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首页> 外文期刊>Materials >Morphological, Rheological, and Mechanical Properties of Polyamide 6/Polypropylene Blends Compatibilized by Electron-Beam Irradiation in the Presence of a Reactive Agent
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Morphological, Rheological, and Mechanical Properties of Polyamide 6/Polypropylene Blends Compatibilized by Electron-Beam Irradiation in the Presence of a Reactive Agent

机译:在反应剂存在下通过电子束辐照相容的聚酰胺6 /聚丙烯共混物的形态,流变和力学性能

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An immiscible polyamide 6 (PA6)/polypropylene (PP) blend was compatibilized by electron-beam irradiation in the presence of reactive agent. Glycidyl methacrylate (GMA) was chosen as a reactive agent for interfacial cross-copolymerization between dispersed PP and continuous PA6 phases initiated by electron-beam irradiation. The PA6/PP (80/20) mixture containing GMA was prepared using a twin-screw extruder, and then exposed to an electron-beam at various doses at room temperature to produce compatibilized PA6/PP blends. The morphological, rheological, and mechanical properties of blends produced were investigated. Morphology analysis revealed that the diameter of PP particles dispersed in PA6 matrix was decreased with increased irradiation dose and interfacial adhesion increased due to high surface area of treated PP particles. Complex viscosities (η*) and storage moduli (G’) of blends increased with increasing irradiation dose and were higher than those of PA6 and PP. The complex viscosity of the blend irradiated at 200 kGy was 64 and 8 times higher than PA6 and PP, respectively. The elongation at break of blend irradiated less than 100 kGy was about twice that of PA6. Electron beam treatment improved the compatibility at the interface between PA6 and PP matrix in the presence of GMA.
机译:在反应剂存在下,通过电子束辐照使不混溶的聚酰胺6(PA6)/聚丙烯(PP)共混物相容。选择甲基丙烯酸缩水甘油酯(GMA)作为反应剂,用于在分散的PP和电子束照射引发的连续PA6相之间进行界面交叉共聚。使用双螺杆挤出机制备含有GMA的PA6 / PP(80/20)混合物,然后在室温下以各种剂量将其暴露于电子束中以生产相容的PA6 / PP共混物。研究了所产生的共混物的形态,流变和机械性能。形态分析表明,随着辐照剂量的增加,分散在PA6基体中的PP颗粒的直径减小,并且由于处理过的PP颗粒的表面积大,界面粘合性增加。共混物的复数粘度(η*)和储能模量(G')随着辐照剂量的增加而增加,并且高于PA6和PP。在200 kGy照射下,共混物的复数粘度分别比PA6和PP高64倍和8倍。辐照的混合物的断裂伸长率小于100 kGy,约为PA6的两倍。在存在GMA的情况下,电子束处理改善了PA6和PP基质之间界面的相容性。

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