Introduction
Overview, Admin.
Types of Mechanical Behavior
Material Selection
Elasticity
Ideal Linear Elasticity
Applications
Hooke's Law
Data for E
Measurement of Modulus
Lecture 2: Tensors, Stress Tensor
Tensors
Stress
Lecture 3: Stress, Strain Tensors, Tensor Transformations
Stress
Strain
Tensor Transformations
Lecture 4: Generalized Hooke's Law
Stiffness and Compliance Tensors
Elastic Strain Energy
Lecture 5: Physical Origin of Elastic Moduli
Crystalline Materials, Glasses
Rubbers
Lecture 6: Composites
Upper and Lower Bounds
Laminates/Thin Films
Lecture 7: Cellular Solids
Microstructure, Properties, Applications
Elastic Moduli
Trabecular Bone
Lecture 8: Introduction to Viscoelasticity
Introduction
Linear Viscoelasticity in Amorphous and Crystalline Polymers
Boltzmann Superposition Principle
Lecture 9: Spring-Dashpot Models
Spring-Dashpot Models
Dynamic Mechanical Measurements
Time-Temperature Equivalence for Amorphous Polymers
Lecture 10: Role of Diffusion; Biomaterials
Mechanism of Time-Dependent Deformation: Diffusion
Viscoelasticity in Biomaterials
Lecture 11: Continuum Plasticity
Introduction
Continuum Plasticity
Lecture 12: Continuum Plasticity (cont.)
Continuum Plasticity
Limit Analysis
Lecture 13: Continuum Plasticity (cont.)
Limit Analysis: Examples
Necking in Uniaxial Tension
Plasticity
Lecture 14: Dislocation Mechanics
Introduction
Dislocations - Geometrical Aspects
Lecture 15: Mechanism of Low Temperature Plasticity
Lattice Resistance (Peierls Stress)
Temperature Dependence of Yield Strength
Microstructural Strengthening Mechanisms in Metals
Lecture 16: Continuum Creep Response
Introduction
Lecture 17: Mechanisms of Creep Deformation
Diffusional flow
Power Law Creep
Deformation Mechanism Maps