Study of the Pretreatment and Disperse Dyeing Process for the PLA/cotton Blended Fabric: High Physical Resistance and Dyeing Performance

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In this paper, the optimal pretreatment and disperse dyeing process for the novel PLA/cotton blended fabric was studied. In the pretreatment stage, enzyme and H2O2 were applied to test their effect on the decrement-rate and bending length. After pretreatment, the PLA component of this fabric was dyed with three different disperse dyes and the effect of dyeing parameters including time, temperature and pH on the K/S value and tear strength were studied. Besides, DSC and SEM were also applied to analyze this pretreatment and dyeing process. The recommended pretreatment and disperse dyeing conditions were summarized.

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233-238

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] R.E. Drumright, P.R. Gruber and D.E. Henton: Adv. Mater. Vol. 23 (2000), p.1841

Google Scholar

[2] J. Lunt and J. Bone, Proc. AATCC Int. Conf. Exhib., Charlotte, USA (2000)

Google Scholar

[3] L. He, S. Zhang, B. Tang, L. Wang and J. Yang: Chinese Chemical Letters. Vol. 18(2007), p.1151

Google Scholar

[4] J. Suesat, P. Sae-be and P. Suwanruji: Adv. Mater. Res, Vol. 486 (2012), p.253

Google Scholar

[5] Z. Zhong, Q. Ma and Y. Wang: Dyeing & Finishing, Vol. 3 (2008), p.17

Google Scholar

[6] Z. Zhong, H. Zheng and L. Yu: J. Shandong. Univ. Tech. (Natur. Sci. Edit.), Vol. 22 (2008), p.31

Google Scholar

[7] D. Phillips, J. Suesat, M. Wilding, D. Farrington, D. Sawyer, J. Bone and S. Dervan: Color. Technol, Vol. 120 (2004), p.35

Google Scholar

[8] Y. Yang and S. Huda: AATCC. Rev, Vol 3 (2003), p.56

Google Scholar

[9] H. Huang, W. Ma, S. Zhang and R. Lu: J. Appl. Poly. Sci, Vol. 120 (2011), p.886

Google Scholar

[10] Y. Chen, Y. Zheng, C. W. Yu, T. M. Dooley, B. M. Jenkins and J. S. VanderGheynst: Appl. Biochem. Biotechnol, Vol. 162 (2010), p.1768

Google Scholar