Analysis of technological indicators and physic-mechanical properties of knit fabric

https://doi.org/10.31295/ijcms.v4n1.1766

Authors

  • Sotvoldiyeva Zarifa Olimjonovna Researcher, Department of Design, Namangan Institute of Engineering and Technology, 160115, Namangan, Uzbekistan
  • Kamalova Iroda Ibragimovna Senior lecture, Department of Design, Namangan Institute of Engineering and Technology, 160115, Namangan, Uzbekistan

Keywords:

air permeability, cotton, fabric, fur knitwear, lycra, sewing knitwear, silk, yarn

Abstract

In this article, to increase production efficiency at sewing and knitting enterprises, we improve the quality of consumption of the assortment of knit fabric with the addition of natural yarn to lycra yarn in various knit fabrics and recommend them to sew and knitting enterprises. Based on the results of the analysis of technical indicators and the physical and mechanical properties of the proposed knit fabric, it can be concluded that the addition of natural lycra to the composition of various knit fabrics led to an improvement in the consumer qualities of the assortment of knit products with the addition of synthetic spool. Knit fabric with the addition of these synthetic spools of threads has high strength and hygienic properties.

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References

Abdullayeva. Q.M. (2006). Basics of design and modeling of garments. Tashkent. Writers' Union.

Abou-Okeil, A., El-Sawy, S. M., & Abdel-Mohdy, F. A. (2013). Flame retardant cotton fabrics treated with organophosphorus polymer. Carbohydrate polymers, 92(2), 2293-2298. https://doi.org/10.1016/j.carbpol.2012.12.008

Ahmadjanovich, K. S., Lolashbayevich, M. S., & Tursunbayevich, Y. A. (2020). Study Of Fiber Movement Outside The Crater Of Pnevmomechanical Spinning Machine. Solid State Technology, 63(6), 3460-3466.

Aleksandrovna, C. V., & Dianhua, W. (2021). Light Industry As The Dominant Sector Of Interaction Between Russia And China. Science, technique and education, (3 (78)), 28-31.

Apsari, A. E., & Purnomo, H. (2020). An Occupational safety and health (OSH) factors identified in Indonesian batik textile small/medium enterprises. International Research Journal of Engineering, IT and Scientific Research, 6(2), 55-64.

Behery, H. M. (2010). Yarn structural requirements for knitted and woven fabrics. In Advances in yarn spinning technology (pp. 155-189). Woodhead Publishing. https://doi.org/10.1533/9780857090218.1.155

Ergashev, J. S., Rayimberdiyeva, D. K., Ergasheva, R. A., & Kenjayeva, V. K. (2020). Analysis Of Selected Fabric Properties For Children’s Light Clothing. The American Journal of Engineering and Technology, 2(09), 42-48.

Ergashev, J., Akhmedhodjaev, K., Karimov, A., Kayumov, J., Ergasheva, R., & Mahsudov, S. (2019). Studying the Law of the Movement of Cotton Particle on a Saw Cylinder and the Interaction with Saw Teeth. Engineering, 11(10), 717.

Ergashev, J., Kayumov, J., Ismatullaev, N., & Parpiev, U. (2020). Theoretical Basis for Calculating the Determination of the Optimal Angle of Rotation of the Slit and Air Velocity.

Erkinov, Z., Abduvaliyev, D., Izatillya, M., & Qorabayev, S. (2020). Theoretical studies on the definition of the law of motion and the equilibrium provision of the ball regulating the uniform distribution of the torque along the yarn. ACADEMICIA: An International Multidisciplinary Research Journal, 10(11), 2338-2347.

Gajjar, B. J. (2011). Advances in warp knitted fabric production. In Advances in Knitting Technology (pp. 110-135). Woodhead Publishing. https://doi.org/10.1533/9780857090621.2.110

Gibson, P. W., & Charmchi, M. (1997). Modeling convection/diffusion processes in porous textiles with inclusion of humidity-dependent air permeability. International Communications in Heat and Mass Transfer, 24(5), 709-724. https://doi.org/10.1016/S0735-1933(97)00056-0

Gong, H., & Ozgen, B. (2018). Fabric structures: Woven, knitted, or nonwoven. In Engineering of High-Performance Textiles (pp. 107-131). Woodhead Publishing. https://doi.org/10.1016/B978-0-08-101273-4.00007-X

Korabayev, S. A., Mardonovich, M. B., Lolashbayevich, M. S., & Xaydar?vich, M. U. (2019). Determination of the Law of Motion of the Yarn in the Spin Intensifier. Engineering, 11(5), 300-306.

Korabayev, S. A., Matismailov, S. L., & Salohiddinov, J. Z. (2018). Investigation of the impact of the rotation frequency of the discretizing drum on the physical and mechanical properties of. Central Asian Problems of Modern Science and Education, 3(4), 65-69.

Lawrence, C. (2015). Fibre to yarn: filament yarn spinning. In Textiles and fashion (pp. 213-253). Woodhead Publishing. https://doi.org/10.1016/B978-1-84569-931-4.00010-6

Liu, J. (2021, April). Intelligent development Trend of Traditional Weaving Production Equipment based on IoT and 5G Technology. In Journal of Physics: Conference Series (Vol. 1881, No. 4, p. 042080). IOP Publishing.

Merdan, N., Akalin, M., Kocak, D., & Usta, I. (2004). Effects of ultrasonic energy on dyeing of polyamide (microfibre)/Lycra blends. Ultrasonics, 42(1-9), 165-168. https://doi.org/10.1016/j.ultras.2004.02.005

Mirzaboev, J., Jumaniyazov, Q., Mirzabaev, B., & Sadikov, M. (2020). Measures For The Formation And Use Of Fibrous Waste. Theoretical & Applied Science, (12), 177-179.

Mirziyoyev, S. M. (2016). Together we will build a free and prosperous, democratic state of Uzbekistan. Speech at the joint session of the Oliy Majlis of the Republic of Uzbekistan dedicated to the inauguration ceremony of the President of the Republic of Uzbekistan Tashkent: Uzbekistan.

Musohon, I. M., Shuxratjonovich, R. B., Avaz, J. G., & Baxromjon, B. M. (2021). Tools to determine the tension of selected yarns on knitting machines by experiment. Zbírnik naukovix prats LÓGOS.

Prasad, M. M., Dhiyaneswari, J. M., Jamaan, J. R., Mythreyan, S., & Sutharsan, S. M. (2020). A framework for lean manufacturing implementation in Indian textile industry. Materials today: proceedings, 33, 2986-2995. https://doi.org/10.1016/j.matpr.2020.02.979

Samatovich, E. J., Babakulova, U. V., Makhmudjanovich, D. F., Boltaboevna, M. O., & Khabibillaevna, R. D. (2020). Analysis of forecasting of the assortment of children's footwears. ACADEMICIA: An International Multidisciplinary Research Journal, 10(6), 577-584.

Samatovich, E. J., Qizi, N. M. A., & Kizi, A. S. K. (2021). Research Of Physical And Mechanical Indicators Of Jensie And Knitted Fabrics Recommended For Children's Combined Outerwear. The American Journal of Interdisciplinary Innovations Research, 3(03), 37-44.

Ugli, I. M. M., & Ahmadjonovich, K. S. (2020). Experimental Studies Of Shirt Tissue Structure. The American Journal of Applied sciences, 2(11), 44-51.

Ünay, F. G., & Zehir, C. (2012). Innovation intelligence and entrepreneurship in the fashion industry. Procedia-Social and Behavioral Sciences, 41, 315-321. https://doi.org/10.1016/j.sbspro.2012.04.036

Widiastuti, T., Rizali, N., Anantanyu, S., & Waluyo, S. E. (2017). Line and color composition in lurik cawas weaving: idea from traditional lurik patterns. International Research Journal of Management, IT and Social Sciences, 4(1), 1-7.

Wilson, J. (2011). Fibres, yarns and fabrics: fundamental principles for the textile designer. In Textile design (pp. 3-30). Woodhead Publishing. https://doi.org/10.1533/9780857092564.1.3

Published

2021-09-26

How to Cite

Olimjonovna, S. Z., & Ibragimovna, K. I. (2021). Analysis of technological indicators and physic-mechanical properties of knit fabric. International Journal of Chemical & Material Sciences, 4(1), 13-19. https://doi.org/10.31295/ijcms.v4n1.1766