Physicochemical characterization of titanium dioxide inks for digital textile printing based on newly developed polyurethane prepolymers

分散剂 材料科学 聚乙二醇 聚氨酯 化学工程 二氧化钛 聚酯纤维 复合材料 色散(光学) 工程类 光学 物理
作者
M.F. Hassanein,Martin Rahm,H. M. Abd El Bary,H. Abd El‐Wahab
出处
期刊:Pigment & Resin Technology [Emerald (MCB UP)]
卷期号:53 (6): 866-881
标识
DOI:10.1108/prt-03-2023-0025
摘要

Purpose This paper aims to study the physical and chemical characteristics of inkjet titanium dioxide inks for cotton fabric digital printing. Design/methodology/approach Different dispersing agents through the reaction of glycerol monooleate and toluene diisocyanate were prepared and then performed by using three different polyols (succinic anhydride-modified polyethylene glycol PEG 600, EO/PO Polyether Monoamine and p-chloro aniline Polyether Monoamine), to obtain three different dispersing agents for water-based titanium dioxide inkjet inks. The prepared dispersants were characterized using FTIR to monitor the reaction progress. Then the prepared dispersants were formulated in titanium dioxide inkjet inks formulation and characterized by particle size, dynamic surface tension, transmission electron microscopy, viscosity and zeta potential against commercial dispersants. Also, the study was extended to evaluate the printed polyester by using the prepared inks according to washing and crock fastness. Findings The obtained results showed that p-chloro aniline Polyether Monoamine (J) and succinic anhydride modified polyethylene glycol PEG 600 (H) dispersants provided optimum performance as compared to commercial standards especially, particle size distribution data while EO/PO Polyether Monoamine based on dispersant was against and then failed with the wettability and dispersion stability tests. Practical implications These ink formulations could be used for printing on cotton fabric by DTG technique of printing and can be used for other types of fabrics. Originality/value The newly prepared ink formulation for digital textile printing based on synthesized polyurethane prepolymers has the potential to be promising in this type of printing inks, to prevent clogging of nozzles on the printhead and to improve the print quality on the textile fiber.

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