A New, Effective Delayed Curing Anti-wrinkle Catalytic System for Cotton Fabrics with Triethylenediamine 


Vol. 22,  No. 9, pp. 2491-2497, Sep.  2021
10.1007/s12221-021-0287-4


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  Abstract

Delayed-curing anti-wrinkle finishing was a kind of anti-wrinkle finishing method of ready-to-wear garments. It was transported the sensitized fabric without cross-linking reaction to the garment factory, processed into garments and then cured for cross-linked with fabrics to achieve the purpose of removing wrinkles between pleats. The conventional magnesium chloride-hydrochloric acid system was difficult to ensure that the dihydroxymethyl dihydroxyethyl ethylene urea (2D resin)- finished fabric will not been cross-linked during storage. In order to obtain the excellent storage stability and anti-wrinkle property, a new catalytic system suitable for etherification 2D resin finishing agent was constructed in this article: triethylenediamine-hydrochloric acid-magnesium chloride catalytic system. The composition of the new catalytic systems was: triethylenediamine 0.25 mol/l, hydrochloric acid 0.263 mol/l, magnesium chloride 0.04 mol/l. The results show that the storage stability of the sensitized fabric was greatly improved after the sensitized fabric was stored at 40 oC for 70 day. After curing, anti-wrinkle property of cotton fabrics after stored was similar to cotton fabrics treated with conventional magnesium chloride-hydrochloric acid system, particularly the tensile strength rate has increased by 20 %.

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  Cite this article

[IEEE Style]

A. New and E. D. C. A. C. S. f. C. F. w. Triethylenediamine, "A New, Effective Delayed Curing Anti-wrinkle Catalytic System for Cotton Fabrics with Triethylenediamine," Fibers and Polymers, vol. 22, no. 9, pp. 2491-2497, 2021. DOI: 10.1007/s12221-021-0287-4.

[ACM Style]

A New and Effective Delayed Curing Anti-wrinkle Catalytic System for Cotton Fabrics with Triethylenediamine. 2021. A New, Effective Delayed Curing Anti-wrinkle Catalytic System for Cotton Fabrics with Triethylenediamine. Fibers and Polymers, 22, 9, (2021), 2491-2497. DOI: 10.1007/s12221-021-0287-4.