120
6 Particulate Silica Reinforcement of Rubber
References
1. G. Kraus (ed.), Reinforcement of Elastomers (Interscience, New York, 1965)
2. E.P. Plueddemann, B. Thomas, in Development in Rubber Technology-1, ed. by A. Whelan,
K.S. Lee (Applied Science Publisher, London, 1979), p. 187
3. H. Long (ed.), Basic Compounding and Processing of Rubber (American Chemical Society,
Akron, Rubber Division, 1985)
4. B. Rodgers (ed.), Rubber Compounding: Chemistry and Applications (Marcel Dekker, New
York, 2004)
5. J.E. Mark, B. Erman, C.M. Roland (eds.), The Science and Technology of Rubber, 4th edn.
(Academic Press, Waltham, MA, 2013)
6. Y. Ikeda, A. Kato, S. Kohjiya, Y. Nakajima, Rubber Science: A Modern Approach (Springer,
Singapore, 2017)
7. World Commission on Environment and Development, Our Common Future (Oxford University Press, Oxford, 1987)
8. R. Hoefer (ed.), Sustainable Solutions for Modern Economics (RSC Publishing, Cambridge,
2009)
9. S. Kohjiya, Y. Ikeda (eds.), Chemistry, Manufacture and Applications of Natural Rubber
(Woodhead/Elsevier, Cambridge, 2014)
10. S. Kohjiya, Natural Rubber: From the Odyssey of the Hevea Tree to the Transportation Age
(Smithers Rapra, Shrewsbury, 2015)
11. S. Solomon, G.-K. Plattner, R. Knutti, P. Friedlingstein, Proc. Natl. Acad. Sci. USA 106, 1704
(2009)
12. National Research Council of the National Academy of the United States of America, Climate
Change: Evidence, Impact, and Choices (National Academies Press, Washington, DC, 2012)
13. R.K. Pachauri, L. Meyer (eds.), Climate Change 2014: Synthesis Report, (IPCC, Geneva, 2015)
[Available at IPCC (Intergovernmental Panel on Climate Change) home page]
14. S. Ikkatai, Japan’s Choice at the Low-Carbon Age (Iwanami Shoten, Tokyo, 2008) (in Japanese)
15. R.I. Block, A.D. Kopp, A. Limi, Turning the Right Corner: Ensuring Development through
a Low-Carbon Transport Sector (World Bank, Washington, DC, 2013) [World Bank, Report
No. 78086, available at the World Bank home page]
16. K. Sumida, D.L. Rogow, J.A. Mason, T.M. McDonald, E.D. Bloch, Z.R. Herm, T.-H. Bae, J.R.
Long, Chem. Rev. 112, 724 (2012)
17. International Energy Agency (IEA), 20 Years of Carbon Capture and Storage (IEA, 15 Nov.
2016) [available at IEA home page]
18. E.P. Plueddemann, Silane Coupling Agents, 2nd edn. (Plenum Press, New York, 1982)
19. M.P. Wagner, Rubber World 164 46 (1971)
20. S. Wolff, Kautsch. Gummi Kunstst. 30, 516 (1977)
21. A.S. Hashim, B. Azahari, Y. Ikeda, S. Kohjiya, Rubber Chem. Technol. 71, 289 (1998)
22. S. Kohjiya, Y. Ikeda, Rubber Chem. Technol. 73, 534 (2000)
23. W. Meon, A. Blume, H.-D. Lunginsland, S. Uhrlandt, in Ref. 4, Chap. 7
24. R. Rauline (to Compagnie Generale des Establissements Michelin), US 5227425 (1993), EP
0501227 (1995)
25. S. Futamura, Tire. Sci. Technol. 18, 2 (1990)
26. H. Takino, S. Iwama, Y. Yamada, S. Kohjiya, Rubber Chem. Technol. 70, 15 (1997)
27. H. Takino, R. Nakayama, Y. Yamada, S. Kohjiya, T. Matsuo, Rubber Chem. Technol. 70, 584
(1997)
28. H. Takino, H. Takahashi, K. Yamano, S. Kohjiya, Tire. Sci. Technol. 26, 241 (1998)
29. H. Takino, N. Isobe, S. Kohjiya, Tire. Sci. Technol. 26, 258 (1998)
30. M. Makiura, Nippon Gomu Kyokaishi 71, 583 (1998) (in Japanese)
31. J.E. Mark, S.-J. Pan, Macromol. Rapid Commun. 3, 681 (1982)
32. Y. Ikeda, S. Kohjiya, Polymer 38, 4417 (1997)
Précédent

- 127/193

Suivant