Merdan Nigar, Akalin Mehmet, Kocak Dilara, Usta Ismail
Department of Textile Studies, Technical Education Faculty, Marmara University, Kayisdagi Cad., 81040 Goztepe/Istanbul, Turkey.
Ultrasonics. 2004 Apr;42(1-9):165-8. doi: 10.1016/j.ultras.2004.02.005.
Although ultrasonic energy is widely used cleaning and degreasing of parts and assemblies in automotive and other industries, the use of ultrasonic energy in an industrial scale for textile washing is very new. This is due to the complexity of controlling the combination of chemical and mechanical effects, whereas with degreasing of machine parts only the mechanical effects is applied. The use of ultrasonic energy in dyeing PA/Lycra fabrics with reactive dyes has been studied spectrophotometrically in this work. PA/Lycra (85/15) blends have been dyed using conventional and ultrasonic dyeing techniques with three reactive dyes containing different chromophore and reactive groups. The dyeing carried out conventionally and by the use of ultrasonic techniques. The results were compared in terms of percentage exhaustion; total dye transferred to the washing bath after dyeing and the fastness properties.
尽管超声能量在汽车及其他行业中广泛用于零件和组件的清洗与脱脂,但在工业规模上用于纺织品洗涤却是非常新的应用。这是因为控制化学和机械作用的组合很复杂,而在机器零件脱脂中仅应用了机械作用。在这项工作中,已通过分光光度法研究了超声能量在活性染料对PA/Lycra织物染色中的应用。采用常规和超声染色技术,用三种含有不同发色团和反应基团的活性染料对PA/Lycra(85/15)混纺织物进行了染色。分别采用常规方法和超声技术进行染色。从竭染率、染色后转移到洗涤浴中的总染料量以及色牢度性能方面对结果进行了比较。