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The effect of comonomer concentration and distribution on the photo-oxidative degradation of linear low density polyethylene films

机译:共聚单体浓度和分布对线性低密度聚乙烯薄膜光氧化降解的影响

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The photo-oxidative degradation of two complementary linear low density polyethylene (LLDPE) films has been studied: a Ziegler-Natta catalysed 1-octene copolymer (ZN-LLDPE) and a 1-octene copolymer produced by a single site constrained catalyst (m-LLDPE). The degradation processes were followed using a range of characterisation techniques including tensile testing, GPC, MAS-NMR, FTIR, WAXS and SAXS. The chemical species formed on degradation were similar for both polymers. Both also showed an increase in crystallinity and modulus with UV ageing time and a decrease in the long spacing of the lamella. However, the m-LLDPE showed a significantly shorter time to embrittlement than the ZN-LLDPE, which correlated in both polymers with the disappearance of the second yield point. The major observed difference in crystalline structure was a significantly higher interfacial thickness between the crystalline lamellae and the amorphous regions for the ZN-LLDPE, which decreased rapidly on UV ageing. This difference in behaviour was attributed to the nature of the branching in the ZN-LLDPE, which was presumed to sit in blocks along the chain and thus to reside in the interfacial regions. Cleavage of the tertiary carbons in these interfacial regions was less damaging to the mechanical properties than for the m-LLDPE, where chain scission broke more of the tie molecules, thus limiting the ability of the polymer to draw.. This work advances our understanding of polymer microstructural evolution during degradation and the implications of initial polymerisation route and molecular structure on the degradation mechanisms. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经研究了两个互补线性低密度聚乙烯(LLDPE)膜的光氧化降解:Ziegler-Natta催化的1-辛烯共聚物(Zn-LLDPE)和由单个位点约束催化剂产生的1-辛烯共聚物(M- LLDPE)。然后使用一系列表征技术,包括拉伸试验,GPC,MAS-NMR,FTIR,蜡和淋巴。在降解中形成的化学物质对于两种聚合物相似。两者也表明结晶度和模量随UV老化时间的增加和薄片的长距离的减少。然而,M-LLDPE显示出比Zn-LLDPE显着较短的脆性时间,这些Zn-LLDPE在两种聚合物中与第二屈服点消失的聚合物相关。结晶结构的主要观察差异是Zn-LLDPE的结晶薄片和无定形区域之间的界面厚度显着较高,这在紫外线上迅速降低。这种行为的这种差异归因于Zn-LLDPE中的分支的性质,这被推测沿着链条坐在块中,从而驻留在界面区域中。这些界面区域中的叔碳的裂解对机械性能的损害程度较小,而不是M-LLDPE,其中链群突破了更多的扎带分子,从而限制了聚合物抽取的能力。这项工作进展了我们对的理解初始聚合途径降解和分子结构在降解机制的降解过程中的聚合物微观结构演变。 (c)2017 Elsevier Ltd.保留所有权利。

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