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On the refractive index contrast modification in paper and printing applications : studies with fillers and coating pigments

机译:关于纸张和印刷应用中折射率对比度的改变:填料和涂料颜料的研究

摘要

In papermaking, fillers are traditionally added to the fibrous stock to extend expensive fibre, to improve the paper surface uniformity enabling beneficial liquid interactions during printing, and to improve the light scattering coefficient of paper. It is advantageous, therefore, to introduce as much filler as possible. However, fillers also have negative effects on paper properties, such as weakening the paper by preventing the formation of fibre-fibre bonds, which limit their use. Accordingly, fillers must be optimised to achieve the best functionality at controlled dose. One objective of the work is to improve paper optical properties, which could later promote more efficient use of materials in papermaking. Light scattering potential of fillers can be controlled by changes in the particle size distribution (PSD), specific surface area (SSA), shape, surface chemistry and refractive index (RI). Refractive index has received the least attention of these approaches. Therefore, novel fillers displaying increased effective refractive indices were developed. The results suggest that the methods studied can improve the light scattering effects. Since there are difficulties deconvoluting the boundary refractive index contrast from particle size in complex paper composites, which were highlighted in the first part, a second objective of the work was to study the complementary situation of reducing RI contrast by introducing liquid into a porous paper coating. The liquid distribution was then monitored by reflectance measurements. Knowledge of absorption behaviour of liquids into paper is essential for the print quality and controllability of printing processes. A relationship could be established, normalised for porosity, describing the reflectance change as a function of saturation level. In conclusion, the local change of refractive index boundary in a porous medium can be monitored indirectly via light scattering, or vice versa modified to affect scattering, and the opportunities for enhancing the function of filler-containing porous media can be identified. The combination of the publications and complementary results bound together in this work suggest that the methods studied provide potentially important new means to utilise RI contrast modification in papermaking and printing applications.
机译:在造纸中,传统上将填料添加到纤维原料中以延伸昂贵的纤维,以改善纸张表面均匀性,从而在印刷过程中实现有益的液体相互作用,并改善纸张的光散射系数。因此,有利的是引入尽可能多的填料。但是,填料也对纸的性能产生负面影响,例如通过防止形成纤维-纤维键而削弱纸的性能,从而限制了它们的使用。因此,必须优化填充剂以在受控剂量下获得最佳功能。这项工作的目的之一是改善纸张的光学性能,这以后可以促进造纸中材料的更有效利用。填料的光散射潜力可以通过粒径分布(PSD),比表面积(SSA),形状,表面化学性质和折射率(RI)的变化来控制。折光率受到这些方法的关注最少。因此,开发了显示出增加的有效折射率的新型填料。结果表明所研究的方法可以改善光散射效果。由于在复杂的纸复合材料中难以将边界折射率对比从颗粒尺寸反卷积,这在第一部分中得到了强调,因此工作的第二个目标是研究通过将液体引入多孔纸涂料中来降低RI对比的补充情况。 。然后通过反射率测量监测液体分布。了解液体在纸张中的吸收行为对于打印质量和打印过程的可控性至关重要。可以建立一种关系,将其标准化为孔隙率,将反射率变化描述为饱和度的函数。总之,可以通过光散射间接地监测多孔介质中折射率边界的局部变化,反之亦然,可以通过改变其影响散射来对其进行监测,从而可以确定增强含填料的多孔介质功能的机会。出版物的结合以及在这项工作中捆绑在一起的补充结果表明,所研究的方法提供了潜在重要的新手段,可以在造纸和印刷应用中利用RI对比度修饰。

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    Koivunen Kimmo;

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  • 年度 2011
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