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Lecture
Axial Constraints and Deformations
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Related lectures (39)
Plates I: Deformation, Strain, Stress, and Wrinkling
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Covers deformation, strain, stress, and wrinkling in plates under pure bending, exploring applications and bending stiffness.
Deformable Bodies: Axial Loading (1D)
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Covers equilibrium positions, stress, strain, material properties, and axial loading in deformable bodies.
Stress and Deformation: Understanding Material Behavior
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Explores stress, strain, elasticity, plasticity, and material behavior, emphasizing the importance of dislocations and microstructure.
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 in Materials
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Corrects a mistake made in a previous class regarding materials deformation.
Material Properties and Stress-Strain Curves
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Explores material properties, stress-strain curves, stress concentration, and failure criteria in structural mechanics.
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.
Generalized Hooke Law: Deformation and Stiffness Matrices
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Explores the Generalized Hooke Law, stiffness matrices, and deformation effects in materials.
Linear Elasticity in 3D: Beam Bending
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Covers linear elasticity in 3D, focusing on beam bending and stress-strain behavior of materials.
Solid Mechanics Principles: Eigenstrains
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Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
Finite & Infinite Deformation: Key Distinction
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Explains the geometric interpretation of eigen vectors and values in material deformation.
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.
Nonlinear beam theory
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Covers strain-displacement relations, equilibrium equations, and energy functional in nonlinear beam theory with small strain and moderate rotation.
Isotropic Continuum Damage Models
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Explores isotropic continuum damage models in quasi-brittle materials, covering damage evolution, localization, stress-strain relationship, and limitations.
IMesh and iConc Tutorial
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Covers the tutorial for iMesh and iConc, focusing on creating Finite Element Mesh for concrete structures.
Continuum Mechanics: Modeling Deformation and Flow
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Covers the fundamentals of Continuum Mechanics, focusing on modeling deformation and flow in materials.
Fracture Mechanics: Introduction and Crack Analysis
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Covers fracture mechanics fundamentals, including crack analysis and growth conditions.
Circular Economy: Strategies for Sustainability
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Delves into sustainability strategies, the circular economy, climate change impact, and challenges, emphasizing the importance of a circular industrial sector.
Magnetic Materials: Introduction
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Covers the fundamentals of magnetic materials, including H-fields and demagnetization factors.
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