Evaluation of the Effect of Sizing Compositions on the Properties of Hydrated Cellulose Technical Yarn

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The influence of sizing compositions on the reinforcing properties of hydrated cellulose technical yarns has been investigated. The optimal mode of modification of hydrated cellulose yarns has been determined. The evaluation of the structural properties of the modified yarns has been carried out. The kinetic features of the modified yarns wetting by an epoxy oligomer have been studied.

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73-79

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September 2021

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© 2021 Trans Tech Publications Ltd. All Rights Reserved

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[1] K. E. Perepelkin, Ways of developing chemical fibres based on cellulose: Viscose fibres and their prospects. Part 1. Development of viscose fibre technology, Fibre Chemistry. 40 (2008) 10-23.

DOI: 10.1007/s10692-008-9014-9

Google Scholar

[2] A. J. Sayyed, N. A. Deshmukh, D. V. Pinjari, A critical review of manufacturing processes used in regenerated cellulosic fibres: viscose, cellulose acetate, cuprammonium, LiCl/DMAc, ionic liquids, and NMMO based lyocell, Cellulose. 26 (2019) 2913-2940.

DOI: 10.1007/s10570-019-02318-y

Google Scholar

[3] Structure and physicochemical properties of celluloses and nanocomposites based on them: ed. L. A. Aleshina, V. A. Gurtova, N. V. Melekh, PetrSU Publishing House, Petrozavodsk, 2014, pp.5-11.

Google Scholar

[4] L. S. Halbreich, Cellulose and its derivatives, Sorovsk educational journal. 11 (1996) 47-53.

Google Scholar

[5] N. I. Tkacheva, S. V. Morozov, I. A. Grigoriev, D. M. Mognonov, N. A. Kolchanov, Modification of cellulose is a promising direction in the creation of new materials, Polymer Science. Series B. 55, 8 (2013) 1086-1107.

DOI: 10.1134/s1560090413070063

Google Scholar

[6] I. S. Makarov, L. K. Golova, L. K. Kuznetsova, G. N. Bondarenko, I. Yu. Skvortsov, M. V. Mironova, M. V. Bermeshev, Composite Fibers Based on Cellulose and Tetraetoxysilane: Preparation, Structure and Properties, Fibre Chemistry. 49 (2017) 101-107.

DOI: 10.1007/s10692-017-9851-5

Google Scholar