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Lecture
Bending Beams: Constraints and Relative Deformation
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Related lectures (38)
Normal Stress in Beams: Bending Analysis
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Explores normal stresses in beams during bending and the calculation of the second moment of area for various shapes.
Force Detection: Nonlinear Effects and Composite Beams
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Explores force detection in beams, including nonlinear effects, built-in tension, and composite beams.
Nonlinear Beam Theory: Mechanics of Slender Structure
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Covers strain-displacement relations, simplifications, constitutive relations, equilibrium equations, and circular rings.
Bending of Straight Beams
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Explores bending of beams, strain energy, shear force, and deflection calculations.
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.
Mechanics of Kirchhoff Rods: Finite Strain and Rotation Theory
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Explores the theory of finite strain and rotation in Kirchhoff rods, covering inextensible strains, finite rotations, and equilibrium.
3D Linear Elasticity & Beams
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Introduces 3D linear elasticity, beams, dimensional analysis, and mechanics of slender structures.
Dimensional Analysis & Scaling Laws
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Covers dimensional analysis, physical similarity, and structural mechanics, emphasizing the importance of scaling laws in solving complex problems.
Internal Equilibrium of Solids
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Covers internal equilibrium of solids, stress analysis, beam deformation, and rupture criteria.
Plasticity: Bending of an Elastic-Perfectly-Plastic Beam
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Covers the bending of an elastic-perfectly-plastic beam and its key characteristics.
Plates II: Föppl-von Kármán Equations
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Explores the theory of plates, including bending and stretching energies, and the Föppl-von Kármán Equations.
Plates I: Deformation and Energy
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Covers the deformation of plates in pure bending, total strain energy, and wrinkling phenomena, exploring applications and implications of substrate stiffness on wrinkling.
Untitled
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The stress tensor: representation and properties
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Explores the stress tensor representation, interpretation, and properties, emphasizing the sign convention for normal and shear stresses.
Introduction to Structural Mechanics
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Covers the fundamentals of structural mechanics, including axial loading, stress, strain, and generalized uniaxial loading.
Rotation in Two Dimensions
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Explores rotation in two dimensions, covering vector product, moment of a force, statics, and kinetic energy theorems, with practical examples.
Calculating Deformations: Virtual Work Principles
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Discusses the principles of calculating deformations in structures using virtual work methods and the impact of temperature on material behavior.
Kinematics: Motion and Deformation of Bodies
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Covers kinematics, focusing on motion and deformation of bodies independently of forces, including deformation gradient and stretch ratios.
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