• 제목/요약/키워드: Cracked concrete

검색결과 332건 처리시간 0.025초

Path-dependent three-dimensional constitutive laws of reinforced concrete -formulation and experimental verifications-

  • Maekawa, Koichi;Irawan, Paulus;Okamura, Hajime
    • Structural Engineering and Mechanics
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    • 제5권6호
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    • pp.743-754
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    • 1997
  • A three-dimensional constitutive modeling for reinforced concrete is presented for finite element nonlinear analysis of reinforced concrete. The targets of interest to the authors are columns confined by lateral steel hoops, RC thin shells subjected to combined in-plane and out-of-plane actions and massive structures of three-dimensional (3D) extent in shear. The elasto-plastic and continuum fracture law is applied to pre-cracked solid concrete. For post cracking formulation, fixed multi-directional smeared crack model is adopted for RC domains of 3D geometry subjected to monotonic and reversed cyclic actions. The authors propose a new scheme of decomposing stress strain fields into sub-planes on which 2D constitutive laws can be applied. The proposed model for 3D reinforced concrete is experimentally verified in both member and structural levels under cyclic actions.

ASTM C 1260 시험 콘크리트 시편의 알칼리-실리카 반응 생성물 특징 (Characteristics of Alkali-Silica Reaction Product of Mortar Bar by ASTM C 1260 Test)

  • 홍승호;윤경구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.541-544
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    • 2006
  • This study was performed to proof expansion effect of the mortar bar due to Alkali-silica Reaction (ASR) by ASTM C 1260 test. Recently, the failure case of cement concrete pavement by ASR was reported in Korea. Cement concrete structures are caused crack by ASR. The service life of cracked cement concrete structures by ASR will be shorted. In this study, crushed the slate rock producted Chungcheongnamdo Boryeong was caused 0.3% expansion at 14 days due to ASR by ASTM C 1260 test. The particular spectrum showed that the ASR gel was analyzed contents included Si, Na, K, and Ca by EDX (electron dispersive X-ray spectrometer). It was verified that the crushed aggregate was caused expansion by ASR in Korea.

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To Study the Effect on Concrete Strength by Adding Waste Rubber Material from Worn Out Tires

  • Aleem, Muhammad;Ejaz, Naeem;Janjua, Nasir Sadiq;Gill, Tanveer;Sadiq, Muhammad Yasir
    • 국제학술발표논문집
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    • The 9th International Conference on Construction Engineering and Project Management
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    • pp.694-701
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    • 2022
  • This paper introduces a study of concrete structures with a broken tire and a flat tire as a complete overhaul. The materials used to make concrete in this study are solid aggregate, cement, sand, flat tire, broken wheel, drinking water, and Ordinary Portland Cement. A total of 6 main compounds were thrown into solid cylinders and replaced by 0% as a controller followed by 5% and 10%. The cylinder pressure test of the concrete is done by applying the same pressure to the cylinders until a failure occurs. The results of the pressure test show that by applying 5% aggregation the pressure decreases. In Crumb wheel joints, the compression force decreases constantly as the percentage change increases. Therefore, the crumb wheel is not recommended for use as a complete replacement due to its compressive church power.

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Finite element modeling of reinforced and prestressed concrete panels under far-field blast loads using a smeared crack approach

  • Andac Lulec;Vahid Sadeghian;Frank J. Vecchio
    • Computers and Concrete
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    • 제33권6호
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    • pp.725-738
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    • 2024
  • This study presents a macro-modeling procedure for nonlinear finite element analysis of reinforced and prestressed concrete panels under blast loading. The analysis procedure treats cracked concrete as an orthotropic material based on a smeared rotating crack model within the context of total-load secant stiffness-based formulation. A direct time integration method compatible with the analysis formulation is adapted to solve the dynamic equation of motion. Considerations are made to account for strain rate effects. The analysis procedure is verified by modeling 14 blast tests from various sources reported in the literature including a blast simulation contest. The analysis results are compared against those obtained from experiments, simplified single-degree-of-freedom (SDOF) methods, and sophisticated hydrocodes. It is demonstrated that the smeared crack macro-modeling approach is a viable alternative analysis procedure that gives more information about the structural behavior than SDOF methods, but does not require detailed micro-modeling and extensive material characterization typically needed with hydrocodes.

Finite element analysis of shear critical prestressed SFRC beams

  • Thomas, Job;Ramaswamy, Ananth
    • Computers and Concrete
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    • 제3권1호
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    • pp.65-77
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    • 2006
  • This study reports the details of the finite element analysis of eleven shear critical partially prestressed concrete T-beams having steel fibers over partial or full depth. Prestressed concrete T-beams having a shear span to depth ratio of 2.65 and 1.59 and failing in the shear have been analyzed using 'ANSYS'. The 'ANSYS' model accounts for the nonlinear phenomenon, such as, bond-slip of longitudinal reinforcements, post-cracking tensile stiffness of the concrete, stress transfer across the cracked blocks of the concrete and load sustenance through the bridging of steel fibers at crack interface. The concrete is modeled using 'SOLID65'-eight-node brick element, which is capable of simulating the cracking and crushing behavior of brittle materials. The reinforcements such as deformed bars, prestressing wires and steel fibers have been modeled discretely using 'LINK8' - 3D spar element. The slip between the reinforcement (rebar, fibers) and the concrete has been modeled using a 'COMBIN39'-non-linear spring element connecting the nodes of the 'LINK8' element representing the reinforcement and nodes of the 'SOLID65' elements representing the concrete. The 'ANSYS' model correctly predicted the diagonal tension failure and shear compression failure of prestressed concrete beams observed in the experiment. The capability of the model to capture the critical crack regions, loads and deflections for various types of shear failures in prestressed concrete beam has been illustrated.

미세균열이 콘크리트의 염소이온 침투에 미치는 영향: 현상학적 모델 (Effect of Micro-Cracks on Chloride Ions Penetration of Concrete: Phonomenological Model)

  • 윤인석
    • 콘크리트학회논문집
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    • 제19권1호
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    • pp.57-65
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    • 2007
  • 지난 수년간 콘크리트의 염소이온 침투와 유관되어 실험 방법론 및 해석적 모델 기법의 개발에 많은 발전이 있어 왔다. 그러나 실제 콘크리트 구조물에는 다소의 균열이 존재하며 이는 장기 내구성에 큰 영향을 줄 수 있음에도 불구하고 대부분의 연구들은 비균열의 콘크리트를 대상으로 연구되어 온 문제점이 있었으며 균열이 존재하는 콘크리트의 염소이온 침투에 대한 연구는 매우 드문 실정이다. 염소이온 침투에 대한 균열폭의 임계치는 유지관리 차원에서 필요하지만, 대부분 콘크리트 코드는 사용성의 견지에서 허용 균열폭을 보편적인 값 0.3mm로 제안하고 있을 뿐, 염소이온 침투 및 내구성의 견지에서 임계 균열폭에 대한 규정도 부재한 실정이다. 이미 제안된 값도 연구자들마다 상이하여 논란의 여지가 있다. 본 연구는 임계 균열폭의 도출을 목적으로 균열이 콘크리트의 염소이온 침투에 미치는 영향을 고찰하였다. 실험적 방법으로 다양한 균열폭과 균열 깊이를 실험 변수로 하여 급속 염소이온 침투 실험 (RCMT)를 행하였다. 한편, 임계 균열폭이 갖는 공학적 의미를 설명하고자, 균열폭에 따른 염소이온 침투의 현상학적 모델이 제안되었다. 즉, 균열된 콘크리트는 3 구간으로 나누어지며 내부 안쪽으로 들어갈수록 확산자유 영역, 확산경화 영역, 순수 확산 영역의 3가지 구간이 존재한다. 이는 균열폭에 따른 염소이온 확산계수를 산출하기 위한 해석적 방법론의 개발에 이용될 수 있을 것으로 사료된다.

스터럽 보강 선설치 앵커의 정적 전단하중에 대한 저항 강도 (Static Shear Strength of Cast-in Anchors with Stirrup Reinforcement)

  • 박용명;조성훈;김태형;강충현;김재봉
    • 한국강구조학회 논문집
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    • 제28권1호
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    • pp.1-12
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    • 2016
  • 본 연구에서는 스터럽 보강 선설치 앵커의 정적 전단하중에 대한 저항강도 평가를 위한 실험 연구를 수행하였다. 실험변수로는 전면지압철근 유무와 콘크리트 균열 유무로 설정하였다. 앵커는 M36, 연단거리는 180mm로 하였다. 모든 철근은 HD-10 철근을 사용하고 스터럽의 간격은 100mm로 하였다. 실험으로부터 전면지압철근을 설치한 경우 스터럽 저항강도는 16% 증가하였다. 한편 균열 콘크리트에서의 저항강도는 비균열 콘크리트에 비해 5% 감소에 불과하였다. 실험 결과로부터 ACI 318 및 ETAG 001 기준은 스터럽의 저항강도를 안전측으로 평가하였으며, 적절한 강도 평가 방안을 제안하였다. 마지막으로 스터럽 보강 시 앵커 본체의 파괴강도에 대한 고찰을 제시하였다.

등방성 및 이방성 균열을 가진 콘크리트의 염화물 확산계수 모델링 (Modeling on Chloride Diffusivity in Concrete with Isotropic and Anisotropic Crack)

  • 이학수;배상운;권성준
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권6호
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    • pp.104-111
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    • 2013
  • 균열을 가진 콘크리트에서는 균열폭으로 유입되는 염화물 이온에 의해 열화가 가속화된다. 본 연구는 균열을 가진 콘크리트의 염화물 확산에 대한 모델링으로, 정상상태를 가정하여 1차원 (이방성) 및 2차원 (등방성) 균열 모델링을 수행하였다. 기존의 균열 모델링에서는 직사각형 균열패턴으로 모델링을 수행하였으나, 본 연구에서는 조도를 가진 쐐기형 형태로 균열을 모델링하였다. 검증을 위하여 1차원 유입에 대해서는 콘크리트 시편에 균열을 유입하여 염화물 영동실험을 수행하였으며, 2차원 유입에 대해서는 기존의 실험결과를 이용하여 검증을 수행하였다. 모든 경우에서 균열형태를 쐐기형으로 고려하여 염화물 확산성이 감소되었으며, 조도를 고려함으로서 합리적인 결과가 도출되었다. 특히 0.10~0.15의 조도계수를 고려할 때, 실험값에 가장 근접한 결과를 나타내었다.

Prediction of deflection of high strength steel fiber reinforced concrete beams and columns

  • Kara, Ilker Fatih;Dundar, Cengiz
    • Computers and Concrete
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    • 제9권2호
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    • pp.133-151
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    • 2012
  • This paper presents an analytical procedure for the analysis of high strength steel fiber reinforced concrete members considering the cracking effect in the serviceability loading range. Modifications to a previously proposed formula for the effective moment of inertia are presented. Shear deformation effect is also taken into account in the analysis, and the variation of shear stiffness in the cracked regions of members has been considered by reduced shear stiffness model. The effect of steel fibers on the behavior of reinforced concrete members have been investigated by the developed computer program based on the aforementioned procedure. The inclusion of steel fibers into high strength concrete beams and columns enhances the effective moment of inertia and consequently reduces the deflection reinforced concrete members. The contribution of the shear deformation to the total vertical deflection of the beams is found to be lower for beams with fibers than that of beams with no fibers. Verification of the proposed procedure has been confirmed from series of reinforced concrete beam and column tests available in the literature. The analytical procedure can provide an accurate and efficient prediction of deflections of high strength steel fiber reinforced concrete members due to cracking under service loads. This procedure also forms the basis for the three dimensional analysis of frames with steel fiber reinforced concrete members.

Shear lag effect in steel-concrete composite beam in hogging moment

  • Luo, Da;Zhang, Zhongwen;Li, Bing
    • Steel and Composite Structures
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    • 제31권1호
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    • pp.27-41
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    • 2019
  • Shear lag effect can be an important phenomenon to consider in design of the steel-concrete composite beams. Researchers have found that the effect can be strongly related with the moment distribution, the stiffness and the ductility of the composite beams. For continuous composite beams expected to sustain hogging moment, the shear lag effect can be more distinct as cracking of the concrete slab reduces its shear stiffness. Despite its influences on behaviour of the steel-concrete composite beams, a method for calculating the shear lag effect in steel-concrete composite beams sustaining hogging moment is still not available. Shear lag effect in steel-concrete composite beams sustaining hogging moment is investigated in this paper. A method was proposed specifically for predicting the effect in the cracked part of the steel-concrete composite beam. The method is validated against available experimental data. At last, FE studies are conducted for steel-concrete composite beams with different design parameters, loading conditions and boundary conditions to further investigate the shear lag effect and compare with the proposed method.