Microstructure evolution modeling of FGH96 superalloy during inertia friction welding process
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Computer Graphics and Computer-Aided Design,General Engineering,Analysis
Reference17 articles.
1. The Superalloys: Fundamental and Applications;Reed,2006
2. China Aeronautical Materials Handbook;Editorial Committee of Aeronautical,2002
3. Thermomchanical fatigue behavior of powder metallurgical nickel based superalloy FGH96;Yu-li;J. Iron Steel Res. Int.,2010
4. Thermal relaxation of residual stresses in nickel-based superalloy inertia friction welds;Karadge;Metall. Mater. Trans. A,2011
5. Effect of friction welding parameters on mechanical and metallurgical properties of aluminum ally 5052-A36 steel joint;Lee;Mater. Sci. Tech. London,2003
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1. Study on the metallurgical mechanisms of inclusions in the FGH4096 alloy during electron beam smelting;Separation and Purification Technology;2024-12
2. Omnidirectional simulation analysis of thermo-mechanical coupling mechanism in inertia friction welding of Ni-based superalloy;Chinese Journal of Aeronautics;2024-05
3. Effect of Semi-Aging Heat Treatment on Microstructure and Mechanical Properties of an Inertia Friction Welded Joint of FGH96 Powder Metallurgy Superalloy;Metals;2023-03-22
4. Constitutive modeling and dynamic recrystallization mechanism elaboration of FGH96 with severe hot deformation;Journal of Materials Research and Technology;2022-11
5. Microstructure Characterization and Mechanical Property of the GH4065A Superalloy Inertia Friction Welded Joints;Metals;2022-08-22
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