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Adhesion and Barrier Performance of Novel Barrier Adhesives Used in Multilayered High-Barrier Laminates

机译:多层高阻隔层压板中使用的新型阻隔胶的黏着力和阻隔性能

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摘要

Flexible packaging films for highly sensitive products that are to be protected against moisture and oxygen need high barrier materials. In the food and pharmaceutical packaging industries, barrier films, which contain a single inorganic layer on top of a polymeric substrate, provide sufficient barrier. For the protection of more sensitive products, such as vacuum insulation panels, organic photovoltaic cells, or organic light emitting diodes, the barrier films are, however, not sufficient and multilayered structures of alternating inorganic and polymeric layers are required as encapsulation material to ensure sufficient product lifetime. One approach for the production of multilayered structures is the face-to-face lamination of two barrier films via lamination adhesives. Such multilayered structures are usually referred to as multilayered high-barrier laminates. Solvent-free, UV-curable, epoxy-based adhesives are promising candidates for multilayered high-barrier laminates. The adhesives best suited for multilayered high-barrier laminates are those that provide both high laminate bond strength as well as barrier performance. In this paper three different types of such adhesives are discussed in terms of their water vapor barrier and adhesion performance. The effects of the structural differences in the adhesives — chain mobility, crosslink density and surface energy — on the laminate bond strength and barrier performance are investigated. Laminate bond strength tests were performed and failure types and failure locations in the laminates were examined. The results suggest that the intrinsic barrier performance of the adhesive significantly affects the barrier performance of the laminate. On the other hand, the adhesive having the best barrier performance shows a weak adhesion performance. An appropriate adhesive was designed by adjusting the type of the flexibilizcr and photoinitiator used in its formulation. This adhesive in combination with a barrier film having an enhanced surface energy shows at the same time a promising laminate bond strength as well as barrier performance.
机译:用于防潮和防氧的用于高度敏感产品的软包装薄膜需要高阻隔材料。在食品和药品包装工业中,阻隔膜可提供足够的阻隔,阻隔膜在聚合物基材的顶部包含单个无机层。为了保护更敏感的产品,例如真空绝缘板,有机光伏电池或有机发光二极管,阻隔膜是不够的,并且需要交替的无机层和聚合物层的多层结构作为封装材料,以确保足够产品寿命。一种用于生产多层结构的方法是通过层压粘合剂将两个阻挡膜面对面地层压。这种多层结构通常被称为多层高阻隔层压板。无溶剂,可紫外线固化的环氧类胶粘剂是多层高阻隔层压板的有前途的候选材料。最适合多层高阻隔层压板的胶粘剂是既能提供高层压板粘合强度又能提供阻隔性能的胶粘剂。在本文中,根据其水蒸气阻隔性和粘合性能讨论了三种不同类型的此类粘合剂。研究了粘合剂结构差异(链迁移率,交联密度和表面能)对层压板粘合强度和阻隔性能的影响。进行层压板粘合强度测试,并检查层压板中的失效类型和失效位置。结果表明,粘合剂的固有阻隔性能显着影响层压材料的阻隔性能。另一方面,具有最佳阻隔性能的粘合剂表现出较弱的粘合性能。通过调节配方中使用的柔韧性和光引发剂的类型来设计合适的粘合剂。该粘合剂与具有增强的表面能的阻挡膜的组合同时显示出有希望的层压体粘合强度以及阻挡性能。

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