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首页> 外文期刊>Journal of Applied Polymer Science >Effects of processing conditions on the barrier properties of polyethylene (PE)/modified polyamide (MPA) and modified polyethylene (MPE)/polyamide (PA) blends
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Effects of processing conditions on the barrier properties of polyethylene (PE)/modified polyamide (MPA) and modified polyethylene (MPE)/polyamide (PA) blends

机译:加工条件对聚乙烯(PE)/改性聚酰胺(MPA)和改性聚乙烯(MPE)/聚酰胺(PA)共混物阻隔性能的影响

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Different modified polyamide (MPA) and modified polyethylene (MPE) resins were prepared by reactive extrusion of different contents of a compatibilizer precursor (CP) with either polyamide (PA) or polyethylene (PE). The MPE and MPA resins were then blow-molded with designed amounts of Ph or PE resins to prepare four different sets of MPE/PA and PE/MPA bottles with the same CP, PA, and PE compositions. Somewhat surprisingly, the xylene permeation resistance of the MPE bottles is worse than that of the base PE bottle and decreases consistently as MPE contains more CP. In contrast, the MPE/PA and PE/MPA bottles exhibit much better xylene permeation resistance than that of the base PE bottle, wherein the PE/MPA bottles show significantly better permeation resistance than that of the corresponding MPE/PA bottles prepared at the same blow-molding conditions. On the other hand, it is worth noting that the xylene permeation rate of each of the MPE/PA and PE/MPA bottles prepared at a fixed extrusion temperature reaches a minimum when prepared with an optimum screw speed near 400 rpm. Similarly, at a fixed screw speed, the highest permeation resistance of each PE/MPA bottle is always obtained when prepared at an optimum extrusion temperature of about 230 degrees C. However, the xylene permeation resistance of each MPE/PA bottle improves consistently when prepared at the higher extrusion temperatures used in this study. These interesting phenomena were investigated in terms of the morphology, thermal analysis of the PE/MPA and MPE/PA blends, the compatibility between PE (or MPE) and MPA (or PA), and the viscosity ratios of MPA (or PA) to PE (or MPE) during the blow-molding process. (C) 2000 John Wiley & Sons, Inc. [References: 22]
机译:通过将不同含量的相容剂前体(CP)与聚酰胺(PA)或聚乙烯(PE)反应挤出,可以制备不同的改性聚酰胺(MPA)和改性聚乙烯(MPE)树脂。然后将MPE和MPA树脂与设计量的Ph或PE树脂吹塑在一起,以制备四组不同的MPE / PA和PE / MPA瓶,它们具有相同的CP,PA和PE组成。出乎意料的是,MPE瓶的二甲苯渗透性比基础PE瓶差,并且随着MPE包含更多的CP而持续降低。相比之下,MPE / PA和PE / MPA瓶的耐二甲苯渗透性比基础PE瓶好,其中PE / MPA瓶的抗渗透性比在相同条件下制备的相应MPE / PA瓶好。吹塑条件。另一方面,值得注意的是,当以接近400 rpm的最佳螺杆速度进行制备时,在固定的挤出温度下制备的MPE / PA和PE / MPA瓶子的二甲苯渗透率达到最小值。类似地,以固定的螺杆速度,在约230摄氏度的最佳挤出温度下制备时,始终会获得每个PE / MPA瓶的最高抗渗透性。但是,制备后,每个MPE / PA瓶的二甲苯抗渗透性会不断提高。在这项研究中使用的较高挤出温度下。对这些有趣的现象进行了形态,PE / MPA和MPE / PA共混物的热分析,PE(或MPE)和MPA(或PA)之间的相容性以及MPA(或PA)与PE的粘度比方面的研究。 PE(或MPE)在吹塑过程中。 (C)2000 John Wiley&Sons,Inc. [参考:22]

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