• 제목/요약/키워드: Concrete Elastic Modulus

검색결과 475건 처리시간 0.027초

SFRC구조물의 휨거동에 관한 해석적 연구 (Analytical Study of Flexural Behavior on Steel Fiber Reinforced Concrete Structure)

  • 서성탁
    • 한국산업융합학회 논문집
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    • 제11권1호
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    • pp.35-40
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    • 2008
  • Various characters of the concrete are greatly improved as the effect of the steel fiber. As the improvement effect of the steel fiber, the increment in flexural strength, shear strength, toughness, and impact strength are remarkable, and tenacious concrete is obtained. This paper presents model which can predict mechanical behavior of the structure according to aspect ratio and volume fraction of steel fiber. Experiments on compressive strength, elastic modulus and tensile strength were performed with self-made cylindrical specimens of variable aspect ratios. This paper presents an analytical study on the behavior of a beam specimen with steel fiber reinforced concrete(SFRC). The effect of the SFRC on the crack pattern, failure mode and the flexural behavior of the structure were investigated. The analysis model based on the nonlinear layered finite element method was successfully able to find the necessary amount of steel fibers, tensile steels and beam section which can best approximate flexural strength and ductility of a given conventionally reinforced concrete beam.

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GFRP와 철근 보강근으로 복합 휨보강된 보 시험체의 구조성능 평가 (Evaluation of Structural Capacity for Concrete Beams Reinforced Simultaneously with GFRP and Steel rebar)

  • 심종성;박철우;오홍섭;주민관;임준현
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.518-521
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    • 2006
  • The purpose of this study is to evaluate structural performance of concrete beam reinforced simultaneously with GFRP and steel rebar. Because the GFRP has lower elastic modulus than steel or CFRP, serviceability for concrete structure can be an issue. According to the test result, the hybrid reinforced specimen showed better stiffness improvement than the specimen reinforced with only GFRP rebar. From an additional research on design parameter and reliability analysis, the field adaptability can be proved.

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Compressive Properties of Amorphous Metal Fiber Reinforced Concrete Exposed to high Temperature

  • Lee, Jun-Cheol;Kim, Wha-Jung;Lee, Chang-Joon
    • 한국건축시공학회지
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    • 제12권2호
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    • pp.183-193
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    • 2012
  • Compressive property of high strength concrete with amorphous metal fibers subject to high temperature has been investigated. The measure of this investigation includes explosive spalling, weight loss, residual compressive strength, strain at peak stress, elastic modulus, and residual energy absorption capacity after exposure to $400^{\circ}C$, $600^{\circ}C$and $800^{\circ}C$. In addition to the amorphous metal fiber, two other types of fibers (polypropylene fiber and hooked-end steel fiber) were also included in this investigation for comparison. The experimental program was conducted with high strength concrete using several combinations of the fiber types. The testing result shows that the concrete with amorphous metal fibers plus polypropylene fibers shows a superior behavior than those using other combination or single fiber type ingredient.

염해와 동해를 받는 콘크리트의 내구성 평가실험 (The Experimental Study on the Durability of Concrete under Freezing & Thawing Action and Salt attack)

  • 이준구;박광수;조영권;김명원;김관호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(II)
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    • pp.213-216
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    • 2005
  • Salt attack and freezing & thawing test, one of the combined deterioration tests was performed to explore the mechanism of concrete structure deterioration under marine environment. Simple submerging test was proceeded to draw out its diffusion factor with salt water at the same time. Some of the mechanisms were driven with using three types of cements and four kinds of salt water concentrations. $\circ$ TBC was more durable than OPC or SRC for freezing and thawing action $\circ$ The higher chloride concentration of salt water was, the faster relative dynamic elastic modulus decreased and the higher the loss of weight was. $\circ$ The diffusion factor of TBC was smaller than those of TBC or SRC at simple submergence of concrete specimens into salt water.

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FWD 방향을 고려한 콘크리트 포장 하부 상태 평가 (Evaluation of State of Concrete Pavement Sublayers Considering Direction of FWD)

  • 이재훈;이재훈;손덕수;유주호;정진훈
    • 한국도로학회논문집
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    • 제16권6호
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    • pp.69-78
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    • 2014
  • PURPOSES : The purpose of this paper is showing that the state of pavement sublayers can be evaluated differently according to direction of FWD. METHODS : The concrete pavement slabs above subgrade without anything, subgrade with cavity, and box culvert were modeled by finite element method(FEM). The modeled pavements were analyzed by changing the direction of falling weight deflectometer(FWD). The deflection results obtained from FEM were used to calculate radius of relative stiffness and composite modulus of subgrade reaction using AREA method. Then, the analyzed results were compared to the results of the test performed at the Korea Expressway Corporation(KEC) test road. RESULTS : The composite modulus of subgrade reaction increased with subgrade elastic modulus, while radius of relative stiffness decreased. The pavement sections of pure earth showed the consistent results regardless of FWD direction. In case there was cavity, the radius of relative stiffness was larger and composite modulus of subgrade reaction was smaller when FWD was leaving the cavity than when approaching the cavity. This pattern became clear when the cavity got larger. In case of the section with box culvert, the pattern was opposite to the case of cavity. When the soil cover depth increased, the effect of box culvert got smaller. When the load was applied far from the cavity and box culvert, the effect was also declined. The test performed at the KEC test road showed identical results to those of finite element analysis. CONCLUSIONS : The direction of FWD should be considered in evaluation of the state of pavement sublayers because it can be evaluated differently even under identical condition.

해사 사용 고강도 콘크리트의 물성에 관한 실험적 연구 (Experimental Study on Physical Properties of High-Strength Concrete Using Sea Sand)

  • 정영수;배수호;박종협
    • 콘크리트학회지
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    • 제8권3호
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    • pp.219-229
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    • 1996
  • 국내 건설경기의 비약적인 신장으로 인한 하천사의 고갈로 해사의 사용이 매년 급증하고 있는 추세이다. 시방서 조건을 만족시키지 않는 무분별한 해사의 사용은 저품질 콘크리트의 시공으로 이어져, 이는 곧바로 구조물의 내구성에 치명적인 영향을 끼쳐 사회적으로 엄청난 슬픔과 재난을 몰고 올 대규모 참사를 야기시킬 수도 있다는 점에서 해사를 사용한 콘크리트에 대한 물리적 특성의 규명이 시급한 실정이라 할 수 있다. 따라서 본 연구는 해사를 이용한 고강도 콘크리트를 개발하기 위한 실험적 연구로서 양질의 하천사를이용한 고강도 콘크리트와 해사를 이용한 고강도 콘크리트의 물리적 특성을 서로 비교.분석하여 해사를 이용한 고강도 콘크리트를 실제의 콘크리트 공사에 적극적으로 활용하는데 그 목적이 있다. 해사를 이용한 고강도 콘크리트의 실험적 규명은 고강도 콘크리트의 구조물 설계시 중요한 설계자료로 이용될 수 있다. 따라서 본 연구는 콘크리트용 혼화재로서 실리카흄의 사용유무에 따라 최대압축강도를 발현시키는 물-시멘트비(불-결합재비)의 한계값을 결정하고, 정탄성계수의 실험으로 현행 콘크리트 표준시방서의 탄성계수 계산식의 적용범위를 제시한 후, 압축강도 $330~800kgf/cm^2$인 고강도 콘크리트의 탄성계수와 할렬인장강도 및 휨인장강도를 예측할 수 있는 제안식을 도출해 냈다.

탄성기초에 지지되고 양단 축하중을 받는 특별직교 이방성 판의 진동해석 (Vibration analysis of special orthortopic plate with free edges supported on elastic foundation and with a pair of opposite edges under axial forces)

  • 김덕현;원치문;정경일;박정호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1998년도 봄 학술발표회 논문집
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    • pp.327-334
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    • 1998
  • A method of calculating the natural frequency corresponding to the first mode of vibration of beams and toll.or structures, with irregular cross sections and with arbitrary boundary conditions was developed and reported by Kim, D. H. in 1974. In this paper, the result of application of this method to the special orthotropic plates with free edges supported on elastic foundation and with a pair of opposite edges under axial forces is presented. Such plates represent the concrete highway slab and hybrid composite pavement of bridges. The reinforced concrete slab can be assumed as a special orthotropic plate, as a close approximation. The highway slab is supported on elastic foundation, with free boundaries. Sometimes, the pair of edges perpendicular to the traffic direction may be subject to the axial forces. The plate is subject to the concentrated load/loads, in the form of traffic loads, or the test equipments. Any method nay be used to obtain the deflection influence surfaces needed for this vibration analysis. Finite difference method is used for this purpose, in this paper. The influence of the modulus of the foundation, the aspect ratio of the plate, and the magnitudes of the axial forces and the concentrated attached mass on the plate, on the natural frequency is thoroughly studied.

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하부층 모델링에 따른 지반 위 콘크리트 슬래브의 환경하중 하의 컬링 거동 분석 (Effect of Underlying Layer Modeling on Curling Behavior of Concrete Slabs on Grade under Environmental Loads)

  • 김성민;심재수;윤동주
    • 한국도로학회논문집
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    • 제10권3호
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    • pp.209-220
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    • 2008
  • 본 논문은 지반위에 놓인 콘크리트 슬래브가 환경하중에 의해 컬링 할 때의 거동을 해석할 경우에 하부층의 모델링 방법에 따른 해석 결과의 차이를 분석한 내용을 기술하였다. 지반위에 놓인 슬래브 시스템을 전체 3차원 모델, 3차원 슬래브와 하부층을 스프링으로 구성한 모델, 그리고 2차윈 슬래브와 하부층을 스프링으로 구성한 모델 등으로 개발하여 해석을 수행하였다. 먼저 하부층이 단일 층으로 구성되어 있을 경우에 하부층 모델링 방법에 따른 컬링 거동의 차이를 분석하였다. 그리고 하부층이 서로 다른 재료와 두께로 구성되어 있는 복층일 경우에 하부층 모델링에 따른 컬링 거동의 특성을 비교 분석하였다. 연구결과 하부층을 무인장 스프링으로 모델링 하면 하부층이 단층일 경우에는 일반적으로는 상당히 정확한 해석결과를 얻을 수 있으나, 하부층이 복층일 경우에는 상위하부층의 탄성계수가 클 때, 하위하부층의 탄성계수가 작을 때, 그리고 상위하부층과 하위하부층의 두께가 두꺼울 때는 컬링 시에 슬래브의 수직변위 차이를 과대평가하게 되며 최대응력은 과소평가하게 된다.

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적층판이론을 적용한 Radiata Pine 콘크리트 거푸집용 합판의 휨해석 (Flexural Analysis of Radiata Pine Plywood Plate for the Concrete Form by the Laminate Plate Theory)

  • 남정훈;손경욱;윤순종
    • Journal of the Korean Wood Science and Technology
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    • 제32권4호
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    • pp.36-45
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    • 2004
  • 콘크리트 거푸집용 합판을 직교이방성재료로 구성된 적층판으로 간주하고 네 변이 단순지지된 판의 중앙에 집중하중이 작용할 경우에 대해 적층판이론을 적용하여 휨거동 해석을 수행하였다. 또한, 판의 휨실험을 통해서 얻은 값을 이론에 의해 추정한 값과 비교, 분석하였다. 비교 분석결과, 처짐이 판 두께의 약 1/4 이하에서는 실험값과 이론값이 잘 일치함을 보였고 그 이상에서는 실험에 의한 처짐이 작게 나타났다. 합판을 등방성판으로 간주하여 근사적으로 휨해석을 할 경우 섬유방향의 탄성계수(E11)와 접선방향의 탄성계수(E22)의 기하평균값을 판의 탄성계수로 간주하고 해석하는 것이 실제 휨실험값과 잘 일치함을 알 수 있었다.

Experimental and statistical analysis of hybrid-fiber-reinforced recycled aggregate concrete

  • Tahmouresi, Behzad;Koushkbaghi, Mahdi;Monazami, Maryam;Abbasi, Mahdi Taleb;Nemati, Parisa
    • Computers and Concrete
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    • 제24권3호
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    • pp.193-206
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    • 2019
  • Although concrete is the most widely used construction material, its deficiency in shrinkage and low tensile resistance is undeniable. However, the aforementioned defects can be partially modified by addition of fibers. On the other hand, possibility of adding waste materials in concrete has provided a new ground for use of recycled concrete aggregates in the construction industry. In this study, a constant combination of recyclable coarse and fine concrete aggregates was used to replace the corresponding aggregates at 50% substitution percentage. Moreover, in order to investigate the effects of fibers on mechanical and durability properties of recycled aggregate concrete, the amounts of 0.5%, 1%, and 1.5% steel fibers (ST) and 0.05%, 0.1% and 0.15% polypropylene (PP) fibers by volumes were used individually and in hybrid forms. Compressive strength, tensile strength, flexural strength, ultrasonic pulse velocity (UPV), water absorption, toughness, elastic modulus and shrinkage of samples were investigated. The results of mechanical properties showed that PP fibers reduced the compressive strength while positive impact of steel fibers was evident both in single and hybrid forms. Tensile and flexural strength of samples were improved and the energy absorption of samples containing fibers increased substantially before and after crack presence. Growth in toughness especially in hybrid fiber-reinforced specimens retarded the propagation of cracks. Modulus of elasticity was decreased by the addition of PP fibers while the contrary trend was observed with the addition of steel fibers. PP fibers decreased the ultrasonic pulse velocity slightly and had undesirable effect on water absorption. However, steel fiber caused negligible decline in UPV and a small impact on water absorption. Steel fibers reduce the drying shrinkage by up to 35% when was applied solely. Using fibers also resulted in increasing the ductility of samples in failure. In addition, mechanical properties changes were also evaluated by statistical analysis of MATLAB software and smoothing spline interpolation on compressive, flexural, and indirect tensile strength. Using shell interpolation, the optimization process in areas without laboratory results led to determining optimal theoretical points in a two-parameter system including steel fibers and polypropylene.