• 제목/요약/키워드: 폴리트리메틸렌테레프탈레이트

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연속 평판열처리에 의한 폴리(트리메틸렌 테레프탈레이트) 섬유의 미세구조 변화 (Morphological Structure of Poly(trimethylene terephthalate) Fibers Annealed by Passing on the Plate Heater)

  • 홍성학;김용;최창남;최희;이웅의;조성용
    • 폴리머
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    • 제27권2호
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    • pp.106-112
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    • 2003
  • 연속순간 평판열처리가 폴리(트리메틸렌 테레프탈레이트) (PTT) 섬유의 미세구조 및 물성에 미치는 영향을 고찰하기 위해 열처리 온도 및 시간을 변화시키면서 PTT섬유를 처리하였다. X-선 회절 분석 결과 적도선 방향에서 (010)면의 회절 피크가 2$\theta$ = 15.6$^{\circ}$에서 관찰되었으며, 열처리 온도 및 열처리 시간의 증가에 따라 X-선 회절 강도 분포 곡선은 예리해졌다. 또한 열처리 시료의 결정 크기 및 중량분율 결정화도도 열처리 온도와 열처리 시간의 증가에 따라 모두 증가하였다. 동적 점탄성 특성을 분석한 결과 열처리 온도 및 열처리 시간의 증가에 따라 T(tan $\delta$$_{max}$)는 크게 감소하였으며, 복굴절률과 유리 전이 온도도 감소 하였고, 용융 온도는 변화가 없었다. 이로부터 열처리 온도 및 열처리 시간의 증가에 따라 비결정 영역 중 분자 사슬의 충전 밀도는 낮아지고, 분자 사슬은 긴장이 완화되는 것으로 생각되었다.

연속순간 평판 열처리에 의한 폴리(트리메틸렌 테레프탈레이트) 섬유의 염색성 (Dyeability of Poly(trimethylene terephthalate) Fiber Annealed by Passing on the Plate Heater)

  • 홍성학;최창남;최희;송민규;김용
    • 한국염색가공학회지
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    • 제15권2호
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    • pp.59-67
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    • 2003
  • PTT[poly(trimethylene terephthalate)] fiber was annealed by passing on the plate heater to illuminate the effects of annealing on the mechanical properties and dyeability with varying the treatment temperature for 0.5 second. The apparent crystal sizes and crystallinity were increased with increases in temperature. With the increases of the temperature, the dynamic viscoelastic behaviors were analyzed to be reduction in $T_{max} (tan{\delta})$. The initial modulus were observed to be a small enhanced. The shrinkage in hot water were reduced. The dyeability for disperse dye enhanced dramatically, for example, a satisfactory degree of exhaustion was obtained by dyeing at $95^\circ{C}$ for 30 min with the PTT fibers heat treated at $180^\circ{C}$.

열처리에 의한 폴리(트리메틸렌 테레프탈레이트) 섬유의 알칼리 가수분해 거동 (Alkaline Hydrolysis Behavior of Poly(trimethylene terephthalate) Fibers Annealed by Passing on the Plate Heater)

  • 홍석학;최창남;최희;이석영;송민규;김용
    • 한국염색가공학회지
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    • 제15권3호
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    • pp.132-139
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    • 2003
  • PTT[Poly(trimethylene terephthalate)] fibers was annealed by passing on the plate heater to illuminate the effects of annealing on the alkaline hydrolysis behavior properties with varying the treatment temperature for 0.5 second. The L010 and crystallinity were increased with increases in temperature. With the increases of the temperature, the dynamic viscoelastic behaviors were analyzed to be reduction in $T_{max}(tan\;\delta)$. The weight loss in alkaline solution was two times more rapid for the PTT annealed at $200^\circ{C}$ than the control samples. The kinetics of hydrolysis was confirmed that the hydrolysis of the PTT fibers in the alkaline solution was started from the surface of the fibers and selective to the amorphous region in continuation, on the basis of the results of the increase in crystallinity and the decrease in dye uptake at the initial stage of the hydrolysis.

열처리 온도가 Poly(trimethylene terephthalate)(PTT) 섬유의 역학적 성질과 미세구조에 미치는 효과 (The Effects of Annealing Temperature on The Physical Properties and Fine Structure of Poly(trimethylene terephthalate)(PTT) Fibers)

  • 정경희;이언필;이재호
    • 한국의류산업학회지
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    • 제15권6호
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    • pp.985-992
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    • 2013
  • Polytrimethylene terephthalate(PTT) offers several advantageous properties such as good tensile strength, uniformity, stiffness, toughness, UV stability, resilience, stain resistance, outstanding elastic recovery, and dyeability. The effects of annealing temperature on physical properties and the structure of PTT filaments and yarn were investigated by measuring wide-angle X-ray diffraction (WAXD), density, optical birefringence, dynamic visco elasticity, and tensile testing. The intensity of maximum tan ${\delta}$ decreased and the temperature of maximum tan ${\delta}$ shifted to a higher temperature as the annealing temperature of filaments increased; however, it shifted to a lower temperature when the annealing temperature exceeded $130^{\circ}C$. In addition, crystallinity, density and D-spacing of (010) crystal face increased as the annealing temperature increased. Optical birefringence and specific stress were almost constant up to $100^{\circ}C$ and then decreased above $130^{\circ}C$. The shrinkage of PTT filament is 0 in boiling water when annealed above $130^{\circ}C$; consequently, the use of annealed fiber above $130^{\circ}C$ can remove thermal instability when dyeing PTT fiber. In the case of yarns, the thermal stability and physical properties of yarns showed the best effect when the ply number is less than 5, twist number is less than 400tpm, and the annealing time is 20minutes.

PTT[Poly(trimethylene terephthalate)] 직물(織物)의 물리적(物理的) 특성(特性)및 주관적(主觀的) 평가(評價)에 관(關)한 연구(硏究) (A Study on the Physical Properties and Subjective Evaluation of the PTT[Poly(trimethylene terephthalate)] Fabric)

  • 서효정;김종준;전동원
    • 패션비즈니스
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    • 제7권4호
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    • pp.121-128
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    • 2003
  • A new textile material, poly(trimethylene terephthalate) polymer, has been introduced to the textile industry. The structure of PTT is similar to the PET, while the tensile deformation and subsequent recovery property is better than that of PET. In this study, the physical and mechanical properties of textile woven fabrics made of PTT, PET, and nylon 6 yarns as the filling yarn were determined using the Kawabata Evaluation System (KES), including tensile, bending, shearing, compression, and surface related parameters. On top of these measurements, the subjective ratings by evaluators were performed on the fabric samples. From the examination of the stress-strain behavior of the yarn specimens focused on the recovery mode, it was evident that the PTT specimen developed lower stress at 3% elongation. The subsequent recovery curve showed that the PTT has less stress-decay rate than the other specimens, implying that the recovery behavior of the PTT is recommendable for the end-uses including stretchable textile materials, sports wears, etc. The KES bending rigidity(B) value of the PTT sample fabric was lower than that of the PET sample fabric. Subjective evaluation of the fabric samples by the evaluators on the descriptive word pair "soft - not soft" showed similar tendency with the KES B determination of the fabric samples.