• 제목/요약/키워드: cast-in-concrete

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Design and modelling of pre-cast steel-concrete composites for resilient railway track slabs

  • Mirza, Olivia;Kaewunruen, Sakdirat;Kwok, Kenny;Griffin, Dane W.P.
    • Steel and Composite Structures
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    • 제22권3호
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    • pp.537-565
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    • 2016
  • Australian railway networks possess a large amount of aging timber components and need to replace them in excess of 280 thousands $m^3$ per year. The relatively high turnover of timber sleepers (crossties in a plain track), bearers (skeleton ties in a turnout), and transoms (bridge cross beams) is responsible for producing greenhouse gas emissions 6 times greater than an equivalent reinforced concrete counterparts. This paper presents an innovative solution for the replacement of aging timber transoms installed on existing railway bridges along with the incorporation of a continuous walkway platform, which is proven to provide environmental, safety and financial benefits. Recent developments for alternative composite materials to replace timber components in railway infrastructure construction and maintenance demonstrate some compatibility issues with track stiffness as well as structural and geometrical track systems. Structural concrete are generally used for new railway bridges where the comparatively thicker and heavier fixed slab track systems can be accommodated. This study firstly demonstrates a novel and resilient alterative by incorporating steel-concrete composite slab theory and combines the capabilities of being precast and modulated, in order to reduce the depth, weight and required installation time relative to conventional concrete direct-fixation track slab systems. Clear benefits of the new steel-concrete composites are the maintainability and constructability, especially for existing railway bridges (or brown fields). Critical considerations in the design and finite element modelling for performance benchmarking of composite structures and their failure modes are highlighted in this paper, altogether with risks, compatibilities and compliances.

Experimental and numerical studies of precast connection under progressive collapse scenario

  • Joshi, Digesh D.;Patel, Paresh V.;Rangwala, Husain M.;Patoliya, Bhautik G.
    • Advances in concrete construction
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    • 제9권3호
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    • pp.235-248
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    • 2020
  • Progressive collapse in a structure occurs when load bearing members are failed and the adjoining structural elements cannot resist the redistributed forces and fails subsequently, that leads to complete collapse of structure. Recently, construction using precast concrete technology is adopted increasingly because it offers many advantages like faster construction, less requirement of skilled labours at site, reduced formwork and scaffolding, massive production with reduced amount of construction waste, better quality and better surface finishing as compared to conventional reinforced concrete construction. Connections are the critical elements for any precast structure, because in past, major collapse of precast structure took place because of connection failure. In this study, behavior of four different precast wet connections with U shaped reinforcement bars provided at different locations is evaluated. Reduced 1/3rd scale precast beam column assemblies having two span beam and three columns with removed middle column are constructed and examined by performing experiments. The response of precast connections is compared with monolithic connection, under column removal scenario. The connection region of test specimens are filled by cast-in-place micro concrete with and without polypropylene fibers. Performance of specimen is evaluated on the basis of ultimate load carrying capacity, maximum deflection at the location of removed middle column, crack formation and failure propagation. Further, Finite element (FE) analysis is carried out for validation of experimental studies and understanding the performance of structural components. Monolithic and precast beam column assemblies are modeled using non-linear Finite Element (FE) analysis based software ABAQUS. Actual experimental conditions are simulated using appropriate boundary and loading conditions. Finite Element simulation results in terms of load versus deflection are compared with that of experimental study. The nonlinear FE analysis results shows good agreement with experimental results.

거가대교 케이슨기초 그라우트 충전 사례연구 (A Case Study on Caisson Foundation Grouting in Geo-Ga Bridge)

  • 배경태;차경섭;김영진;박충환;정경환
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.1046-1050
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    • 2010
  • During construction of a sea-crossing bridge grouting was used to fill densely the space between the bottom of caisson and the ground. This grout mixture was mixed with an anti-washout admixture after locating accurately the pre-cast caisson on three concrete landing pads. This method differs significantly from the costly conventional method, for bridge foundations offshore, where concrete is placed in situ after excavating inside of a temporary concrete coffering wall. To verify the grouting method in advance, the full-scale field tests were performed twice on land. After identifying the fluidity of the grout material to be filled, finding some possible problems with the main construction and revising the original design, the main construction has been continuing successfully with 20 caissons completed to date. The purpose of this paper is to introduce for the first time in Korea the grouting method including the automatic and the manual monitoring system based on the main construction of the caisson foundation.

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Study on a seismic slit shear wall with cyclic experiment and macro-model analysis

  • Jiang, Huanjun;Lu, Xilin;Kwan, A.K.H.;Cheung, Y.K.
    • Structural Engineering and Mechanics
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    • 제16권4호
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    • pp.371-390
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    • 2003
  • The concept of the seismic slit shear wall was proposed in the early 1990's. A series of experimental and theoretic studies on the wall with reinforced concrete short connecting beams cast in the slit were carried out. In this paper another type of slit shear wall is studied. It is one with vertical slit purposely cast within the wall, and the rubber belt penetrated by a part of web shear reinforcement as seismic energy-dissipation device is filled in the slit. Firstly, an experiment under cyclic loading was carried out on two shear wall models, one slit and the other solid. The failure mechanism and energy-dissipation capacity are compared between the two different models, which testifies the seismic performance of the slit wall improved significantly. Secondly, for engineering practice purpose, a macroscopic analytical model is developed to predict the nonlinear behavior of the slit shear wall under cyclic loading. The mechanical properties of each constituent elements of this model are based on the actual behavior of the materials. Furthermore, the effects of both the axial force and bending moment on the shear behavior are taken into account with the aid of the modified compression-field theory. The numerical results are verified to be in close agreement with the experimental measurements.

Numerical and theoretical modelling of low velocity impact on UHPC panels

  • Prem, Prabhat R.;Verma, Mohit;Ramachandra Murthy, A.;Rajasankar, J.;Bharatkumar, B.H.
    • Structural Engineering and Mechanics
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    • 제63권2호
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    • pp.207-215
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    • 2017
  • The paper presents the studies carried out on low velocity impact of Ultra high performance concrete (UHPC) panels of size $350{\times}350{\times}10mm^3$ and $350{\times}350{\times}15mm^3$. The panels are cast with 2 and 2.5% micro steel fibre and compared with UHPC without fiber. The panels are subjected to low velocity impact, by a drop-weight hemispherical impactor, at three different energy levels of 10, 15 and 20 J. The impact force obtained from the experiments are compared with numerically obtained results using finite element method, theoretically by energy balance approach and empirically by nonlinear multi-genetic programming. The predictions by these models are found to be in good coherence with the experimental results.

Prediction of residual mechanical behavior of heat-exposed LWAC short column: a NLFE model

  • Obaidat, Yasmeen T.;Haddad, Rami H.
    • Structural Engineering and Mechanics
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    • 제57권2호
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    • pp.265-280
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    • 2016
  • A NLFE model was proposed to investigate the mechanical behavior of short columns, cast using plain or fibrous lightweight aggregate concrete (LWAC), and subjected to elevated temperatures of up to $700^{\circ}C$. The model was validated, before its predictions were extended to study the effect of other variables, not studied experimentally. The three-dimensional NLFE model was developed using ANSYS software and involved rational simulation of thermal mechanical behavior of plain and fibrous LWAC as well as longitudinal and lateral steel reinforcement. The prediction from the NLFE model of columns' mechanical behavior, as represented by the stress-strain diagram and its characteristics, compared well with the experimental results. The predictions of the proposed models, considering wide range of lateral reinforcement ratios, confirmed the behaviors observed experimentally and stipulated the importance of steel confinement in preserving post-heating mechanical properties of plain and fibrous LWAC columns, being subjected to high temperature.

내부충전 콘크리트와 전단철근을 이용한 중공 PHC말뚝의 전단보강 효과 (Shear Strength Enhancement of Hollow PHC Pile Reinforced with Infilled Concrete and Shear Reinforcement)

  • 현정환;방진욱;이승수;김윤용
    • 콘크리트학회논문집
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    • 제24권1호
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    • pp.71-78
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    • 2012
  • 이 논문에서는 기존 PHC말뚝의 전단성능을 향상시키기 위하여 전단철근과 내부충전 콘크리트로 보강한 ICP 말뚝을 제안하였다. 허용응력 설계법을 바탕으로 전단철근 및 내부충전 콘크리트를 설계하였으며, 이를 바탕으로 2종류의 시험체를 제작하여 KS규격에 따라 전단시험을 수행하였다. 전단시험 결과, KS규격에 의거한 시험방법으로는 전단파괴를 얻을 수 없었으나, 제안된 방법에 의한 전단보강효과는 충분히 검증할 수 있었다. ICP말뚝 시험체의 전단 저항력은 기존 PHC말뚝에 비하여 평균 2배 이상으로 증진되는 것으로 나타났다. 또한 축방향 철근을 추가 보강한 ICP말뚝 시험체의 전단 저항력은 기존 PHC말뚝에 비하여 평균 2.5배 이상 증진되었다. 한편 허용응력설계법에 따라 결정된 ICP 말뚝의 허용 전단력에 비하여 시험으로 측정된 전단강도는 약 2.9 이상의 안전율을 갖는 것으로 나타났다.

구조물 설계에 있어서 데이터베이스 관리 시스템의 응용에 관한 연구 -철근콘크리트 구조물 설계를 중심으로- (A Study on the Application of Database Management Systems to the Design of Structures -Cast of Reinforced Concrete Structure-)

  • 장주흠;윤성수;김한중;이정재
    • 한국농공학회지
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    • 제40권3호
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    • pp.103-112
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    • 1998
  • In this study, database schema which is capable of maintaining various design-knowledge and applicable to the structural designs has been presented. Futhermore, by utilizing the database system, RECODSS (REinforced COncrete Design Support System) was developed as well. Knowledge-base that were formulated from the document is constructed by applying the concrete standard specifications of Korea from 1989. The basic drawing was prepared by $AutoCAD^TM$. As an inference in the preliminary design, the certainty function and the interpolation function were presented. The certainty function is made by assuming linear relations between each data while referencing $MYCIN^TM$ (expert systems). Nevertheless, the interpolation function was made by utilizing the linear Lagrange interpolation. For the search of the design-knowledge, fast search algorithm and full-text search algorithm were used, however, the design engine was programmed with C language. RECODSS was applied for designing a slab and a beam member. And the results were compared with the existing results. In conclusion, RECODSS was able to efficiently manage various design knowledge and to introduce stable design results.

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Effect of silica fume and polyepoxide-based polymer on electrical resistivity, mechanical properties, and ultrasonic response of SCLC

  • Mazloom, Moosa;Allahabadi, Ali;Karamloo, Mohammad
    • Advances in concrete construction
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    • 제5권6호
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    • pp.587-611
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    • 2017
  • This study focused on the influences regarding the use of polyepoxide-based polymer and silica fume (SF) on the fresh and hardened state properties of self-compacting lightweight concrete (SCLC) along with their impacts on electrical resistance and ultrasonic pulse velocity (UPV). To do so, two series of compositions each of which consists of twelve mixes, with water to binder (W/B) ratios of 0.35 and 0.4 were cast. Three different silica fume/binder ratios of 0, 5%, and 10% were considered along with four different polymer/binder ratios of 0, 5%, 10%, and 15%. Afterwards, the rupture modulus, tensile strength, 14-day, 28-day, and 90-day compressive strength, the UPV and the electrical resistance of the mixes were tested. The results indicated that although the use of polymer could enhance the passing and filling abilities, it could lead to a decrease of segregation resistance. In addition, the interaction of the SF and the polymeric contents enhanced the workability. However, the impacts regarding the use of polymeric contents on fresh state properties of SCLC were more prevalent than those regarding the use of SF. Besides the fresh state properties, the durability and mechanical properties of the mixes were affected due to the use of polymeric and SF contents. In other words, the use of the SF and the polymer enhanced the durability and mechanical properties of SCLC specimens.

철도교용 단지간 프리캐스트 콘크리트패널의 개발 (Development of Short-span Precast Concrete Panels for Railway Bridge)

  • 설대호;이경찬;김기현;윤석구
    • 콘크리트학회논문집
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    • 제28권5호
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    • pp.545-553
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    • 2016
  • 이 논문에는 교량바닥판의 지간장이 짧은 단지간용 프리캐스트 콘크리트패널에 대해 수행한 정적하중 재하실험 결과들을 나타내었다. 단지간용 콘크리트패널은 콘크리트패널 하면에 콘크리트리브가 부착되어 있으며, 기존 LB-DECK과 달리 콘크리트패널 상면에 Top bar가 없는 단면이다. 콘크리트패널에 부착되는 콘크리트리브의 개수와 단면 상세는 교량바닥판의 지간장과 철근콘크리트바닥판 두께 변화에 따른 설계하중에 대해 변수해석 결과를 토대로 결정하였다. 콘크리트패널 상면에는 현장타설되는 콘크리트와 합성거동을 위해 전단철근을 배치하였다. 변수해석을 통해 산정된 콘크리트패널이 설계하중에 대해 사용성과 안전성을 만족하는 가를 확인하기 위해 정적하중 재하실험을 수행하였다. 지간장 1.6 m인 단지간 콘크리트패널 실험체 3개 제작한 후 정적하중 재하하면서 각 실험체의 처짐, 균열, 그리고 최종 파괴양상을 살펴보았다. 설계하중이 작용할 때 각 실험체의 처짐, 균열하중, 그리고 균열폭을 토대로 사용성을 평가하였다. 또한 각 실험체의 최종 파괴양상과 극한강도를 토대로 계수설계하중에 대한 안전성을 평가하였다. 실험 결과 단지간용 콘크리트패널이 사용성과 안전성을 만족하는 것을 확인할 수 있었다. 추가적으로 단지간용 콘크리트패널을 적용할 수 있는 교량바닥판의 지간장 범위를 검토하였다.