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Balanced toughening and strengthening of ethylene-propylene rubber toughened isotactic polypropylene using a poly(styrene-b-ethylene-propylene) diblock copolymer

机译:使用聚(苯乙烯-b-乙烯-丙烯)二嵌段共聚物的乙烯-丙烯橡胶增韧的全同立构聚丙烯的平衡增韧和增强

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摘要

For ordinary rubber toughened plastics, the introduction of rubber will inevitably bring about the severe decline in mechanical strength due to the low modulus and rigidity of elastomers. To fabricate toughened polypropylene (PP) materials without significant strength degradation, the poly(styrene-b-ethylene-propylene) diblock copolymer (SEP) was used as the third component in an isotactic polypropylene/ethylene-propylene random copolymer (iPP/EPR) to prepare a series of PP/EPR/SEP blends. The phase morphology, dynamic mechanical behavior, crystallization behavior and mechanical properties of PP/EPR/SEP blends were systematically investigated, and compared with PP/EPR blends. The dynamic mechanical analysis results revealed that SEP has good compatibility with both EPR phase and amorphous PP phase, which led to an improvement of interfacial adhesion between them. The mechanical properties testing results indicated that the introduction of SEP could effectively promote the brittle-ductile transition for PP/EPR blends and that PP/EPR/SEP blends presented a good toughness without strength loss. Considering the fact that the individual EPR or SEP could not achieve good toughening, it was proposed that SEP and EPR have a synergistic effect on toughening PP and a modified PP with balanced toughness and tensile strength can be achieved by simultaneously adding EPR and SEP into iPP.
机译:对于普通的橡胶增韧塑料,橡胶的引入将不可避免地导致机械强度的严重下降,这是由于弹性体的模量和刚性较低。为了制造不会显着降低强度的增韧聚丙烯(PP)材料,聚(苯乙烯-b-乙烯-丙烯)二嵌段共聚物(SEP)被用作全同立构聚丙烯/乙烯-丙烯无规共聚物(iPP / EPR)中的第三种成分制备一系列PP / EPR / SEP共混物。系统地研究了PP / EPR / SEP共混物的相形态,动态力学行为,结晶行为和力学性能,并与PP / EPR共混物进行了比较。动态力学分析结果表明,SEP与EPR相和无定形PP相均具有良好的相容性,从而改善了它们之间的界面粘附性。力学性能测试结果表明,SEP的引入可有效促进PP / EPR共混物的脆性-延性转变,并且PP / EPR / SEP共混物具有良好的韧性而不会降低强度。考虑到单独的EPR或SEP不能获得良好的增韧效果,建议SEP和EPR对PP的增韧具有协同作用,同时在iPP中加入EPR和SEP可以实现具有平衡的韧性和拉伸强度的改性PP。 。

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