• Title/Summary/Keyword: pp fiber

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A study of composite material using Fiber wastes (섬유 폐기물을 이용한 복합소재 연구)

  • Lee, Sang-Cheol;Sin, Eun-Cheol;Kim, Won-Ju;Park, Su-Min
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.10a
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    • pp.17-18
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    • 2008
  • 접착물질인 PP(Polypropylene)가 함유되지 않은 섬유 폐기물을 Niagara beater을 이용한 습식 분쇄하여 판상형태의 Sheet에 접착물질인 KSL 103과 KSL 203을 물과 1:1로 혼합사용 분무한 제품의 경우가 굴곡휨강도, 인열강도가 우수하였고, PP의 사용의 배제로 Press시의 온도를 $180^{\circ}C$에서 $130^{\circ}C$로 낮추어 작업이 가능하고 Texon에서 부여하기 힘든 굴곡휨강도와 굴곡강도가 우수한 결과를 나타내었다.

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Development of Geogrid made with High Modulus & Low Elongation Fiber Glass (고 모듈러스.저신도 유리섬유를 이용한 지오그리드 개발)

  • 김갑진;김유겸;조항원;이종순;강승문
    • Proceedings of the Korean Fiber Society Conference
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    • 2001.10a
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    • pp.95-99
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    • 2001
  • 토목섬유 (Geosynthetics) 중에서 사면, 옹벽 및 도로 보강을 위하여 사용되는 지오그리드는 고강력의 강도 및 적절한 신도가 필요하다. PP 또는 HDPE 의 지오그리드 등도 사용되고 있으나 creep성이 커서 장기적인 보강을 위해서는 사용에 제약을 받기도 하며, 열에 의한 변형이 쉬워 도로 시공시 변형이 발생할 수도 있다. (중략)

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Flexural Performance of Cement Treated Clay-Sand Mixtures Reinforced with Synthetic Fibers (합성섬유로 보강된 시멘트-점토-모래 혼합토의 휨성능 평가에 관한 연구)

  • Jung, Du-Hwoe;Cho, Baik-Soon;Lee, Yong-Yun
    • Journal of the Korean Geosynthetics Society
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    • v.16 no.1
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    • pp.19-29
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    • 2017
  • The effects of synthetic fibers, cement content, and sand content on the flexural performance of cement-clay-sand mixtures has been evaluated through a flexural performance test with a third-point loading. Beam specimens for the flexural performance test were fabricated with a various amount of cement, sand, and synthetic fibers. Two types of fibers, PVA (Polyvinyl alcohol) and PP (Polypropylene) fibers, were employed in the test. The test results have exhibited that the factors considered in the test have significant effects on the flexural performance of the mixtures in several aspects. The flexural performance of the mixtures has been improved if the mixtures were reinforced with synthetic fibers. The flexural strength and the flexural toughness of the mixtures has been increased as the fiber content was increased. A multiple linear regression analysis has been performed to evaluate the effect of fiber content, cement dosage, and sand content on the flexural performance of the mixtures in terms of flexural strength and flexural toughness. Cement content and sand content were estimated as important factors to have an influence on the first-crack strength and the peak strength whereas the fiber content has the most significant influence on the post-crack behavior. The first-crack strength and the ultimate strength were increased as the cement content and the sand content were increased. As the fiber content was increased, the flexural toughness was increased.

Relations between Physical Parameters and Improvement of Mechanical Properties in Jute Fiber Green Composites by Maleic Anhydride Coupler (Jute fiber Green Composite의 커플링제에 의한 물리적 인자의 변화와 기계적 특성 향상)

  • Lee, Jung-H.;Byun, Joon-H.;Kim, Byung-S.;Park, Joung-M.;Hwang, Byung-S.
    • Composites Research
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    • v.20 no.1
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    • pp.23-31
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    • 2007
  • In order to improve the mechanical properties of jute fiber/polypropylene(PP) composites, the property change with the addition of a coupling agent, maleic anhydride polypropylene(MAPP) was examined experimentally. The maleated coupler acts as an intermediate to chemically connect the polar nature of the fiber and non-polar nature of the polyolefin polymer resin. Furthermore, the decrease in viscosity of the resin which results from the melting point reduction by the MAPP, leads to an increase of contact area with the fiber interface. We discussed the improvement of the PP composite blend of the maleated coupler with the 80mm jute long fiber mat in conjunction with the change of physical parameters in the thermoplastic resin. We confirmed the extent of contribution to the mechanical physical enhancement by using the following parameters: melting flow index(MI) and viscosity, contact angle, thickness of the composite, interfacial shear strength and morphology observation etc. Especially it was observed that the MI and viscosity, MAPP mixture had a very strong relationship with the tensile and flexural strength and modulus, and interfacial shear strength(IFSS).

Development of Multi-functional Polymer Adsorbent for Purifying the Environmental Pollutants by Photoinduced Graft Polymerization (II) - Adsorption Property of Uranium on the PP-g-AA Nonwoven (광그라프팅법을 이용한 다기능성 환경오염 정화용 고분자 흡착제의 개발 (II) - PP-g-AA 부직포의 우라늄 흡착특성)

  • 박현주;나춘기;김상률
    • Proceedings of the Korean Fiber Society Conference
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    • 2002.04a
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    • pp.344-346
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    • 2002
  • 그라프트중합법은 고분자막이나 직포, 부직포, 합성지 등에 기존 소재의 특성을 손상하지 않고 여러 가지 기능을 가진 관능기를 부여할 수 있다는 점에서 각종 섬유 및 범용성 고분자 소재의 개질 및 특성부여 방법으로 이용되고 있다[1,2,3]. 광조사에 의한 그라프트 중합법은 빛의 침투가 약하고 활성점이 균일하게 형성되지 못한다는 단점이 있으나 그 취급의 용이성 및 안전성, 설비의 경제성 및 실용성이 높을 뿐만 아니라 원재료의 물성을 크게 손상시키지 않으면서 특정 단량체를 그 표면에 도입시킬수 있어 섬유 및 고분자 재료의 표면성질이나 친수성 개선뿐만 아니라 역삼투성 및 이온선택투과성과 같은 기능성의 부여 등에도 적용 가능함이 확인되었다[4]. (중략)

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Hydrophilic Modification of Polypropylene Hollow Fiber Membrane by Dip Coating, UV Irradiation and Plasma Treatment

  • Kim Hyun-Il;Kim Jin Ho;Kim Sung Soo
    • Korean Membrane Journal
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    • v.7 no.1
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    • pp.19-27
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    • 2005
  • PP hollow fiber membrane was hydrophilized by EVOH dip coating followed by low temperature plasma treatment and UV irradiation. EVOH coating attained high water flux without any prewetting but its stability did not guaranteed at high water permeation rate. At high water permeation rate, water flux declined gradually due to swelling and delamination of the EVOH coating layer causing pore blocking effect. However, plasma treatment reduces the swelling, which suppress delamination of the EVOH coating layer from PP support result in relieving the flux decline. Also, UV irradiation helped the crosslinking of the EVOH coating layer to enhance the performance at low water permeation rate. FT-IR and ESCA analyses reveal that EVOH dip coating performed homogeneously through not only membrane surface but also matrix. Thermogram of EVOH film modified plasma treatment and W irradiation show that crosslinking density of EVOH layer increased. Chemical modification by plasma treatment and UV irradiation stabilized the hydrophilic coating layer to increase the critical flux of the submerged membrane.

Structure -Properties Relations of Polypropylene/ Liquid Crystalline Polymer Blends

  • Sahoo, N.G.;Das, C.K.;Jeong, Hye-Won;Ha, Chang-Sik
    • Macromolecular Research
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    • v.11 no.4
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    • pp.224-230
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    • 2003
  • The blends of polypropylene (PP) with glass filled thermotropic liquid crystalline polymer (LCP-g) have been prepared by melt mixing techniques at different blend ratios. The thermal, dynamic mechanical, crystalline and morphological characteristics of these blends were investigated. Higher percent crystallinity was observed for 10% level of LCP-g in the blend in comparison to that of other blend ratios. The thermal stability increased with LCP-g concentration in the blend with PP. The variation of storage modulus, stiffness and loss modulus as a function of blend ratios suggested the phase inversion at the 50% level of LCP-g in the blend. The scanning electron microscopy (SEM) photographs showed the creation of voids and destruction of the fiber structures during the dynamic mechanical measurements. Processing behavior of the blends depended on the fiber forming characteristics of LCP-g, which again varied with the molding temperatures.

Properties of Fire Endurance of High Performance RC Column by Loaded Heating Test (고성능 RC 기둥의 재하가열시험에 의한 내화 특성)

  • Kim Kyung Min;Kim Ki Hoon;Hwang Yin Seong;Lee Jae Sam;Lee Seong-Yeun;Han Cheon Goo
    • Proceedings of the Korea Concrete Institute Conference
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    • 2005.05b
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    • pp.57-60
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    • 2005
  • This study discusses spalling and fire enduring performance of high performance concrete (HPC) RC column subjected to loading under heating for 3 hours. According to the test, both the plain concrete and the concrete attached with fire enduring PC panel exceed allowable temperature after 60 minutes due to the exposure of steel bar and falling off of concrete resulting from severe spalling failure. It leads to buckling of main bar and at the same time, occurrence of collapse of plain HPC column member is observed after 2 hours and 1 hour 40 minutes's exposure to fire, respectively. On the other hand, HPC applying both PP fiber of 0.1$\%$ by mass of concrete and PP fiber+lateral confinement by metal lath maintains their original cross section, which is satisfied with the 3 hours fire endurance criteria, by discharging internal vapour pressure and enhanced lateral confinement force.

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Influence Evaluation of Fiber on the Bond Behavior of GFRP Bars Embedded in Fiber Reinforced Concrete (섬유보강 콘크리트에 묻힌 GFRP 보강근의 부착거동에 대한 섬유영향 평가)

  • Kang, Ji-Eun;Kim, Byoung-Ill;Park, Ji-Sun;Lee, Jung-Yoon
    • Journal of the Korea Concrete Institute
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    • v.24 no.1
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    • pp.79-86
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    • 2012
  • Though steel reinforcing bars are the most widely used tensile reinforcement, corrosion problems are encountered due to the exposure to aggressive environments. As an alternative material to steel, the fiber reinforced polymers have been used as reinforcement in concrete structures. However, bond strength of FRP rebar is relatively low compared to steel rebar. It has been reported that fibers in matrix can resist crack growth, propagation and finally result in an increase of toughness. In this study, high-strength concrete reinforced with structural fibers was produced to enhance interfacial bond behavior between FRP rebar and concrete matrix. The interfacial bond-behaviors were investigated from a direct pullout test. The test variables were surface conditions of GFRP bars and fiber types. Total of 54 pullout specimens with three different types of bars were cast for bond strength tests. The bond strength-slip responses and resistance of the bond failure were evaluated. The test results showed that the bond strength and toughness increased according to the increased fiber volume.