, the contact of end faces of the rotary and stationary rings was simplified to be the contact of a rough surface and an ideal rigid smooth surface, and the contact interface's cavity size-distribution function as well as the fractal characteristic of the cavity profile curve was discussed. By analyzing the influence of abrasion on the seal face topography and the leakage channel, the time-correlation leakage prediction model of mechanical seals based on the fractal theory was established and the method for predicting the leakage rate of mechanical seals with parallel plane was proposed. The values of the leakage rate predicted theoretically are similar to the measured values of the leakage rate in the model test and in situ test. The experimental results indicate that the leakage rate of mechanical seals is a transient value. The surface topography of the end faces of the seal tings and its change during the frictional wear of mechanical seals can be accurately characterized by the fractal parameters. Under the work conditions of changeless frictional mechanism, the fractal parameters measured or calculated based on the accelerated testing equation can be used to predict the leakage rate of mechanical seal in service. The proposed research provides the basis for determining the leakage state and predicting working life of mechanical seal. Since the beginning of the 20th century, many researches on the sealing characteristic of mechanical seals were carried out broadly and in depth by various methods and some leakage models were built. But due to the lack of the way to characterize the main factors of influence on the leakage, most of the early researches were based on the assumptions that the seal faces topography and the frictional conditions were invariant. In the early built models, the effect of the surface topography change of the seal face on the leakage rate was neglected. Based on the fractal theory, the contact of end faces of the rotary and stationary rings was simplified to be the contact of a rough surface and an ideal rigid smooth surface, and the contact interface's cavity size-distribution function as well as the fractal characteristic of the cavity profile curve was discussed. By analyzing the influence of abrasion on the seal face topography and the leakage channel, the time-correlation leakage prediction model of mechanical seals based on the fractal theory was established and the method for predicting the leakage rate of mechanical seals with parallel plane was proposed. The values of the leakage rate predicted theoretically are similar to the measured values of the leakage rate in the model test and in situ test. The experimental results indicate that the leakage rate of mechanical seals is a transient value. The surface topography of the end faces of the seal tings and its change during the frictional wear of mechanical seals can be accurately characterized by the fractal parameters. Under the work conditions of changeless frictional mechanism, the fractal parameters measured or calculated based on the accelerated testing equation can be used to predict the leakage rate of mechanical seal in service. The proposed research provides the basis for determining the leakage state and predicting working life of mechanical seal.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第1期7-15,共9页 中国机械工程学报(英文版)
基金 supported by China Postdoctoral Science Foundation (Grant No. 20070410323) Jiangsu Provincial Planned Projects for Postdoctoral Research Funds of China (Grant No. 0701001C) Jiangsu Provincial Planned Projects for Fostering Talents of Six Scientific Fields of China (Grant No. 07-D-027)
关键词 mechanical seal leakage rate fractal theory frictional wear accelerated test model mechanical seal, leakage rate, fractal theory, frictional wear, accelerated test model
  • 相关文献

参考文献3

二级参考文献35

  • 1马争,桂长林.评定磨合表面的最佳形貌参数[J].摩擦学学报,1995,15(2):133-137. 被引量:10
  • 2陈国安.粗糙表面分形识别与磨合磨损预测模型:博士学位论文[M].徐州:中国矿业大学,1999..
  • 3Ishiwata H,Hirabayashi H.Friction and sealing characteristics of mechanical face seals//BHRA.International Conference Fluid Sealing.Cranfild:BHRA Fluid Engineering,1961,Paper D5:46-57
  • 4Etsion I.Hydrostatic effects in a mechanical radial face seals.Transactions of the ASME Journal of Lubrication Technology,1979,101(2):283-292
  • 5Lebeck A O.A study of contacting mechanical face seal performance data using mixed friction models//Nun B S.Proceedings of 12th ICFS.Brighton:BHRA Fluid Engineering,1989:271-289
  • 6Netzal J P.Wear of mechanical seals in light hydrocarbon service.Wear,1985,102:141-151
  • 7Mayer E.Mechanical Seal(机械密封).6th ed.Yao Zhaosheng(姚兆生),Xu Zhongmei(许仲枚),Wang Junde(王俊德),trans.Beijing:Chemical Industry Press,1981:41-160
  • 8Mandelbrot B B.The Fractal Geometry of Nature.New York:W.H.Freeman,1982:72-91
  • 9Heinze E.Uber Gleitringdichtungen,mit besonderer Berücksichtigung ihrer Verwendung im Kaltemaschinenbau.Kaltetechnik,1949,1(2):26-32
  • 10Vogelpohl G.Betriebssichere Gleitlager.2.Aufl.Berlin:Berlin-Gottingen-Heidelberg,1967:43

共引文献108

同被引文献139

引证文献16

二级引证文献145

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部