Xiang Hongping, Wang Xiaowei, Lin Guanghong, Xi Lu, Yang Yan, Lei Dehua, Dong Haihui, Su Jiahui, Cui Yanyan, Liu Xiaoxuan
Guangdong Provincial Key Laboratory of Functional Soft Condensed Matter, School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.
Polymers (Basel). 2017 Oct 25;9(11):552. doi: 10.3390/polym9110552.
A novel UV-curable hyperbranched polyurethane acrylate (FHBPUA) with excellent flexibility is successfully synthesized based on a reaction of hydroxyl terminated hyperbranched polyurethane (regarded as core) with flexible semiadduct urethane monoacrylate (regarded as arms). The structure and property of FHBPUA is firstly analyzed and then utilized as functional additives to ameliorate the UV-curing and mechanical properties of epoxy acrylate resin. The degree of branching of FHBPUA turns out to be 0.82. Its thermal decomposition process consists of three different stages, and the glass transition temperature is around 65 °C. The freestanding FHBPUA film (~30 μm thickness) can be UV-cured within 3 s, and its flexibility is up to 1 mm. With the increase of FHBPUA content to 10 wt %, the UV-curing time of UV1000 film decreases from 6 to 3 s, flexibility strikingly increases from 10 to 1 mm, and adhesive force also improves from 5 to 3 grades, meanwhile its glossiness is not influenced by FHBPUA. In addition, a certain amount of FHBPUA can improve the tensile strength and elongation at break of UV1000 film. This novel FHBPUA can be used not only to develop flexible UV-curable freestanding films but also as functional additives to perfect other UV-curable compositions like coatings, inks and 3D printed parts.
基于端羟基超支化聚氨酯(视为核)与柔性半加成聚氨酯单丙烯酸酯(视为臂)的反应,成功合成了一种具有优异柔韧性的新型紫外光固化超支化聚氨酯丙烯酸酯(FHBPUA)。首先对FHBPUA的结构和性能进行了分析,然后将其用作功能添加剂来改善环氧丙烯酸酯树脂的紫外光固化性能和机械性能。结果表明,FHBPUA的支化度为0.82。其热分解过程包括三个不同阶段,玻璃化转变温度约为65℃。独立的FHBPUA薄膜(厚度约30μm)可在3s内紫外光固化,其柔韧性可达1mm。随着FHBPUA含量增加到10wt%,UV1000薄膜的紫外光固化时间从6s降至3s,柔韧性从10mm显著提高到1mm,附着力也从5级提高到3级,同时其光泽度不受FHBPUA影响。此外,一定量的FHBPUA可提高UV1000薄膜的拉伸强度和断裂伸长率。这种新型FHBPUA不仅可用于开发柔性紫外光固化独立薄膜,还可作为功能添加剂来完善其他紫外光固化组合物,如涂料、油墨和3D打印部件。