• 제목/요약/키워드: Steel plate concrete structure

검색결과 159건 처리시간 0.026초

친환경시멘트 콘크리트를 사용한 강판콘크리트구조의 압축거동 (Compressive Behavior of Steel Plate-Concrete Structures using Eco-Oriented Cement Concrete)

  • 강철규;최병정;정백선
    • 한국강구조학회 논문집
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    • 제24권5호
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    • pp.583-593
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    • 2012
  • 강판콘크리트(SC)구조에 관한 국내의 연구는 내력을 많이 요구하는 원전건물을 중심으로 연구가 진행되었다. 또한 SC구조는 공장생산과 모듈화시공을 통한 공기단축이 가능한 장점을 가지고 있다. 본 연구에서는 중 저층의 일반건물에서 낮은 강도로 사용 할 수 있는 SC구조의 토대를 마련하고자 하였다. 강도를 저감시키는 방법으로 친환경재료인 황토와 시멘트를 조합하여 중요도가 낮은 건물에 사용이 가능하도록 하였다. 본 연구에서는 중심압축하중을 받는 기둥부재를 대상으로 압축거동, 유효길이계수, 좌굴하중, 강판좌굴 및 스터드의 성능을 검증하였다.

횡방향 가력실험 및 충격실험을 통한 강판콘크리트(SC) 전단벽의 감쇠비 평가 (Investigation of Damping Ratio of Steel Plate Concrete (SC) Shear Wall by Lateral Loading Test & Impact Test)

  • 조성국;소기환;박웅기
    • 한국지진공학회논문집
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    • 제17권2호
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    • pp.79-88
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    • 2013
  • Steel plate concrete (SC) composite structure is now being recognized as a promising technology applicable to nuclear power plants as it is faster and suitable for modular construction. It is required to identify its dynamic characteristics prior to perform the seismic design of the SC structure. Particularly, the damping ratio of the structure is one of the critical design factors to control the dynamic response of structure. This paper compares the criteria for the damping ratios of each type of structures which are prescribed in the regulatory guide for the nuclear power plant. In order to identify the damping ratio of SC shear wall, this study made SC wall specimens and conducted experiments by cyclic lateral load tests and vibration tests with impact hammer. During the lateral loading test, SC wall specimens exhibited large ductile capacities with increasing amplitude of loading due to the confinement effects by the steel plate and the damping ratios increased until failure. The experimental results show that the damping ratios increased from about 6% to about 20% by increasing the load from the safe shutdown earthquake level to the ultimate strength level.

비보강 강판콘크리트 전단벽의 횡하중 성능 및 강도특성에 대한 실험적 평가 (Experimental Investigation of the Lateral Load Capacity and Strength Characteristics of a Steel Plate Concrete (SC) Shear Wall)

  • 조성국;소기환;김두기;권민호
    • 한국지진공학회논문집
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    • 제16권5호
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    • pp.23-32
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    • 2012
  • 최근 국내에서는 원자력발전소의 모듈화 공법에 적용하기 위하여 SC(steel plate concrete) 구조를 개발하는 연구를 진행하고 있다. 이 연구에서는 전단보강이 없는 비보강 SC 전단벽의 횡방향 내진성능 및 강성특성에 대하여 분석하기 위하여 전단벽 모형 시편을 제작하고, 이를 대상으로 정적가력실험을 수행하였다. 실험 결과를 이용하여, 이 논문에서는 비보강 SC 구조의 횡력에 대한 파괴모드의 유형을 분석하고, 단면강도와 부재의 강성 특성을 검토하였다. 그리고 SC 구조용 설계기준에서 제시하는 단면의 강도 계산식과 실험결과를 비교하였다. 연구결과, 비보강 SC 전단벽의 파괴 형태의 하나는 콘크리트와 강판의 부착 상실로 인한 휨전단파괴라는 사실을 발견하였다. SC 구조 전단벽의 벽체 길이방향 거동은 파괴 시까지 벽체 외측의 강판이 내부 콘크리트를 구속하는 효과를 기대할 수 있으므로 연성능력이 향상되는 것이 확인되었다

Experimental study on all-bolted joint in modularized prefabricated steel structure

  • Wu, Zhanjing;Tao, Zhong;Liu, Bei;Zuo, Heng
    • Structural Engineering and Mechanics
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    • 제73권6호
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    • pp.613-620
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    • 2020
  • The research study is focuses on a form of all-bolted joint with the external ring stiffening plate in the prefabricated steel structure. The components are bolted at site after being fabricated in the factory. Six specimens were tested under cyclic loading, and the effects of column axial compression ratio, concrete-filled column, beam flange sub plate, beam web angle cleats, and spliced column on the failure mode, hysteretic behavior and ductility of the joints were analyzed. The results shown that the proposed all-bolted joint with external ring stiffening plate performed high bearing capability, stable inflexibility degradation, high ductility and plump hysteretic curve. The primary failure modes were bucking at beam end, cracking at the variable section of the external ring stiffening plate, and finally welds fracturing between external ring stiffening plate and column wall. The bearing capability of the joints reduced with the axial compression ratio increased. The use of concrete-filled steel tube column can increase the bearing capability of joints. The existence of the beam flange sub plate, and beam web angle cleat improves the energy dissipation, ductility, bearing capacity and original rigidity of the joint, but also increase the stress concentration at the variable section of the external reinforcing ring plate. The proposed joints with spliced column also performed desirable integrity, large bearing capacity, initial stiffness and energy dissipation capacity for engineering application by reasonable design.

New technique for strengthening reinforced concrete beams with composite bonding steel plates

  • Yang, Su-hang;Cao, Shuang-yin;Gu, Rui-nan
    • Steel and Composite Structures
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    • 제19권3호
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    • pp.735-757
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    • 2015
  • Composite bonding steel plate (CBSP) is a newly developed type of structure strengthened technique applicable to the existing RC beam. This composite structure is applicable to strengthening the existing beam bearing high load. The strengthened beam consists of two layers of epoxy bonding prestressed steel plates and the RC beam sandwiched in between. The bonding enclosed and prestressed U-shaped steel jackets are applied at the beam sides. This technique is adopted in case of structures with high longitudinal reinforcing bar ratio and impracticable unloading. The prestress can be generated on the strengthening steel plates and jackets by using the CBSP technique before loading. The test results of full-scale CBSP strengthened beams show that the strength and stiffness are enhanced without reduction of their ductility. It is demonstrated that the strain hysteresis effect can be effectively overcome after prestressing on the steel plates by using such technique. The applied plates and jackets can jointly behave together with the existing beam under the action of epoxy bonding and the mechanical anchorage of the steel jackets. The simplified formulas are proposed to calculate the prestress and the ultimate capacities of strengthened beams. The accuracy of formulas was verified with the experimental results.

Racking shear resistance of steel frames with corner connected precast concrete infill panels

  • Hoenderkamp, J.C.D.;Snijder, H.H.;Hofmeyer, H.
    • Steel and Composite Structures
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    • 제19권6호
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    • pp.1403-1419
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    • 2015
  • When precast concrete infill panels are connected to steel frames at discrete locations, interaction at the structural interface is neither complete nor absent. The contribution of precast concrete infill panels to the lateral stiffness and strength of steel frames can be significant depending on the quality, quantity and location of the discrete interface connections. This paper presents preliminary experimental and finite element results of an investigation into the composite behaviour of a square steel frame with a precast concrete infill panel subject to lateral loading. The panel is connected at the corners to the ends of the top and bottom beams. The Frame-to-Panel-Connection, FPC4 between steel beam and concrete panel consists of two parts. A T-section with five achor bars welded to the top of the flange is cast in at the panel corner at a forty five degree angle. The triangularly shaped web of the T-section is reinforced against local buckling with a stiffener plate. The second part consists of a triangular gusset plate which is welded to the beam flange. Two bolts acting in shear connect the gusset plate to the web of the T-section. This way the connection can act in tension or compression. Experimental pull-out tests on individual connections allowed their load deflection characteristics to be established. A full scale experiment was performed on a one-storey one-bay 3 by 3 m infilled frame structure which was horizontally loaded at the top. With the characteristics of the frame-to-panel connections obtained from the experiments on individual connections, finite element analyses were performed on the infilled frame structures taking geometric and material non-linear behaviour of the structural components into account. The finite element model yields reasonably accurate results. This allows the model to be used for further parametric studies.

강박스 거더교 콘크리트 바닥판에 발생하는 크리프, 건조수축, 수화열에 관한 연구 (A Study on Creep, Drying Shrinkage, Hydration Heat Produced in Concrete Floor Plate of Steel Box Girdler Bridge)

  • 강성후;박선준;김민성
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.457-462
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    • 2003
  • It studies the non-structural crack factors that are produced in Steel Box Girder Bridge concrete floor plate using analytical method. It mainly studies humidity and design standard of concrete strength. It used MIDAS CIVIL Ver 5.4.0, a general structure analysis program that applies drying shrinkage rate of domestic road bridge design standard and standard value of creep coefficient, CEF-FIP standard equation and ACI standard equation from the aspect of creep, drying shrinkage and hydration heat to see the effect of the two factors on concrete crack and found the following result. The analytical results of this study showed that the initial stress, which was obtained by ACI standard, exceeds the allowable tensile stress between 5 to 18 days. This result means that even if a bridge is designed and constructed according to design standard, the bridge can have cracks due to various variables such as drying shrinkage, hydration heat and creep that produce stress in slab.

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철근콘크리트 유공보에 관한 연구 (A Study on Reinforced Concrete Beams with Perforation)

  • 박경호
    • 산업기술연구
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    • 제21권A호
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    • pp.7-14
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    • 2001
  • In building structure, the story height can be minimized by providing openings in beams which serves for the utility equipments passing through. The dead space in false ceiling thus put to economical use in the form of a substantial reduction in materials and construction cost. In the case of steel structure, there is no critical risk in the structural strength because of reinforcing methods of stiffness and steel plate but in the case of reinforced concrete structure, proper provision should be made in designing these openings, otherwise there is a risk that these opening will possibly weaken the structural strength of the building frame to a critical degree. In this paper, for the numerical analysis of the reinforced concrete beams with circular opening in the web, expecting stress concentration of the circular opening, reinforcing methods were studied. Twenty test pieces with each different reinforcing methods were tested and their resisting forces were defined. From the numerical analysis and test results, the followings were founded;(1)high shear stress distributed around the openings reduce the shearing strength, (2)from the numerical analysis, the maximum tensile stress occurred at opening nodes 1,7, these phenomena were agreed with the test results, (3)reinforcing method around openings have to carried out for stopping diagonal cracks, and (4)both, by steel plate, and wire mesh, are effective reinforcing methods.

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강재엘리베이터 피트 측압저항 구조성능에 관한 실험적 연구 (An Experimental Study on the Structural Performance of Lateral Resistance in Steel Elevator Pit)

  • 홍성욱;김태수;백기열
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권3호
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    • pp.1-8
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    • 2019
  • 일반 건축구조물에 적용된 엘리베이터 피트는 기초판의 연속성을 확보하기 위하여 단차부 벽체 및 피트 바닥 두께를 주변기초와 동일한 단면으로 구조설계 및 시공을 하였으나, 이러한 시공은 기초 단차로 인한 터파기 과다 및 콘크리트 등 재료의 물량이 증가하고, 특히 파일기초의 경우 파일두부정리 범위 과다 및 연약지반 노출 시 지반변위가 발생하게 된다. 또한, 단차로 인하여 기초부위의 골조공사를 2회 분할 시공함에 따른 공기지연과 지하수가 많은 지역에서의 골조공사의 어려움으로 인하여 시공성과 품질저하 및 누수 등 많은 문제점이 발생하고 있다. 강재엘리베이터 피트는 기존 철근콘크리트에서 발생하였던 문제점을 개선하여 터파기의 최소화와 골조공사의 단순화 및 경제성을 목적으로 개발되었다. 지하층의 집수정 및 엘리베이터 피트와 같은 지하구체는 통상 오픈 컷 터파기를 통한 재래식 RC공법을 적용하는 것이 보편적이나 최근 지하집수정 및 엘리베이터 피트에 소요되는 별도의 공정을 단축시키고 철근과 콘크리트의 물량을 최소화하여 공사비를 절감하기 위한 강재 집수정 및 강재엘리베이터 피트의 사용이 지속적으로 증가하고 있다. 강재엘리베이터 피트는 지하구체로서 용접부 및 구조체 방식의 성능이 중요하다. 데크만 있는 실험체보다 스터드 볼트 없이 강판과 콘크리트만 있는 실험체가 약 3배 이상의 하중을 지지할 수 있으므로 스터드 볼트가 없더라도 데크(강판)의 골이 형성되어 있어 휨작용 시 강판과 콘크리트의 구속효과가 있어 어느 정도까지의 합성효과는 기대할 수 있는 것을 확인하였다. 다만, 갑작스런 파단이 발생할 수 있으므로, 강판과 콘크리트의 합성효과를 위해 스터드 볼트 배치가 필요함을 확인하였다. 스터드 볼트의 유무에 따라 약 15% 이상의 휨강도 증가를 기대할 수 있을 것이라 예상된다.

슬립을 고려한 혼합구조 접합부의 비선형 해석 (Nonlinear Analysis of Mixed Structure with Connection Slip)

  • 성재진;허택녕;이윤수;조성용
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2006년도 정기 학술대회 논문집
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    • pp.615-622
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    • 2006
  • As construction technique and design are developing, the bridge tend to be longer, and also the type of bridge is verity. Steel and concrete combination improve the mechanics characteristic and economical efficient which Hybrid Structure divide Mixed Structure with Composite Structure. The connected section of the Mixed Structure should integrate steel and concrete that should show the same behavior as well, And also this connection needs big interna1 force and stiffness because it used to be a most dangerous section. This study carry out a nonlinear analysis technique with slip, check out each different type of section force's transfer mechanism on the connection. And this analysis was carried out using parameter that are front plate thickness, connection length, filled concrete strength and so on. We confirmed the profitable type of connection is front backward type. The biggest stiffness and certain stress transmission are showed at the ratio 0.075 between total length and connection length, and also most economical front plate thickness is judged when it set three times thicker than flange.

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