• Title/Summary/Keyword: eurocode 4

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Design models for predicting the resistance of headed studs in profiled sheeting

  • Vigneri, Valentino;Hicks, Stephen J.;Taras, Andreas;Odenbreit, Christoph
    • Steel and Composite Structures
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    • 제42권5호
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    • pp.633-647
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    • 2022
  • This paper presents the results from reliability analyses of the current Eurocode 4 (EN 1994-1-1) and AISC 360-16 design models for predicting the resistance of headed stud shear connectors within profiled steel sheeting, when the ribs are oriented transverse to the supporting beam. For comparison purposes, the performance of the alternative "Luxembourg" and "Stuttgart" model were also considered. From an initial database of 611 push-out tests, 269 cases were included in the study, which ensured that the results were valid over a wide range of geometrical and material properties. It was found that the current EN 1994-1-1 design rules deliver a corrected partial safety factor γM* of around 2.0, which is significantly higher than the target value 1.25. Moreover, 179 tests fell within the domain of the concrete-related failure design equation. Notwithstanding this, the EN 1994-1-1 equations provide satisfactory results for re-entrant profiled sheeting. The AISC 360-16 design equation for steel failure covers 263 of the tests in the database and delivers 𝛾M*≈2.0. Conversely, whilst the alternative "Stuttgart" model provides an improvement over the current codes, only a corrected partial safety factor of 𝛾M*=1.47 is achieved. Finally, the alternative "Luxembourg" design model was found to deliver the required target value, with a corrected partial safety factor 𝛾M* between 1.21 and 1.28. Given the fact that the Luxembourg design model is the only model that achieved the target values required by EN 1990, it is recommended as a potential candidate for inclusion within the second generation of Eurocodes.

강섬유로 보강된 초고성능 콘크리트 바닥판과 역T형 강거더 합성보의 휨거동 실험 (Experiment of Flexural Behavior of Composite Beam with Steel Fiber Reinforced Ultra High Performance Concrete Deck and Inverted-T Steel Girder)

  • 유성원;안영선;차영달;조창빈
    • 콘크리트학회논문집
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    • 제26권6호
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    • pp.761-769
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    • 2014
  • 인장강도 및 휨강도가 낮고 취성파괴의 특성을 가지는 일반적인 콘크리트의 단점을 극복하기 위하여 최근에는 압축강도가 180 MPa이상인 고성능 콘크리트에 강섬유를 혼입한 강섬유 보강 초고성능 콘크리트(UHPC)에 대한 연구가 활발히 진행되고 있다. UHPC 바닥판과 강재 거더를 이용하여 합성보를 구성할 때, UHPC 바닥판의 높은 강도와 강성으로 인하여 강재거더 상부 플랜지의 역할이 거의 불필요할 것으로 예상된다. 이러한 점을 착안하여 본 논문에서는 합성보 구성 시에 강재 거더의 상부플랜지를 없앤 역T형 거더를 적용하였다. 역T형 거더에 UHPC바닥판을 합성하여 합성보를 구성할 경우, 상부플랜지가 없는 이유로 전단연결재의 설치 위치가 상부플랜지 대신에 강재 거더 복부에 설치해야하는 문제점이 발생되며, 강재 복부에 설치되는 전단연결재에 대한 거동, 역T형 강거더 합성보의 휨거동 특성 등은 현재까지 실험 및 이론적으로 평가된 적이 거의 없는 실정인 이유로 이에 대한 연구가 절실하다. 이를 위하여 본 논문에서는 전단연결재 간격, 바닥판 두께 등을 변수로 하여 역T형 거더와 UHPC바닥판을 합성한 합성보를 8개 제작하여 전단연결재의 거동, 휨거동 특성 등을 파악하고자 하였다. 실험결과를 기준으로 볼 때, 향후 UHPC의 경우 스터의 간격은 100 mm에서 바닥판 두께의 2~3 배 사이로 규정함이 적절할 것으로 예상된다. 또한 실험 부재의 특성 상대변위는 Eurocode-4의 연성거동 기준에 의하면 충분한 연성 거동을 하는 것으로 판정되었으며, 바닥판이 지나치게 얇고 전단연결재의 간격이 지나치게 넓은 경우를 제외한 대부분의 부재들은 일반 콘크리트보다 UHPC의 성능이 우수하여 기존의 AASHTO LRFD 및 Eurocode-4의 식과 실험결과간의 차이가 있음을 알 수 있다.

항만구조물의 사면안정 신 설계기준 연구 (A Study of New Technical Standards for Slope Stability in Port Structures)

  • 윤길림;윤여원;김홍연
    • 한국해안·해양공학회논문집
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    • 제21권4호
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    • pp.316-325
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    • 2009
  • 국제적인 항만시설물 사면안정해석 설계기준을 분석하고 그 결과를 비교하였다. 사면안정해석에 사용된 설계기준은 한계상태 설계법에 근거한 중국, 유럽 및 일본의 설계방법이다. 사면안정해석시 공통적으로 파괴활동면은 원호 활동면 가정을 기본으로 하고 있다. 해석방법에 있어서 중국은 수정 Fellenius법에 근간하고 있으나 근래에 간편 Bishop법으로 변화하고 있다. 유럽은 Morgenstern & Price법 또는 Bishop법을 추천하고 있다. 반면, 일본은 수정 Fellenius법을 우선시하고 간편 Bishop법은 두꺼운 사질토 지반 등에 선택적으로 이용하도록 하고 있다. 특별하게도 유럽은 포괄적 부분계수 및 재료계수를 규정하는 반면, 일본은 각 구조물별로 경험적 재료계수를 명시하고 있다. 중국에서는 포괄적 부분계수의 최소범위를 규정하고, 안정조건에 따라 특정한 시험에 의한 강도지수를 사용하도록 구체적으로 명시하고 있다. 설계사례를 통한 사면안전율을 비교한 결과, 중국, 일본 및유럽 순으로 높게 나타났다.

Calculated external pressure coefficients on livestock buildings and comparison with Eurocode 1

  • Kateris, D.L.;Fragos, V.P.;Kotsopoulos, T.A.;Martzopoulou, A.G.;Moshou, D.
    • Wind and Structures
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    • 제15권6호
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    • pp.481-494
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    • 2012
  • The greenhouse type metal structures are increasingly used in modern construction of livestock farms because they are less laborious to construct and they provide a more favorable microclimate for the growth of animals compared to conventional livestock structures. A key stress factor for metal structures is the wind. The external pressure coefficient ($c_{pe}$) is used for the calculation of the wind effect on the structures. A high pressure coefficient value leads to an increase of the construction weight and subsequently to an increase in the construction cost. The EC1 in conjunction with EN 13031-1:2001, which is specialized for greenhouses, gives values for this coefficient. This value must satisfy two requirements: the safety of the structure and a reduced construction cost. In this paper, the Navier - Stokes and continuity equations are solved numerically with the finite element method (Galerkin Method) in order to simulate the two dimensional, incompressible, viscous air flow over the vaulted roofs of single span and twin-span with eaves livestock greenhouses' structures, with a height of 4.5 meters and with length of span of 9.6 and 14 m. The simulation was carried out in a wind tunnel. The numerical results of pressure coefficients, as well as, the distribution of them are presented and compared with data from Eurocodes for wind actions (EC1, EN 13031-1:2001). The results of the numerical experiment were close to the values given by the Eurocodes mainly on the leeward area of the roof while on the windward area a further segmentation is suggested.

원형단면 멀티기둥 풍력타워 적용 T형 강관조인트 강도 평가 (Strength Evaluation of T-type Tubular Joints for Circular Section Multi-Column Wind Towers)

  • 김경식;박현용;서동혁
    • 한국강구조학회 논문집
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    • 제27권1호
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    • pp.119-129
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    • 2015
  • 강재량을 줄이면서도 풍하중의 영향을 완화시킬 수 있는 장점으로, 수평재로 서로 연결된 다수의 수직 원형강관으로 구성된 멀티기둥 풍력타워 시스템은 기존의 단일 실린더형 타워구조에 대한 대안으로 고려될 수 있다. 멀티기둥 타워를 하나의 타워구조로 거동하게 하기 위해서는 수직 강관과 수평 강관의 연결부인 강관조인트의 강도 확보가 중요하다. 본 연구에서는 멀티기둥에 적용될 수 있는 T 조인트의 강도평가를 수행하였다. AISC, Eurocode3, ISO 19902, CIDECT의 4가지 강관조인트 설계기준을 검토하고, 조인트에서 주강관과 지강관의 세장비에 대한 매개변수해석을 통하여 설계기준에서 제공되는 강도산정식의 타당성을 검토하였다.

Eccentric compressive behavior of novel composite walls with T-section

  • Qin, Ying;Chen, Xin;Xi, Wang;Zhu, Xingyu;Chen, Yuanze
    • Steel and Composite Structures
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    • 제35권4호
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    • pp.495-508
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    • 2020
  • Double skin composite walls are alternatives to concrete walls to resist gravity load in structures. The composite action between steel faceplates and concrete core largely depends on the internal mechanical connectors. This paper investigates the structural behavior of novel composite wall system with T section and under combined compressive force and bending moment. The truss connectors are used to bond the steel faceplates to concrete core. Four short specimens were designed and tested under eccentric compression. The influences of the thickness of steel faceplates, the truss spacing, and the thickness of web wall were discussed based on the test results. The N-M interaction curves by AISC 360, Eurocode 4, and CECS 159 were compared with the test data. It was found that AISC 360 provided the most reasonable predictions.

Experimental study of beam-column joints in axially loaded RC columns strengthened by steel angles and strips

  • Adam, Jose M.;Gimenez, Ester;Calderon, Pedro A.;Pallares, Francisco J.;Ivorra, Salvador
    • Steel and Composite Structures
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    • 제8권4호
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    • pp.329-342
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    • 2008
  • The strengthening of reinforced concrete (RC) columns by steel angles and strips (steel cage) is one of various techniques available to increase ultimate column load. Different authors have shown the influence of the beam-column joint on the behaviour of columns strengthened by steel cages. This paper presents an experimental study carried out at the Universidad Polit$\acute{e}$cnica de Valencia with the aim of analysing two different techniques to solve the strengthening close to the joint and the influence on the behaviour of RC columns strengthened steel cages. The ultimate loads obtained in the laboratory tests for these two techniques are compared to that specified by Eurocode 4.

Patterns between wall pressures and stresses with grain moisture on cylindrical silo

  • Kibar, Hakan
    • Structural Engineering and Mechanics
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    • 제62권4호
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    • pp.487-496
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    • 2017
  • The focus of this study were to investigate patterns between wall pressures and stresses with grain moisture of soybean and rice varieties widespread cultivated in Turkey in order to determine needed designing parameters for structure analysis in silos at filling and discharge. In this study, the wall pressures and stresses were evaluated as a function of moisture contents in the range of 8-14% and 10-14% d.b. The pressures and von Mises stresses affected as significant by the change of grain moisture content. The main cause of pressure and stress drops is changed in bulk density. Therefore is extremely important bulk density and moisture content of the product at the structural design of the silos. 4 mm wall thickness, were determined to be safe for von Mises stresses in both soybean and rice silos is smaller than 188000 kPa.

Height-thickness ratio on axial behavior of composite wall with truss connector

  • Qin, Ying;Shu, Gan-Ping;Zhou, Xiong-Liang;Han, Jian-Hong;He, Yun-Fei
    • Steel and Composite Structures
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    • 제30권4호
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    • pp.315-325
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    • 2019
  • Double skin composite walls offer structural and economic merits over conventional reinforced concrete counterparts in terms of higher capacity, greater stiffness, and better ductility. This paper investigated the axial behavior of double skin composite walls with steel truss connectors. Full-scaled tests were conducted on three specimens with different height-to-thickness ratios. Test results were evaluated in terms of failure mode, load-axial displacement response, buckling loading, axial stiffness, ductility, strength index, load-lateral deflection, and strain distribution. The test data were compared with AISC 360 and Eurocode 4 and it was found that both codes provided conservative predictions on the safe side.

Behaviour of flush end-plate beam-to-column joints under bending and axial force

  • da Silva, Luis Simoes;de Lima, Luciano R.O.;da S. Vellasco, Pedro C.G.;de Andrade, Sebastiao A.L.
    • Steel and Composite Structures
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    • 제4권2호
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    • pp.77-94
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    • 2004
  • Steel beam-to-column joints are often subjected to a combination of bending and axial forces. The level of axial forces in the joint may be significant, typical of pitched-roof portal frames, sway frames or frames with incomplete floors. Current specifications for steel joints do not take into account the presence of axial forces (tension and/or compression) in the joints. A single empirical limitation of 10% of the beam's plastic axial capacity is the only enforced provision in Annex J of Eurocode 3. The objective of the present paper is to describe some experimental and numerical work carried out at the University of Coimbra to try to extend the philosophy of the component method to deal with the combined action bending moment and axial force.