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Int J Adv Manuf Technol (2002) 20:612–620
Ownership and Copyright
2002 Springer-Verlag London Limited
Prediction of Gasket Leakage Rate and Sealing Performance
Through Fuzzy Logic
J. Arghavani, M. Derenne and L. Marchand
Department of Mechanical Engineering, Applied Mechanics, Ecole Polytechnique of Montreal, Montreal, Quebec, Canada
Leakage rate prediction and control are of the utmost impor- leakage rate for a given system. The complexity of the analysis
tance in most industrial applications for gasketed flanged joints of the experimental gasket tests, and the associated cost, as
in high-pressure systems, for safety and environmental reasons. well as the existance of many test results in archives, lead to
In addition, loss of media, and damage to the plant, resulting the consideration of a fuzzy decision support system for gas-
from leaky joints can be very costly for the industries. Gasket keted flanged joints. Fuzzy logic is a valuable tool for solving
testing and the evaluation of their sealing performance are complex problems where a mathematical model is not feasible
complex, time-consuming, and costly, and require sophisticated or would be too difficult to obtain. Fuzzy logic can be used
tools capable of predicting leakage based on limited data. In to reduce the complexity of existing solutions as well as to
the present work, fuzzy logic is used as a tool to predict the increase the accessibility of design parameters and for leakage
leakage rate and gasket performance of gasketed flanged joints. control. Furthermore, the application of fuzzy set theory, and
Different fuzzy model
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