Biobased Epoxy Vitrimer Composites: Design, Manufacture, Properties, Applications, and Environmental Impacts: Woodhead Publishing in Materials
Editat de Sudheer Kumar, Sukhila Krishnan, K. Prabakaran, Ananthakumar Ramadoss, Sanjay Mavinkere Rangappa, Suchart Siengchinen Limba Engleză Paperback – iul 2025
- Outlines the design, manufacture, properties, and applications of bio-based epoxy vitrimer composites
- Applications discussed include shape-memory materials, self-healing materials, adhesives, coatings, flame retardants, and use in additive manufacturing
- Covers fiber reinforcements in vitrimer matrix composites, vitrimer recycling and degradation, their environmental impact, and challenges around their use
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Specificații
ISBN-13: 9780443302978
ISBN-10: 0443302979
Pagini: 550
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing in Materials
ISBN-10: 0443302979
Pagini: 550
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing in Materials
Cuprins
SECTION 1: Fundamental, Design Manufacture Methods of Biobased Epoxy Vitrimers
1. Fundamental of Biobased Epoxy Vitrimer
2. Mechanism of Reversible Chemical Bond Exchange in Biobased Epoxy Vitrimer
3. Methods and Preparation Techniques of Biobased Epoxy Vitrimer
4. Characterization of Biobased Epoxy Vitrimer Composites
5. Fiber Reinforcements used for Vitrimer Matrix Composites
6. Functional Composites of Biobased Epoxy Vitrimer with Nanofillers
SECTION 2: Sustainable Development of Biobased Epoxy Vitrimer Composites and its Potential Applications
7. Sustainable Development of Biobased Epoxy Vitrimer Composite Materials
8. Biobased Epoxy Vitrimer for Shape Memory, and Self-Healing Application
9. Biobased Epoxy Vitrimer for 3D Printing Applications
10. Biobased Epoxy Vitrimers as Adhesives and Coatings
11. Biobased Epoxy Vitrimer for Flame Retardant Application
12. Case Study of Biobased Epoxy Vitrimer Composites
13. Biobased Epoxy Vitrimer Composites Present Significance and Future Prospective
SECTION 3: Repressibility and Degradability of the Biobased Epoxy Vitrimer
14. Reprocessing and Degradation Capability of Biobased Epoxy Vitrimer Composites
15. Recycling of Biobased Epoxy Vitrimer Fiber Composites
16. Environmental Impact Assessment on Biobased Epoxy Vitrimer Composites
17. Opportunities, Challenges, and Future Direction of Biobased Epoxy Vitrimers
1. Fundamental of Biobased Epoxy Vitrimer
2. Mechanism of Reversible Chemical Bond Exchange in Biobased Epoxy Vitrimer
3. Methods and Preparation Techniques of Biobased Epoxy Vitrimer
4. Characterization of Biobased Epoxy Vitrimer Composites
5. Fiber Reinforcements used for Vitrimer Matrix Composites
6. Functional Composites of Biobased Epoxy Vitrimer with Nanofillers
SECTION 2: Sustainable Development of Biobased Epoxy Vitrimer Composites and its Potential Applications
7. Sustainable Development of Biobased Epoxy Vitrimer Composite Materials
8. Biobased Epoxy Vitrimer for Shape Memory, and Self-Healing Application
9. Biobased Epoxy Vitrimer for 3D Printing Applications
10. Biobased Epoxy Vitrimers as Adhesives and Coatings
11. Biobased Epoxy Vitrimer for Flame Retardant Application
12. Case Study of Biobased Epoxy Vitrimer Composites
13. Biobased Epoxy Vitrimer Composites Present Significance and Future Prospective
SECTION 3: Repressibility and Degradability of the Biobased Epoxy Vitrimer
14. Reprocessing and Degradation Capability of Biobased Epoxy Vitrimer Composites
15. Recycling of Biobased Epoxy Vitrimer Fiber Composites
16. Environmental Impact Assessment on Biobased Epoxy Vitrimer Composites
17. Opportunities, Challenges, and Future Direction of Biobased Epoxy Vitrimers