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Lecture
Mechanical Behavior of Materials: Deformation & Fatigue
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Related lectures (42)
Materials: from Chemistry to Properties
Explores materials' behavior under stress, covering plastic deformation, elasticity, and strengthening mechanisms.
Mechanical Properties of Materials: Elastic Limit and Dislocations
Covers the elastic limit, dislocations, and plasticity mechanisms of materials.
Elastic Deformation and Material Properties
Explores linear elastic deformation, modulus of elasticity, material behavior under stress, and measurement methods for elastic properties.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Flexible Probes: Mechanics and Design
Explores critical strain, bending mechanics, and strain calculation in flexible probes.
Plastic Deformation: Introduction to the Dislocation Model
Covers plastic deformation, dislocation model, stages, shear stress, distortion, dislocation loops, strain hardening, and crystal growth.
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.
Elasticity and Deformation
Covers stress, strain, modulus of elasticity, and material behavior under different loads.
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.
Shock Waves and Brittle Material Response
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Covers shock waves, brittle material response, phase transformation, and Hugoniot relationships in materials under stress.
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.
Introduction to Structural Mechanics
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Covers the fundamentals of structural mechanics, including axial loading, stress, strain, and generalized uniaxial loading.
Geometrically Necessary Dislocations in Materials
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Explains geometrically necessary dislocations in materials and their role in reducing work hardening.
Dislocations and Deformation
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Explores dislocations in crystals, deformation mechanisms, and the effects of obstacles on dislocation movement.
Cyclic Deformation and Recrystallization
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Explores cyclic deformation, dislocation structures, fatigue resistance, and recrystallization kinetics.
Elastic Deformation: Material Properties
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Explores material properties, stress, strain, and deformation gradient in elastic deformation.
Deformation and Dislocations
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Explores the sliding of dislocations in single crystals, plastic deformation, and stress fields induced by dislocations.
Plastic Deformation and Work Hardening
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Explores plastic deformation, work hardening, and strategies to reduce hardening in materials.
Axial Loading: Stress and Strain in Deformable Bodies
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Covers axial loading, stress, strain, and their implications in deformable bodies.
Introduction to Structural Mechanics
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Covers the basics of structural mechanics, including static forces, stress, strain, and structural elements like bars, cables, trusses, and beams.
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