首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >The Influence of Flame, Corona and Atmospheric Plasma Treatments on Surface Properties and Digital Print Quality of Extrusion Coated Paper
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The Influence of Flame, Corona and Atmospheric Plasma Treatments on Surface Properties and Digital Print Quality of Extrusion Coated Paper

机译:火焰,电晕和大气等离子处理对挤出涂布纸表面性能和数字印刷质量的影响

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摘要

Polymer and paper structures have been successfully utilized in several fields, especially in the packaging industry. Together with barrier properties, printability is an important property in packaging applications. From the point of view of printing, the dense and impervious structure of extrusion coatings is challenging. Flame, corona and atmospheric plasma treatments were used to modify the surface of low density polyethylene (LDPE) and polypropylene (PP) and the influence of these surface modifications on print quality, i.e., toner adhesion and visual quality was studied. The traditional surface treatment methods, i.e., flame and corona treatments, increased the surface energy by introducing oxygen containing functional groups on the surfaces of LDPE and PP more than helium and argon plasma treatments. Only in the case of flame treatment, the higher surface energy and oxidation level led to better print quality, i.e., toner adhesion and visual quality, than the plasma treatments. The morphological changes observed on LDPE surface after flame treatment are partly responsible for the improved print quality. Atmospheric plasma treatments improved the print quality of LDPE and PP surfaces more than corona treatment. The electret phenomenon observed on LDPE and PP surfaces only after corona treatment is the most likely reason for the high print mottling and low visual quality of corona treated surface.
机译:聚合物和纸结构已在多个领域中得到成功利用,尤其是在包装行业。与阻隔性能一起,可印刷性是包装应用中的重要属性。从印刷的角度来看,挤出涂层的致密和不渗透的结构是具有挑战性的。使用火焰,电晕和大气等离子体处理来改性低密度聚乙烯(LDPE)和聚丙烯(PP)的表面,并研究这些表面改性对印刷质量的影响,即墨粉附着力和视觉质量。传统的表面处理方法(即火焰和电晕处理)通过在LDPE和PP表面引入含氧官能团比氦和氩等离子体处理更多地增加了表面能。仅在火焰处理的情况下,较高的表面能和氧化水平才比等离子处理获得更好的打印质量,即墨粉附着力和视觉质量。火焰处理后在LDPE表面观察到的形态变化部分是改善打印质量的原因。大气等离子处理比电晕处理更能改善LDPE和PP表面的印刷质量。仅在电晕处理后才在LDPE和PP表面观察到的驻极体现象是电晕处理过的表面的高印刷斑点和低视觉质量的最可能原因。

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