• 제목/요약/키워드: high and ultra-high strength concrete

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섬유혼입률이 초고강도 강섬유 보강 콘크리트의 인장연화거동에 미치는 영향 (Effect of fiber volume fraction on the tensile softening behavior of Ultra High Strength Steel Fiber-Reinforced Concrete)

  • 강수태;박정준;이시영;박건;홍기남;김성욱
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.421-424
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    • 2008
  • 초고강도 강섬유 보강 콘크리트의 역학특성은 높은 인장강도와 균열 이후의 높은 연성발현을 들 수있다. 본 연구에서는 섬유혼입률의 변화에 따른 초고강도 강섬유 보강 콘크리트의 인장연화 특성을 시험적으로 규명하고, 시험결과를 토대로 FEM 해석을 통해 변형성능을 정확하게 추정할 수 있는 인장 연화모델을 구축하고자 하였다. 초고강도 강섬유 보강 콘크리트의 인장거동은 강섬유의 혼입률에 관계없이 일정한 값의 초기강성을 나타내었으며, 강섬유의 혼입률이 증가할수록 초고강도 강섬유 보강 콘크리트의 휨인장강도는 증가하고 연화거동은 취성적인 것으로 나타났다. 노치낸 보에 대한 3점 휨실험 결과를 토대로 초고강도 강섬유 보강 콘크리트의 인장연화곡선을 얻기 위해 Uchida 등이 제안한 역해석법을 사용하였으며, 섬유혼입률과 임계균열폭의 함수로서 인장연화모델을 제안하였다.

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Constitutive property behavior of an ultra-high-performance concrete with and without steel fibers

  • Williams, E.M.;Graham, S.S.;Akers, S.A.;Reed, P.A.;Rushing, T.S.
    • Computers and Concrete
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    • 제7권2호
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    • pp.191-202
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    • 2010
  • A laboratory investigation was conducted to characterize the constitutive property behavior of Cor-Tuf, an ultra-high-performance composite concrete. Mechanical property tests (hydrostatic compression, unconfined compression (UC), triaxial compression (TXC), unconfined direct pull (DP), uniaxial strain, and uniaxial-strain-load/constant-volumetric-strain tests) were performed on specimens prepared from concrete mixtures with and without steel fibers. From the UC and TXC test results, compression failure surfaces were developed for both sets of specimens. Both failure surfaces exhibited a continuous increase in maximum principal stress difference with increasing confining stress. The DP tests results determined the unconfined tensile strengths of the two mixtures. The tensile strength of each mixture was less than the generally assumed tensile strength for conventional strength concrete, which is 10 percent of the unconfined compressive strength. Both concretes behaved similarly, but Cor-Tuf with steel fibers exhibited slightly greater strength with increased confining pressure, and Cor-Tuf without steel fibers displayed slightly greater compressibility.

잔골재 종류 및 혼합방법 변화에 따른 100 MPa 급 초고강도 콘크리트의 공학적 특성 (Engineering Characteristics of Ultra High Strength Concrete with 100 MPa depending on Fine Aggregate Kinds and Mixing Methods)

  • 한민철;이홍규
    • 한국산학기술학회논문지
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    • 제17권2호
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    • pp.536-544
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    • 2016
  • 최근 초고층 구조물이 증가함에 따라 구조내력 확보를 위해 80~100 MPa 수준의 초고강도 콘크리트 사용이 증가하고 있는데, 이들 구성 재료 중 사용량이 가장 많은 골재는 종류나 특성에 따라 초고강도 콘크리트의 성능 및 경제성에 미치는 영향이 크므로 이에 대한 고찰이 요구된다. 이에 본 연구에서는 100 MPa 급 초고강도 콘크리트의 공학적 특성에 미치는 잔골재 영향을 고찰하고자, 석회암잔골재(LFA), 전기로 산화 슬래그 잔골재(EFA), 세척사(SFA) 및 화강암 부순 잔골재(GFA)의 4종과 이들을 상호 혼합한 4종의 혼합골재를 선정하여 초고강도 콘크리트의 공학적 특성을 고찰하고자 한다. W/B 20%에서 보통포틀랜드시멘트:플라이애시:실리카흄의 비율을 7:2:1로 조합한 콘크리트를 제조하였다. 연구결과에 따르면 LFA 사용 배합이 양호한 잔골재의 입형 및 입도 등 입자특성에 기인하여 동일 고성능 감수제 사용량에서 가장 높은 슬럼프 플로 및 높은 충전성을 확보하며, 혼합골재 사용 배합에 비해 전반적인 유동성이 우수함을 확인할 수 있었다. 또한, 압축강도 및 자기 수축 저감 성능은 EFA 및 LFA 사용 배합이 여타 골재 종류 및 혼합조합에 비해 골재 자체의 양호한 탄성계수 및 강도 그리고 EFA의 free-CaO에 기인하여 보다 양호한 성능을 갖고 있음을 확인하였다.

Experimental and numerical studies of concrete bridge decks using ultra high-performance concrete and reinforced concrete

  • Shemirani, Alireza Bagher
    • Computers and Concrete
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    • 제29권 6호
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    • pp.407-418
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    • 2022
  • This paper numerically investigates the effect of changes in the mechanical properties (displacement, strain, and stress) of the ultra-high-performance concrete (UHPC) without rebar and the reinforced concrete (RC) using steel re-bars. This reinforced concrete is mostly used in the concrete bridge decks. A mixture of sand, gravel, cement, water, steel fiber, superplasticizer, and micro silica was used to fabricate UHPC specimens. The extended finite element method as used in the ABAQUS software is applied for considering the mechanical properties of UHPC, RC, and ordinary concrete specimens. To calibrate the ABAQUS, some experimental tests have been carried out in the laboratory to measure the direct tensile strength of UHPC by the compressive-to-tensile load converting (CTLC) device. This device contains a concrete specimen and is mounted on a universal tensile testing apparatus. In the experiments, three types of mixed concrete were used for UHPC specimens. The tensile strength of these specimens ranges from 9.24 to 11.4 MPa, which is relatively high compared with ordinary concrete specimens, which have a tensile strength ranging from 2 to 5 MPa. In the experimental tests, the UHPC specimen of size 150×60×190 mm with a central hole of 75 mm (in diameter)×60 mm (in thickness) was specially made in the laboratory, and its direct tensile strength was measured by the CTLC device. However, the numerical simulation results for the tensile strength and failure mechanism of the UHPC were very close to those measured experimentally. From comparing the numerical and experimental results obtained in this study, it has been concluded that UHPC can be effectively used for bridge decks.

A comparative study on the mechanical properties of ultra early strength steel fiber concrete

  • Yi-Chun Lai;Ming-Hui Lee;Yuh-Shiou Tai
    • Advances in concrete construction
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    • 제16권5호
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    • pp.255-267
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    • 2023
  • The production of ultra-early-strength concrete (UESC) traditionally involves complexity or necessitates high-temperature curing conditions. However, this study aimed to achieve ultra-early-strength performance solely through room-temperature curing. Experimental results demonstrate that under room-temperature (28℃) curing conditions, the concrete attained compressive strengths of 20 MPa at 4 hours and 69.6 MPa at 24 hours. Additionally, it exhibited a flexural strength of 7.5 MPa after 24 hours. In contrast, conventional concrete typically reaches around 20.6 MPa (3,000 psi) after approximately 28 days, highlighting the rapid strength development of the UESC. This swift attainment of compressive strength represents a significant advancement for engineering purposes. Small amounts of steel fibers (0.5% and 1% by volume, respectively) were added to address potential concrete cracking due to early hydration heat and enhance mechanical properties. This allowed observation of the effects of different volume contents on ultra-early-strength fiber-reinforced concrete (UESFRC). Furthermore, the compressive strength of 0.5% and 1% UESFRC increased by 16.3% and 31.3%, respectively, while the flexural strength increased by 37.1% and 47.9%. Moreover, toughness increased by 58.2 and 69.7 times, respectively. These findings offer an effective solution for future emergency applications in public works.

초고강도 콘크리트 Ductal을 이용한 선유도연결 보행전용교량의 설계와 시공 (Design and Construction of Sunyudo Pedestrian Bridge Using Ultra-High Performance Concrete, Ductal)

  • 변윤주;허석범;정의환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.607-614
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    • 2001
  • This paper describes the design and construction of main Arch bridge using Ultra-high performance concrete, Ductal in the Sunyudo pedestrian bridge project. Ductal is a new family of cementing materials with remarkable properties. Its mechanical characteristics reach unique values, with compressive strength in industrial use of 180 to 230 MPa and bending tensile strength of 50 to 80 MPa. By the use of Ductal, main Arch bridge crossing the Han-river is designed to the span 120m-long with optimized $\pi$ shape section.

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이음된 초고강도 강섬유보강콘크리트 보의 휨강도에 관한 실험적 연구 (An Experimental Study on the Flexural Strength of Lap Spliced Ultra High Strength Fiber Reinforced Concrete Beams)

  • 배백일;손동희;최현기;정형석;최창식
    • 한국구조물진단유지관리공학회 논문집
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    • 제25권6호
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    • pp.76-83
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    • 2021
  • 본 연구에서는 이음된 초고강도 강섬유보강콘크리트 부재의 휨거동을 검토하고, 현행설계기준의 초고강도 강섬유보강콘크리트 구조물의 이음 설계에 대한 안전성을 평가하기 위해 총 6개의 보에 대한 가력 실험을 수행하였다. 주요 변수는 섬유의 혼입여부와 이음 길이로 설정하였다. 혼입된 섬유는 강섬유로 2%의 부피비로 결정하였으며, 이음길이는 8db와 16db로 결정하여 실험체를 제작하였다. 실험 결과 섬유로 보강되지 않은 실험체들은 이음부에서 급격한 하중지지능력을 상실하고 철근의 항복을 경험하지 못하였으나, 섬유로 보강된 경우 16db의 이음길이가 확보되면 주인장철근의 항복을 경험할 수 있으며, 적절한 휨강도를 발현할 수 있는 것으로 나타났다. 본 연구의 실험결과를 바탕으로 현행설계기준 및 초고강도콘크리트 구조설계지침의 이음길이 산정식들을 검토한 결과 모두 보수적인 평가를 하고 있는 것으로 나타났다.

Early Age Shrinkage by Self-Desiccation in Ultra-High-Strength Concrete

  • Yoo, Doo-Yeol;Min, Kyung-Hwan;Yang, Jun-Mo;Yoon, Young-Soo
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.469-470
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    • 2010
  • The high-strength concrete(HSC) compared to normal concrete represents higher autogenous shrinkage due to lower water-to-binder ratio(W/B) and supplementaries, fly ash(FA) and granulated blast-furnace slag(BFS), etc. The potential of early age cracking which reduces durability of concrete structures is normally influenced by autogenous shrinkage and degree of restraint. Therefore, this paper studies on the evaluation of the characteristics of autogenous shrinkage for HSC, ultra-high-strength concrete(UHSC) containing admixtures by experimental test and the test results are compared with existed prediction models.

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Behaviour of ultra-high strength concrete encased steel columns subject to ISO-834 fire

  • Du, Yong;Zhou, Huikai;Jiang, Jian;Liew, J.Y. Richard
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.121-139
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    • 2021
  • Ultra-high strength concrete (UHSC) encased steel columns are receiving growing interest in high-rise buildings owing to their economic and architectural advantages. However, UHSC encased steel columns are not covered by the modern fire safety design code. A total of 14 fire tests are conducted on UHSC (120 MPa) encased steel columns under constant axial loads and exposed to ISO-834 standard fire. The effect of load ratio, slenderness, stirrup spacing, cross-section size and concrete cover to core steel on the fire resistance and failure mode of the specimens are investigated. The applicability of the tabulated method in EC4 (EN 1994-1-2-2005) and regression formula in Chinese code (DBJ/T 15-81-2011) to fire resistance of UHSC encased steel columns are checked. Generally, the test results reveal that the vertical displacement-heating time curves can be divided into two phases, i.e. thermal expansion and shortening to failure. It is found that the fire resistance of column specimens increases with the increase of the cross-section size and concrete cover to core steel, but decreases with the increase of the load ratio and slenderness. The EC4 method overestimates the fire resistance up to 186% (220 min), while the Chinese code underestimates it down to 49%. The Chinese code has a better agreement than EC4 with the test results since the former considers the effect of the load ratio, slenderness, cross section size directly in its empirical formula. To estimate the fire resistance precisely can improve the economy of structural fire design of ultra-high strength concrete encased steel columns.

초고강도 ($\acute{f}_{C91}$= 950kg/$\textrm{cm}^2$) P.C Bearing Plate 개발에 관한 연구 (A Study on the Development of a Ultra-Strength Precast Concrete Bearing Concrete Bearing Plate)

  • 소현창;정병욱;김재우;문성규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 봄 학술발표회 논문집
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    • pp.643-648
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    • 1997
  • P.C Bearing Plate method, corresponding to the existing steel plate build-up method, is developed by the very first in domestic and is applied to the foundation in the HYUNDAI building at Kang-Nam. P. C Bearing Plate produced in ourself P.C plant can stand against vertical load of 7,000ton obtaining allowable force of soil. It is possible to minmize cost expediting, do site assembling and omit unnecessary excavation work by plant prefabrication of foundation member. The purpose of this paper is to study the optimum mixing design of Ultra-high strength concrete ($\acute{f}_{C91}$= 950kg/$\textrm{cm}^2$), crack control through measuring the heat of hydration, mock up test for the optimum curing method. As mentioned above, developing the Ultra-high strength Precast Concrete Bearing Plate set up successfully in the site foundation work of the HYUNDAI Building at Kang-Nam.

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