• Title/Summary/Keyword: nylon/PET composite filament

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Effect to the Physical Properties of the Eluted Partial Dispositioned Hollow Filament Fabrics according to the Weight Reduction Conditions (감량가공 조건이 용출형 편심중공사 직물의 물성에 미치는 영향)

  • Kim, Seung-Jin;Park, Kyung-Soon;Kim, Sang-Ryong
    • Textile Coloration and Finishing
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    • v.21 no.3
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    • pp.26-36
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    • 2009
  • The objective of this study is to investigate the elution characteristics of the partial dispositioned hollow nylon filament and the mechanical properties of the eluted fabrics according to the weight reduction conditions. For this purpose, the partial dispositioned nylon/PET composite filament, SDY 70d/48f was prepared, and warp beam was also prepared on the sizing machine using these yarns. Four kinds of woven fabrics were designed with different warp and weft densities and these fabrics specimens were eluted with weight reduction conditions of two kinds of NaOH concentration (30, 40g/l), three kinds of weight reduction temperature (50, 60, $85^{\circ}C$) and two kinds of weight reduction time (30, 60min). The eluting rates of these fabrics specimens were analysed with various weight reduction conditions. The eluting characteristics of these fabrics were discussed with the cross-section of nylon hollow filament measures by SEM. Finally, the mechanical properties of the partial dispositioned hollow nylon fabrics were measured and discussed with various weight reduction conditions.

A Study on The Physical Properties of Sheath/Core Type Nylon/PET High Hollow Composite Yarns and its Fabrics (Sheath/Core형 나일론/PET 고중공 복합사 및 직물물성 연구)

  • Kim, Seung-Jin;Park, Kyung-Soon;Jo, Jin-Hwang
    • Textile Coloration and Finishing
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    • v.21 no.4
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    • pp.1-10
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    • 2009
  • This paper surveys the physical properties of sheath/core nylon/PET high hollow composites filaments and its fabrics according to the various elution conditions such as concentration of elution, eluted time and eluted temperature. For this purpose, sheath/core nylon/PET filament was texturized and four kinds of fabric specimens were woven with different warp and weft densities. These grey fabrics were eluted with two kinds of concentrations of NaOH (30g/l, 40g/l), three kinds of eluted temperatures $50^{\circ}C,\;60^{\circ}C,\;85^{\circ}C$) and two kinds of eluted times (60min, l20min). The elution characteristics of these specimens were investigated and discussed with different elution conditions. In addition, the mechanical properties such as extensibility, bending rigidity, shear modulus and compressional work of these specimens aceording to the elution conditions were analysed and summarized with cross-sectional shapes of eluted filaments measured by SEM.

Effect of Hollow Composite Yarn Characteristics to the Comfort Property of Fabrics for High Emotional Garment (중공 복합사 특성이 고감성 의류용 직물의 쾌적성에 미치는 영향)

  • Kim, Hyun-Ah
    • Science of Emotion and Sensibility
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    • v.17 no.4
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    • pp.71-78
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    • 2014
  • Composite draw textured yarns(DTY) and air jet textured yarns(ATY) with hollow PET filament have been used for making high emotional fabrics including light weight sports wear garments. This study investigated effect of hollow composite yarns and fabric structural parameters to the comfort properties related to the moisture and thermal transport phenomena for the composite fabrics made of DTY and ATY with hollow PET filament. Wicking property of hollow composite fabric was superior at the high pore size fabric and was not influenced by fabric cover factor. Wicking property of the fabric with ATY was better than that of the fabric with DTY. On the other hand, drying rate of fine pore sized fabric was shorter than that of large pore sized fabric and drying rate of high multi yarn fabric with low cover factor and small pore size was superior than that of hollow composite fabric. The pore size of the fabric was dominant factor in the air permeability and thermal conductivity of hollow composite fabric. High pore sized fabric showed high air permeability and thermal conductivity of hollow composite fabric was nonlinearly inversely proportional to pore size of the fabric.