纺织学报 ›› 2024, Vol. 45 ›› Issue (02): 134-141.doi: 10.13475/j.fzxb.20231006001
范博1,2, 吴伟1,2, 王健3, 徐红1,2,4, 毛志平1,2,4,5()
FAN Bo1,2, WU Wei1,2, WANG Jian3, XU Hong1,2,4, MAO Zhiping1,2,4,5()
摘要:
为深入研究分散染料的扩散性能在超临界CO2染色过程中影响染色条件及染色质量的理论机制,使用共聚焦拉曼显微镜研究了超临界CO2流体染色在不同工况条件(100~140 ℃、21~27 MPa、5~90 min)下分散染料(分散红167、分散橙30、分散蓝79)在涤纶中的扩散行为。通过拉曼深度成像图获得了染料在纤维径向分布的数据,计算扩散系数。结果显示:分散染料在染色初期(5 min内)已在纤维内分布均匀,且随染色时间、染色压力的增加,染料在纤维内部均匀上染。对比染色后纤维径向的拉曼光谱数据与纱线上染量数据,验证了拉曼光谱数据的有效性。经计算分散染料中分散橙30的扩散系数最高(9.744×10-15 m2/s)。表明拉曼技术用于分析单纤维内染料扩散有着巨大的优势,反应快速,制样简单,同时可在无损纤维的前提下对涤纶内部的染料分布进行测量。
中图分类号:
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