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A Random Walk Through Random Materials
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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.
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Explores the mechanical properties and fatigue behavior of titanium alloys, as well as the basic facts and applications of aluminum and magnesium.
Materials: from Chemistry to Properties
Explores materials' behavior under stress, covering plastic deformation, elasticity, and strengthening mechanisms.
Lamination: Deformation, Ductility, and Dislocations
Explores lamination, ductility, plastic deformation, and dislocations in materials, emphasizing the effects of strain rate and temperature.
Structural Mechanics: Basics and Applications
Covers the basics of structural mechanics, including forces, materials behavior, and failure mechanisms, along with advanced topics and a historical overview.
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Explores defects in materials, grain boundaries, grain coarsening kinetics, the glass transition, and vacancy creation.
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Provides an overview of aluminum alloys, focusing on their mechanical properties and processing techniques, including the Al-Mg and Al-Si systems.
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Explores thermal activation, dislocations, diffusion, and the influence of solute atoms in crystal deformation.
Deformation and Dislocations
Explores the sliding of dislocations in single crystals, plastic deformation, and stress fields induced by dislocations.
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Explores material selection criteria in microtechnology design and the influence of fatigue on material limits.