Title of article :
Microstructure and Crystallographic Texture Characterization of Friction Stir Welded Thin AA2024 Aluminum Alloy
Author/Authors :
Alvand, M Faculty of Materials and Metallurgical Engineering - Semnan University, Semnan , Naseri, M Department of Materials Scienee aod Engineering - Faculty of Engineering - Sbahid Cbaotrao University of Abvaz, Abvaz , Borbani, E Department of Nano Technology - Nano Materials Group - Semnan University, Semnan , Abdollab-Pour, H Faculty of Materials and Metallurgical Engineering - Semnan University, Semnan
Pages :
11
From page :
53
To page :
63
Abstract :
Friction stir welding (FSW) is a promising technique to join aluminum alloys without having problema encountered during fusion welding processes. In the present work, the evolution of microstructure and texture in friction stir welded thin AA2024 aluminum alloy were examined by electron backscatiered diffraction (EBSD) technique. The sheets with 0.8 mm thickness were successfully welded by friction stir welding at the tool rotational speeds of 500, 750, and 1000 rpm with a constant traverse speed of 160 mmlmin. EBSD rtNealed that stir zones exhibited equiaxed recrystallized grains and the grain size increased with increasing the tool rotation rate. The fraction of high angle grain boundaries and mean misorientation angle of the boundaries in the FSW joints at 500 rpm were 63.6% and 24.96", respectively, which were higher than those of the sample welded at 1000 rpm (53.6% and 17.37"). Crystallographic texture results indicated that the Cube {001}<100> and S {123}<634> textures in base metal gradually transformed in to Copper {112}< 111> texture. It wasfound that with increasing the tool rotation rate, the intensity of Cube {001}<100>, Y {lll}<112>, S {123}<634>, and Dillamore {4 4 11}<11 11 8> texture orientations increased and the intenaity of Brass {011}<211> texture orientation decreased.
Keywords :
Aluminum Alloy , Friction Stir Welding , Electron Backscauer Diffraction , Microstructure , Crystallographic Texture
Journal title :
Astroparticle Physics
Serial Year :
2018
Record number :
2469904
Link To Document :
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