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Lecture
Hardening Elasto-Plasticity
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Hardening Elasto-Plasticity
Covers plastic flow, elastic domain, yield function, hardening rule, and stress-strain relationship in hardening elasto-plasticity models.
Introduction to Plasticity Models
Introduces idealized material models, yield surfaces, and elastoplasticity concepts, including failure typologies and cyclic responses.
Structural Mechanics: Beam Bending and Boundary Conditions
Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Introduction to Structural Mechanics
Covers the basics of structural mechanics, including static forces, stress, strain, and structural elements like bars, cables, trusses, and beams.
Introduction to Structural Mechanics
Covers the fundamentals of structural mechanics, including axial loading, stress, strain, and generalized uniaxial loading.
Mechanical Properties and Deformation Analysis
Explores mechanical properties, deformation analysis, and material behavior under various conditions, emphasizing the trade-off between hardness and ductility.
Plasticity: Bending of an Elastic-Perfectly-Plastic Beam
Covers the bending of an elastic-perfectly-plastic beam and its key characteristics.
Generalized Hooke Law: Deformation and Stiffness Matrices
Explores the Generalized Hooke Law, stiffness matrices, and deformation effects in materials.
Linear Elasticity: 3D
Covers linearity between stress and strain in 3D and isotropic linear elasticity equations.
Solid Mechanics II + Material Models
Explores material models for elastic objects, including inverse shape optimization and hyperelasticity.