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Solid Mechanics: Modeling and Simulation
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Related lectures (46)
Solid Mechanics: Modeling and Simulation
Introduces solid mechanics modeling and simulation using COMSOL Multiphysics.
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.
Flexible Probes: Mechanics and Design
Explores critical strain, bending mechanics, and strain calculation in flexible probes.
Normal Stresses: Internal Stress and Strain
Introduces internal stress and strain, material properties, and design considerations for axial loads and direct shear.
Solid Mechanics: Stress, Strain, Invariants
Explores stress, strain invariants, constitutive laws, failure criteria, and material properties in solid mechanics.
Comsol: Parallel plate capacitor
Focuses on modeling a parallel plate capacitor using Comsol, emphasizing clear project ideas and group collaboration.
Finite Element Analysis Basics
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Covers the basics of finite element analysis, including modeling techniques and unit consistency in CAD import.
Dislocation Mechanics
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Explores the mechanics of dislocations in materials, including their movement, interaction, and impact on material properties.
Finite Element Methodology
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Explores finite element methodology, covering geometric modeling, technical data, physical behavior assumptions, and mesh convergence studies.
Mechanics of Slender Structures: Elasticity & Buckling
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Explores 3D elasticity, beam bending, and buckling phenomena in slender structures.
Structural Mechanics: Understanding Structures' Behavior under Loads
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Covers the basics of structural mechanics, exploring how structures respond to loads and the factors influencing their behavior.
Classical Laminate Theory
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Covers Classical Laminate Theory for solving mechanics problems with multiple material layers, discussing displacements, strains, stresses, and equilibrium.
Solid Mechanics Principles: Eigenstrains
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Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
Internal Equilibrium of Solids
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Covers the theory of elasticity, internal equilibrium, stress, and strain in deformable solid bodies.
Mechanics of Slender Structures: Final Review and Overview
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Covers the main learning objectives of ME-411, focusing on dimensional analysis, scalings, and mechanical elements.
3D Linear Elasticity & Beams
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Introduces 3D linear elasticity, beams, dimensional analysis, and mechanics of slender structures.
Computational Inverse Design
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Explores computational inverse design of deployable structures and geometric computing for materials fabrication and engineering applications.
Laminate Analysis: Introduction
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Introduces laminate analysis, covering plane stress, rotation in 2D, and special laminates.
Elastic Solid Energy Computation
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Covers the computation of elastic energy in solid mechanics and equilibrium steps using conjugate gradients.
Meshing Algorithms Overview
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Provides an overview of meshing algorithms for generating quality meshes in CAD software.
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