• 제목/요약/키워드: ACI model

검색결과 228건 처리시간 0.036초

각형 콘크리트충전 강관기둥 부재의 구조설계기준 비교연구 (Review of Structural Design Provisions of Rectangular Concrete Filled Tubular Columns)

  • 이철호;강기용;김성용;구철회
    • 한국강구조학회 논문집
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    • 제25권4호
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    • pp.389-398
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    • 2013
  • 본 연구에서는 향후 기준집필 및 연구방향 제시를 위한 선행연구로써, 2005/2010 AISC, ACI 318-08과 EC4 내 각형 CFT 기둥 설계조항 간의 부재강도 산정포맷, 단면구조성능, 구속효과. 재료강도 상한 및 강재비, 판-폭 두께비 제한 등을 간략히 요약하고 비교분석하였다. 전반적으로 2010 AISC는 ACI 기준과의 충돌 완화를 위해 변형률적합법을 도입하는 등 최신 실험 및 연구 결과들을 반영하여 개정하였으며 CFT 기둥에서 세장비를 더욱 세분화하거나 내진 판-폭 두께비를 고연성과 중간연성 부재로 구분하는 등, 타 기준에 비해 발전된 형태의 방안을 제시하고 있다. 하지만 AISC와 EC4에서의 재료강도 상한치는 너무나 제한적이기때문에 현재 사용 가능한 고강도 재료실험 데이터베이스를 고려하여 완화할 필요가 있다. 본 연구를 통해 AISC, ACI, EC4에서 제시하는 각형 CFT 기둥의 P-M 조합강도 산정식은 다양한 설계조건에 대해 만족스러운 강도예측을 하지 못함을 확인하였다. 따라서 각형 CFT 기둥의 신뢰도 높은 P-M 조합강도 산정을 위하여 구속된 콘크리트의 응력-변형률 관계를 합리적으로 반영할 수 있는 실용적인 구성 방정식이 개발되어야 한다.

Behavior of reinforced concrete corbels

  • Lu, Wen-Yao;Lin, Ing-Jaung
    • Structural Engineering and Mechanics
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    • 제33권3호
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    • pp.357-371
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    • 2009
  • Test results of thirteen reinforced concrete corbels with shear span-to-depth ratio greater than unity are reported. The main variables studied were compressive strength of concrete, shear span-to-depth ratio and parameter of vertical stirrups. The test results indicate that the shear strengths of corbels increase with an increase in compressive strength of concrete and parameter of vertical stirrups. The shear strengths of corbels also increase with a decrease in shear span-to-depth ratio. The smaller the shear span-to-depth ratio of corbel, the larger the stiffness and the shear strength of corbel are. The higher the concrete strength of corbel, the higher the stiffness and the shear strength of corbel are. The larger the parameter of vertical stirrups, the larger the stiffness and the shear strength of corbel are. The softened strut-and-tie model for determining the shear strengths of reinforced concrete corbels is modified appropriately in this paper. The shear strengths predicted by the proposed model and the approach of ACI Code are compared with available test results. The comparison shows that the proposed model can predict more accurately the shear strengths of reinforced concrete corbels than the approach of ACI Code.

Thickness of shear flow path in RC beams at maximum torsional strength

  • Kim, Hyeong-Gook;Lee, Jung-Yoon;Kim, Kil-Hee
    • Computers and Concrete
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    • 제29권 5호
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    • pp.303-321
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    • 2022
  • The current design equations for predicting the torsional capacity of RC members underestimate the torsional strength of under-reinforced members and overestimate the torsional strength of over-reinforced members. This is because the design equations consider only the yield strength of torsional reinforcement and the cross-sectional properties of members in determining the torsional capacity. This paper presents an analytical model to predict the thickness of shear flow path in RC beams subjected to pure torsion. The analytical model assumes that torsional reinforcement resists torsional moment with a sufficient deformation capacity until concrete fails by crushing. The ACI 318 code is modified by applying analytical results from the proposed model such as the average stress of torsional reinforcement and the effective gross area enclosed by the shear flow path. Comparison of the calculated and observed torsional strengths of existing 129 test beams showed good agreement. Two design variables related to the compressive strength of concrete in the proposed model are approximated for design application. The accuracy of the ACI 318 code for the over-reinforced test beams improved somewhat with the use of the approximations for the average stresses of reinforcements and the effective gross area enclosed by the shear flow path.

한계상태 정의에 따른 FRP Rebar 보강 콘크리트 슬래브의 구조거동 예측 (Prediction of Structural Behavior of FRP Rebar Reinforced Concrete Slab based on the Definition of Limit State)

  • 오홍섭;김영환;장낙섭
    • 대한토목학회논문집
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    • 제40권4호
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    • pp.371-381
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    • 2020
  • FRP로 보강된 콘크리트 부재의 파괴형태는 콘크리트 압괴와 섬유 파단으로 정의되며, 설계방법에 따라 한계상태를 조금씩 다르게 정의하고 있다. FRP 보강재는 섬유에 따라 성능이 상이하기 때문에 사용상태와 극한상태의 성능을 예측하는 것이 상대적으로 까다롭다. 특히 많이 사용되고 있는 ACI 440의 기준은 주로 저탄성계수를 갖는 GFRP를 중심으로 개발되었기 때문에 다른 섬유에 대한 적용성이 충분히 검증되지 않은 상태이다. 또한 ACI440의 휨한계상태는 보강비에 따라 압괴와 파단이 동시에 발생하는 천이영역이 상대적으로 크기 때문에 균형보강비에서의 거동예측이 상대적으로 어렵고, 사용성 예측 방법이 하중조건에 따라 민감하기 때문에 상대적으로 복잡한 단점이 있다. 따라서 본 연구에서는 0.8~1.2 𝜌b의 보강비를 갖는 슬래브의 실험결과와 문헌고찰을 통하여 설계방법별 거동예측의 신뢰성과 편이성을 고찰하였다. 해석결과 Model Code의 모멘트 곡률식(LIM-MC) 간략식의 경우 FRP 보강구조물에도 충분히 적용할 수 있는 것으로 분석되었으며, EC2에 기반한 한계상태 설계법이 상대적로 극한강도설계법보다 신뢰성 있는 결과를 나타내었다.

MMA 개질 폴리머 콘크리트의 인장증강 효과 (Tension Stiffening Effects of MMA-Modified Polymer Concrete)

  • 연규석;권택정;정중호;김성기
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.304-307
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    • 2004
  • Direct tensile tests were carried out for the tensile members of MMA-modified polymer concrete with different steel kinds and steel diameters and steel ratios to figure out the effect of tensile strength of polymer concrete. In the experiments, MMA-modified polymer concrete with $1000\;kgf/cm^2$ of compressive strength, steel with $5200\;kgf/cm^2$ of tensile strength, and the tensile members with 100 cm of constant length were used. Experimental results showed that, regardless of steel kinds, diameters and steel content, the strain energy exerted by concrete till the initial crack was $14-15\%$ of the total energy till the point of yield: The energy was much larger than the one of high-strength cement concrete. The behaviors of tensile members of MMA-modified polymer concrete were in relatively good agreement with the model suggested by Gupta-Maestrini (1990), which was idealized by the effective tensile stress-strain relationship of concrete and the load-strain relationship of members, while those showed a big difference from CEB-FIP model and ACI-224 equation suggested for the load-displacement relationship that was defined as the cross sectional stiffness of effective axis. Modified ACI-224 model code about the load-displacement relationship for the tensile members of MMA-modified polymer concrete and theoretical equation for the polymer concrete tensile stiffness of polymer concrete suggested through the results of this study are expected to be used in an accurate structural analysis and resign for the polymer concrete structural members.

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철근보강 폴리머 콘크리트 인장부재의 인장강성 (Tension Stiffening of Reinforced Polymer Concrete Tension member)

  • 연규석;김남길;조규우;권택정
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.387-390
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    • 2003
  • Direct tensile tests were carried out for the tensile members of steel-reinforced polymer concrete with different steel diameters and steel ratios to figure out the effect of tensile strength of polymer concrete. In the experiments, polymer concrete with $1000kgf/cm^2$ of compressive strength, steel with $5200kgf/cm^2$ of tensile strength, and the tensile members with 100 cm of constant length were used. Experimental results showed that, regardless of steel diameters and steel content, the strain energy exerted by concrete till the initial crack was 14-15% of the total energy till the point of yield: The energy was much larger than the one of high-strength cement concrete. The behaviors of tensile members of steel-reinforced polymer concrete were in relatively good agreement with the model suggested by Gupta-Maestrini (1990), which was idealized by the effective tensile stress-strain relationship of concrete and the load-strain relationship of members, while those showed a big difference from CEB-FIP model and ACI-224 equation suggested for the load-displacement relationship that was defined as the cross sectional stiffness of effective axis. Modified ACI-224 model code about the load-displacement relationship for the tensile members of steel-reinforced polymer concrete and theoretical equation for the polymer concrete tensile stiffness of polymer concrete suggested through the results of this study are expected to be used in an accurate structural analysis and design for the polymer concrete structural members.

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3차원 격자 스트럿-타이 모델 방법을 이용한 횡하중을 받는 슬래브-기둥 접합부의 극한강도 평가 (Ultimate Strength Analysis of Slab-Column Joints Subjected to Lateral Loads Using 3-Dimensional Grid Strut-Tie Model Approach)

  • 손우현;윤영묵
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.265-268
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    • 2008
  • 슬래브-기둥 접합부는 많은 구조물의 시공에 사용되고 있다. 그러나 횡하중을 받는 슬래브-기둥 접합부의 파괴거동 및 극한강도를 예측하는 것이 매우 어렵기 때문에 현행 구조물 설계기준은 횡하중을 받는 슬래브-기둥 접합부의 파괴 거동을 명확하게 설명하지 못하고 있다. 본 논문에서는 횡하중을 받는 슬래브-기둥 접합부의 극한해석과 설계를 위하여 응력교란영역을 가지는 3차원 구조의 해석과 설계를 위하여 제안된 3차원 격자 스트럿-타이 모델 방법을 파괴실험이 수행된 43개의 횡하중을 받는 슬래브-기둥 접합부의 극한강도 평가에 적용하고, ACI 318-05 기준과 FIB 1999 기준에 의한 극한강도 평가결과와 비교함으로써 3차원 격자 스트럿-타이 모델 방법의 타당성을 검토하였다.

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철근콘크리트 부재의 비틀림강도에 관한 연구 (Study on Torsional Strength of Reinforced Concrete Members)

  • 박창규
    • 한국건설순환자원학회논문집
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    • 제7권2호
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    • pp.145-150
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    • 2019
  • 본 논문에서는 비틀림을 받는 RC 부재의 콘크리트 기여 강도를 포함하고 전단흐름두께를 합리적으로 고려한 비틀림 강도 추정식을 제안하였다. 본 논문에서 제안한 극한비틀림 강도 추정식을 검증하기 위하여, 현행 콘크리트 구조기준(KCI 2017, ACI 318-14)에서 규정한 공칭비틀림강도와 Rahal의 비틀림강도 추정식, 본 논문에서 제시한 새로운 비틀림강도 추정식에 의한 이론값을 참고 문헌에서 발췌한 104개의 보에 대한 극한비틀림강도 측정값과 각각 비교 검토하였다. 그 결과 콘크리트 기여강도를 반영한 Rahal의 비틀림강도 추정식과 본 논문에서 제안한 비틀림강도 추정식에 의한 극한비틀림강도가 현행 설계기준이 규정한 공칭비틀림강도보다 실험값에 더 가깝게 나타났다.

Determining the shear strength of FRP-RC beams using soft computing and code methods

  • Yavuz, Gunnur
    • Computers and Concrete
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    • 제23권1호
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    • pp.49-60
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    • 2019
  • In recent years, multiple experimental studies have been performed on using fiber reinforced polymer (FRP) bars in reinforced concrete (RC) structural members. FRP bars provide a new type of reinforcement that avoids the corrosion of traditional steel reinforcement. In this study, predicting the shear strength of RC beams with FRP longitudinal bars using artificial neural networks (ANNs) is investigated as a different approach from the current specific codes. An ANN model was developed using the experimental data of 104 FRP-RC specimens from an existing database in the literature. Seven different input parameters affecting the shear strength of FRP bar reinforced RC beams were selected to create the ANN structure. The most convenient ANN algorithm was determined as traingdx. The results from current codes (ACI440.1R-15 and JSCE) and existing literature in predicting the shear strength of FRP-RC beams were investigated using the identical test data. The study shows that the ANN model produces acceptable predictions for the ultimate shear strength of FRP-RC beams (maximum $R^2{\approx}0.97$). Additionally, the ANN model provides more accurate predictions for the shear capacity than the other computed methods in the ACI440.1R-15, JSCE codes and existing literature for considering different performance parameters.

Shear Behavior and Performance of Deep Beams Made with Self-Compacting Concrete

  • Choi, Y.W.;Lee, H.K.;Chu, S.B.;Cheong, S.H.;Jung, W.Y.
    • International Journal of Concrete Structures and Materials
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    • 제6권2호
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    • pp.65-78
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    • 2012
  • An experimental study was carried out to evaluate fresh properties of a moderately high-strength (high-flowing) self-compacting concrete (SCC) and to investigate shear behavior and performance of deep beams made with SCC. Fresh and hardened properties of normal concrete (NC) and SCC were evaluated. The workability and compacting ability were observed based on casting time and number of surface cavities, respectively. Four-point loading tests on four deep beams (two made with SCC and two with NC) were then conducted to investigate their shear behavior and performance. Shear behavior and performance of beams having two different web reinforcements in shear were systematically investigated in terms of crack pattern, failure mode, and load-deflection response. It was found from the tests that the SCC specimen having a normal shear reinforcement condition exhibited a slightly higher load carrying capacity than the corresponding NC specimen, while the SCC specimen having congested shear reinforcement condition showed a similar load carrying capacity to the corresponding NC specimen. In addition, a comparative study between the present experimental results and theoretical results in accordance with ACI 318 (Building Code Requirements for Reinforced Concrete (ACI 318-89) and Commentary-ACI 318R-89, 1999), Hsu-Mau's explicit method (Hsu, Cem Concr Compos 20:419-435, 1998; Mau and Hsu, Struct J Am Concr Inst 86:516-523, 1989) and strut-and-tie model suggested by Uribe and Alcocer (2002) based on ACI 318 Appendix A (2008) was carried out to assess the applicability of the aforementioned methods to predict the shear strength of SCC specimens.