• 제목/요약/키워드: Circular failure

검색결과 350건 처리시간 0.038초

GFRP 래핑에 의한 겹침이음된 교각의 내진보강 (Seismic Retrofit of GFRP Wrapping on the Lap-spliced Bridge Piers)

  • 염광수;권태규;이영호;황윤국
    • 대한토목학회논문집
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    • 제26권2A호
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    • pp.311-318
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    • 2006
  • GFRP를 이용하여 종방향 철근의 겹침이음이 존재하는 원형RC 교각의 내진보강 성능을 파악하기 위해 5개의 실물규모 실험체를 제작하여 실험하였다. 대상교각은 1979년에 완공된 후 현재 공용중인 비내진 원형 RC교각으로 겹침이음된 종방향 철근의 부착파괴에 의한 급작스런 파괴가 예상된다. GFRP 래핑(Wrapping)으로 보강된 교각들의 내진성능은 매우 향상되었다. 하지만, 예상한 휨파괴는 발생하지 않았고, 종방향 철근은 항복하지 않았다. 보강된 교각의 파괴양상은 겹침이음된 종방향 철근의 지연된 부착파괴로 판단된다. 제안된 GFRP 보강설계법을 실험적으로 검증하였다.

응력조건에 따른 원형터널 주변의 취성파괴범위와 파괴심도 (The extent and depth of brittle failure around circular tunnel with stress conditions)

  • 천대성;박철환;전석원;박찬
    • 터널과지하공간
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    • 제17권4호
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    • pp.311-321
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    • 2007
  • 경암 내 암반구조물의 파괴는 현지응력의 크기, 무결암의 강도 그리고 암반 내에 존재하는 불연속면의 상태에 의해 결정되며, 특히 높은 현지응력이 작용하는 경우 유도응력에 의해 취성파괴가 발생할 수 있다. 취성 파괴의 특성은 파괴수준, 파괴개시시점, 파괴범위와 파괴심도 등으로 구분할 수 있으며, 암반구조물의 안정성을 확보하기 위해서는 응력조건에 따른 취성파괴의 특성을 규명하여야 한다. 본 연구에서는 취성파괴가 발생한 상태에서 응력조건에 따른 파괴범위와 파괴심도를 평가하고자 하였다. 이를 위해 진삼축 압축응력조건에서 모형실험을 수행하였으며, 취성파괴가 발생한 모형실험체에 대하여 육안관찰과 컴퓨터단층촬영을 수행하여 파괴심도와 파괴범위를 결정하였다. 파괴심도는 터널단면에 작용하는 축차응력의 크기에 영향을 받으나 파괴범위의 경우 응력조건에 따른 뚜렷한 경향성을 보이지 않는 것으로 나타났다.

사면안정 해석과 댐 거동분석을 통한 Carsington Dam 파괴의 고찰 (Assessment of Carsington Dam Failure by Slope Stability and Dam Behavior Analyses)

  • 송정락;김성인
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1991년도 추계학술발표회 논문집 지반공학에서의 컴퓨터 활용 COMPUTER UTILIZATION IN GEOTECHNICAL ENGINEERING
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    • pp.87-102
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    • 1991
  • 영국 잉글랜드 지방의 Carsington Dam의 파괴원인은 설계시 발견되지 못한 댐 상류 사면 하부의 황색점토층의 존재와 이미 존재하던 전단변형에 기인한 것으로 보고되었다. 설계시 황색 점토층과 이미 존재하던 전단변형을 고려하지 않고 전통적인 원호파괴 양상으로 검토된 사면의 안전율은 1.4 이상으로 나타났다. 그러나 댐 파괴후 황색 점토층과 이미 존재하던 전단변형을 고려한 사면의 안전율은 약 1.0으로 보고되었다. 또한 파괴후 사면에 대한 유한 요소 해석결과로 부터 파괴 토괴의 절편에 작용하는 수평력은 수평에 대해서 약 10。아래로 작용하고 있음이 보고되었다. 본 고에서는 Bishop의 간편법과 Janbu 방법 및 Morgenstern-Price 방법을 이용하여 원호형 사면파괴양상과 특정 파괴면을 따라서 일어나는 쐐기형 파괴양상에 대하여 사면안정을 검토하였으며, 이미 존재하던 전단변형과 이에 따른 토괴의 연속적인 거동은 이미 주어진 지반 특성을 이용한 강도정수와 간극수압비에 의하여 고려하였다. 그 결과 확생 점토층을 무시하고 원호형 파괴 양상에 대하여 Bishop의 간편법에 의한 설계 시점에서의 안전율은 1.387로 나타났으며(STABL), 파괴 후의 지반자료를 이용하고, 황색점토층을 고려한 안전율을 Janbu 방법의 경우 1.012(STABL), 그리고 Morgenstern-Price 방법의 경우 0.969을 보여주었다(MALE). 또한 Cam-Clay Model을 이용한 유한 요소 해석용 프로그램을 이용하여 댐 제체의 거동을 검토하였다. 이때 댐 제체의 성토 작업 및 압밀진행에 따른 간극수압변화와, 파괴시 혹은 파괴에 임박한 상태에서의 제체의 거동은 적절하게 가정된 지반의 응력-변형률 관계와 간극수압특성에 의하여 고려되었다. 그 결과 응력 및 변위가 심하게 발생하는 지역은 황색 점토층이었으며 이로부터 황색 점토층에서 부터 파괴면이 생성되어 다른 지역으로 전파되었음을 유추할 수 있었다.form trap with 2.88[eV] deep of injected space charge from the chathode in the crystaline regions. The origin of ${\alpha}$$_2$ peak was regarded as the detrapping process of ions trapped with 0.9[eV] deep originated from impurity-ion remained in the specimen during production process of the material, in the crystalline regions. The origin of ${\beta}$ peak was concluded to be due to the depolarization process of "C=0"dipole with the activation energy of 0.75[eV] in the amorphous regions. The origin of ${\gamma}$ peak was responsible to the process combined with the depolarization of "CH$_3$", chain segment, with the activation energy of carriers from the shallow trap with 0.4[eV], in he amorphous regions.의 증발산율은 우기의 기상자료를 이용하여 구한 결과 0.05 - 0.10 mm/hr 의 범위로서 이로 인한 강우손실량은 큰 의미가 없음을 알았다.재발이 나타난 3례의 환자를 제외한 9례 (75%)에서는 현재까지 재발소견을 보이지 않고 있다. 이러한 결과는 다른 보고자들과 유사한 결과를 보이고 있지만 아직까지 증례가 많지 않기 때문에 생존율을 얻기에는 미흡

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Shape effect on axially loaded CFDST columns

  • R, Manigandan;Kumar, Manoj
    • Steel and Composite Structures
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    • 제43권6호
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    • pp.759-772
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    • 2022
  • Concrete-filled double skinned steel tubular (CFDST) columns have been used to construct modern structures such as tall buildings and bridges as well as infrastructures as they provide better, lesser weight, and greater stiffness in structural performance than conventional reinforced concrete or steel members. Different shapes of CFDST columns may be needed to satisfy the architectural and aesthetic criteria. In the study, three-dimensional FE simulations of circular and elliptical CFDST columns under axial compression were developed and verified through the experimental test data from the perspectives of full load-displacement histories, ultimate axial strengths, and failure modes. The verified FE models were used to investigate and compare the structural performance of CFDST columns with circular and elliptical cross-section shapes by evaluating the overall load-deformation curves, interaction stress-deformation responses, and composite actions of the column. At last, the accuracy of available design models in predicting the ultimate axial strengths of CFST columns were investigated. Research results showed that circular and elliptical CFDST column behaviors were generally similar. The overall structural performance of circular CFDST columns was relatively improved compared to the elliptical CFDST column.

The combined reinforcement to recycled aggregate concrete by circular steel tube and basalt fiber

  • Zhang, Xianggang;Zhang, Songpeng;Chen, Xu;Gao, Xiang;Zhou, Chunheng
    • Computers and Concrete
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    • 제29권 5호
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    • pp.323-334
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    • 2022
  • In order to study the axial compression performance of basalt-fiber reinforced recycled concrete (BFRRC) filled circular steel tubular short columns, the axial compression performance tests of seven short column specimens were conducted to observe the mechanical whole-process and failure mode of the specimens, the load-displacement curves and the load-strain curves of the specimens were obtained, the influence of design parameters on the axial compression performance of BFRRC filled circular steel tubular short columns was analyzed, and a practical mathematical model of stiffness degradation and a feasible stress-strain curve equation for the whole process were suggested. The results show that under the axial compression, the steel tube buckled and the core BFRRC was crushed. The load-axial deformation curves of all specimens show a longer deformation flow amplitude. Compared with the recycled coarse aggregate (RCA) replacement ratio and the basalt fiber dosage, the BFRRC strength has a great influence on the peak bearing capacity of the specimen. The RCA replacement ratio and the BFRRC strength are detrimental to ductility, whereas the basalt fiber dosage is beneficial to ductility.

Seismic damage evaluation of steel reinforced recycled concrete filled circular steel tube composite columns

  • Hui, Ma;Xiyang, Liu;Yunchong, Chen;Yanli, Zhao
    • Earthquakes and Structures
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    • 제23권5호
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    • pp.445-462
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    • 2022
  • To investigate and evaluate the seismic damage behaviors of steel reinforced recycled concrete (SRRC) filled circular steel tube composite columns, in this study, the cyclic loading tests of 11 composite columns was carried out by using the load-displacement joint control method. The seismic damage process, hysteretic curves and performance indexes of composite columns were observed and obtained. The effects of replacement rates of recycled coarse aggregate (RCA), diameter thickness ratio, axial compression ratio, profile steel ratio and section form of profile steel on the seismic damage behaviors of composite columns were also analyzed in detail. The results show that the failure model of columns is a typical bending failure under the combined action of horizontal loads and vertical loads, and the columns have good energy dissipation capacity and ductility. In addition, the replacement rates of RCA have a certain adverse effect on the seismic bearing capacity, energy consumption and ductility of columns. The seismic damage characteristics of composite columns are revealed according to the failure modes and hysteretic curves. A modified Park-Ang seismic damage model based on the maximum displacement and cumulative energy consumption was proposed, which can consider the adverse effect of RAC on the seismic damage of columns. On this basis, the performance levels of composite columns are divided into five categories, The interlayer displacement angle and damage index are used as the damage quantitative indicators of composite columns, and the displacement angle limits of composite columns at different performance levels under 80% assurance rate are calculated as 1/105, 1/85, 1/65, 1/28, and 1/25 respectively. On this basis, the damage index limits corresponding to each performance level are calculated as 0.045, 0.1, 0.48, 0.8, and 1.0 respectively. Finally, the corresponding relations among the performance levels, damage degrees, interlayer displacement angles and damage indexes of composite columns are established. The conclusions can provide reference for the seismic design of SRRC filled circular steel tube composite columns, it fills the vacancy in the research on seismic damage of steel reinforced recycled concrete (SRRC) filled circular steel tube composite columns.

전면부 변형형태에 따른 보강토 벽체 구조물의 파괴거동에 관한 연구 (A Study on the Failure Behavior of the Reinforced Earth Wall Structures according to the Deformed Types of the Face)

  • 김준석;이상덕
    • 한국지반공학회논문집
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    • 제15권4호
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    • pp.167-173
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    • 1999
  • 본 논문에서는 전면부 변형형태에 따른 보강토옹벽의 파괴거동을 탄소봉 모형 실험장치를 이용하여 실험적으로 연구하였다. 실험에서는 모형 보강토 벽체의 전면판 변형 형태를 상부변형, 수평변형, 하부변형 등 3종류로 나누어 실시하였다. 변형된 벽체의 파괴선을 육안으로 확인하기 위하여 사진촬영 기법을 이용하였다. 실험결과 상부변형의 조건일 경우 파괴선은 포물선의 형태를,수평이동의 조건일 경우 파괴선은 매우 큰 원호의 형태를 보였으며, 하부변형의 조건일 경우 파괴선은 직선화된 대수나선형태를 보였다. 현재 설계에 많이 사용되고 있는 복합중력식 설계법의 가상파괴선은 하부변형 조건의 파괴선과 가장 유사한 형태를 보였다.

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A numerical study on the seepage failure by heave in sheeted excavation pits

  • Koltuk, Serdar;Fernandez-Steeger, Tomas M.;Azzam, Rafig
    • Geomechanics and Engineering
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    • 제9권4호
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    • pp.513-530
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    • 2015
  • Commonly, the base stability of sheeted excavation pits against seepage failure by heave is evaluated by using two-dimensional groundwater flow models and Terzaghi's failure criterion. The objective of the present study is to investigate the effect of three-dimensional groundwater flow on the heave for sheeted excavation pits with various dimensions. For this purpose, the steady-state groundwater flow analyses are performed by using the finite element program ABAQUS 6.12. It has been shown that, in homogeneous soils depending on the ratio of half of excavation width to embedment depth b/D, the ratio of safety factor obtained from 3D analyses to that obtained from 2D analyses $FS_{(3D)}/FS_{(2D)}$ can reach up to 1.56 and 1.34 for square and circular shaped excavations, respectively. As failure body, both an infinitesimal soil column adjacent to the wall (Baumgart & Davidenkoff's criterion) and a three-dimensional failure body with the width suggested by Terzaghi for two-dimensional cases are used. It has been shown that the ratio of $FS_{(Terzaghi)}/FS_{(Davidenkoff)}$ varies between 0.75 and 0.94 depending on the ratio of b/D. Additionally, the effects of model size, the shape of excavation pit and anisotropic permeability on the heave are studied. Finally, the problem is investigated for excavation pits in stratified soils, and important points are emphasized.

Punching shear behavior of recycled aggregate concrete

  • Dan, Saikat;Chaudhary, Manpreet;Barai, Sudhirkumar V.
    • Computers and Concrete
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    • 제21권3호
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    • pp.321-333
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    • 2018
  • Flat-slabs, being a significant structural component, not only reduce the dead load of the structure but also reduce the amount of concrete required for construction. Moreover the use of recycled aggregates lowers the impact of large scale construction to nearby ecosystems. Recycled aggregate based concrete being a quasi-brittle material shows enormous cracking during failure. Crack growth in flat-slabs is mostly in sliding mode (Mode II). Therefore sufficient sections need to be provided for resistance against such failure modes. The main objective of the paper is to numerically determine the ultimate load carrying capacity of two self-similar flat-slab specimens and validate the results experimentally for the natural aggregate as well as recycled aggregate based concrete. Punching shear experiments are carried out on circular flat-slab specimen on a rigid circular knife-edge support built out of both normal (NAC) and recycled aggregate concrete (RAC, with full replacement). Uniaxial compression and bending tests have been conducted on cubes, cylinders and prisms using both types of concrete (NAC and RAC) for its material characterization and use in the numerical scheme. The numerical simulations have been conducted in ABAQUS (a known finite element software package). Eight noded solid elements have been used to model the flat slab and material properties have been considered from experimental tests. The inbuilt Concrete Damaged Plasticity model of ABAQUS has been used to monitor crack propagation in the specimen during numerical simulations.