• 제목/요약/키워드: Steel Fiber(SF)

검색결과 28건 처리시간 0.029초

강섬유가 혼입된 고유동 자기충전 콘크리트의 유동 및 강도 특성 (Flowability and Strength Properties of High Flowing Self-Compacting Concrete with Steel Fiber Reinforced)

  • 최연왕;최욱;정재권;안태호
    • 한국구조물진단유지관리공학회 논문집
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    • 제13권1호통권53호
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    • pp.161-168
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    • 2009
  • 본 연구에서는 강섬유보강 콘크리트의 시공성 및 품질향상 방안의 일환으로 고유동 자기충전 콘크리트(HSCC)에 형상비 및 길이를 달리한 강섬유(SF)를 혼입한 콘크리트를 제조하여 강섬유보강 일반콘크리트(CC)와 유동 및 강도 특성을 비교 검토하였다. 실험결과 SF를 혼입한 HSCC는 높은 유동성 및 점성의 영향으로 SF 자체의 뭉침현상이 발생하지 않아 강섬유보강 CC의 경우보다 유동성능 및 통과성능이 크게 향상 되었으며, 동일한 압축강도 범위에서 SF를 혼입하지 않은 HSCC의 경우보다 쪼갬 및 휨강도는 SF의 형상비와 관계없이 길이가 길어질수록 증가하는 경향이 나타났다. 이상의 실험결과를 통하여 강섬유를 혼입한 HSCC를 현장 적용할 경우 기존에 사용되고 있는 강섬유보강 CC의 경우보다 시공성 및 품질 향상이 가능할 것으로 판단된다.

강섬유로 보강된 반응성 분체 콘크리트의 부착특성과 쪼갬인장강도 (Bond Characteristics and Splitting Bond Stress on Steel Fiber Reinforced Reactive Powder Concrete)

  • 최현기;배백일;최창식
    • 콘크리트학회논문집
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    • 제26권5호
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    • pp.651-660
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    • 2014
  • 강섬유로 보강되어 SF-RPC (Steel-Fiber reinforced Reactive Powder Concrete)로 불리는 초고성능 콘크리트의 설계는 이에 대한 연구결과를 기반으로 한 가이드라인을 통해 수행되고 있으나, 명확한 설계기준은 확립되지 않은 상태이다. 특히 SF-RPC 일반적으로 고온($90^{\circ}C$)의 증기양생을 필요로 하므로 프리캐스트 부재 형태로 사용되고 있어 부재간 접합 방법이 중요한 설계 요소로 간주됨에도 불구하고 명확한 설계기준이 존재하지 않음에 따라 현재 안전성 및 경제성 측면에서 많은 의문이 있는 상태이다. 본 연구에서는 SF-RPC의 명확한 정착 설계를 위한 기반으로 SF-RPC와 철근 사이의 부착강도를 실험적으로 파악하고, 기존에 사용하였던 평가 방법의 적용성을 검토하고자 한다. 이를 위해, 콘크리트의 압축강도, 피복두께, 섬유의 혼입량을 변수로 가진 직접 뽑힘 실험을 계획 및 수행하였다. 실험 결과 SF-RPC의 부착강도는 압축강도의 증가량에 따라 증가하고 있으나 그 증가율은 크게 나타나지 않음을 확인할 수 있으며, 피복두께의 증가에 따라 부착강도가 증가하며 $5.2d_b$ 이상의 피복을 가질 경우 매우 짧은 매입깊이인 $3d_b$의 매입깊이에서도 철근을 항복시킬 수 있는 것을 확인하였다. 또한, 섬유의 보강에 의해 부착강도가 두배 이상 증가하는 것을 확인하였다. 안전하고 경제적인 설계를 위해서는 SF-RPC의 부착강도를 추정할 수 있어야 하나, 현재까지는 이에 대한 추정식이 제시되고 있지 않으며, SF-RPC의 거동이 압축응력하에서는 큰 탄성 거동을 하며, 인장응력하에서는 소성거동을 함에 기인하여 Tepfers의 응력 해석 방법을 적용한 결과 실험 결과와 유사한 추정치를 기대할 수 있는 것을 확인하였다.

Liquid Metal Fiber를 이용한 초고성능콘크리트의 개발에 관한 기초연구 (A Study the Development of Ultra High Performance Concrete using Liquid Metal Fiber)

  • 고관호;곽민석;안정현;김화중
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2009년도 춘계 학술대회 제21권1호
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    • pp.241-242
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    • 2009
  • 본 연구에서 초고강도 콘크리트에 높은 연성을 얻기 위하여 Steel Fiber을 혼입하여 초고성능 콘크리트를 연구하였다. 기존의 Steel Fiber 와 Liquid Metal Fiber를 혼합한 초고강도 모르타르 시험체를 휨강도실험을 통하여 결과를 비교 검토 하였다. ASTM C 1018 방법, JSCE- SF4방법으로 인성지수 평가를 통해 Liquid Metal Fiber은 기존의 Bundrex Steel Fiber 보다 우수한 결과를 얻었다.

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3D FE modeling and parametric analysis of steel fiber reinforced concrete haunched beams

  • Al Jawahery, Mohammed S.;Cevik, Abdulkadir;Gulsan, Mehmet Eren
    • Advances in concrete construction
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    • 제13권1호
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    • pp.45-69
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    • 2022
  • This paper investigates the shear behavior of reinforced concrete haunched beams (RCHBs) without stirrups. The research objective is to study the effectiveness of the ideal steel fiber (SF) ratio, which is used to resist shear strength, besides the influence of main steel reinforcement, compressive strength, and inclination angles of the haunched beam. The modeling and analysis were carried out by Finite Element Method (FE) based on a software package, called Atena-GiD 3D. The program of this study comprises two-part. One of them consists of nine results of experimental SF RCHBs which are used to identify the accuracy of FE models. The other part comprises 81 FE models, which are divided into three groups. Each group differed from another group by the area of main steel reinforcement (As) which are 226, 339, and 509 mm2. The other parameters which are considered in each group in the same quantities to study the effectiveness of them, were steel fiber volumetric ratios (0.0, 0.5, and 1.0)%, compressive strength (20.0, 40.0, 60.0) MPa, and the inclination angle of haunched beam (0.0°, 10.0°, and 15.0°). Moreover, the parametric analysis was carried out on SF RCHBs to clarify the effectiveness of each parameter on the mechanical behavior of SF RCHBs. The results show that the correlation coefficient (R2) between shear load capacities of FE proposed models and shear load capacities of experimental SF RCHBs is 0.9793, while the effective inclination angle of the haunched beam is 10° which contributes to resisting shear strength, besides the ideal ratio of steel fibers is 1% when the compressive strength of SF RCHBs is more than 20 MPa.

Contribution of steel fiber as reinforcement to the properties of cement-based concrete: A review

  • Najigivi, Alireza;Nazerigivi, Amin;Nejati, Hamid Reza
    • Computers and Concrete
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    • 제20권2호
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    • pp.155-164
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    • 2017
  • During the past decades, development of reinforcing materials caused a revolution in the structure of high strength and high performance cement-based concrete. Among the most important and exciting reinforcing materials, Steel Fiber (SF) becomes a widely used in the recent years. The main reason for addition of SF is to enhance the toughness and tensile strength and limit development and propagation of cracks and deformation characteristics of the SF blended concrete. Basically this technique of strengthening the concrete structures considerably modifies the physical and mechanical properties of plain cement-based concrete which is brittle in nature with low flexural and tensile strength compared to its intrinsic compressive strength. This paper presents an overview of the work carried out on the use of SF as reinforcement in cement-based concrete matrix. Reported properties in this study are fresh properties, mechanical and durability of the blended concretes.

Performance of self-compacting geopolymer concrete with and without GGBFS and steel fiber

  • Al-Rawi, Saad;Taysi, Nildem
    • Advances in concrete construction
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    • 제6권4호
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    • pp.323-344
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    • 2018
  • The study herein reports the impact of Steel Fiber (SF) and Ground Granulated Blast Furnaces slag (GGBFS) content on the fresh and hardened properties of fly ash (FA) based Self-Compacting Geopolymer Concrete (SCGC). Two series of self-compacting geopolymer concrete (SCGC) were formulated with a constant binder content of $450kg/m^3$ and at an alkaline-to-binder (a/b) ratio of 0.50. Fly ash (FA) was substituted with GGBFS with the replacement levels being 0%, 25%, 50%, 75%, and 100% by weight in each SCGC series. Steel fiber (SF) wasn't employed in the assembly of the initial concrete series whereas, within the second concrete series, an SF combination was achieved by a constant additional level of 1% by volume. Fresh properties of mixtures were through an experiment investigated in terms of slump flow diameter, T50 slump flow time, V-funnel flow time, and L-box height ratio. Moreover, the mechanical performance of the SCGCs was evaluated in terms of compressive strength, splitting tensile strength, and fracture toughness. Furthermore, a statistical analysis was applied in order to judge the importance of the experimental parameters, like GGBFS and SF contents. The experimental results indicated that the incorporation of SF had no vital impact on the fresh characteristics of the SCGC mixtures whereas GGBFS aggravated them. However, the incorporation of GGBFS was considerably improved the mechanical properties of SCGCs. Moreover, the incorporation of SF with the total different quantity of GGBFS replacement has considerably increased the mechanical properties of SCGCs, by close to (65%) for the splitting strength and (200%) for compressive strength.

강섬유 보강 EVA 콘크리트의 역학적 특성 및 내마모성 (Mechanical Properties and Durability of Abrasion of EVA Concrete Reinforced Steel Fiber)

  • 성찬용;남기성
    • 한국농공학회논문집
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    • 제56권5호
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    • pp.45-54
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    • 2014
  • This study was performed to evaluate compressive strength, flexural strength, static modulus of elasticity, stress-strain ratio and durability of abrasion on EVA concrete reinforced steel fiber (SF) in order to use hydraulic structures, underground utilities, offshore structures and structures being applied soil contaminated area. It is used ordinary portland cement, crushed coarse aggregate, nature fine aggregate, EVA redispersible polymer powder, superplasticizer and deforming agent to find optimum mix design of EVA concrete reinforced steel fiber. EVA concrete reinforced SF was effected on the improvement of mechanical properties and durability of abrasion.

Rehabilitation of normal and self-compacted steel fiber reinforced concrete corbels via basalt fiber

  • Gulsan, Mehmet Eren;Al Jawahery, Mohammed S.;Alshawaf, Adnan H.;Hussein, Twana A.;Abdulhaleem, Khamees N.;Cevik, Abdulkadir
    • Advances in concrete construction
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    • 제6권5호
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    • pp.423-463
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    • 2018
  • This paper investigates the behavior of normal and self-compacted steel fiber reinforced concrete (SCC-SFRC) corbels rehabilitated by Basalt Fiber Mesh (BFM) and Basalt Fiber Fabric (BFF) for the first time in literature. The research objective is to study the effectiveness of BFM and BFF in the rehabilitation of damaged reinforced concrete corbels with and without epoxy injection. The experimental program includes two types of concrete: normal concrete, and self-compacted concrete. For normal concrete, 12 corbels were rehabilitated by BFM without injection epoxy in cracks, with two values of compressive strength, three ratios of steel fiber (SF), and two values of shear span. For self-compacted concrete, 48 corbels were rehabilitated with different parameters where 12 corbels were rehabilitated by BFM with and without epoxy injection, 18 heated corbels with three different high-temperature level were rehabilitated by repairing cracks only by epoxy injection, and 18 heated corbels with three different high-temperature level were rehabilitated by repairing cracks by epoxy and wrapping by BFF. All 48 corbels have two values of compressive strength, three values volumetric ratios of SF, and two values of the shear span. Test results indicate that RC corbels rehabilitated by BFM only without injection did not show any increase in the ultimate load capacity. Moreover, For RC corbels that were repaired by epoxy without basalt wrapping, the ultimate load capacities showed an increase depending on the mode of failure of corbels before the rehabilitation. However, the rehabilitation with only crack repairing by epoxy injection is more effective on medium strength corbels as compared to high strength ones. Finally, it can be concluded that use of BFF is an effective and powerful technique for the strengthening of damaged RC corbels.

고유동 흙막이 벽체 재료의 역학적 성능 및 내구성에 대한 강섬유 혼입률의 영향 (Effect of Steel Fiber Addition on the Mechanical Properties and Durability of High-Flowable Retaining Wall Material)

  • 김동규;이승태
    • 한국지반환경공학회 논문집
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    • 제24권6호
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    • pp.13-20
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    • 2023
  • 본 연구는 강섬유(SF) 혼입률에 따른 고유동 흙막이 벽체 재료(RWM)의 역학적 성능 및 내구성을 평가하기 위한 것으로써, 흙막이 벽체 재료의 재료분리저항성, 유동성, 연행공기량을 확보하기 위하여 적정량의 고성능감수제(SP), 공기연행제(AEA) 및 증점 안정화제(VMA)를 사용하였다. 흙막이 벽체 재료 경화체의 압축 및 쪼갬 인장강도를 소정의 재령에서 측정하였으며, 흙막이 벽체 재료의 역학적 성능은 표면전기저항성 및 흡수율 실험을 통하여 고찰하였다. 또, 염소이온 침투저항성 및 동결융해 저항성 실험을 통하여 흙막이 벽체 재료의 내구성능을 고찰하였다. 실험결과에 의하면, 강섬유를 적용한 배합이 강섬유 무혼입 배합에 비하여 우수한 성능을 나타내었으며, 2% 적용 배합이 경제성 및 성능 관점에서 상대적으로 효과적인 것으로 관찰되었다. 따라서, 적절한 SF의 적용은 흙막이 벽체 재료의 성능 향상에 기여할 것으로 판단된다.

시멘트 모르타르 내 비정질 강섬유와 일반 강섬유의 부착특성 비교 (Comparative Bond Characteristics of Amorphous Steel Fiber and Conventional Steel Fiber in Cement Mortar)

  • 최성규;김영준;김백중;이종구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 춘계 학술논문 발표대회
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    • pp.238-239
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    • 2014
  • It is well known that the bond characteristics of fiber govern the performance of fiber reinforced composite material. A preliminary study was carried out to investigate the pull-out behavior of amorphous and conventional single fiber in cement mortar in accordance with the JCI(Japan Concrete Institute) SF-8. The test was performed under displacement control, and results showed that the bond strength decreased with increasing fiber length. In addition, the amorphous steel fiber showed much higher pull-out load per unit weight compared to conventional steel fiber.

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