A Percolation Method of Leakage Calculation and Prediction Within the Mechanical Seal Interface

Author:

Yu Qiuping1,Sun Jianjun1,Ma Chenbo1,Zhang Yuyan1

Affiliation:

1. College of Mechanical and Electronic Engineering, Nanjing Forestry University, Nanjing, Jiangsu 210037, China

Abstract

AbstractThe size and change of leakage channel within the mechanical seal interface are investigated to calculate and predict the leakage rate of mechanical seal. Based on the percolation theory, the computing method of the leakage channel within the mechanical seal interface is analyzed; the critical size and change of leakage channel and leakage rate are obtained. The results show that during the period of normal wear, the magnification of the leakage channel increases exponentially with load and time, the height of leakage channel follows a polynomial decline with load and decays exponentially with time. According to the load-dependence or time-dependence of magnification and height, the size of the leakage channel and the leakage rate of the mechanical seal could be calculated and predicted, which is helpful for the optimum design and safe operation of the mechanical seal.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference33 articles.

1. Application of a Diagnostic System for Mechanical Seals;Schmidthals,2003

2. Original Patented Mechanical Seal Type Still in Service After 40 Years;Dichtungswerke;World Pumps,2003

3. A Review of the Condition Monitoring of Mechanical Seals;Fan,2004

4. On the Sealing Mechanism of Fluid Seal;Boon,1971

5. Laboratory Investigation of the Performance of a Radial Face Seal;Summers-Smith,1961

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