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Toughening and strengthening of polypropylene using the rigid-rigid polymer toughening concept Part II Toughening mechanisms investigation

机译:刚性-刚性聚合物增韧概念对聚丙烯的增韧和强化第二部分增韧机理研究

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摘要

Toughening mechanisms in blends of isotactic polypropylene and Noryl polyphenylene oxide/polystyrene (iPP/Noryl) are studied using optical microscopy, scanning electron microscopy and transmission electron microscopy. Large Noryl particles (10-15 μm) are formed in iPP/Noryl blend and crazing is found to be the dominant toughening mechanism. A detailed investigation of fracture mechanisms reveals that Noryl particles help trigger and stabilize massive crazes in the iPP matrix. Incorporation of a small amount of styrene-ethylene-propylene (SEP) compatibilizer helps reduce Noryl particle size and improve interfacial adhesion between iPP and Noryl particles. Crazing and shear banding mechanisms are found to operate sequentially in iPP/Noryl/SEP blends. As a result, significantly improved toughness is obtained.
机译:使用光学显微镜,扫描电子显微镜和透射电子显微镜研究了全同立构聚丙烯和Noryl聚苯醚/聚苯乙烯(iPP / Noryl)混合物的增韧机理。在iPP / Noryl共混物中形成了较大的Noryl颗粒(10-15μm),发现开裂是主要的增韧机理。对断裂机理的详细研究表明,Noryl颗粒有助于触发和稳定iPP基质中的大量疯狂。掺入少量苯乙烯-乙烯-丙烯(SEP)增容剂有助于减小Noryl颗粒尺寸并改善iPP和Noryl颗粒之间的界面粘合力。发现在iPP / Noryl / SEP共混物中,开裂和剪切带化机制依次起作用。结果,获得了显着改善的韧性。

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