• 제목/요약/키워드: Eurocode 2

검색결과 150건 처리시간 0.023초

Review of Resilience-Based Design

  • Ademovic, Naida;Ibrahimbegovic, Adnan
    • Coupled systems mechanics
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    • 제9권2호
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    • pp.91-110
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    • 2020
  • The reliability of structures is affected by various impacts that generally have a negative effect, from extreme weather conditions, due to climate change to natural or man-made hazards. In recent years, extreme loading has had an enormous impact on the resilience of structures as one of the most important characteristics of the sound design of structures, besides the structural integrity and robustness. Resilience can be defined as the ability of the structure to absorb or avoid damage without suffering complete failure, and it can be chosen as the main objective of design, maintenance and restoration for structures and infrastructure. The latter needs further clarification (which is done in this paper), to achieve the clarity of goals compared to robustness which is defined in Eurocode EN 1991-1-7 as: "the ability of a structure to withstand events like fire, explosions, impact or the consequences of human error, without being damaged to an extent disproportionate to the original cause". Many existing structures are more vulnerable to the natural or man-made hazards due to their material deterioration, and a further decrease of its loadbearing capacity, modifying the structural performance and functionality and, subsequently, the system resilience. Due to currently frequent extreme events, the design philosophy is shifting from Performance-Based Design to Resilience-Based Design and from unit to system (community) resilience. The paper provides an overview of such design evolution with indicative needs for Resilience-Based Design giving few conducted examples.

Effect of local small diameter stud connectors on behavior of partially encased composite beams

  • Nguyen, Giang Bergerova;Machacek, Josef
    • Steel and Composite Structures
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    • 제20권2호
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    • pp.251-266
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    • 2016
  • The paper combines two distinct parts. First the behavior of welded headed studs with small diameters of 10 and 13 mm acting as shear connectors (which are not embraced in current standards) is studied. Based on standard push tests the load-slip relationships and strengths are evaluated. While the current standard (Eurocode 4 and AISC) formulas used for such studs give reasonable but too conservative strengths, less conservative and full load-slip rigidities are evaluated and recommended for a subsequent investigation or design. In the second part of the paper the partially encased beams under bending are analyzed. Following former experiments showing rather indistinct role of studs used for shear connection in such beams their role is studied. Numerical model employing ANSYS software is presented and validated using former experimental data. Subsequent parametric studies investigate the longitudinal shear between steel and concrete parts of the beams with respect to friction at the steel and concrete interface and contribution of studs with small diameters required predominantly for assembly stages (concreting). Substantial influence of the friction and effect of concrete confinement was observed with rather less noticeable contribution of the studs. Distribution of the longitudinal shear and its sharing between friction and studs is presented with concluding remarks.

고온 강구조 압축재의 좌굴 강도에 관한 연구 (A Study on Buckling Strengths for Steel Compression Members at High Temperatures)

  • 최현식
    • 한국공간구조학회논문집
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    • 제19권2호
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    • pp.73-81
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    • 2019
  • The high-temperature properties of mild steels were studied by comparing the test results of Kwon and the yield strength, tangent modulus predicted by the design provisions of ASCE and Eurocode(EC3). The column strengths for steel members at high temperatures were determined by the elastic and inelastic buckling strengths according to elevated temperatures. The material properties at high temperatures should be used in the strength evaluations of high temperature members. The buckling strengths obtained from the AISC, EC3 and approximate formula proposed by Takagi et al. were compared with ones calculated by the material nonlinear analysis using the EC3 material model. The newly simplified formulas for yield stress, tangent modulus, proportional limit and buckling strength which were proposed through a comparative study of the material properties and buckling strengths. The buckling strengths of proposed formulas were approximately equivalent to ones obtained from the formulas of Takagi et al. within 4%. They were corresponded to the lower bound values among the buckling strengths calculated by the design formulas and inelastic buckling analysis.

연속 캡 형상 전단연결재의 전단 내력에 관한 실험 연구 (Experimental Study on the Shear Capacity of Continuous Cap-Type Shear Connector)

  • 오명호;김영호;정석창;김명한
    • 한국공간구조학회논문집
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    • 제19권2호
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    • pp.91-99
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    • 2019
  • The push-out tests have been conducted on the specimens which consist of the steel beam with U-shape section and the continuous cap-type shear connector. Existing formulas for the elevation of shear connector capacity were investigated on the basis of test results. The shear capacities of continuous cap-type shear connectors distinctly declined as the diameters of side-hole in the shear connector increased. The rebars through side-hole for the transverse reinforcement improved the shear capacity of continuous cap-type connector by 20 to 30 percent. It was not feasible to obtain the appropriate capacity values of continuous cap-type shear connectors made of thin steel plate like those of in this study, using the existing formulas. The new formula for reflecting the shear strength of penetrative bars was proposed based on the shear equation of Eurocode 4. The slip capacities of continuous cap-type shear connectors were shown to exceed the limit value of 6mm for the sufficiently ductile behavior.

An experimental and numerical analysis of concrete walls exposed to fire

  • Baghdadi, Mohamed;Dimia, Mohamed S.;Guenfoud, Mohamed;Bouchair, Abdelhamid
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.819-830
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    • 2021
  • To evaluate the performance of concrete load bearing walls in a structure under horizontal loads after being exposed to real fire, two steps were followed. In the first step, an experimental study was performed on the thermo-mechanical properties of concrete after heating to temperatures of 200-1000℃ with the purpose of determining the residual mechanical properties after cooling. The temperature was increased in line with natural fire curve in an electric furnace. The peak temperature was maintained for a period of 1.5 hour and then allowed to cool gradually in air at room temperature. All specimens were made from calcareous aggregate to be used for determining the residual properties: compressive strength, static and dynamic elasticity modulus by means of UPV test, including the mass loss. The concrete residual compressive strength and elastic modulus values were compared with those calculated from Eurocode and other analytical models from other studies, and were found to be satisfactory. In the second step, experimental analysis results were then implemented into structural numerical analysis to predict the post-fire load-bearing capacity response of the walls under vertical and horizontal loads. The parameters considered in this analysis were the effective height, the thickness of the wall, various support conditions and the residual strength of concrete. The results indicate that fire damage does not significantly affect the lateral capacity and stiffness of reinforced walls for temperature fires up to 400℃.

Behaviors of UHPC-filled Q960 high strength steel tubes under low-temperature compression

  • Yan, Jia-Bao;Hu, Shunnian;Luo, Yan-Li;Lin, Xuchuan;Luo, Yun-Biao;Zhang, Lingxin
    • Steel and Composite Structures
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    • 제43권2호
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    • pp.201-219
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    • 2022
  • This paper firstly proposed high performance composite columns for cold-region infrastructures using ultra-high performance concrete (UHPC) and ultra-high strength steel (UHSS) Q960E. Then, 24 square UHPC-filled UHSS tubes (UHSTCs) at low temperatures of -80, -60, -30, and 30℃ were performed under axial loads. The key influencing parameters on axial compression performance of UHSS were studied, i.e., temperature level and UHSS-tube wall thickness (t). In addition, mechanical properties of Q960E at low temperatures were also studied. Test results revealed low temperatures improved the yield/ultimate strength of Q960E. Axial compression tests on UHSTCs revealed that the dropping environmental temperature increased the compression strength and stiffness, but compromised the ductility of UHSTCs; increasing t significantly increased the strength, stiffness, and ductility of UHSTCs. This study developed numerical and theoretical models to reproduce axial compression performances of UHSTCs at low temperatures. Validations against 24 tests proved that both two methods provided reasonable simulations on axial compression performance of UHSTCs. Finally, simplified theoretical models (STMs) and modified prediction equations in AISC 360, ACI 318, and Eurocode 4 were developed to estimate the axial load capacity of UHSTCs at low temperatures.

화재시 고강도강 엔드플레이트 접합부의 회전 거동에 관한 연구 (A Study on Rotation Behavior of High Strength Steel Endplate Connections under Fire)

  • 신수민;이치형;윤성기
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권5호
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    • pp.35-43
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    • 2016
  • 본 연구에서는 고온시 고강도강재를 사용한 엔드플레이트 접합부의 회전 거동 변화를 파악하기 위해 유한요소 해석프로그램을 이용하여 모델링하고 기존 연구를 대상으로 비교분석한다. Eurocode 3에서는 휨 저항모멘트에 대한 예측식이 주어지고, 이를 통해 3가지 파괴모드를 파악한다. 해석 모델은 온도, 엔드플레이트 두께 및 강재를 변수로 하여 이에 따른 초기회전강성, 소성회전강성 및 휨 저항모멘트 등을 분석한다. 회전강성 및 휨 저항모멘트는 엔드플레이트의 두께 및 재료에 따른 변화를 온도 별로 분석하고 회귀식을 제시하여 고강도강재를 사용한 접합부의 변화를 비교하고자 한다. 그 결과 초기회전강성은 1차식, 소성회전강성 및 휨 저항모멘트는 2차식으로 회귀식을 제시하였다. 고온시 고강도강재는 일반강재에 비해 휨 저항모멘트비는 감소하였고 두께에 대한 영향이 더 작았다. 고온시 고강도강재를 적용하였을 때 상온시에 비해 초기회전강성 기울기는 감소하였고 휨 저항모멘트의 증가율은 완만하게 나타났으며, 소성회전강성 변화는 영향을 미치지 않았다.

다양한 전단보강근비를 가진 RC보의 화재노출시간에 따른 강도변화 (Strength of RC Beam with Various Shear Reinforcement Ratios After Experiencing Different Duration of Fire Load)

  • 서수연;정채명;최기봉
    • 한국구조물진단유지관리공학회 논문집
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    • 제14권6호
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    • pp.188-197
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    • 2010
  • 본 연구에서는 전단보강근 비율이 다양한 철근콘크리트 보에 대하여 가열시간을 각각 달리한 후 그 구조성능변화를 실험적으로 연구하였다. 또한 기존의 기준에서 적용하고 있는 부재의 내력산정방법에 대한 검증을 통하여 화재손상된 철근콘크리트 강도예측을 위한 자료를 제공하고자 한다. 이를 위하여 9개의 철근콘크리트 보를 제작하여 표준가열곡선에 따라 가열로에서 가열시험을 실시하고, 이들 손상된 보에 대한 파괴실험을 통하여 구조성능의 변화를 관찰하였다. 또한 부재와 동일한 피복을 가진 철근에 대하여 가열후 철근강도변화를 관찰하여 가열에 따른 철근의 물성변화를 파악하였다. ACI기준과 Eurocode 기준을 분석하고 실험결과와의 비교를 통하여 화재손상된 RC부재의 구조성능변화를 평가하였다. 연구결과, 1시간과 2시간 가열된 실험체가 무가열실험체들에 비하여 매우 취성적인 파괴양상을 보였고, 이러한 양상은 전단 보강근비가 작아질수록 그리고 가열시간이 증가할 수록 심하게 나타났으며, 화재에 의한 재료손상의 정확한 예측이 가능할 경우, 부재의 구조성능변화는 충분히 평가가능한 것으로 나타났다.

원형 철근콘크리트 교각의 내진성능 I. 심부구속철근비 영향 변수 평가 (A Seismatic Performance Analysis of Circular RC Bridge Piers I. Evaluation of Influence Parameters of Confinement Steel Ratio)

  • 이대형;박창규;김현준;정영수
    • 콘크리트학회논문집
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    • 제17권4호
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    • pp.603-611
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    • 2005
  • 본 연구에서는 합리적인 내진설계기준의 정립을 위하여 철근콘크리트 교각의 내진성능에 영향을 미치는 주요 인자에 대하여 분석하였다. 주요 각국의 내진규정에서 내진성능을 발휘하기 위한 심부구속철근량을 규정함에 있어 다양한 요소들을 고려하고 있다. 하지만, 이러한 요소들이 합리적으로 고려되었는가에 대해서는 의문이 남는다. 따라서 본 연구에서 국내의 도로교설계기준, Eurocode 8 part2, NZS 3101, ATC-32 등의 설계기준을 비교분석하고, 기존 실험 연구 결과와 비교 분석하여 합리적인 영향인자들을 제안하고자 하였다. 연구결과에 따르면 원형 철근콘크리트 교각의 내진성능에 가장 지배적인 영향인자는 축하중비인 것으로 조사되었다. 따라서 심부구속철근비 산정식에 축하중비의 영향을 전혀 고려하고 있지 않는 현행 도로교설계기준에 축하중비를 도입해야 한다.

Experimental investigation of carbon steel and stainless steel bolted connections at different strain rates

  • Cai, Yancheng;Young, Ben
    • Steel and Composite Structures
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    • 제30권6호
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    • pp.551-565
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    • 2019
  • A total of 36 carbon steel and stainless steel bolted connections subjected to shear loading at different strain rates was experimentally investigated. The connection specimens were fabricated from carbon steel grades 1.20 mm G500 and 1.90 mm G450, as well as cold-formed stainless steel types EN 1.4301 and EN 1.4162 with nominal thickness 1.50 mm. The connection tests were conducted by displacement control test method. The strain rates of 10 mm/min and 20 mm/min were used. Structural behaviour of the connection specimens tested at different strain rates was investigated in terms of ultimate load, elongation corresponding to ultimate load and failure mode. Generally, it is shown that the higher strain rate on the bolted connection specimens, the higher ultimate load was obtained. The ultimate loads were averagely 2-6% higher, while the corresponding elongations were averagely 8-9% higher for the test results obtained from the strain rate of 20 mm/min compared with those obtained from the lower strain rates (1.0 mm/min for carbon steel and 1.5 mm/min for stainless steel). The connection specimens were generally failed in plate bearing of the carbon steel and stainless steel. It is shown that increasing the strain rate up to 20 mm/min generally has no effect on the bearing failure mode of the carbon steel and stainless steel bolted connections. The test strengths and failure modes were compared with the results predicted by the bolted connection design rules in international design specifications, including the Australian/New Zealand Standard (AS/NZS4600 2018), Eurocode 3 - Part 1.3 (EC3-1.3 2006) and North American Specification (AISI S100 2016) for cold-formed carbon steel structures as well as the American Specification (ASCE 2002), AS/NZS4673 (2001) and Eurocode 3 - Part 1.4 (EC3-1.4 2015) for stainless steel structures. It is shown that the AS/NZS4600 (2018), EC3-1.3 (2006) and AISI S100 (2016) generally provide conservative predictions for the carbon steel bolted connections. Both the ASCE (2002) and the EC3-1.4 (2015) provide conservative predictions for the stainless steel bolted connections. The EC3-1.3 (2006) generally provided more accurate predictions of failure mode for carbon steel bolted connections than the AS/NZS4600 (2018) and the AISI S100 (2016). The failure modes of stainless steel bolted connections predicted by the EC3-1.4 (2015) are more consistent with the test results compared with those predicted by the ASCE (2002).