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Sintering Basics: Solid State Grain Growth & Microstructures
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Related lectures (30)
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Grain Growth & Microstructure
Explores sintering, grain growth, dopants effects, and pore evolution in ceramics.
Solid-Solid Interfaces: Understanding Grain Boundaries and Interfaces
Delves into solid-solid interfaces, exploring grain boundaries, material properties, and interface geometry.
Dislocation Movement and Recrystallization
Covers dislocation movement, obstacle effects, solute influence, and recrystallization kinetics.
Grain Growth & Microstructures: Liquid Phase
Explores grain growth during sintering and its effects on ceramics' properties.
Configurational Forces: Defects in Materials
Explores configurational forces in materials, emphasizing equilibrium conditions and defect interactions.
Atomic Bonding: Course Introduction and Chapter 1
Covers course organization, historical material influence, and dislocation interaction processes.
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.
Grain Boundaries: Structure and Properties
Explores the structure and properties of grain boundaries in materials, focusing on coherent and semi-coherent boundaries.
Defects in Materials: Structure and Behavior
Explores defects in materials, grain boundaries, grain coarsening kinetics, the glass transition, and vacancy creation.
Thermal Treatments: Dislocations, Grain Boundaries, and Hardening Mechanisms
Explores dislocations, grain boundaries, and hardening mechanisms in metals through thermal treatments and recrystallization.