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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >EFFECT OF MOLECULAR ARCHITECTURE OF IN SITU REACTIVE COMPATIBILIZER ON THE MORPHOLOGY AND INTERFACIAL ACTIVITY OF AN IMMISCIBLE POLYOLEFIN/POLYSTYRENE BLEND
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EFFECT OF MOLECULAR ARCHITECTURE OF IN SITU REACTIVE COMPATIBILIZER ON THE MORPHOLOGY AND INTERFACIAL ACTIVITY OF AN IMMISCIBLE POLYOLEFIN/POLYSTYRENE BLEND

机译:原位反应性相容剂的分子体系结构对不相容的聚烯烃/聚苯乙烯共混物的形态和界面活性的影响

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Two different types of in situ compatibilizers, poly(ethylene-ran-acrylic acid) (PE-r-AA) and poly(propylene-graft-acrylic acid) (PP-g-AA), are added to the polystyrene/poly(styrene-ran-glycidyl methacrylate) (PS-GMA) system to study the effect of the distribution of functional units across the entire polymer chain (molecular architecture) of an in situ compatibilizer on the morphology and the reduction in domain size of the disperse phase. The acrylic acid group in both PE-r-AA and PP-g-AA is known to react very easily with the epoxy group in PS-GMA, and thus the PE (or PP)-graft-PS copolymer is formed. We have shown that a random-type copolymer of PE-I-AA is a very effective compatibilizer, in that the domain size of the disperse phase in the PE-r-AA/PS/PS-GMA blend was significantly reduced when increasing the amount of PS-GMA. However, a graft-type copolymer of PP-g-AA is not an effective compatibilizer to reduce domain size of the disperse phase in PP-g-AA/PS/PS-GMA blend even when PS-GMA is added up to 9 wt%. This result is explained by the existence of an inhomogeneous distribution of functional units of AA in PP-g-AA and the homopolymer poly(acrylic acid) (PAA), while for PE-r-AA functional units of AA are well distributed across the entire chain, and no homopolymer of PAA exists. The existence of an inhomogenous distribution of functional units in PP-g-AA was studied by dynamic mechanical thermal analysis and by scanning electron microscopy or transmission electron microscopy. (C) 1997 Elsevier Science Ltd. [References: 41]
机译:将两种不同类型的原位增容剂,聚(乙烯-丙烯酸)(PE-r-AA)和聚(丙烯-接枝丙烯酸)(PP-g-AA),添加到聚苯乙烯/聚(苯乙烯-甲基丙烯酸缩水甘油酯)(PS-GMA)系统研究原位增容剂在整个聚合物链(分子结构)上分布的功能单元对形态和分散相域尺寸减小的影响。已知PE-r-AA和PP-g-AA中的丙烯酸基团都非常容易与PS-GMA中的环氧基反应,因此形成了PE(或PP)-接枝-PS共聚物。我们已经表明,PE-I-AA的无规共聚物是一种非常有效的增容剂,因为当增加PE-r-AA / PS / PS-GMA共混物时,分散相的畴尺寸会明显减小。 PS-GMA的数量。然而,PP-g-AA的接枝型共聚物不是有效的增​​容剂,即使当PS-GMA的添加量不超过9 wt%时,它也无法减小PP-g-AA / PS / PS-GMA共混物中分散相的畴尺寸。 %。该结果可以通过PP-g-AA和均聚物聚丙烯酸(PAA)中AA的功能单元分布不均匀来解释,而对于PE-r-AA,AA的功能单元在整个P-g-AA中分布均匀整个链,并且不存在PAA均聚物。通过动态机械热分析和扫描电子显微镜或透射电子显微镜研究了PP-g-AA中功能单元的不均匀分布。 (C)1997 Elsevier Science Ltd. [参考:41]

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