• 제목/요약/키워드: Nylon6,6

검색결과 507건 처리시간 0.024초

Nylon6,6/Polypyrrole 전도성 복합체의 제조에 관한 연구 (A Study on the Preparation of Nylon6,6/Polypyrrole Conducting Composite)

  • 이완진;김효용
    • 공업화학
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    • 제10권2호
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    • pp.281-286
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    • 1999
  • Nylon6,6를 matrix로 사용하여 전도성 고분자인 polypyrrole (PPy)과의 전도성 복합체를 블렌딩 방법에 의하여 제조하였다. PPy를 화학적으로 중합시키는데 있어서 $FeCl_3$를 산화제로 사용하였으며, dopant로서 camphorsulfonic acid (CSA)와 dodecylbenzenesulfonic acid (DBSA)와 같은 알킬 벤젠 술폰산을 사용하였다. 제조된 전도성 복합체에 대하여 dopant의 종류에 따라 또는 PPy의 함량에 따라 전기전도도 및 몰포로지 그리고 기계적 물성 등을 측정 분석하였다. PPy 착체의 함량이 증가할수록 전기전도도는 증가하였으며, 알킬사슬의 길이가 긴 DBSA로 도핑된 25 wt % PPy 착체와 nylon6,6 복합체의 전기전도도는 0.64 S/cm까지 향상되었다.

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매우 높은 분자량을 갖는 Nylon 4 및 Nylon 4/6 공중합체의 합성 및 그 특성 분석 (Synthesis and Characterization of Very High Molecular Weight Nylon 4 and Nylon 4/6 Copolymers)

  • 김남철;김지흥;남성우;전붕수;유영태;김영준
    • 폴리머
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    • 제37권2호
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    • pp.211-217
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    • 2013
  • Potassium tert-butoxide(t-BuOK)와 $CO_2$ 및 혹은 benzoyl chloride(BzC)를 각각 nylon 4 및 nylon 4/6 공중합체의 중합 개시제 시스템으로, 18-crown-6 ether(crown ether) 또는 tetramethyl ammonium chloride(TMAC)를 촉매로 사용하여 2-pyrrolidone(C4) 및 ${\varepsilon}$-caprolactam(C6)의 음이온 개환반응을 통하여 분자량이 매우 높은 polypyrrolidone(이하 nylon 4) 및 nylon 4 공중합체를 합성하였다. 개시제 시스템, crown ether 또는 TMAC가 중합반응에 미치는 영향을 분자량 및 수율 면에서 평가하였다. Crown ether나 TMAC를 사용하면 중합수율이 향상되었고 nylon 4의 경우 고유점도가 6.35 dL/g인 중합체를 합성할 수 있었다. 이 때 TMAC보다는 crown ether가 중합체의 분자량 상승에 더 효과적임을 확인할 수 있었다. 또한 제조된 중합체에 대해 TGA 및 DSC 열분석을 실시하였으며 분자량이 nylon 4 또는 nylon 4 공중합체의 열적 특성에 큰 영향을 미치지 않음을 확인하였다.

음이온성 syntan을 이용한 나일론 6.6 섬유의 흡착거동 및 오염방지성 (Application of an Anionic Syntan on Nylon 6.6 Fibers: Exhaustion Properties and Staining Resistance)

  • 손영아;홍진표;김태경
    • 한국염색가공학회지
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    • 제15권6호
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    • pp.18-26
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    • 2003
  • Nylon 6.6 was treated with anionic synthetic tanning agent at different pH values, temperatures and liquor ratios to determine exhaustion properties. Treatments using syntan were conducted to the undyed nylon 6.6 fiber and three acid dyeings and then samples of the bath solution were subjected to HPLC analysis. Mass analysis was considered to determine the syntan components. In addition, the effect of applications using syntan and syntan/cation in improving the stain resistance was observed. The optimum treatment condition of syntan was achieved and the major component of syntan, being exhausted to the nylon substrates, was determined. In terms of stain blocking effect, a significant improvement was achieved by the syntan and syntan/cation treatments.

폴리아닐린/나일론 6 복합직물의 전기 전도도 향상 연구 (Conductivity Improvement of Polyaniline/Nylon 6 Fabrics)

  • 오경화;성재환;김성훈
    • 폴리머
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    • 제24권5호
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    • pp.673-681
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    • 2000
  • 플라즈마 처리가 나일론 6 직물의 표면 특성과 폴리아닐린/나일론 6 복합직물의 전도도에 미치는 영향을 연구하였다. 산소 플라즈마로 처리한 나일론 6 직물의 표면을 XPS 분석을 통해 확인한 결과 C-O, C-OH 등의 관능기가 도입되었으며, 이는 직물과 폴리아닐린의 결합력을 향상시켜 전기 전도도와 폴리아닐린 부착량을 증가시켰다. 또한 산소 플라즈마로 처리된 폴리아닐린/나일론 6 복합직물은 세탁과 마모에서도 우수한 안정성을 나타내었다. 초음파 처리는 매질에 발생된 cavitation과 진동에 의해 직물 내부로 아닐린을 확산시키는데 효과적이었으며, 이는 폴리아닐린/나일론 6 복합직물의 전기 전도도를 크게 향상시켰다. 아닐린의 농도와 중합욕에 침지 휫수가 증가함에 따라 전기 전도도와 복합직물의 형태안정성에 대한 영향을 살펴보았는데, 단량체 농도는 0.5M 까지는 증가함에 따라 전도도가 향상되었으며, 침지 횟수가 증가함에 따라서도 전도도가 향상되었다.

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난기류 혼합법을 이용한 목섬유-열가소성 섬유 복합재에 관한 연구(I) - 공정변수가 복합재의 물리적 성질에 미치는 영향 - (Wood Fiber-Thermoplastic Fiber Composites by Turbulent Air Mixing Process(I) - Effects of Process Variables on the Physical Properties of Composites -)

  • 윤형운;이필우
    • Journal of the Korean Wood Science and Technology
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    • 제24권3호
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    • pp.101-109
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    • 1996
  • Effects of process variables were evaluated in physical properties of the wood fiber-thermoplastic fiber composites using nonwoven web method. Turbulent air mixer using compressed air was employed to mix wood fiber with two types of thermoplastic polypropylene and nylon 6 fibers. The optimal hot press temperature and time were found to be $190^{\circ}C$ and 9 minutes in wood fiber-polypropylene fiber composite and to be $220^{\circ}C$ and 9 minutes in wood fiber-nylon 6 fiber composite. As the density of wood fiber-polypropylene fiber composite and wood fiber-nylon 6 fiber composite increased, the physical properties were improved The density appeared to be the most significant factor on physical properties in the statistical analysis. The composition ratio of polypropylene or nylon 6 fiber to wood fiber was considered not to be statistically significant factor. The thickness swelling decreased somewhat in wood fiber-polypropylene fiber composite and wood fiber-nylon 6 fiber composite as the content of synthetic fiber increased. As the increase of mat moisture content, dimensional stability was improved in wood fiber-polypropylene fiber composite but not in wood fiber-nylon 6 fiber composite.

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나일론 6 섬유의 감량가공 및 특성 연구 (A Study on the Weight Loss Treatment and Characteristics of Nylon 6 Fiber)

  • 임성찬;이현우;이현재;원종성;진다영;이승구
    • 한국염색가공학회지
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    • 제27권3호
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    • pp.175-183
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    • 2015
  • Weight loss treatment of a fiber leads an improvement of its handle and drape properties. Hydrolysis of a fiber is commonly known as a method to reduce its weight of 5-40%. Most of the studies on the weight loss treatment are mainly based on polyester fibers and there has been almost no study on the weight reduction of nylon fibers. In this study, however, in order to develop a use of nylon 6 fiber for the industrial applications such as toothbrush, underwear, carpet and more, weight loss treatment of a nylon 6 fiber was carried out. Under various treatment conditions, morphological analysis were done to observe the change in the structure of the surface and analysis. From the observation of formic acid treated nylon 6 fiber, there were many etched and deformed morphologies. Thermal and crystalline properties were analyzed to find the changes in the crystal structure caused by the weight loss treatment. There were little differences in the crystalline properties of nylon 6 fiber by formic acid treatment. Tensile strength of nylon 6 fiber decreases with acid concentration. The FITR peak intensity of the amide bond decreases with formic acid concentration.

나일론 6의 유리 섬유 합성률이 피로 파괴 특성에 미치는 영향 (Effects of the Glass Fiber Synthetic Rate on the Characteristics of Fatigue Failure for Nylon 6)

  • 허윤경;태순호;김용수
    • 한국안전학회지
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    • 제13권4호
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    • pp.121-130
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    • 1998
  • In recent years, a number of metal machine parts, in the field of the car manufactures and electronic goods for home, have been replaced by nylon-6 in order to weight, cost, and a period of process of manufacture. It's because nylon-6 materials as an industrial material have higher economical and productive advantage than the metalic ones. However, in domestic injection manufactures, there are few data on fiber glass synthetic on nylon-6. It is said that plastic in process of manufacture using the same injection materials make their results different in large scale according to fiber glass synthetic rate conditions. In this study, we have studied effects of the glass fiber synthetic rate on the characteristics of fatigue failure for nylon-6.

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수입 NYLON망사의 장력시험과 염색후의 변화 (Strength Tests of Imported NYLON 6 and its Variation after Dying)

  • 고관서;김병태;강건희
    • 수산해양기술연구
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    • 제6권1호
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    • pp.14-22
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    • 1970
  • 국내에서 생산하고 있는 Nylon 6 망사의 원사는 대부분 일본에서 수입하여 제망해서 수출하고 있다. 그러나 우리가 수입하고 있는 원사중 어느 회사의 원사가 우수한지 또한 염색 가공후의 망사의 성질변화에 대하여서는 그다지 알려져 있지 않으며 그뿐만 아니라 같은 Nylon 6 망사라 할지라도 제조 공정에 따라 망사의 성질이 달라질 수 있으므로 저자들은 일산 Nylon6 망사를 가지고 염색전과 후의 강신도와 염색후의 수축등을 시험 비교해 보았다. 특히 망사는 수중에서 사용되기 때문에 습윤시의 인장 강도와 신장이 겁습에 비해 어떻게 변화하는가를 관찰하였다.

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난기류 혼합법을 이용한 목섬유-열가소성 섬유 복합재에 관한 연구(II) - 공정변수가 복합재의 기계적 성질에 미치는 영향 - (Wood Fiber-Thermoplastic Fiber Composites by Turbulent Air Mixing Process(II) - Effect of Process Variables on The Mechanical Properties of Composites -)

  • 윤형운;이필우
    • Journal of the Korean Wood Science and Technology
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    • 제25권3호
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    • pp.58-65
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    • 1997
  • This research was carried out to evaluate the effect of process variables on mechanical properties of the wood fiber-thermoplastic fiber composites by turbulent air mixing method. The turbulent air mixer used in this experiment was specially designed in order to mix wood fiber and thermoplastic polypropylene or nylon 6 fiber, and was highly efficient in the mixing of relatively short plastic fiber and wood fiber in a short time without any trouble. The adequate hot - pressing temperature and time in our experimental condition were $190^{\circ}C$ and 9 minutes in 90% wood fiber - 10% polypropylene fiber composite and $220^{\circ}C$ and 9 minutes in 90% wood fiber 10% nylon 6 fiber composite. Both in the wood fiber - polypropylene fiber composite and wood fiber- nylon 6 fiber composite, the mechanical properties improved with the increase of density. Statistically, the density of composite appeared to function as the most significant factor in mechanical properties. Within the 5~15% composition ratios of polypropylene or nylon 6 fiber to wood fiber, the composition ratio showed no significant effect on the mechanical properties. Bending and tensile strength of composite, however, slightly increased with the increase of synthetic fiber content. The increase of mat moisture content showed no significant improvement of mechanical properties both in wood fiber - polypropylene fiber composite and wood fiber nylon 6 fiber composite. Wood fiber - nylon 6 fiber composite was superior in th mechanical strength to wood fiber-polypropylene fiber composite, which may be related to higher melt flow index of nylon 6 fiber(22g/10min) than of polypropylene fiber(4.3g/10min).

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MWNT를 이용한 나노복합체에 대한 기초적 연구 (Basic Study on the Nonocomposites by using the MWNT(Multiwalled Nanotube))

  • 강용구;권현규;최성대;노인규
    • 한국기계가공학회지
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    • 제8권4호
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    • pp.104-109
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    • 2009
  • In this paper, polymer nanocomposites were fabricated by mixing fire-resistant and high pseudoplastic Nylon 6,6 with MWNT(Multiwalled Nanotube), which has mechanical, electrical, and heat stable properties. The experiments were performed in order to investigate their mechanical and electrical properties depending on the level of MWNT and the presence of acid treatment on Nylon 6.6. Morphology of polymer nanocomposites was observed using Scanning Electron Microscopy technique. The results indicate that the polymer nanocomposites have the best mechanical and electrical properties in the optimal conditions of Nylon 6.6 and MWNT(10wt%).

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