Damage Analysis of Natural Fiber-reinforced Polymer Biocomposites: Destructive and Non-destructive Evaluations and Modelling: Woodhead Publishing Series in Composites Science and Engineering
Editat de Mohamed Thariq Hameed Sultan, Abou el kacem Qaiss, Rachid Bouhfid, Muhamad Hasfanizam Mat Yazik, Farah Syazwani Shaharen Limba Engleză Paperback – 29 sep 2025
The book will be a valuable reference resource for academic and industrial researchers, as well as materials scientists and engineers and other professionals working in the damage mechanics of composites and polymer biocomposite materials.
- Emphasis on damage classification and analysis
- Covers destructive and non-destructive techniques
- Includes experimental and numerical methods
- Includes infrared thermography, x-ray imaging, micro-computed tomography and acoustic emission
- Covers hybrid and natural fibre-reinforced composites
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Specificații
ISBN-13: 9780443288586
ISBN-10: 0443288585
Pagini: 570
Dimensiuni: 152 x 229 x 27 mm
Greutate: 0.9 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
ISBN-10: 0443288585
Pagini: 570
Dimensiuni: 152 x 229 x 27 mm
Greutate: 0.9 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
Cuprins
SECTION A: INTRODUCTION
1. Recent Developments in Natural Fiber-Reinforced Polymer Biocomposites for Future Sustainability and Key Challenges – A Review
2. An Introduction to Damage Classification of Composites – A Review
3. Natural Fiber-Reinforced Polymer Biocomposites Defects due to Manufacturing Procedures – A Review
SECTION B: EXPERIMENTAL STUDIES USING DESTRUCTIVE AND NON-DESTRUCTIVE TESTS FOR DAMAGE ANALYSIS
4. Destructive Evaluations of Natural Fiber-Reinforced Polymer Biocomposites
5. Damage Initiation and Progression in Natural Fiber-Reinforced Polymer Biocomposites due to Impact
6. Non-Destructive Infrared Thermography in Natural Fiber-Reinforced Polymer Biocomposites
7. X-Ray Imaging Techniques for Damage Detection and Characterization
8. Damage Detection of Natural Fiber-Reinforced Polymer Biocomposites After Low Velocity Impact Using Non- Destructive X-Ray Micro-Computed Tomography
9. Damage mechanism evaluation in laminated natural fiber-reinforced polymer biocomposites using acoustic emission (AE) monitoring
SECTION C: NUMERICAL AND SIMULATION MODELLING OF DAMAGE ANALYSIS
10. Modelling of Progressive Damage Behavior in Natural Fiber-Reinforced Polymer Biocomposites due to Tensile, Flexural, and Fatigue Testing
11. Modelling of Impact Damage in Natural Fiber-Reinforced Polymer Biocomposite Structures
12. Modelling of Temperature Influence in Natural Fiber-Reinforced Polymer Biocomposites
13. Modelling of Hygroscopique Damage of Natural Fiber-Reinforced Polymer Biocomposites
14. Modelling of 3D Printed Natural Fiber-Reinforced Polymer Biocomposite Damage Progression
15. A Comparative Study of Different Ultrasonic Testing Methods for Defect Detection via Simulation Modelling
16. Assessment of Laminated Damage in Natural Fiber-Reinforced Polymer Biocomposites using Guided Ultrasonic Waves: A Case Study
SECTION D: APPLICATIONS AND RECOMMENDATIONS
17. Future Opportunities for Non-Destructive Testing and Evaluation in Natural Fiber-Reinforced Polymer Biocomposites
1. Recent Developments in Natural Fiber-Reinforced Polymer Biocomposites for Future Sustainability and Key Challenges – A Review
2. An Introduction to Damage Classification of Composites – A Review
3. Natural Fiber-Reinforced Polymer Biocomposites Defects due to Manufacturing Procedures – A Review
SECTION B: EXPERIMENTAL STUDIES USING DESTRUCTIVE AND NON-DESTRUCTIVE TESTS FOR DAMAGE ANALYSIS
4. Destructive Evaluations of Natural Fiber-Reinforced Polymer Biocomposites
5. Damage Initiation and Progression in Natural Fiber-Reinforced Polymer Biocomposites due to Impact
6. Non-Destructive Infrared Thermography in Natural Fiber-Reinforced Polymer Biocomposites
7. X-Ray Imaging Techniques for Damage Detection and Characterization
8. Damage Detection of Natural Fiber-Reinforced Polymer Biocomposites After Low Velocity Impact Using Non- Destructive X-Ray Micro-Computed Tomography
9. Damage mechanism evaluation in laminated natural fiber-reinforced polymer biocomposites using acoustic emission (AE) monitoring
SECTION C: NUMERICAL AND SIMULATION MODELLING OF DAMAGE ANALYSIS
10. Modelling of Progressive Damage Behavior in Natural Fiber-Reinforced Polymer Biocomposites due to Tensile, Flexural, and Fatigue Testing
11. Modelling of Impact Damage in Natural Fiber-Reinforced Polymer Biocomposite Structures
12. Modelling of Temperature Influence in Natural Fiber-Reinforced Polymer Biocomposites
13. Modelling of Hygroscopique Damage of Natural Fiber-Reinforced Polymer Biocomposites
14. Modelling of 3D Printed Natural Fiber-Reinforced Polymer Biocomposite Damage Progression
15. A Comparative Study of Different Ultrasonic Testing Methods for Defect Detection via Simulation Modelling
16. Assessment of Laminated Damage in Natural Fiber-Reinforced Polymer Biocomposites using Guided Ultrasonic Waves: A Case Study
SECTION D: APPLICATIONS AND RECOMMENDATIONS
17. Future Opportunities for Non-Destructive Testing and Evaluation in Natural Fiber-Reinforced Polymer Biocomposites