• 제목/요약/키워드: high performance fiber reinforced cement composites

검색결과 42건 처리시간 0.027초

HPFRCC 및 ERCO를 활용한 지뢰매설호 현장적용 (Field Application of Land Mine Crater using HPFRCC and ERCO)

  • 이제현;이종태;정웅선;조성준;한민철;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.90-91
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    • 2017
  • Military camps deal with various types of explosives. For instance, military engineering unit conducts education and training for laying landmines. However, in case of land mine craters installed with regular-level RC, structural safety may be in danger thus there is a necessity to utilize High Performance Fiber-Reinforced Cement Composites (HPFRCC), which has high functionality in protection and blast resistance. Therefore, in this research we conducted an field application of land mine crater of HPFRCC, using the existing optimal fiber mixing ratio and ERCO addition ratio.

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고인성 섬유보강 복합체 내에서 폴리프로필렌 섬유의 계면 부착성능 (Interfacial Properties of Polypropylene Fiber in High Performance Fiber Reinforced Cement Composites)

  • 한병찬;전에스더;박완신;이영석;복산양;윤현도
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.108-111
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    • 2004
  • The polypropylene(PP) fiber is poised as a low cost alternative for reinforcement in structural applications in comparison with other high performance fibers, such as the polyvinyl-alcohol(PVA), polyethylene, carbon and aramid fiber. The mechanical properties of the composite are strongly determined by the interfacial behavior of fiber and cementitious matrix. The crack bridging mechanism contribute to composite toughness from activation of the fiber-matrix interface where energy is dissipated through debonding of the interface and fiber pullout. In this study, therefore, the pullout behavior of PP fibers is investigated. Experimental work includes the investigation of the interfacial properties, and the composite property. The quantification of interfacial properties, the frictional bond is achieved through single fiber pullout test. A study on the effect of inclination angle on fiber pullout behavior is also conducted.

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Multiple effects of nano-silica on the pseudo-strain-hardening behavior of fiber-reinforced cementitious composites

  • Hossein Karimpour;Moosa Mazloom
    • Advances in nano research
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    • 제15권5호
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    • pp.467-484
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    • 2023
  • Despite the significant features of fiber-reinforced cementitious composites (FRCCs), including better mechanical, fractural, and durability performance, their high content of cement has restricted their use in the construction industry. Although ground granulated blast furnace slag (GGBFS) is considered the main supplementary cementitious material, its slow pozzolanic reaction stands against its application. The addition of nano-sized mineral modifiers, including nano-silica (NS), is an alternative to address the drawbacks of using GGBFS. The main object of this empirical and numerical research is to examine the effect of NS on the strain-hardening behavior of cementitious composites; ten mixes were designed, and five levels of NS were considered. This study proposes a new method, using a four-point bending test to assess the use of nano-silica (NS) on the flexural behavior, first cracking strength, fracture energy, and micromechanical parameters including interfacial friction bond strength and maximum bridging stress. Digital image correlation (DIC) was used for monitoring the initiation and propagation of the cracks. In addition, to attain a deep comprehension of fiber/matrix interaction, scanning electron microscope (SEM) analysis was used. It was discovered that using nano-silica (NS) in cementitious materials results in an enhancement in the matrix toughness, which prevents multiple cracking and, therefore, strain-hardening. In addition, adding NS enhanced the interfacial transition zone between matrix and fiber, leading to a higher interfacial friction bond strength, which helps multiple cracking in the composite due to the hydrophobic nature of polypropylene (PP) fibers. The findings of this research provide insight into finding the optimum percent of NS in which both ductility and high tensile strength of the composites would be satisfied. As a concluding remark, a new criterion is proposed, showing that the optimum value of nano-silica is 2%. The findings and proposed method of this study can facilitate the design and utilization of green cementitious composites in structures.

고인성 섬유보강 시멘트 복합체의 휨인성 성능 및 평가 (Performance and Evaluation of Flexural Toughness Indices for HPFRCCs)

  • 한병찬;양일승;박완신;전에스더;김선우;윤현도
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.615-618
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    • 2004
  • The primary role of fibers in High performance fiber reinforced cement composites(HPFRCCs) is to improve the toughness, or energy absorption capacity, of the composite material, However, there is still no general agreement as to how this toughness should be characterized, or how it might be used in the design of structures containing HPFRCCs. In this paper, therefore, we focus on test techniques for measuring flexural toughness. For mechanical properties, HPFRCCs can be tested in the same way as fiber reinforced concrete(FRC). Both the significance and the limitations of somewhat different national and industrial standards of FRC are discussed. For flexural toughness, with depend on the presence of fibers, new test methods was developed and verified. We also suggest evaluation method of tensile toughness indices using the moment curvature relationship in flexural tests.

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높은 연성을 갖는 고강도 시멘트계 복합체의 재료강도 및 변형성능 (Material Strength and Deformation Performance of Highly Ductile High-Strength Cement Composite)

  • 최정일;이방연;김윤용
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권1호
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    • pp.51-58
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    • 2020
  • 이 논문의 목적은 다른 종류의 폴리에틸렌 섬유로 보강한 높은 연성을 갖는 고강도 시멘트계 복합체의 재료강도와 인장변형거동을 실험적으로 연구하는 것이다. 이를 위하여 압축강도 80 MPa 수준의 재료 및 배합을 결정하였고, 보강 섬유로서 2 종류의 폴리에틸렌 섬유를 사용하였다. 그리고 밀도, 압축강도, 1축 인장변형에 대한 일련의 실험을 수행하였다. 실험결과 시멘트계 복합체의 인장거동과 균열 패턴은 보강 섬유의 특성에 크게 영향을 받는 것으로 나타났다. 또한 적절한 폴리에틸렌 섬유를 사용함으로써 재료의 압축강도가 77.7 MPa 이고, 인장변형성능이 7.9% 변형률인 시멘트계 복합체의 제조가 가능하다는 것을 확인하였다.

Effects of Matrix Ductility on the Shear Performance of Precast Reinforced HPFRCC Coupling Beams

  • Yun Hyun-Do;Kim Sun-Woo;Jeon Esther;Park Wan Shin
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 추계 학술발표회 제17권2호
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    • pp.53-56
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    • 2005
  • This paper investigates the effect of ductile deformation behavior of high performance hybrid fiber-reinforced cement composites (HPHFRCCs) on the shear behavior of coupling beams to lateral load reversals. The matrix ductility and the reinforcement layout were the main variables of the tests. Three short coupling beams with two different reinforcement arrangements and matrixes were tested. They were subjected to cyclic loading by a suitable experimental setup. All specimens were characterized by a shear span-depth ratio of 1.0. The reinforcement layouts consisted of a classical scheme and diagonal scheme without confining ties. The effects of matrix ductility on deflections, strains, crack widths, crack patterns, failure modes, and ultimate shear load of coupling beams have been examined. The combination of a ductile cementitious matrix and steel reinforcement is found to result in improved energy dissipation capacity, simplification of reinforcement details, and damage-tolerant inelastic deformation behavior. Test results showed that the HPFRCC coupling beams behaved better than normal reinforced concrete control beams. These results were produced by HPHFRCC's tensile deformation capacity, damage tolerance and tensile strength.

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고속 비상체 충돌에 대한 고성능 섬유보강 시멘트 복합체의 방호성능 평가 (Evaluation of impact resistance of high performance fiber reinforced cementitious composites under high-speed projectile crash)

  • 문재흠;박정준;박기준;조현우;김성욱;이장화
    • 한국산학기술학회논문지
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    • 제16권7호
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    • pp.4950-4959
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    • 2015
  • 공공시설물의 대형화 및 도심지로의 인구 밀집화에 따라 충돌 또는 폭발과 같은 하중조건 하에서의 구조물 방호성능의 중요성이 대두되고 있다. 그러나, 구조물의 방호설계 및 시공에 있어서 필수적이라 할 수 있는 구조재료 또는 자재에 대한 기술개발은 제대로 이루어지고 있지 않은 실정이다. 이에, 본 연구에서는 고성능 섬유보강 시멘트 복합재로의 기본적인 방호성능 및 방호용 자재로서의 적용 가능성을 파악하고자 40 mm 가스건을 사용한 충격 파괴시험을 수행하였다. 실험 수행 결과, 고성능 섬유보강 시멘트 복합재료에 있어서 시멘트 매트릭스의 강도 및 보강섬유가 방호성능 향상에 도움이 됨을 확인할 수 있었다.

석회석 미분말을 혼입한 시멘트계 매트릭스 섬유복합재료의 설계 및 구조부재의 휨성능 (Design of Fiber Reinforced Cement Matrix Composite Produced with Limestone Powder and Flexural Performance of Structural Members)

  • 현정환;김윤용
    • Composites Research
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    • 제29권6호
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    • pp.328-335
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    • 2016
  • 이 연구의 목적은 석회석 미분말을 사용하여 복합재료의 연성이 향상된 시멘트계 매트릭스 섬유복합재료(ECC)를 개발하고 이 재료로 제작된 구조부재의 휨성능을 평가하는 것이다. 재료 개발을 위하여 4가지 종류의 배합을 마이크로역학과 안정상태 균열 이론을 활용하였고, 이를 위하여 시멘트계 매트릭스의 파괴인성과 섬유-시멘트 매트릭스 경계면 특성을 파악하였다. 개발된 ECC의 1축 인장변형특성과 압축강도 특성이 실험적으로 평가되었다. 또한, 2개의 구조부재를 제작하여 휨실험을 수행하였고 그 결과를 재래식 콘크리트 구조부재의 성능과 비교하였다. 재료실험 결과로 석회석 미분말의 혼입률 증가에 따라 압축강도는 감소하지만 연성은 증가하였다. 부재 실험 결과, ECC 구조부재는 재래식 콘크리트 구조부재에 비하여 높은 휨연성, 높은 휨내력, 작은 균열폭을 나타내었다.

Mechanical behavior test and analysis of HEH sandwich external wall panel

  • Wu, Xiangguo;Zhang, Xuesen;Tao, Xiaokun;Yang, Ming;Yu, Qun;Qiu, Faqiang
    • Advances in concrete construction
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    • 제13권 2호
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    • pp.153-162
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    • 2022
  • Prefabricated exterior wall panel is the main non-load-bearing component of assembly building, which affects the comprehensive performance of thermal insulation and durability of the building. It is of great significance to develop new prefabricated exterior wall panel with durable and lightweight characteristics for the development of energy-saving and assembly building. In the prefabricated sandwich insulation hanging wall panel, the selection of material for the outer layer and the arrangement of the connector of the inner and outer wall layers affect the mechanical performance and durability of the wall panels. In this paper, high performance cement-based composites (HPFRC) are used in the outer layer of the new type wall panel. FRP bars are used as the interface connector. Through experiments and analysis, the influence of the arrangement of connectors on the mechanical behaviors of thin-walled composite wall panel and the panel with window openings under two working conditions are investigated. The failure modes and the role of connectors of thin-walled composite wallboard are analyzed. The influence of the thickness of the wall layer and their combination on the strain growth of the control section, the initial crack resistance, the ultimate bearing capacity and the deformation of the wall panels are analyzed. The research work provides a technical reference for the engineering design of the light-weight thin-walled and durable composite sandwich wall panel.

팽창재와 수축저감제를 사용한 HPFRCC의 수축 저감 성능 (Shrinkage Reduction Performance of HPFRCC Using Expansive and Srhinkage Reducing Admixtures)

  • 박정준;문재흠;박준형;이장화;김성욱
    • 한국구조물진단유지관리공학회 논문집
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    • 제18권5호
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    • pp.34-40
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    • 2014
  • HPFRCC는 물-결합재비 (W/B)가 20%로 상당히 낮고 굵은 골재를 사용하지 않으며, 고분말 혼화재료를 혼입하기 때문에 자기수축이 상당히 크게 발생하여 구조물 적용 시 균열저감대책이 필요하다. 따라서 이 연구에서는 HPFRCC의 수축을 효율적으로 저감시키기 위한 방법으로 수축저감제와 팽창재의 사용을 검토하기 위하여 이들의 단독 또는 병행 혼입률에 따른 역학적 특성과 구속 수축특성을 평가하였다. 구속수축 실험 중에서 링-테스트 (Ring-test)를 통하여 HPFRCC에 사용되는 시멘트에 대하여 중량비로 수축저감제 1%와 팽창재를 7.5%를 병행 사용하였을 경우 압축강도와 인장강도가 크게 저하되지 않으면서도 수축을 가장 효율적으로 저감시킬 수 있는 최적 배합임을 도출하였고 수정된 건조수축 균열실험을 통하여 이를 검증하였다.