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Using Additional Layers in Co-extruded HDPE Moisture Barrier Films to Enhance Properties

机译:在共挤HDPE防潮膜中使用其他层以增强性能

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High-density polyethylene (HDPE) is commonly used to provide moisture barrier performance in flexible packaging such as dry food packaging such as cereal liners. These films are often made on 3-layer blown film lines whereone layer consists of a sealant formulation and the remaining two layers are comprised of HDPE. In the past, down-gauging of these film structures was limited by the moisture barrier performance of the HDPE materials available. With the advent of "ultra-high" barrier HDPE materials, barrier performance is no longer the limiting factor in the design of these film structures'1'. Film processors find film toughness is now the limiting factor preventing further gauge reductions. Toughness properties can be improved by incorporation of high toughness material such as single site catalyzed LLDPE but the ability to use these types of materials is very limited in a 3-layer structure.This report details the technological advantages of systematically designing (engineering) a 5 or 7 layer structure with the appropriate building blocks/materials. The incorporation of high toughness materials allowed significant down-gauging without decreasing barrier performance.
机译:高密度聚乙烯(HDPE)通常用于在软包装(例如干粮包装,例如谷物内衬)中提供防潮性能。这些薄膜通常在3层吹膜生产线上制成,其中一层由密封剂组成,其余两层由HDPE组成。过去,这些薄膜结构的减薄技术受到现有HDPE材料的防潮性能的限制。随着“超高”阻隔HDPE材料的出现,阻隔性能不再是这些薄膜结构“ 1”设计中的限制因素。薄膜加工商发现,薄膜韧性现在是阻止规格进一步降低的限制因素。可以通过加入高韧性材料(例如单点催化的LLDPE)来改善韧性,但是在3层结构中使用这些类型的材料的能力非常有限。该报告详细介绍了系统设计(工程)5的技术优势。或具有适当构建基块/材料的7层结构。高韧性材料的加入可在不降低阻隔性能的情况下实现显着的减薄。

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