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Lecture
Diffusion in Alloys
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Related lectures (30)
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Microstructural Evolution in Ni Alloys
Explores the microstructural evolution, heat treatment, mechanical properties, and challenges in designing Ni superalloys and Ti 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.
Biomechanics in Organ-on-Chip Systems
Explores biomechanics in organ-on-chip systems, covering advantages, fabrication methods, mechanical stimuli, and cell analysis techniques.
Idealized Surfaces: Symmetric Tilt Grain Boundaries
Explores symmetric tilt grain boundaries, twist grain boundaries, and the atomistic view of tilt grain boundaries.
Computational Alloy Design
Explores the design of high-performance alloys, the materials development process, multi-component systems, ICME, CALPHAD approach, and experimental phase diagram investigation.
A Random Walk Through Random Materials
Explores random materials, solutes, and their impact on mechanical performance, including strength, toughness, and fatigue.
Real Surfaces Reconstructions
Explores reconstructions in real surfaces, kinetic defects, and screw dislocations in crystal growth.
Taylor Impact and Shear Banding
Explains the impact of different structures on mechanical properties and introduces shear banding.
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.
Diffusion in Alloys: Diluted and Binary Alloys
Explores diffusion in diluted and binary alloys, phase separation, and the impact of concentration on intermolecular forces.