• 제목/요약/키워드: high-strength concrete (HSC)

검색결과 140건 처리시간 0.025초

Prediction of curvature ductility factor for FRP strengthened RHSC beams using ANFIS and regression models

  • Komleh, H. Ebrahimpour;Maghsoudi, A.A.
    • Computers and Concrete
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    • 제16권3호
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    • pp.399-414
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    • 2015
  • Nowadays, fiber reinforced polymer (FRP) composites are widely used for rehabilitation, repair and strengthening of reinforced concrete (RC) structures. Also, recent advances in concrete technology have led to the production of high strength concrete, HSC. Such concrete due to its very high compression strength is less ductile; so in seismic areas, ductility is an important factor in design of HSC members (especially FRP strengthened members) under flexure. In this study, the Adaptive Neuro-Fuzzy Inference System (ANFIS) and multiple regression analysis are used to predict the curvature ductility factor of FRP strengthened reinforced HSC (RHSC) beams. Also, the effects of concrete strength, steel reinforcement ratio and externally reinforcement (FRP) stiffness on the complete moment-curvature behavior and the curvature ductility factor of the FRP strengthened RHSC beams are evaluated using the analytical approach. Results indicate that the predictions of ANFIS and multiple regression models for the curvature ductility factor are accurate to within -0.22% and 1.87% error for practical applications respectively. Finally, the effects of height to wide ratio (h/b) of the cross section on the proposed models are investigated.

콘크리트의 초기강도 발현에 미치는 시멘트 요인의 영향 (Influence of Cement Factor on the Strength Development of Concrete at the Early Age)

  • 김광화;김은호;임주혁;김규동;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.737-740
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    • 2003
  • In this study, the influence of cement factor on the early strength gain and the other properties of concrete is discussed. According to the result, the setting time is faster in order of alumina cement(AC), high-early-strength cement(HSC) and ordinary Portland cement(OPC), and when OPC are replaced with HSC and AC, the final setting time is faster than when only OPC is used. At 10% replacement of AC, the instant setting happens. As the particle of cement is minute, setting time is shortened. As the properties of hardened concrete, the time when compressive strength of 5㎫, which the form can be removed, is gained is about 18 and 16 hours in the case of OPC and HSC respectively, and in the case of AC, it is about 5 hours. It also shows 16 hours at the replacing ratio of HSC of 50%, and 26 and 72 hours at the replacing ratio of AC of 5 and 10% respectively. And it shows 21, 16 and 12 hours with variation of fineness of cement, so early strength gain is fast with an increase of fineness. The coefficient of correlation between compressive strength and the rebound value is over 0.97, is very favorable. Therefore, if the rebound value of P type Schmidt hammer is more than 25, it is thought that the side forms can be removed.

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헤디드 바, 고장력 철근 및 CFRP 바로 전단보강된 세장 고강도콘크리트 보의 전단 거동 평가 (Shear Behavior of Slender HSC Beams Reinforced with Stirrups using Headed Bars, High Strength Steels, and CFRP Bars)

  • 양준모;권기연;최홍식;윤영수
    • 콘크리트학회논문집
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    • 제19권6호
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    • pp.717-726
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    • 2007
  • 일반 강도의 철근을 고강도콘크리트 구조물에 사용하는 경우, 고강도콘크리트의 취성을 보완하고 그 성능을 십분 활용하기 위해서는 많은 양의 철근이 요구된다. 이는 곧 철근의 과밀 배근이나 자중의 증가와 같은 구조, 시공상의 문제를 야기할 수 있다. 따라서 고강도콘크리트 부재에 적합한 새로운 보강 재료 혹은 공법이 필요한 것이다. 이에 본 연구에서는 100 MPa의 고강도콘크리트를 사용하여 4개의 실물크기 보 시험체를 제작하고, 전단보강재를 달리하여 전단 거동에 대한 효과를 관찰하기 위해 실험을 수행하였다. 4개의 시험체는 각각 일반 철근, 고장력 철근, 헤디드 바, CFRP 바를 전단 스터럽으로 사용하였으며, 이 중 2개의 시험체에는 강섬유를 콘크리트에 혼입하여 그 효과를 관찰하였다. 고장력 철근의 사용은 전단철근에 의한 전단력과 부착력의 증가로 인해 전반적인 전단 성능의 향상을 가져왔다. 헤디드 바로 전단 보강된 부재의 경우에도 헤디드 바의 상당히 높은 정착강도로 인해서 우수한 전단 거동을 보였다. 하지만 본 실험에서 사용된 CFRP 바의 경우, 부착력이 매우 떨어져 전단보강재로서 적합하지 못한 것으로 나타났다. 강섬유 보강 콘크리트를 통해 부재의 연성 및 균열 제어 능력이 향상되었다.

띠철근 간격에 따른 고강도 콘크리트 기둥의 내화 성능 (Fire Resistance of High Strength Concrete Columns with Tie Spacing)

  • 박찬규;이승훈
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.393-396
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    • 2008
  • 본 논문에서는 띠철근 간격에 따른 고강도 콘크리트 기둥의 내화 성능에 대한 실험결과를 제시하고 있다. 단면 크기 305${\times}$305mm이 고강도 콘크리트 기둥을 3개 제작하였으며, 띠철근 간격은 150, 210, 300mm 이었다. 시험시의 압축강도는 69MPa이었다. 시험 결과로서, 고강도 콘크리트 기둥의 내화 성능은 띠철근 간격에 큰 영향을 받는 것으로 나타났다. 띠철근 간격이 줄어들수록 내화 성능이 증가하는 것으로 나타났다.

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ECC로 피복된 고강도콘크리트의 폭렬저감 및 열적특성에 관한 실험적 연구 (Fire Resistant Performance of Anti-Spalling ECC Layers in High-Strength Concrete Structures)

  • 이재영;권영진
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2008년도 춘계 학술논문 발표대회
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    • pp.199-202
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    • 2008
  • The purpose of this study is to obtain the fundamental fire resistance performance of engineered cementitious composites(ECC) under fire temperature in order to use the fire protection material in high-strength concrete structures. The present study conducted the experiment to simulate fire temperature by employing of ECC and investigated experimentally the explosion and cracks in heated surface of these ECC. In the experimental studies, 3 HSC specimens are being exposed to fire, in order to examine the influence of various parameters(such as depth of layer=20, 30, 40mm; construction method=lining type) on the fire performance of HSC structures. Employed temperature curve were ISO 834 criterion(3hr), which are severe in various criterion of fire temperature in building structures. The numerical regressive analysis and proposed equation to calculate ambient temperature distribution is carried out and verified against the experimental data. By the use of proposed equation, the HSC members subjected to fire loads were designed and discussed.

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Cost optimization of reinforced high strength concrete T-sections in flexure

  • Tiliouine, B.;Fedghouche, F.
    • Structural Engineering and Mechanics
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    • 제49권1호
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    • pp.65-80
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    • 2014
  • This paper reports on the development of a minimum cost design model and its application for obtaining economic designs for reinforced High Strength Concrete (HSC) T-sections in bending under ultimate limit state conditions. Cost objective functions, behavior constraint including material nonlinearities of steel and HSC, conditions on strain compatibility in steel and concrete and geometric design variable constraints are derived and implemented within the Conjugate Gradient optimization algorithm. Particular attention is paid to problem formulation, solution behavior and economic considerations. A typical example problem is considered to illustrate the applicability of the minimum cost design model and solution methodology. Results are confronted to design solutions derived from conventional design office methods to evaluate the performance of the cost model and its sensitivity to a wide range of unit cost ratios of construction materials and various classes of HSC described in Eurocode2. It is shown, among others that optimal solutions achieved using the present approach can lead to substantial savings in the amount of construction materials to be used. In addition, the proposed approach is practically simple, reliable and computationally effective compared to standard design procedures used in current engineering practice.

Redistribution of moments in reinforced high-strength concrete beams with and without confinement

  • Lou, Tiejiong;Lopes, Sergio M.R.;Lopes, Adelino V.
    • Structural Engineering and Mechanics
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    • 제55권2호
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    • pp.379-398
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    • 2015
  • Confinement is known to have important influence on ductility of high-strength concrete (HSC) members and it may therefore be anticipated that this parameter would also affect notably the moment redistribution in these members. The correctness of this "common-sense knowledge" is examined in the present study. A numerical test is performed on two-span continuous reinforced HSC beams with and without confinement using an experimentally validated nonlinear model. The results show that the effect of confinement on moment redistribution is totally different from that on flexural ductility. The moment redistribution at ultimate limit state is found to be almost independent of the confinement, provided that both the negative and positive plastic hinges have formed at failure. The numerical findings are consistent with tests performed on prototype HSC beams. Several design codes are evaluated. It is demonstrated that the code equations by Eurocode 2 (EC2), British Standards Institution (BSI) and Canadian Standards Association (CSA) can well reflect the effect of confinement on moment redistribution in reinforced HSC beams but the American Concrete Institute (ACI) code cannot.

고온에 노출된 고강도 콘크리트 기둥의 수치해석 (Numerical analysis of high-strength concrete exposed elevated temperature)

  • 서연주;홍성걸
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(II)
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    • pp.21-24
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    • 2005
  • A computational analysis of hygro-thermal and mechanical behaviour of concrete column at high temperature is presented. The objective of this study is to develop a finite difference model that simulates coupled heat and transport phenomena in reinforced concrete structures exposed to rapid heating conditions such as fires. The theoretical basis for the integrated finite difference method is presented to describe a powerful numerical technique for solving of fluid flow in porous media. The numerical results predict the phenomena of 'moisture clog' and the explosive spalling of concrete under fire. The investigations show that high-strength concrete(HSC) and normal-strength concrete(NSC) exposed to high temperature have different pore pressure buildup dependent on porosity, permeability and moisture contents. HSC has more possibility than NSC on spalling.

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Minimum deformability design of high-strength concrete beams in non-seismic regions

  • Ho, J.C.M.;Zhou, K.J.H.
    • Computers and Concrete
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    • 제8권4호
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    • pp.445-463
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    • 2011
  • In the design of reinforced concrete (RC) beams, apart from providing adequate strength, it is also necessary to provide a minimum deformability even for beams not located in seismic regions. In most RC design codes, this is achieved by restricting the maximum tension steel ratio or neutral axis depth. However, this empirical deemed-to-satisfy method, which was developed based on beams made of normal-strength concrete (NSC) and normal-strength steel (NSS), would not provide a consistent deformability to beams made of high-strength concrete (HSC) and/or high-strength steel (HSS). More critically, HSC beams would have much lower deformability than that provided previously to NSC beams. To ensure that a consistent deformability is provided to all RC beams, it is proposed herein to set an absolute minimum rotation capacity to all RC beams in the design. Based on this requirement, the respective maximum limits of tension steel ratio and neutral axis depth for different concrete and steel yield strengths are derived based on a formula developed by the authors. Finally for incorporation into design codes, simplified guidelines for designing RC beams having the proposed minimum deformability are developed.

숏크리트용 고분말도 슬래그 시멘트의 특성 (A Study on Properties of High Blaine Slag Cement for Shotcrete)

  • 김재영;염수경;유동우;최현국
    • 한국세라믹학회지
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    • 제47권5호
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    • pp.357-364
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    • 2010
  • This study was performed to get basic information about properties of high blaine slag cement(HSC) to use shotcrete(or sprayed concrete and mortar). Particle size distribution, setting time and compressive strength test, analysis like as SEM, DSC thermal analysis, XRD was carried out to investigate principle properties of HSC. Setting time of HSC was delayed slightly, but influence of accelerators was more bigger than ordinary portland cement(OPC). Compressive strength of HSC at 28 days was more higher than OPC regardless of using accelerators. Results of analysis showed early period hydration products of HSC is more small and located widely, because of the interface of between cement particle and water is increased as specific surface of cement increase. From the SEM observation and analysis of DSC and XRD results, aluminates accelerators bring on some hydration products like as calcium aluminium hydrates, alkali free accelerators increases ettringite and monosulfates. Aluminates accelerators has a advantage of setting time and early strength, alkali free accelerators increases strength after 7 days.