• Title/Summary/Keyword: Circular anchorage

검색결과 17건 처리시간 0.033초

비부착식 단일 강연선용 원형 정착구를 적용한 포스트텐션 정착 구역의 보강 (Anchorage Zone Reinforcement for Unbonded Post-Tensioned Circular Anchorage for Single Tendon)

  • 김민숙;노경민;이영학
    • 한국공간구조학회논문집
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    • 제18권3호
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    • pp.117-124
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    • 2018
  • In the post-tensioned concrete member, additional reinforcement is required to prevent failure in the anchorage zone. In this study, the details of reinforcement suitable for the anchorage zone of the post-tensioned concrete member using circular anchorage was proposed based on the experimental results. The tests were conducted with the compressive strength of concrete and reinforcement types as variables. The experimental results indicated that the additional reinforcement for the anchorage zone is required when the compressive strength of concrete is less than 17.5 MPa. U-shaped reinforcement shows most effective performance in terms of maximum strength and cracks patterns.

비부착식 단일 강연선용 원형 정착구의 일방향 슬래브 적용에 관한 실험적 연구 (An Experimental Study on the Performance of One-Way Slab Using Unbonded Post-Tensioned Anchorage for Single Tendon)

  • 김민숙;노경민;이영학
    • 한국공간구조학회논문집
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    • 제19권1호
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    • pp.45-51
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    • 2019
  • In this study, the static load test and the load transfer test were carried out to evaluate the structural performance of the circular anchorage proposed by the previous study. Specimens were fabricated according to KCI-PS101 and ETAG 013. As a result of the static load test, it was verified that the displacement of the wedge and the strand was kept constant when the tensile force of 80% of the nominal strength of the strand was applied. In the load transfer test, it was confirmed that all the specimens satisfied the stabilization formula of KCI-PS101 and ETAG 013. Post-tensioned one-way slab with circular anchorage were fabricated to evaluate the flexural behavior. All specimens exhibited the same flexural behavior and maximum load. However, the specimen with circular anchorage were advantageous than the rectangular anchorage one in terms of crack control of the anchorage zone.

Design equation to evaluate bursting forces at the end zone of post-tensioned members

  • Kim, Joung Rae;Kwak, Hyo-Gyoung;Kim, Byung-Suk
    • Computers and Concrete
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    • 제24권5호
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    • pp.423-436
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    • 2019
  • Design equations to evaluate the bursting force in a post-tensioned anchorage zone have been introduced in many design codes, and one equation in AASHTO LRFD is widely used. However, this equation may not determine the bursting force exactly because it was designed on the basis of two-dimensional numerical analyses without considering various design parameters such as the duct hole and shape of the bearing plate. To improve the design equation, modification of the AASHTO LRFD design equation was considered. The behavior of the anchorage zone was investigated using three-dimensional linear elastic finite element analysis with design parameters such as bearing plate size and diameter of sheath hole. Upon the suggestion of a modified design equation for evaluating the bursting force in an anchorage block with a rectangular anchorage plate (Kim and Kwak 2018), additional influences of design parameters that could affect the evaluation of bursting force were investigated. An improved equation was introduced for determining the bursting force in an anchorage block with a circular anchorage plate, using the same procedure introduced in the design equation for an anchorage block with a rectangular anchorage plate. The validity of the introduced design equation was confirmed by comparison with AASHTO LRFD.

원형 정착구를 적용한 프리스트레스트 콘크리트 정착구역의 파열력에 관한 연구 (Study on Bursting Stress in Anchorage Zone of Prestressed Concrete Using Circular Anchorages)

  • 최규형;노병철
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권1호
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    • pp.3-12
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    • 2015
  • 포스트텐션 공법의 파열력 계산은 탄성이론을 기반으로 한 Guyon의 제안식이 널리 활용되고 있다. Guyon의 파열력 계산식은 프리스트레스 힘과 콘크리트 단면 길이에 대한 정착판 단면 길이의 비가 주요 변수 이다. Guyon이 제시한 파열력 계산 방법은 사각형 정착판이 적용된 정착구를 기준으로 하고 있으나, 원형 정착구에 대해서도 그대로 적용하고 있다. 또한 Guyon은 정착구역에서 발생하는 복잡한 응력을 2차원으로 단순화하였다. 따라서 본 연구에서는 원형 정착구에 적용 가능 한 파열력 계산식을 제안하기 위하여 기존 이론의 분석과 정착구역에서 발생하는 응력에 대해 3차원 분석을 수행하였다. 기존의 파열력 계산식을 개선한 원형 정착구의 파열력 계산식을 제안하였다.

이순신대교 앵커리지 설계-시공사례 (The Design and Construction of the Anchorage of Yi Sun-Sin Grand Bridge)

  • 안익균;김경택;서영화
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.14-25
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    • 2010
  • The Yi Sun-Sin grand bridge is the suspension bridge which connects Myodo and Gwangyang. It is over the main navigation channel of Gwangyang Harbor. South anchorage(AN1, Myodo side) of the bridge is designed as rock anchored type. It sustains using the resistance of the underground rock's mass in Myodo. As this type of anchorage can minimize the exposure of the structure, It is economically efficient and environmentally friendly. North anchorage (AN2, Gwangyang side) is designed as the gravity type. This anchorage is 68 meters in diameter and use its own weight to support. Instead of normal rectangular diaphragm wall, the circular shape diaphragm wall is adopted to the north anchorage. It doesn't need to use internal temporary facilities, so it can significantly improve the constructability of the structure.

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ETAG 013 규정에 따른 원형 정착구의 하중전달실험 (Load transfer test of circular anchorage system according to ETAG 013)

  • 김범준;김현기
    • 한국산학기술학회논문지
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    • 제19권5호
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    • pp.167-175
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    • 2018
  • 정착구의 성능 평가를 위한 대부분의 기존연구와 성능실험들이 ETAG 013 규정에 따라 실험체를 제작하고 실험을 수행한 것으로 명시해오고 있다. 하지만 실험체에 사용된 파열력 보강 철근이나 보조보강철근이 ETAG 013에서 규정된 별도의 승인이 불필요한 최소 철근량을 초과 배치하여 실험이 수행되고 있다. 따라서, 본 논문에서는 ETAG 013 규정에 대한 올바른 이해와 실험을 위해 ETAG 013 규정에서 명시하는 하중전달실험 방법과 성능기준에 대해 고찰하고, 상용화된 PT정착구 시스템을 적용하여 고강도 콘크리트, 고장력 강연선을 변수로 한 실험체를 제작하고 하중전달실험을 수행하여 원형 정착구 시스템의 성능과 보조보강철근의 상관성을 평가하였다. 실험 결과, ETAG 013 규정이 적절한 크기 및 강도의 실험체와 파열력 보강철근을 사용하지 않으면 성능을 만족하지 않는 매우 엄격한 규정임이 확인되었으며, 보조보강철근의 양을 증가 시키는 것이 아니라 실험체의 크기를 최소치수로 한정짓지 않고 규정에 따라 15%크게 적용하는 방법으로 실험을 수행하는 것이 바람직한 것으로 평가되었다.

원형 정착판을 사용한 포스트텐션 특수정착구의 설계에 관한 연구 (A Study on the Design of Special Circular Plate Anchorage for Post-tension)

  • 최규형;노병철;임정훈
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권6호
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    • pp.73-83
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    • 2016
  • 포스트텐션 공법을 적용한 콘크리트 부재의 정착구역에서 정착판 근처의 지압응력은 일반적으로 높은 프리스트레스 하중에 의해 발생한다. 따라서 단면의 효율적인 활용과 콘크리트 부재의 파괴로 이어질 수 있는 균열제어를 위해 적절한 정착판의 크기가 제시되어야 한다. 본 연구에서는 도로교설계기준 및 PTI 등에 의해 사각형 정착판과 원형 정착판의 유효면적에 대한 관계식을 제안하였다. 또한 정착판의 형상에 따라 형상계수를 제안하였으며, 유한요소해석을 통해 적절성을 분석하였다.

Model test and numerical simulation on the bearing mechanism of tunnel-type anchorage

  • Li, Yujie;Luo, Rong;Zhang, Qihua;Xiao, Guoqiang;Zhou, Liming;Zhang, Yuting
    • Geomechanics and Engineering
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    • 제12권1호
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    • pp.139-160
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    • 2017
  • The bearing mechanism of tunnel-type anchorage (TTA) for suspension bridges is studied. Model tests are conducted using different shapes of plug bodies, which are circular column shape and circular truncated cone shape. The results show that the plug body of the latter shape possesses much larger bearing capacity, namely 4.48 times at elastic deformation stage and 4.54 times at failure stage compared to the former shape. Numerical simulation is then conducted to understand the mechanical and structural responses of plug body and surrounding rock mass. The mechanical parameters of the surrounding rock mass are firstly back-analyzed based on the monitoring data. The calculation laws of deformation and equivalent plastic strain show that the numerical simulation results are rational and provide subsequent mechanism analysis with an established basis. Afterwards, the bearing mechanism of TTA is studied. It is concluded that the plug body of circular truncated cone shape is able to take advantage of the material strength of the surrounding rock mass, which greatly enhances its bearing capacity. The ultimate bearing capacity of TTA, therefore, is concluded to be determined by the material strength of surrounding rock mass. Finally, recommendations for TTA design are proposed and discussed.

Headed Shear Bar를 사용한 콘크리트 보의 반복 하중 실험 (Repeated Loading Tests of Reinforced Concrete Beams Containing Headed Shear Reinforcement)

  • 김영훈;윤영수;데니스미첼
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.512-517
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    • 2003
  • The repeated loading responses of four shear-critical reinforced concrete beams, with two different shear span-to-depth ratios, were studied. One series of beams was reinforced using pairs of bundled stirrups with $90^{\circ}C$ standard hooks, having free end extensions of $6d_b$. The companion beams contained shear reinforcement made with larger diameter headed bars anchored with 50mm diameter circular heads. A single headed bar had the same area as a pair of bundled stirrups and hence the two series were comparable. The test results indicate that beams containing headed bar stirrups have a superior performance to companion beams containing bundled standard stirrups, with improved ductility, larger energy adsorption and enhanced post-peak load carrying capability. Due to splitting of the concrete cover and local crushing, the hooks of the standard stirrups opened, resulting in loss of anchorage. In contrast, the headed bar stirrups did not lose their anchorage and hence were able to develop strain hardening and also served to delay buckling of the flexural compression steel. Excellent load-deflection predictions were obtained by reducing the tension stiffening to account for repeated load effects.

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Experimental and analytical behaviour of cogged bars within concrete filled circular tubes

  • Pokharel, Tilak;Yao, Huang;Goldsworthy, Helen M.;Gad, Emad F.
    • Steel and Composite Structures
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    • 제20권5호
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    • pp.1067-1085
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    • 2016
  • Recent research on steel moment-resisting connection between steel beams and concrete filled steel tubes has shown that there are considerable advantages to be obtained by anchoring the connection to the concrete infill within the tube using anchors in blind bolts. In the research reported here, extensive experimental tests and numerical analyses have been performed to study the anchorage behaviour of cogged deformed reinforcing bars within concrete filled circular steel tubes. This data in essential knowledge for the design of the steel connections that use anchored blind bolts, both for strength and stiffness. A series of pull-out tests were conducted using steel tubes with different diameter to thickness ratios under monotonic and cyclic loading. Both hoop strains and longitudinal strains in the tubes were measured together with applied load and slip. Various lead-in lengths before the bend and length of tailed extension after the bend were examined. These dimensions were limited by the dimensions of the steel tube and did not meet the requirements for "standard" cogs as specified in concrete standards such as AS 3600 and ACI 318. Nevertheless, all of the tested specimens failed by bar fracture outside the steel tubes. A comprehensive 3D Finite Element model was developed to simulate the pull-out tests. The FE model took into account material nonlinearities, deformations in reinforcing bars and interactions between different surfaces. The FE results were found to be in good agreement with experimental results. This model was then used to conduct parametric studies to investigate the influence of the confinement provided by the steel tube on the infilled concrete.