• 제목/요약/키워드: composite slabs

검색결과 227건 처리시간 0.03초

탄성지지된 복합재료 상판의 고유 진동수 (Natural Frequency of Elastic Supported Building Slab)

  • 김덕현;이정호;박정호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1997년도 가을 학술발표회 논문집
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    • pp.215-222
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    • 1997
  • A method of calculating the natural frequency corresponding to the first mode of vibration of beams and tower structures, with irregular cross-sections and with arbitrary boundary conditions was developed and reported by D. H. Kim in 1974. This method has been developed for two-dimensional problems including the laminated composite plates and was proved to be very effective for the plates with arbitrary boundary conditions and irregular sections. In this paper, the result of application of this method to the subject problem is presented. This problem represents the building slabs with a kind of passive and active control devices. Any method may 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 on the natural frequency is thoroughly studied.

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Girder의 강성을 고려한 복합 재료 교량 상판의 구조 거동 (Structural Behavior of Composite Liminate Bridge Deck Considering a Girder Stiffness)

  • 박제선;이정호;원치문;심도식
    • 산업기술연구
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    • 제18권
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    • pp.107-115
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    • 1998
  • Many of the bridge and building floor systems, including the girders and cross-beams, also behave a similar special orthotropic plates. Such plates are subject to the concentrate masses in the form of traffic loads, or the test equipments such as the accelerator in addition to their own masses. Analysis of such problems is usually very difficult. Most of the bridge slabs on girders have large aspect ratios. Finite difference method is used for this purpose, in this paper. The result is compared with that of the beam theory.

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CFRP 판으로 전단 보강된 이후 동결융해에 노출된 철근콘크리트 보의 보강성능 및 파괴특성 (Strengthening Performance and Failure Characteristics of Reinforced Concrete Beams Exposed to Freezing-and-thawing Cycles after Shear Strengthening with CFRP Plate)

  • 윤현도;김선우;전에스더;이민정
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2008년도 정기총회 및 학술발표대회
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    • pp.457-460
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    • 2008
  • CFRP plates has been established as an effective method for rehabilitation and strengthening of concrete structures. The CFRP reinforcements are bonded to beams and slabs using structural adhesives. Adhesive strength can be affected by environmental exposure. During freezing-and-thawing cycling, temperature-induced stresses in the adhesive layer, due to differential thermal expansion between the CFRP and the substrate concrete, may lead to bond damage and contribute to or cause premature CFRP composite separation. This paper presents the results of experimental program undertaken to investigate the effects of freeze-thaw cycling (from -18 to $4^{\circ}C$) on the behavior and failure characteristics of RC beams strengthened in shear with CFRP plate using acoustic emission (AE) technique.

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Experimental and numerical study of large high strength bolt shear connector embedded in HFRC

  • Yuliang He;Zhengxin Wang;Weiming Wu;Ying Yang;Yiqiang Xiang
    • Steel and Composite Structures
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    • 제49권2호
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    • pp.197-213
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    • 2023
  • To investigate the static properties of large high strength bolt shear connector in hybrid fiber-reinforced concrete (HFRC) and normal concrete (NC), eight push-out test specimens with single/double nut and HFRC/NC slabs were designed and push-out tests were conducted. A fine 3D nonlinear finite element (FE) model including HFRC constitutive model was established by using ANSYS 18.0, and the test results were used to verify FE models of the push-out test specimens. Then a total of 13 FE models were analyzed with various parameters including fiber volume fractions of HFRC, bolt diameter and thickness of steel flange. Finally, the empirical equations considering the contribution of polypropylene fiber (PF) and steel fiber (SF) obtained from the regression of the test results and FE analysis were recommended to evaluate the load-slip curve and ultimate capacity of the large high strength bolt shear connector embedded in HFRC/NC.

단기하중하의 국내 합성 더블티 슬래브 댑단부 전단거동 평가 (Evaluation on Shear Behaviors of the Dapped Ends of Domestic Composite Double Tee Slabs under the Short-Term Loading)

  • 유승룡
    • 콘크리트학회논문집
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    • 제14권5호
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    • pp.774-781
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    • 2002
  • 본 연구에서는 국내에서 활용하고있는 지간거리 l0m인 실물크기 4개의 싱글티 슬래브의 댑 단부에 대하여 8번의 전단실험을 실행하였다. 시험체는 국내 규준의 주차장을 위한 활하중 500kgf/$m^2$와 매장용도를 위한 활하중 1,200 kgf/$m^2$을 적용하여 설계하였다. 강도설계규준을 모두 만족시키면서 시험체에 적용시킨 변수는 걸이철근의 배근방법을 다르게하여 적용시켰다. 현재 국내에서 활용하는 PCI 배근방법에의한 단면과, 90$^{\circ}$절곡배근, 60$^{\circ}$절곡배근에 대한 각 실험결과를 비교 분석하였다. 1) 5mm깊이 빗질로 거칠게 마감한 플랜지 상부의 모든 시험체는 종국파괴까지 토핑콘크리트와 일체 거동하였다. 강선의 정착구 파괴로 인한 조기 파괴된 하나의 시험체를 제외하고서 주어진 강도규준 설계를 대체로 만족시켰다. 2) 걸이철근의 여러 가지 형태를 변수로 두어 실험한 결과 복부 전단균열과 수직으로 배치된 60$^{\circ}$절곡 배근형태의 시험체가 사용하중과 종국하중에서 가장 우수한 결과를 나타냈으며, PCI 형태의 일반배근, 90$^{\circ}$절곡배근의 순으로 전단성능이 좋게 평가되었다.

Bending analysis of nano-SiO2 reinforced concrete slabs resting on elastic foundation

  • Mohammed, Chatbi;Baghdad, Krour;Mohamed A., Benatta;Zouaoui R., Harrat;Sofiane, Amziane;Mohamed Bachir, Bouiadjra
    • Structural Engineering and Mechanics
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    • 제84권5호
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    • pp.685-697
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    • 2022
  • Nanotechnology has become one of the interesting technique used in material science and engineering. However, it is low used in civil engineering structures. The purpose of the present study is to investigate the static behavior of concrete plates reinforced with silica-nanoparticles. Due to agglomeration effect of silica-nanoparticles in concrete, Voigt's model is used for obtaining the equivalent nano-composite properties. Furthermore, the plate is simulated mathematically with higher order shear deformation theory. For a large use of this study, the concrete plate is assumed resting on a Pasternak elastic foundation, including a shear layer, and Winkler spring interconnected with a Kerr foundation. Using the principle of virtual work, the equilibrium equations are derived and by the mean of Hamilton's principle the energy equations are obtained. Finally, based on Navier's technique, closed-form solutions of simply supported plates have been obtained. Numerical results are presented considering the effect of different parameters such as volume percent of SiO2 nanoparticles, mechanical loads, geometrical parameters, soil medium, on the static behavior of the plate. The most findings of this work indicate that the use of an optimum amount of SiO2 nanoparticles on concretes increases better mechanical behavior. In addition, the elastic foundation has a significant impact on the bending of concrete slabs.

교량용 I형강 접합 절곡강합성 바닥판의 휨강성 분석 (Analysis For Effective Moment For Iinertia For Corrugated Steel-Concrete Composite Deck with I-beam Welded)

  • 손창두;박준명;한경봉;김준원;박선규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.209-212
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    • 2008
  • I형강 접합 절곡 강합성 바닥판은 절곡 바닥판내에 I형강을 매입하여 기존의 현장타설 철근콘크리트바닥판보다 경량화되고 하중저항성능 및 시공성을 향상시킨 강합성 바닥판이다. 현재 일반적인 철근콘크리트 구조물의 유효휨강성에 대한 계산은 도로교설계기준 및 ACI에서 제안하고 있는 방법을 사용하고 있다. 본 논문에서는 도로교설계기준 및 ACI에서 제안된 유효휨강성에 대한 산정 방법과 CEB-FIP MC-90에서 제안하고 있는 방법을 사용해 I형강 접합절곡강합성 바닥판의 유효휨강성을 계산하고 그에 대한 적합성을 평가하였다. 또한 전단연결재의 유 무, 단면의 변화, 부재연결 그리고 일반철근콘크리트보와의 비교등 4가지 실험변수를 두고 총 5개의 실험체를 제작 실험하였고 실험결과와 이론식으로 산정된 휨강성값을 비교,평가하여 실험변수에 따른 휨강성의 변화를 분석하였다. 실험결과 CEB-FIP MC-90에서 제안하고 있는 방법이 ACI에서 제안하고 있는 방법보다 만족스러운 결과를 나타냈으며, 전단연결재가 있고 콘크리트와 바닥판의 부착면적이 많은 경우에 하중저항 성능과 휨강성이 높게 나타났다.

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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.

FE validation of the equivalent diameter calculation model for grouped headed studs

  • Spremic, Milan;Pavlovic, Marko;Markovic, Zlatko;Veljkovic, Milan;Budjevac, Dragan
    • Steel and Composite Structures
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    • 제26권3호
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    • pp.375-386
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    • 2018
  • Existing design codes for steel-concrete composite structures give only general information about the shear connection provided by headed studs in group arrangement. Grouting of the openings in prefabricated concrete slabs, where the grouped headed studs are placed in the deck pockets is alternative to cast-in-place decks to accomplish fast execution of composite structures. This paper considers the possibility to reduce the distance between the studs within the group, bellow the Eurocode limitations. This may lead to increased competitiveness of the prefabricated construction because more studs are placed in the group if negative effectives of smaller distances between studs are limited. The main purpose of this work is to investigate these limits and propose an analytical calculation model for prediction of the shear resistance of grouped stud arrangements in the deck pockets. An advanced FEA model, validated by results of push-out experiments, is used to analyze the shear behavior of the grouped stud with smaller distance between them than recommended by EN 1994-1. Calculation model for shear resistance, which is consistent with the existing Eurocode rules, is proposed based on a newly introduced equivalent diameter of the stud group, $d_G$. The new calculation model is validated by comparison to the results of FE parametric study. The distance between the studs in the longitudinal direction and the number of stud rows and columns in the group are considered as the main variables.

Constructability Analysis of Green Columns at the Low Bending Moment Zone

  • Lee, Sung-Ho;Park, Jun-Young;Lim, Chae-Yeon;Kim, Sun-Kuk
    • Journal of Construction Engineering and Project Management
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    • 제3권4호
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    • pp.12-19
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    • 2013
  • Green Frame is an environmentally friendly column-beam system composed of composite PC members that can increase buildings' life spans while reducing resource consumption. Typically, connections of PC and RC columns occur at the boundaries of each floor, which is at the upper section of slabs, causing the boundary of each floor to generate the maximum moment. Although it is not optimal in terms of structural safety to connect members at a location where the moment is high, this approach is highly adopted due to its constructability. We propose that a superior approach that employs the concept of connecting columns at the low bending moment zone can be applied to quickly and safely install green columns, the main structural members of Green Frame. Connection of green columns at the low bending moment zone can be classified into three techniques, depending on the method of reinforcing the joints, which have different connection characteristics and construction methods. Research is needed to compare the features of each method of reinforcing the joints so that the most appropriate column connection method can be chosen for the site conditions. This study aims to confirm the structural safety of the connection component at the low bending moment zone and to compare and analyze the construction duration, unit price, quality and safety performance of each column connection method. The study results are anticipated to activate the use of composite precast concrete and to be used as development data in the future.