Belyakov, Andrey
Microstructure and Mechanical Properties of Structural Metals and Alloys
English[eng]
n/a||microstructure||high-pressure torsion||electron backscattered diffraction||grain boundary engineering||strengthening mechanism||precipitation||recrystallization||bimodal ferrite steel||transmission electron microscopy (TEM)||hot compression||metal–matrix composite||columnar grain||shape memory alloy||hardness||structural steel plate||dynamic recovery||nonmetallic inclusions||SEM||Cu-Al-Mn||ferritic steel||strain rate||strengthening||elastocaloric effect||Mg–Sm–Zn–Zr||dynamic recrystallization||growth rate||corrosion resistance||lead-free solder||high-Mn TWIP steel||Sn-8.0Sb-3.0Ag||SDSS||measuring temperature||texture||martensitic steels||dynamic precipitation||nanoindentation||Al-Fe-Si-Zr system||low-temperature||orientation relationship||M23C6||PWHT||grain refinement||force peak||aging||cycle time||amorphization||Al metal matrix composites||aluminum alloys||in situ tensile testing||microstructure evolution||Cu-Cr-Zr||irradiation||EBSD||welded rotor||?-phase||high-entropy alloys||creep||martensitic expansion||super duplex stainless steel||mechanical properties||high-Mn steel||ion irradiation||austenitic 304 stainless steels||impact toughness||cold rolling||ultrafine-grained microstructure||press hardening||mechanical property||recovery||annealing||deformation twinning||post-weld heat treatment||rare earth control||abnormal grain growth||electron microscopy||sub-merged arc welding||M6C||RAFM steels||microstructure analysis||electrical resistivity||twinning||Sb solder||work hardening||microhardness||hot stamping||weld metal||electrical conductivity||solder microstructure||annealing twins