Brydson's Plastics Materials
Editat de Marianne Gilberten Limba Engleză Hardback – 12 oct 2016
Since the previous edition, many developments have taken place in plastics materials, such as the growth in the commercial use of sustainable bioplastics, so this book brings the user fully up-to-date with the latest materials, references, units, and figures that have all been thoroughly updated.
The book remains the authoritiative resource for engineers, suppliers, researchers, materials scientists, and academics in the field of polymers, including current best practice, processing, and material selection information and health and safety guidance, along with discussions of sustainability and the commercial importance of various plastics and additives, including nanofillers and graphene as property modifiers.
With a 50 year history as the principal reference in the field of plastics material, and fully updated by an expert team of polymer scientists and engineers, this book is essential reading for researchers and practitioners in this field.
- Presents a one-stop-shop for easily accessible information on plastics materials, now updated to include the latest biopolymers, high temperature engineering plastics, thermoplastic elastomers, and more
- Includes thoroughly revised and reorganised material as contributed by an expert team who make the book relevant to all plastics engineers, materials scientists, and students of polymers
- Includes the latest guidance on health, safety, and sustainability, including materials safety data sheets, local regulations, and a discussion of recycling issues
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Specificații
ISBN-13: 9780323358248
ISBN-10: 0323358241
Pagini: 892
Dimensiuni: 216 x 276 x 54 mm
Greutate: 2.65 kg
Ediția:8. Auflage.
Editura: ELSEVIER SCIENCE
ISBN-10: 0323358241
Pagini: 892
Dimensiuni: 216 x 276 x 54 mm
Greutate: 2.65 kg
Ediția:8. Auflage.
Editura: ELSEVIER SCIENCE
Cuprins
1. Plastics Materials: Introduction and Historical Development
2. The Chemical Nature of Plastics Polymerization
3. States of Aggregation in Polymers
4. Relation of Structure to Thermal and Mechanical Properties
5. Relation of Structure to Chemical Properties
6. Relation of Structure to Electrical and Optical Properties
7. Additives for Plastics
8. Fillers (Including Fiber Reinforcements)
9. Processing, Design, and Performance of Plastics Products
10. Polyethylene
11. Polypropylene and Other Polyolefins
12. Plastics Based on Styrene
13. Poly(Vinyl Chloride)
14. Fluorine-Containing Polymers
15. Miscellaneous Vinyl Thermoplastics
16. Acrylic Plastics
17. Polycarbonates
18. Aliphatic Polyamides
19. Polyacetals
20. Thermoplastic Polyesters
21. High-Temperature Engineering Thermoplastics
22. Cellulose Plastics
23. Bioplastics: New Routes, New Products
24. Thermoplastic Elastomers
25. Aldehyde Polymers: Phenolics and Aminoplastics
26. Unsaturated Polyester Resins
27. Epoxy Resins
28. Isocyanate-Based Polymers: Polyurethanes, Polyureas, Polyisocyanurates, and their Copolymers
2. The Chemical Nature of Plastics Polymerization
3. States of Aggregation in Polymers
4. Relation of Structure to Thermal and Mechanical Properties
5. Relation of Structure to Chemical Properties
6. Relation of Structure to Electrical and Optical Properties
7. Additives for Plastics
8. Fillers (Including Fiber Reinforcements)
9. Processing, Design, and Performance of Plastics Products
10. Polyethylene
11. Polypropylene and Other Polyolefins
12. Plastics Based on Styrene
13. Poly(Vinyl Chloride)
14. Fluorine-Containing Polymers
15. Miscellaneous Vinyl Thermoplastics
16. Acrylic Plastics
17. Polycarbonates
18. Aliphatic Polyamides
19. Polyacetals
20. Thermoplastic Polyesters
21. High-Temperature Engineering Thermoplastics
22. Cellulose Plastics
23. Bioplastics: New Routes, New Products
24. Thermoplastic Elastomers
25. Aldehyde Polymers: Phenolics and Aminoplastics
26. Unsaturated Polyester Resins
27. Epoxy Resins
28. Isocyanate-Based Polymers: Polyurethanes, Polyureas, Polyisocyanurates, and their Copolymers