New disperse dyeing method of poly(p-phenylene benzobisoxazole) fiber pretreated with polyphosphoric acid
详细信息    查看全文
  • 作者:Ya-hong Mao ; Yu Guan ; Pu-xin Zhu
  • 关键词:PBO Fiber ; Dyeing ; Disperse Dye ; Carrier
  • 刊名:Korean Journal of Chemical Engineering
  • 出版年:2015
  • 出版时间:October 2015
  • 年:2015
  • 卷:32
  • 期:10
  • 页码:2133-2141
  • 全文大小:602 KB
  • 参考文献:1.H. G. Chae and S. Kumar, J. Appl. Polym. Sci., 100, 791 (2006).CrossRef
    2.S. Bourbigot, X. Flambard and S. Duquesne, Polym. Int., 50, 157 (2001).CrossRef
    3.T. Zhang, D. Hu, J. Jin, S. Yang, G. Li and J. Jiang, Appl. Surf. Sci., 256, 2073 (2010).CrossRef
    4.B. Song, Q. Fu, L. Ying, X. Liu, Q. Zhuang and Z. Han, J. Appl. Polym. Sci., 124, 1050 (2012).CrossRef
    5.D. Feng, S. Wang, Q. Zhuang, P. Wu and Z. Han, Polymer, 45, 8871 (2004).CrossRef
    6.J. F. Wolfe and F. E. Arnold, Macromolecules, 14, 909 (1981).CrossRef
    7.J. F. Wolfe, B. H. Loo and F. E. Arnold, Macromolecules, 14, 915 (1981).CrossRef
    8.P. Chen, C. Zhang, X. Zhang, B. Wang, W. Li and Q. Lei, Appl. Surf. Sci., 255, 3153 (2008).CrossRef
    9.D. Liu, J. Hu, Y. Zhao, X. Zhou, P. Ning and Y. Wang, J. Appl. Polym. Sci., 102, 1428 (2006).CrossRef
    10.A. G. Andreopoulos and P.A. Tarantili, J. Elastomers Plast., 30, 118 (1998).
    11.G.M. Wu, C. H. Hung, J. H. You and S. J. Liu, J. Polym. Res., 11, 31 (2004).CrossRef
    12.C. H. Zhang, Y.D. Huang and Y.D. Zhao, Mater. Chem. Phys., 92, 245 (2005).CrossRef
    13.G. M. Wu and C. H. Chang, Vacuum, 81, 1159 (2007).CrossRef
    14.Y. Guan, Y.-h. Mao, Q.-m. Kong, X.-f. Zeng and P.-x. Zhu, Color. Technol., 129, 367 (2013).CrossRef
    15.Y. Guan, Y.-h. Mao, D. Wei, X.-x. Wang and P.-x. Zhu, Korean J. Chem. Eng., 30, 1810 (2013).CrossRef
    16.A. Murray and K. Mortimer, Rev. Prog. Color. Relat. Top., 2, 67 (1971).CrossRef
    17.V. S. Salvin, American Dyestuff Reporter, 49, 35 (1960).
    18.W. Ingamells, R. H. Peters and S.R. Thornton, J. Appl. Polym. Sci., 17, 3733 (1973).CrossRef
    19.J.P. Kim and S.M. Burkinshaw, J. Soc. Dyers Colour., 111, 107 (1995).CrossRef
    20.I. S. Kim, H.M. Cho, J. Koh and J.P. Kim, J. Appl. Polym. Sci., 90, 3896 (2003).CrossRef
    21.R. S. Asquith, H. S. Blair and N. Spence, J. Soc. Dyers Colour., 94, 49 (1978).CrossRef
    22.R. H. Peters and H. Wang, J. Soc. Dyers Colour., 98, 432 (1982).CrossRef
    23.D. Aitken and S. M. Burkinshaw, J. Soc. Dyers Colour., 108, 219 (1992).CrossRef
    24.R.H. Peters and W. Ingamells, J. Soc. Dyers Colour., 89, 397 (1973).CrossRef
    25.Z. Gur-Arieh and W. C. Ingamells, J. Soc. Dyers Colour., 90, 8 (1974).CrossRef
    26.Y.-H. Mao, Y. Guan, Q.-K. Zheng, Q.-S. Liu, X.-N. Feng and X.-X. Wang, Color. Technol., 129, 39 (2013).CrossRef
    27.E. ?ner, Y. Büyükakinci and N. S?kmen, Color. Technol., 129, 125 (2013).CrossRef
    28.Y.-H. Mao, Y. Guan, Q.-K. Zheng, X.-N. Feng and X.-X. Wang, Cellulose, 18, 271 (2011).CrossRef
    29.ASTM, Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-like Combustion of Plastics (Oxygen Index) (West Conshohocken, 2013).
    30.J. Borah and N. Karak, J. Appl. Polym. Sci., 104, 648 (2007).CrossRef
    31.M. I. Nelson, Combust. Theory Model., 5, 59 (2001).CrossRef
    32.M. Chen, D.-L. Zhou, Y. Chen and P.-X. Zhu, J. Appl. Polym. Sci., 103, 903 (2007).CrossRef
    33.A.P. Gupta, U.K. Saroop and V. Gupta, J. Appl. Polym. Sci., 106, 917 (2007).CrossRef
    34.W. H. Charch and W. W. Moseley, Text. Res. J., 29, 525 (1959).CrossRef
    35.W.W. Moseley, J. Appl. Polym. Sci., 3, 266 (1960).CrossRef
    36.BISFA, Testing Methods for Polyester Filament Yarns (Brussels, 2004).
    37.ISO, Textiles–Tests for colour fastness–Part C02: Colour fastness to washing: Test 2 (Geneva, 1989).
    38.ISO, Textiles–Tests for colour fastness–Part B02: Colour fastness to artifical light: Xenon arc fading lamp test (Geneva, 1994).
    39.Y. Guan, Q.-k. Zheng, Y.-h. Mao, M.-s. Gui and H.-b. Fu, J. Appl. Polym. Sci., 105, 726 (2007).CrossRef
    40.A.D. Broadbent, Basic Principles of Textile Coloration (Bradford: Society of Dyers Colourists, 2001).
    41.W. Ingamells and R.H. Peters, Polym. Eng. Sci., 20, 276 (1980).CrossRef
    42.G. A. F. Roberts and R.K. Solanki, J. Soc. Dyers Colour., 95, 226 (1979).CrossRef
  • 作者单位:Ya-hong Mao (1) (2)
    Yu Guan (3)
    Pu-xin Zhu (1)

    1. Textile Institute, Sichuan University, Chengdu, 610065, P. R. China
    2. Department of Dyeing and Chemistry, Chengdu Textile College, Chengdu, 611731, P. R. China
    3. Bureau of Quartermaster Military Representation of the General Logistics Department, PLA, Chengdu, 610015, P. R. China
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Industrial Chemistry and Chemical Engineering
    Catalysis
    Materials Science
    Biotechnology
  • 出版者:Springer New York
  • ISSN:1975-7220
文摘
Poly(p-phenylene benzobisoxazole) fiber is considered as a high-performance fiber because of its high strength and excellent thermal and chemical stability. It has been used in industrial reinforcement, body armor and military camouflage. But the application of poly(p-phenylene benzobisoxazole) fiber used for protective clothing is limited because it is difficult to dye with conventional dyeing processes. In this work, a carrier dyeing method with disperse dyes was first used to dye the fiber after a pretreatment with polyphosphoric acid. The effects of the carrier structure and dyeing conditions on the color strength of dyed samples were investigated. In addition, the crystallinity and orientation degree of the poly(p-phenylene benzobisoxazole) fibers before and after pretreatment with phthalimide and benzyl benzoate were measured by X-ray diffraction and velocity-oriented test, respectively. The results suggested phthalimide and benzyl benzoate, as carrier, could effectively promote disperse dyeing of the PBO fiber pretreated with polyphosphoric acid. Meanwhile, the optimal conditions for the carrier dyeing were obtained, that is, concentration of carrier 4%, dyeing temperature 150 °C and time 120 min. By way of the carrier dyeing, the K/S value of dyed sample and the percentage of dye exhaustion were greatly improved, while the crystalline structure and orientation degree of the pretreated samples hardly changed. Furthermore, the decreases of the tensile strength and the limiting oxygen index of dyed poly(p-phenylene benzobisoxazole) sample were very little, and the color fastness was also satisfactory. Keywords PBO Fiber Dyeing Disperse Dye Carrier

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700