• Title/Summary/Keyword: 확장형 앵커

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콘크리트 확장형 앵커의 동적검증

  • 김상윤;윤철호;최강룡
    • Proceedings of the Korean Nuclear Society Conference
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    • 1996.05d
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    • pp.339-345
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    • 1996
  • 배관 및 기기 등의 지지부 정착에 사용되는 확장형 앵커는 여러 종류의 진동하중을 받게 되므로 그러한 하중에 대한 동적저항능력이 시험에 의하여 확인되어야 한다. 확장형 앵커의 동적시험 요건이 ASTM E488에 기술되어 있으나 내진시험 입력, 피로전단시험 입력 등 일부 요건이 구체적으로 명시되어 있지 않아 시험기관에 따라 시험조건이 자의적으로 결정될 수 있다. 따라서, 본고에서는 코드 시험요건이 구체적이지 못한 사항을 조사하여 적정 요구수준을 제시하였다. 또한, 국내에서 수행된 동적시험내용 검토결과, 현행 동적설계방안의 일부보완이 필요함을 확인하였다.

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월성원자력 앵커내진인증시험과 앵커 검증에 영향을 주는 시험방법 및 변수 고찰

  • 김윤식;이돈국;이계현
    • Proceedings of the Korean Nuclear Society Conference
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    • 1997.05b
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    • pp.538-545
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    • 1997
  • 기기 및 각종 지지부의 정착을 위해 사용되는 콘크리트 확장형 앵커(CEA Concrete Expansion Anchor)인 PRH Wedge, Selfdrilling 및 Hilti KBII, HSLG에 대해서 최근 Canada의 Mcmaster 대학과 Switzerland 의 Schann 연구소에서 앵커 성능시험이 수행되었다. 본 시험결과를 토대로 월성원자력 2,3,4호기 설계앵커인 PRH Wedge, Selfdrilling 및 Hilti KBII와 대체앵커인 HSLG 앵커의 사용범위에 대해서 살펴보았다. 또한 동일한 앵커에 대해서 수행된 성능시험이라 할지라도 시험결과는 시편크기, 콘크리트강도 등 시험적용 변수에 따라 달라질 수 있는데 보고에서는 시험시편(Concrete Structural Member)의 크기에 따른 앵커링 파괴강도 및 콘크리트 파괴형태의 고찰을 통해 기존의 앵커시험 및 사용기준인 ASTM E488-90 [5], ACI 355.1R [6] 둥 제규정과의 차이점에 대해 고찰하고자한다.

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A study on the characteristics of multi load transfer ground anchor system (다중정착 지반앵커의 하중전달 특성에 관한 연구)

  • Kim, Ji-Ho;Jeong, Hyeon-Sic;Kwon, Oh-Yeob;Shin, Jong-Ho
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.16 no.1
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    • pp.25-50
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    • 2014
  • In order to identify a load transfer mechanism of ground anchors, the behavior of multi load transfer ground anchor systems was investigated and compared with those of compression type anchors and tension type anchors. Large scale model tests were performed and stress-strain relationships were obtained. The load transfer mechanism of ground anchors was also investigated in the field tests. Finally, numerical analyses to predict the load-displacement relationships of anchors were conducted. It is concluded that the load transfer characteristics of MLT anchors are mechanically much more superior in the pull-out resistance effect than those of existing compression and tension type anchors. From the results of research work, we could suggest that the max pull-out capacity of anchor capacity to each the soil condition. Also, the MLT anchors can be used to achieve both structural enhancement and economic construction in earth retaining or supporting structures.

A Study on the Fracture Resistance Characteristics of Post-Installed Anchor (후설치 앵커볼트의 파괴저항 특성에 관한 연구)

  • Kim, Doo Hwan;Hwang, Yun Sung;Cha, Young Min;Song, Kwan Kwon;Choi, Kyung Gyp
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.156-156
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    • 2011
  • 중량물 혹은 철골구조물 등을 고정시키는데, 건축구조물의 철골기둥, 터빈 제네레이터 기기등을 콘크리트 구조물에 부착시키기 위해 널리 쓰인다. 1990년대 들어 국내 건물의 리모델링, 보수 및 유지관리의 증가에 따라 앵커의 사용량도 현저히 증가하고 있으나 대부분 고가의 외국산제품을 수입하고 있다. 현재 국내외에 주로 시행되는 앵커타입은 마찰형 앵커이나 마찰형 앵커와 달리 지압형 앵커의 경우, 외국에서는 이미 그 유효성에 대한 인식이 널리 퍼져있으며 각국의 지반조건에 적합한 설계법이 개발되었다. 그러나 국내의 경우 이러한 연구가 미진한 실정이며 이에 대한 연구가 절실한 상황이다. 본 연구에서는 중량물앵커(Heavy Duty Anchor)의 인장시험을 실시하여 내력을 규명하고 도출한 결과를 기존 시험연구 결과와 비교분석하여 기 제안된 이론식들과 사업경제성에대해 보다 깊이있고 정확한 적용성을 입증하는데 본 연구를 수행하였다. 시험을 통한 저강도 파괴시험의 결과 구조부재의 접합부에서 각 시험체마다 뽑힘파괴가 발생하였으며, 뽑힘파괴가 발생한 시험체는 앵커강재의 파괴력 또는 콘크리트의 콘파괴를 발생시키기에는 앵커슬리브의 확장력이 작게 작용되었다. 그 결과, 콘파괴 대신 구조부재의 접합부에서 뽑힘파괴가 발생되었으며 이를 통해 설계시, 앵커의 안정성을 증가시키기 위해 구조부재의 접합부를 연성적이며, 부가여력을 충분히 지니도록 설계하는 것이 효과적인 것으로 나타났다. 고강도 파괴시험의 결과 콘파괴가 발생되었음을 알 수 있는데, 본 시험에 사용된 앵커의 경우 정착위치가 구조물의 연단 모서리 거리와 너무 근접하여 앵커의 내력이 감소하게 되어 콘크리트의 콘강도가 발생되기 전에 먼저 파괴되었다. 따라서 설계시, 앵커의 파괴강도를 증가시키기 위해 앵커의 정착위치를 고려한 설치를 통해 앵커체결과정에서 적정 연단거리를 확보하는 것이 효과적인 것으로 나타났다. 앵커볼트 최소간격과 연단거리에 따른 파괴시험결과 앵커볼트의 간격이 허용범위 내에서 넓어질수록 불균등 부반력의 차는 감소하였으며, 최대 부반력도 감소하였다. 따라서 앵커의 파괴저항강도를 증가시키기 위해서는 허용범위 내에서 앵커볼트의 설치간격을 증가시키는 것이 효과적인 것으로 나타났다.

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Pullout Characteristics of MC Anchor in Shale Layer (셰일지반에 설치된 MC앵커의 인발특성)

  • Lee, Bongjik;Kim, Josoon;Lee, Jongkyu
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.1
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    • pp.53-61
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    • 2012
  • In this study, the research on MC anchor has been developed as composite type has done. MC anchor exerts bearing pressure on pre-bored hole where the end fixing device is expanded. Therefore, the uplift capacity is to be increased and it has the characteristics that the anchor body is not eliminated from the ground even if the grouting is not carried out properly. Furthermore, it reduces the loss of tension and raises the construction availability by inserting the reinforced bar as well as the anchor cable, while it can improve the long-term stability because the nail is expected to play the role when the loss of the anchor cable is occurred in a long-term. However, because the resistance mechanism of the compound anchor such as MC anchor is different from friction anchor, the estimation method of the uplift capacity by the frictional force of the ground and the grout is not proper. Particularly, in domestic cases, the problem to overestimate or underestimate the uplift capacity is expected because the design method considering the soil characteristics about the compound anchor has not been developed. Therefore, in this study, in order to evaluate the characteristics of MC anchor and a kind of compound anchor, we measured the uplift, the tension and the creep by nine anchors tests in shale ground that the fluctuation of the strength is great. In addition, we analyzed the test result comparing to the result of the general friction anchor and evaluated the characteristics of MC anchor movement to gather the results. As a result of the test, we found the effect that the uplift capacity is increased in shale ground comparing to the general friction anchor.

Pull-out Resistance Behavior of the Anchor with the Bump Type Resistors (돌기형 저항체를 설치한 앵커의 인발저항거동)

  • You, Min-Ku;Lee, Sang-Duk
    • Journal of the Korean Geotechnical Society
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    • v.33 no.11
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    • pp.35-43
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    • 2017
  • In this study, the pull-out resistance behavior of the anchor with the bump type resistors at the anchor body was experimentally investigated. In the model tests, the pull-out resistance was measured by pulling out the anchor at a constant speed. Anchor body was installed in the center of the circular sand tank. Pull-out tests were conducted for 10 conditions. The anchor type (existence of the resistor), the friction conditions of the anchor body surface ($1/3{\phi}$, $2/3{\phi}$, ${\phi}$), the bump type resistor set number (1set, 2set, 4set), and the height of resistors (0.05d, 0.10d, 0.20d) were varied. The load-displacement relationship for each conditions was measured during the pull-out tests at a constant speed (1 mm/min). Maximum pull-out length was 80 mm. As a result, the pull-out behavior of the friction type anchor and the expansion type anchor was different. As the number of resistor increased, the maximum pull-out resistance increased and the residual pull-out resistance ratio increased significantly, which were at 171~591 percent larger than that of the friction type anchor.

A Study for the Applicable Bearing-Resistance of Bearing Anchor in the Enlarged-Borehole (지압형 앵커의 지압력 산정에 관한 실험적 연구)

  • Min, Kyoung-Nam;Lee, Jae-Won;Lee, Jung-Gwan;Jung, Chan-Muk
    • The Journal of Engineering Geology
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    • v.24 no.2
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    • pp.261-271
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    • 2014
  • An almost permanent anchor (friction type) is resistant to ground deformation due to the friction between the soil and grout at a fixed length from the anchor body. The purpose of this study is to calculate the force of bearing resistance for a bearing anchor in enlarged boreholes. We conducted analytical and numerical analyses, along with laboratory testing, to find the quantities of bearing resistance prior to grouting in EBA (Enlarged Bearing Anchor) construction. The force of bearing resistance from the analytical method was defined as a function of general borehole diameter, expanded borehole diameter, and soil unconfined compressive strength. We also employed the Flac 3D finite difference numerical modeling code to analyze the bearing resistance of the soil conditions. We then created a laboratory experimental model to measure bearing resistance and carried out a pull-out test. The results of these three analyses are presented here, and a regression analysis was performed between bearing resistance and uniaxial compression strength. The laboratory results yield the strongest bearing resistance, with reinforcement 28.5 times greater than the uniaxial compression strength; the analytical and numerical analyses yielded values of 13.3 and 9.9, respectively. This results means that bearing resistance of laboratory test appears to be affected by skin friction resistance. To improve the reliability of these results, a comparison field study is needed to verify which results (analytical, numerical, or laboratory) best represent field observations.

Design Evaluation of the Post-installed Anchor considering Effective Embedded Depth and Concrete Strength (유효 묻힘 깊이와 콘크리트 강도를 고려한 후설치 앵커의 설계식 평가)

  • Hur, Moo-Won;Chae, Kyoung-Hun;Won, Jae-Sik;Park, Tae-Won
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.25 no.3
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    • pp.13-20
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    • 2021
  • Post-installed anchor is a structural material that connects structural and non-structural members to existing concrete members. However, there are cases where rebar interception and construction error occur at the site. In that case, measures are needed to prevent performance degradation of the rear-installation anchors. In this study, in order to evaluate the performance of torsional control expandable post-installed anchors for compressive strength and effective depth of the reference concrete was tested. The results of the most commonly used tests of M10 and M20 showed that had variable coefficients within 15%, satisfying the reliability presented in KCI(2017). It was also confirmed that the depth of the buried and the strength of concrete affect the strength of the pavement. Based on the results of the existing similar studies and the results of this study, the design equation of the post-installed anchor was proposed and the results were compared with the existing design.

A Study On Structural Behavior of Anchor Pile Precast Retaining Wall with Screw Shape Flange (나선형 플렌지가 설치된 앵커파일 프리캐스트 옹벽의 구조적 거동에 관한 연구)

  • Choi, Seung-Seon;Ahn, Tae-Bong;Kim, Woo-Ki
    • Journal of the Korean Geotechnical Society
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    • v.29 no.11
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    • pp.129-138
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    • 2013
  • In this study, Anchor Pile Precast Retaining Wall (APC) with screw shape flange was investigated and the results were arranged for designing APC specifications. Since precast materials require special care when they are manufactured, carried or treated, more accurate design and analysis of optimized dimension are needed : thus moment distribution of front foot was checked. Through full-scale field test, form and optimal stiffening shape were obtained and through fracture test with real load, applicable load was reasonably calculated. Research result in this thesis could be used as guideline or standard of designing and constructing Anchor Pile Precast Retaining Wall with screw shape flange.

An Experimental Study on Pullout Behavior of Shallow Bearing Plate Anchor (얕은 지압형 앵커의 인발거동특성에 관한 실험적 연구)

  • Hong, Seok-Woo;Kim, Hyung-Kong
    • Journal of the Korean Geotechnical Society
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    • v.30 no.2
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    • pp.5-18
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    • 2014
  • Depending on the underground load support mechanism, anchors are classified as friction anchors, bearing plate anchors and the recently developed combined friction-bearing plate anchors which combine the characteristics of both the friction and bearing plate type anchors. Even though numerous studies have been performed on bearing plate anchors, there were only few studies performed to observe the failure surface of bearing plate anchors. Furthermore most of the soil materials used on these tests were not real sand but carbon rods. In this study, sand was placed in the soil tank and laboratory tests were performed with bearing plate anchors installed with an embedment depth (H/h) ranging from 1~6. The variation in the pullout capacity and the behaviour of soil with the embedment depth (H/h) were observed. Ground deformation analysis program was also used to analyze soil displacement, zero extension direction, maximum shear strain contours. It was determined from the analysis of the results that at ultimate pullout resistance the deformation was 5 mm and the failure surface occurred in a narrower area when compared with results of the previous researches. It was also observed that the width of the fracture surface gradually becomes wider and expands up to the surface as the deformation increases from 10 mm to 15 mm.