• Title/Summary/Keyword: 섬유종류

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Fiber Orientation and Warpage of Film Insert Molded Parts with Glass Fiber Reinforced Substrate (유리섬유가 강화된 필름 삽입 사출품의 섬유배향 및 휨)

  • Kim, Seong-Yun;Kim, Hyung-Min;Lee, Doo-Jin;Youn, Jae-Ryoun;Lee, Sung-Hee
    • Composites Research
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    • v.25 no.4
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    • pp.117-125
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    • 2012
  • Warpage of the film insert molded (FIM) part is caused by an asymmetric residual stress distribution. Asymmetric residual stress and temperature distribution is generated by the retarded heat transfer in the perpendicular direction to the attached film surface. Since warpage was not prevented by controlling injection molding conditions, glass fiber (GF) filled composites were employed as substrates for film insert molding to minimize the warpage. Distribution of short GFs was evaluated by using micro-CT equipment. Proper models for micro mechanics, anisotropic thermal expansion coefficients, and closure approximation should be selected in order to calculate fiber orientation tensor and warpage of the FIM part with the composite substrate. After six kinds of micro mechanics models, three models of the thermal expansion coefficient and five models of the closure approximation had been considered, the Mori-Tanaka model, the Rosen and Hashin model, and the third orthotropic closure approximation were selected in this study. The numerically predicted results on fiber orientation tensor and warpage were in good agreement with experimental results and effects of GF reinforcement on warpage of the FIM composite specimen were identified by the numerical results.

Pullout and Flexural Performance of Structural Synthetic Fibers by Geometry and Sectional Area Change (구조용 합성섬유의 형상 및 단면적 변호에 따른 부착 및 휨 성능)

  • Won, Jong-Pil;Back, Chul-Woo;Park, Chan-Gi;Han, Il-Yeong;Kim, Bang-Lae
    • Journal of the Korea Concrete Institute
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    • v.15 no.5
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    • pp.643-649
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    • 2003
  • The purpose of this study were evaluated to flexural and bond performance by sectional area and geometry change through bond and flexural test of a structural synthetic fiber. Six deformed structural synthetic fibers were investigated and pullout and flexural test was conducted. Included parameters is three different geometries of fiber and two of fiber sectional area. The test result shows that the cycles and amplitude of structural synthetic fiber increased, pullout load and pullout fracture energy decreased and flexural strength increased, if sectional area is same. The sectional area increased, pullout load and pullout fracture energy increased and flexural strength decreased, if cycles and amplitude of structural synthetic fiber is same. Based on test results, structural performance of the concrete could know that is influence by pullout performance of fiber as well as various factor (fiber number, material properties etc).

Effect of Phosphorous-Based Flame Retardants on the Weight, Diameter, and Thermal Stability after Stabilization Processes of Rayon Fibers for Carbon Fibers (탄소섬유용 레이온섬유의 안정화공정 후 중량, 직경 및 열안정성에 미치는 인계 난연제의 영향)

  • Yoon Sung Bong;Cho Donghwan;Park Jong Kyoo
    • Polymer(Korea)
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    • v.29 no.2
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    • pp.211-215
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    • 2005
  • Stabilization process is absolutely necessary to convert the precursor fibers into chemically, physically, thermally and structurally stable carbon fibers. Especially, it is critically important for rayon fibers experiencing severe weight loss and thermal shrinkage occurring at the stabilization stage below $400^{\circ}C$. The stabilization of rayon fibers strongly depends not only on stabilization temperature but also on heating rate, chemical pre-treatment, atmosphere, and so on. In the present study, the weight loss, fiber diameter change occurred in the furnace during the stabilization process for rayon fibers produced with various heating rates and in the absence and presence of phosphorous-based flame retardants and the thermal stability of the stabilized fibers were investigated. The result indicates that the weight, diameter and thermal stability of the rayon fibers are significantly affected by the type and amount of the flame retardant used. It is also suggested that the pre-treatment of rayon fibers with a concentration lower than $3\;vol\%$ of phosphoric acid is most desirable for further carbonization process of stabilized rayon fibers.

Impact Resistance Properties of High Strength Fiber-Reinforced Composites According to Types and Amounts of Fibers (섬유 종류 및 혼입량에 따른 고강도 섬유보강 복합재료의 충돌 저항 성능)

  • Choi, Jeong-Il;Park, Se-Eon;Kim, Gyu-Yong;Lee, Sang-Kyu;Lee, Bang Yeon
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.8 no.3
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    • pp.349-355
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    • 2020
  • The purpose of this study is to investigate the effects of types and amounts of fibers on the compressive strength and tensile behavior high strength fiber-reinforced composites under a static load and impact resistance properties of composites under a high-velocity projectile impact load. Three kinds of mixtures were designed and specimens were manufactured. compressive strength, uniaxial tension, and high velocity projectile impact load tests were performed. Test results showed that the amount of fiber has a greater effect on the tensile strength an d tensile strain capacity than the compressive strength, an d the tensile strain capacity was improved by using hybrid fibers. It was also found that the amount of steel fiber had a great influence on the impact resistance capacity of panels. Although the impact resistance capacity of panels could be improved by using hybrid fibers, the difference of impact resistance capacity between specimens was found to be larger than the case of use of single fiber.

Evaluation of the Basic Properties of Concrete with Types of Cellulose Fibers (셀룰로오스 섬유 종류에 따른 콘크리트의 기초 물성 평가에 관한 연구)

  • Park, Yong-Kyu;Lee, Joo-Hun;Jeon, In-Ki;Kim, Hyun-Woo;Yoon, Ki-Woon
    • Journal of the Korea Institute of Building Construction
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    • v.11 no.5
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    • pp.419-425
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    • 2011
  • Topping concrete that is not reinforced with rebar to prevent poor tensile performance is vulnerable to cracking. In this study, jute, which is known to be an excellent natural fiber material for strengthening concrete performance, was compared with other cellulose fibers in terms of its capacity to reduce the cracking of concrete. As a result, it was found that compared with concrete using other fibers, concrete using jute fiber showed more than a 50 % reduction of plastic shrinkage crack resistance with the contents of 0.9 kg/$m^3$ and 1.2 kg/$m^3$ for. For impact strength tests, the final destruction of WF and PULP fibers took up to 5 times the number of falls, while jute has 10-18 circuitry, showing excellent ductility properties.

보호기능이 향상된 지오컴포지트의 제조 및 물성

  • 전한용;정진희;김소영;최윤희;김홍관
    • Proceedings of the Korean Fiber Society Conference
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    • 1998.04a
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    • pp.156-159
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    • 1998
  • 토목섬유는 목적에 따라 보강, 필터, 차수, 분리등의 기능으로 널리 사용되고 있으며 최근에는 한가지 기능을 강화하거나 다기능성을 부여하기 위해 복합화한 재료들이 사용되고 있다. 현재 토목섬유는 여러종류의 관련제품이 개발되어 상품화되고 있으나 널리 사용되고 있는 품목은 가정용ㆍ산업용 폐기물 매립시 발생되는 침출수 차단 목적과 연약지반의 지지력 보강, 부등침하방지에 의한 지반보호, 흙 댐, 터널 건설 등에 이용되는 지오멤브레인과 세립토ㆍ자갈ㆍ돌덩어리ㆍ블럭등의 혼합을 막아주는 분리기능, 자체의 인장강도에 의해 흙 구조 물의 안정성을 증가시키는 보호기능을 갖는 지오텍스타일이 있다.(중략)

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중질유로부터 캐패시터 전극 소재용 탄소섬유의 제조 및 특성

  • 최영옥;양갑승;김종휘;안계혁;윤성호;원호연
    • Proceedings of the Korean Fiber Society Conference
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    • 1998.10a
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    • pp.512-516
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    • 1998
  • 탄소재료는 높은 전기전도도 및 기계적 강도, 화학적 안정성, 큰 비표면적(1000~3000$m^2$/g) 등의 특성 때문에 연료전지, 리튬이온 이차전지, 전기 이중층 캐패시터(electric double layer capacitor, EDLC).의 전극 활물질로 주목받고 있다[1]. 탄소섬유는 보통 특성과 전구체 핏치에 따라서 두 가지 종류로 분류된다[2]. 하나는 메조페이스 핏치로부터 제조된 고성능 탄소섬유(HPCF)이다. (중략)

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탄소/나일론 커버드사를 이용한 열가소성 복합재료의 제조와 특성 연구

  • 남상열;홍영기;이승구;이재달;배기서
    • Proceedings of the Korean Fiber Society Conference
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    • 1998.10a
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    • pp.422-425
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    • 1998
  • 섬유강화 복합재료는 고성능 섬유와 고분자 수지를 조합하여 재료의 물성 향상 및 고기능화를 목적으로 만들어지는 재료이며, 사용되는 고분자 매트릭스의 종류에 따라 열가소성 복합재료와 열경화성 복합재료로 나뉘어진다. 이 중 열경화성 복합재료에 관한 연구 및 그의 실용화는 오래 전부터 활발히 진행되어 산업재료 및 군사, 우주용 재료로 각광을 받아 왔으나 최근 지구 환경문제가 심각해지면서 사용 후 분해 및 재활용이 가능한 열가소성 복합재료에 관한 연구에 관심을 가지게 되었다. (중략)

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A Study on the Resin Flow through Fibrous Preform in Resin Transfer Molding Process (수지이동 성형공정에서 섬유직조내의 수지유동에 관한 연구)

  • 김성우
    • The Korean Journal of Rheology
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    • v.5 no.1
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    • pp.85-92
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    • 1993
  • 수지이동 성형공정에서 수지가 섬유직조망에 함침될 때의 투과계수와 수지의 표면 장력으로 인하여 유동진전면에서 발생하는 모세관압을 실험적으로 측정하였다. 두 종류의 섬유조직망에 대해서 가공율이 증가함에 따라투과계수는 증가한다. 수지, 섬유 그리고 공기 가 서로 다른 세 개의 상을 구성함으로써 수지의 표면장력의 영향을 받는 비정상상태의 투 과계수가 수지의 섬유직조망에 포화된 정상상태에서 측정된 투과계수보다 본 실험에서 수행 된 모든 기공을 범위에서 크다는 것을 보여주었다. 수지 유동진전면에서 발생되는 모세관압 은 기공율이 감소함에 따라 증가하였고 섬유직 조망의 기공율이 0.469인 경우에는 금형입구 에서의 수지주입압력의 25%에 해당되는 모세관압이 발생되는 것으로 나타났다. 따라서 모 세관압을 가공조건으로 고려해다 한다는 것을 제시할수 있었다. 또한 본연구에서 사용된 임 의 배향 섬유직조망에 대해 실리콘 오일과 유리섬유 계면의 동적접촉각 측정을 통하여 섬유 배향 및 기공의 분포를 나타내는 형상인자의 값을 구함으로써 실제 RTM 공정에서 발생되 는 모세관압을 예측할 수 dLT는 기초자료를 제시하였다.

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Effect of Fiber Type and Combination on the Reinforcement of Heat Polymerized Denture Base Resin (섬유의 종류와 조합이 열중합 의치상 레진의 강화에 미치는 영향)

  • Yu, Sang-Hui;Kim, Young-Im
    • Journal of dental hygiene science
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    • v.10 no.6
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    • pp.445-450
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    • 2010
  • The aim of this study was to evaluate the effect according to the fiber type and combination on the reinforcement of heat-polymerized denture base resin. The heat-polymerized resin(Vertex RS, Dentimax, Netherlands) was used in this study. Glass fiber(GL; ER 270FW, Hankuk Fiber Glass, Korea), polyaromatic polyamide fiber(PA; aramid; Kevlar-49, Dupont, U.S.A.) and ultra high molecular weight polyethylene fiber(PE, polyethylene; P.E, Dong Yang Rope, Korea) were used to reinforce the denture base resin specimens. The final size of test specimen was $64mm{\times}10mm{\times}3.3mm$. The specimens of each group were stored in distilled water at $37^{\circ}C$ for 50 hours before measurement. The flexural strength and flexural modulus were measured by an universal testing machine(Z020, Zwick, Germany) at a crosshead speed of 5 mm/min in a three-point bending mode. In this study, all fibers showed reinforcing effects on denture base resin(p<0.05). In terms of flexural strength and flexural modulus, glass fiber 5.3 vol.% showed most effective reinforcing effect on heat polymerized denture base resin. For flexural modulus, PA/GL was the highest in denture base resin specimen for hybrid FRC using two combination (p<0.05). Glass fiber 5.3 vol.% and PA/GL are considered to be applied effectively in reinforcing the heat polymerized denture base resin.