Low stacking fault energy AISI-316L stainless steel of 4 mm thick plates are friction stir welded at 1100 RPM and 8 mm/min welding speed using cubic boron nitride-tungsten rhenium composite tool. Large area orientation image mapping of the stir zone using electron backscatter diffraction scanning electron microscopy is performed to comprehensively characterise its microstructure and is searched for torsion shear texture components. Kernel average misorientation analysis revealed that top layer of the stir zone is almost fully recrystallised which experienced highest temperature and strain; middle layer has more deformed grains than recrystallised, showing partial recrystallisation while the bottom layer which encountered low strain but high...
In this project, possibility of joining dissimilar AISI-316 stainless steel to Ti-6Al-4V\ud by frict...
Friction stir welding (FSW) is a promising technique to join aluminum alloys without having problems...
Friction-stir welding produces severe thermomechanical transients that generate crystallographic tex...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
In this study, AISI 304 (X5CrNi18-10, material number 1.4301) austenitic stainless steels, 3.0 mm th...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
Microstructure evolution during friction stir welding (FSW) of mild steel and Ni-based alloy 625 was...
Evolution of crystallographic texture and local strains in different zones of a dual-phase steel sub...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
Friction stir welding of C-Mn steel was carried out under similar to 800-1400 rpm tool rotation. Too...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
The evolution of microstructure and crystallographic texture has been investigated in double-sided f...
In this project, possibility of joining dissimilar AISI-316 stainless steel to Ti-6Al-4V\ud by frict...
In this project, possibility of joining dissimilar AISI-316 stainless steel to Ti-6Al-4V\ud by frict...
Friction stir welding (FSW) is a promising technique to join aluminum alloys without having problems...
Friction-stir welding produces severe thermomechanical transients that generate crystallographic tex...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
In this study, AISI 304 (X5CrNi18-10, material number 1.4301) austenitic stainless steels, 3.0 mm th...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
International audienceThe evolution of microstructure and texture during friction stir lap welding (...
Microstructure evolution during friction stir welding (FSW) of mild steel and Ni-based alloy 625 was...
Evolution of crystallographic texture and local strains in different zones of a dual-phase steel sub...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
Friction stir welding of C-Mn steel was carried out under similar to 800-1400 rpm tool rotation. Too...
In this project, microstructural and textural analyses of similar welded industrially relevant mater...
The evolution of microstructure and crystallographic texture has been investigated in double-sided f...
In this project, possibility of joining dissimilar AISI-316 stainless steel to Ti-6Al-4V\ud by frict...
In this project, possibility of joining dissimilar AISI-316 stainless steel to Ti-6Al-4V\ud by frict...
Friction stir welding (FSW) is a promising technique to join aluminum alloys without having problems...
Friction-stir welding produces severe thermomechanical transients that generate crystallographic tex...