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首页> 外文期刊>Journal of polymer engineering >Reactive compatibilization of poly(lactic acid)/polyethylene octene copolymer blends with ethylene-glycidyl methacrylate copolymer
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Reactive compatibilization of poly(lactic acid)/polyethylene octene copolymer blends with ethylene-glycidyl methacrylate copolymer

机译:聚乳酸/聚乙烯辛烯共聚物共混物与乙烯-甲基丙烯酸缩水甘油酯共聚物的反应相容性

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摘要

A melt blending process was used to prepare poly(lactic acid) (PLA)/metallocene catalyzed polyethylene octene copolymer (POE) blends in order to toughen PLA. A commercialized ethylene-glycidyl methacrylate copolymer (EGMA) was applied as a compatibilizer to improve the dispersion and interaction of dispersed POE to the PLA matrix. The results showed that chemical interaction seems to be the driving force for reinforcing the compatibility between PLA and POE, and also the dispersion of POE into the PLA matrix domain. With the incorporation of 10 phr EGMA in the blends, POE was well-dispersed at a sub-micrometer scale within the PLA matrix, indicating better interfacial compatibility between PLA and POE. The impact strength test revealed that POE could significantly toughen PLA containing EGMA in the blends, up to no-break level regarding unnotched Izod impact strength at 10 phr EGMA content. With the increase of EGMA content, the blends showed lower tensile strength, but higher elongation at break due to the elastomeric characteristics of EGMA. When 10 phr of the EGMA was incorporated into the blends, its elongation at break reached 54.5%, 10.7 times that of neat PLA at 5.1%. The melt viscosity of compatibi-lized blends containing 10 phr EGMA increased by more than 50% in comparison with the non-compatibilized blend, which implied a good interfacial interaction between the PLA and POE interface.
机译:熔融共混工艺用于制备聚乳酸(PLA)/茂金属催化的聚乙烯辛烯共聚物(POE)共混物,以增韧PLA。商业化的乙烯-甲基丙烯酸缩水甘油酯共聚物(EGMA)被用作增容剂,以改善POE与PLA基质的分散性和相互作用。结果表明,化学相互作用似乎是增强PLA和POE之间相容性的驱动力,也是POE在PLA基质域中的分散。通过在共混物中加入10 phr EGMA,POE可以在亚微米级良好地分散在PLA基质中,表明PLA和POE之间的界面相容性更好。冲击强度测试表明,POE可以显着增韧共混物中的含EGMA的PLA,至于在10 phr EGMA含量下无缺口的悬臂梁式冲击强度,其断裂强度最高。随着EGMA含量的增加,共混物由于EGMA的弹性特征而显示出较低的拉伸强度,但断裂伸长率较高。当将10 phr的EGMA加入到共混物中时,其断裂伸长率达到54.5%,是纯PLA的5.1%的10.7倍。与不相容的共混物相比,含10 phr EGMA的相容性共混物的熔体粘度提高了50%以上,这意味着PLA和POE界面之间存在良好的界面相互作用。

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