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Carbon black filled rubbe

G.B. Ouyang, N. Tokita, M.J. Wang. Hysteresis mechanisms for carbon black filled vulcanizates - a network junction theory for carbon black reinforcement. ACS, Rubb. Div. Mtg, Cleveland, OH, Oct. 17-20, 1995. Paper 108. [Pg.181]

J.D. Ulmer. Strain dependence of d5mamic mechanical properties of carbon black filled compounds. Rubb. Chem. Technol, 69,15-47,1996. [Pg.182]

Figure 7.35. taiiS of natural rubber filled with carbon black and silica vs. interaggregate distance, 833. [Adapted, by permission, from Wang M-J, Wolff S, Tan E-H, Rubb. Chem. Technol., 66, No.2, 1993, 178-95.]... [Pg.389]

Figure 9.4. Viscosity of SBR filled with carbon black vs. mixing time. [Adapted, by permission, from Clarke J, Freakley P K, Rubb. Chem. TechnoL, 67, No.4, 1994, 700-15.]... Figure 9.4. Viscosity of SBR filled with carbon black vs. mixing time. [Adapted, by permission, from Clarke J, Freakley P K, Rubb. Chem. TechnoL, 67, No.4, 1994, 700-15.]...
T. Kataoka, P.B. Zetterlund, B. Yamada. Effect of mixing sequence on the properties of carbon black and silica filled rubber. Plast. Rubb. Comp., 32 (7), 291-296,2003. [Pg.302]


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