Surface energy considerations for offset printing of coated paper and paperboard

November 2023 Pub Date : 2023-12-01 DOI:10.32964/tj22.11.724
J. Preston, Andrew Findlay, Jonathan Keen, Eli Gaskin
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Abstract

Offset printing of coated paper involves the complex interactions of ink with a surface that is characterized by three major properties: roughness, porosity, and related pore network structure and surface chemistry (related to surface free energy [SFE]). The effects of porosity and roughness are relatively well understood and are documented in the literature, whereas the influence of surface chemistry is much less studied and therefore the focus of this paper. The key results shown include: i) Coating porosity has a negligible effect on SFE determination by contact angle using two fluids. ii) The chemistry of the latex polymer in the coating formulation dominates the influence on SFE compared to pigment, with any surface energy differences present in the pigment being almost completely masked by latex. iii) Wetting agent and corona treatment can impact water absorption rate and surface spreading of water, resulting in small differences in printability. Increasing the concentration of the surfactant on a coated surface indicates switching orientation of the surfactant molecules, giving a “step wise” printing result. When looking to improve offset printability by selection of different pigments, the variation in SFE is less important than variation in either surface roughness or porosity.
涂布纸和纸板胶版印刷的表面能考虑因素
涂布纸的胶版印刷涉及油墨与表面的复杂相互作用,而表面有三大特性:粗糙度、孔隙率和相关的孔隙网络结构以及表面化学(与表面自由能 [SFE] 有关)。孔隙率和粗糙度的影响相对较好理解,在文献中也有记载,而表面化学的影响研究较少,因此是本文的重点。显示的主要结果包括:i) 涂料孔隙率对使用两种流体通过接触角测定 SFE 的影响微乎其微;ii) 与颜料相比,涂料配方中乳胶聚合物的化学性质对 SFE 的影响最大,颜料中存在的任何表面能差异几乎都会被乳胶完全掩盖;iii) 润湿剂和电晕处理会影响吸水率和水的表面扩散,从而导致印刷适性的微小差异。提高表面活性剂在涂层表面的浓度会改变表面活性剂分子的取向,从而产生 "渐进式 "印刷效果。当希望通过选择不同的颜料来改善胶印印刷适性时,SFE 的变化不如表面粗糙度或孔隙率的变化重要。
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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