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Biomechanical Tissues: Non-linear Constitutive Laws
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Related lectures (43)
Normal Stresses: Internal Stress and Strain
Introduces internal stress and strain, material properties, and design considerations for axial loads and direct shear.
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Deformation and Strain Tensors
Explores deformation and strain tensors, Lagrange representation, elasticity theory, and the divergence theorem.
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Orthotropic Continuum Damage Models
Explores orthotropic continuum damage models, stress-strain behavior, crack representation, and concrete simulation.
Introduction to Structural Mechanics
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Covers the basics of structural mechanics, including static forces, stress, strain, and structural elements like bars, cables, trusses, and beams.
Linear Elasticity: 3D
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Covers linearity between stress and strain in 3D and isotropic linear elasticity equations.
3D Linear Elasticity & Beams
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Covers 3D linear elasticity, stress, strain, beams' behavior under loads, and torsion.
Stiffness vs Strength: Deformation and Load
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Covers stiffness, strength, strain, stress, and strain measurement in structural mechanics.
Generalized Hooke Law: Deformation and Stiffness Matrices
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Explores the Generalized Hooke Law, stiffness matrices, and deformation effects in materials.
Introduction to Structural Mechanics: Stress and Strain
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Covers stress equilibrium, strain, and constitutive equations in 2D and 3D.
Relative Deformation in 3D: Strain Matrix
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Explores relative deformation in 3D through strain matrix and displacement gradient, emphasizing constraints, stress-strain relations, and equilibrium equations.
Nonlinear beam theory
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Covers strain-displacement relations, equilibrium equations, and energy functional in nonlinear beam theory with small strain and moderate rotation.
Plates I: Deformation, Strain, Stress, and Wrinkling
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Covers deformation, strain, stress, and wrinkling in plates under pure bending, exploring applications and bending stiffness.
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.
Nonlinear Beam Theory: Mechanics of Slender Structure
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Covers strain-displacement relations, simplifications, constitutive relations, equilibrium equations, and circular rings.
Rheology: Constitutive Law and Cats
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Explores the rheology of materials, drawing parallels between cats' behavior and material properties.
Material Properties and Stress-Strain Curves
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Explores material properties, stress-strain curves, stress concentration, and failure criteria in structural mechanics.
Introduction to Structural Mechanics
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Covers the fundamentals of structural mechanics, including axial loading, stress, strain, and generalized uniaxial loading.
Deformations and Constraints
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Covers relative deformations, flexibility matrix, stress relations, and internal forces in structures.
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