TMM4175 Lightweight Design
Lightweight design
Mechanics of materials
Composites
Laminates
Finite element analysis
Case studies
Miscellaneous
TOC
Table of Contents
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TOC
Lightweight design
Lightweight materials
Materials selection
Shape selection
Safety and uncertainty
Tools
Mechanics of materials
Stress
Strain
Hooke's law
Transformations
Thermal expansion
Viscoelastic behavior
Hyperelastic behavior
Plastic-behavior
Concepts of strength
Plane stress
Composites
Fibers
Matrix materials
Geometrical aspects
Micro-mechanical models
Basic-strength-parameters
Material properties
Failure prediction
Failure criteria
Laminates
Assumptions
Loads & deformations
Computational procedures
Laminate stiffness matrix
Layer results
Effective properties
Thick laminates
Sandwich structures
Progressive damage
Interlaminar failure
Laminate optimization
Test methods
Manufacturing
Finite element analysis
Material models
Elements
Material orientation
Layered structures
Shell elements and laminate theory
Case studies
Lightweight drive shaft
Lightweight column
Lightweight panel
FEA tool for flexural stiffness
Crossbow
Trebuchet
Principal stresses and transformation
Linear displacement field
General transformation
Transformation by substitution of axes
Orientation of solid elements
On transverse isotropy
Fiber diameter distribution
Micro-mechanical finite element models
Elastic properties of woven plies
Elastic properties of CSM
Thin-walled pipes
Composite drive shaft
Elastic degradation of laminates
Free egde effects of laminates
Static FEA of a layered cantilever beam
FEA of a sandwich beam
Laminate optimization of in-plane load cases
Compression testing of UD composites
Miscellaneous
Python
Material library
Plot gallery
Abaqus scripts