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Hydroxytelechelic hydrocarbon copolymers with high aging resistance for elastomeric materials

机译:具有高耐老化性的弹性体材料的羟基梯碳氢化合物

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Dihydroxytelechelic copolyalkenamers were prepared via metathetical polymerization of cyclic olefins (cyclooctadiene, cyclooctene and cyclododecene) in presence of first generation Grubbs catalyst and butene diacetate as functionalizing chain transfer agent in order to study their aging resistance. The influence of compositions and molar masses of the copolyalkenamers were investigated in terms of thermo-mechanical properties. Increasing chains length or the proportion of polycyclooctadiene allow to get non-cristalline polymers. Low T_g materials (between-78°C and - 108°C) were prepared. The resistance towards oxidation of the different copolyalkenamers was carried out using a viscosity measurement method. A critical time, corresponding to a brutal increase of the apparent viscosity, was related to degradation of the polymers and was shown to be dependent on the Csp~2 proportion in the structure. The absence of vinylic units and the decrease of the double bonds content within the copolymers were proved to enhance the stability of the copolyalkenamers towards aging resistance.
机译:为了研究耐老化性,在第一代格鲁布斯催化剂和二乙酸丁烯酯作为官能化链转移剂的情况下,通过环烯烃(环辛二烯,环辛烯和环十二碳烯)的易位聚合反应制备了二羟基telechelic共聚链烯。从热机械性能方面研究了共聚链烯单体的组成和摩尔质量的影响。链长的增加或聚环辛二烯的比例增加,可以得到非关键的聚合物。制备了低T_g材料(在-78℃至-108℃之间)。使用粘度测量方法进行不同共聚链烯单体的抗氧化性。临界时间,对应于表观粘度的急剧增加,与聚合物的降解有关,并且显示出取决于结构中Csp〜2的比例。事实证明,在共聚物中不存在乙烯基单元和双键含量降低,可提高共聚链烯对老化的稳定性。

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