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Solid solution strengthening
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Related lectures (31)
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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.
Plasticity: Mechanisms of Metals and Polymers
Covers the plasticity mechanisms of metals and polymers, including dislocations, solid solution hardening, and work hardening.
Aluminum Alloys: Mechanical Properties and Processing Techniques
Provides an overview of aluminum alloys, focusing on their mechanical properties and processing techniques, including the Al-Mg and Al-Si systems.
Phase Transformations in Alloys
Explores phase transformations in metals and alloys, discussing kinetics, structural hardening, and dislocation movement obstacles.
Aluminum Alloys: Mechanical Properties and Processing Techniques
Provides an overview of aluminum alloys, focusing on their mechanical properties, processing techniques, and challenges during casting.
Precipitation Hardening in Alloys
Explores precipitation hardening in alloys, emphasizing the control of precipitation kinetics and the role of dislocations in strengthening mechanisms.
Mechanical Behavior of Polymers: Ductility and Hardening
Explores the mechanical behavior of polymers, emphasizing ductility and hardening mechanisms.
Diffusion of Matter: Atoms and Heat
Delves into the diffusion of matter, atoms, and heat in materials.
Diffusion: Atomic Movement and Material Evolution
Covers the fundamental concept of diffusion in materials, emphasizing atomic movement and its impact on material properties and evolution.
Interactions between Solute and Dislocation
Explores the influence of atoms in solid solution on dislocation movement and the nature of interactions between solute and dislocation.
Diffusion in Materials Science
Covers the concept of diffusion in materials science and its various applications.
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