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Titanium Alloys: Properties and Applications
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Advanced Metallurgy: Ni- & Ti-alloys
Delves into the advanced metallurgy of nickel and titanium alloys, turbine blade design, and fatigue crack behavior.
Microstructural Evolution in Ni Alloys
Explores the microstructural evolution, heat treatment, mechanical properties, and challenges in designing Ni superalloys and Ti alloys.
Metallurgical Processes: Hardening and Maturation
Explores metallurgical hardening processes and microstructure evolution in metals and alloys through heat treatment.
Titanium Alloys: Properties and Applications
Explores the properties and applications of titanium alloys, including aerospace and racing car uses, biocompatibility for implants, and crystal structures.
The Superalloys: Alloy Design and Properties
Explores the design and properties of Ni-base superalloys, emphasizing strength and creep resistance.
Titanium Alloys: Structure and Properties
Explores titanium alloys' microstructures, heat treatments, and mechanical properties for aerospace and medical applications.
Hexagonal Lattice in Mg Alloys
Covers the hexagonal lattice in Mg alloys, strengthening mechanisms, intermetallic structural alloys, and failure case analysis.
Metallurgy: Martensitic Transformation and TTT Diagrams
Discusses martensitic transformation in metals, focusing on TTT diagrams and the effects of cooling rates on phase formation.
Metallurgy Fundamentals
Covers the fundamentals of metallurgy, including world reserves of metals, shaping processes, heat treatments, and steel properties.
Mechanical Properties of Ti Alloys
Explores the mechanical properties and fatigue behavior of titanium alloys, as well as the basic facts and applications of aluminum and magnesium.