Salim / Hameed / Thomas | Hybrid Nanofiller Reinforced Thermoset Nanocomposites | Buch | 978-0-443-38311-3 | www.sack.de

Buch, Englisch, 890 Seiten, Format (B × H): 152 mm x 229 mm

Salim / Hameed / Thomas

Hybrid Nanofiller Reinforced Thermoset Nanocomposites


Erscheinungsjahr 2026
ISBN: 978-0-443-38311-3
Verlag: Elsevier Science

Buch, Englisch, 890 Seiten, Format (B × H): 152 mm x 229 mm

ISBN: 978-0-443-38311-3
Verlag: Elsevier Science


Hybrid Nanofiller Reinforced Thermoset Nanocomposites provides a comprehensive review of the latest advances in this important research field. The book covers all aspects and terminologies from fundamentals to advanced high-end applications. The effect of shape and aspect ratio, and synthesis protocols and their impact on ultimate properties is examined in detail. As well as recent advancements in simulation, characterization, mechanism reinforcement and high-end applications. With contributions from international experts, the reader will gain valuable insights into the latest developments in this fast-evolving research field. The book will be a valuable reference source for academic and industrial researchers, materials scientists and engineers, chemists, industrial manufacturers, and other professionals working in the field of hybrid nanofiller reinforced thermoset nanocomposites for high-end applications.

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Weitere Infos & Material


Section I Introduction to thermosets and hybrid nanostructures
1. Introduction to thermosetting polymers
2. Advances in hybrid nanofiller reinforced thermosetting polymers
3. Two-dimensional hybrid (2D-2D) nanofiller reinforced thermosets
4. Two dimensional - zero-dimensional hybrid nanofiller reinforced thermosets
5. Two dimensional- one dimensional hybrid nanofiller reinforced thermosets
6. Zero dimensional- one dimensional hybrid nanofiller reinforced thermosets
7. One dimensional- one dimensional hybrid nanofiller reinforced thermosets
8. Sustainable hybrid nanofiller reinforced bio thermosets

Section II Characterization of hybrid nanofiller reinforced thermosets
9. Dielectric properties of hybrid nanofiller reinforced thermosets
10. Dynamical Mechanical analysis of hybrid nanofiller reinforced thermosets
11. Microstructure analysis of hybrid nanofiller-reinforced thermosets
12. Mechanical properties of hybrid nanofiller-reinforced thermosets
13. Toughening mechanisms in hybrid nanofiller reinforced thermosets
14. Modelling and simulation in hybrid nanofiller reinforced thermosets
15. Non-destructive testing in hybrid nanofiller reinforced thermosets
16. Rheology of hybrid nanofiller reinforced thermosets
17. Spectroscopic analysis in hybrid nanofiller reinforced thermosets
18. X ray diffraction studies in hybrid nanofiller reinforced thermosets
19. Contact angle studies of hybrid nanofiller reinforced thermosets
20. Thermal properties of hybrid nanofiller reinforced thermosets
21. Light scattering studies in hybrid nanofiller-reinforced thermosets
22. Neutron shielding studies of hybrid nanofiller-reinforced thermosets
23. Advanced nanoscale characterization of hybrid nanofiller reinforced thermosets

Section III Applications of hybrid nanofiller reinforced thermosets
24. Self-healing in hybrid nanofiller reinforced thermosets
25. Corrosion and barrier studies of hybrid nanofiller reinforced thermosets
26. Flame retardant hybrid nanofiller reinforced thermosets
27. Anti-fouling hybrid nanofiller-reinforced thermosets
28. Super hydrophobic hybrid nanofiller reinforced thermosets
29 Ageing studies hybrid nanofiller reinforced thermosets
30 Life cycle assessment in hybrid nanofiller reinforced thermosets


Salim, Nisa V
Dr Nisa Salim is a Senior Lecturer within the Department of Mechanical Engineering and Product Design Engineering at the School of Engineering, Swinburne University of Technology Australia. She received her PhD degree from Deakin University with a highly prestigious Gold Medal for Research Excellence from the Australian Institute of Nuclear Science and Engineering. Her research team focuses on interdisciplinary science and engineering, including advanced composites manufacturing, nanomaterials and multifunctional materials, enabling key applications in space, aerospace, and defence. She has published over 80 high-impact journal papers, 4 edited books, 8 book chapters, and 1 patent application. Nisa won many awards in her research career, including the Smart Geelong Early Researcher award, Victoria Fellowship, Endeavour Fellowship, Alfred Deakin Fellowship, Australian Academy of Science AIEMCR Fellowship, and many more, even with a career break of more than 2 years. She also serves several professional bodies and learned societies: National Committee Member for Materials Science and Engineering, Australian Academy of Science, Treasurer (national) of the Royal Australian Chemical Institute (RACI) Carbon Division (since 2018); Editorial Board Member (ECR) for the Chemical Engineering Journal, Polymers, and Journal of Composites Science

Thomas, Sabu
Dr. Sabu Thomas (Ph.D.) is the Director of the School of Energy Materials, School of Nanoscience and Nanotechnology of Mahatma Gandhi University, India. He received his Ph. D. in 1987 in Polymer Engineering from the Indian Institute of Technology (IIT), Kharagpur, India. He is a fellow of the Royal Society of Chemistry, London, and a member of the American Chemical Society. He has been ranked no.1 in India about the number of publications (most productive scientists). Prof. Thomas's research group specialized areas of polymers which includes Polymer blends, Fiber filled polymer composites, Particulate-filled polymer composites and their morphological characterization, Ageing and degradation, Pervaporation phenomena, sorption and diffusion, Interpenetrating polymer systems, Recyclability and reuse of waste plastics and rubbers, Elastomer cross-linking, Dual porous nanocomposite scaffolds for tissue engineering, etc. Prof. Thomas's research group has extensive exchange programs with different industries, research, and academic institutions all over the world and is performing world-class collaborative research in various fields. Professors Centre is equipped with various sophisticated instruments and has established state-of-the-art experimental facilities which cater to the needs of researchers within the country and abroad. His H Index- 133, Google Citations- 86424, Number of Publications- 1300, and Books-160.

George, Jesiya Susan
Ms. Jesiya Susan George is research scholar at School of Chemical Sciences, Mahatma Gandhi University. She completed her masters in biopolymer science from Cochin University of Science and technology. She received prestigious DST INSPIRE fellowship, Gov. of India. Her research interest involves anticorrosive coatings, epoxy resin, hybrid nanostructures and polymer blends. She published several articles in high-impact journals. She has two edited books to her credit.



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