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首页> 外文期刊>Journal of Plastic Film & Sheeting >Improvements in flex oxygen barrier properties of polymeric films by microlayer coextrusion
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Improvements in flex oxygen barrier properties of polymeric films by microlayer coextrusion

机译:通过微层共挤出改善聚合物薄膜的挠性氧气阻隔性能

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This study describes a process technology to maintain or improve the gas barrier property of ethylene vinyl alcohol (EVOH) barrier films after flexing. EVOH and polyethylene-grafted maleic anhydride (PE-g-MA) multi-and microlayer samples with 5, 19, and 35 layers were produced in a coextrusion line. Flexing was performed using a Gelbo flex tester (400 flexes). After flexing, pin hole tests were performed on the film and only those with fewer than two pin holes were re-tested for oxygen transmission rate (OTR). Pin holes decreased after 400 Gelbo flexes as the number of layers increased. The OTR on these films demonstrated that thin EVOH barrier layers can improve film flex crack resistance. This proves that for a given barrier resin total thickness the flex barrier property can be increased dramatically by microlayering.
机译:这项研究描述了一种在弯曲后保持或改善乙烯乙烯醇(EVOH)阻隔膜的阻气性能的工艺技术。在共挤生产线上生产了具有5、19和35层的EVOH和聚乙烯接枝的马来酸酐(PE-g-MA)多层和微层样品。使用Gelbo挠曲测试仪(400次弯曲)进行弯曲。弯曲后,在膜上进行针孔测试,仅对那些少于两个针孔的样品进行氧气透过率(OTR)的重新测试。 400 Gelbo弯曲后,随着层数的增加,针孔减少。这些薄膜上的OTR表明,薄的EVOH阻挡层可以提高薄膜弯曲抗裂性。这证明对于给定的阻隔树脂总厚度,挠性阻隔性能可通过微层法显着提高。

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