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Mechanics of Fibrous Composites - Mahmood Husein Datoo

Mechanics of Fibrous Composites

Hardcover ISBN: 9781851666003
Number Of Pages: 636

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A guide to designing load-bearing structural components made from composite fibrous materials; especially useful for practising engineers or engineering students with no prior knowledge but in need of a guide.

1 Introduction.- 1.1 Fibrous Composites.- 1.2 FRP Constituents.- 1.3 Reinforcement Types.- 1.4 Types of Materials.- 1.5 Terminology.- 2 Ply Stiffness Analysis.- 2.1 Isotropic Ply.- 2.2 Specially Orthotropic Ply.- 2.3 Generally Orthotropic Ply.- 2.4 Transformation of Elastic Constants.- 2.5 Typical Elastic Properties.- 3 Ply Strength Analysis.- 3.1 Isotropic Ply.- 3.2 Orthotropic Ply.- 3.3 Failure Criteria.- 3.4 Sign of Shear Stresses.- 3.5 Choice of Failure Criterion.- 3.6 Typical Strength Properties.- 4 Layered Laminate.- 4.1 Beam Constitutive Equation.- 4.2 Laminate Constitutive Equation.- 4.3 Laminate Notation.- 4.4 Equivalent Elastic Constants.- 5 Laminate Stiffness Analysis.- 5.1 Stiffness Formulation Procedure.- 5.2 Laminate Configuration Types.- 5.3 Symmetric SOPL: Isotropic Plies.- 5.4 Symmetric SOPL: Specially Orthotropic Plies.- 5.5 Symmetric SOPL: Generally Orthotropic Plies.- 5.6 Symmetric MOPL: Isotropic Plies.- 5.7 Symmetric MOPL: Generally Orthotropic Plies.- 5.8 Symmetric MOPL: Cross-ply.- 5.9 Symmetric MOPL: Angle-ply.- 5.10 Symmetric MOPL: Quasi-isotropic.- 5.11 Antisymmetric MOPL: Cross-ply.- 5.12 Antisymmetric MOPL: Angle-ply.- 5.13 Estimated Membrane Elastic Constants.- 5.14 Laminate Stiffness: Summary.- 6 Laminate Strength Analysis.- 6.1 First-Ply-Failure (FPF) Procedure.- 6.2 FPF: Symmetric Laminate-Membrane Load.- 6.3 FPF: Symmetric Laminate-Bending Load.- 6.4 FPF: Unsymmetric Laminate-Membrane Load.- 6.5 Last-Ply-Failure (LPF) Procedure.- 6.6 LPF: Complete Ply Failure-Membrane Load.- 6.7 LPF: Partial Ply Failure-Membrane Load.- 6.8 LPF: Complete Ply Failure-Bending Load.- 6.9 Estimated Laminate Strength.- 6.10 Laminate Strength: Summary.- 7 Residual Stresses.- 7.1 Compound Isotropic Beam.- 7.2 Laminate Thermal Stresses.- 7.3 Determining Thermal Residual Stresses.- 7.4 Constant Temperature Distribution.- 7.5 Hygroscopic Diffusion Mechanism.- 7.6 Laminate Hygroscopic Stresses.- 7.7 Constant and Linear Moisture Distribution.- 7.8 Influence on Laminate Strength.- 7.9 Typical Physical Properties.- 8 Thin-Walled Composite Sections.- 8.1 Assumptions and Axes Systems.- 8.2 Axial Force.- 8.3 Symmetrical Bending.- 8.4 Unsymmetrical Bending.- 8.5 Shear Forces.- 8.6 Torsion of Open Sections.- 8.7 Torsion of Closed Sections.- 9 Interlaminar Stresses.- 9.1 Free Edge Effects.- 9.2 Interlaminar Stress: fxz.- 9.3 Interlaminar Stresses: fyz and fz.- 9.4 Prediction Methods.- 9.5 Effect of Different Stacking Sequences.- 10 Miscellaneous Topics.- 10.1 Holes in Laminates.- 10.2 Buckling of Laminates.- 10.3 Computer Aided Laminate Analysis.- 10.4 FE Method: Line Elements.- 10.5 FE Method: Shell Elements.- 10.6 Test Methods.

ISBN: 9781851666003
ISBN-10: 1851666001
Audience: Professional
Format: Hardcover
Language: English
Number Of Pages: 636
Publisher: Kluwer Academic Publishers Group
Country of Publication: NL
Dimensions (cm): 25.4 x 17.78  x 3.81
Weight (kg): 1.09