Severe Plastic Deformation and Thermomechanical Processing: Nanostructuring and Properties


English[eng]


Mg-3.7Al-1.8Ca-0.4Mn alloy||Al2Ca phase||equal channel angular pressing||refinement||mechanical properties||aluminium copper-clad rod||hardness||effective electrical conductivity||severe plastic deformation||Mg-9Li duplex alloy||ECAP||rolling||high strength||microstructure||high pressure torsion extrusion||gradient structure||hardness distribution||tensile properties||copper||high pressure torsion||microstructural characterization||magnetic properties||hysteresis||magneto-resistance||β titanium alloys||α phase precipitation||phase composition||high energy synchrotron X-ray diffraction||metastable β-Ti alloys||powder metallurgy||cryogenic milling||spark plasma sintering||surface mechanical attrition treatment (SMAT)||ultrasonic shot peening (USP)||functionally graded materials (FGM)||titanium niobium alloys||titanium molybdenum alloys||human mesenchymal stem cells culture||cell adhesion||cell proliferation||magnesium||equal-channel angular pressing||deformation tests||texture||schmid factor||cryogenic temperature||304L austenitic stainless steel||rotating–bending fatigue||tension–compression fatigue||TiNi alloy||thermal cycling||ultrafine-grained structure||microstructural and mechanical stability||Ti–Fe||high-pressure torsion||high-temperature XRD||differential scanning calorimetry||phase diagram||CalPhaD||Mg alloy||severe plastic deformation (SPD)||intermetallic precipitates||vacancy agglomerates||corrosion||n/a