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Lecture
Stamping and Cutting: Fundamentals
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Related lectures (32)
Normal Stresses: Internal Stress and Strain
Introduces internal stress and strain, material properties, and design considerations for axial loads and direct shear.
Solid Mechanics: Modeling and Simulation
Covers the fundamentals of solid mechanics and modeling techniques for stress analysis.
Yield Criteria for Ductile Materials
Covers strain measurements, plane strain conditions, and yield criteria for ductile materials.
Principal Stresses and Mohr's Circle
Explores principal stresses, Mohr's Circle, triaxial stress, Hooke's Law, and strain measurements.
Fracture and Toughness of Materials
Covers stress intensity, fracture, and toughness of materials, including the behavior of ductile and brittle materials.
Mechanics of Composite Beams
Explores the Transformed-Section Method for analyzing bending stresses in composite beams.
Laminate Analysis: Stresses and Failures
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Covers the analysis of stresses and failures in laminated composites, including the computation of stresses at the ply level.
Linear Elasticity (3D)
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Explores linear elasticity in 3D, stress-strain relationship, isotropic materials, and shear stress importance.
Material Properties and Stress-Strain Curves
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Explores material properties, stress-strain curves, stress concentration, and failure criteria in structural mechanics.
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.
Thermo-mechanics: Thermal and Mechanical Problems
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Explores thermal and mechanical problems in thermo-mechanics, covering the heat equation, total strain, and stress analysis modeling.
Linear Elasticity in 3D: Beam Bending
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Covers linear elasticity in 3D, focusing on beam bending and stress-strain behavior of materials.
Simple Traction or Compression
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Covers general notions and hypotheses of simple traction or compression, stress analysis, and strain energy in materials.
Dislocation Mechanics
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Explores the mechanics of dislocations in materials, including their movement, interaction, and impact on material properties.
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.
Solid Mechanics Principles: Eigenstrains
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Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
Shear Behavior: Evaluation and Laws
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Explores material behavior in shear, shear forces, stress, equilibrium, shear laws, tension/compression, plane shear, shear rate, constrained slip, and shear strength.
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.
Material Properties: Stress Analysis
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Covers material properties, stress-strain curves, failure criteria, and stress analysis.
Elasticity and Beam Bending
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Explores stress, strain, elasticity, and beam bending in structural mechanics.
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