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Preparation of a Cross-linkable Emulsion and its Effectiveness as the Binder Resin of Water-based Printing inks Curable at Ambient Temperature

机译:在环境温度下可固化的水性印刷油墨粘合剂树脂的可交联乳液的制备及其有效性

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The proposed resin system mainly comprises two components: a nano-sized emulsion and a crosslinking agent, adipic dihydrazide. The nano-emulsion was prepared through soapless emulsion polymerization of acrylic monomers in the presence of a reactive amphiphillic block copolymer, which was synthesized through living polymerization of diacetone acrylamide and acrylic acid. The nano-emulsion was narrowly distributed in size and the average diameter is around 50 nm. The nano-emulsion was very stable even at 45 wt.%. DSC analysis showed that the polymer of the emulsion had a low glass transition temperature (Tg) (about 15 °C), but the emulsion still remained stable at a wide temperature range (4-50 °C) despite the addition of the cross-linker. Emulsion films were coated with the mixture of the nano-emulsion, the cross-linker and a small amount of leveling agent by spin-coating method, and this was followed by drying at ambient temperature. SEM analysis indicated that the border of particles had disappeared and a uniform film was obtained. Investigation on dissolution behaviors of the emulsion films showed that cross-linking reaction occurred with the evaporation of water. With the drying of the film at ambient temperature, a tough and transparent cross-linked film was prepared, which had good water/solvent resistance. This self-crosslinking resin system might be used as the binder resin for water-based printing inks which can be effectively cured at ambient temperature.
机译:所提出的树脂系统主要包括两个组分:纳米尺寸乳液和交联剂,己二酸二酰肼。通过在反应性两亲嵌段共聚物存在下通过丙烯酸类单体的丙烯酸单体的乳液聚合制备纳米乳液,其通过丙烯酰胺和丙烯酸的生物聚合合成。纳米乳液尺寸狭窄分布,平均直径约为50nm。即使在45重量%,纳米乳液也非常稳定。 DSC分析表明,乳液的聚合物具有低玻璃化转变温度(Tg)(约15℃),但尽管添加了交叉,但乳液在宽温度范围内保持稳定(4-50°C)链接器。通过旋涂法用纳米乳液,交联剂和少量水平剂的混合物涂覆乳液膜,然后在环境温度下干燥。 SEM分析表明,颗粒的边界已经消失,得到均匀的薄膜。乳液膜的溶出行为的研究表明,交联反应发生水的蒸发。通过在环境温度下干燥薄膜,制备坚固且透明的交联膜,其具有良好的水/耐腐蚀性。这种自交联树脂系统可用作水性印刷油墨的粘合剂树脂,其可以在环境温度下有效地固化。

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