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首页> 外文期刊>Journal of Applied Polymer Science >Reactive Processing of Polymers: Melt Grafting of Glycidyl Methacrylate on Ethylene Propylene Copolymer in the Presence of a Coagent
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Reactive Processing of Polymers: Melt Grafting of Glycidyl Methacrylate on Ethylene Propylene Copolymer in the Presence of a Coagent

机译:聚合物的反应性加工:在助剂存在下,甲基丙烯酸缩水甘油酯在乙烯丙烯共聚物上的熔融接枝

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摘要

Glycidyl methacrylate (GMA) was grafted on ethylene-propylene copoly- mer during melt processing with peroxide initiation in the presence and absence of a more reactive comonomer (coagent), trimethylolpropane triacrylate (Tris). The charac- teristics of the grafting systems in terms of the grafting reaction yield and the nature and extent of the competing side reactions were examined. The homopolymers of GMA (Poly-GMA) and Tris (Poly-Tris) and the GMA-Tris copolymer (GMA-co-Tris) were synthesized and characterized, In the absence of the coagent, high levels of poly-GMA, which constituted the major competing reaction, was formed, giving rise to low GMA grafting levels. Further, this grafting system resulted in a high extoot of gel formation and polymer crosslinking due to the high levels of peroxide needed to achieve optimum GMA grafting and a consequent large drop in the melt index (increased viscosity) of the polymer. In the presence of the coagent, however, the grafting system required much lower peroxide concentration, by almost an order of magnitude, to achieve the optimum grafting yield. The coagent-containing GMA-grafting system has also resulted in a drastic reduction in the extent of all competing reactions, and in particular, the GMA homopolymerization, leading to improved GMA grafting efficiency with no detectable gel or crosslinking. The mechanisms of the grafting reactions, in the presence and absence ofTris, are proposed.
机译:在存在和不存在反应性更强的共聚单体(助剂)三羟甲基丙烷三丙烯酸酯(Tris)的情况下,通过过氧化物引发将甲基丙烯酸缩水甘油酯(GMA)接枝到乙烯-丙烯共聚物上。从接枝反应的收率,竞争性副反应的性质和程度等方面对接枝体系的特性进行了研究。合成并表征了GMA(Poly-GMA)和Tris(Poly-Tris)的均聚物以及GMA-Tris共聚物(GMA-co-Tris),并在没有助剂的情况下表征了高含量的聚GMA,形成了主要的竞争反应,导致低的GMA接枝水平。此外,该接枝系统导致高的凝胶形成和聚合物交联,这是由于获得最佳的GMA接枝所需的高水平的过氧化物以及随之而来的聚合物的熔体指数大幅度下降(粘度增加)。但是,在存在助剂的情况下,接枝体系所需的过氧化物浓度要低得多,几乎达到一个数量级,以达到最佳的接枝率。含助剂的GMA接枝系统还大大降低了所有竞争反应的程度,特别是GMA均聚反应,从而提高了GMA接枝效率,而没有可检测的凝胶或交联。在存在和不存在Tris的情况下,提出了接枝反应的机理。

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