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Solid Mechanics II + Material Models
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Related lectures (44)
Linear Elasticity: Equations of Linear Elasticity
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Covers the equations of linear elasticity for static problems with small strain, emphasizing uniqueness of solutions and Navier's Equations.
Linear Elasticity (3D)
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Explores linear elasticity in 3D, stress-strain relationship, isotropic materials, and shear stress importance.
Review: 3D Linear Elasticity & Beams
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Covers the review of 3D Linear Elasticity and beams, focusing on mechanics of slender structures.
Mechanics of Slender Structures: Elasticity, Plates, Shells
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Covers the dimensional reduction in slender structures, constitutive laws, and mechanics of plates and shells.
Elasticity and Beam Bending
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Explores linear elasticity, stress-strain relationships, and beam bending kinematics with a focus on stress tensors and internal forces.
Energy Equilibrium and Newton CG Method
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Covers continuum mechanics, linear elasticity, force balance, divergence, finite element discretization, energy minimization, and Newton's method.
Elasticity: Stiffness and Compliance Tensors
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Covers stiffness and compliance tensors, Hooke's law, stress-strain relations, and material symmetries.
Internal Equilibrium of Solids
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Covers the theory of elasticity, internal equilibrium, stress, and strain in deformable solid bodies.
Introduction to Structural Mechanics: Stress and Strain
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Covers stress equilibrium, strain, and constitutive equations in 2D and 3D.
Structural Mechanics: Beam Bending and Boundary Conditions
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Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Continuum Mechanics: Theory and Applications
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Explores continuum mechanics, covering laws of thermodynamics, stress analysis, energy conservation, constitutive laws, and material response.
Introduction to Structural Mechanics
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Introduces key concepts in structural mechanics, such as determinate and indeterminate systems, linear superposition, and stress-strain relationships.
Elasticity: Hooke's Law
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Covers Hooke's Law in elasticity, discussing stiffness and compliance tensors.
Elasticity: Deformation and Strain
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Explores stress, strain, equilibrium, and Hooke's law in elasticity.
Solid Mechanics Principles: Eigenstrains
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Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
Structural Mechanics Fundamentals
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Covers the fundamentals of structural mechanics, including materials, mechanics vocabulary, the Eiffel Tower, and the collapse of the Quebec Bridge.
Boundary Value Problems in Elasticity
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Explores Boundary Value Problems in Elasticity, stress-strain relations, and the use of Green's function in solving elasticity problems.
Elastic Deformation: Material Properties
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Explores material properties, stress, strain, and deformation gradient in elastic deformation.
Anisotropic Elastic Materials
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Covers anisotropic elastic materials, examples, and Voigt notation for stress and strain components, emphasizing the compliance matrix for isotropic materials.
Internal Equilibrium of Solids
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Covers internal equilibrium of solids, stress analysis, beam deformation, and rupture criteria.
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