Analysis of Composite Laminates: Theories and Their Applications
Autor Dinghe Lien Limba Engleză Paperback – 10 mar 2022
This volume offers a comprehensive guide to the state-of-the-art in the analysis and applications of composite laminates, which play a critical role in all types of engineering, from aerospace to subsea structures, including in medical prosthetics, circuit boards and sports equipment.
- Presents a guide to the analysis and application of advanced composite materials
- Gives detailed exposition of plate/shell theories and their implementation in finite element code architecture
- Considers the robustness, effectiveness and applications aspects of laminated plate/shell methods
- Gives hands-on experience of code architecture, providing composite analysis software which can be plugged in to commercial applications
- Presents experimental research alongside methods, laminate theories, analytic solutions, and finite element models
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Specificații
ISBN-13: 9780323908047
ISBN-10: 0323908047
Pagini: 542
Ilustrații: 260 illustrations (50 in full color)
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0323908047
Pagini: 542
Ilustrații: 260 illustrations (50 in full color)
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. An introduction of composite is presented, including history and applications, constituents and basic analysis schemes
2. Elasticity fundaments used in this book are briefly introduced, including the fundamental equations of elasticity, general Hook’s low and energy principles of elasticity
3. Shear deformation theories are introduced, including Classical Laminated Plate Theory (CLPT), First-order shear deformation theory (FSDT), High-order Shear Deformation Theory (HSDT) and Higher-order Shear Deformation Theory (HrSDT)
4. State space theory is introduced. The Hamilton canonical equation is deduced from the differential and variational schemes for the laminated composite plates and shells. The solving methods are developed based on
exact solution, finite element method and meshless method. In addition, the state space theory is extended into bonding imperfection of composites
5. Layerwise theories are introduced, including Integrate layerwise methods and Discrete layerwise theories.
6. Extended layerwise method is established for the composite laminated beams, plates and shells with multiple delaminations and transverse cracks
7. The fracture and damage mechanics of composites
8. The multi-physical fracture problems are presented, including thermo-mechanical, piezoelectric, chemo-mechanical and chemo-thermomechanical
coupling
9. The analysis methods of stiffened and sandwich structures are studied based on state space theory, layerwise method and extended layerwise method
10. The progressive failure analysis problems of composite laminated plates, stiffened plates and sandwich plates are studied by the continuous damage mechanics and layerwise theory
11. The static responses and frequencies sensitivity analysis of laminated composites based on state space theory, layerwise method are discussed, including composite plates, stiffened plate/shells and sandwich plates
2. Elasticity fundaments used in this book are briefly introduced, including the fundamental equations of elasticity, general Hook’s low and energy principles of elasticity
3. Shear deformation theories are introduced, including Classical Laminated Plate Theory (CLPT), First-order shear deformation theory (FSDT), High-order Shear Deformation Theory (HSDT) and Higher-order Shear Deformation Theory (HrSDT)
4. State space theory is introduced. The Hamilton canonical equation is deduced from the differential and variational schemes for the laminated composite plates and shells. The solving methods are developed based on
exact solution, finite element method and meshless method. In addition, the state space theory is extended into bonding imperfection of composites
5. Layerwise theories are introduced, including Integrate layerwise methods and Discrete layerwise theories.
6. Extended layerwise method is established for the composite laminated beams, plates and shells with multiple delaminations and transverse cracks
7. The fracture and damage mechanics of composites
8. The multi-physical fracture problems are presented, including thermo-mechanical, piezoelectric, chemo-mechanical and chemo-thermomechanical
coupling
9. The analysis methods of stiffened and sandwich structures are studied based on state space theory, layerwise method and extended layerwise method
10. The progressive failure analysis problems of composite laminated plates, stiffened plates and sandwich plates are studied by the continuous damage mechanics and layerwise theory
11. The static responses and frequencies sensitivity analysis of laminated composites based on state space theory, layerwise method are discussed, including composite plates, stiffened plate/shells and sandwich plates