Liu Yihe, Shen Yiding, Li Xiaorui, Dang Yuanyuan, Li Lintao, Yang Kai
Shaanxi Key Laboratory of Chemical Additives for Industry, Shaanxi University of Science and Technology Xi'an 710021 China
RSC Adv. 2022 May 3;12(21):13267-13278. doi: 10.1039/d1ra08139j. eCollection 2022 Apr 28.
The printing quality and strength of specialty papers such as money, maps, newspapers and bank notes have been a significance challenge in recent years. The adhesive effect between ink and paper is depend on both the secondary binding force between the molecules and the mechanical anchoring effect of the ink on the paper. Also, the porous and fibrous structures of base paper restrain its application in printed products because of the strong capillary effect leading to the diffusion of ink particles. To address the problems involved in ink diffusion and mechanical reinforcement, surface sizing is an attractive choice from the perspective of paper handling. Herein, the surface sizing system of specialty paper with an interpenetrating polyvinyl alcohol-blocked polyurethane polymer network was applied to fabricate paper of high ink adhesive properties. In the case of the same external factors (gluing temperature, drying time, ), the surface sizing effect of paper samples (sizing with TBPU, polyvinyl alcohol and TBPU/PVA system) were evaluated by infrared spectroscopy, X-ray photoelectron spectroscopy, water contact angle measurements and scanning electron microscopy. Some of the pure cotton pulp paper with surface sizing treatment was treated adhering inks to paper by spraying, smearing and soaking. The bonding strength was tested by peel-off tape tests, soaking tests, and simulated washing tests. The results showed that the water contact angle of the sized-paper increased from 67.6° to 89.7°. The mechanical properties had been greatly improved after treatment and SEM, AFM and XPS analyses indicated an increase in surface roughness and the oxygen-containing polar groups (C[double bond, length as m-dash]O, C-OH, -NH-COO- and COOH) enhanced the fixation of ink particles on the fiber surface. These tests indicated that the novel composite system of TBPU/PVA could endow specialty paper with superb mechanical properties and more than 90% ink retention rate. All these advantages of this composite system may contribute to its wide application in the fields of papermaking and printing.
近年来,诸如货币、地图、报纸和钞票等特种纸的印刷质量和强度一直是一个重大挑战。油墨与纸张之间的粘附效果取决于分子间的二次结合力以及油墨在纸张上的机械锚固作用。此外,原纸的多孔和纤维结构限制了其在印刷产品中的应用,因为强烈的毛细作用会导致油墨颗粒扩散。为了解决油墨扩散和机械增强方面的问题,从纸张处理的角度来看,表面施胶是一个有吸引力的选择。在此,应用具有互穿聚乙烯醇封端聚氨酯聚合物网络的特种纸表面施胶系统来制备具有高油墨粘附性能的纸张。在相同外部因素(施胶温度、干燥时间等)的情况下,通过红外光谱、X射线光电子能谱、水接触角测量和扫描电子显微镜对纸样(用TBPU、聚乙烯醇和TBPU/PVA系统施胶)的表面施胶效果进行了评估。对一些经过表面施胶处理的纯棉浆纸进行了通过喷涂、涂抹和浸泡将油墨粘附到纸张上的处理。通过剥离胶带试验、浸泡试验和模拟洗涤试验测试了粘结强度。结果表明,施胶纸的水接触角从67.6°增加到了89.7°。处理后机械性能有了很大提高,扫描电子显微镜、原子力显微镜和X射线光电子能谱分析表明表面粗糙度增加,含氧极性基团(C=O、C-OH、-NH-COO-和COOH)增强了油墨颗粒在纤维表面的固定。这些测试表明,新型的TBPU/PVA复合系统可以赋予特种纸优异的机械性能和超过90%的油墨保留率。该复合系统的所有这些优点可能有助于其在造纸和印刷领域的广泛应用。