102
5 Reinforcing Mechanism of Rubber by Nanofiller
References
1. C. Goodyear, Gum-Elastic and Its Varieties, with a Detailed Account of Its Application and
Uses and of the Discovery of Vulcanization (Published for the author, New Haven, 1855)
2. B.N. Zimmerman (ed.), Vignettes from the International Rubber Science Hall of Fame (1958–
1988): 36 Major Contributors to Rubber Science (Rubber Division of American Chemical
Society, Akron, 1989)
3. S. Kohjiya, Natural Rubber: From the Odyssey of the Hevea Tree to the Transportation Society
(Smithers RAPRA, Shrewsbury, 2015)
4. Y. Ikeda, A. Kato, S. Kohjiya, Y. Nakajima, Rubber Science: A Modern Approach (Springer,
Singapore, 2017)
5. C.O. Weber, The Chemistry of India Rubber, Including the Outline of a Theory on Vulcanization
(Charles Griffin & Co., London, 1902)
6. C.C. Davis, J.T. Blake (eds.), The Chemistry and Technology of Rubber (Reinhold Publishing,
New York, 1937)
7. C.C. Webster, W.J. Baulkwill (eds.), Rubber (Longman, Harlow, 1989)
8. N.A. Shepard, J.N. Street, C.R. Park, Fillers and reinforcing agents, in The Chemistry and
Technology of Rubber, Chap. 11, ed. by C.C. Davis, J.T. Blake (Reinhold Publishing, New
York, 1937), pp. 380–413
9. G. Kraus (ed.), Reinforcement of Elastomers (Interscience, New York, 1965)
10. A. R. Payne, Dynamic properties of filler-loaded rubbers, in Reinforcement of Elastomers,
Chap. 3 (Interscience, New York, 1965)
11. D. Stauffer, Introduction to Percolation Theory (Taylor & Francis, London, 1985)
12. R.H. Norman, Conductive Rubbers and Plastics (Applied Science Publisher, London, 1970)
13. V.E. Gul, Structure and Properties of Conducting Polymer Composites (VSP, Utrecht, 1996)
14. T. Blythe, D. Bloor, Electrical Properties of Polymers (Cambridge University Press, Cambridge,
2005)
15. J. Furukawa, Nippon Gomu Kyokaishi 30, 1014 (1957)
16. F. Bueche, J. Appl. Polym. Sci. 4, 107 (1960)
17. F. Bueche, Physical Properties of Polymers (Interscience, New York, 1962)
18. F. Bueche, Network theories of reinforcement, in Reinforcement of Elastomers, Chap. 1, ed.
by G. Kraus (Interscience, New York, 1965)
19. G. Kraus, Rubber Chem. Technol. 38, 1070 (1965)
20. G. Kraus, Interactions between elastomers and reinforcing fillers, in Reinforcement of
Elastomers, Chap. 4, ed. by G. Kraus (Interscience, New York, 1965)
21. W.F. Watson, Chemical interaction of fillers and rubbers during cold milling, in Reinforcement
of Elastomers, Chap. 8, ed. by G. Kraus (Interscience, New York, 1965)
22. M.L. Studebaker, Compounding with carbon black, in Reinforcement of Elastomers, Chap. 12,
ed. by G. Kraus (Interscience, New York, 1965)
23. S. Kaufman, W.P. Slichter, D.D. Davis, J. Polym. Sci. Part A-2 Polym. Phys. 9, 829 (1971)
24. P.J. Dionne, C.R. Picu, R. Ozisik, Macromolecules 39, 3089 (2006)
25. K. Nakajima, T. Nishi, Recent developments in rubber research using atomic force microscopy,
in Current Topics in Elastomers Research, Chap. 21, ed. by A.K. Bhowmick (CRC Press, Boca
Raton, 2008)
26. K. Fujimoto, Nippon Gomu Kyokaishi 37, 602 (1964) (in Japanese)
27. S. Fujiwara, K. Fujimoto, Rubber Chem. Technol. 44, 1273 (1971)
28. Y. Ishikawa, Y. Yamaguchi, N. Amino, A. Awagon, Nippon Gomu Kyokaishi 69, 716 (1996)
(in Japanese)
29. G. Heinrich, M. Krüppel, Adv. Polym. Sci. 160, 1 (2002)
30. M. Krüppel, Adv. Polym. Sci. 164, 1 (2003)
31. P.-G. de Gennes, Scaling Concepts in Polymer Physics (Cornell University Press, Cornell,
1979)
32. B.B. Manelbrot, Fractals: Form, Chance and Dimension (W. H. Freeman, San Francisco, 1977)
5 Reinforcing Mechanism of Rubber by Nanofiller
References
1. C. Goodyear, Gum-Elastic and Its Varieties, with a Detailed Account of Its Application and
Uses and of the Discovery of Vulcanization (Published for the author, New Haven, 1855)
2. B.N. Zimmerman (ed.), Vignettes from the International Rubber Science Hall of Fame (1958–
1988): 36 Major Contributors to Rubber Science (Rubber Division of American Chemical
Society, Akron, 1989)
3. S. Kohjiya, Natural Rubber: From the Odyssey of the Hevea Tree to the Transportation Society
(Smithers RAPRA, Shrewsbury, 2015)
4. Y. Ikeda, A. Kato, S. Kohjiya, Y. Nakajima, Rubber Science: A Modern Approach (Springer,
Singapore, 2017)
5. C.O. Weber, The Chemistry of India Rubber, Including the Outline of a Theory on Vulcanization
(Charles Griffin & Co., London, 1902)
6. C.C. Davis, J.T. Blake (eds.), The Chemistry and Technology of Rubber (Reinhold Publishing,
New York, 1937)
7. C.C. Webster, W.J. Baulkwill (eds.), Rubber (Longman, Harlow, 1989)
8. N.A. Shepard, J.N. Street, C.R. Park, Fillers and reinforcing agents, in The Chemistry and
Technology of Rubber, Chap. 11, ed. by C.C. Davis, J.T. Blake (Reinhold Publishing, New
York, 1937), pp. 380–413
9. G. Kraus (ed.), Reinforcement of Elastomers (Interscience, New York, 1965)
10. A. R. Payne, Dynamic properties of filler-loaded rubbers, in Reinforcement of Elastomers,
Chap. 3 (Interscience, New York, 1965)
11. D. Stauffer, Introduction to Percolation Theory (Taylor & Francis, London, 1985)
12. R.H. Norman, Conductive Rubbers and Plastics (Applied Science Publisher, London, 1970)
13. V.E. Gul, Structure and Properties of Conducting Polymer Composites (VSP, Utrecht, 1996)
14. T. Blythe, D. Bloor, Electrical Properties of Polymers (Cambridge University Press, Cambridge,
2005)
15. J. Furukawa, Nippon Gomu Kyokaishi 30, 1014 (1957)
16. F. Bueche, J. Appl. Polym. Sci. 4, 107 (1960)
17. F. Bueche, Physical Properties of Polymers (Interscience, New York, 1962)
18. F. Bueche, Network theories of reinforcement, in Reinforcement of Elastomers, Chap. 1, ed.
by G. Kraus (Interscience, New York, 1965)
19. G. Kraus, Rubber Chem. Technol. 38, 1070 (1965)
20. G. Kraus, Interactions between elastomers and reinforcing fillers, in Reinforcement of
Elastomers, Chap. 4, ed. by G. Kraus (Interscience, New York, 1965)
21. W.F. Watson, Chemical interaction of fillers and rubbers during cold milling, in Reinforcement
of Elastomers, Chap. 8, ed. by G. Kraus (Interscience, New York, 1965)
22. M.L. Studebaker, Compounding with carbon black, in Reinforcement of Elastomers, Chap. 12,
ed. by G. Kraus (Interscience, New York, 1965)
23. S. Kaufman, W.P. Slichter, D.D. Davis, J. Polym. Sci. Part A-2 Polym. Phys. 9, 829 (1971)
24. P.J. Dionne, C.R. Picu, R. Ozisik, Macromolecules 39, 3089 (2006)
25. K. Nakajima, T. Nishi, Recent developments in rubber research using atomic force microscopy,
in Current Topics in Elastomers Research, Chap. 21, ed. by A.K. Bhowmick (CRC Press, Boca
Raton, 2008)
26. K. Fujimoto, Nippon Gomu Kyokaishi 37, 602 (1964) (in Japanese)
27. S. Fujiwara, K. Fujimoto, Rubber Chem. Technol. 44, 1273 (1971)
28. Y. Ishikawa, Y. Yamaguchi, N. Amino, A. Awagon, Nippon Gomu Kyokaishi 69, 716 (1996)
(in Japanese)
29. G. Heinrich, M. Krüppel, Adv. Polym. Sci. 160, 1 (2002)
30. M. Krüppel, Adv. Polym. Sci. 164, 1 (2003)
31. P.-G. de Gennes, Scaling Concepts in Polymer Physics (Cornell University Press, Cornell,
1979)
32. B.B. Manelbrot, Fractals: Form, Chance and Dimension (W. H. Freeman, San Francisco, 1977)
