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Phase morphology and melt rheological behavior of uncrosslinked and dynamically crosslinked polyolefin blends: role of macromolecular structure

机译:未交联和动态交联的聚烯烃共混物的相形态和熔体流变行为:高分子结构的作用

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Thermoplastic vulcanizates (TPVs) based on polypropylene (PP) with ethylene–octene copolymer (EOC) and ethylene propylene diene rubber (EPDM) have been prepared by co-agent-assisted peroxide crosslinking system. The study was pursued to explore the influence of two dissimilar polyolefin polymers having different molecular architecture on the state and mode of dispersion of the blend components and their influence on melt rheological properties. The effects of dynamic crosslinking of the PP/EOC and PP/EPDM have been compared with special reference to the concentration of crosslinking agent and ratio of blend components. Morphological analyses show that, irrespective of blend ratio, dynamic vulcanization exhibits a dispersed phase morphology with crosslinked EOC or EPDM particles in the continuous PP matrix. It was found that viscosity ratio plays a crucial role in determining the state and mode of dispersion of blend components in the uncrosslinked system. The lower viscosity and torque values of uncrosslinked and dynamically crosslinked blends of PP/EOC in the melt state indicates that they exhibit better processing characteristics when compared to corresponding PP/EPDM blends.
机译:通过共助剂过氧化物交联体系制备了基于聚丙烯(PP),乙烯-辛烯共聚物(EOC)和乙烯丙烯二烯橡胶(EPDM)的热塑性硫化橡胶(TPV)。进行该研究以探索两种具有不同分子结构的异种聚烯烃聚合物对共混物组分的分散状态和方式的影响及其对熔体流变性能的影响。已将PP / EOC和PP / EPDM的动态交联效果与交联剂的浓度和共混组分的比例进行了比较。形态分析表明,与共混比无关,动态硫化在连续的PP基体中表现出具有交联的EOC或EPDM颗粒的分散相形态。发现粘度比在确定未交联体系中共混物组分的分散状态和方式中起着至关重要的作用。处于熔融状态的未交联和动态交联的PP / EOC共混物的粘度和扭矩值较低,表明与相应的PP / EPDM共混物相比,它们显示出更好的加工特性。

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