Sandwich Structured Composites: Materials, Design and Applications: Woodhead Publishing Series in Composites Science and Engineering
Editat de Md Zillur Rahman, Kalim Deshmukh, Debes Bhattacharyyaen Limba Engleză Paperback – mar 2027
- Comprehensive coverage of foundational principles and the latest advancements in this field
- Covers core materials, face sheets, hybrid composites, junctions, and smart composites
- Inclusion of cutting-edge materials, characterization techniques, advanced manufacturing techniques, and structural health monitoring
- Focus on sustainability including environmental impact, lifecycle assessment, and bio-based materials.
- Covers multi-objective optimization and predictive modeling using AI
- Practical insights and real-world case studies in automotive, aerospace, construction, energy and biomedical fields
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Specificații
ISBN-13: 9780443447815
ISBN-10: 0443447810
Pagini: 1000
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
ISBN-10: 0443447810
Pagini: 1000
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
Cuprins
Part I: Fundamentals and Materials
1. Overview of Sandwich Structures: History, Concept, Advantages and Challenges
2. Core Materials for Sandwich Composites: Types, Properties, and Manufacturing
3. Face Sheet Materials: Metals, Polymers and Fiber-Reinforced Laminates
4. Theory of Sandwich Beams and Panels
5. Hybrid Sandwich Composites: Combining Core and Face Sheet Materials for Enhanced Performance
6. Junctions in Sandwich Composites: Bonding, Design Considerations, and Localized Failure Mechanisms
7. Smart Sandwich Composites: Sensing, Actuation and Self-Healing Capabilities
8. Bio-Inspired Designs in Sandwich Composite Structures
9. Nanomaterials in Sandwich Composites: Fabrication and Performance
Part II: Advanced Manufacturing and Characterization Techniques
10. Autoclave and Out-of-Autoclave Manufacturing of Sandwich Composites
11. Additive Manufacturing and 3D Printing of Sandwich Structures
12. Experimental Techniques for Evaluating Sandwich Composite Properties
13. Advanced Characterization Techniques: Ultrasound, Thermography, X-ray tomography, Microscopy and Spectroscopy
14. Structural Health Monitoring in Sandwich Structures
Part III: Properties and Performance
15. Physical and Mechanical Properties and Failure Mechanisms of Sandwich Composites
16. Impact Resistance and Crashworthiness of Sandwich Composites
17. Fatigue and Creep Performance of Sandwich Composites under Cyclic Loading
18. Thermo-Mechanical, Thermal and Hygrothermal Behavior of Sandwich Composites
19. Sound Insulation and Vibration Damping Properties in Sandwich Composite Structures
20. Fire Resistance and Flame Retardancy in Sandwich Composites
21. Fire Characteristics of Sustainable Sandwich Panels
22. Durability and Long-Term Performance of Sandwich Composites
23. Electromagnetic Shielding and Conductive Properties of Sandwich Composites
Part IV: Design and Optimization
24. Design Principles and Multi-Objective Optimization for Composite Sandwich Structures
25. Topological and Structural (Core-Skin Configurations) Optimization in Sandwich Composite Design
26. Finite Element Analysis (FEA) and Computational Modeling of Sandwich Structures
27. Multi-Scale Modeling of Composite Sandwich Structures: From Atomistic to Macroscopic Levels
28. Predictive Modeling of Sandwich Composite Performance Using Artificial Intelligence and Machine Learning
Part V: Applications
29. Sandwich Composites in Automotive, Rail, Aerospace, Unmanned Air Vehicle, and Marine Applications
30. Sandwich Composites in Construction and Infrastructure
31. Sandwich Composites in Energy Systems: Applications for Harvesting, Storage and Renewable Technologies
32. Sandwich Composites in Defense and Ballistic Applications
33. Sandwich Composites in Biomedical Applications
Part VI: Sustainability and Future Trends
34. Environmental Impact, Life Cycle Assessment and Recyclability of Sandwich Composites
35. Use of Bio-based and Recycled Materials in Bio-based/Green Sandwich Structures
1. Overview of Sandwich Structures: History, Concept, Advantages and Challenges
2. Core Materials for Sandwich Composites: Types, Properties, and Manufacturing
3. Face Sheet Materials: Metals, Polymers and Fiber-Reinforced Laminates
4. Theory of Sandwich Beams and Panels
5. Hybrid Sandwich Composites: Combining Core and Face Sheet Materials for Enhanced Performance
6. Junctions in Sandwich Composites: Bonding, Design Considerations, and Localized Failure Mechanisms
7. Smart Sandwich Composites: Sensing, Actuation and Self-Healing Capabilities
8. Bio-Inspired Designs in Sandwich Composite Structures
9. Nanomaterials in Sandwich Composites: Fabrication and Performance
Part II: Advanced Manufacturing and Characterization Techniques
10. Autoclave and Out-of-Autoclave Manufacturing of Sandwich Composites
11. Additive Manufacturing and 3D Printing of Sandwich Structures
12. Experimental Techniques for Evaluating Sandwich Composite Properties
13. Advanced Characterization Techniques: Ultrasound, Thermography, X-ray tomography, Microscopy and Spectroscopy
14. Structural Health Monitoring in Sandwich Structures
Part III: Properties and Performance
15. Physical and Mechanical Properties and Failure Mechanisms of Sandwich Composites
16. Impact Resistance and Crashworthiness of Sandwich Composites
17. Fatigue and Creep Performance of Sandwich Composites under Cyclic Loading
18. Thermo-Mechanical, Thermal and Hygrothermal Behavior of Sandwich Composites
19. Sound Insulation and Vibration Damping Properties in Sandwich Composite Structures
20. Fire Resistance and Flame Retardancy in Sandwich Composites
21. Fire Characteristics of Sustainable Sandwich Panels
22. Durability and Long-Term Performance of Sandwich Composites
23. Electromagnetic Shielding and Conductive Properties of Sandwich Composites
Part IV: Design and Optimization
24. Design Principles and Multi-Objective Optimization for Composite Sandwich Structures
25. Topological and Structural (Core-Skin Configurations) Optimization in Sandwich Composite Design
26. Finite Element Analysis (FEA) and Computational Modeling of Sandwich Structures
27. Multi-Scale Modeling of Composite Sandwich Structures: From Atomistic to Macroscopic Levels
28. Predictive Modeling of Sandwich Composite Performance Using Artificial Intelligence and Machine Learning
Part V: Applications
29. Sandwich Composites in Automotive, Rail, Aerospace, Unmanned Air Vehicle, and Marine Applications
30. Sandwich Composites in Construction and Infrastructure
31. Sandwich Composites in Energy Systems: Applications for Harvesting, Storage and Renewable Technologies
32. Sandwich Composites in Defense and Ballistic Applications
33. Sandwich Composites in Biomedical Applications
Part VI: Sustainability and Future Trends
34. Environmental Impact, Life Cycle Assessment and Recyclability of Sandwich Composites
35. Use of Bio-based and Recycled Materials in Bio-based/Green Sandwich Structures