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Multifunctional barrier coating systems created by multilayer curtain coating

机译:多层窗帘涂层创建的多功能屏障涂层系统

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Functional coatings are applied to paper and paperboard substrates to provide resistance,or a barrier,against media such as oil and grease(OGR),water,water vapor as measured by moisture vapor transmission rate(MVTR),and oxygen,for applications such as food packaging,food service,and other non-food packaging.Typical functional barrier coatings can be created by applying a solid coating or extruded film,a solvent based-coating,or a water-based coating to the paper substrate using various means of coating applicators.This paper focuses on water-based barrier coatings(WBBC)for OGR,water,MVTR,and oxygen barriers.The main goal was to create coated systems that can achieve more than one barrier property using multilayer curtain coating(MLCC).Curtain coating has emerged as the premier low-impact application method for coated paper and paperboard.This paper provides examples using MLCC to create coating structures that provide multiple barrier properties in a single coating step.Barrier polymer systems studied include styrene butadiene,styrene acrylate,vinyl acrylic,and natural materials,as well as proprietary additives where required to give desired performance.The paper also shows how the specific coating layers can be optimized to produce the desired property profile,without concern for blocking,as the addition of a non-blocking top layer can be applied in the MLCC structure as well.Experiments on base sheet types also shows the importance of applying the multilayer structure on a pre-coated surface in order to improve coating thickness consistency and potentially allow for the reduction of more expensive layer components.
机译:功能涂层应用于纸张和纸板基材,以提供抵抗力或屏障,用于食品包装、食品服务和其他非食品包装等应用,抵抗油和油脂(OGR)、水、水蒸气(通过水蒸气透过率(MVTR)测量)和氧气等介质。典型的功能性阻隔涂层可以通过使用各种涂层涂敷器将固体涂层或挤压膜、溶剂基涂层或水基涂层涂敷到纸张基材上来创建。本文主要研究用于OGR、水、MVTR和氧气屏障的水基屏障涂层(WBBC)。其主要目标是利用多层帘式涂层(MLCC)创建可实现多种屏障性能的涂层系统。帘式涂布已成为涂布纸和纸板的首选低冲击涂布方法。本文提供了使用MLCC创建涂层结构的示例,该涂层结构在一个涂层步骤中提供多个屏障特性。研究的阻隔聚合物系统包括苯乙烯-丁二烯、苯乙烯-丙烯酸酯、乙烯基丙烯酸和天然材料,以及提供所需性能的专有添加剂。本文还展示了如何优化特定涂层,以产生所需的性能曲线,而不考虑堵塞,因为添加非堵塞顶层也可以应用于MLCC结构。对基板类型的实验还表明,在预涂层表面上应用多层结构的重要性,以提高涂层厚度的一致性,并可能减少更昂贵的层组件。

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