• 제목/요약/키워드: shear transfer mechanism

검색결과 119건 처리시간 0.031초

보통강도 및 고강도 콘크리트의 전단전달 (Shear Transfer in Normal and High Strength Concrete)

  • Oh Byung Hwan;Kim Kwang Soo;Lee Jong Hoon;Han Seung Hwan
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.585-590
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    • 2001
  • Cracks in concrete can submit shear forces by virtue of the roughness of their interfaces. With regard to this roughness, the crack faces play an important role. By transmitting normal and shear stress across their faces, shear cracks contribute to shear resistance. This process is called shear transfer or more generally, shear friction. Both experimental and analytical program to investigate shear transfer mechanism in normal and high strength concrete were included in this study. The parameters investigated in push-off test included the concrete strength, the presence and amounts of steel stirrups, and aggregate size. Solution procedure based on the truss model was developed to analyze the shear transfer behavior. In general, it can be seen that the analytical results agree well with results of shear transfer test.

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Shear behavior of exposed column base connections

  • Cui, Yao
    • Steel and Composite Structures
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    • 제21권2호
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    • pp.357-371
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    • 2016
  • Column base connections are critical components in steel structures because they transfer axial forces, shear forces and moments to the foundation. Exposed column bases are quite commonly used in low- to medium-rise buildings. To investigate shear transfer in exposed column base plates, four large scale specimens were subjected to a combination of axial load (compression or tension) and lateral shear deformations. The main parameters examined experimentally include the number of anchor rod, arrangement of anchor rod, type of lateral loading, and axial force ratio. It is observed that the shear resisting mechanism of exposed column base changed as the axial force changed. When the axial force is in compression, the resisting mechanism is rotation type, and the shear force will be resisted by friction force between base plate and mortar layer. The specimens could sustain inelastic deformation with minimal strength deterioration up to column rotation angle of 3%. The moment resistance and energy dissipation will be increased as the number of anchor rods increased. Moreover, moment resistance could be further increased if the anchor rods were arranged in details. When the axial force is in tension, the resisting mechanism is slip type, and the shear force will be resisted by the anchor rods. And the shear resistance was reduced significantly when the axial force was changed from compression to tension. The test results indicated that the current design approach could estimate the moment resistance within reasonable acceptance, but overestimate the shear resistance of exposed column base.

콘크리트 구조물의 전단 안정성 평가를 위한 전단전달 실험 및 해석 (An Experimental and Analytical Study on Shear Transfer for Safety Evaluation of Concrete Structure)

  • 김광수
    • 한국안전학회지
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    • 제23권3호
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    • pp.42-50
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    • 2008
  • This study, push-off tests for the initially uncracked specimens were conducted to investigate shear transfer mechanism in reinforce concrete elements. Experimental programs for shear transfer were undertaken to investigate the effect of the concrete compressive strength, the presence of steel stirrups as shear reinforcement and the amount of steel stirrups. As the shear plane is loaded, several cracks form in a direction inclined to the shear plane, creating compression struts in the concrete. For this stage, shear is being transferred through a truss-like action produced by the combination of the compressive force in the concrete struts and the tensile force that the steel reinforcement crossing the shear plane develops. In the normal strength concrete specimens with steel stirrups, ultimate failure occurred when the compression struts crushed in concrete. In the high strength concrete specimens, on the other hand, ultimate failure occurred when the steel stirrups developed their yield strength.

A piecewise linear transverse shear transfer model for bolted side-plated beams

  • Li, Ling-Zhi;Jiang, Chang-Jiu;Su, Ray Kai-Leung;Lo, Sai-Huen
    • Structural Engineering and Mechanics
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    • 제62권4호
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    • pp.443-453
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    • 2017
  • The performance of bolted side-plated (BSP) beams is affected by the degree of transverse partial interaction, which is a result of the interfacial slip caused by transverse shear transfer between the bolted steel plates and the reinforced concrete beams. However, explicit formulae for the transverse shear transfer profile have yet to be derived. In this paper, a simplified piecewise linear shear transfer model was proposed based on force superposition principle and simplification of shear transfer profiles derived from a previous numerical study. The magnitude of shear transfer was determined by force equilibrium and displacement compatibility condition. A set of design formulae for BSP beams under several basic load cases was also derived. Then the model was verified by test results. A worked example was also provided to illustrate the application of the proposed design formulae. This paper sheds some light on the shear force transfer mechanism of anchor bolts in BSP beams, and offers a practical method to evaluate the influence of transverse partial interaction in strengthening design.

Reinforcing effect of CFRP bar on concrete splitting behavior of headed stud shear connectors

  • Huawen Ye;Wenchao Wang;Ao Huang;Zhengyuan Wang
    • Steel and Composite Structures
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    • 제48권2호
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    • pp.131-143
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    • 2023
  • The CFRP bar was used to achieve more ductile and durable headed-stud shear connectors in composite components. Three series of push-out tests were firstly conducted, including specimens reinforced with pure steel fibers, steel and CFRP bars. The distributed stress was measured by the commercial PPP-BOTDA (Pre-Pump-Pulse Brillouin optical time domain analysis) optical fiber sensor with high spatial resolution. A series of numerical analyses using non-linear FE models were also made to study the shear force transfer mechanism and crack response based on the test results. Test results show that the CFRP bar increases the shear strength and stiffness of the large diameter headed-stud shear connection, and it has equivalent reinforcing effects on the stud shear capacity as the commonly used steel bar. The embedded CFRP bar can also largely improve the shear force transfer mechanism and decrease the tensile stress in the transverse direction. The parametric study shows that low content steel fibers could delay the crack initiation of slab around the large diameter stud, and the CFRP bar with normal elastic modulus and the standard reinforcement ratio has good resistance to splitting crack growth in headed stud shear connectors.

RC 보에서의 전단저항기구와 주철근의 부착 작용과의 관계 (Effect of Bond Action of Longitudinal Bars on Shear Transfer Mechanism in RC Beams)

  • 김길희
    • 콘크리트학회논문집
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    • 제17권4호
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    • pp.513-520
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    • 2005
  • 현재 유럽 및 일본의 경우 기둥 및 보 부재에 대한 전단 설계에 있어, 전단기구로서 전단보강근과 주철근의 부착작용을 필요로 하지 않는 아치기구와 전단보강근과 주근의 부착 작용을 필요로 하는 트러스기구를 고려하여, 양자의 합으로 전단내력을 평가하는 방식을 취하고 있다. 이러한 설계 방법은 매우 명료하고, 또한 힘의 평형 조건에 기초하여, 단적으로 부착의 좋고 나쁨 및 전단보강근 양의 대소로 정해지는 상한 값으로 전단 내력을 평가하는 것이 특징이다. 본 연구에서는, 역대칭 휨 모멘트를 받는 철근콘크리트 보 부재에서 단부의 텐션쉬프트 영역 사이를 대상으로 한 주철근의 축 방향 응력(압축, 인장) 및 주근의 직경, 부착길이의 상이함에 기인하는 부착거동의 차이와 트러스 기구와의 관계를 명확히 하는 것을 목적으로, 트러스기구만이 재현 가능한 모델 실험법을 제안하고, 전단보강근의 양, 부재의 축압축 응력의 크기 및 부착 영역 양단의 주철근에 가하는 힘의 크기를 실험 변수로 한 부재 실험을 실시하였다. 실험에서 얻은 결과에 기초하여, 양단부 주철근에 가한 힘의 차이로 인해 발생하는 부착응력 분포의 차이를 고려한 일정 트러스 기구와 부채형 트러스기구를 중첩한 복합 트러스 모델을 제안하였다.

Shear transfer mechanism in connections involving concrete filled steel columns under shear forces

  • De Nardin, Silvana;El Debs, Ana Lucia H.C.
    • Steel and Composite Structures
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    • 제28권4호
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    • pp.449-460
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    • 2018
  • This paper reports the experimental results of three through bolt beam-column connections under pure shear forces using modified push-out tests. The investigated specimens include extended end-plates and six through-bolts connecting square concrete-filled steel tubular column (S-CFST) to steel beams. The main goal of this study is to investigate if and how the mechanical shear connectors, such as steel angles and stud bolts, contribute to the shear transfer mechanisms in the steel-concrete interface of the composite column. The contribution of shear studs and steel angles to improve the shear resistance of steel-concrete interface in through-bolt connections was investigated using tests. The results showed that their contribution is not significant when the beam-column connection is included in the push-out tests. The specimens failed by pure shear of the long bolts, and the ultimate load can be predicted using the shear resistance of the bolts under shear forces. The predicted values of load allowed obtaining a good agreement with the tests results.

정적 인발하중을 받는 암반 앵커의 거동;텐던-그라우트 경계면의 전단응력 분포 (Rock Anchors Subjected to Static Uplift Loads ; Shear Stress Distribution of Tendon-Grout Interface)

  • 임경필;조남준;황성일
    • 한국지반공학회논문집
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    • 제15권6호
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    • pp.143-154
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    • 1999
  • 본 연구에서는 암반 앵커의 텐던-그라우트 경계면의 하중전달기구(load transfer mechanism)를 규명하기 위하여 암질이 강한 자연 화강암과 콘크리트로 제작된 모형 암반에 시공된 모형 암반 앵커에 대한 정적 인발험(static uplift test)을 수행하였다. 불연속면이 텐던-그라우트의 전단응력 분포에 미치는 영향을 밝히기 위하여 수평한 절리면을 갖고 있는 모형암반도 제작되었다. 실험 결과 불연속면이 없는 암반에 시공된 암반 앵커의 경우 앵커 상단에 심한 응력 집중이 발생함을 알 수 있었고 불연속면이 증가할수록 깊이에 따라 균일한 전단응력 분포를 나타냈다. 또한, 실험결과에 대한 회귀분석을 통하여 텐던-그라우트 경계면의 전단응력 분포에 관한 경험식을 산정하였으며, 실험에 의한 전단응력 분포는 텐던 직경의 2~3배 깊이에서는 이론에 의한 전단응력 분포 보다 작게 나타나고 그 이하에서는 반대 현상을 관찰할 수 있었다.

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스트럿-타이 모델을 이용한 세장한 철근콘크리트 부재의 강도평가 (Evaluation of Shear Strength of RC Beams using Strut-and-Tie Model)

  • 박홍근;엄태성;박종철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 추계 학술발표회 제17권2호
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    • pp.271-274
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    • 2005
  • Existing strut-and-tie model cannot be applied to analysis of slender beams without shear reinforcement because shear transfer mechanism is not formed. In the present study, a new strut-and-tie model with rigid joint was developed. Basically, concrete strut is modeled as a frame element which can transfer shear force (or moment) as well as axial force. Employing Rankine failure criterion, failure strength due to shear-tension and shear-compression developed in compressive concrete strut was defined. For verification, various test specimens were analyzed and the results were compared with tests. The proposed strut-and-tie model predicted shear strength and failure displacement with reasonable precision, addressing the design parameters such as shear reinforcement, concrete compressive strength, and shear span ratio.

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Shear behavior of multi-hole perfobond connectors in steel-concrete structure

  • Xing, Wei;Lin, Xiao;Shiling, Pei
    • Structural Engineering and Mechanics
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    • 제56권6호
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    • pp.983-1001
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    • 2015
  • This study focuses on the load carrying capacity and the force transfer mechanism of multi-hole perfobond shear connectors in steel-concrete composite structure. The behavior of multi-hole perfobond shear connector is more complicated than single-hole connector cases. 2 groups push-out tests were conducted. Based on the test results, behavior of the connection was analyzed and the failure mechanism was identified. Simplified iterative method and analytic solution were proposed based on force equilibrium for analyzing multi-hole perfobond shear connector performance. Finally, the sensitivity of design parameters of multi-hole perfobond shear connector was investigated. The results of this research showed that shear force distribution curve of multi-hole perfobond shear connector is near catenary. Shear forces distribution were determined by stiffness ratio of steel to concrete member, stiffness ratio of shear connector to steel member, and number of row. Efficiency coefficient was proposed to should be taking into account in different limit state.