• 제목/요약/키워드: confining stress

검색결과 335건 처리시간 0.027초

Confining effect of concrete in double-skinned composite tubular columns

  • Won, Deok Hee;Han, Taek Hee;Kim, Seungjun;Lee, Jung-Hwa;Kang, Young-Jong
    • Computers and Concrete
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    • 제14권5호
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    • pp.613-633
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    • 2014
  • A double-skinned composite tubular (DSCT) column, which consists of concrete and inner and outer tubes, was finally developed to overcome the weaknesses of concrete filled tube columns by reducing the self-weight of the column and confining the concrete triaxially. Research pertaining to the stiffness and strength of the column and the confining effect in a DSCT column has been carried out. However, detailed studies on the confining stress, especially the internal confining stress in a DSCT column, have not been carried out. Internal and external confining stresses should be evaluated to determine the effective confining stress in a DSCT column. In this paper, the confining stresses of concrete before and after insertion of an inner tube were studied using finite element analysis. The relationship between the internal or external confining stresses and the theoretical confining stress was investigated by parametric studies. New modified formulae for the yield and buckling failure conditions based on the formulae suggested by former researchers were proposed. Through analytical studies, the modified formulae were verified to be effective for economic and reasonable design of the inner tubes in a DSCT column under the same confining stress.

압축을 받는 내부 구속 중공 RC 기둥의 내부 구속력 (Internal Confining Stress of Internally Confined Hollow Columns under Compressive Load)

  • 원덕희;한택희;김승준;강영종
    • 한국강구조학회 논문집
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    • 제25권3호
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    • pp.243-254
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    • 2013
  • 내부구속중공 RC(Internally Confined Hollow RC, ICH RC) 기둥이란 중공 RC 기둥의 중공부에 내부튜브를 삽입하여 코어 콘크리트를 3축 구속 상태에 놓이게 하여 기둥의 강도와 연성도를 증가시킨 기둥이다. ICH RC 기둥의 구속응력에 대한 연구는 선행 연구자에 의하여 이루어 졌으나 외부 구속응력에 대한 연구만 진행된 상태이다. 본 연구에서는 중공 RC 기둥과 ICH RC 기둥의 구속응력을 유한요소 해석프로그램을 이용하여 분석하였다. 이론 구속응력과 외부 구속응력 그리고 내부 구속응력과의 관계를 도출하였으며, 이를 이용하여 기존의 내부 튜브 파괴조건식을 기반으로 수정 내부튜브 파괴 조건식을 제안하였다. 이론 구속응력과 내부 구속응력과의 관계를 회귀 분석식을 이용하여 나타내어 내부 구속응력을 쉽게 산정할 수 있다. 또한 수정 내부 튜브 파괴 조건식을 이용하여 ICH RC 기둥을 설계할 경우 동일 구속응력대비 기존의 파괴조건식보다 약 50%의 내부 튜브 두께를 감소할 수 있어 경제성을 확보하였다.

선행하중(先行荷重)에 의한 점토(粘土)의 강도특성(强度特性) (Strength Characteristics of Clay Soil by Preconsolidation Pressure)

  • 전용백;신영기
    • 한국산업융합학회 논문집
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    • 제6권3호
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    • pp.185-192
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    • 2003
  • This study consolidation undrain Triaxial Compression Tests using constant confining pressure in clay that receive preconsolidation stress that is different and, void ratio, pore water pressure coefficient, shear strength compare with another thing theory and studied analyzing change relation of elastic modules. The summary of analysis is follows: If preconsolidation stress increases in same confining stress in relation of preconsolidation stress and deviator stress, deviator stress is proportional and increased. Can know that excess void pressure is proportional and decreases in size of preconsolidation stress in same confining stress state if preconsolidation stress increases preconsolidation stress and relation of excess void pressure. Also, over consolidated state can assume that this is thing by Dilatancy's effect though excess void pressure decreased remarkably. Preconsolidation stress and relation of stress path can know that shear strength degree increases preconsolidation stress increases, and specially, preconsolidation stress was appear in stress path form of overconsolidated state case of clay that receive at 300, 400, 500kPa in 100, 150kPa's deviator stress.

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나선근에 의한 횡보강 응력 계산을 위한 횡보강 유효 계수의 산정법 (Estimation of Confinement Effectiveness Factor for Confining Stress by Spiral)

  • 김진근;박찬규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1995년도 봄 학술발표회 논문집
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    • pp.280-285
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    • 1995
  • In order to predict the behavior of column confined with spirals, the accurate estimation of confining stress by spiral is very important, Thus a number of models have been proposed for calculating the confining stress by spiral. However, in these equations, it was not considered the effects of the difference of mechanical characteristics related to the application of high strength concrete and spiral in structures. In this study, a model equation for calculation of the confining stress by spiral was proposed based on the test results investigated here. The proposed equation included the effects of concrete strength, spacing and yield strength of spirals

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Plastic deformation characteristics of disintegrated carbonaceous mudstone under dynamic loading

  • Qiu, Xiang;Yin, Yixiang;Jiang, Huangbin;Fu, Sini;Li, Jinhong
    • Geomechanics and Engineering
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    • 제31권1호
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    • pp.87-97
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    • 2022
  • The excessive settlement and deformation of disintegrated carbonaceous mudstone (DCM) embankments under dynamic loading have long been problems for engineers and technicians. In this work, the characteristics and mechanism of the plastic deformation of DCM under different degrees of compaction, water contents and confining pressures were studied by static triaxial, dynamic triaxial and scanning electron microscopy testing. The research results show that the axial stress increases with increasing confining pressure and degree of compaction and decreases with increasing water content when DCM failure. The axial strain at failure of the DCM decreases with increasing confining pressure and degree of compaction and increases with increasing water content. Under cyclic dynamic stress, the change in the axial stress level of the DCM can be divided into four stages: the stable stage, transition stage, safety reserve stage and unstable stage, respectively. The effects of compaction, water content and confining pressure on the critical axial stress level which means shakedown of the DCM are similar. However, an increase in confining pressure reduces the effects of compaction and water content on the critical axial stress level. The main deformation of DCM is fatigue cracking. Based on the allowable critical axial stress, a method for embankment deformation control was proposed. This method can determine the degree of compaction and fill range of the embankment fill material according to the equilibrium moisture content of the DCM embankment.

Effect of confining stress on representative elementary volume of jointed rock masses

  • Wu, Na;Liang, Zhengzhao;Li, Yingchun;Qian, Xikun;Gong, Bin
    • Geomechanics and Engineering
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    • 제18권6호
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    • pp.627-638
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    • 2019
  • Estimation of representative elementary volume (REV) of jointed rock masses is critical to predict the mechanical behavior of field-scale rock masses. The REV of jointed rock masses at site is strongly influenced by stress state. The paper proposed a method to systematically studied the influence of confining stress on the REV of jointed rock masses with various strengths (weak, medium and strong), which were sourced from the water inlet slope of Xiaowan Hydropower Station, China. A finite element method considering material heterogeneity was employed, a series of two-dimensional (2D) models was established based on the Monte-Carlo method and a lot of biaxial compressive tests were conducted. Numerical results showed that the REV of jointed rock masses presented a step-like reduction as the normalized confining stress increased. Confining stress weakened the size effect of jointed rock masses, indicating that the REV determined under uniaxial compression test can be reasonably taken as the REV of jointed rock masses under complexed in-situ stress environment.

A discrete element simulation of a punch-through shear test to investigate the confining pressure effects on the shear behaviour of concrete cracks

  • Shemirani, Alireza Bagher;Sarfarazi, Vahab;Haeri, Hadi;Marji, Mohammad Fatehi;Hosseini, Seyed shahin
    • Computers and Concrete
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    • 제21권2호
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    • pp.189-197
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    • 2018
  • A discrete element approach is used to investigate the effects of confining stress on the shear behaviour of joint's bridge area. A punch-through shear test is used to model the concrete cracks under different shear and confining stresses. Assuming a plane strain condition, special rectangular models are prepared with dimension of $75mm{\times}100mm$. Within the specimen model and near its four corners, four equally spaced vertical notches of the same depths are provided so that the central portion of the model remains intact. The lengths of notches are 35 mm. and these models are sequentially subjected to different confining pressures ranging from 2.5 to 15 MPa. The axial load is applied to the punch through the central portion of the model. This testing and models show that the failure process is mostly governed by the confining pressure. The shear strengths of the specimens are related to the fracture pattern and failure mechanism of the discontinuities. The shear behaviour of discontinuities is related to the number of induced shear bands which are increased by increasing the confining pressure while the cracks propagation lengths are decreased. The failure stress and the crack initiation stress both are increased due to confining pressure increase. As a whole, the mechanisms of brittle shear failure changes to that of the progressive failure by increasing the confining pressure.

일축압축을 받는 내부 구속 중공 CFT 기둥의 최적 구속 효과 연구 (A Study on Optimum Confined Effect for Internally Confined Hollow CFT Columns under Uniaxial Compression)

  • 원덕희;한택희;윤나리;강영종
    • 대한토목학회논문집
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    • 제32권4A호
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    • pp.227-235
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    • 2012
  • 최근 기둥의 구속효과에 대한 연구가 많이 연구되어지고 있다. 주로 철근 콘크리트 기둥과 CFT(Concrete Filled Tube)기둥과 같이 중실 기둥에 대한 연구로 한정되어 있는 반면 중공 기둥에 대한 구속효과 연구가 매우 미비한 실정이다. 중공 기둥의 외부 구속력에 대한 연구가 주로 연구되고 있고 내부 구속력을 외부 구속력과 동일하게 가정하고 구속 콘크리트의 구속효과를 평가하고 있다. 본 연구에서는 중공 CFT 기둥에 내부 튜브를 삽입하여 구속 콘크리트 3축 구속 상태로 놓이게 하여 연성 및 강도를 상승 시킨 내부 구속 중공 CFT 기둥(Internally Confined Hollow CFT, ICH CFT)의 최적 구속메커니즘을 도출하기 위한 연구를 하였다. 내부튜브 두께, 중공비, 기둥의 직경, 콘크리트와 외부튜브의 휨강성비를 매개변수로 삼아 범용 FEM 프로그램으로 비선형 해석 연구를 수행하여 최적 내부 구속력 도출을 통하여 수정 파괴 조건식을 제안하였다. 수정 파괴 조건식은 최적 내부 튜브의 두께를 산정하여 기둥이 경제성을 확보하도록 하였다.

Analysis of the dynamic confining effect of CRAC short column under monotonic loadings

  • Wang, Changqing;Xiao, Jianzhuang
    • Structural Engineering and Mechanics
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    • 제74권3호
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    • pp.351-363
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    • 2020
  • Based on the dynamic tests of recycled aggregate concrete (RAC) short columns confined by the hoop reinforcement, the dynamic failure mechanism and the mechanical parameters related to the constitutive relation of confined recycled aggregate concrete (CRAC) were investigated thoroughly. The fracturing sections were relatively flat and smooth at higher strain rates rather than those at a quasi-static strain rate. With the increasing stirrup volume ratio, the crack mode is transited from splitting crack to slipping crack constrained with large transverse confinement. The compressive peak stress, peak strain, and ultimate strain increase with the increase of stirrup volume ratio, as well as the increasing strain rate. The dynamic confining increase factors of the compressive peak stress, peak strain, and ultimate strain increase by about 33%, 39%, and 103% when the volume ratio of hoop reinforcement is increased from 0 to 2%, but decrease by about 3.7%, 4.2%, and 9.1% when the stirrup spacing is increased from 20mm to 60mm, respectively. This sentence is rephrased as follows: When the stirrup volume ratios are up to 0.675%, and 2%, the contributions of the hoop confinement effect to the dynamic confining increase factors of the compressive peak strain and the compressive peak stress are greater than those of the strain rate effect, respectively. The dynamic confining increase factor (DCIF) models of the compressive peak stress, peak strain, and ultimate strain of CRAC are proposed in the paper. Through the confinement of the hoop reinforcement, the ductility of RAC, which is generally slightly lower than that of NAC, is significantly improved.

새만금 준설모래의 비배수 거동 (Undrained Behavior on Saemangeum Dredged Sands)

  • 정상국;강권수;양재혁
    • 한국구조물진단유지관리공학회 논문집
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    • 제6권1호
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    • pp.193-203
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    • 2002
  • The results of an experimental study on Saemangeum dredged sands are presented. Undrained triaxial compression tests were performed with there different initial relative densities, namely 18, 34, and 50%, intend to evaluate undrained Behavior. All undrained triaxial compression tests were performed under static loading conditions. Undrained triaxial compression tests were exhibited complete static liquefaction, zero effective confining pressure and zero stress difference at lower confining pressures. As confining pressures were increased, the effective stress paths indicated increasing resistance to static liquefaction by showing increasing dilatant tendencies. The fines and larger particles create a particle structure with high compressibility at lower confining pressure. The effect of increasing relative density was to increase the resistance of the sand against static liquefaction by making the sand more dilatant.