• Title/Summary/Keyword: 화학섬유

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섬유소 사료 연구의 또 하나의 방향

  • 박무영
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1976.04a
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    • pp.182.1-182
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    • 1976
  • 지구상에 풍부한 섬유소자원의 사료화 연구에 있어서 화학적 처리와 발효방법이 널리 채택되고 있다. 여기에 따른 문제점으로서 가축의 기호성과 생산과정의 경제성을 들 수 있다. 볏짚같은 것은 소가 잘 먹는다는 사실과 바추동물의 소화기관을 가장 경제적인 발효소로 볼 수 있다는 점에서 생체내에서의 섬유소 발효능률향상을 수단으로한 새로운 연구방향을 제의한다.

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POLICY & ISSUES 기획특집_1 - 화학물질 사고 예방 및 대응 정책방향

  • Ryu, Pil-Mu
    • Bulletin of Korea Environmental Preservation Association
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    • s.405
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    • pp.9-11
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    • 2013
  • 화학물질은 현대문명에 필수적이다. 산업용 원료, 신소재, 섬유, 의약품, 농약 등 화학물질의 사용용도는 광범위하고 그 유용성은 무궁무진하다. 하지만, 언제부터인가 화학물질 유해성(有害性)이라는 용어에 익숙해지고 있다. 화학물질은 분해에 장시간이 소요되어 인체 또는 환경에 잔류하고 장기적으로는 각종 질병을 일으키기도 한다.

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A Study on the Shear Behaviors of Geosynthetic-soil Interface in the Waste Landfill Site (폐기물 매립장 차수시설 접촉면 전단특성에 관한 연구)

  • Park, Inn-Joon;Kwak, Chang-Won;Park, Jum-Bum;Cho, Jun-Sik
    • Journal of the Korean Geotechnical Society
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    • v.28 no.3
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    • pp.45-54
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    • 2012
  • Various geosynthetics are widely applied to civil structures and waste landfill site for reinforcement and water resistance. The use of geosynthetics inevitably involves the coupled behaviors of different materials which include large displacement and strain-softening behaviors, etc. In this study, the effect of chemical element in the leachate on the interface shear strength under the cyclic loading condition was analyzed. The Multi-purpose Interface Apparatus (M-PIA) has been modified and cyclic direct shear tests have been performed. The submerging period of each specimen is 200 days. Additionally, the Field-Emission Scanning Electronic Microscopy (FIB) analysis has been also performed to induce the reason of the variation of disturbance function and verify the hypothesis on the decay-proof ability of geosynthetics. Consequently, the charateristics of chemical degradation of geosynthetic-soil interface are verified and the variation of the disturbance function is mainly caused by the different type of soil mineral decay, based on the FIB results.

Effect of the Chemical Treatment and Fiber Length of Kenaf on Physical Properties of HDPE/Kenaf/Expandable Microcapsule (HDPE/케나프/열팽창성 마이크로 캡슐의 물성에 미치는 섬유 길이 및 화학처리 영향)

  • Ku, Sun Gyo;Lee, Jong Won;Kim, Youn Cheol
    • Applied Chemistry for Engineering
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    • v.27 no.3
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    • pp.270-275
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    • 2016
  • High density polyethylene (HDPE)/kenaf fiber (KF) composites included two types of KF with different lengths were fabricated by using a twin screw extruder. A thermally expandable microcapsule (EMC) was used to form HDPE/KF. The KF lengths were 0.3 mm and 3 mm. The contents of KF and EMC were fixed at 20 wt% and 5 wt%, respectively. From FT-IR data of KF, which underwent chemical treatment, peaks around 1700 and $1300cm^{-1}$ decreased. This might be caused by the reduction of lignin and hemicellulose due to the chemical treatment of KF. Based on the specific gravity, thermal stability and tensile property, physical properties of the composites with a 3 mm fiber were good. However, if the fiber is longer, poor appearance might be caused due to the thermal degradation during processing. Thus, the adequate length of KF should be chosen to maintain the appearance and physical properties for industrial applications of HDPE/KF/EMC composites. The tensile strength for 0.3 mm fiber treated with chemicals increased slightly.

Effects of Electrochemical Oxidation of Carbon Fibers on Mechanical Interfacial Properties of Carbon Fibers-reinforced Polarized-Polypropylene Matrix Composites (전기화학적 산화처리가 탄소섬유/극성화된 폴리프로필렌 복합재의 기계적 계면 특성에 미치는 영향)

  • Kim, Hyun-Il;Choi, Woong-Ki;Oh, Sang-Yub;An, Kay-Hyeok;Kim, Byung-Joo
    • Applied Chemistry for Engineering
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    • v.24 no.5
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    • pp.476-482
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    • 2013
  • In this work, the effects of electrochemical oxidation of carbon fiber surfaces on mechanical interfacial properties of carbon fibers-reinforced polarized-polypropylene matrix composites were studied with various current densities during the treatments. Surface properties of the fibers before and after treatments were observed by SEM, AFM, XPS, and contact angle measurements. Mechanical interfacial properties of the composites were measured in terms of critical stress intensity factor ($K_{IC}$). From the results it was found that $O_{1s}$ peaks of the fiber surfaces were strengthened after electrochemical oxidation which led to the enhancement of surface free energy of the fiber, resulting in good mechanical performance of the composites. It can be concluded that electrochemical oxidation of the carbon fiber surfaces can control the interfacial adhesion between the carbon fibers and polarized-polypropylene in this composites system.

Historical Trends of Micromechanical Testing Methods for Structural Fiber Reinforced Composites to Evaluate the Interfacial Adhesion (구조용 섬유강화복합재료의 계면접착 특성 평가를 위한 미세역학시험법의 연구동향 고찰)

  • Park, Joung-Man;Kim, Jong-Hyun;Kim, Dong-Uk;Kwon, Dong-Jun
    • Journal of Adhesion and Interface
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    • v.23 no.3
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    • pp.59-69
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    • 2022
  • In composite materials, the adhesion and interfacial properties were the most important factors to obtain high performance of mechanical properties. This review paper had been focused on the micromechanical evaluation methods for the interfacial property historically. The interfacial property of fiber-reinforced composites (FRC) could be evaluated using only a single fiber and matrix via various micromechanical testing methods. Self-sensing due to the fracture behavior of FRC could be determined and discussed more critically and clearly using electro-micromechanical evaluation. In this paper, the research trends for micro-mechanical evaluation of composites was summarized, and their practical applications would be suggested in the future.

조직공학용 전기방사 나노섬유 지지체 제조방법

  • Park, Seok-Hui;Go, Ung-Hyeon;Sin, Hyeon-Jeong
    • Journal of the KSME
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    • v.55 no.11
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    • pp.34-39
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    • 2015
  • 이 글에서는 나노스케일의 직경을 갖는 섬유를 빠른 생산속도로 제작할 수 있는 전기방사공정(electrospinning process)에 대한 개요와 조직공학용 지지체(tissue engineering scaffold)로의 응용을 위한 제조방법에 대해 소개하고자 한다. 세포의 증식, 분화 등의 생물학적 활동에 기반한 조직공학 및 조직재생 분야에서는 일시적 또는 영구적으로 세포가 부착하여 생장할 수 있는 지지체(scaffold)의 활용이 필수적이다. 세포가 이상적으로 성장할 수 있는 지지체를 제작하기 위해서는 세포의 부착 특성, 화학적/물리적/구조적 성장 환경 등이 고려되어야 한다. 따라서 이상적인 세포 성장 환경을 구현하기 위해 실제 세포 주변의 미세환경(microenvironmenr)조건을 모사하는 연구가 많이 이루어지고 있다. 세포외기질(extracellular matrix)이라고 하는 나노크기의 직경을 갖는 섬유기반의 세포 주변 환경을 모사하는 방법의 하나로 전기방사 공정이 '90년대에 들어 활용되기 시작하였다. 현재까지도 전기방사를 이용하여 제작되는 나노섬유는 공정조건 및 재료를 다양하게 응용하여 조직의 물리 화학적 특성을 잘 반영할 수 있는 장점이 있어 조직공학용 지지체로서 광범위하게 활용되고 있다.

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