• 제목/요약/키워드: shear key failure

검색결과 144건 처리시간 0.025초

유리섬유시트로 휨보강된 RC보의 부착파괴 방지 상세에 관한 실험적 연구 (An Experimental Study to Prevent Debonding Failure of RC Beams Strengthened with GFRP Sheets)

  • 유영찬;최기선;김긍환
    • 콘크리트학회논문집
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    • 제19권6호
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    • pp.677-684
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    • 2007
  • 본 연구에서는 유리섬유시트로 휨보강된 RC 보의 파괴 양상을 분석하고, 부착파괴를 방지하기 위한 실험 연구를 수행하였다. 부착파괴를 방지하기 위한 방법으로 부착길이를 증가시키는 방법과 U형 보강 방법 및 에폭시 전단키 보강 상세에 대하여 검증하였다. 유리섬유시트의 부착길이는 콘크리트 계면과 보강재 사이의 부착강도를 가정하여 계산하였다. U형 보강 방법은 콘크리트 밑면에 부착된 유리섬유시트의 단부 혹은 중앙부를 U형으로 감싸서 보강하였다. 콘크리트 하부에 매립된 전단키는 유리섬유시트의 인장력에 대하여 충분한 부착력을 제공하도록 하였다. 단부 U 보강과 중앙부 U 보강은 부착파괴를 방지하기 위해 기존에 제안된 방법이며, 에폭시 전단키는 본 연구에서 제시된 새로운 방지 상세이다. 유리섬유시트의 부착파괴 방지 상세에 대한 효과를 검증하기 위하여 총 6개의 실험체를 제작 실험하였다. 본 실험 결과에 의하면 부착길이 및 단부 U 보강 상세를 적용하는 방법은 조기 부착파괴를 억제하지 못하는 것으로 나타났다. 반면 중앙부 U 보강 상세는 보강재를 따라 발생하는 박리균열의 진행을 억제시키기 때문에 부착파괴를 지연하는 효과가 있으며, 전단키의 경우는 부착파괴를 충분히 방지하며 유리섬유시트의 파단을 유도하는 것으로 나타났다.

아라미드섬유쉬트로 휨 보강된 RC보의 부착파괴 방지에 관한 실험적 연구 (An Experimental Study to Prevent Debonding Failure of RC Beams Strengthened by AFRP Sheet)

  • 최기선;유영찬;김긍환
    • 한국구조물진단유지관리공학회 논문집
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    • 제11권5호
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    • pp.144-152
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    • 2007
  • 본 연구에서는 아라미드섬유쉬트로 휨 보강된 RC 보의 파괴양상을 분석하고, 부착파괴를 방지하기 위한 실험연구를 수행하였다. 아라미드섬유쉬트의 부착파괴 방지상세에 대한 효과를 검증하기 위하여 총 5개의 실험체를 제작 실험하였다. 분석결과에 의하면 기존에 사용되어온 단순부착식이나 단부 U보강상세를 적용한 실험체는 아라미드섬유쉬트의 재료변형률보다 낮은 변형률에서 부착파괴되는 것으로 나타났다. 반면 본 연구에서 제안한 중앙부 U보강상세와 에폭시 전단키를 적용한 실험체는 아라미드섬유쉬트의 부착파괴를 억제함으로써 충분한 보강성능을 발휘하는 것으로 나타났다.

Cyclic behavior of steel beam-concrete wall connections with embedded steel columns (II): Theoretical study

  • Li, Guo-Qiang;Gu, Fulin;Jiang, Jian;Sun, Feifei
    • Steel and Composite Structures
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    • 제23권4호
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    • pp.409-420
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    • 2017
  • This paper theoretically studies the cyclic behavior of hybrid connections between steel coupling beams and concrete shear walls with embedded steel columns. Finite element models of connections with long and short embedded steel columns are built in ABAQUS and validated against the test results in the companion paper. Parametric studies are carried out using the validated FE model to determine the key influencing factors on the load-bearing capacity of connections. A close-form solution of the load-bearing capacity of connections is proposed by considering the contributions from the compressive strength of concrete at the interface between the embedded beam and concrete, shear yielding of column web in the tensile region, and shear capacity of column web and concrete in joint zone. The results show that the bond slip between embedded steel members and concrete should be considered which can be simulated by defining contact boundary conditions. It is found that the loadbearing capacity of connections strongly depends on the section height, flange width and web thickness of the embedded column. The accuracy of the proposed calculation method is validated against test results and also verified against FE results (with differences within 10%). It is recommended that embedded steel columns should be placed along the entire height of shear walls to facilitate construction and enhance the ductility. The thickness and section height of embedded columns should be increased to enhance the load-bearing capacity of connections. The stirrups in the joint zone should be strengthened and embedded columns with very small section height should be avoided.

비선형유한요소해석을 이용한 수직 스터럽이 있는 RC 짧은 보의 해석 (Analysis of Slender RC Short Beams(a/d<2.5) with Vertical Stirrups using Nonlinear FEM)

  • 정제평;김대중;김우
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 봄 학술발표회 논문집
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    • pp.259-264
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    • 2002
  • This paper describes an attempt to develop a unified design approach for reinforced concrete short beam failing in shear based on a Arch Factor. Designing for short beam in shear is not as straightforward as designing for flexure due to the complicated interdependency of the variables involved and to the nonexistence of a rational theory tn current design code. Shear failure of reinforced concrete beams with stirrups is influenced greatly because of the actual geometrical shape(a/d) of the concrete and flexural reinforcement steel ratio, stirrup reinforcement ratio and concrete compression strength, size effect etc. The objective of this paper is to present a pilot study to develop a simplified physical model for estimating shear behavior of reinforced concrete short beams. The Key idea incorporated with this model is the Arch factor, introduced by Kim and White.

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PC 전단벽 건식접합부에 관한 실험연구 (An Experimental Study on Dry-Connection for Precast Concrete Shear Walls)

  • 홍성걸;임우영
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 추계 학술발표회 제17권2호
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    • pp.21-24
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    • 2005
  • In this study, new methods of PC panel connection using 'ㄷ'type steel connection is proposed for highly seismic zone. A study was carry out to investigate the connection behavior subjected to cyclic inelastic loading. Three planar type and two T type PC wall will be tested. The variables will be examined were the shear reinforcement existence of top and bottom walls. The specimens will be tested only reverse cyclic loading in accordance with a prescribed displacement history. To transfer the shear strength shear key set up between top and bottom wall. Failure mode, behavior, ductility and energy dissipation capacity of the specimens constructed by new connections wll be compared with those of monolithic walls and Han's(Han, Jun Hee, Seoul National University) model.

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Research on three-point bending fatigue life and damage mechanism of aluminum foam sandwich panel

  • Wei Xiao;Huihui Wang;Xuding Song
    • Steel and Composite Structures
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    • 제51권1호
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    • pp.53-61
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    • 2024
  • Aluminum foams sandwich panel (AFSP) has been used in engineering field, where cyclic loading is used in most of the applications. In this paper, the fatigue life of AFSP prepared by the bonding method was investigated through a three-point bending test. The mathematical statistics method was used to analyze the influence of different plate thicknesses and core densities on the bending fatigue life. The macroscopic fatigue failure modes and damage mechanisms were observed by scanning electron microscopy (SEM). The results indicate that panel thickness and core layer density have a significant influence on the bending fatigue life of AFSP and their dispersion. The damage mechanism of fatigue failure to cells in aluminum foam is that the initial fatigue crack begins the cell wall, the thinnest position of the cell wall or the intersection of the cell wall and the cell ridge, where stress concentrations are more likely to occur. The fatigue failure of aluminum foam core usually starts from the semi-closed unit of the lower layer, and the fatigue crack propagates layer by layer along the direction of the maximum shear stress. The results can provide a reference for the practical engineering design and application of AFSP.

파괴면을 고려한 블록식 보강토 옹벽의 거동 특성 연구 (A Study on the Characteristics of Behavior of Block-type Reinforced Earth Retaining Wall Considering Failure Surface)

  • 윤원섭;박준규;채영수
    • 한국지반신소재학회논문집
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    • 제15권3호
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    • pp.13-26
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    • 2016
  • 본 연구에서는 최근 보강토 옹벽의 보강재와 시공법에 대한 국산화에 대한 요구로 전면벽체나 토목섬유 등을 대체할 수 있는 공법에 대한 개발 수요가 많아짐에 따라 경제적이고, 안정한 블록식 보강토 옹벽의 개발을 실시하고, 새롭게 고안된 블록식 보강토 옹벽에 대해 수치해석을 실시하여 거동특성에 대해 분석하였다. 제안된 보강토 옹벽은 첫째, 블록에 전단키를 두어 벽체를 일체화 하였으며, 둘째, 이론적인 파괴면에 보강재를 집중적으로 시공하여 전단 파괴면을 보강함으로써 옹벽의 안정성을 만족시키는 공법이다. 블록식 옹벽의 거동 특성을 분석하기 위해 해석에서 보강재의 사용 요소는 cable 요소와 strip 요소에 대해 수치해석을 실시하였으며, 보강재 길이, 간격, 블록의 일체화의 조건을 변화하여 해석하였다. 이러한 조건으로 해석한 결과 파괴면만 보강하는 경우보다 전면 벽체 블록과 체결을 위해 긴 보강재를 설치하는 경우가 보강효과를 증가시키고, 변위를 많이 구속할 수 있는 것으로 판단되었으며, 전면 벽체와 체결과 함께 일체화를 고려하기 위해 전단키를 설치하는 경우가 벽체를 개별요소로 해석한 경우보다 변위 구속효과가 있었다. 또한, 긴 보강재를 1간격과 2간격으로 시공한 경우의 발생 변형량은 AASHTO의 시공중 허용 발생변형량에 비해 작게 발생되어 본 연구에서 제안한 공법은 구조물의 중요도에 따라 보강재의 간격을 달리하여 현장에 적용할 수 있는 안정한 공법으로 판단된다.

Cyclic load experiment study on the laminated composite RC walls with different concrete ages

  • Zhang, Hongmei;Lua, Xilin;Li, Jianbao;Liang, Lin
    • Structural Engineering and Mechanics
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    • 제36권6호
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    • pp.745-758
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    • 2010
  • 12 typical laminated composite reinforced concrete (RC) walls with different concrete ages and 3 cast-in-place RC walls subjected to low frequency cyclic load were carried out in this study. The failure mode, force-deformation response and energy dissipation capacity of these specimens were investigated. Differences of structural behaviours between composite RC walls and common cast-in-place RC walls were emphasized in the analysis. The compatibility of the composite specimens with different concrete ages was discussed based on the experiment. Test results indicated that the differences between the lateral bearing capacity and the displacement ductility of the composite walls and the common walls were not so obvious. Some of the composite specimen even has higher bearing capacity under the experiment loading situation. Besides, the two parts of the laminated composite specimens demonstrates incompatibility at the later loading sequence on failure mode and strain response when it is in tension. Finally, this laminated composite shear walls are suggested to be applied in rapid reconstruction structures which is not very high.

Seismic performance of CFS shear wall systems filled with polystyrene lightweight concrete: Experimental investigation and design methodology

  • Mohammad Rezaeian Pakizeh;Hossein Parastesh;Iman Hajirasouliha;Farhang Farahbod
    • Steel and Composite Structures
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    • 제46권4호
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    • pp.497-512
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    • 2023
  • Using light weight concrete as infill material in conventional cold-formed steel (CFS) shear wall systems can considerably increase their load bearing capacity, ductility, integrity and fire resistance. The compressive strength of the filler concrete is a key factor affecting the structural behaviour of the composite wall systems, and therefore, achieving maximum compressive strength in lightweight concrete while maintaining its lightweight properties is of significant importance. In this study a new type of optimum polystyrene lightweight concrete (OPLC) with high compressive strength is developed for infill material in composite CFS shear wall systems. To study the seismic behaviour of the OPLC-filled CFS shear wall systems, two full scale wall specimens are tested under cyclic loading condition. The effects of OPLC on load-bearing capacity, failure mode, ductility, energy dissipation capacity, and stiffness degradation of the walls are investigated. It is shown that the use of OPLC as infill in CFS shear walls can considerably improve their seismic performance by: (i) preventing the premature buckling of the stud members, and (ii) changing the dominant failure mode from brittle to ductile thanks to the bond-slip behaviour between OPLC and CFS studs. It is also shown that the design equations proposed by EC8 and ACI 318-14 standards overestimate the shear force capacity of OPLC-filled CFS shear wall systems by up to 80%. This shows it is necessary to propose methods with higher efficiency to predict the capacity of these systems for practical applications.

2-D meso-scale complex fracture modeling of concrete with embedded cohesive elements

  • Shen, Mingyan;Shi, Zheng;Zhao, Chao;Zhong, Xingu;Liu, Bo;Shu, Xiaojuan
    • Computers and Concrete
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    • 제24권3호
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    • pp.207-222
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    • 2019
  • This paper has presented an effective and accurate meso-scale finite element model for simulating the fracture process of concrete under compression-shear loading. In the proposed model, concrete is parted into four important phases: aggregates, cement matrix, interfacial transition zone (ITZ), and the initial defects. Aggregate particles were modelled as randomly distributed polygons with a varying size according to the sieve curve developed by Fuller and Thompson. With regard to initial defects, only voids are considered. Cohesive elements with zero thickness are inserted into the initial mesh of cement matrix and along the interface between aggregate and cement matrix to simulate the cracking process of concrete. The constitutive model provided by ABAQUS is modified based on Wang's experiment and used to describe the failure behaviour of cohesive elements. User defined programs for aggregate delivery, cohesive element insertion and modified facture constitutive model are developed based on Python language, and embedded into the commercial FEM package ABAQUS. The effectiveness and accuracy of the proposed model are firstly identified by comparing the numerical results with the experimental ones, and then it is used to investigate the effect of meso-structure on the macro behavior of concrete. The shear strength of concrete under different pressures is also involved in this study, which could provide a reference for the macroscopic simulation of concrete component under shear force.