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Lecture
Deformation and Rupture of Materials
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Related lectures (32)
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Geometrically Necessary Dislocations in Materials
Explains geometrically necessary dislocations in materials and their role in reducing work hardening.
Dislocations and Deformation
Explores dislocations in crystals, deformation mechanisms, and the effects of obstacles on dislocation movement.
Plastic Deformation and Energy Accumulation
Explores energy accumulation in materials during plastic deformation and the effects of dislocation density and heating.
Deformation and Rupture of Materials
Explores the deformation and rupture of materials, including dislocation density, plastic deformation, and stress-strain relationships.
Deformation and Diffusion in Crystals
Explores thermal activation, dislocations, diffusion, and the influence of solute atoms in crystal deformation.
Elastic Deformation: Materials Behavior & Homogenization
Explores elastic deformation, thermal expansion, and homogenization techniques in materials behavior.
Mechanical Properties of Materials: Elastic Limit and Dislocations
Covers the elastic limit, dislocations, and plasticity mechanisms of materials.
Materials: from Chemistry to Properties
Explores materials' behavior under stress, covering plastic deformation, elasticity, and strengthening mechanisms.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Deformation of Materials: Stresses, Deformations, and Elasticity
Explores the deformation of materials through stresses, deformations, and elasticity, focusing on the behavior of metals, ceramics, and polymers.