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|a 9780857096913 (PDF)
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|a ABES
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|a 682.384
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|a 678.62
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|a Chemistry, manufacture and applications of natural rubber
|c edited by Shinzo Kohjiya and Yūko Ikeda.
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|a Données textuelles (1 fichier PDF : 20.8 MO).
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|a Amsterdam :
|b Elsevier :
|b Woodhead Publishing,
|c 2014.
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|b txt
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|a Titre provenant de la page de titre du document numérique.
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|a Reproduction numérique de l'édition de Amsterdam : Elsevier, 2014-ISBN 978-0-85709-683-8.
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|a La pagination de l'édition imprimée correspondante est de : 514 pages.
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|a Notice rédigée d'après la consultation, 2015-04-14.
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|a Notes bibliographiques. Index.
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|a L'accès en ligne est réservé aux établissements ou bibliothèques ayant souscrit l'abonnement
|e Cyberlibris
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|a Natural rubber has always been an important industrial material, but its value has increased with the demand for more sustainable materials. There has also been a wealth of research on the properties of natural rubber and how they can be best used, for example, incorporating fillers or developing natural rubber composite materials. This important book summarizes this research and its significance for the industrial applications of natural rubber, with chapters on its properties, applications, and environmental and safety issues, such as recycling and allergies. The growing demand for more sustainable materials has led to increased research on the properties of natural rubber. Chemistry, Manufacture and Applications of Natural Rubber summarizes this research and its significance for the industrial applications of natural rubber. It's a comprehensive resource for academics, chemists, chemical engineers, mechanical engineers, and other professionals in the rubber industry, as well as those industries, including automotive, civil, and medical engineering, using natural rubber products.
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|a Navigateur Internet ; lecteur de fichier PDF.
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|b Part I. Properties and processing of natural rubber
|b 1. Biosynthesis of natural rubber (NR) in different rubber-producing species
|b 2. Natural rubber (NR) biosynthesis: perspectives from polymer chemistry
|b 3. Chemical modification of natural rubber (NR) for improved performance
|b 4. Understanding network control by vulcanization for sulfur cross-linked natural rubber (NR)
|b 5. The effect of strain-induced crystallization (SIC) on the physical properties of natural rubber (NR)
|b 6. Generating particulate silica fillers in situ to improve the mechanical properties of natural rubber (NR)
|b 7. Hydrophobic and hydrophilic silica-filled cross-linked natural rubber (NR): structure and properties
|b 8. Computer simulation of network formation in natural rubber (NR)
|b Part II. Applications of natural rubber
|b 9. Eco-friendly bio-composites using natural rubber (NR) matrices and natural fiber reinforcements
|b 10. Natural rubber (NR) composites using cellulosic fiber reinforcements
|b 11. Soft bio-composites from natural rubber (NR) and marine products
|b 12. Natural rubber (NR) for the tyre industry
|b 13. Application of epoxidized natural rubber (NR) in pressure sensitve adhesives (PSAs)
|b 14. Use of natural rubber (NR) for vibration isolation and earthquake protection of structures
|b Part III. Environmental and safety issues
|b 15. Improving the sustainable development of natural rubber (NR)
|b 16. Recycling of natural and synthetic isoprene rubbers
|b 17. Recycling of sulfur cross-linked natural rubber (NR) using supercritical carbon dioxide
|b 18. Recent research on natural rubber latex (NRL) allergy
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|a Rubber.
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|a Rubber
|x Testing.
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|x Technological innovation.
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|a Kohjiya, Shinzo.
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|e Éditeur scientifique
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|a Ikeda, Yūko.
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