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Experimental Set-Up and Characterization of a mLLDPE-PP Co-Extruded Bilayer System

机译:mLLDPE-PP共挤双层系统的实验装置和表征

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The rheological behavior of the bilayer system mLLDPE (metallocene linear low density polyethylene)-PP (polypropylene) obtained by a coextrusion process has been investigated in this work.Metallocene polyethyl-enes are characterized by a superior toughness,heat sealing,and optical properties when compared with conventional polyethylenes.The purpose of the addition of PP in a two layer structure is to confer a better process facility and an enhanced rigidity to the structure itself.A rheological characterization of the two polymers was performed in order to study the flow behavior in each resin,and to verify their compatibility in a coextrusion process.Films,containing different percentages of metallocene polyethylene,were produced by a cast coextrusion process.Moreover,a mathematical modeling of the process was done in order to predict the die pressure gradient,the relative thicknesses,and the shear stress distributions as function of working conditions and rheological properties in the individual polymers.A preliminary investigation on the effect of film composition on the performance of the coextruded bi-layers was realized by performing some mechanical tests.
机译:本文研究了通过共挤出工艺获得的双层体系mLLDPE(茂金属线性低密度聚乙烯)-PP(聚丙烯)的流变行为。茂金属聚乙烯具有优异的韧性,热封性和光学性能。与常规聚乙烯相比,在两层结构中添加PP的目的是为了赋予其更好的加工设备和增强结构本身的刚性。对这两种聚合物进行流变学表征,以研究其流动性。每种树脂,并验证它们在共挤出过程中的相容性。通过共铸铸造工艺生产包含不同百分比的茂金属聚乙烯的薄膜。此外,对该过程进行了数学建模以预测模具压力梯度,相对厚度,剪切应力分布随工作条件和流变特性的变化通过进行一些机械测试,实现了对膜组成对共挤双层性能的影响的初步研究。

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