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Coloring Heat-Resistant Textiles

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Fibre Chemistry Aims and scope

The physicochemical properties of aromatic polyamide and polyoxadiazole textile bases are studied. Color-treated Russian heat-resistant fibers and threads are found to have high levels of functionality. The capabilities of coloristic treatment are expanded by using a mixture of organic and mineral dyes.

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References

  1. T. Dyankova, A. Ostanen, et al., “Application of Nano-size Particles of Titanium Dioxide for Mass-coloration of Polyimide Fibers,” in: Abstracts of 250th ACS National Meeting & Exposition, Aug. 16-20, 2015, ACS, Boston, Massachusetts, USA, p. 236.

  2. T. Yu. Dyankova, N. S. Fedorova, et al., “Prediction of coloristic properties during finishing of aramid fibrous materials,” in: Collection of Scientific Works “Physicochemistry of Polymers. Synthesis, Properties and Applications” [in Russian], TGU, Tver, 2015, No. 21, pp. 288-293.

  3. A. V. Ostanen and T. Yu. Dyankova, “Impact-absorbing heat- and fire-resistant aramid fabrics for protective clothing,” in: Proceedings of RARAN [in Russian], Apr. 2-4, 2015, St. Petersburg NPO Special Materials, pp. 220-226.

  4. GOST 10550-93. Textiles. Cloth. Methods for determination of resistance to bending, Gosstandart Rossii, Moscow, 1995, 12 pp.

  5. T. Yu. Dyankova, N. S. Fedorova, et al., “Production of domestic dyed heat- and fire-resistant high-strength fibrous materials based on polyheteroarylenes,” in: Collection of Papers Russian Market for Technical Textiles and Nonwoven Materials: Science and Production Under Current Conditions [in Russian], Moscow, 2016, pp. 78-90.

  6. T. Yu. Dyankova, A. P. Mikhailovskaya, et al., BY Pat. 9,893, PC (2006) IPC D06P3/04, “Composition for dyeing aramid fibrous materials,” Appl. No. 20041016, Publ. Dec. 12, 2007; Byull., No. 5 (58), 105-106.

  7. T. Yu. Dyankova, A. P. Mikhailovskaya, et al., RU Pat. 2,238,356, IPC 7D06P3/04, 1/08, 1/667, “Composition for dyeing of aramid fiber materials,” Publ. Oct. 20, 2004; Byull., No. 29, 35.

  8. A. V. Ostanen, T. Yu. Dyankova, and A. A. Maiorova, “Domestic fire-resistant textile for stuntmen,” in: IIIrd All-Russian Scientific-Technical Conference (Involving Young Scientists) “Innovative Materials and Technologies in Design” [in Russian], SPbGIKiT, St. Petersburg, 2017, pp. 103-119.

  9. G. A. Alekseeva, S. V. Gaver, et al., “Dyeing heat-resistant fibers with a dye mixture,” in: All-Russian Scientific Conference of Young Scientists “Innovation of Young Science” [in Russian], SPbGUPTD, St. Petersburg, 2017, 301 pp.

  10. T. Yu. Dyankova, N. S. Fedorova, et al., Fibre Chem., 47, No. 4, 337-342 (2015).

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Correspondence to T. Yu. Dyankova.

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Translated from Khimicheskie Volokna, No. 4, pp. 89-92, July—August, 2018.

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Dyankova, T.Y., Ostanen, A.V. & Fjodorova, N.S. Coloring Heat-Resistant Textiles. Fibre Chem 50, 345–348 (2018). https://doi.org/10.1007/s10692-019-09987-2

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  • DOI: https://doi.org/10.1007/s10692-019-09987-2

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