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Grain Growth & Microstructure
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Related lectures (31)
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Liquid Phase Sintering: Fundamentals & Applications
Explores the fundamentals of liquid phase sintering, emphasizing optimal strategies for achieving high-density ceramics.
Plastic Deformation and Energy Accumulation
Explores energy accumulation in materials during plastic deformation and the effects of dislocation density and heating.
Grain Growth & Liquid Phase Sintering
Explores grain growth, dopants effect, pore evolution, and liquid phase sintering in ceramics.
Grain Growth & Microstructures: Liquid Phase
Explores grain growth during sintering and its effects on ceramics' properties.
Mechanical Behavior of Materials
Explores large deformations, dislocations, grain boundaries, and material behavior under different conditions.
Dislocation Movement and Recrystallization
Covers dislocation movement, obstacle effects, solute influence, and recrystallization kinetics.
Thermal Treatments: Dislocations, Grain Boundaries, and Hardening Mechanisms
Explores dislocations, grain boundaries, and hardening mechanisms in metals through thermal treatments and recrystallization.
Path Collective Variables for Structural Phase Transformations
Explores path collective variables for sampling structural phase transformations, focusing on solid-solid transformations and topologically close-packed phases in complex alloys.
Sintering Basics: Solid State Grain Growth & Microstructures
Explores the fundamentals of sintering in ceramics, covering matter transport mechanisms, stages of sintering, and microstructure evolution.
Sintering Process: Mechanisms and Stages
Explores the sintering process, focusing on mechanisms, stages, and densification competition, revealing insights into solid-state sintering.