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      KCI등재

      습·건열 열고정 조건이 스트레치 직물의 역학특성과의류형성성능에 미치는 영향 = Effect of Wet and Dry Thermal Setting Conditions of Stretch Fabric to Fabric Mechanical Property and Garment Formability

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      https://www.riss.kr/link?id=A105121572

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      다국어 초록 (Multilingual Abstract)

      This paper investigated garment formability and fabric mechanical properties of one-way and two-way stretch fabrics according to the thermal treatment methods. One-way and two-way stretch fabrics were woven using 75d and 150d PET/spandex covering yarn...

      This paper investigated garment formability and fabric mechanical properties of one-way and two-way stretch fabrics according to the thermal treatment methods. One-way and two-way stretch fabrics were woven using 75d and 150d PET/spandex covering yarns and then these were wet thermal treated with four kinds of finishing machines. The fabric mechanical properties of these stretch fabrics specimens were measured and compared with the regular PET fabrics. The stretch ratio of one-way stretch fabric was ranged 12 to 26 percentage, 15 to 45 percentage for 2-way stretch fabrics and 4 to 10 percentage for regular fabrics. Garment formability of stretch fabric was superior than that of regular fabrics, in addition, 2-way stretch fabric was better than one-way. The garment formability of the stretch fabrics treated with CPB and Lava wet thermal machines showed the highest values, and the stretch ratio of these 2-way stretch fabrics was also the highest, which was ranged 20 to 45 percentage. This phenomenon was assumed to be due to high extensibility and bending rigidity with low shear modulus of the 2-way stretch fabric treated with CPB and Lava wet thermal machines.
      It was shown that the garment formability of stretch fabrics treated without dry thermal treatment was higher than that of dry thermal treated fabrics. It revealed that high stretch fabric was available under the condition of low process tension in the wet and dry thermal treatments of the finishing process, which makes high garment formability.

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      참고문헌 (Reference)

      1 Gorjanc, D. S., "The behaviour of fabric with elastane yarn during stretching" 3 (3): 63-68, 2008

      2 El-Ghezal, S., "Study of the impact of elastane's ratio and finishing process on the mechanical properties of stretch denim" 100 (100): 245-253, 2009

      3 Komatsu, R., "Stretch fabrics woven by spandex mixed yarn" 34 (34): 9-13, 1981

      4 Tanie, T., "Stretch and recovery tests for jersey and stretch fabrics" 7 (7): 22-26, 1966

      5 Ozdil, N., "Stretch and bagging properties of denim fabrics containing different rates of elastane" 66 (66): 63-67, 2008

      6 최희, "Poly(trimethylene terephthalate) 섬유를 이용한 신충성직물의 제조 및 물성" 한국의류산업학회 5 (5): 53-58, 2003

      7 Mourad, M., "Physical and stretch properties of woven cotton fabrics containing different rates of spandex" 8 (8): 567-572, 2012

      8 Maqsood, M., "Modeling the effect of elastane linear density, fabric thread density, and weave float on the stretch, recovery and compression properties of bi-stretch woven fabrics for compression garments" 107 (107): 307-315, 2016

      9 Postle, R., "Measuring and interpreting low-stress fabric mechanical and surface properties Part III: Optimization of fabric properties for men's suiting materials" 59 (59): 448-459, 1989

      10 Shishoo, R., "Fabric tailorability" 2 (2): 64-71, 1990

      1 Gorjanc, D. S., "The behaviour of fabric with elastane yarn during stretching" 3 (3): 63-68, 2008

      2 El-Ghezal, S., "Study of the impact of elastane's ratio and finishing process on the mechanical properties of stretch denim" 100 (100): 245-253, 2009

      3 Komatsu, R., "Stretch fabrics woven by spandex mixed yarn" 34 (34): 9-13, 1981

      4 Tanie, T., "Stretch and recovery tests for jersey and stretch fabrics" 7 (7): 22-26, 1966

      5 Ozdil, N., "Stretch and bagging properties of denim fabrics containing different rates of elastane" 66 (66): 63-67, 2008

      6 최희, "Poly(trimethylene terephthalate) 섬유를 이용한 신충성직물의 제조 및 물성" 한국의류산업학회 5 (5): 53-58, 2003

      7 Mourad, M., "Physical and stretch properties of woven cotton fabrics containing different rates of spandex" 8 (8): 567-572, 2012

      8 Maqsood, M., "Modeling the effect of elastane linear density, fabric thread density, and weave float on the stretch, recovery and compression properties of bi-stretch woven fabrics for compression garments" 107 (107): 307-315, 2016

      9 Postle, R., "Measuring and interpreting low-stress fabric mechanical and surface properties Part III: Optimization of fabric properties for men's suiting materials" 59 (59): 448-459, 1989

      10 Shishoo, R., "Fabric tailorability" 2 (2): 64-71, 1990

      11 Shishoo, R. L., "Fabric properties and making up processes" 20 (20): 66-73, 1989

      12 Lee, H. D., "Evaluation of tailorability and mechanical properties of stretch fabrics" 2 (2): 150-158, 2000

      13 Gazi Ortlek, H., "Effects of spandex and yarn counts on the properties of elastic core-spun yarns produced on Murata vortex spinner" 77 (77): 432-436, 2007

      14 Al-Ansary, M. A. R., "Effect of spandex ratio on the properties of woven fabrics made of cotton/spandex spun yarn" 7 (7): 63-67, 2011

      15 Varghese, N., "Development of woven stretch fabrics and analysis on handle, stretch, and pressure comfort" 106 (106): 242-252, 2015

      16 Tanaka, T., "Comfort and motion function of garment" 25 (25): 28-34, 1984

      17 Rego, J. M., "Comfort analysis of woven cotton/polyester fabrics modified with a new elastic fiber, part 2: Detailed study of mechanical, thermo-physiological and skin sensorial properties" 80 (80): 206-215, 2010

      18 Hirokazu, K., "Clarification of the stretching process of newly-developed open-end rotor-spun hollow yarn" 58 (58): 43-48, 2012

      19 Ly, N. G., "Application of the FAST system to the manufacture of fabrics and garments" 5 : 370-379, 1990

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      학술지 이력

      학술지 이력
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      2005-05-18 학술지명변경 한글명 : 한국의류산업학회 -> 한국의류산업학회지 KCI등재
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.63 0.63 0.66
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.7 0.69 0.817 0.15
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