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Lecture
Deformation and Diffusion in Crystals
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Related lectures (38)
Kinetics of Dislocations
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Plastic Deformation: Introduction to the Dislocation Model
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Mechanical Properties of Materials: Elastic Limit and Dislocations
Covers the elastic limit, dislocations, and plasticity mechanisms of materials.
Materials Properties: Ductility, Hardness, Toughness
Explores materials' ductility, hardness, and toughness, covering dislocations, hardening mechanisms, and polymer behavior.
Plastic Deformation and Energy Accumulation
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Explores energy accumulation in materials during plastic deformation and the effects of dislocation density and heating.
Cyclic Deformation and Recrystallization
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Explores cyclic deformation, dislocation structures, fatigue resistance, and recrystallization kinetics.
Mechanical Behavior of Materials
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Explores large deformations, dislocations, grain boundaries, and material behavior under different conditions.
Dislocation Movement and Recrystallization
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Covers dislocation movement, obstacle effects, solute influence, and recrystallization kinetics.
Deformation and Dislocations
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Explores the sliding of dislocations in single crystals, plastic deformation, and stress fields induced by dislocations.
Lamination: Deformation, Ductility, and Dislocations
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Explores lamination, ductility, plastic deformation, and dislocations in materials, emphasizing the effects of strain rate and temperature.
Deformation and Rupture of Materials
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Explores the deformation and rupture of materials, including dislocation density, plastic deformation, and stress-strain relationships.
Geometrically Necessary Dislocations in Materials
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Explains geometrically necessary dislocations in materials and their role in reducing work hardening.
Plastic Deformation and Work Hardening
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Explores plastic deformation, work hardening, and strategies to reduce hardening in materials.
Dislocations and Deformation
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Explores dislocations in crystals, deformation mechanisms, and the effects of obstacles on dislocation movement.
Plasticity Physics of Single Crystals
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Explores plasticity in single crystals, including mechanisms of plastic flow and strain hardening, with a focus on dislocation behavior and geometrically necessary dislocations.
Mechanical Behavior of Materials: Deformation & Fatigue
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Explores deformation mechanisms, cyclic loading, and fatigue phenomena in materials.
Dislocation Mechanisms: Part 4
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Explores dislocation mechanisms in crystals, including sliding plane deviations and screw dislocations.
Mechanical Properties & Strengthening Mechanisms
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Explores mechanical properties, plastic deformation, dislocations, strengthening mechanisms, and high temperature plasticity in alloys.
Thermally Activated Dislocation Motion
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Explores thermally activated dislocation motion and physically based constitutive models in materials at high strain rates.
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