• 제목/요약/키워드: shear stress transfer

검색결과 215건 처리시간 0.02초

Study on Stress Transfer Property for Embedded FBG Strain Sensors in Concrete Monitoring

  • Jang, Il-Young;Yun, Ying-Wei
    • International Journal of Concrete Structures and Materials
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    • 제3권1호
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    • pp.33-37
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    • 2009
  • Fiber Bragg grating (FBG) sensors already have been the focus for structural health monitoring (SHM) due to their distinguishing advantages. However, as bare optical fiber is very fragile, bare FBG strain sensor without encapsulation can not properly be applied in practical infrastructures. Therefore encapsulation techniques for making encapsulated FBG strain sensor show very important in pushing forward the application of FBG strain sensors in SHM. In this paper, a simplified approximate method to analyze the stress transferring rules for embedded FBG strain sensors in concrete monitoring is put forward according to mechanics of composite materials. Shear lag theory is applied to analyze the stress transferring rule of embedded FBG strain sensor in measured host material at the first time. The measured host objects (concrete) and the encapsulated FBG strain sensor are regarded as a composite, and then the stress transfer formula and stress transfer coefficient of encapsulated FBG strain sensor are obtained.

원형관내 나노유체의 강제대류에 관한 수치적 연구 (NUMERICAL STUDY OF NANOFLUIDS FORCED CONVECTION IN CIRCULAR TUBES)

  • 최훈기;유근종
    • 한국전산유체공학회지
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    • 제19권3호
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    • pp.37-43
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    • 2014
  • In this paper, hydraulic & thermal developing and fully developed laminar forced convection flow of a water-$Al_2O_3$ nanofluid in a circular horizontal tube with uniform heat flux at the wall, are investigated numerically. A single phase model employed with temperature independent properties. The thermal entrance length is presented in this paper. The variations of the convective heat transfer coefficient and shear stress are shown in the entrance region and fully developed region along different nanoparticles concentration and Reynolds numbers. Convective heat transfer coefficient for nanofluids is larger than that of the base fluid. It is shown that heat transfer is enhanced and shear stress is increased as the particle volume concentration increases. The heat transfer improves, as Reynolds number increases.

보통강도 및 고강도 콘크리트의 전단전달 (Shear Transfer in Normal and High Strength Concrete)

  • Oh Byung Hwan;Kim Kwang Soo;Lee Jong Hoon;Han Seung Hwan
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.585-590
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    • 2001
  • Cracks in concrete can submit shear forces by virtue of the roughness of their interfaces. With regard to this roughness, the crack faces play an important role. By transmitting normal and shear stress across their faces, shear cracks contribute to shear resistance. This process is called shear transfer or more generally, shear friction. Both experimental and analytical program to investigate shear transfer mechanism in normal and high strength concrete were included in this study. The parameters investigated in push-off test included the concrete strength, the presence and amounts of steel stirrups, and aggregate size. Solution procedure based on the truss model was developed to analyze the shear transfer behavior. In general, it can be seen that the analytical results agree well with results of shear transfer test.

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정적 인발하중을 받는 암반 앵커의 거동;텐던-그라우트 경계면의 전단응력 분포 (Rock Anchors Subjected to Static Uplift Loads ; Shear Stress Distribution of Tendon-Grout Interface)

  • 임경필;조남준;황성일
    • 한국지반공학회논문집
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    • 제15권6호
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    • pp.143-154
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    • 1999
  • 본 연구에서는 암반 앵커의 텐던-그라우트 경계면의 하중전달기구(load transfer mechanism)를 규명하기 위하여 암질이 강한 자연 화강암과 콘크리트로 제작된 모형 암반에 시공된 모형 암반 앵커에 대한 정적 인발험(static uplift test)을 수행하였다. 불연속면이 텐던-그라우트의 전단응력 분포에 미치는 영향을 밝히기 위하여 수평한 절리면을 갖고 있는 모형암반도 제작되었다. 실험 결과 불연속면이 없는 암반에 시공된 암반 앵커의 경우 앵커 상단에 심한 응력 집중이 발생함을 알 수 있었고 불연속면이 증가할수록 깊이에 따라 균일한 전단응력 분포를 나타냈다. 또한, 실험결과에 대한 회귀분석을 통하여 텐던-그라우트 경계면의 전단응력 분포에 관한 경험식을 산정하였으며, 실험에 의한 전단응력 분포는 텐던 직경의 2~3배 깊이에서는 이론에 의한 전단응력 분포 보다 작게 나타나고 그 이하에서는 반대 현상을 관찰할 수 있었다.

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강섬유 보강 초고성능 콘크리트의 전단 전달 모델 (Shear Transfer Strength Evaluation for Ultra-High Performance Fiber Reinforced Concrete)

  • 이지형;홍성걸
    • 한국공간구조학회논문집
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    • 제15권2호
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    • pp.69-77
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    • 2015
  • Ultra High Performance Fiber Reinforced Concrete (UHPFRC) has a outstanding tensile hardening behaviour after a crack develops, which gives ductility to structures. Existing shear strength model for fiber reinforced concrete is entirely based on crack opening behavior(mode I) which comes from flexural-shear failure, not considering shear-slip behavior(mode II). To find out the mode I and mode II behavior on a crack in UHPFRC simultaneously, maximum shear strength of cracked UHPFRC is investigated from twenty-four push-off test results. The shear stress on a crack is derived as variable of initial crack width and fiber volume ratio. Test results show that shear slippage is proportional to crack opening, which leads to relationship between shear transfer strength and crack width. Based on the test results a hypothesis is proposed for the physical mechanics of shear transfer in UHPFRC by tensile hardening behavior in stead of aggregate interlocking in reinforced concrete. Shear transfer strength based on tensile hardening behavior in UHPFRC is suggested and this suggestion was verified by comparing direct tensile test results and push-off test results.

콘크리트의 전단마찰 내력에 대한 횡보강근 및 압축응력의 영향 (Effect of Shear Reinforcement and Compressive Stress on the Shear Friction Strength of Concrete)

  • 황용하;양근혁
    • 콘크리트학회논문집
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    • 제28권4호
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    • pp.419-426
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    • 2016
  • 이 연구에서는 다양한 콘크리트를 갖는 전단계면에서의 전단마찰거동에 대한 횡보강근 및 압축응력의 영향을 평가하였다. 12개 직접전단실험체로부터 균열진전, 전단하중-상대 미끄러짐 관계, 균열발생시 전단응력, 최대전단내력 및 횡보강근의 전단저항력 등이 측정되었다. 실험결과 동일 전단하중에서 상대 미끄러짐 제어에 대한 횡보강근 배근형상 및 콘크리트 압축강도의 영향은 미미하였다. 작용 압축응력의 증가와 함께 콘크리트의 전단전달력을 증가하는 반면, 횡보강근의 전단전달력은 감소하였는데, 횡보강근의 전단저항은 배근형태에 의해 영향을 받지 않았다. AASHTO-LRFD, Mattock 및 Hwang and Yang의 모델은 콘크리트의 전단마찰내력을 과소평가하였다. 반면, Hwang and Yang의 모델은 실험결과와의 비교에 대한 평균과 표준편차 값이 각각 1.02과 0.23으로서 기존 모델에 비해 다양한 변수의 영향을 적절히 고려하면서 콘크리트의 전단마찰내력을 잘 예측하였다.

FBG 센서가 내장된 스마트 앵커를 이용한 앵커와 그라우트의 하중전이 측정 (Measurement of Load Transfer between Anchor and Grout using Optical FBG Sensors embedded in Smart Anchor)

  • 서동남;김영상;김재민
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.505-510
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    • 2008
  • FBG Sensor, which is smaller than strain gauge and has better durability and does not have a noise from electromagnetic waves, was adapted to develope a smart anchor. A series of pullout tests were performed to verify the feasibility of smart anchor and find out the load transfer mechanism around the steel wire fixed to rock with grout. Distribution of shear stresses at steel wire-grout interface is assessed from the measured strain distribution by the optical fiber sensors and compared with stress distributions predicted by Farmer's and Aydan's formulas. It was found that present theoretical formulas may underestimate the failure depth and magnitude of shear stresses when the pullout loads increase.

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연직 및 횡하중이 작용하는 상부벽식-하부골조구조물의 벽체 배치유형에 따른 거동 해석 (Behavior Analysis According to the Shear Wall Layout of Column-Supported Wall System Subject to Vertical and Lateral Loads)

  • 이대현;김호수
    • 한국공간구조학회논문집
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    • 제4권2호
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    • pp.53-61
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    • 2004
  • 최근 도심지에 건설되고 있는 대부분의 주상복합건물과 아파트들은 다양한 공간을 구성하기 위해 주로 복합구조형식을 채택하고 있다. 특히, 이러한 구조형식들 중의 하나인 상부벽식-하부골조시스템은 전이층에서 서로 연결되는 전단벽형식과 골조형식을 모두 포함하고 있다. 그러나 이 시스템은 구조적인 안전성 측면에서 볼 때 매우 불합리하며, 전이층에서의 응력분포를 파악하기 매우 어렵다. 따라서 본 연구에서는 연직 및 정적 횡하중이 작용하는 전이보 시스템의 전단벽 배치에 따른 구조적인 거동과 응력분포를 분석하고자 함에 있으며, 또한 해석결과를 바탕으로 전이층부근에서의 하중의 전달경로 및 응력집중현상을 파악하고, 전단벽과 전이보의 효율적인 설계를 위한 방안을 제시하고자 한다.

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단섬유 복합체에서 탄성계수비가 내부응력에 미치는 영향 (Effects of Elastic Modulus Ratio on Internal Stresses in Short Fiber Composites)

  • 김홍건;노홍길
    • 한국공작기계학회논문집
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    • 제13권4호
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    • pp.73-78
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    • 2004
  • The conventional SLT(Shear Lag Theory) which has been proven that it can not provide sufficiently accurate strengthening predictions in elastic regime when the fiber aspect ratio is small. This paper is an extented work to improve it by modifying the load transfer mechanism called NSLT(New Shear Lag Theory), which takes into account the stress transfer across the fiber ends and the SCF(Stress Concentration Factor) that exists in the matrix regions near the fiber ends. The key point of the model development is to determine the major controlling factor among the material and geometrical coefficients. It is found that the most affecting factor is the fiber/matrix elastic modulus ratio. It is also found that the proposed model gives a good result that has the capability to correctly predict the elastic properties such as interfacial shear stresses and local stress variations in the small fiber aspect ratio regime.

Reinforcing effect of CFRP bar on concrete splitting behavior of headed stud shear connectors

  • Huawen Ye;Wenchao Wang;Ao Huang;Zhengyuan Wang
    • Steel and Composite Structures
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    • 제48권2호
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    • pp.131-143
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    • 2023
  • The CFRP bar was used to achieve more ductile and durable headed-stud shear connectors in composite components. Three series of push-out tests were firstly conducted, including specimens reinforced with pure steel fibers, steel and CFRP bars. The distributed stress was measured by the commercial PPP-BOTDA (Pre-Pump-Pulse Brillouin optical time domain analysis) optical fiber sensor with high spatial resolution. A series of numerical analyses using non-linear FE models were also made to study the shear force transfer mechanism and crack response based on the test results. Test results show that the CFRP bar increases the shear strength and stiffness of the large diameter headed-stud shear connection, and it has equivalent reinforcing effects on the stud shear capacity as the commonly used steel bar. The embedded CFRP bar can also largely improve the shear force transfer mechanism and decrease the tensile stress in the transverse direction. The parametric study shows that low content steel fibers could delay the crack initiation of slab around the large diameter stud, and the CFRP bar with normal elastic modulus and the standard reinforcement ratio has good resistance to splitting crack growth in headed stud shear connectors.