• 제목/요약/키워드: Interface shear strength

검색결과 494건 처리시간 0.023초

하프 PC판과 후타설콘크리트 접합면의 면내전단강도에 관한 실험적 연구 (An Experimental Study on In-Plane Shear Strength of the Interface between Half PC Plate and Cast-in-Place Concrete Plate)

  • 신동원;고만영;이동우;김용부
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 가을 학술발표논문집(II)
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    • pp.513-518
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    • 1998
  • In Half Precast Concrete Method, such as composite slab and composite wall, Interface between half PC plate and cast-in-place concrete is occurred. And this interface endure lastly in-plane shear which is occurred by external force. Therefore, test was executed to study in-plane shear strength of interface between half PC plate and cast-in-place concrete. In this test, Experimental parameters are finishing condition of the interface, cohesion of concrete, existence and nonexistence of re-bar truss, and angle and direction of lattice of re-bar truss. Comparing and analyzing experimental results, conclusions are obtained as follows. (1) In-plane shear strength of wide interface in composite plate is more affected by the roughness of interface than re-bar truss. And cohesion of concrete contribute to increasing in-plane shear strength. Therefore it seems that the interface should be roughen and kept clean to improve in-plane shear strength. (2) It seems that shear friction equation in ACI code can be sagely available for design of in-plane shear of composite plate.

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Bond behaviour at concrete-concrete interface with quantitative roughness tooth

  • Ayinde, Olawale O.;Wu, Erjun;Zhou, Guangdong
    • Advances in concrete construction
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    • 제13권3호
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    • pp.265-279
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    • 2022
  • The roughness of substrate concrete interfaces before new concrete placement has a major effect on the interface bond behaviour. However, there are challenges associated with the consistency of the final roughness interface prepared using conventional roughness preparation methods which influences the interface bond performance. In this study, five quantitative interface roughness textures with different roughness tooth angles, depths, and tooth distribution were created to ensure consistency of interface roughness and to evaluate the bond behaviour at a precast and new concrete interface using the splitting tensile test, slant shear test, and double-shear test. In addition, smooth interface specimens and two separate the pitting interface roughness were also utilized. Obtained results indicate that the quantitative roughness has a very limited effect on the interface tensile bond strength if no extra micro-roughness or bonding agent is added at the interface. The roughness method however causes enhanced shear bond strength at the interface. Increased tooth depth improved both the tensile and shear bond strength of the interfaces, while the tooth distribution mainly influenced the shear bond strength. Major failure modes of the test specimens include interface failure, splitting cracks, and sliding failure, and are influenced by the tooth depth and tooth distribution. Furthermore, the interface properties were obtained and presented while a comparison between the different testing methods, in terms of bond strength, was performed.

신구콘크리트 계면의 전단강도 측정을 위한 정하중 및 피로하중 보실험 (Beam Tests for Static and Fatigue Interface Shear Strength between Old and Njew Concretes)

  • 최동욱
    • 콘크리트학회지
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    • 제9권3호
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    • pp.137-147
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    • 1997
  • 신구콘크리트 계면(접합부)의 전단강도 측정을 목적으로 보시험체를 사용한 정하중 및 피로하중의 재하실험이 수행되었다. 총 13개의 시험체중에서 정적재하실험을 통하여 5개 시험체의 전단강도를 측정하였고, 8개의 시험체는 2,000,000회 또는 3,000,000회의 반복하중을 가력한 후 전단강도를 측정하였다. 실험변수는 접합부거칠기, 전단보강철근 및 시구콘크리트간 부착력의 유무이었다. 정적재하실험에서, 접합부가 거칠면서 콘크리트간 부착력이 존재한 시험체의 경우, 평균전단강도는 $61kgf/cm^2$이었다. 유사한 조건의 시험체의 3,000,000회의 전단하중을 가력한 피로하중실험에서 접착부의 열화현상은 나타나지 않았다. 이 때 반복가력된 최대전단응력은 $20kgf/cm^2$으로 전단강도의 약 1/3수준이었다. 접합부가 거칠게 처리되지 않은 시험체와 접합부는 거칠지만 콘크리트간 부착력이 인위적으로 제거된 시험체의 경우에는 전단보강철근을 사용하여도 피로하중에 의한 접합부의 열화현상이 나타났다.

Shear strength behavior of crude oil contaminated sand-concrete interface

  • Mohammadi, Amirhossein;Ebadi, Taghi;Eslami, Abolfazl
    • Geomechanics and Engineering
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    • 제12권2호
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    • pp.211-221
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    • 2017
  • A laboratory investigation into crude oil contaminated sand-concrete interface behavior is performed. The interface tests were carried out through a direct shear apparatus. Pure sand and sand-bentonite mixture with different crude oil contents and three concrete surfaces of different textures (smooth, semi-rough, and rough) were examined. The experimental results showed that the concrete surface texture is an effective factor in soil-concrete interface shear strength. The interface shear strength of the rough concrete surface was found higher than smooth and semi-rough concrete surfaces. In addition to the texture, the normal stress and the crude oil content also play important roles in interface shear strength. Moreover, the friction angle decreases with increasing crude oil content due to increase of oil concentration in soil and it increases with increasing interface roughness.

HDPE 표면처리 지오멤브레인의 경계면 전단강도에 관한 연구 (A Study on the Interface Shear Strength of HDPE Textured Geomembrane)

  • 김세진;윤희정
    • 한국지반환경공학회 논문집
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    • 제17권2호
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    • pp.41-49
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    • 2016
  • 본 논문에서는 HDPE 표면처리(textured) 지오멤브레인의 경계면 전단거동을 파악하고자 하였다. 표면처리 지오멤브레인과 marl, 그리고 직포(woven geotextile)와의 경계면에서 발생하는 경계면 전단강도를 측정하였으며, 표면처리의 영향을 파악하기 위해 매끈한(smooth) 지오멤브레인과 직포와의 경계면 전단강도를 측정하여 비교 분석하였다. 경계면 전단강도는 대형직접전단 시험기를 이용하여 측정하였으며, 다양한 조건에 대해 거동 변화를 알아보기 위해 수침조건과 수직응력을 변화시켰다. 시험에 사용된 수직응력은 총 6단계로 저압(12, 24, 45kPa)과 고압(100, 500, 1,000kPa)으로 구분하여 적용하였다. 시험결과 수침에 의한 경계면 전단강도의 감소는 유의미한 수준으로 나타났으며, 수직응력의 영향은 불확실했다. 표면처리 여부에 따라 경계면 전단강도는 큰 차이를 보여주었는데 매끈한 지오멤브레인의 경계면 전단강도는 표면처리 지오멤브레인에 비해 절반까지 감소하는 것으로 나타났다.

흙-토목섬유 Interface 특성에 관한 연구 (A Study on the Characteristics of the Soil-Geotextile Interface)

  • 고홍석;고남영;홍순영
    • 한국농공학회지
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    • 제33권2호
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    • pp.82-93
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    • 1991
  • The objective of this paper is to show that the soil-geotextile interaction needs to he addressed in addition to the usual tensile and modulus properties when the geotextile is being designed for a specific application. The soil-geotextile interaction can be directly assessed by standard direct shear test. The data presented here show that the shear strength paramaters describing the soil-geotextile interface can he greatly influenced by the type of the geotextile. In this investigation, we examined nine different geotextiles of varying construction and surface textures with two standard soil, under five loading conditions, and compared the shear strength and the frictional resistance with the corresponding values of soil itself The following conclusions were drawned from this study. 1. The shear stress-strain curve shows that there are the residual shear stresses at the soil-geotextile interface. Because of the hydraulic gradient between the soil and the geotextile, the excessive pore water can migrate into the geotextile and among the filaments and dissipate through the soil-geotextile interface. 2. The shear strength of the soil-geotextile interface is affected by the moisture content of the soil. At moisture content lower than the optimum water content of the Proctor compaction test, the shear strength of the soil-geotextile interface is greater. 3. The type and surface roughness of the geotextile have the greatest influence on the interface friction angle between the soil and the geotextile.

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물이 토목섬유 사이의 접촉 전단강도에 미치는 영향 (The Effect of Water on the Interface Shear Strength between Geosynthetics)

  • 서민우;박준범;박인준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.321-328
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    • 2002
  • Various geosynthetics used as liners or the Protection layers are installed in the solid waste landfill. The interface shear strength between geosynthetics installed at the slope of the landfill is a very important variable for the safe design of bottom and cover systems in the solid waste landfill. The interface shear strengths between (1) Geomembrane(GM)/Geotexile(GT) and (2) Geomembrane(GM)/Geosynthetic Clay Liner(GCL) were estimated by a large direct shear test in this study and were evaluated by the Mohr-Coulomb failure criterion. Especially, this research is focused on the effect of water which exists between geosynthetics because interfaces become easily wet or hydrated by rain, leachate and groundwater beneath liners. The strength reduction at large displacement and the effects of the magnitude of normal stresses and GCL hydration methods also investigated. The test results showed that the interface shear strength and shear behavior varied depending upon the magnitude of normal stresses, water at the interface, and hydration methods. Summary of secant friction angles, which could be used as reference values at a site where similar geosynthetics are installed, together with normal stress and hydration condition are presented.

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시멘트계 결합재가 적용된 지오텍스타일의 접촉면 전단강도 평가 (Evaluation of Shear Strength at Interface Between Geotextile and Cementitious Binder Materials)

  • 손동건;변용훈
    • 한국농공학회논문집
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    • 제64권1호
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    • pp.91-98
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    • 2022
  • Multi-layered geotextile tubes may have problems on its stability when used as cofferdam. This study presents the shear strength characteristics at the interface between geotextiles and a cementitious binder material to improve the stability of the multi-layered geotextile tubes. In this study, two different types of geotextiles are used. After mixing with a rapid setting cement, fly ash, sand, accelerator, and water, the cementitious binder material is prepared at the interface between two geotextile samples and cured under water for a desired period. The specimen is placed on upper and lower direct shear boxes by using clamping systems. A series of direct shear tests for two different geotextiles are performed along the curing time under three vertical stresses. Experimental results show that the shear strength at the interface between the cementitious binder material and geotextiles is greater than that at the interface between two geotextiles. For two types of geotextiles, apparent cohesion occurs at the interface between the cementitious binder material and geotextiles. In addition, the friction angles for any curing time are improved, compared to the interface between two geotextiles. The cementitious binder material suggested for the interface between two geotextiles may be useful for the reinforcement of multi-layered geotextile tubes.

현장계측을 통한 소일네일링 벽체의 거동 분석 (Analysis of Soil Nailed Wall Behaviour Based on Field Measurements)

  • 이철주;이도섭;김홍택;박재억;김충규
    • 한국지반공학회논문집
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    • 제20권6호
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    • pp.119-126
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    • 2004
  • 본 논문에서는 현장계측을 통해 관측된 소일네일링 벽체의 거동을 분석하였다. 연구의 주요내용으로는 인발시험을 통해 산정한 네일과 지반의 경계면에서 전단강도의 발생, 지반의 수평변위, 네일에 발생하는 인장력의 분포 및 경계면에서의 전단강도의 발현 등이다. 특히, 경계면에서의 전단응력 발생 과정 및 전단강도 발현에 대한 심도있는 분석을 실시하였다. 본 연구에서 분석된 자료는 국내 소일네일링의 예비설계 단계시 참고 자료로 활용될 수 있을 것으로 기대된다.

Evaluation of soil-concrete interface shear strength based on LS-SVM

  • Zhang, Chunshun;Ji, Jian;Gui, Yilin;Kodikara, Jayantha;Yang, Sheng-Qi;He, Lei
    • Geomechanics and Engineering
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    • 제11권3호
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    • pp.361-372
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    • 2016
  • The soil-concrete interface shear strength, although has been extensively studied, is still difficult to predict as a result of the dependence on many factors such as normal stresses, surface roughness, particle sizes, moisture contents, dilation angles of soils, etc. In this study, a well-known rigorous statistical learning approach, namely the least squares support vector machine (LS-SVM) realized in a ubiquitous spreadsheet platform is firstly used in estimating the soil-structure interface shear strength. Instead of studying the complicated mechanism, LS-SVM enables to explore the possible link between the fundamental factors and the interface shear strengths, via a sophisticated statistic approach. As a preliminary investigation, the authors study the expansive soils that are found extensively in most countries. To reduce the complexity, three major influential factors, e.g., initial moisture contents, initial dry densities and normal stresses of soils are taken into account in developing the LS-SVM models for the soil-concrete interface shear strengths. The predicted results by LS-SVM show reasonably good agreement with experimental data from direct shear tests.