Optimization of Friction Welding Parameters of AISI 904L Super Austenitic Stainless Steel by Evolutionary Computational Techniques

Author:

Balamurugan Karupanan1,Elies Jiju V2,Sathiya Paul2,Sait Abdullah Naveen3

Affiliation:

1. Thanjavur

2. Tiruchirappalli

3. Pudukkottai , Tamil Nadu , India

Abstract

Abstract Friction welding is a type of solid state welding which plays an important role in joining metal surfaces with the help of frictional heat accompanied with high force. Optimization of process parameters of friction welding is important for all types of materials. Optimization of input parameters of friction welding also plays a very significant role in determining the quality of a weld joint. Purpose of this study is to optimize the welding process parameters in friction welding of AISI 904L super austenitic stainless steel by using regression analysis and evolutionary algorithms. This study is to determine optimimum welding process parameters of friction welding with the help of genetic algorithm (GA) and simulated annealing (SA). Also, it explains how to obtain near optimum welding conditions in a wide range by conducting a relatively small number of experiments. Results of these evolutionary computational techniques were compared with experimental results. Finally, an optimization parameter is obtained for a maximum fatigue life and a minimum welding time.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference24 articles.

1. Sensitivity analysis for process parameters in GMA welding processes using a factorial design method;International Journal of Machine Tools & Manufacture,2003

2. Parameter optimization in friction welding dissimilar materials,1983

3. Process parameter selection for optimizing the weld pool geometry in tungsten inert gas welding of stainless steel;Journal of Materials Processing Technology,2002

4. Application of response surface methodology for predicting weld bead quality in submerged arc welding of pipes;Journal of Material Processing Technology,1999

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