Filler—Elastomer Interactions. Part IV. The Effect of the Surface Energies of Fillers on Elastomer Reinforcement
- 1 May 1992
- journal article
- research article
- Published by Rubber Division, ACS in Rubber Chemistry and Technology
- Vol. 65 (2) , 329-342
- https://doi.org/10.5254/1.3538615
Abstract
Carbon black N110 and a precipitated silica, which have comparable surface area and structure, were selected as model fillers to study the effect of filler surface energies on rubber reinforcement. In comparison with carbon black, the surface energies of silica are characterized by a lower dispersive component, γsd, and higher specific component, γssp. It was found that the high γssp of silica leads to strong interaggregate interaction, resulting in higher viscosity of the compounds, higher αƒ, and higher moduli of the vulcanizates at small strain. The higher γsd of carbon black, in contrast, causes strong filler—polymer interaction, which is reflected in a higher bound-rubber content of the compounds and higher moduli of the vulcanizates at high elongation.This publication has 6 references indexed in Scilit:
- Filler Aggregates and Their Effect on ReinforcementRubber Chemistry and Technology, 1974
- Effective Degree of Immobilization of Rubber Occluded within Carbon Black AggregatesRubber Chemistry and Technology, 1972
- Low Strain Dynamic Properties of Filled RubbersRubber Chemistry and Technology, 1971
- Effect of Dispersion on Dynamic Properties of Filler-Loaded RubbersRubber Chemistry and Technology, 1966
- Swelling of filler‐reinforced vulcanizatesJournal of Applied Polymer Science, 1963
- The dynamic properties of carbon black‐loaded natural rubber vulcanizates. Part IJournal of Applied Polymer Science, 1962