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Aluminum Alloys: Mechanical Properties and Microstructure
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Thermal Treatments: Dislocations, Grain Boundaries, and Hardening Mechanisms
Explores dislocations, grain boundaries, and hardening mechanisms in metals through thermal treatments and recrystallization.
Precipitation Hardening in Alloys
Explores precipitation hardening in alloys, emphasizing the control of precipitation kinetics and the role of dislocations in strengthening mechanisms.
Metal Alloys: Hardening Mechanisms
Explores the modes of hardening metal alloys and their industrial implications, emphasizing the effects of dislocations and grain size.
Mechanical Behavior of Materials
Explores large deformations, dislocations, grain boundaries, and material behavior under different conditions.
Dislocation Movement and Recrystallization
Covers dislocation movement, obstacle effects, solute influence, and recrystallization kinetics.
Phase Transformations in Alloys
Explores phase transformations in metals and alloys, discussing kinetics, structural hardening, and dislocation movement obstacles.
Metallurgy of Aluminum Alloys: Properties and Applications
Discusses the metallurgy of aluminum alloys, focusing on their properties, applications, and the effects of alloying and heat treatment processes.
Hexagonal Lattice in Mg Alloys
Covers the hexagonal lattice in Mg alloys, strengthening mechanisms, intermetallic structural alloys, and failure case analysis.
Physics of Manufacturing: Laser Processing and Material Shaping
Explores laser manufacturing physics and metal shaping processes, including strain hardening and recrystallization.
Microstructural Evolution in Ni Alloys
Explores the microstructural evolution, heat treatment, mechanical properties, and challenges in designing Ni superalloys and Ti alloys.