• 제목/요약/키워드: fiber reinforced cementitious composite

검색결과 96건 처리시간 0.021초

고인성 섬유 시멘트 복합재료를 사용한 RC보의 전단보강효과 (Shear Performance of RC Beams Using Ductile Fiber Reinforced Cementitious Composite (DFRCC))

  • 어석홍;손기민
    • 한국산학기술학회논문지
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    • 제15권9호
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    • pp.5844-5853
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    • 2014
  • 본 논문에서는 고인성 섬유 시멘트 복합재료(DFRCC)를 이용한 철근콘크리트(RC) 보의 전단파괴거동에 대한 실험적 연구결과를 제시하였다. 이를 위해 $150{\times}300{\times}1,000mm$ 크기의 보를 총 10개 제작하여 변위제어에 의한 4점휨파괴실험을 실시하였다. 주요 실험변수로는 DFRCC에 의한 보강의 유무, 보강시 그라인딩을 통한 사전 표면처리 그리고 사전 균열발생 유무를 설정하였다. 실험으로부터 재하시작 후 파괴시까지 보의 하중-처짐곡선, 전단균열 및 휨균열 발생하중 그리고 파괴시 전단강도를 측정하였다. 실험결과, DFRCC에 의한 보강시 적절한 두께와 사전 표면처리를 적절히 시행할 경우 기존 RC보의 전단강도를 약 99% 이상 효과적으로 복원할 수 있는 것으로 나타났으며, 보다 신뢰성있는 연구를 위하여 실제 노후화된 구조물에서 채취한 부재에 대한 추가적인 실험과 이론적 연구가 필요한 것으로 판단된다.

섬유조합 및 혼입율 변화에 따른 HPFRCC의 방폭성능 (The Explosion-proof Performance of HPFRCC According to Fiber Combination and Mixing Ratio)

  • 이제현;이종태;정웅선;조성준;한민철;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.88-89
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    • 2017
  • Due to the increase in the usage of explosive materials and terrorism, the interest towards the superior explosion protective HPFRCC has risen. In existing research, the optimum ratio for solving the problematic problems such as the optimum fiber incorporation rate and the self-shrinkage crack of HPFRCC had been derived. However, there had been few or even no research upon how effective HPFRCC would perform protective explosion-proof in actual explosion. Therefore, this research compared the explosion-proof performance of HPFRCC according to fiber commination and mixing ratio. As a result, the combination of steel fiber and organic fiber showed excellent flow and strength, and it also improved the explosion resistance.

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하이브리드 섬유로 보강한 고강도 경량 시멘트 복합체의 개발 (Development of Hybrid Fiber-reinforced High Strength Lightweight Cementitious Composite)

  • 방진욱;김정수;이방연;장영일;김윤용
    • Composites Research
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    • 제23권4호
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    • pp.35-43
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    • 2010
  • 이 논문의 목적은 경량 충진재와 하이브리드 섬유를 사용하여 경량성과 인장변형 성능이 우수한 섬유보강 고강도 경량 시멘트 복합체(HFSLCC)를 개발하는 것이다. 이를 위하여 마이크로역학과 다수의 미세균열이 발생하기 위한 조건인 안정상태 균열이론을 바탕으로 시멘트 매트릭스의 파괴 특성과 섬유-시멘트 매트릭스 경계 특성을 파악하여 사용재료 및 최적 혼입률을 결정하였으며, 섬유 종류와 양에 따라 4가지 배합을 결정하였다. 4가지 배합으로 제조한 실험체는 실험을 통하여 역학적 특성(직접인장, 압축강도, 단위질량)을 검증하였다. 검증 결과 4가지 배합으로 제조한 모든 섬유보강 고강도 경량 시멘트 복합체는 변형률 경화거동을 보였으며, 역학 성능은 평균 변형률 약 3.0%, 최대인장강도 약 4.2MPa, 단위질량 및 압축강도는 각각 약 $1,660kg/m^3$와 57MPa를 나타내었다. 또한 PVA섬유 1.0%와 PE섬유 0.5%를 혼입한 경우 섬유 사용량이 적으면서 2.0% 섬유가 혼입된 복합체와 유사한 성능을 나타내었다.

A numerical tension-stiffening model for ultra high strength fiber-reinforced concrete beams

  • Na, Chaekuk;Kwak, Hyo-Gyoung
    • Computers and Concrete
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    • 제8권1호
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    • pp.1-22
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    • 2011
  • A numerical model that can simulate the nonlinear behavior of ultra high strength fiber-reinforced concrete (UHSFRC) structures subject to monotonic loadings is introduced. Since engineering material properties of UHSFRC are remarkably different from those of normal strength concrete and engineered cementitious composite, classification of the mechanical characteristics related to the biaxial behavior of UHSFRC, from the designation of the basic material properties such as the uniaxial stress-strain relationship of UHSFRC to consideration of the bond stress-slip between the reinforcement and surrounding concrete with fiber, is conducted in this paper in order to make possible accurate simulation of the cracking behavior in UHSFRC structures. Based on the concept of the equivalent uniaxial strain, constitutive relationships of UHSFRC are presented in the axes of orthotropy which coincide with the principal axes of the total strain and rotate according to the loading history. This paper introduces a criterion to simulate the tension-stiffening effect on the basis of the force equilibriums, compatibility conditions, and bond stress-slip relationship in an idealized axial member and its efficiency is validated by comparison with available experimental data. Finally, the applicability of the proposed numerical model is established through correlation studies between analytical and experimental results for idealized UHSFRC beams.

분산방법에 따른 CNT를 혼입한 섬유보강 시멘트복합체의 유동성 평가 (Table Flow Evaluation of CNT-Mixed Fiber Reinforced Cement Composite by Dispersion Method)

  • 김문규;김규용;편수정;최병철;박준영;남정수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.95-96
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    • 2023
  • In this study, the table flow of fiber reinforced cement composites mixed with CNTs dispersed differently according to the dispersion method was evaluated. The mixture was composed of plain mixture according to the presence or absence of ultrasonic dispersion and PCE-based dispersants A and B of 0.5% and 1.0%, respectively, CNT was mixed with 0.03% of cement weight and fiber was mixed with 1.5% of total volume. As a result of the experiment, NC-A0.5 showed a fluidity similar to that of P without CNT. The fluidity of NC-A0.5 and P-N showed a similar tendency, which is considered to be due to the distribution of evenly dispersed CNT particles without agglomeration between cement particles due to the dispersant. NC-B0.5 showed a similar level of firmness to P-U, but after hitting 250 mm, B Agent seems to have a significant effect on liquidity improvement.Both NC-A1.0 and NC-B1.0 seem to have increased flow due to excessive dispersion.

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Effects of sulphuric acid on mechanical and durability properties of ECC confined by FRP fabrics

  • Gulsan, Mehmet Eren;Mohammedameen, Alaa;Sahmaran, Mustafa;Nis, Anil;Alzeebaree, Radhwan;Cevik, Abdulkadir
    • Advances in concrete construction
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    • 제6권2호
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    • pp.199-220
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    • 2018
  • In this study, the effects of sulphuric acid on the mechanical performance and the durability of Engineered Cementitious Composites (ECC) specimens were investigated. The carbon fiber reinforced polymer (CFRP) and basalt fiber reinforced polymer (BFRP) fabrics were used to evaluate the performances of the confined and unconfined ECC specimens under static and cyclic loading in the acidic environment. In addition, the use of CFRP and BFRP fabrics as a rehabilitation technique was also studied for the specimens exposed to the sulphuric acid environment. The polyvinyl alcohol (PVA) fiber with a fraction of 2% was used in the research. Two different PVA-ECC concretes were produced using low lime fly ash (LCFA) and high lime fly ash (HCFA) with the fly ash-to-OPC ratio of 1.2. Unwrapped PVA-ECC specimens were also produced as a reference concrete and all concrete specimens were continuously immersed in 5% sulphuric acid solution ($H_2SO_4$). The mechanical performance and the durability of specimens were evaluated by means of the visual inspection, weight change, static and cyclic loading, and failure mode. In addition, microscopic changes of the PVA-ECC specimens due to sulphuric acid attack were also assessed using scanning electron microscopy (SEM) to understand the macroscale behavior of the specimens. Results indicated that PVA-ECC specimens produced with low lime fly ash (LCFA) showed superior performance than the specimens produced with high lime fly ash (HCFA) in the acidic environment. In addition, confinement of ECC specimens with BFRP and CFRP fabrics significantly improved compressive strength, ductility, and durability of the specimens. PVA-ECC specimens wrapped with carbon FRP fabric showed better mechanical performance and durability properties than the specimens wrapped with basalt FRP fabric. Both FRP materials can be used as a rehabilitation material in the acidic environment.

Eco-friendly ductile cementitious composites (EDCC) technique for seismic upgrading of unreinforced masonry (URM) infill walls: A review of literature

  • Haider Ali, Abbas;Naida, Ademovic;Husain K., Jarallah
    • Earthquakes and Structures
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    • 제23권6호
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    • pp.527-534
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    • 2022
  • EDCC (Eco-Friendly Ductile Cementitious Composites) is a recently created class of engineered cementitious composites that exhibit extremely high ductility and elastoplastic behavior under pure tension. EDCC contains reduced amounts of cement and very large volumes of fly ash. Due to these properties, EDCC has become one of the solutions to use in seismic upgrading. This paper discloses previous studies and research that discussed the seismic upgrading of unreinforced, non-grouted, unconfined, and non-load bearing masonry walls which are called URM infill walls using the EDCC technique. URM infill wall is one of the weak links in the building structure to withstand the earthquake waves, as the brittle behavior of the URM infill walls behaves poorly during seismic events. The purpose of this study is to fill a knowledge gap about the theoretical and experimental ways to use the EDCC in URM infill walls. The findings reflect the ability of the EDCC to change the behavior from brittle to ductile to a certain percentage behavior, increasing the overall drift before collapse as it increases the energy dissipation, and resists significant shaking under extensive levels with various types and intensities.

접촉 폭발 하중을 받는 RC 슬래브의 국부 손상 및 내폭 성능 평가 (Evaluating Local Damages and Blast Resistance of RC Slabs Subjected to Contact Detonation)

  • 리령;이진영;민경환;윤영수
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권1호
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    • pp.37-45
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    • 2013
  • 본 연구에서는 다양한 RC 슬래브의 접촉 발파 실험을 수행하여 내폭 성능을 평가하였다. RC 슬래브의 내폭 성능 향상을 위해 섬유 보강과 외부 CFRP 시트 보강을 도입하였다. 폭발하중 실험은 $2,000{\times}1,000{\times}100mm$ RC 슬래브를 제작하였고, 일반 콘크리트와 강섬유 보강 콘크리트, 하이브리드 PVA 섬유 보강 시멘트 복합체, 초고성능 콘크리트를 적용하였다. 접촉 발파로 생긴 RC 슬래브의 손상 정도를 크레틀, 스폴과 브리치의 직경과 깊이로 평가하였다. 실험 결과를 LS-DYNA 유한요소해석 프로그램과 Morishita 등의 예측식으로 검증하고 비교분석하였다. 분석 결과, LS-DYNA 프로그램을 이용하여 크레틀, 스폴, 브리치의 직경 및 깊이에 대한 개략적인 예측이 가능하며, 폭발하중 하에서 손상부의 거시적 거동을 모사함으로써 부재의 파괴 이력을 나타낼 수 있었다. 국부 손상에 대한 세가지 예측식이 소개되어 있으나 경험식으로써의 한계가 존재하며, 이에 대한 추가 연구가 필요하다고 판단된다.

대각 보강된 HPFRCCs 커플링 보의 전단강도 및 설계 (Shear Strength and Design of HPFRCCs Coupling Beam with Diagonal Reinforcement)

  • 박완신;윤현도;김선우;전에스더;김용철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.257-260
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    • 2006
  • Coupled shear walls consist of two or more in-plane walls inter-connected with coupling beams. In order to effectively resist seismic loads, coupling beams must be sufficiently stiff, strong and posses a stable load-deflection hysteretic response. Much of requirements to the civil and building structures have recently been changed in accordance with the social and economic progress. Ductility of high performance fiber reinforced cementitious composites(HPFRCCs), which exhibit strain hardening and multiple crackling characteristics under the uniaxial tensile stress is drastically improved. This paper provides background for design guidelines that include a design model to calculate the shear strength of pseudo strain hardening cementitious composite steel coupling beam.

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