SOLID PHASE DISSOLUTION FIBROIN OF NATURAL SILK
B.Kh.Islamov , Tashkent Institute Of Textile And Light Industry, Uzbekistan D.A.Mamaeva , Tashkent Institute Of Textile And Light Industry, Uzbekistan K.I.Vakhobov , Tashkent State Technical University Named After Islam Karimov, UzbekistanAbstract
Recycling of waste polymer raw materials is the most promising and actively developing method of recycling polymer waste. When recycling natural silk waste by obtaining structurally mixed fibers from joint solutions of any polymer and protein, the process of polymer dissolution plays an important role. The paper considers the process of solid-phase dissolution of natural silk fibrion as well as their mixtures with other polymers in the field of intense force impacts. The results of the study of the physicochemical properties and structure of the obtained materials showed that all the resulting mixtures of polymers have fiber-forming properties suitable for the formation of artificial or modified fibers based on them.
Keywords
Processing, polymers, fibroin
References
Papkov S.P. Physical and chemical bases of processing of polymer solutions //- M. Ximiya. 1971. P - 364.
Tager A.A. Physical Chemistry of Polymers // - M. Nauchniy mir, 2007.
Yurkevich V.V., Pakshver A.B. Production technology of chemical fibers //- M. Ximiya, 1987. P.-304
Zazulina Z.A., Drujinina T.V., Konkin A.A. Basics of chemical fiber technology //- M.: Ximiya, 1985. P.-343
Yunusov L. Physical and chemical properties of natural silk in the process of processing cocoons // - Tashkent. 1978. P.12-25.
Islamov B.X., Fattaxov M.A. Study of the contribution of protein components to the deformation properties of natural silk // Problemi tekstilya. 2015. . №3. P. 65-70.
Tatsuo Oon., Eysaku Itsuka., Seynosuka Onari. Biopolimeri. Redaktor. YU.Imanisi. M . Mir. 1988.
Babadjanov X., Geller B.E., Kamilova S.D. Viscous properties of spinning solutions of fibroin. //Ximicheskie volokna. 1986. №3. P. 23-24.
Rilkova M. V. Sozdanie voloknistix materialov na osnove kompleksoobrazuyushix vodorastvorimix polimerov metodom elektroformovaniya. Dissertatsiya na soiskanie uchenoy stepeni kandidata texnicheskix nauk. Moskva. 2014.
Zakirov I.Z., Zgibneva J.A. The problem of using secondary polymer resources in the production of chemical fibers. //Ximicheskie volokna. 1986. №3. P. 35-36.
Krichevskiy G.YE., Korchagin M.V., Senaxov A.V. Chemical technology of textile materials. // Moskva. Legprombitizdat., 1985.
R.M. Akhmetkhanov, S.V. Kolesov, E.I. Nagumanova, N.N. Kabalnova, G.E.Zaikov. // Journal of Applied Polymer Science, 99, 6, 2885-2887 (2005).
Vol'fson S. A., Nikol'skii V. G. Solid-Phase Deformation Fracture in the Grinding of Polymeric Materials. Powder Technologies // Vysokomolekulyarnye soedineniya. B. 1994. Vol. 36. No. 6. Pp. 1040-1041.
Islamov B.Kh, Fattahov M. A. Viscosity properties of aqueous solutions of natural silk waste compositions. // The American Journal of Engineering and Technology. 2022. V. 04, I. 02, pp. 1-4.
Islamov B.Kh, Umarov A.V, Boymuratov F.Т. Phase transition in pyrolyzed samples of natural silk // Texas Journal of Multidisciplinary Studies. 2022. V. 12. pp. 29-31.
Article Statistics
Copyright License
Copyright (c) 2023 The American Journal of Engineering and Technology
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors retain the copyright of their manuscripts, and all Open Access articles are disseminated under the terms of the Creative Commons Attribution License 4.0 (CC-BY), which licenses unrestricted use, distribution, and reproduction in any medium, provided that the original work is appropriately cited. The use of general descriptive names, trade names, trademarks, and so forth in this publication, even if not specifically identified, does not imply that these names are not protected by the relevant laws and regulations.