Aluminum alloys--contemporary research and applications
This book discusses the structure and properties of the current and potential aluminum alloys in terms of their structure (and structural transformations by new processing methods) and the relationship between structure and mechanical and other properties. The alternative materials that challenge aluminum are considered as well, since the challenge of new competitive materials is a strong influence on innovation. The book bridges the gap between current scientific understanding and engineering practice. It is an up-to-date reference that will be of use to researchers and advanced students in metallurgy and materials engineering.
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2XXX 5XXX 7XXX alloys Acta addition aircraft Al-Li alloys Al-Mg Alcoa alloying elements alloys containing aluminum alloys Aluminum-Lithium Alloys annealing anodic applications ARALL Laminate behavior casting commercial Composite Materials constituent copper decrease deformation density developed dislocation dispersoids ductility E.A. Starke effect elongation extrusion fatigue crack fibers formability fracture fracture-toughness grain boundaries grain growth hardening heat heat-treatable high-strength higher hydrogen increase ingot interface intermetallic lithium magnesium matrix mechanical properties metal Metallurgy microstructure modulus mold nucleation occurs oxide particles PFZs phase plastic PM alloys powder precipitates precipitation-hardening quenching rapid solidification recrystallized grain reduced reinforced resistance rolling shear sheet shown in Fig solid solution strain rate strain-hardening strengthening stress corrosion cracking stress-corrosion structure subgrain superplastic superplastic forming surface temper temperature texture thermal tion toughness Trans transverse treatment volume fraction Warrendale welding whiskers yield strength zones