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Investigation of the Influence of Stretch on the Air Permeability of Knitted Fabric: Effect of Loop Length

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Badanie wpływu rozciągnięcia dzianin na przepuszczalność powietrza. Wpływ długości pętli
Języki publikacji
EN
Abstrakty
EN
Most of the time, a certain degree of stretch prominently and incrementally occurs in intimate wear, leisure wear, sportswear, medical textiles etc., during their action. Variations in the stretch gradient would definitely cause changes in the air permeability of knitted fabrics. The influence of variables such as loop length, the presence of an elastomeric component and fabric structure on the air permeability of cotton single jersey and pique knitted fabrics in a stretched state was critically analysed. In this work, changes in the air permeability of cotton jersey samples with and without elastomer were investigated and reported by keeping the samples in static up to an incremental stretch of 40% at a rate of 10% of the stretch gradient, in a dry relaxed state, wet relaxed state and fully relaxed state.
PL
W większości przypadków, podczas użytkowania odzieży rekreacyjnej, sportowej, medycznej itp. występuje pewien stopień rozciągnięcia. Wahania gradientu rozciągliwości powodują zmiany przepuszczalności powietrza dzianin. W pracy przeanalizowano wpływ zmiennych, takich jak: długość pętli, obecność składnika elastomerowego i rodzaju struktury na przepuszczalność powietrza dzianin bawełnianych typu single jersey i typu pique w stanie rozciągniętym. W pracy zbadano i odnotowano zmiany przepuszczalności powietrza w przypadku próbek dżerseju bawełnianego z elastomerem i bez elastomeru, utrzymując próbki w stanie statycznym do przyrostowego rozciągnięcia 40% z 10% gradientem rozciągania w stanie mokrym i suchym.
Rocznik
Strony
53--56
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
  • Shahi Exports Pvt Ltd, Arekere Village, Bannerghatta Main Road, Bangalore 560076, Karnataka, India
autor
  • Indian Institute of Handloom Technology,Department of Handloom and Textile Technology, Fulia Colony, Nadia 741402, West Bengal, India
  • Shahi Exports Pvt Ltd, Arekere Village, Bannerghatta Main Road, Bangalore 560076, Karnataka, India
  • Bahir Dar University, Ethiopia Institute of Textile and Fashion, Department of Textile Technology, Bahir Dar, Ethiopia
Bibliografia
  • 1. Srinivasulu K, Sikka M, Hayavadana J. Study of loop formation process on 1x1 v-bed rib knitting machine: the factors affecting loop length and validation of model. International Journal of Advanced Research in Engineering and Technology 2013, 4, 2: 259-270.
  • 2. Sampath MB, Senthilkumar M. Effect of Moisture Management Finish on Comfort Characteristics of Microdenier Polyester Knitted Fabrics. Journal of Industrial Textiles 2009, 39, 2: 163-173.
  • 3. Gun AD. Dimensional, Physical and Thermal Comfort Properties of Plain Knitted Fabrics Made from Modal Viscose Yarns Having Microfibers and Conventional Fibers. Fibers and Polymers 2011, 12, 2: 258-267.
  • 4. Vasanth Kumar D, Raja D. Influence of Moisture Management Properties on Socks Made from Recycled Polyester, Virgin Cotton and its Blends. FIBRES & TEXTILES in Eastern Europe 2020; 28, 4(142): 76-81. DOI: 10.5604/01.3001.0014.0939.
  • 5. Vidya T, Prakash C. Comparison of Moisture Management Properties of Plasma Treated Single Jersey Fabric with Different Types of Polyester Yarns. FIBRES & TEXTILES in Eastern Europe 2019; 27, 1(133): 32-36. DOI: 10.5604/01.3001.0012.7505.
  • 6. Çeven EK, Karakan Günaydin G. Investigation of Moisture Management and Air Permeability Properties of Fabrics with Linen and Linen-Polyester Blend Yarns. FIBRES & TEXTILES in Eastern Europe 2018; 26, 4(130): 39-47. DOI: 10.5604/01.3001.0012.1311.
  • 7. Duru, SC, Candan C. Effect of repeated laundering on wicking and drying properties of fabrics of seamless garments. Textile Research Journal 2013; 83, 6: 591-605.
  • 8. Bivainyte A, Mikucionienė D, Kerpauskas P. Investigation on Thermal Properties of Double-Layered Weft Knitted Fabrics. Material Science 2012; 18, 2: 167-171.
  • 9. Oinuma R. Effect of Stitch Length on Some Properties of Cotton 1× 1 Rib Knitted Fabrics. Journal of the Textile Machinery Society of Japan 1990; 36, 3: 91-95.
  • 10. Chidambaram P, Govind R, Venkataraman KC. The Effect of Loop Length and Yarn Linear Density on the Thermal Properties of Bamboo Knitted Fabric. Autex Research Journal 2011; 11, 4: 102-105.
  • 11. Bhattacharyal SS, Ajmeri JR. Investigation of Air Permeability of Cotton & Modal Knitted Fabrics. International Journal of Engineering Research and Development 2013; 6, 12: 1-6.
  • 12. Prakash, C, Ramakrishnan, G, Mani, K, Keerthana, K. An Investigation of the Relationship Between Blend Ratio, Linear Density and Loop Length on Geometrical and Air Permeability Properties of Bamboo Cotton-Knitted Fabrics. International Journal of Fashion Design, Technology and Education 2015; 8, 3, 228-234.
  • 13. Mavruz S Ogulata RT. Investigation of Air Permeability of Single Jersey Fabrics with Different Relaxation States. The Journal of the Textile Institute 2011; 102, 1: 57-64.
  • 14. Afzal A, Hussain T, Malik, MH, Javed Z. Statistical Model for Predicting the Air Permeability of Polyester/Cotton-Blended Interlock Knitted Fabrics. The Journal of the Textile Institute 2014; 105, 2: 214-222.
  • 15. Buharali G, Omeroglu S. Comparative Study on Carded Cotton Yarn Properties Produced by the Conventional Ring and New Modified Ring Spinning System. FIBRES & TEXTILES in Eastern Europe 2019; 27, 2(134): 45-51. DOI: 10.5604/01.3001.0012.9986.
  • 16. Günaydin GK, SoydanAS, Palamutçu S. Evaluation of Cotton Fibre Properties in Compact Yarn Spinning Processes and Investigation of Fibre and Yarn Properties. FIBRES & TEXTILES in Eastern Europe 2018; 26, 3(129): 23-34. DOI: 10.5604/01.3001.0011.7299.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3d6c1e49-411f-4526-bc91-f404894cbdab
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