Journal of Applied Polymer Science · 1999 · 61 citations · 10 references
Materials SciencePolymer MaterialRubber BlendEngineeringMechanical PropertiesPolymer TechnologyTrans-polyoctylene RubberMechanical EngineeringPolymer ScienceEffects Oftrans-polyoctylene RubberPolymer ProcessingIncompatible Nr/epdmPolymer EngineeringPolymer BlendPolymer CompositesPolymer PropertyThermoplastic CompositePolymer Chemistry
trans-Polyoctylene rubber (TOR) was melt blended with an incompatible NR/EPDM (70/30) blend. Mixing torque and temperature were reduced as TOR was added to NR/EPDM blend. The curing characteristics of the blend were affected as TOR participated in vulcanization and became a part of network. A scanning electron micrograph demonstrated that addition of TOR improved the compatibility of the blend and thereby led to a finer phase morphology. The ozone resistance of the blends was determined in terms of a critical stress–strain parameter. The critical stored energy density for ozone cracking was significantly enhanced for the TOR containing rubber blend. It was believed that the improvement in ozone resistance arised from finely dispersed ozone-resistant EPDM particles in the blend. TOR caused an improvement in dynamic properties and an increase in tensile modulus, but a decrease in tensile stress and elongation at break of the rubber blend. © 1999 John Wiley & Sons, Inc. J Appl Polym Sci 73: 749–756, 1999
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Blends of Dissimilar Rubbers—Cure-Rate Incompatibility
A. Y. Coran · Rubber Chemistry and Technology · 1988 · 63 citations
Covulcanization of Polymer Blends
Takashi Inoue, F. Shomura, Toshiaki Ougizawa et al. · Rubber Chemistry and Technology · 1985 · 26 citations
Materials Science, General Problem, Macromolecular Engineering +12