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Fundamentals of Flame Plasma Surface Treating Troubleshooting Dryer Systems

机译:火焰等离子体表面处理和故障排除干燥系统的基础

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The main objective of any surface modification or surface treatment is to improve adhesion of a coating, ink, adhesive, or another substrate layer to the base substrate which can be paper, a polymer film or aluminum. Plastics are composed of non-polar, long chain molecules, with low surface energy. They are inert molecules. Materials used regularly in extrusion coating and flexible packaging polyolefins such as polyethylene and polypropylene, and aluminum and multilayer structures using these materials. Unlike materials with high surface energies like metals and ceramics, virgin plastics do not contain the available bond sites provided by charged ions distributed over the surface. These provide for Van der Waals bonding forces. Without this molecular attraction (Van der Waals forces), liquids fail to "wet out, or adhere to the surface, resulting in poor adhesion of an ink, coating, adhesive or lamination. As long as solvent based coatings, inks, and adhesives were used in converting processes, surface modification or surface treatment was not usually required, or if it was, the level of treatment was relatively low.
机译:任何表面改性或表面处理的主要目的是改善涂层,油墨,粘合剂或另一个基底层到基础基底的粘附,这可以是纸,聚合物膜或铝。塑料由非极性长链分子组成,具有低表面能。它们是惰性分子。定期用在挤出涂层和柔性包装聚烯烃中使用的材料,例如聚乙烯和聚丙烯,以及使用这些材料的铝和多层结构。与具有金属和陶瓷等高表面能的材料不同,原始塑料不含在表面上分布的带电离子提供的可用粘合位点。这些提供van der Waals键合力。如果没有这种分子吸引力(van der WaaS力),液体未能“弄湿,或粘附到表面上,导致油墨,涂布,粘合剂或层压的粘附性差。只要溶剂基涂层,油墨和粘合剂即可用于转换过程中,通常不需要表面改性或表面处理,或者,如果是,则治疗水平相对较低。

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