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首页> 外文期刊>Rubber Chemistry and Technology >Synthesis, bromination and cure of isobutylene/isoprene p-methylstyrene and isobutylene/isoprene/styrene terpolymers
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Synthesis, bromination and cure of isobutylene/isoprene p-methylstyrene and isobutylene/isoprene/styrene terpolymers

机译:异丁烯/异戊二烯对甲基苯乙烯和异丁烯/异戊二烯/苯乙烯三元共聚物的合成,溴化和固化

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High molecular weight isobutylene/isoprene/p-methylstyrene and isobutylene/isoprene/styrene terpolymers containing up to 10.6 mol% p-methylstyrene and 3.6 mol% styrene were synthesized using "H{sub}2O"/AlCl{sub}3 as an initiator/coinitiator system in methylchloride at -95 ℃. p-Methylstyrene was found to be uniformly distributed in the chains due to its similar reactivity to isobutylene. In contrast, styrene had a lower reactivity than isobutylene or even isoprene, resulting in low conversion of the styrene monomer. The reactivity ratios obtained were in good agreement with the published values. Up to about 3 mol% styrenic monomer Content, the T{sub}g of the terpolymers showed no significant increase. The isoprene units of the terpolymers were brominated by the conventional bromination technique. During bromination, some of the aromatic rings also underwent bromination. The extent of this reaction was found to be much lower in the case of p-methylstyrene than in the case of styrene. The brominated terpolymers were cured using ZnO. The brominated terpolymers displayed much faster cure, higher maximum torque and modulus at the same brominated isoprene concentration than brominated copolymers of isobutylene and isoprene, indicating that the aromatic rings participate in the cure. The brominated terpolymers showed an increased resistance to hot air aging, compared to brominated polymers containing no styrenic termonomer.
机译:使用“ H {sub} 2O” / AlCl {sub} 3作为引发剂,合成了含有高达10.6 mol%对甲基苯乙烯和3.6 mol%苯乙烯的高分子量异丁烯/异戊二烯/对甲基苯乙烯和异丁烯/异戊二烯/苯乙烯三元共聚物/共引发剂体系在-95℃的氯甲烷中。由于对甲基苯乙烯与异丁烯的反应性相似,发现对甲基苯乙烯在链中均匀分布。相反,苯乙烯具有比异丁烯甚至异戊二烯低的反应性,导致苯乙烯单体的低转化率。获得的反应率与公布的值非常一致。高达约3mol%的苯乙烯单体含量,三元共聚物的T {sub} g没有显示出明显的增加。三元共聚物的异戊二烯单元通过常规溴化技术进行溴化。在溴化过程中,一些芳环也进行了溴化。发现该反应的程度在对甲基苯乙烯的情况下比在苯乙烯的情况下低得多。溴化三元共聚物使用ZnO固化。与异丁烯和异戊二烯的溴化共聚物相比,在相同的溴化异戊二烯浓度下,溴化三元共聚物显示出更快的固化,更高的最大扭矩和模量,表明芳环参与了固化。与不含苯乙烯三聚体的溴化聚合物相比,溴化三元共聚物显示出更高的抗热风老化性。

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