Mechanics of Composite Materials with MATLAB

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Tài xế O-H
1 Introduction
1.1 Mechanics of Composite Materials
1.2 MATLAB Functions for Mechanics of Composite Materials
1.3 MATLAB Tutorial
2 Linear Elastic Stress-Strain Relations
2.1 Basic Equations
2.2 MATLAB Functions Used
Example 2.1
MATLAB Example 2.2
MATLAB Example 2.3
Problems
3 Elastic Constants Based
on Micromechanics
3.1 Basic Equations
3.2 MATLAB Functions Used
Example 3.1
MATLAB Example 3.2
MATLAB Example 3.3
Problems
4 Plane Stress
4.1 Basic Equations
4.2 MATLAB Functions Used
Example 4.1
MATLAB Example 4.2
MATLAB Example 4.3
Problems
5 Global Coordinate System
5.1 Basic Equations
5.2 MATLAB Functions Used
Example 5.1
MATLAB Example 5.2
MATLAB Example 5.3
Problems
6 Elastic Constants Based
on Global Coordinate System
6.1 Basic Equations
6.2 MATLAB Functions Used
Example 6.1
MATLAB Example 6.2
MATLAB Example 6.3
Problems
7 Laminate Analysis – Part I
7.1 Basic Equations
7.2 MATLAB Functions Used
MATLAB Example 7.1
MATLAB Example 7.2
Problems
8 Laminate Analysis – Part II
8.1 Basic Equations
8.2 MATLAB Functions Used
Example 8.1
MATLAB Example 8.2
MATLAB Example 8.3
Problems
9 E?ective Elastic Constants of a Laminate
9.1 Basic Equations
9.2 MATLAB Functions Used
Example 9.1
MATLAB Example 9.2
MATLAB Example 9.3
Problems
10 Failure Theories of a Lamina
10.1 Basic Equations
10.1.1 Maximum Stress Failure Theory
10.1.2 Maximum Strain Failure Theory
10.1.3 Tsai-Hill Failure Theory
10.1.4 Tsai-Wu Failure Theory
11 Introduction to Homogenization
of Composite Materials
11.1 Eshelby Method
Problems
12 Introduction to Damage Mechanics
of Composite Materials
12.1 Basic Equations
12.2 Overall Approach
12.3 Local Approach
12.4 Final Remarks
Problems
Solutions to Problems
References
Contents of the Accompanying CD-ROM

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