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Aerospace Engineering
Composite Materials and Structures (Web)
Syllabus
Co-ordinated by :
IIT Kanpur
Available from :
2012-06-26
Lec :
1
Modules / Lectures
Introduction to Composites
Definition and Introduction
Reinforcement: Materials and Forms
Reinforcement: Materials
Matrix Materials
Terminologies
Applications
Fabrication Processes
Fabrication Processes
Concepts of Solid Mechanics
Basic Concepts
3D Constitutive Equations
Constitutive Relations: Generally Anisotropy to Orthotropy
Constitutive Relations: Transverse Isotropy and Isotropy
Constitutive Relations for Orthotropic Materials and Stress-Strain Transformations
Stiffness, Compliance Transformation and Hygro-thermo-elastic Constitutive Relation
Plane Stress Constitutive Equations
2-Dimensional Lamina Analysis
Lamina Engineering Constants
Laminate Theory
Introduction to Classical Plate Theory
Laminate Constitutive Relations
Laminate Engineering Constants
Hygro -thermal Laminate Theory
Failure and Damage
Damage Mechanisms in Unidirectional Composites
Macroscopic Failure Theories
Macroscopic Failure Theories
Macroscopic Failure Theories
Micromechanics
Tensile Fibre Mode Compressive Fibre Mode
Strength of Materials Approach
Concepts of Equivalent Homogeneity, Volumetric Averaging and Standard Mechanics
Hill's Concentration Factors Approach
Homogenization
Background of Concentric Cylinder Assemblage Model
CCA Model: Effective Axial Modulus and Poisson's Ratio
CCA Model: Effective Plane Strain Bulk Modulus
CCA Model: Effective Axial Shear Modulus
Three Phase CCA Model: Effective Transverse Shear Modulus
Self Consistent, Mori -Tanaka and Halpin -Tsai Models
Composite Testing
Background to Mechanical Testing
Quality Assessment and Physical Properties
Tensile and Compressive Testing
Shear Testing
Shear and Flexural Testing
Design Considerations in Laminated Composites
Design Considerations in Composites
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Design Considerations in Laminated Composites
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