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Title: | Crease-resistant finish of linen/viscose blend fabrics |
Authors: | Güneşoğlu, Cem Uludağ Üniversitesi/Mühendislik Fakültesi/Tekstil Mühendisliği Bölümü. 0000-0001-8043-4148 Kut, Dilek Toprakkaya Orhan, Mehmet AAH-4335-2021 55027507400 35307795300 |
Keywords: | Crease resistance Finish Fabrics Linen Viscose Polycarboxylic acids Cotton fabrics Cross-linking Citric-acid Strength Catalyst Agents BTCA Materials science Curing Finishing Tensile strength Triethanolamine Wrinkle recovery Blend fabrics Degree of cross-linking High temperature Strength loss Strength retention Wrinkle recovery angle Flax |
Issue Date: | Jan-2010 |
Publisher: | INST Chemical Fibres |
Citation: | Kut, D. vd. (2010). "Crease-resistant finish of linen/viscose blend fabrics". Fibres and Textiles in Eastern Europe, 18(6), 91-93. |
Abstract: | Linen/viscose blend fabrics are treated in different conditions with various concentrations of polycarboxylic acids (BTCA, CA, GA and MA) and N-methylol reagent (DMDHEU) with a relevant catalyst. The characterisation of such fibres is dependent on the degree of crosslinking, which is evaluated by the dry wrinkle recovery angle and tensile strength retention. In trials BTCA showed much better effects on the crease resistant finish of linen/viscose blend fabrics; when comparing the mixture of polycarboxylic acids, BTCA/GA treatment also gives moderate effects. High temperature curing is a handicap for linen/viscose blend fabric treatment when considering strength loss, whereas DMDHEU solutions give better results due to their lower acidity. In order to optimise the crease resistant finish of linen/viscose blend fabrics, it is acceptable to add a triethanolamine additive with the same ratio of the catalyst and cure at 160 degrees C. |
URI: | http://hdl.handle.net/11452/25335 |
ISSN: | 1230-3666 |
Appears in Collections: | Scopus Web of Science |
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