纸和纸板涂料中用作强度添加剂的空心球颜料的使用。第2部分:纸板不透明度和强度配方的优化

November 2020 Pub Date : 2020-12-01 DOI:10.32964/tj19.11.597
B. Einsla, Ethan C Glor, J. Roper, Jeff Leitinger, Nick Nicholas, S. Woodfin
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引用次数: 0

摘要

本文综述了国内外利用空心球颜料(HSPs)测试纸板涂料性能的研究进展。已知热敏感蛋白可以有效地散射光,并在建筑涂料配方中取代二氧化钛(TiO2)。评估了颗粒大小和空隙率的影响,以及许多涂层参数,包括添加水平、粘合剂化学性质和两种HSPs的混合物。具有优化孔洞的小HSPs散射光的强度与含tio2的对照相当。强度数据令人惊讶,特别是含有大粒径HSPs的涂层强度的提高。由于这种强度的增加,粘合剂的四个部分可以被去除,这允许更高的亮度,同时不影响其他性能,包括热熔胶合性。这些趋势适用于不同的粘合剂化学(苯乙烯丙烯酸,乙烯基丙烯酸和苯乙烯丁二烯)。在进一步精炼配方后,两种HSPs的混合物显示出进一步的益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of hollow sphere pigments as strength additives in paper and paperboard coatings—Part 2: Optimization in paperboard formulations for opacity and strength
This report aims to summarize the efforts in testing the properties of coatings for paperboard utilizing hollow sphere pigments (HSPs). HSPs are known to effectively scatter light and replace titanium dioxide (TiO2) in architectural coating formulations. The effect of the particle size and void fraction was evaluated, along with many coating parameters, including level of addition, binder chemistry, and blends of two HSPs. The small HSPs that have optimized voids for scattering light showed equivalent strength to the TiO2-containing control. The strength data was surprising, particularly the improvement in strength for coatings containing large particle size HSPs. Because of this increase in strength, four parts of binder could be removed, which allowed for higher brightness while not compromising other properties, including hot melt glueability. These trends held true using different binder chemistries (styrene acrylic, vinyl acrylic, and styrene butadiene). Upon refining the formulations further, blends of two HSPs showed further benefit.
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