Studies on a new antireversion agent for sulfur vulcanization of diene rubbers

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Abstract

The mechanism of biscitraconimides (BCI) as antireversion agents for sulfur vulcanized diene rubber was investigated choosing squalene as a model substrate. Curing of squalene with sulfur in the presence of accelerator, activator and BCI at 170°C gave BCI bridged adducts. The products were identified by spectroscopic methods as being results of a Diels-Alder reaction of BCI (dienophile) with conjugated polyenes that are formed as a result of reversion. The rate at which the sulfur network degrades is comparable to the rate in which BCI adduct is formed. As a result of this, a nearly constant crosslink density is obtained after optimum cure time (t90). Based on this concept, the advantage of using 1,3-bis-(citraconimidomethyl) benzene (BCI-MX), a representative of the BCI-class, in NR based compounds is examined.

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Schotman, A. H. M., Van Haeren, P. J. C., Weber, A. J. M., Van Wijk, F. G. H., Hofstraat, J. W., Talma, A. G., … Datta, R. N. (1996). Studies on a new antireversion agent for sulfur vulcanization of diene rubbers. Rubber Chemistry and Technology, 69(5), 727–741. https://doi.org/10.5254/1.3538397

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