不同压延策略对阻隔涂层拾取的影响

November 2023 Pub Date : 2023-12-01 DOI:10.32964/tj22.11.665
Peter Rättö, K. Junel, Dimitar Valtakari
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引用次数: 0

摘要

在试验规模的配置中,使用传统的软压区压光机和金属带压光机对纸张进行了预压光。所有压光方法都降低了样品的表面粗糙度和渗透性,但不同的压光方法对表面粗糙度和渗透性的影响不同。与软压区压光机相比,金属带压光机似乎对大规模变化的影响更大。从试验压光纸中选择了六个测试点进行实验室涂布研究。未压光的纸张被列为参考样本。压光纸样和参考纸样都预先涂上了由研磨碳酸钙(GCC)颜料和丙烯酸苯乙烯酯(SA)胶乳组成的普通颜料涂层。未涂覆和预涂覆的基底都涂有一层和两层聚乙烯醇 (PVOH) 阻隔涂层。涂层拾取量以重力法测定,阻隔性能则通过 TAPPI 标准测试方法 T 454 耐油脂性测试进行评估。所有样品都需要两层 PVOH 涂层才能形成油脂阻隔层。未压光的板材在使用一层涂层时效果最好,但与压光板材相比,这是以较高的涂层拾取率为代价的。通过结合使用高温金属带压延和预涂覆技术,可以降低阻隔涂层的附着率。压区的高温和较长的停留时间使纤维发生塑化。这导致了不可逆的变形,即使在加水后也是如此。这意味着在压延过程中获得的平滑度在涂覆过程中受水引起的粗糙度影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of different calendering strategies on barrier coating pickup
Paper was pre-calendered in a pilot scale configuration with a traditional soft nip calender and a metal belt calender. All calendering strategies reduced surface roughness and permeability of the samples, but different strategies affected the surface roughness and permeability differently. The metal belt calender seemed to have a larger effect on the large-scale variations compared to the soft nip calender. Six test points from the pilot calendered papers were chosen for laboratory coating studies. Uncalendered paper was included as reference samples. The calendered samples and the reference were pre-coated with a regular pigmented coating consisting of a ground calcium carbonate (GCC) pigment and a styrene acrylate (SA) latex. Both uncoated and pre-coated substrates were barrier coated with a polyvinyl alcohol (PVOH) in one and two layers. The coating pickup was determined gravimetrically, and the barrier properties were evaluated with TAPPI Standard Test Method T 454 grease resistance test. All samples needed two PVOH coating layers to form a grease barrier. The uncalendered sheets showed the best results with one coating layer, but this was at the expense of a higher coating pickup compared to the calendered sheets. The barrier coating pickup could be reduced by a combination of high temperature metal belt calendering and pre-coating. The high temperature and long residence time in the nip enabled plasticization of the fibers. This led to an irreversible deformation, even after water application. This meant that the smoothness obtained during calendering would be less affected by water-induced roughening during the coating operation.
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