Advanced Powder Metallurgy Technologies


English[eng]


in situ diffraction||aluminides||reactive sintering||mechanism||powder metallurgy||iron silicide||Fe–Al–Si alloy||mechanical alloying||spark plasma sintering||characterization||FeAlSi||intermetallic alloys||microstructure||nanoindentation||mechanical properties||titanium aluminides and silicides||casting||heterophase magnesium matrix composite||Mg2Si||carbon nanotubes||nanopowders de-agglomeration||sintering||biomaterials||metallic composites||powder technology||zinc||Ni-Ti alloy||self-propagating high-temperature synthesis||aging||compressive test||hardness||shape memory||maraging steel||atomized powder||selective laser melting||heat treatment||precipitation hardening||self-healing||aluminium alloy||grain boundary diffusion||Nd–Fe–B magnets||hydrogenation||magnetic properties||MgAl2O4||lithium fluoride||cobalt fluoride||manganese fluoride||grain growth||compressive strength||oxidation resistance||wear||multi principal element alloy||tensile strength||fracture||ductility||powder||critical raw materials||cutting tools||new materials||new machining methods||modelling and simulation