• 제목/요약/키워드: Shear strength ratio

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초연약 점토의 구성관계 산정에 관한 실험적 연구 (A Experimental study for obtaining material function of very soft clay)

  • 이송;강명찬
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.491-498
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    • 2002
  • Dredged and reclaimed soft clays form slurry state which is very high water content and very low shear strength, experience large self-weight consolidation, nonlinear compressibility and permeability phenomenon would take place. In this case, a material functions which represent variety effective stress-void ratio-permeability relation (especially very low effective stress), are should be determined to predict nonlinear finite strain consolidation phenomenon forehand In this study, large slurry consolidometer with a 380mm diameter and a 1400mm height which is able to consolidation and permeability test, was developed to determine material function of very soft clay with a 500% initial water content clay, self-weight consolidation and low stress level consolidation (1Kpa, 3Kpa, 6Kpa, 12Kpa) was conducted and after each consolidation step permeability test also conducted. after final consolidation step, a constant rate of strain consolidation was conducted with undisturbed sample obtained from the large consolidometer. On the above result, material function was determined and laboratory test was modelled to evaluate its validity, numerical analysis on th field was compared to other method.

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Ductility-based seismic design of precast concrete large panel buildings

  • Astarlioglu, Serdar;Memari, Ali M.;Scanlon, Andrew
    • Structural Engineering and Mechanics
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    • 제10권4호
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    • pp.405-426
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    • 2000
  • Two approximate methods based on mechanism analysis suitable for seismic assessment/design of structural concrete are reviewed. The methods involve use of equal energy concept or equal displacement concept along with appropriate patterns of inelastic deformations to relate structure's maximum lateral displacement to member and plastic deformations. One of these methods (Clough's method), defined here as a ductility-based approach, is examined in detail and a modification for its improvement is suggested. The modification is based on estimation of maximum inelastic displacement using inelastic design response spectra (IDRS) as an alternative to using equal energy concept. The IDRS for demand displacement ductilities are developed for a single degree of freedom model subjected to several accelerograms as functions of response modification factor (R), damping ratios, and strain hardening. The suggested revised methodology involves estimation of R as the ratio of elastic strength demand to code level demand, and determination of design base shear using $R_{design}{\leq}R$ and maximum displacement, determination of plastic displacement using IDRS and subsequent local plastic deformations. The methodology is demonstrated for the case of a 10-story precast wall panel building.

Influences of porosity distributions and boundary conditions on mechanical bending response of functionally graded plates resting on Pasternak foundation

  • Guellil, Moustafa;Saidi, Hayat;Bourada, Fouad;Bousahla, Abdelmoumen Anis;Tounsi, Abdelouahed;Al-Zahrani, Mesfer Mohammad;Hussain, Muzamal;Mahmoud, S.R.
    • Steel and Composite Structures
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    • 제38권1호
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    • pp.1-15
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    • 2021
  • In this paper, a higher order shear deformation theory for bending analysis of functionally graded plates resting on Pasternak foundation and under various boundary conditions is exposed. The proposed theory is based on the assumption that porosities can be produced within functionally graded plate which may lead to decline in strength of materials. In this research a novel distribution of porosity according to the thickness of FG plate are supposing. Governing equations of the present theory are derived by employing the virtual work principle, and the closed-form solutions of functionally graded plates have been obtained using Navier solution. Numerical results for deflections and stresses of several types of boundary conditions are presented. The exactitude of the present study is confirmed by comparing the obtained results with those available in the literature. The effects of porosity parameter, slenderness ratio, foundation parameters, power law index and boundary condition types on the deflections and stresses are presented.

Prediction of dynamic soil properties coupled with machine learning algorithms

  • Dae-Hong Min;Hyung-Koo Yoon
    • Geomechanics and Engineering
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    • 제37권3호
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    • pp.253-262
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    • 2024
  • Dynamic properties are pivotal in soil analysis, yet their experimental determination is hampered by complex methodologies and the need for costly equipment. This study aims to predict dynamic soil properties using static properties that are relatively easier to obtain, employing machine learning techniques. The static properties considered include soil cohesion, friction angle, water content, specific gravity, and compressional strength. In contrast, the dynamic properties of interest are the velocities of compressional and shear waves. Data for this study are sourced from 26 boreholes, as detailed in a geotechnical investigation report database, comprising a total of 130 data points. An importance analysis, grounded in the random forest algorithm, is conducted to evaluate the significance of each dynamic property. This analysis informs the prediction of dynamic properties, prioritizing those static properties identified as most influential. The efficacy of these predictions is quantified using the coefficient of determination, which indicated exceptionally high reliability, with values reaching 0.99 in both training and testing phases when all input properties are considered. The conventional method is used for predicting dynamic properties through Standard Penetration Test (SPT) and compared the outcomes with this technique. The error ratio has decreased by approximately 0.95, thereby validating its reliability. This research marks a significant advancement in the indirect estimation of the relationship between static and dynamic soil properties through the application of machine learning techniques.

Prediction of longitudinal wave speed in rock bolt coupled with Multilayer Neural Network (MNN) algorithm

  • Jung-Doung Yu;Geunwoo Park;Dong-Ju Kim;Hyung-Koo Yoon
    • Smart Structures and Systems
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    • 제34권1호
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    • pp.17-23
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    • 2024
  • Non-destructive methods are extensively utilized for assessing the integrity of rock bolts, with longitudinal wave speed being a crucial property for evaluating rock bolt quality. This research aims to propose a method for predicting reliable longitudinal wave velocities by leveraging various properties of the rock surrounding the rock bolt. The prediction algorithm employed is the Multilayer Neural Network (MNN), and the input properties includes elastic modulus, shear wave speed, compressive strength, compressional wave speed, mass density, porosity, and Poisson's ratio, totaling seven. The implementation of the MNN demonstrates high reliability, achieving a coefficient of determination of 0.996. To assess the impact of each input property on longitudinal wave speed, an importance score is derived using the random forest algorithm, with the elastic modulus identified as having the most significant influence. When the elastic modulus is the sole input parameter, the coefficient of determination for predicting the longitudinal wave speed is observed to be 0.967. The findings of this study underscore the reliability of selecting specific properties for predicting longitudinal wave speed and suggest that these insights can assist in identifying relevant input properties for rock bolt integrity assessments in future construction site experiments.

헥사그리드 고층건물구조의 예비설계를 위한 단순모델 (Simple Model for Preliminary Design of Hexagrid Tall Building Structure)

  • 이한울;김영찬
    • 한국산학기술학회논문지
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    • 제18권6호
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    • pp.13-20
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    • 2017
  • 시대적 흐름에 따라 고층 건물은 정형적인 형태에서 벗어나 비정형적인 형태로 변화하고 있고 최근에는 외주골조에 기하학적 그리드 패턴으로 부재를 배치하고 있다. 본 연구에서는 헥사그리드구조의 부재선정을 위한 소요단면2차모멘트 산정식을 제안하였다. 헥사그리드 고층건물의 외주골조에 동일한 단면을 사용한 기존연구와는 다르게 수평 대각 부재와 모듈의 위치에 따라 부재사이즈를 변경하였다. 헥사그리드 유닛사이즈가 구조성능에 미치는 영향을 검토하기 위해 모듈의 높이를 1개층, 2개층, 4개층 높이로 한 60층 건물을 설계하여 해석하였다. 15개 건물에 대한 최대 횡변위, 철골량, 중력하중과 횡하중에 대한 외주골조의 횡력 분담비율, 부재의 조합 강도비를 비교하였다. 헥사그리드 구조의 횡력분담 능력이 다이아그리드 구조에 비해 작아서 헥사그리드 구조에서는 코어골조에 적절한 횡강성을 배분해야 한다. 휨변형 대 전단변형의 비는 4가 가장 적합하였고 부재간 접합에 따른 시공비용 및 구조적 효율성으로 판단할 때 헥사그리드 유닛이 큰 것이 유리하다고 판단된다. 건물의 최대 횡변위가 제한치의 84%~108%로 나와 헥사그리드 건물의 예비설계에 적용 가능한 것으로 보인다.

탄소섬유의 양극산화가 탄소섬유 강화 복합재료의 기계적 계면 특성에 미치는 영향 (Effect of Anodized Carbon Fiber Surfaces on Mechanical Interfacial Properties of Carbon Fibers-reinforced Composites)

  • 박수진;오진석;이재락
    • Composites Research
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    • 제15권6호
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    • pp.16-23
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    • 2002
  • 본 연구에서는 양극산화 처리에 따른 고강도 PAN계 탄소섬유의 표면 특성 변화가 기계적 계면 물성에 미치는 영향을 조사하였다. 탄소섬유의 표면성질은 산.염기도, SEM, XPS, 그리고 접촉각 측정을 통하여 알아보았으며, 복합재료의 기계적 계면 특성은 ILSS와 $K_{IC}$를 통하여 고찰하였다. 탄소섬유 표면의 산도와 $O_{ls}/C_{IC}$가 증가하였는데, 이는 산소관능기의 발달에 기인하고, 양극산화된 탄소섬유의 표면자유에너지의 증가는 극성요소의 증가에 기인하는 것으로 사료된다. ILSS와 $K_{IC}$ 같은 기계적 계면 성질은 양극산화로 향상되어졌는데, 이러한 결과는 좋은 젖음성이 최종 복합재료의 섬유와 에폭시 수지 매트릭스 사이의 계면결합력을 증가시기는 중요한 역할을 하기 때문으로 사료된다.

횡보강근 배근형상에 따른 RC 기둥의 연성에 관한 실험적 연구 (Experimental Study on Ductility of RC Columns According to Configuration of Transverse Reinforcement)

  • 김민준;김도진;김상우;이정윤;김길희
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권6호
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    • pp.18-25
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    • 2012
  • 이 연구에서는 횡보강근의 배근형상에 따른 철근콘크리트 기둥의 휨 연성을 평가하였다. 이를 위하여 총 8체의 철근콘크리트 기둥 실험체를 휨 실험하였다. 실험변수는 횡보강근의 배근형상과 항복강도 및 횡보강근량으로 하였다. 실험체는 $250{\times}250mm$ 단면을 가지도록 계획하였으며, 휨 파괴를 유도하기 위하여 전단경간비를 4.1로 계획하였다. 이 실험에서는 일정한 축하중과 함께 반복 횡하중을 실험체에 가력하였다. 실험결과, 제안된 횡보강근 배근형상을 가지는 실험체가 기존 띠철근을 가지는 실험체보다 더 높은 연성과 에너지 소산 능력을 나타냄을 확인할 수 있었다.

결정학적 방위에 의존하는 $Ni_3Al$ 단결정의 변형거동에 관한 연구 (A Study on the Deformation Behaviors of $Ni_3Al$ Single Crystals Depending on Crystallographic Orientations)

  • 한창석;천창환;한승오
    • 열처리공학회지
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    • 제22권3호
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    • pp.155-161
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    • 2009
  • An investigation of the deformation behavior of ${\gamma}'-Ni_3Al$ single crystals containing fine dispersion of disordered ${\gamma}$ particles was performed for several different crystal orientations. Deformation structures were observed by the weak-beam method of transmission electron microscopy (TEM). The critical resolved shear stress (CRSS) for (111) [$\bar{1}$01] slie. increases with increasing temperature in the temperature range where (111) slip operates. The CRSS for (111) [$\bar{1}$01] slip is dependent on crystal orientation in the corresponding temperature range. The temperature where the strenjlth reaches a maximum is dependent on crystal orientation; the higher the ratio of the Schmid factors of (010) [$\bar{1}$01] to that of (111) [$\bar{1}$01], the higher the peak temperature. The peak temperatures were increased by the precipitation of y particles for the samples of all orientations. Electron microscopy of deformation induced dislocation arrangements under peak temperature has revealed that most of dislocations are straight screw dislocations. The mobility of screw dislocations decreases with increasing temperature. Above the peak temperature, dislocations begin to cross slip from the (111) [$\bar{1}$01] slip system to the (010) [$\bar{1}$01] slip system, thus decreasing the strength.

FRP 그라우팅 보강지반의 전단특성에 관한 연구 (Study on Shearing Properties and Behavior of the Grout-reinforced Underground with ERP Pipes)

  • 최용기;박종호;권오엽;이상덕
    • 한국지반공학회논문집
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    • 제18권5호
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    • pp.73-81
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    • 2002
  • 최근에 FRP보강 그라우팅 공법이라 불리는 보강공법이 터널 및 절취사면의 지반보갓 분야에 도입되어 적용이 확대되고 있다. FRP관은 부식 및 화학적 내성이 우수하고 무게에 비하여 강도가 우수하여 취급이 용이하여 기존의 터널 보강재인 강재의 좋은 대체품이 될 수 있다. 그러나 FRP관이 터널의 막장 및 천단부의 보강재로서 적용성을 입증하기 위해서는 보강재 및 보강지반에 대한 역학적 강도특성이 명확하게 평가되어야 한다. 따라서, 본 논문은 지반보강 메카니즘을 고려한 FRP관을 이용한 그라우트체 및 그라우팅 보강지반에 대한 전단특성을 평가하기 위하여 실내에서 그라우트체에 대한 양면 전단시험과 보강지반에 대한 직접전단시험을 실시하였다. 시험결과 FRP 그라우트 보강지반의 전단저항은FRP관의 전단강도에 크게 의존하며 FRP그라우트체의 자체 전단저항은 어느 정도 전단변위가 커진 후에 발휘되는 것으로 확인되었다.