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首页> 外文期刊>Journal of Polymer Research >Polar and non-polar solvent permeation resistance of blow-molded bottles of polyethylene/blends of modified polyamide and polyamide 6 clay nanocomposite
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Polar and non-polar solvent permeation resistance of blow-molded bottles of polyethylene/blends of modified polyamide and polyamide 6 clay nanocomposite

机译:聚乙烯吹塑瓶/改性聚酰胺和聚酰胺6粘土纳米复合材料混合物的极性和非极性溶剂渗透性

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摘要

Investigations on white spirit and acetone permeation resistance of modified polyamide and nylon 6 clay (MPANYC) blends and their corresponding polyethylene/MPANYC bottles were reported in this study. The white spirit and acetone permeation resistance of MPANYC sheets improve consistently with increasing NYC contents present in MPANYC resins after blending nylon 6 clay (NYC) in modified polyamide (MPA) resins. However, the order of barrier improvement of the PE/MPANYC and PE/NYC bottle specimens is not corresponding to the order of barrier improvement of the MPANYC and/or NYC barrier resins added in PE. The blow-molded PE/NYC bottle specimen exhibits similarly worse white spirit and acetone solvent permeation resistance as the PE bottle specimen, wherein no clearly formed NYC laminas but only dispersed NYC droplets or agglomerates were found on the fracture surfaces of the PE/NYC bottles. However, after blending optimum compositions of MPANYC in PE, the PE/MPANYC bottles with demarcated MPANYC laminas exhibit significantly better white spirit and acetone permeation resistance than the PE/MPA bottle, wherein the white spirit and acetone permeation rates of the PE/MPA(8)NYC(1) bottle are about 1.3 and 1.4 times slower than those of the PE/MPA bottle, respectively. In order to understand these interesting barrier properties of PE/MPANYC and PE/NYC bottles, theological, thermal, wide angle X-ray diffraction and morphological properties of the base MPANYC and NYC resins and their corresponding morphology present in the blow-molded bottles were investigated.
机译:这项研究报告了改性聚酰胺和尼龙6黏土(MPANYC)共混物及其相应的聚乙烯/ MPANYC瓶对白油和丙酮渗透性的研究。将尼龙6粘土(NYC)与改性聚酰胺(MPA)树脂共混后,MPANYC片材的耐白酒精性和抗丙酮渗透性随着MPANYC树脂中NYC含量的增加而不断提高。但是,PE / MPANYC和PE / NYC瓶标本的阻隔性改善顺序与PE中添加的MPANYC和/或NYC阻隔树脂的阻隔性改善顺序并不对应。吹塑成型的PE / NYC瓶标本表现出与PE瓶标本相似的更差的白酒精和丙酮溶剂渗透性,其中没有清晰形成的NYC薄片,但在PE / NYC瓶的断裂表面上仅发现分散的NYC液滴或附聚物。然而,在将PEMPANYC的最佳成分混合到PE中后,带有划定的MPANYC薄片的PE / MPANYC瓶子显示出比PE / MPA瓶子更好的抗白酒和丙酮渗透性,其中PE / MPA( 8)NYC(1)瓶分别比PE / MPA瓶慢1.3倍和1.4倍。为了了解PE / MPANYC和PE / NYC瓶的这些有趣的阻隔性能,对基础MPANYC和NYC树脂的流变,热,广角X射线衍射和形态学特性以及吹塑瓶中存在的相应形态进行了分析。调查。

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