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Optimization of blue light induced hyperbranched polyurethane acrylate system applied to textiles

机译:蓝光诱导超支化聚氨酯丙烯酸酯体系应用于纺织品的优化

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The introduction of blue light curing to dyeing and finishing will be save energy and reduce emission. Searching out blue light cured polymers of high strength and good flexibility is immediately needed. Hyperbranched polyurethane acrylate (HBPUA) exhibits relatively low viscosity and good mechanical property. Typical acrylate monomers of low smell were copolymerized with HBPUA, subsequently, the tensile mechanical property and flexibility of blue light cured polymers were evaluated in contrast of commercial adhesives. The concentration of monomer was further optimized and the dynamic mechanical property of selected film was presented. The results show that 80/20 HBPUA/TPGDA copolymer is thought of the most suitable system for textiles in this study. The related character of 80/20 HBPUA/TPGDA blue light cured system is listed below: 52.3% reaction conversion, 7.2MPa tensile stress, 9.2% fracture elongation, 61.8°C glass transition temperature.
机译:蓝光固化为染色和整理的引入将节省能源,减少排放。寻找高强度和良好柔韧性的蓝色光固化聚合物。超支化聚氨酯丙烯酸酯(HBPUA)表现出相对低的粘度和良好的机械性能。典型的丙烯酸酯单体的低气味与HBPUA共聚,随后,与商业粘合剂相比,评价蓝色光固化聚合物的拉伸力学性能和柔韧性。进一步优化了单体的浓度,并提出了所选膜的动态力学性能。结果表明,80/20HBPua / TPGDA共聚物被认为是本研究中最合适的纺织系统系统。下面列出了80/20 HBPUA / TPGDA蓝光固化系统的相关特征:52.3%反应转化率,7.2MPa拉伸应力,9.2%骨折伸长率,61.8°C玻璃化转变温度。

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