• 제목/요약/키워드: eccentric shear

검색결과 88건 처리시간 0.023초

Experimental study on circular concrete filled steel tubes with and without shear connectors

  • Chithira, K.;Baskar, K.
    • Steel and Composite Structures
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    • 제16권1호
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    • pp.97-114
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    • 2014
  • This paper deals with a study on ultimate strength behaviour of eccentrically loaded CFT columns with and without shear connectors. Thirty specimens are subjected to experimental investigation under eccentric loading condition. P-M curves are generated for all the test specimens and critical eccentricities are evaluated. Three different D/t ratios such as 21, 25 and 29 and L/D ratios varying from 5 to 20 are considered as experimental parameters. Six specimens of bare steel tubes as reference specimens, twelve specimens of CFT columns without shear connectors and twelve specimens of CFT columns with shear connectors, in total thirty specimens are tested. The P-M values at the ultimate failure load of experimental study are found to be well agreed with the results of the proposed P-M interaction model. The load-deflection and load-strain behaviour of the experimental column specimens are presented. The behaviour of the CFT columns with and without shear connectors is compared. Experimental results indicate that the percentage increase in load carrying capacity of CFT columns with shear connectors compared to the ordinary CFT columns is found to be insignificant with a value ranging from 6% to 13%. However, the ductility factor of columns with shear connectors exhibit higher values than that of the CFT columns without shear connectors. This paper presents the proposed P-M interaction model and experimental results under varying parameters such as D/t and L/D ratios.

편심을 가진 1/12 축소 RC 주상복합구조물의 진동대실험 (Shaking Table Tests of 1/12-Scale RC Bearing-Wall System with Bottom Piloti Stories Having Eccentric Shear-Wall)

  • 이한선;고동우;권기혁;김병현
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.185-190
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    • 2001
  • The severe shortage of the available sites in the highly developed downtown area in Korea necessitates the construction of high-rise buildings which meet the need of residence and commercial activity simultaneously. The objective of this study is to investigate the seismic performance of this type of building structures. For this purpose, two 1:12 scale 17-story reinforced concrete model structures were constructed according to the similitude law, in which the upper 15 stories have a bearing-wall system while the lower 2-story frames with infilled shear wall have two different layouts of the plan : The one has symmetric plan and the other has unsymmetric plan. Then, this model was subjected to a series of earthquake excitations. The test results show that the layout of shear wall has the negligible effect on the natural period and the base shear coefficient, but great effect on the failure mode of beam-column joint at flexible side frame.

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Strength of prestressed concrete beams in torsion

  • Karayannis, Chris G.;Chalioris, Constantin E.
    • Structural Engineering and Mechanics
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    • 제10권2호
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    • pp.165-180
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    • 2000
  • An analytical model with tension softening for the prediction of the capacity of prestressed concrete beams under pure torsion and under torsion combined with shear and flexure is introduced. The proposed approach employs bilinear stress-strain relationship with post cracking tension softening branch for the concrete in tension and special failure criteria for biaxial stress states. Further, for the solution of the governing equations a special numerical scheme is adopted which can be applied to elements with practically any cross-section since it utilizes a numerical mapping. The proposed method is mainly applied to plain prestressed concrete elements, but is also applicable to prestressed concrete beams with light transverse reinforcement. The aim of the present work is twofold; first, the validation of the approach by comparison between experimental results and analytical predictions and second, a parametrical study of the influence of concentric and eccentric prestressing on the torsional capacity of concrete elements and the interaction between torsion and shear for various levels of prestressing. The results of this investigation presented in the form of interaction curves, are compared to experimental results and code provisions.

Direct displacement-based seismic design methodology for the hybrid system of BRBFE and self-centering frame

  • Akbar Nikzad;Alireza Kiani;Seyed Alireza Kazerounian
    • Structural Engineering and Mechanics
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    • 제88권5호
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    • pp.463-480
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    • 2023
  • The buckling-restrained braced frames with eccentric configurations (BRBF-Es) exhibit stable cyclic behavior and possess a high energy absorption capacity. Additionally, they offer architectural advantages for incorporating openings, much like Eccentrically Braced Frames (EBFs). However, studies have indicated that significant residual drifts occur in this system when subjected to earthquakes at the Maximum Considered Earthquake (MCE) hazard level. Consequently, in order to mitigate these residual drifts, it is recommended to employ self-centering systems alongside the BRBF-E system. In our current research, we propose the utilization of the Direct Displacement-Based Seismic Design method to determine the design base shear for a hybrid system that combines BRBF with an eccentric configuration and a self-centering frame. Furthermore, we present a methodology for designing the individual components of this composite system. To assess the effectiveness of this design approach, we designed 3-, 6-, and 9-story buildings equipped with the BRBF-E-SCF system and developed finite element models. These models were subjected to two sets of ground motions representing the Maximum Considered Earthquake (MCE) and Design Basis Earthquake (DBE) seismic hazard levels. The results of our study reveal that although the combined system requires a higher amount of steel material compared to the BRBF-E system, it substantially reduces residual drift. Furthermore, the combined system demonstrates satisfactory performance in terms of story drift and ductility demand.

Seismic behavior of reinforced concrete interior beam-column joints with beams of different depths

  • Xing, G.H.;Wu, T.;Niu, D.T.;Liu, X.
    • Earthquakes and Structures
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    • 제4권4호
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    • pp.429-449
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    • 2013
  • Current Design Codes for Reinforced Concrete (RC) interior beam-column joints are based on limited experimental studies on the seismic behavior of eccentric joints. To supplement existing information, an experimental study was conducted that focused on the effect of eccentricity of the deeper beams with respect to the shallow beams. A total of eight one-third scale interior joints with beams of different depths were subjected to reverse cyclic loading. The primary variables in the test specimens were the amount of joint transverse reinforcement and the cross section of the shallow beams. The overall performance of each test assembly was found to be unsatisfactory in terms of joint shear strength, stiffness, energy dissipation and shear deformation. The results indicated that the vertical eccentricity of spandrel beams in this type of joint led to lower capacity in joint shear strength and severe damage of concrete in the joint core. Increasing the joint shear reinforcement was not effective to alter the failure mode from joint shear failure to beam yielding which is favorable for earthquake resistance design, whereas it was effective to reduce the crack width at the small loading stages. Based on the observed behavior, the shear stress of the joint core was suggested to be kept as low as possible for a safe and practical design of this type of joint.

Shear strength and shear behaviour of H-beam and cruciform-shaped steel sections for concrete-encased composite columns

  • Keng-Ta Lin;Cheng-Cheng Chen
    • Steel and Composite Structures
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    • 제47권3호
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    • pp.423-436
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    • 2023
  • In this research, we tested 10 simply supported concrete-encased composite columns under monotonic eccentric loads and investigated their shear behaviour. The specimens tested were two reinforced concrete specimens, three steel-reinforced concrete (SRC) specimens with an H-shaped steel section (also called a beam section), and five SRC specimens with a cruciform-shaped steel section (also called a column section). The experimental variables included the transverse steel shape's depth and the longitudinal steel flange's width. Experimental observations indicated the following. (1) The ultimate load-carrying capacity was controlled by web compression failure, defined as a situation where the concrete within the diagonal strut's upper end was crushed. (2) The composite effect was strong before the crushing of the concrete outside the steel shape. (3) We adjusted the softened strut-and-tie SRC (SST-SRC) model to yield more accurate strength predictions than those obtained using the strength superposition method. (4) The MSST-SRC model can more reasonably predict shear strength at an initial concrete softening load point. The rationality of the MSST-SRC model was inferred by experimentally observing shear behaviour, including concrete crushing and the point of sharp variation in the shear strain.

볼트 전단파단이 지배하는 지압형식 볼트접합부의 힘-변형 관계 (Force-Deformation Relationship of Bearing-Type Bolted Connections Governed by Bolt Shear Rupture)

  • 김대경;이철호;진승표;윤성환
    • 한국강구조학회 논문집
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    • 제27권1호
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    • pp.1-12
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    • 2015
  • 잘 접합된 볼트접합부는 볼트의 전단파단이 발생할 때 까지 지압 메커니즘에 의하여 훌륭한 연성거동을 보인다. 이러한 볼트접합부에 내재된 연성 능력을 최대한 활용한다면 중력하중, 풍하중, 지진하중 등 다양한 하중에 대하여 활용하여 접합비용의 경제성 제고에 기여할 수 있다. 편심하중을 받는 볼트접합부의 경우 보수적인 탄성해석법과 합리적으로 볼트접합부의 연성거동을 활용할 수 있는 극한강도 해석법이 존재하나 기존의 극한강도해석법은 오늘날 다양한 소재와 설계조건의 다양화에도 불구하고 하나의 소재와 조건으로 이루어진 실험식에 의존하고 있다. 본 연구의 주된 목적은 체계화된 단일볼트의 실험을 기반으로 볼트의 일반화된 힘-변형 관계식을 정립하는 것이다. 실험결과를 토대로 볼트접합부의 기하학적인 요소(볼트의 직경, 플레이트의 두께) 및 강도가 힘-변형 관계에 주된 영향을 미치는 요소라는 것을 알 수 있다. 실험결과를 순간중심회전법에 적용하여 보다 정확하고 경제적인 편심하중을 받는 군볼트 접합부 설계가 가능하다.

편심코어를 가지는 저층 철근콘크리트 필로티 건물의 내진성능 (Seismic Performance of Low-rise Piloti RC Buildings with Eccentric Core)

  • 김성용;김경남;윤태호
    • 한국산학기술학회논문지
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    • 제21권10호
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    • pp.490-498
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    • 2020
  • 본 논문에서는 편심코아를 가지는 저층 필로티 건물의 내진거동을 해석하고 결과를 분석하였다. 본 논문에서는 저층 필로티 건물의 시공사례 중 KBC2005기준에 준하여 설계된 편심코어를 가지는 건물들의 설계자료를 수집하여, 대표적인 편심 필로티 건물을 프로토타입으로 선정하여 KDS41기준에 준하여 내진거동을 해석하고 결과를 분석하였다. 연구결과 편심코어를 가지는 필로티 건물의 경우 X방향은 소성거동, Y방향은 탄성거동을 하는 것으로 평가 되었다. 연구대상 건물의 층간 변위를 확인한 결과 최대변위 δ=67.51mm로 코어가 평면 중심에 위치하는 경우보다 층간 변위량이 더 큰 것으로 평가 되었다. 해석결과에서 층간 변위 비율은 법적 규준 이내인 것으로 평가되었다. 또한 변위 비율은 1층 필로티 구간이 2~4층 부분보다 확연히 높은 걸로 평가 되었으며, 저층 필로티 구조물의 경우 1층 라멘조 부분이 횡력에 취약한 것으로 평가되었다. 편심코어로 인하여 구조물 전체의 강성중심이 질량중심과 이격되어 있어 코어 반대쪽의 필로티 기둥에서 항복과 소성힌지 발생이 시작되므로 내진설계와 내진보강시 이에 대한 고려가 필요하다. 따라서, 편심코어를 가지는 저층 필로티 건물의 내진설계 및 내진보강시 필로티 구조의 횡변위 감소와 횡력저항능력을 보강할 필요가 있다.

Predicting the stiffness of shear diaphragm panels composed of bridge metal deck forms

  • Egilmez, Oguz O.
    • Steel and Composite Structures
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    • 제24권2호
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    • pp.213-226
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    • 2017
  • The behavior of building industry metal sheeting under shear forces has been extensively studied and equations have been developed to predict its shear stiffness. Building design engineers can make use of these equations to design a metal deck form bracing system. Bridge metal deck forms differ from building industry forms by both shape and connection detail. These two factors have implications for using these equations to predict the shear stiffness of deck form systems used in the bridge industry. The conventional eccentric connection of bridge metal deck forms reduces their shear stiffness dramatically. However, recent studies have shown that a simple modification to the connection detail can significantly increase the shear stiffness of bridge metal deck form panels. To the best of the author's knowledge currently there is not a design aid that can be used by bridge engineers to estimate the stiffness of bridge metal deck forms. Therefore, bridge engineers rely on previous test results to predict the stiffness of bridge metal deck forms in bracing applications. In an effort to provide a design aid for bridge design engineers to rely on bridge metal deck forms as a bracing source during construction, cantilever shear frame test results of bridge metal deck forms with and without edge stiffened panels have been compared with the SDI Diaphragm Design Manual and ECCS Diaphragm Stressed Skin Design Manual stiffness expressions used for building industry deck forms. The bridge metal deck form systems utilized in the tests consisted of sheets with thicknesses of 0.75 mm to 1.90 mm, heights of 50 mm to 75 mm and lengths of up to 2.7 m; which are representative of bridge metal deck forms frequently employed in steel bridge constructions. The results indicate that expressions provided in these manuals to predict the shear stiffness of building metal deck form panels can be used to estimate the shear stiffness of bridge metal deck form bracing systems with certain limitations. The SDI Diaphragm Design Manual expressions result in reasonable estimates for sheet thicknesses of 0.75 mm, 0.91 mm, and 1.21 mm and underestimate the shear stiffness of 1.52 and 1.90 mm thick bridge metal deck forms. Whereas, the ECCS Diaphragm Stressed Skin Design Manual expressions significantly underestimate the shear stiffness of bridge metal deck form systems for above mentioned deck thicknesses.

무량판 슬래브-기둥 내부 접합부에 대한 전단강도모델 (Shear Strength Model for Interior Flat Plate-Column Connections)

  • 최경규;박홍근
    • 콘크리트학회논문집
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    • 제22권3호
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    • pp.345-356
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    • 2010
  • 직접전단과 불균형모멘트를 재하받는 슬래브-기둥 내부 접합부에 대한 대체설계방법이 개발되었다. 슬래브-기둥 접합부는 뚫림전단파괴에 앞서서 휨균열에 의해서 손상을 받으므로, 이 연구에서는 위험단면의 압축대에서 대부분의 전단저항이 발휘된다고 가정하였다. 뚫림전단강도의 산정을 위하여, 슬래브 휨모멘트와 불균형모멘트에 의해서 유발되는 압축수직응력의 영향을 고려하였다. 압축수직응력과 전단응력 사이의 상관관계를 고려하기 위하여, Rankine의 콘크리트 재료파괴기준을 사용하였다. 제안된 강도모델은 실험 결과와의 비교를 통하여 검증하였다. 검증 결과, 제안된 설계방법은 ACI 318과 Eurocode 2 보다 우수한 강도추정능력을 가지고 있으며 직접전단 또는 직접전단-불균형모멘트 복합하중을 재하받는 슬래브-기둥 접합부의 설계에 사용될 수 있다는 점이 밝혀졌다.