首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Tertiaryamine linked and polysiloxane modified polyurethane acrylate oligomer and its effects of migration/co-initiation on photo-curable inkjet printing
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Tertiaryamine linked and polysiloxane modified polyurethane acrylate oligomer and its effects of migration/co-initiation on photo-curable inkjet printing

机译:连接和聚硅氧烷改性聚氨酯丙烯酸酯低聚物及其对光固化喷墨印刷的迁移/共初级的影响

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摘要

To resolve the issue of handle-softness inadequacy in current polyurethane acrylate (PUA) oligomers for photo-curable inkjet printing on flexible substrates, and to improve the ability of anti-oxygen inhibition and Photo-initiation efficiency of the tertiaryamine macromolecular co-initiator, the hydroxyl-terminated polydimethylsiloxane co-polymerized with tertiaryamine modified polyurethane acrylate (SiPUA) oligomer was designed and synthesized by using a sequential polymerization process. The structure of the SiPUA oligomer was confirmed by titration test and FTIR analysis, and the properties of the oligomers and the resultant photo-cured films were characterized by a range of analytical and measurement techniques. During the photo-curing process, the polysiloxane chain segment moved to the surface of the photo-cured SiPUA-HEA film due to the similar "surfactant critical micelle effect", forming an interconnected microphase structure of 50-70 mu m thickness enriched with siloxane. The tertiaryamine group linked with polysiloxane segment was also enriched in the surface accordingly due to the migration of polysiloxane, thus improving the ability of anti-oxygen inhibition and photo-initiation efficiency. Benefiting from the both polysiloxane and tertiaryamine enriched surface and the retained PUA-HEA framework bulk in the cured film, a soft, flexible and strong photo-cured film with water-resistance and high photo-initiating efficiency was obtained.
机译:为了解决现有聚氨酯丙烯酸酯(PUA)低聚物在柔性基材上用于光固化喷墨打印的手感柔软度不足的问题,并提高叔胺大分子共引发剂的抗氧抑制能力和光引发效率,采用顺序聚合法设计并合成了端羟基聚二甲基硅氧烷与叔胺改性聚氨酯丙烯酸酯(SiPUA)齐聚物的共聚合反应。通过滴定试验和FTIR分析确认了SiPUA低聚物的结构,并通过一系列分析和测量技术对低聚物和所得光固化膜的性能进行了表征。在光固化过程中,由于类似的“表面活性剂临界胶束效应”,聚硅氧烷链段移动到光固化SiPUA HEA膜的表面,形成一个50-70μm厚、富含硅氧烷的互连微相结构。由于聚硅氧烷的迁移,与聚硅氧烷链段相连的叔胺基也相应地在表面富集,从而提高了抗氧抑制能力和光引发效率。利用聚硅氧烷和叔胺富集的表面以及固化膜中保留的PUA-HEA骨架块体,获得了一种柔软、柔韧、牢固的光固化膜,具有耐水性和高光引发效率。

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