JOURNAL OF TEXTILE RESEARCH ›› 2014, Vol. 35 ›› Issue (7): 1-0.

    Next Articles

Physical and chemical properties of surface modification wool by oxidation reduction method

  

  • Received:2013-05-09 Revised:2014-01-31 Online:2014-07-15 Published:2014-07-15

Abstract: The scales of wool fabric were stripped through potassium permanganate oxidation method and thiourea dioxide reduction method. The physical and chemical properties of wool fabrics before and after treating with potassium permanganate were characterized by scanning electron microscope (SEM), X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared spectroscopy (FTIR/ATR). SEM results showed that the surface of wool fabrics after treating with potassium permanganate is overall relatively smooth and the ladder-shaped structure of the fabric edge are not obvious. XPS and FTIR-ATR results showed that the methods mentioned above can fracture the disulfide-bond on the surface of wool fabrics and modification or removal the lipid substances on the surface. Consequently, the wettability of wool fabrics was effectively promoted after treating with potassium permanganate. In addition, the strength retention, whiteness, fiber thinning of treated wool fabrics was obtained good results. But the char length and limiting oxygen index were both dropped after treating with potassium permanganate, and the thermal stability got worse.

Key words: wool fabrics, scale, chemical properties, physical properties

CLC Number: 

  • TS 102.3
[1] . Biological enzyme synergistic catalytic system and its mechanism on wool fiber [J]. JOURNAL OF TEXTILE RESEARCH, 2018, 39(01): 71-78.
[2] . Structure design and elastic resilience of weft knitted denim fabric [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(10): 38-43.
[3] . Operational efficiency evaluation of textile and clothing enterprises based on data envelopment analysis [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(10): 138-145.
[4] . Dissolving modes of wool fibres observed by scanning electron microscopy [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(07): 1-5.
[5] . Evaluation system and model of consumer perceived service quality in clothing stores [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(06): 136-142.
[6] . Performance of superhydrophobic polyester fabric cloth and its application in oil /water separation [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(03): 108-113.
[7] . Application of 3D printing in beating-up and shedding [J]. JOURNAL OF TEXTILE RESEARCH, 2017, 38(01): 140-146.
[8] . Dyeing process of nanoscale latex fluorescent pigment on cationic cotton fabrics [J]. JOURNAL OF TEXTILE RESEARCH, 2016, 37(10): 56-61.
[9] . Fabric defects detection method based on texture saliency features [J]. JOURNAL OF TEXTILE RESEARCH, 2016, 37(10): 42-049.
[10] . Evaluation of clothing emotion based on customer’s psychological cognition [J]. JOURNAL OF TEXTILE RESEARCH, 2015, 36(09): 100-107.
[11] . Extraction and distribution of She nationality clothing characteristics [J]. JOURNAL OF TEXTILE RESEARCH, 2015, 36(07): 110-0.
[12] . Theoretical recognition accuracy and error rate for cashmere based on scale pattern gene code [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(4): 5-0.
[13] .  Distribution and correlation of scale pattern gene codes for cashmere [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(3): 1-0.
[14] . Textile printing pattern image segmentation based on multiscale Markov random field model in wavelet domain [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(1): 127-0.
[15] . Effect of slenderizing treatment on scale structure of human hairs and its acting mechanism [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(9): 17-0.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!