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Lecture
Laminate Analysis: Introduction
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Related lectures (32)
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3D Linear Elasticity & Beams
Introduces 3D linear elasticity, beams, dimensional analysis, and mechanics of slender structures.
Elasticity: Stiffness and Compliance Tensors
Covers stiffness and compliance tensors, Hooke's law, stress-strain relations, and material symmetries.
Mechanics of Slender Structures: Elasticity, Plates, Shells
Covers the dimensional reduction in slender structures, constitutive laws, and mechanics of plates and shells.
Linear Elasticity: Spherically-Symmetric Problems
Explores linear elasticity in spherically-symmetric problems and axially-symmetric cylindrical shells.
Homogenization Theory: Isotropic Phases and Laminated Plates
Explores the rigorous bounds on effective properties of isotropic phases and laminated plates.
Macromechanics of Orthotropic Composites
Explores the behavior of orthotropic composites under plane stresses and the elasticity of anisotropic materials.
Fracture Mechanics: Crack Growth and Weakest Link
Explores fracture mechanics, crack growth, and the weakest link theory, emphasizing the statistical distribution of crack sizes and the significance of the largest crack in material failure.
Finite Element Analysis: Advanced Mechanisms in Engineering
Provides an overview of advanced mechanisms analysis using Finite Element Method and Finite Element Analysis in engineering applications.
Laminate Analysis: Stresses and Failures
Covers the analysis of stresses and failures in laminated composites, including the computation of stresses at the ply level.
Homogenization with Eshelby: Multiple Inclusions, Effective Moduli
Explores homogenization with Eshelby, analyzing multiple inclusions and effective moduli in composite materials.