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EFFECT OF ACCELERATED AGEING ON DEGRADATION OF UNPRINTED AND PRINTED GRAPHIC PAPERBOARDS

机译:加速老化对未打印和打印的图形纸板降解的影响

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摘要

In the study we investigated the influence of surface treatment on permanence and stability of various graphic paperboard types ― board for books, brochures, business cards, calendars, protection package - under the conditions of accelerated ageing with increased temperature and relative humidity in the absence of light according to ISO/5630/3, and as specified for material on paper/board of permanent value by EN/ISO 9706 (∞). Paperboards were coated with various coating colours, and subsequently lab printed in offset technique. The effect of artificial ageing on structural and surface properties ― mainly board/liquid interactions ― as well as on image optical and colour stability was monitored. The changes observed in surface characteristics ― smoothness, roughness, air permeability, absorptivity measured by classical and recent test methods, surface energy ― during and after the accelerated ageing process revealed a strong influence of coating components (pigments, binders) and surface treatment type. Increase in roughness, alteration of board absorption behaviour and change in optical and colour parameters ― decrease in brightness, increase in yellowness, colour shift with samples containing higher amount of optical brightening agents ― were the most pronounced results. Measured differences in colour (dE) and optical density values indicated that colour stability of offset image approached the limit values, which are set for an image of still acceptable quality. Black (K) exhibited the highest stability among CMYK colours. Image colour stability significantly depends on surface and optical board characteristics, especially on gloss and optical brightener agent, as well as on board fibre composition and coating pigments.
机译:在这项研究中,我们调查了表面处理对各种图形纸板类型(用于书籍,小册子,名片,日历,保护性包装的纸板)的持久性和稳定性的影响,这些条件是在温度升高和相对湿度升高的情况下,在没有温度的条件下加速老化的条件下进行的。符合ISO / 5630/3的要求,并且符合EN / ISO 9706(∞)对纸/板上材料具有永久价值的规定。纸板涂有各种涂层颜色,随后以胶版印刷技术进行实验室印刷。监测了人工老化对结构和表面性能(主要是板/液相互作用)以及图像光学和色彩稳定性的影响。在加速老化过程中和之后,观察到的表面特性(光滑度,粗糙度,透气性,通过经典和最新测试方法测得的吸收率,表面能)的变化表明,涂层成分(颜料,粘合剂)和表面处理类型有很大影响。最明显的结果是粗糙度增加,板吸收行为的改变以及光学和颜色参数的变化-亮度降低,泛黄增加,样品中含有较高含量的荧光增白剂的颜色变化-最为明显。测得的颜色(dE)和光学密度值的差异表明,胶印图像的颜色稳定性接近极限值,该极限值是为质量仍可接受的图像设置的。黑色(K)在CMYK颜色中表现出最高的稳定性。图像颜色稳定性在很大程度上取决于表面和光学板的特性,尤其取决于光泽和光学增白剂,以及板纤维成分和涂料颜料。

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