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Metallurgy of Aluminum Alloys: Properties and Applications
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Metallurgy Fundamentals
Covers the fundamentals of metallurgy, including world reserves of metals, shaping processes, heat treatments, and steel properties.
Aluminum Alloys: Mechanical Properties and Processing Techniques
Provides an overview of aluminum alloys, focusing on their mechanical properties, processing techniques, and challenges during casting.
Al-Cu System: Phase Stability and Aging Effects
Covers the Al-Cu alloy system, focusing on phase stability and aging effects on mechanical properties.
Aluminum Alloys: Mechanical Properties and Microstructure
Explores the mechanical properties and microstructure of aluminum alloys, focusing on the Al-Mg system and the effects of dislocations, grain size, and heat treatment.
Al-Cu System: Precipitation Hardening
Explores the precipitation hardening process in the Al-Cu system, focusing on how precipitates influence material properties.
Microstructural Evolution in Ni Alloys
Explores the microstructural evolution, heat treatment, mechanical properties, and challenges in designing Ni superalloys and Ti alloys.
Metallurgy: Martensitic Transformation and TTT Diagrams
Discusses martensitic transformation in metals, focusing on TTT diagrams and the effects of cooling rates on phase formation.
The Superalloys: Alloy Design and Properties
Explores the design and properties of Ni-base superalloys, emphasizing strength and creep resistance.
Metals and Alloys: Microstructures and Transformations
Explores metals and alloys, focusing on microstructures, transformations, energy footprints, and extraction processes.
Physics of Manufacturing: Laser Processing and Material Shaping
Explores laser manufacturing physics and metal shaping processes, including strain hardening and recrystallization.