Rubbing stability of printed innovative paper substrates containing cereal straw pulp

I. Bates, Ivana Plazonić, Katja Petric-Maretic, Maja Rudolf
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Abstract

Paper is one of the most important materials for packaging and the demand for this material is constantly increasing. The printing and packaging industries are researching alternative sources of fibre, to produce more environmentally friendly paper without compromising quality. As a packaging material, paper must meet high strength requirements, and it has to exhibit acceptable surface properties to preserve the printing quality. This research had two objectives: to produce paper made from pulp of recycled fibre reinforced with virgin straw fibre and to evaluate the print quality on such papers. Straw pulp used for this purpose was obtained from three cereal crops: wheat, barley, and triticale. The paper produced was printed by using five printing techniques. Rubbing stability was evaluated by the difference in colour and reflectance spectra before and after performing rub tests and a comparison was made for the best interaction of paper and ink determined by the printing technique. For the prints with the highest colour difference after the rub test, the surface of the rub test receptor (uncoated recycled paper) was examined for signs of ink transfer during the test and the areas of transferred ink coverage were calculated on their processed microscopic images.
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含谷物草浆印刷创新纸基材的摩擦稳定性
纸是最重要的包装材料之一,对这种材料的需求不断增加。印刷和包装行业正在研究纤维的替代来源,以生产更环保的纸张而不影响质量。作为一种包装材料,纸必须满足高强度的要求,它必须表现出可接受的表面性能,以保持印刷质量。这项研究有两个目的:用再生纤维的纸浆生产纸张,用原始秸秆纤维增强,并评价这种纸张的印刷质量。用于此目的的草浆是从三种谷类作物中获得的:小麦、大麦和小黑麦。所生产的纸张是用五种印刷技术印刷的。通过摩擦测试前后的颜色和反射光谱差异来评价摩擦稳定性,并比较了印刷技术决定的纸墨最佳相互作用。对于摩擦测试后色差最高的印刷品,在测试过程中检查摩擦测试受体(未涂布的再生纸)的表面是否有油墨转移的迹象,并在处理后的显微图像上计算转移油墨覆盖的面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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