Journal of Textile Research ›› 2015, Vol. 36 ›› Issue (02): 141-147.

Previous Articles     Next Articles

Improve color fastness of inkjet printing textiles using pigment ink

  

  • Received:2014-11-14 Revised:2014-11-18 Online:2015-02-15 Published:2015-02-13

Abstract:

Inkjet printing as a cleaning and non-contact printing method has become one of the most promising textile printing technology. However, poor rubbing fastness of printed textile is still the main obstacle to wide application of pigment ink in the textile. In this paper, the methods for improving color fastness of printed textiles with pigment ink developed by our lab, such as special fixative agent, multifunctional dispersant, and nanoscale pigment/latex dispersion were summarized, and the fixation process and its mechanism with different kinds of pigment ink were further analyzed. The study was expected to provide assistance for the development of high quality, high fastness of textile printing pigment ink.

Key words: inkjet printing, pigment ink, rubbing fastness, non-contact

[1] . Fitting and verifying of males’s back graphics measured by non-contact scanner [J]. JOURNAL OF TEXTILE RESEARCH, 2018, 39(04): 111-115.
[2] . Influence of inkjet printing parameters on imagine definition of coated pigment ink inkjet printing [J]. JOURNAL OF TEXTILE RESEARCH, 2016, 37(08): 72-76.
[3] . Preparation and Printing Behavior of Carbon Black/Latex Nanocomposite Particles by Miniemulsion Polymerization [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(9): 73-0.
[4] LUO shunhua. Research on 2-D image-based non-contact anthropometric technology [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(8): 151-0.
[5] . Image-based non-contact measurment method of fabric moving speed [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(4): 127-130.
[6] . Design of non-contact rotational temperature transmitter for heated drawing roller [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(3): 116-120.
[7] LI Xiao-Jiu, JING Xiao-Ning. Study of body point cloud simplification based on non-contacted measurement [J]. JOURNAL OF TEXTILE RESEARCH, 2012, 33(7): 144-148.
[8] CHEN Li;WANG Chaoxia. Synthesis and application of CTR-β-CD for inkjet printed fabric pretreatment [J]. JOURNAL OF TEXTILE RESEARCH, 2011, 32(3): 100-104.
[9] TANG Ying;FANG Kuanjun;FU Shaohai;TIAN Anli;ZHANG Lianbing. Computer Simulation Research on Batik Crack Patterns [J]. JOURNAL OF TEXTILE RESEARCH, 2010, 31(3): 128-132.
[10] LIU Deju;LI Liang. Synthesis of wet rubbing fastness improver and its application on cotton fabrics dyed with reactive dyes [J]. JOURNAL OF TEXTILE RESEARCH, 2010, 31(12): 98-102.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] . [J]. JOURNAL OF TEXTILE RESEARCH, 1992, 13(07): 27 -30 .
[2] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(03): 94 -95 .
[3] . [J]. JOURNAL OF TEXTILE RESEARCH, 2000, 21(04): 67 -68 .
[4] . [J]. JOURNAL OF TEXTILE RESEARCH, 1987, 8(12): 21 -24 .
[5] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(05): 10 -11 .
[6] SHANG Xiao-mei . Study on forming factors of apparel lapel collar pattern[J]. JOURNAL OF TEXTILE RESEARCH, 2006, 27(4): 105 -108 .
[7] GUO Yan;ZHANG Mao-lin . Ultrasonic wool scouring process[J]. JOURNAL OF TEXTILE RESEARCH, 2006, 27(10): 96 -98 .
[8] . [J]. JOURNAL OF TEXTILE RESEARCH, 2004, 25(02): 114 -115 .
[9] . [J]. JOURNAL OF TEXTILE RESEARCH, 1986, 7(05): 21 .
[10] . [J]. JOURNAL OF TEXTILE RESEARCH, 1998, 19(05): 54 -56 .