• 제목/요약/키워드: Joint cohesion

검색결과 34건 처리시간 0.047초

Research on damage and identification of mortise-tenon joints stiffness in ancient wooden buildings based on shaking table test

  • Xue, Jianyang;Bai, Fuyu;Qi, Liangjie;Sui, Yan;Zhou, Chaofeng
    • Structural Engineering and Mechanics
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    • 제65권5호
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    • pp.547-556
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    • 2018
  • Based on the shaking table tests of a 1:3.52 scale one-bay and one-story ancient wooden structure, a simplified structural mechanics model was established, and the structural state equation and observation equation were deduced. Under the action of seismic waves, the damage rule of initial stiffness and yield stiffness of the joint was obtained. The force hammer percussion test and finite element calculations were carried out, and the structural response was obtained. Considering the 5% noise disturbance in the laboratory environment, the stiffness parameters of the mortise-tenon joint were identified by the partial least squares of singular value decomposition (PLS-SVD) and the Extended Kalman filter (EKF) method. The results show that dynamic and static cohesion method, PLS-SVD, and EKF method can be used to identify the damage degree of structures, and the stiffness of the mortise-tenon joints under strong earthquakes is reduced step by step. Using the proposed model, the identified error of the initial stiffness is about 0.58%-1.28%, and the error of the yield stiffness is about 0.44%-1.21%. This method has high accuracy and good applicability for identifying the initial stiffness and yield stiffness of the joints. The identification method and research results can provide a reference for monitoring and evaluating actual engineering structures.

An experimental study on shear mechanical properties of clay-concrete interface with different roughness of contact surface

  • Yang, Wendong;Wang, Ling;Guo, Jingjing;Chen, Xuguang
    • Geomechanics and Engineering
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    • 제23권1호
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    • pp.39-50
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    • 2020
  • In order to understand the shear mechanical properties of the interface between clay and structure and better serve the practical engineering projects, it is critical to conduct shear tests on the clay-structure interface. In this work, the direct shear test of clay-concrete slab with different joint roughness coefficient (JRC) of the interface and different normal stress is performed in the laboratory. Our experimental results show that (1) shear strength of the interface between clay and structure is greatly affected by the change of normal stress under the same condition of JRC and shear stress of the interface gradually increases with increasing normal stress; (2) there is a critical value JRCcr in the roughness coefficient of the interface; (3) the relationship between shear strength and normal stress can be described by the Mohr Coulomb failure criterion, and the cohesion and friction angle of the interface under different roughness conditions can be calculated accordingly. We find that there also exists a critical value JRCcr for cohesion and the cohesion of the interface increases first and then decreases as JRC increases. Moreover, the friction angle of the interface fluctuates with the change of JRC and it is always smaller than the internal friction angle of clay used in this experiment; (4) the failure type of the interface of the clay-concrete slab is type I sliding failure and does not change with varying JRC when the normal stress is small enough. When the normal stress increases to a certain extent, the failure type of the interface will gradually change from shear failure to type II sliding failure with the increment of JRC.

Towards a model of dry shear keyed joints: modelling of panel tests

  • Turmo, J.;Ramos, G.;Aparicio, A.C.
    • Computers and Concrete
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    • 제10권5호
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    • pp.469-487
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    • 2012
  • This paper presents a study on the behaviour of the joints of segmental concrete bridges with external prestressing, focusing on the structural response of dry non-epoxied joints with shear keys. A Finite Element joint model to study such structures is validated modelling eight concrete panel tests. The most important feature of this model is that it has been validated with experimental tests on concrete panels which were specifically designed to fail in shear. Interface elements are used to reproduce the non linear behaviour of the joint and parameters deduced from the tests are used to define the constitutive law of these elements. This joint model is of great importance because it will permit the development of a structural model that faithfully reproduces the behaviour of these structures under combined flexure and shear and the study of its global behaviour after the opening of the joints. Interesting conclusions about the behaviour of the dry joints, about the contribution of the different mechanisms transferring shear (friction and cohesion) and about the shear stress distribution in the joint have been reached.

링 전단시험기를 이용한 암석절리의 잔류강도 특성에 관한 연구 (A Study on Residual Stress Characteristics for Joint of Rock in Ring Shear Tests)

  • 권준욱;김선명;윤지선
    • 한국지반공학회논문집
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    • 제16권6호
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    • pp.35-41
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    • 2000
  • Residual stress is defined as a minimum stress with a large displacement of specimens and the residual stress after peak shear stress appears with displacement volume but there is no provision to select the residual stress. In the previous study, residual stress was recorded when the change of shear load is small in the condition of the strain more than 15%. But, in this study, hyperbolic function((No Abstract.see full/text), b=experimental constant) of soil test is adapted to joint of rock and the propriety is investigated. In a landslide and landsliding of artificial slope, wedge failure of tunnel with a large displacement, tests are simulated from peak stress to residual stress for safety analysis. But now. direct shear stress and triaxial compressive tests are usually performed to find out characteristics of shear stress about joint. Although these tests get a small displacement, that data of peak stress and residual stress are used for safety analysis. In this study, we tried to determine failure criteria for joints of rock using ring shear test machine. The residual stress following shear behavior was determined by the result of ring shear test and direct shear test. In conclusion, after comparing the results of the two test, we found that cohesion(c) and internal friction angle(ø) of ring shear test are 30% and 22% respectively of those of the direct shear test.

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절리면의 거칠기 변화가 전단강도에 미치는 영향 (A Study of the Effect of Asperity Change on the Shear Strength of Joint Plane)

  • 조태진;석재욱;이종건
    • 터널과지하공간
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    • 제23권5호
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    • pp.401-412
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    • 2013
  • 전단거동에 의한 절리면의 거칠기 변화가 전단강도에 미치는 영향을 조사하기 위하여 절리면 강도가 상이한 편마암, 화강암 및 셰일 시료를 이용하여 순차적 다단계 전단시험을 수행하였다. 시험단계별로 절리면 프로파일의 고도를 측정하여 거칠기 계수를 산정하고 미세 거칠기 빈도 변화를 조사하였다. 거칠기 감쇠에 대한 최적의 거칠기 계수를 산정하여 반복된 전단거동에 의한 순차적 거칠기 감쇠특성을 고찰하였다. 전단강도식을 산정하여 점착력과 마찰각의 차별적 변화양상을 도출하였으며, 표면 거칠기의 마모, 파쇄 및 재형성에 의한 미세 거칠기 빈도변화를 조사하여 강도계수 변화의 원인적 요인을 분석하였다. 또한, 미세 거칠기 변화양상이 전단강도에 미치는 영향을 절리면 강도를 고려하여 분석하였다.

Lattice-spring-based synthetic rock mass model calibration using response surface methodology

  • Mariam, Al-E'Bayat;Taghi, Sherizadeh;Dogukan, Guner;Mostafa, Asadizadeh
    • Geomechanics and Engineering
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    • 제31권5호
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    • pp.529-543
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    • 2022
  • The lattice-spring-based synthetic rock mass model (LS-SRM) technique has been extensively employed in large open-pit mining and underground projects in the last decade. Since the LS-SRM requires a complex and time-consuming calibration process, a robust approach was developed using the Response Surface Methodology (RSM) to optimize the calibration procedure. For this purpose, numerical models were designed using the Box-Behnken Design technique, and numerical simulations were performed under uniaxial and triaxial stress states. The model input parameters represented the models' micro-mechanical (lattice) properties and the macro-scale properties, including uniaxial compressive strength (UCS), elastic modulus, cohesion, and friction angle constitute the output parameters of the model. The results from RSM models indicate that the lattice UCS and lattice friction angle are the most influential parameters on the macro-scale UCS of the specimen. Moreover, lattice UCS and elastic modulus mainly control macro-scale cohesion. Lattice friction angle (flat joint fiction angle) and lattice elastic modulus affect the macro-scale friction angle. Model validation was performed using physical laboratory experiment results, ranging from weak to hard rock. The results indicated that the RSM model could be employed to calibrate LS-SRM numerical models without a trial-and-error process.

콘크리트 시공줄눈 면에서 점착력 및 마찰계수의 변화를 고려한 전단내력 평가 (Estimation of Shear Strength Along Concrete Construction Joints Considering the Variation of Concrete Cohesion and Coefficient of Friction)

  • 양근혁;권혁진;박종범
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권6호
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    • pp.106-112
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    • 2017
  • 본 연구에서는 콘크리트 시공줄눈 면의 전단마찰 내력을 합리적으로 평가하기 위하여 콘크리트 소성론의 상계치 이론에 기반한 수학적 모델을 제시하였다. 전단면에서 횡보강근의 전단전달에 대한 과대평가를 피하기 위하여 시공줄눈 면에서의 하중전달에 대한 스트럿-타이 모델에서 콘크리트 할렬 및 압괴의 한계상태로부터 전단마찰 내력의 상한값을 유도하였다. 제시된 모델은 시공줄눈 면에서 콘크리트 점착력과 마찰계수를 거친 면의 경우 각각 $0.27(f_{ck})^{0.65}$와 0.95를, 부드러운 면의 경우 각각 $0.11(f_{ck})^{0.65}$와 0.64로 결정하였는데, 여기서 $f_{ck}$는 콘크리트 압축강도이다. 직접전단에 대한 기존 문헌으로부터 수집한 146 실험데이터와의 비교로부터, 제시된 모델은 AASHTO 및 fib 2010 식에 비해 예측 값과 실험 값들의 비의 표준편차 및 변동계수에 대해 더 낮은 값을 보였다. 특히 전단마찰 내력 평가에서 기준식들의 상당한 과소평가 경향과 달리 제시된 모델은 실험결과와 잘 예측하였다.

직접전단시험에 의한 석회암 자연절리면의 전단특성 분석사례 (Case Study on the Shear Characteristics of Limestone Joint Surfaces by Direct Shear Tests)

  • 김종우
    • 터널과지하공간
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    • 제29권5호
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    • pp.292-304
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    • 2019
  • 완만한 거칠기를 갖는 석회암 자연절리면에 대하여 KSRM 표준시험법에 의거한 개별적 직접전단시험과 수직응력을 단계별로 조절하는 다단계 직접전단시험을 실시하였다. 각 시험을 통해 전단시험 전후의 절리면 거칠기 변화를 알아보았고, 두 가지 시험에서 얻은 전단특성 값의 차이를 분석하였다. 두 가지 시험에서 모두 절리면의 거칠기가 클수록 전단저항은 증가하였으며, 수직응력이 증가할수록 절리면의 전단에 필요한 최대전단응력 값은 증가하였다. 다단계 직접전단시험으로 구한 최대마찰각은 개별적 직접 전단시험으로 구한 것의 63% 수준에 불과하였다. 다단계시험은 절리면 요철부의 초기 맞물림이 단계적인 전단과정에 따라 시험 중 수시로 변화되어 원래의 거칠기가 변형되기 때문에 암석 절리면의 마찰각을 구할 때는 개별적 직접전단시험이 더 유효한 방법으로 판단된다. JRC값 4~8의 완만한 거칠기를 갖는 석회암 절리면의 물성값은 최대마찰각 $47^{\circ}$, 잔류마찰각 $38^{\circ}$, 점착력 37 kPa으로 평가되었다.

Roles of Budding Yeast Hrr25 in Recombination and Sporulation

  • Lee, Min-Su;Joo, Jeong Hwan;Kim, Keunpil
    • Journal of Microbiology and Biotechnology
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    • 제27권6호
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    • pp.1198-1203
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    • 2017
  • Hrr25, a casein kinase $1{\delta}/{\varepsilon}$ homolog in budding yeast, is essential to set up mono-orientation of sister kinetochores during meiosis. Hrr25 kinase activity coordinates sister chromatid cohesion via cohesin phosphorylation. Here, we investigated the prophase role of Hrr25 using the auxin-inducible degron system and by ectopic expression of Hrr25 during yeast meiosis. Hrr25 mediates nuclear division in meiosis I but does not affect DNA replication. We also found that initiation of meiotic double-strand breaks as well as joint molecule formation were normal in HRR25-deficient cells. Thus, Hrr25 is essential for termination of meiotic division but not homologous recombination.

암반사면의 평면파괴에 대한 신뢰성해석 (Reliability Analysis of Plane Failure in Rock Slope)

  • 장연수;오승현;김종수
    • 한국지반공학회논문집
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    • 제18권4호
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    • pp.119-126
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    • 2002
  • 본 논문에서는 암반사면의 절토시 현장지반 시추조사의 불충분한 자료와 비균질한 지반특성에서 오는 불확실성이 암사면의 파괴확률에 미치는 영향을 알아보기 위하여 신뢰성해석을 실시하였고 이를 확정론적 해석결과와 비교하였다. 해석에 사용된 확률변수는 절리면의 점착력과 마찰각, 암반의 단위중량 이었으며 절리면의 경사각은 확률변수로 적용한 경우와 그렇지 않은 경우로 나누어 해석하였다. 해석 결과 대상 절토사면의 경우 확정론적 해석시 안정하게 나타남에도 신뢰도 해석에서는 연약 지질층의 영향에 의한 높은 불명확성으로 인하여 높은 파괴확률을 갖는 것으로 나타났다. 각 확률변수의 평균값과 분산에 대한 파괴확률의 민감도는 점착력이 가장 큰 것으로 나타났으며 평균값이 미치는 민감도가 분산의 경우보다 크게 나타나 현장 지반물성치들에 대한 평균값의 정확한 산출이 중요한 것으로 나타났다.