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A Practical Model for Predicting Interfacial Flow Instabilities in Polyamide-PE Film Coextrusions Containing Tie Concentrate Blends

机译:预测含领带精矿共混物的聚酰胺-PE薄膜共挤出中界面流动不稳定性的实用模型

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Interfacial distortions at polyamide-polyethylene interfaces in coextruded films were studied and correlated with rheological properties of individual polymers. Melt flow instabilities at polymer-polymer interfaces in a coextruded film creates a non-uniform surface that typically lowers clarity and gloss and increases bulk haze. A mathematical model was developed for estimating flow and rheological properties of individual polymers such as bulk-flow velocity, viscosity, and shear stress from basic material properties and film production parameters. The mathematical model results were verified by experimental results.The test results suggest that interfacial instability is influenced by rheological differences between layers in a coextrusion. The degree of interfacial instability is further amplified as adhesive bonds are formed across the polyamide-tie layer interface. The optical clarity of coextruded films can be improved by minimizing the number of interfacial bonds and matching melt flow velocities and die-wall shear stresses of adjacent polymer melt streams at the mating or flow confluence point.
机译:研究了共挤出薄膜中聚酰胺-聚乙烯界面处的界面畸变,并将其与单个聚合物的流变特性相关联。共挤出薄膜中聚合物-聚合物界面处的熔体流动不稳定性会产生不均匀的表面,通常会降低透明度和光泽度,并增加整体雾度。建立了数学模型,用于根据基本材料特性和薄膜生产参数估算单个聚合物的流动和流变特性,例如整体流速,粘度和剪切应力。实验结果验证了数学模型的结果。 测试结果表明,界面不稳定性受共挤出层之间流变学差异的影响。随着在聚酰胺-粘结层界面上形成粘合键,界面不稳定性的程度进一步增大。共混薄膜的光学清晰度可以通过最小化界面键的数量以及匹配熔体流动速度和在交配或流动汇合点相邻聚合物熔体流的模壁剪切应力来提高。

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    《Tappi place conference》|2008年|275-280|共6页
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    Dan Ward;

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