Covers titanium metallurgy, including production processes, phase diagrams, and interstitial solid solutions, highlighting the technical importance and cost factors.
Explores phase diagrams, solid solutions, and phase transitions in materials science, focusing on the significance of alloy microstructures and phase fractions.
Covers the formation, classes, and properties of intermetallic compounds, including specific examples like titanium aluminides, nickel aluminides, and iron aluminides.
Explores recrystallization, deformation phenomena, and grain growth in materials, focusing on energy variations, kinetics, and critical values for stability.