• 제목/요약/키워드: design compressive strength

검색결과 1,223건 처리시간 0.031초

고강도-경량콘크리트의 배합설계 방안 및 역학적 특성에 관한 연구 (Study on the Mix Design Method and the Mechanical Proerties of High-Strenght Lightweight Concrete)

  • 강훈
    • 레미콘
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    • 7호통권72호
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    • pp.29-41
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    • 2002
  • The purpose of this study is to investigarte the mix design method and the mechanical properties of High stength Lightweight Concrete (HSLC). In the experment, concrete mixing was conducted to select the optimum mix design for HSLC in laboratory. Also, concrete mixing in ready mix design. As a result, it is possible to establish the mix design of HSLC according to the using these experimental results ;the estimate equation for unit weight of HSLC. the relationship between W/C and compressive strength of HSLC and the fluidity of HSLC in the view of workability

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Prediction of residual compressive strength of fly ash based concrete exposed to high temperature using GEP

  • Tran M. Tung;Duc-Hien Le;Olusola E. Babalola
    • Computers and Concrete
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    • 제31권2호
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    • pp.111-121
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    • 2023
  • The influence of material composition such as aggregate types, addition of supplementary cementitious materials as well as exposed temperature levels have significant impacts on concrete residual mechanical strength properties when exposed to elevated temperature. This study is based on data obtained from literature for fly ash blended concrete produced with natural and recycled concrete aggregates to efficiently develop prediction models for estimating its residual compressive strength after exposure to high temperatures. To achieve this, an extensive database that contains different mix proportions of fly ash blended concrete was gathered from published articles. The specific design variables considered were percentage replacement level of Recycled Concrete Aggregate (RCA) in the mix, fly ash content (FA), Water to Binder Ratio (W/B), and exposed Temperature level. Thereafter, a simplified mathematical equation for the prediction of concrete's residual compressive strength using Gene Expression Programming (GEP) was developed. The relative importance of each variable on the model outputs was also determined through global sensitivity analysis. The GEP model performance was validated using different statistical fitness formulas including R2, MSE, RMSE, RAE, and MAE in which high R2 values above 0.9 are obtained in both the training and validation phase. The low measured errors (e.g., mean square error and mean absolute error are in the range of 0.0160 - 0.0327 and 0.0912 - 0.1281 MPa, respectively) in the developed model also indicate high efficiency and accuracy of the model in predicting the residual compressive strength of fly ash blended concrete exposed to elevated temperatures.

표면반발경도와 초음파 속도를 활용한 고강도 콘크리트 압축강도 추정 (Estimating the Compressive Strength of High-Strength Concrete Using Surface Rebound Value and Ultrasonic Velocity)

  • 김민욱;오홍섭;오광진
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권2호
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    • pp.1-9
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    • 2016
  • 저자들은 비파괴시험에 의한 고강도콘크리트의 강도 예측식을 제안하기 위하여 실험적 연구를 수행하였다. 본 연구에서 사용된 콘크리트의 설계압축강도는 40~80 MPa 범위이며, 압축공시체를 제작하여 반발경도법과 초음파 속도법으로 실험한후 KS기준에 따라 압축강도 실험을 실시하였다. 실험결과는 기존의 연구자들에 의하여 제안된 다양한 실험예측식들과 비교분석하였다. 실험결과 고강도 콘크리트에서도 반발경도법과 초음파속도법의 경우 간편성과 신뢰성에 있어 콘크리트 강도를 측정하기에 충분한 유용성을 확보한 것을 확인할 수 있었다. 기존식들과의 비교를 통하여 고강도 콘크리트에 적합한 강도예측식을 제안하였으며, 실험결과에 대한 충분한 신뢰성을 확보한 것으로 판단되어, 향후 고강도 콘크리트 구조물에 적용할 수 있을 것으로 판단된다.

배합요인에 따른 포러스 콘크리트의 흡음특성 (Sound Absorbing Characteristics of Porous Concrete according to Mixing Factor)

  • 이준;박승범;권혁준;김경훈;장영일;김형석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 가을 학술발표회 논문집
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    • pp.489-492
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    • 2003
  • The results of an experiment on the sound absorption of the porous concrete and its influence on the compressive strength are reported in this paper. Two different sizes of coarse aggregate of 5~13, 13~20mm, and the design void ratio of 20, 25 and 30 percent for a given size of aggregate were used. In the compressive strength, an aggregate of the size of 5~13mm is much higher strength than that of the 13~20mm, In the sound absorption experiment, the size of aggregate of 5~l0mm is much higher sound absorption than that of the 13~20mm. The sound absorption ratio was increased as the design void ratio. As a result, Porous concrete sufficiently have the performance of sound absorption.

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입상인공 Zeolite를 이용한 포러스콘크리트의 물리$\cdot$역학적 특성에 관한 실험적 연구 (A Study on the Physical and Mechanical Properties of Porous Concrete Using Granular artificial zeolite)

  • 서대석;박승범;조광연;이준;이윤선;김봉균
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(II)
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    • pp.485-488
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    • 2005
  • The results of an experiment on the sea water purification of the porous concrete using granular artificial zoelite and its influence on the physical and mechanical properties are reported in this paper. Two different sizes of coarse aggregate of 5$\∼$13, 13$\∼$20mm, and three of void ratio(15, 20 and 30 percent) for a given size of aggregate were used. In the water permeability, an aggregate of the size of 13$\∼$20mm is much higher than that of the 13$\∼$20mm, but the water permeability is smaller in the less design void ratio. and In the compressive strength, an aggregate of the size of 5$\∼$13mm is much higher strength than that of the 13$\∼$20mm, but the compressive strength is higher in the less design void ratio.

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캡슐 구조 설계를 통한 등방성 FDM 3D 프린팅 자가치유 캡슐의 제작 및 분석 (Fabrication and analysis of isotropic FDM 3D printing self-healing capsules through capsule structure design)

  • 송원일;아르만도;이자성;지동민;김성훈
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 봄 학술논문 발표대회
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    • pp.249-250
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    • 2022
  • PLA 3D printed capsule of FDM method has advantages of mass production and low cost. However, it has a different strength depending on the direction in witch it is laminated. In this paper, structural design of several capsules, FEM analysis, and Compressive strength tests were conducted. As a result, the proposed capsule has a strong load of up to 217.9% compared to general capsule without a reinforcing structure.

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혼합물 실험계획법에 의한 경량기포 충전재 제조를 위한 산업부산물의 최적 배합 검토 (Study on Optimum Mixture of Industrial By-Products for Lightweight Foamed Filler Production by Mixture Experimental Design)

  • 우양이;박근배
    • 한국건설순환자원학회논문집
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    • 제7권1호
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    • pp.37-43
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    • 2019
  • 본 연구에서는 각종 산업부산물(플라이애시 2종, 페트로 코크스 연소 유동층 보일러 애시 및 고로 슬래그 미분말)을 활용한 싱크홀 복구용 경량 충전재 제조에 관한 연구를 수행하였다. 이를 위해 혼합물 실험계획법을 적용하여 산업부산물의 배합비에 따른 혼합 원료 물성(압축강도) 거동을 검토하였고, 상용프로그램인 MINITAB을 사용하여 통계적 분석을 하였다. 산업부산물의 배합조건별 압축강도는 고로 슬래그 미분말에 강한 의존성을 나타냈으며, 압축강도(3일 재령)는 고로 슬래그 미분말 사용량에 3~11MPa 수준이며, 유동층 보일러 플라이애시의 사용은 압축강도 발현에 미치는 영향이 가장 적은 것으로 평가되었다. 그리고 혼합물 실험계획에 따른 원료 배치 1조건에 대해서 기포 콘크리트를 제조하여 압축강도와 투수계수를 측정하였으며, 이때 부피비중 0.9~1.0, 겉보기 기공률은 30~50% 수준, 압축강도(3일 재령)는 1~2MPa 수준, 투수계수는 $10^{-2}{\sim}10^{-3}cm/sec$ 수준이다.

슬래그부산물을 자극제로 활용한 고활성 고로슬래그 미분말 모르타르의 압축강도 발현 특성 (Properties of Compressive Strength of Mortar Based on High-activated Blast Furnace Slag using the Slag by-product as an Activator)

  • 이보경;김규용;구경모;신경수
    • 한국건축시공학회지
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    • 제14권1호
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    • pp.37-44
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    • 2014
  • 건설산업에서는 탄산가스 저감을 위해 산업부산물을 다량 활용하는 기술개발을 위한 연구가 이루어지고 있다. 산업부산물 중 특히 고로슬래그 미분말은 잠재수경성에 기인하여 장기강도는 우수하나 초기강도가 낮기 때문에 많은 양을 대체하는데 한계가 있다. 이에 본 연구에서는 철강공정 중 용선예비처리 공정에서 발생하는 슬래그부산물을 활용하여 고활성 고로슬래그 미분말을 시험 제조후 고활성 고로슬래그 미분말의 모르타르 압축강도 강도발현 특성을 검토하였다. 또한, 고활성 고로슬래그 미분말 단독으로도 경화가 가능한 특징을 고려해서 2차 콘크리트 제품용 결합재로서 활용 가능성을 검토하고자 배합조건에 따른 콘크리트 제조 및 압축강도 발현특성을 검토하였다. 실험변수로써 슬래그부산물의 분말도, 치환율, 양생조건 및 W/B를 설정하였다. 그 결과 슬래그부산물을 자극제로 활용한 고활성 고로슬래그 미분말 모르타르의 압축강도 향상을 확인하였으며 고활성 고로슬래그 미분말이 단독으로도 경화가 가능하기 때문에 양생 및 배합조건을 고려하면 고활성 고로슬래그 미분말을 콘크리트 2차 제품용 결합재로서 활용 가능할 것으로 판단된다.

인공어초 개발을 위한 재생골재 콘크리트의 실험적 연구 (An Experimental Study on Recycled Aggregate Concrete for Artificial Fishing Reefs)

  • 홍종현;김문훈;우광성
    • 한국해양공학회지
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    • 제17권4호
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    • pp.16-22
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    • 2003
  • The mechanical characteristics of newly recycled aggregate concrete on the basis of the proposed mix design model have been studied to develop the precast artificial fishing reefs. In the first task, the experimental test for the recycled aggregates taken from Jeju Island has been carried out to verify the material properties in terms of specific gravity, percentage of solids, absorption and abrasion of coarse aggregates. In the second task, the experimental parameters of newly recycled aggregate concrete are investigated to meet with the requirements of guidelines with respect to slump, unit weight, pH, ultrasonic velocity, void ratio, and compressive strength which are made of sea-shore sand ad slag cement. The natural aggregate and polypropylene fiber are added to newly recycled aggregate concrete to improve the compressive strength and quality. The optimal mix proportions for compressive strength are W/C=30%, S/a=15%, NA/G=50% in porous concrete case, W/C=40%, S/a=45% in plain concrete case, and W/C=40%, S/a-45%, PF=1.0kg/㎥ in fiber reinforced concrete case.

Optimum tuned mass damper design for preventing brittle fracture of RC buildings

  • Nigdeli, Sinan Melih;Bekdas, Gebrail
    • Smart Structures and Systems
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    • 제12권2호
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    • pp.137-155
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    • 2013
  • Brittle fracture of structures excited by earthquakes can be prevented by adding a tuned mass damper (TMD). This TMD must be optimum and suitable to the physical conditions of the structure. Compressive strength of concrete is an important factor for brittle fracture. The application of a TMD to structures with low compressive strength of concrete may not be possible if the weight of the TMD is too much. A heavy TMD is dangerous for these structures because of insufficient axial force capacity of structure. For the preventing brittle fracture, the damping ratio of the TMD must be sufficient to reduce maximum shear forces below the values proposed in design regulations. Using the formulas for frequency and damping ratio related to a preselected mass, this objective can be only achieved by increasing the mass of the TMD. By using a metaheuristic method, the optimum parameters can be searched in a specific limit. In this study, Harmony Search (HS) is employed to find optimum TMD parameters for preventing brittle fracture by reducing shear force in additional to other time and frequency responses. The proposed method is feasible for the retrofit of weak structures with insufficient compressive strength of concrete.