• 제목/요약/키워드: Column Fracture

검색결과 172건 처리시간 0.026초

축방향철근의 저주파 피로 모델 (Low Cycle Fatigue Model for Longitudinal Reinforcement)

  • 고성현;이재훈
    • 콘크리트학회논문집
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    • 제22권2호
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    • pp.273-282
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    • 2010
  • 이 연구는 기존 모델에 대한 검증 및 국내에서 생산되고 있는 철근이 반복하중을 받는 경우의 파괴특성에 대한 적합한 모델을 제시하는 것을 목적으로 한다. 이 논문은 철근콘크리트 하부구조(파일과 교각)에 배근된 축방향철근에 대한 저주파 피로 거동에 대한 모델링을 다루었고, 전체 81개의 저주파 피로 실험 데이터에 기초하여 저주파 피로 모델을 제안하였다. 제안된 저주파 피로 모델을 적용하여 비선형해석 프로그램을 개발하였고 원형 기둥 실험체에 대한 6개의 실험 결과를 대상으로 비선형 해석을 적용하고 제안모델의 정확성을 평가하였다.

Bolted T-stubs: A refined model for flange and bolt fracture modes

  • Francavilla, Antonella B.;Latour, Massimo;Piluso, Vincenzo;Rizzano, Gianvittorio
    • Steel and Composite Structures
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    • 제20권2호
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    • pp.267-293
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    • 2016
  • It is well known that, in order to accurately predict the behaviour of steel structures a requirement the definition of the mechanical behaviour of beam-to column joints is of primary importance. This goal can be achieved by means of the so-called component method, which, in order to obtain the whole behaviour of connections, provides to break up joints in basic components of deformability and resistance. One of the main joint components used to model bolted connections is the so-called equivalent T-stub in tension, which is normally used to predict the behaviour of bolted plates in bending starting from the behaviour of the single bolt rows. In past decades, significant research efforts have been devoted to the prediction of the behaviour of bolted T-stubs but, to date, no particular attention has been devoted to the characterization of their plastic deformation capacity. To this scope, the work presented in this paper, taking into account the existing technical literature, proposes a new theoretical model for predicting the whole behaviour up to failure of bolted T-stubs under monotonic loading conditions, including some complexities, such as the bolt/plate compatibility requirement and the bolt fracture, which are necessary to accurately evaluate the ultimate displacement. After presenting the advances of the proposed approach, a comparison between theoretical and experimental results is provided in order to verify its accuracy.

Cyclic behavior of jumbo reduced beam section connections with heavy sections: Numerical investigation

  • Qi, Liangjie;Liu, Mengda;Shen, Zhangpeng;Liu, Hang
    • Earthquakes and Structures
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    • 제23권2호
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    • pp.183-196
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    • 2022
  • Reduced beam section (RBS) moment connections used in special moment resisting frames are currently limited to beam sections that are not larger than nominal depths of 920 mm, weight of 447 kg/m and flange thickness of 44 mm. Due to the higher demand for structural components with jumbo sections, which can potentially be applied in the transfer girders in long-span building structures, the newly available steel heavy members are promising. To address this issue, advanced numerical models are developed to fully evaluate the distribution of stresses and concentrations of plastic strains for such jumbo RBS connections. This paper first presents a brief overview of an experimental study on four specimens with large beam and column sections. Then, a numerical model that includes initial imperfections, residual stresses, geometric nonlinearity, and explicitly modeled welds is presented. The model is used to further explore the behavior of the test specimens, including distribution of stresses, distribution of plastic strains, stress triaxiality and potential for fracture. The results reveal that the stresses are highly non-uniform across the beam flange and, similarly, the plastic strains concentrate at the extreme fiber of the bottom flange. However, neither of these phenomena, which are primarily a function of beam flange thickness, is reflected in current design procedures.

Experimental studies and numerical analysis of the shear behavior of fin plates to tubular columns at ambient and elevated temperatures

  • Jones, M.H.;Wang, Y.C.
    • Steel and Composite Structures
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    • 제8권3호
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    • pp.179-200
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    • 2008
  • This paper reports the results of a recent experimental study into the behavior of welded fin-plate connections to both hollow and concrete filled tubular (CFT) columns under shear. Experiments have been performed at both ambient and elevated temperatures with the aid of an electric kiln. The observed failure modes include fracture of the fin plate and tearing out of the tube around the welds. By considering the results of previously published research, the current design method for similar connections under purely tensile load, in CIDECT Guide 9, based on a deformation limit of 3% of the tube width is shown to be inadequate when evaluating the ultimate strength of such connections. By comparing the results from the current test program which failed in the fin-plate with Eurocode guidance for failure of a fin-plate alone under shear and bending load it is shown that the column face influences the overall connection strength regardless of failure mode. Concrete in-fill is observed to significantly increase the strength of connections over empty specimens, and circular column specimens were observed to exhibit greater strength than similarly proportioned square columns. A finite element (F.E.) model, developed using ABAQUS, is presented and validated against the experimental results in order that extensive parametric tests may be subsequently performed. When validating the model against elevated temperature tests it was found that using reduction factors suggested in published research for the specific steel grades improved results over applying the generic Eurocode elevated temperature steel strength reduction factors.

반복하중을 받는 철골보 접합부의 거동 (Behavior of Steel Beam Connections under Cyclic Loading)

  • 이승준;김상배
    • 한국지진공학회논문집
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    • 제3권4호
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    • pp.23-32
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    • 1999
  • 본 연구에서는 반복하중을 받는 H형강보 접합부의 거동을 실험적인 방법으로 조사하였다. 본 연구의 목적은 H형강보 접합부의 이력거동에 강제의 특성과 스캘럽의 형태가 주는 영향을 조사하는 것이다 5개의 접합부 시험체를 제작하여 반복하중을 재하면서 실험을 수행하였다. 보 접합부에서의 하중-회전변형 곡선을 얻었으며 접합부의 변형능력과 에너지 소산능력을 상호 비교하였다. 강재가 SS400인 시험제는 충분한 변형능력과 에너지소산능력을 보였으나 강재가 SM490인 시험체는 취성적인 파괴를 보였으며 변형능력이 작았다. 접합부 스캘럽의 형태는 접합부의 거동에 영향을 주지않았다.

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An Analysis Code and a Planning Tool Based on a Key Element Index for Controlled Explosive Demolition

  • Isobe, Daigoro
    • 국제초고층학회논문집
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    • 제3권4호
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    • pp.243-254
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    • 2014
  • In this study, a demolition analysis code using the adaptively shifted integration (ASI)-Gauss technique, which describes structural member fracture by shifting the numerical integration point to an appropriate position and simultaneously releasing the sectional forces in the element, is developed. The code was verified and validated by comparing the predicted results with those of several experiments. A demolition planning tool utilizing the concept of a key element index, which explicitly indicates the contribution of each structural column to the vertical load capacity of the structure, is also develped. Two methods of selecting specific columns to efficiently demolish the whole structure are demonstrated: selecting the columns from the largest index value and from the smallest index value. The demolition results are confirmed numerically by conducting collapse analyses using the ASI-Gauss technique. The numerical results suggest that to achieve a successful demolition, a group of columns with the largest key element index values should be selected when explosives are ignited in a simultaneous blast, whereas those with the smallest should be selected when explosives are ignited in a sequence, with a final blast set on a column with large index value.

Cyclic Behavior of Timber Column Concealed Base Joint

  • Humbert, Jerome;Lee, Sang-Joon;Park, Joo-Saeng;Park, Moon-Jae
    • Journal of the Korean Wood Science and Technology
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    • 제41권2호
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    • pp.123-133
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    • 2013
  • This paper presents experimental and numerical tests on a recently developed timber column concealed base joint. This joint was designed to replace the wood-wood connection found in the post-and-beam structure of Hanok, the traditional Korean timber house. The use of metallic connectors provides an increased ductility and energy dissipation for a better performance under reversed loading, especially seismic. In this study, we investigate the performance of the joint under pseudo-static reversed cyclic moment loading through the study of its ductility and energy dissipation. We first perform experimental tests. Results show that the failure occurs in the metallic connector itself because of stress concentrations, while no brittle fracture of wood occur. Subsequent numerical simulations using a refined finite element model confirm these conclusions. Then, using a practical modification of the joint configuration with limited visual impact, we improve the ductility and energy dissipation of the joint while retaining a same level of rotational strength as the originally designed configuration. We conclude that the joint has a satisfying behavior under reversed moment loading for use in earthquake resistant timber structure in low to moderate seismicity areas like Korea.

Identification of failure mechanisms for CFRP-confined circular concrete-filled steel tubular columns through acoustic emission signals

  • Li, Dongsheng;Du, Fangzhu;Chen, Zhi;Wang, Yanlei
    • Smart Structures and Systems
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    • 제18권3호
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    • pp.525-540
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    • 2016
  • The CFRP-confined circular concrete-filled steel tubular column is composed of concrete, steel, and CFRP. Its failure mechanics are complex. The most important difficulties are lack of an available method to establish a relationship between a specific damage mechanism and its acoustic emission (AE) characteristic parameter. In this study, AE technique was used to monitor the evolution of damage in CFRP-confined circular concrete-filled steel tubular columns. A fuzzy c-means method was developed to determine the relationship between the AE signal and failure mechanisms. Cluster analysis results indicate that the main AE sources include five types: matrix cracking, debonding, fiber fracture, steel buckling, and concrete crushing. This technology can not only totally separate five types of damage sources, but also make it easier to judge the damage evolution process. Furthermore, typical damage waveforms were analyzed through wavelet analysis based on the cluster results, and the damage modes were determined according to the frequency distribution of AE signals.

RBS 철골모멘트접합부의 내진거동평가를 위한 반복재하 실물대(實物大) 시험 (Cycllic Seismic Testing of Full-Scale RBS (Reduced Beam Section) Steel Moment Connections)

  • 이철호;전상우;김진호
    • 한국강구조학회 논문집
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    • 제14권4호
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    • pp.557-566
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    • 2002
  • 본 논문은 4개의 철골모멘트 접합부에 대한 반복재하 실물대(實物大) 실험결과를 요약한 것이다. 주요 실험변수는 기둥과 보의 접합방식 (볼트접합 대 용접) 및 패널존의 강도 (강한 패널존 대 중간강도 패널존)이다. 중간 패널존 강도를 갖는 시험체는 패널존과 RBS 영역 모두에서 균형잡힌 방식으로 에너지가 소산되도록 고려하여 설계된 것으로 패널존 보강비용을 줄이고자 시도한 경우이다. 보웨브가 용접으로 접합된 경우의 시험체들은 특별연성모멘트골조에 요구되는 충분한 접합부 회전성능을 보여 주었지만, 웨브를 볼트로 접합한 시험체들은 스캘럽을 가로지르는 보플랜지의 조기 취성파괴로 인해 열등한 내진성능을 노출하였다. 보웨브를 볼트로 접합하면 비용을 줄일 수 있으나 원래 보단면의 전소성모멘트를 기둥에 전달하기 어려운 것으로 나타났다. 본 연구에서 적용된 것과 같이 양질의 용접시공에 의해 일단 그루브 용접부 자체의 취성파괴 문제가 해결되고 나면, 용접접근공내에 위한 보플랜지 모재의 파단이 다음의 문제로 대두됨을 알 수 있다. 용접접근공 내의 보 플랜지 파단문제를 역학적인 측면에서 이해하는데 도움이 되는 해석적 연구도 수행되었다.

하부 요추 방출 골절의 수술방법 결정시 고려 요인들 (Factors in Selection of Surgical Approaches for Lower Lumbar Burst Fractures)

  • 장태안;김종문
    • Journal of Korean Neurosurgical Society
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    • 제29권8호
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    • pp.1055-1062
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    • 2000
  • Objectives : Burst fracture of the lower lumbar spine(L3-L5) is rare and has some different features compare to that of thoracolumbar junction. Lower lumbar spine is flexible segments located deeply, and has physiologic lordosis. All of these contribute to making surgical approach difficult. Generally, lower lumbar burst fracture is managed either anteriorly or posteriorly with various fixation and fusion methods. But there is no general guideline or consensus regarding the proper approach for such lesion. We have tried to find out the influencing factors for selecting the surgical approach through the analysis of lower lumbar burst fractures treated for last 4 years(1994.3-1998.3). Method : This study includes 15 patients(male : 10, female : 5, age range 20-59 years with mean age of 36.7 years, L3 : 8 cases, L4 : 5 cases, L5 : 2 cases). Patients were classified into anterior(AO) and posterior operated(PO) groups. We investigated clinical findings, injured column, operation methods, and changes in follow-up radiologic study (kyphotic angle) to determine the considerable factors in selecting the surgical approaches. Results : There were 5 AO and 10 PO patients. Anterior operation were performed with AIF with Kaneda or Z-plate and posterior operation were done with pedicle screw fixation with PLIF with cages or posterolateral fusion. Canal compression was 46.6% in AO and 38.8% in PO. The degree of kyphotic angle correction were 10.7 degree(AO) and 8.5 degree(PO), respectively. There was no statistical difference between anterior and posterior operation group. All patients showed good surgical outcome without complications. Conclusion : Anterior operation provided good in kyphotic angle correction and firm anterior strut graft, but it difficulty arose in accessing the lesions below L4 vertebra. While posterior approach showed less correction of kyphotic angle, it required less time and provided better results for accompanied adjacent lesion and pathology such as epidural hematoma. The level of injury, canal compression, biomechanics, multiplicity, and pathology are considered to be important factors in selection of the surgical approach.

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