Starting a new Lecture Notes Series on Mechanics of Fiber Reinforced Polymer Composite Structures
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Mechanics of Fiber Reinforced Polymer Composite Structures By Lecture Notes together!
Lecture 2: Lec 1: Composite Materials - Introduction
Lecture 3: Lec 2: Composite Materials - Classification
Lecture 4: Lec 3: Anisotropic Elasticity
Lecture 5: Lec 4: Orthotropic Materials
Lecture 6: Lec 5: Hooke’s Law for 2D Lamina
Lecture 7: Lec 6: Engineering Constants for 2D Lamina
Lecture 8: Lec 7: Strength Failure Criteria - Part I
Lecture 9: Lec 8: Strength Failure Criteria - Part II
Lecture 10: Lec 9: Hygrothermal Behavior of Lamina
Lecture 11: Lec 10: Introduction and Terminologies
Lecture 12: Lec 11:Evaluation of Elastic Moduli
Lecture 13: Lec 12: Evaluation of Longitudinal Strength
Lecture 15: Lec 14: Evaluation of Hygrothermal Properties
Lecture 16: Lec 15: Elasticity Approach
Lecture 17: Lec 16: Experimental Evaluation
Lecture 18: Lec 17: Laminate - Introduction
Lecture 19: Lec 18: Classical Lamination Theory – Part I
Lecture 20: Lec 19: Classical Lamination Theory – Part II
Lecture 22: Lec 21: Special Classes of Laminates
Lecture 23: Lec 22: Engineering Constants of Laminates
Lecture 24: Lec 23: Hygrothermal Behaviour of Laminates
Lecture 25: Lec 24: Analysis of Laminates
Lecture 26: Lec 25: Failure of Laminates
Lecture 27: Lec 26: Failure Analysis under Combined Loading
Lecture 28: Lec 27: Design Example I
Lecture 29: Lec 28: Design Example II
Lecture 30: Lec 29: Interlaminar Stresses- Delamination
Lecture 31: Lec 30: Prediction of Delamination
Lecture 32: Lec 31: Transverse Deflection
Lecture 33: Lec 32: Buckling and Free Vibration