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Sharkskin melt fracture in high-performance hexene-lldpes

机译:Sharkskin在高性能己烯-LLDPES中熔化骨折

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Several types of High-Performance Hexene (HPH)-LLDPE have been introduced in recent years for high-strength blown film applications, with substantial enhancement of film properties over conventional Ziegler-Natta LLDPEs. The present work is a study of the comparative behavior of the various types of LLDPEs under processign conditions designed to induce sharkskin melt fracture (SSMF). Both capillary rheology and blown film studies were conducted. The ability of capillary rheology to capture the difference between resins in terms of their relative tendency to sharksin melt fracture was investigated in parallel with blown film studies at different shear rates and die gaps. Film blowign is more effective in discriminating between resins and identifying melt fracture tendency. The influence of sharkskin melt fracture on the film propertie swas also quantified, showing the film impact strength to be affected most sensitively, and negatively, by the presence and severity of sharkskin melt fracture (SSMF).
机译:近年来近年来近年来为高强度吹膜薄膜应用引入了几种类型的高性能己烯(HPH),在传统的Ziegler-Natta LLDPES上具有显着提高薄膜特性。目前的作品是对旨在诱导鲨鱼天熔体(SSMF)的各种类型的LLDPES的比较行为的研究。进行毛细血管流变学和吹薄膜研究。在不同剪切速率下与吹膜研究平行研究了毛细血管流变学捕获树脂之间的差异的差异,并在不同的剪切速率下进行吹膜和模具间隙。薄膜灌注在鉴别树脂和识别熔体骨折倾向方面更有效。 Sharkskin熔体骨折对薄膜性能SWA的影响也定量,显示薄膜冲击强度受到最敏感的影响,并且通过鲨鱼素熔体骨折(SSMF)的存在和严重程度产生负面影响。

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