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Influence of molecular architecture and melt rheological characteristic on the optical properties of LDPE blown films

机译:分子结构和熔体流变特性对LDPE吹塑薄膜光学性能的影响

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摘要

A systematic investigation on the origin of the haze of LDPE blown films was conducted, aiming to correlate the film haze with the molecular architecture and melt rheological properties. First of all, the haze measurement indicated that the surface haze, rather than the bulk haze, is the dominating factor for the total haze of the investigated films. No spherulitic crystals or other superstructures were observed for the LDPE blown films, implying that the crystallites formed in the film-blowing process are too small to be responsible for the optical haze. Rheological study revealed that the surface roughness was originated from the irregular flow of LDPE melt during the extrusion process. NMR, GPC and parallel-plate rheology were applied to study the molecular architecture of the LDPE resins. It was found that the LDPE sample with higher haze value exhibits distinctly larger portion of higher molecular weight component, broader molar mass distribution, significantly higher side chain branch density.
机译:对LDPE吹膜的雾度成因进行了系统的研究,旨在使膜雾度与分子结构和熔体流变特性相关。首先,雾度测量表明表面雾度而不是整体雾度是所研究膜的总雾度的主要因素。对于LDPE吹膜,未观察到球晶或其他上部结构,这表明吹膜过程中形成的微晶太小,无法引起光学雾度。流变学研究表明,表面粗糙度起因于挤出过程中LDPE熔体的不规则流动。 NMR,GPC和平行板流变学用于研究LDPE树脂的分子结构。发现具有更高雾度值的LDPE样品表现出明显更大的部分,即更高的分子量组分,更宽的摩尔质量分布,明显更高的侧链支化密度。

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