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Title: | Reversion free high-temperature vulcanization of cis-polybutadiene rubber with the accelerated-sulfur system | ||||||||||
Author: | Gopi Sathi, Shibulal; Stoček, Radek; Kratina, Ondřej | ||||||||||
Document type: | Peer-reviewed article (English) | ||||||||||
Source document: | Express Polymer Letters. 2020, vol. 14, issue 9, p. 823-837 | ||||||||||
ISSN: | 1788-618X (Sherpa/RoMEO, JCR) | ||||||||||
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DOI: | https://doi.org/10.3144/expresspolymlett.2020.68 | ||||||||||
Abstract: | The vulcanization of high diene elastomers with conventional or semi-efficient vulcanization systems exhibit reversion at a higher temperature due to the breakage of the polysulfidic crosslinks established in the vulcanized network. As a result, the vulcanizate show inferior mechanical and thermal stability at elevated temperature. In this contest, the anti-re-version ability of Maleide F (75% N,N'-meta phenylene dimaleimide and a 25% blending agent: MF) was evaluated on the vulcanization behavior of cis-polybutadiene rubber (BR) with a conventional accelerated sulfur system. The anti-reversion ability of MF was also compared with Perkalink 900 (1,3-bis (citraconimidomethyl) benzene: PL). Based on the vulcanization studies using a moving die rheometer, it has been realized that MF forms carbon-carbon based bismaleimide crosslinks at the beginning of the vulcanization via Alder-Ene reaction. As a result, MF-filled systems exhibit a remarkable reversion resistance and a plateau type cure behavior even at 180°C for a period of 1hr. On the other hand, PL shows its anti-reversion activity via Diels-Alder reaction after a short reversion. Moreover, the PL filled system exhibits a marching-modulus cure behavior at a higher vulcanization temperature. Therefore, PL cannot be considered as a promising candidate for the high-temperature vulcanization of BR with accelerated sulfur. © 2020, BME-PT and GTE. All rights reserved. | ||||||||||
Full text: | http://www.expresspolymlett.com/letolt.php?file=EPL-0010496&mi=c | ||||||||||
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