• 제목/요약/키워드: Bond strength-slip relationship

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CFT 기둥의 부착응력에 관한 연구 (Bond Stress in Concrete Pilled Steel Tubular Column)

  • 권승희;김진근
    • 콘크리트학회논문집
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    • 제13권2호
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    • pp.93-98
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    • 2001
  • CFT 기둥은 탁월한 구조적 성능을 발휘하는데, 이는 강관과 콘크리트의 복합거동에 기인하는 것이다. 이러한 CFT 기둥의 거동을 예측하기 위해서는 강관과 콘크리트 사이의 부착거동을 파악해야 한다. 그러나 이형철근을 대상으로 한 대부분의 기존 모델식은 CFT 기둥에 적용할 수 없으므로, 새로운 모델식의 개발이 필요하다. 본 논문의 목적은 구속압이 발현된 상태의 CFT 기둥에서 콘크리트와 강관의 부착응력과 수직응력의 관계, 기둥단면에서의 응력 분포도를 고려한 부착거동에 관한 모델식의 개발이다. 평형조건으로부터 콘크리트와 강관의 부착응력과 수직응력의 관계를 유도하였으며, 이차원 문제의 Airy 응력함수(stress function)로부터 CFT 기둥 단면에서의 횡방향 응렬 관계를 파악하였다. 그리고 5개의 CFT 기둥 실험체에 대해 콘크리트에만 하중을 가하는 실험을 실시하였고, 측정된 변형률로부터 회귀분석의 방법을 통해 부착강도와 횡방향 구속압의 관계를 파악하였다. 이로부터 새로운 부착강도 모델식을 제안하였으며, CFT 기둥에서 콘크리트만 가압한 경우의 각 방향 응력관계를 파악하였다.

아라미드 FRP 스트립과 강판 사이의 계면 부착응력에 관한 실험적 연구 (Experimental Study on Interfacial Bond Stress between Aramid FRP Strips and Steel Plates)

  • 박재우;류재용;최성모
    • 한국강구조학회 논문집
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    • 제27권4호
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    • pp.359-370
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    • 2015
  • 본 연구에서는 AFRP 스트립과 강재사이의 부착거동에 관한 실험적 연구를 수행하였다. 실험적 연구를 통해 AFRP 판과 강판사이의 계면부착거동을 관찰하고, 계면부착응력을 산정하는 것이 본 연구의 목표이다. 실험변수로는 부착길이와 AFRP의 두께를 선택하였으며, 18개의 일면전단시편 제작하여 실험을 수행하였다. 실험결과 부착길이와 AFRP 두께가 증가함에 따라 하중값을 증가하였으며, 부착길이와 AFRP 두께가 증가함에 따라 각각 63%, 86%의 하중값이 증가하였다. 끝으로 강재와 AFRP 사이의 부착응력-슬립관계를 산정하였다. 부착응력-슬립관계는 탄성선형거동을 보이고 있으며, 부착길이와 AFRP 두께는 부착응력과 파괴에너지에 영향을 덜 미치는 것으로 나타났다.

Optimised neural network prediction of interface bond strength for GFRP tendon reinforced cemented soil

  • Zhang, Genbao;Chen, Changfu;Zhang, Yuhao;Zhao, Hongchao;Wang, Yufei;Wang, Xiangyu
    • Geomechanics and Engineering
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    • 제28권6호
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    • pp.599-611
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    • 2022
  • Tendon reinforced cemented soil is applied extensively in foundation stabilisation and improvement, especially in areas with soft clay. To solve the deterioration problem led by steel corrosion, the glass fiber-reinforced polymer (GFRP) tendon is introduced to substitute the traditional steel tendon. The interface bond strength between the cemented soil matrix and GFRP tendon demonstrates the outstanding mechanical property of this composite. However, the lack of research between the influence factors and bond strength hinders the application. To evaluate these factors, back propagation neural network (BPNN) is applied to predict the relationship between them and bond strength. Since adjusting BPNN parameters is time-consuming and laborious, the particle swarm optimisation (PSO) algorithm is proposed. This study evaluated the influence of water content, cement content, curing time, and slip distance on the bond performance of GFRP tendon-reinforced cemented soils (GTRCS). The results showed that the ultimate and residual bond strengths were both in positive proportion to cement content and negative to water content. The sample cured for 28 days with 30% water content and 50% cement content had the largest ultimate strength (3879.40 kPa). The PSO-BPNN model was tuned with 3 neurons in the input layer, 10 in the hidden layer, and 1 in the output layer. It showed outstanding performance on a large database comprising 405 testing results. Its higher correlation coefficient (0.908) and lower root-mean-square error (239.11 kPa) were obtained compared to multiple linear regression (MLR) and logistic regression (LR). In addition, a sensitivity analysis was applied to acquire the ranking of the input variables. The results illustrated that the cement content performed the strongest influence on bond strength, followed by the water content and slip displacement.

Meso scale model for fiber-reinforced-concrete: Microplane based approach

  • Smolcic, Zeljko;Ozbolt, Josko
    • Computers and Concrete
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    • 제19권4호
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    • pp.375-385
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    • 2017
  • In the present paper experimental and numerical analysis of hook-ended steel fiber reinforced concrete is carried out. The experimental tests are performed on notched beams loaded in 3-point bending using fiber volume fractions up to 1.5%. The numerical analysis of fiber reinforced concrete beams is performed at meso scale. The concrete is discretized with 3D solid finite elements and microplane model is used as a constitutive law. The fibers are modelled by randomly generated 1D truss finite elements, which are connected with concrete matrix by discrete bond-slip relationship. It is demonstrated that the presented approach, which is based on the modelling of concrete matrix using microplane model, able to realistically replicate experimental results. In all investigated cases failure is due to the pull-out of fibers. It is shown that with increase of volume content of fibers the effective bond strength and slip capacity of fibers decreases.

최적이론에 의하여 설계된 최소 깊이 더블티 댑단부 전단거동 평가 (Evaluation on Shear Behavior of Double-tee Dap-ends with the Least Depth from Optimization Proces)

  • 유승룡;김대훈
    • 콘크리트학회논문집
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    • 제11권4호
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    • pp.43-54
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    • 1999
  • Shear tests are performed on four full-scale 12.5 m proto-type models, "least depth double tee," which are resulted from the optimization process. Domestic superimposed live load regulation, domestic material properties which is available to product. Korean building code requirements, construction environments and economy are considered as the main factors to establish the process. All of the specimens tested fully comply with the shear strength requirements as specified by ACI 318-95. The research has shown following results. 1) The development length requirement of ACI 318-95 does not seem a good predictor for the estimation of bond failure in a beam with the strands below the supports. 2) The load required for the first initial coner cracking in the dap end and first web shear cracking does not seem to have any relation with the dimension and shear strength of the section in the test beams. 3) The strand slip has a direct relationship with the web shear cracking. However, the coner cracking in the dap end does not give any help for the slip in anchorage. 4) Use of whole area for bearing steel at the bottom of dap end is desired for safe bearing pressure design in the precast prestressed double tee beams. 5) The deflection of beam influences directly on the amount of strand slip at the anchorage after initiation of it, and relationship between them are very linear.

고강도 콘크리트에 매립된 철근의 부착특성 (Bond Characteristics of Reinforcing Bars Embeded in High Strength Concrete)

  • 최종수;유석형;안종문;이광수;신성우
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1994년도 가을 학술발표회 논문집
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    • pp.319-324
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    • 1994
  • Bond test was carried out to assess the effect of several variables on bond characteristics between reinforcing bar and concrete. Key variables are concrete compressive strength(low, medium high, and ultra-high), bar diameter(13mm and 22mm), and concrete cover(25mm; 1-inch, 38mm; 1.5-inch, and 51mm; 2-inch). Confining effect and bar spacing are not taken into account. Thirty-two specimens subjected to uniaxial tension were tested under hypothesis uniform bond stress distribution along the reinforcing bar embeded in concrete. Test results(ultimate bond stress) were compared with bond and development provisions of the ACI building Code(ACl 318-89) and local bond stress versus slip relationship diagram represented to show effect of the above variables.

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주기하중을 받는 보-기둥 접합부내 보주철근 부착 및 정착의 해석적 평가 (Analytical Evaluation of Beam-Bar Bond and Anchorage in Beam-column joints under Cyclic Loading)

  • 오수연;이주하;윤영수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.510-513
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    • 2004
  • The objectives of this research are to evaluate the effect of the compressive strength of concrete, reinforcing bar size, spacing of column transverse bars related to the concrete confinement effects on anchorage bond strength and bond behavior of beam-column joints subjected to cyclic loading and to predict the bond behavior of beam-column joints according to the variables by Finite Element Analysis appling the interface element between concrete and reinforced bar surface in a three-dimensional configuration. This paper shows that to verify the results by three-dimensional nonlinear finite element analysis appling a interface element, the test results that were already conducted are compared with analytic results. The behavior of bond and anchorage of beam bar is expressed by a local bond stress-slip relationship and the failure mode of bond is predicted by principal stress contour.

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거친표면 GFRP 보강근의 쪼갬부착파괴강도 및 거동 고찰 (Bond Splitting Strength and Behavior of GFRP Reinforcement with Roughened Surface)

  • 문도영
    • 한국방재학회 논문집
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    • 제11권2호
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    • pp.23-29
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    • 2011
  • 본 연구는 거친 표면을 갖는 GFRP 보강근의 쪼갬에 의한 부착파괴 거동과 파괴강도를 인발실험을 통해 규명하였다. 실험변수로서, 보강근의 직경, 콘크리트 피복 및 콘크리트 압축강도에 대하여 실험을 수행하였으며, 동일한 변수에 대하여 5개의 실험 결과를 평균하여 실험에 대한 오차를 최소화 하였다. 또한 쪼갬에 의한 부착파괴거동을 인발력과 변위결과로부터 고찰하였다. 쪼갬부착파괴강도 결과는 여러 연구자가 제안한 이형철근 및 FRP 보강근의 쪼갬부착파괴강도 평가모델식과 비교하였다. 분석결과, 거친표면을 갖는 GFRP 보강근의 쪼갬부착파괴강도는 Harajli 등(1995)이 제안한 모델을 이용하여 가장 근사하게 평가할 수 있는 것으로 나타났다.

Bond Strength of Super-CFRP Rod in Concrete

  • Seo, Sung-Tag
    • International Journal of Concrete Structures and Materials
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    • 제18권1E호
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    • pp.29-34
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    • 2006
  • Elastic modulus, tensile and bond capacities are important factors for developing an effective reinforcing action of a flexural member as a reinforcing material for concrete structures. Reinforcement must have enough bond capacity to prevent the relative slip between concrete and reinforcement. This paper presents an experimental study to clarify the bond capacity of prestressed carbon fiber reinforced polymer(CFRP) rod manufactured by an automatic assembly robot. The bond characteristics of CFRP rods with different pitch of helical wrapping were analyzed experimentally. As the result, all types of CFRP rods show a high initial stiffness and good ductility. The mechanical properties of helical wrapping of the CFRP rods have an important effect on the bond of these rods to concrete after the bond stress reached the yield point. The stress-slip relationship analyzed from the pull-out test of embedded cables within concrete was linear up to maximum bond capacity. The deformation within the range of maximum force seems very low and was reached after approximately 1 mm. The average bond capacity of CF20, CF30 and CF40 was about 12.06 MPa, 12.68 MPa and 12.30 MPa, respectively. It was found that helical wrapping was sufficient to yield bond strengths comparable to that of steel bars.

철근콘크리트의 부착특성에 관한 연구 (The Investigation on Bond characteristics of Reinforced Concrete)

  • 신성우;최종수;이광수
    • 콘크리트학회지
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    • 제7권1호
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    • pp.117-125
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    • 1995
  • 철근과 콘크리트의 부착성능에 영향을 미치는 인자들을 평가하기 위하여 부착실험을 수행하였다. 주요변수로는 콘크리트의 압축강도($f_c$'=340, 460, 650, $904kg/cm^2$), 콘크리트의 피복두께(25, 38, 51, 105, 110mm), 철근의 직경(D13, D22)으로 하였으며 구속철근의 효과와 철근간격은 고려하지 않았다. 철근이 일축인장력을 받을 때 철근의 전 부착길이에 걸쳐 응력이 일정하다는 가정하에 32개의 실험체를 제작, 실험하였다. 각 실험체별로 파괴모드를 고찰하였고, 부착응력.변위관계를 통하여 변수의 영향을 평가하였으며, 실험결과에 다른 최대부착응력을 ACI 규준의 상한선($700kg/cm^2$)을 초과하여도 부착응력 및 최대 부착응력이 증가하는 것으로 나타나 콘크리트 압축강도 상한선을 초과하는 경우 정착길이 산정시 압축강도 증가에 따른 영향을 고려하여야 하는 것으로 나타났다.