Impact of non-uniform water absorption on water-interference print mottle in offset printing

Author:

Thorman Sofia12,Ström Göran3,Gane Patrick A. C.45

Affiliation:

1. RISE Bioeconomy , Box 5604, SE-114 86 Stockholm , Sweden

2. Karlstad University , Department of Engineering and Chemical Sciences , 651 88 Karlstad , Sweden

3. now retired, RISE Bioeconomy , Box 5604, SE-114 86 Stockholm , Sweden

4. Omya International AG , Baslerstrasse 42, CH-4665 Oftringen , Switzerland

5. School of Chemical Engineering, Department of Bioproducts and Biosystems , Aalto University , 00076 Aalto , Finland

Abstract

Abstract Print mottle is a serious and yet common print defect in offset printing. An imbalance between the feed of fountain solution and the ability of the paper substrate to absorb and transport this water away from the surface can cause moisture/water interference problems. In the study presented here, we have investigated the uniformity of aqueous absorption and coating structure of pilot-coated papers with different types and dosages of dispersants and linked this to print mottle and uncovered areas (UCA). In earlier studies, the print quality of these papers indicated that a moderate addition of excess dispersant caused ink refusal, ink-lift-off (ink-surface adhesion failure) and water-interference mottle when printing at elevated fountain feed. In the present study, we have shown that a majority of the samples with uneven water/moisture absorption and an uneven burn-out reflectance tended to have more severe printing problems related to surface-moisture/water.An aqueous staining technique was used to characterise the absorption non-uniformities. This method has been developed previously with focus on absorption of flexographic water-based inks but can clearly give relevant information also for offset printing, when it comes to moisture/water interference mottle.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,Forestry

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