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Tytuł artykułu

Physical and Mechanical Properties of Cotton/Polyester Based Fibers for Shoe Uppers and Lining Products

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of the study was to evaluate the physical and mechanical properties of various textile materials based on polyester and cotton for shoe uppers and lining. For that purpose, the influence of the ratio of a mixture of cotton and polyester fibers on the quality of the fabric was investigated. As a result, fabrics with the same composition but different yarn numbers differed from each other in specified properties. With an increase in the content of polyester, all specified properties increase except for vapor permeability, which makes it possible to correctly select the composition of fabrics for shoes.
Słowa kluczowe
Rocznik
Strony
14--21
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
  • Department of technology and design of textile materials, Higher school of textile and food engineering, M.Auezov South Kazakhstan university, 160012, Tauke khan avenue - Shymkent, Republic of Kazakhstan
autor
  • Department of technology and design of textile materials, Higher school of textile and food engineering, M.Auezov South Kazakhstan university, 160012, Tauke khan avenue - Shymkent, Republic of Kazakhstan
  • Department of leather engineering, Faculty of engineering, Ege university, 35100, Bornova - Izmir, Republic of Turkey
autor
  • Department of leather engineering, Faculty of engineering, Ege university, 35100, Bornova - Izmir, Republic of Turkey
  • M.Kh. Dulaty Taraz Regional University, 080014, Tole bi 60,Taraz, Republic of Kazakhstan
  • Department of leather engineering, Faculty of engineering, Ege university, 35100, Bornova - Izmir, Republic of Turkey
Bibliografia
  • 1. Goel, A., Textile in footwear technology. Man-made textile in India, 2010; 53(10): 357-362.
  • 2. Muñoz, Z., R., Water, energy and carbon footprints of a pair of leather shoes. Master’s thesis, Universitat Politècnica de Catalunya, 2013.
  • 3. Shustov, Yu., S., Kurdenkova, A., V., Investigation of physico-mechanical properties of fabrics from Rusar threads. Scientific and Methodological Electronic Journal Concept, 2016; 3: 36-40. (In Russian)
  • 4. Gottfridsson, M., Zhang. Y., Environmental impacts of shoe consumption, combining product flow analysis with an LCA model for Sweden. Master’s thesis, Department of Energy and Environment Division of Environmental Systems Analysis, Chalmers University of Technology, 2015.
  • 5. Kutnjak- Mravlinčić, S., Akalović, J., Bischof, S., Merging footwear design and functionality. Autex Research Journal, 2020; 20(4): 372-381. https://doi.org/10.2478/aut-2019-0023.
  • 6. Yick, K., Yu, A., Li, P., Insights into footwear preferences and insole design to improve thermal environment of footwear. International Journal of Fashion Design, Technology and Education, 2019; 12(3): 325-334.
  • 7. Mickle, K., J., Munro, B., J., Lord, S., R., Menz, H., B., & Steele, J., R., Foot shape of older people: implications for shoe design, In: Footwear Science, 2010; 2(3): 131-139. https://doi.org/10.1080/19424280.2010.487053.
  • 8. Farzadi, M., Nemati, Z., Jalali, M., Doulagh, R. S., & Kamali, M., Effects of unstable footwear on gait characteristic: A systematic review. The Foot, 2017; 31: 72-76. https://doi.org/10.1016/j.foot.2017.04.005.
  • 9. Kohan, L., Martins, C. R., Oliveira Duarte, L., Pinheiro, L., & Baruque-Ramos, J., Panorama of natural fibers applied in Brazilian footwear: materials and market. SN Applied Sciences, 2019; 1( 895): 1-10.
  • 10. Pawłowa, M., Quality determinants of footwear and clothing. Towaroznawcze Problemy Jakości, 2012; 3: 69-79.
  • 11. Branthwaite H., Chockalingam N., Everyday footwear: an overview of what we know and what we should know on ill-fitting footwear and associated pain and pathology. The Foot, 2019; 39: 11-14. https://doi.org/10.1016/j.foot.2019.01.007.
  • 12. Melvin, J., M., Price, C., Preece, S., Nester, C., & Howard, D., An investigation into the effects of, and interaction between, heel height and shoe upper stiffness on plantar pressure and comfort. Footwear Science, 2019; 11(1): 25-34.
  • 13. Rao, G., Chambon, N., Guéguen, N., Berton, E., & Delattre, N., Does wearing shoes affect your biomechanical efficiency. Journal of biomechanics, 2015; 48(3): 413-417. https://doi.org/10.1016/j.jbiomech.2014.12.038.
  • 14. Nguyen, U. S., Hillstrom, H. J., Li, W., Dufour, A. B., Kiel, D. P., Procter-Gray, E., Hannan, M. T., Factors associated with hallux valgus in a population-based study of older women and men: the MOBILIZE Boston Study. Osteoarthritis and cartilage, 2010; 18(1): 41-46. https://doi.org/10.1016/j.joca.2009.07.008.
  • 15. Williams, A., Footwear assessment and management. Podiatry Management, 2007; 26(8): 165.
  • 16. Cavalheiro, G., M., C., Brandao, M., Assessing the IP portfolio of industrial clusters: the case of the Brazilian footwear industry. Journal of Manufacturing Technology Management, 2017; 28(8): 994-1010.
  • 17. Uttam, D., Active sportswear fabrics. International Journal of IT, Engineering and Applied Sciences Research, 2013; 2(1): 34-40.
  • 18. Soares, G., Magalhaes, A., Vasconcelos, A., Pinto, E., & Santos, J., Comfort and Antimicrobial Properties of Developed Bamboo, Polyester and Cotton Knitted Spacer Fabrics. Cellulose Chemistry and Technology, 2018; 52(1-2): 113-121.
  • 19. Huang, J., Thermal parameters for assessing the thermal properties of clothing. Journal of Thermal Biology, 2006; 31(6): 461-466. https://doi.org/10.1016/j.jtherbio.2006.03.001.
  • 20. Blaga, M., Ciobanu, A. R., Marmarali, A., Ertekin, G., & Çelik, P., Investigation of the physical and thermal comfort characteristics of knitted fabrics used for shoe linings. Tekstil ve Konfeksiyon, 2015; 25(2): 111-118.
  • 21. Shcherbakov, V., P., Applied and structural mechanics of fibrous materials. AN Kosygin Moscow State Textile University, Moscow. Tiso Print, 2013.
  • 22. Sultanov, K., S., Ismailova, S., I., Physically nonlinear elastic-viscoplastic law of strain of cotton yarn under tension to breakage. Journal of Fashion Technology and Textile Engineering S, 2017; 3: 006. doi:10.4172/2329-9568.S3-006.
  • 23. Joshi, S., Kambo, N., Dubey, S., Shukla, P., & Pandey, R., Effect of onion (Allium cepa L.) peel extract-based nanoemulsion on anti-microbial and UPF properties of cotton and cotton blended fabrics. Journal of Natural Fibers, 2022; 19(14): 8345-8354. https://doi.org/10.1080/15440478.2021.1964127.
  • 24. Baykal, P., D., Babaarslan, O., Erol, R., Prediction of strength and elongation properties of cotton polyester-blended OE rotor yarns. Fibres and Textiles in Eastern Europe, 2006; 14(1): 18-21.
  • 25. Fayzullaev, Sh., R., Makhkamova, Sh., F., Rakhimberdiev, M., R., U., & Komilov, H., H., U., Influence of cotton/polyester fiber mixture ratio on yarn quality indicators, In: Universum: Technical Sciences, 2021; 6(87): 77-82. URL: https://7universum. com/ru/tech/archive/item/11871 (In Russian).
  • 26. Wang, W., Y., Hui, K., T., Kan, C., W., Viengsima, M., Wansopa, N., Promlawan, K., ... & Mongkholrattanasit, R., Examining the water vapour transmission of socks. Key Engineering Materials, 2020; 831: 159-164, Trans Tech Publications Ltd.
  • 27. Kumpikaitė, E., Tautkutė-Stankuvienė, I., Redeckienė, D., Interrelation between tensile properties of yarns and woven fabrics with these yarns. AUTEX Research Journal, 2019; 19(4): 387-393. https://doi.org/10.1515/aut-2018-0054.
  • 28. Turker, E., Turan, N., Y., A research on the investigation of physical properties of polyester/cotton fabrics. Journal of Textile Engineering and Fashion Technology, 2018; 4(1): 1-8. 10.15406/jteft.2018.04.00115.
  • 29. Makhotkina L.Yu., Tikhonova N.V., Morozova I.I. Designing a suit for outdoor activities with improved heatshielding properties. Journal of Clothing Science, (2019); [online.1(4). Available at: https://kostumologiya.ru/PDF/06TLKL119.pdf (in Russian)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1efa5770-2fa2-4c80-919e-aac4d715d23c
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