Cellulose Fibre Reinforced Composites: Interface Engineering, Processing and Performance provides an up-to-date review of current research in cellulose fiber reinforced polymer composites. Key emphasis is placed on interface engineering, modern technologies needed for processing and materials performance in industrial applications. Novel techniques for interfacial adhesion, characterization and assessment of cellulose fiber reinforced composites are also discussed, along with current trends and future directions. With contributions from leading researchers in industry, academic, government…mehr
Cellulose Fibre Reinforced Composites: Interface Engineering, Processing and Performance provides an up-to-date review of current research in cellulose fiber reinforced polymer composites. Key emphasis is placed on interface engineering, modern technologies needed for processing and materials performance in industrial applications. Novel techniques for interfacial adhesion, characterization and assessment of cellulose fiber reinforced composites are also discussed, along with current trends and future directions. With contributions from leading researchers in industry, academic, government and private research institutions from across the globe, the book will be an essential reference resource for all those working in the field of cellulose fibers and their composites.
Produktdetails
Produktdetails
Woodhead Publishing Series in Composites Science and Engineering
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Autorenporträt
Prof. R. Arun Ramnath received the B.E. (Mechanical Engineering) from Anna University, Chennai, India in 2010 and M. Tech (Engineering Design) from PSG College of Technology, Coimbatore, India in 2016. He is a Life Member of the Indian Society for Technical Education (ISTE) and an Associate Member of the Institute of Engineers (India). He has published numerous research papers and book chapters in the field of composite materials in peer reviewed international journals. His current research areas include composite materials, natural fibres and machining.
Sanjay Mavinkere Rangappa serves as a Principal Research Scientist and Advisor for International Development at King Mongkut's University of Technology North Bangkok, Thailand. He holds a BEng in Mechanical Engineering (2010), an MTech in Computational Analysis (2013), and a PhD in Mechanical Engineering Science (2018) from Visvesvaraya Technological University, India, followed by a Post-Doctorate from KMUTNB (2019). A prolific researcher in materials science and composites, his research focuses on natural fiber composites, polymer composites, and advanced material technology. He has received multiple accolades, including Outstanding Researcher Award 2021 from KMUTNB and recognition in Stanford University's Top 2% Most-Cited Scientists list. He also serves as an Associate Editor for Elsevier's Heliyon and Frontier Materials, while holding seven patents across UK, Thailand, and India.
Inhaltsangabe
1. Cellulose fibre reinforced composites-History of evolution, chemistry and structure 2. Creating hierarchical structures in cellulose fibre reinforced composites 3. Electro spun cellulose composite nanofibres 4. Chemical modification of cellulose fibre surfaces 5. Physical modification of cellulose fibre surfaces 6. Interface Engineering-Matrix modification in cellulose fibre composites 7. Characterization of fibre surface treatment by Fourier transform infrared (FTIR) and Raman Spectroscopy 8. Evaluation of the effect of processing and surface treatment on the interfacial adhesion in cellulose fibre composites 9. Manufacturing aspects of cellulose fibre reinforced composites 10. Compression and Injection molding techniques 11. Mechanical testing and assessment of cellulose fibre composites 12. Thermo mechanical characterization of cellulose fibre composites 13. Evaluation of moisture uptake behaviour in cellulose fibre 14. Electro kinetic characterization of interfacial properties in cellulose fibre reinforced composites 15. Assessment of interface in cellulose fibre composites- Raman spectroscopy and X-ray scattering 16. Life cycle assessment(LCA) of cellulose fibre reinforced composites 17. Application of cellulose fibre reinforced composites and its future prospects
1. Cellulose fibre reinforced composites-History of evolution, chemistry and structure 2. Creating hierarchical structures in cellulose fibre reinforced composites 3. Electro spun cellulose composite nanofibres 4. Chemical modification of cellulose fibre surfaces 5. Physical modification of cellulose fibre surfaces 6. Interface Engineering-Matrix modification in cellulose fibre composites 7. Characterization of fibre surface treatment by Fourier transform infrared (FTIR) and Raman Spectroscopy 8. Evaluation of the effect of processing and surface treatment on the interfacial adhesion in cellulose fibre composites 9. Manufacturing aspects of cellulose fibre reinforced composites 10. Compression and Injection molding techniques 11. Mechanical testing and assessment of cellulose fibre composites 12. Thermo mechanical characterization of cellulose fibre composites 13. Evaluation of moisture uptake behaviour in cellulose fibre 14. Electro kinetic characterization of interfacial properties in cellulose fibre reinforced composites 15. Assessment of interface in cellulose fibre composites- Raman spectroscopy and X-ray scattering 16. Life cycle assessment(LCA) of cellulose fibre reinforced composites 17. Application of cellulose fibre reinforced composites and its future prospects
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