• 제목/요약/키워드: Anchor

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자켓앵커 거동특성에 관한 연구 (A Study on the Behaviour Mechanism of Jacket Anchor)

  • 김동휘;김인철;공현석;이우진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.1240-1249
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    • 2008
  • Jacket anchor was developed to increase the pullout resistance of general ground anchor in soft ground, and the mechanism of pullout resistance of jacket anchor was analyzed. Also, the ultimate bond stress of jacket anchor was estimated by ultimate resistance which is determined by field tests. Grout milk was injected into the jacket to make grout bulb of jacket anchor. The formation of grout bulb of jacket anchor increases the diameter of grout bulb, ground strength and confining pressure between anchor grout and soil. From the twelve field test results, it was observed that the pullout resistance of jacket anchor is 15.38~295.02%(average 83.53%) greater than that of general ground anchor, and plastic deformation of jacket anchor is 20.78~1,496.45%(average 288.78%) smaller than that of general ground anchor at the same load cycle. Especially, it was investigated that the increase of ultimate resistance over 200% and the reduction of plastic deformation over 600% was obtained in gravel layer. It means that the jacket anchor is superior to the general ground anchor in gravel layer. Finally, the ultimate bond stress was proposed to design jacket anchor.

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오일 펜스 Anchor의 파주력 (The Holding Power of the Oil Boom Anchor)

  • 장덕종
    • 한국수산과학회지
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    • 제36권6호
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    • pp.743-748
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    • 2003
  • An oil boom was set up in order to contain diffused oil from spills and for the retrenchment of damage caused by oil Pollution. Therefore, the oil boom anchor needed proper holding power to endure high resistance from flowing streams and to secure the oil boom around the spill, and must dredge directly into the seabed when it is dropped and block oil outflow immediately. This study investigated the holding power of the danforth anchor and the coastal fishing vessel anchor used for oil booms in the KMPRC (Korea Marine Pollution Response Corporation). For each type, a 30 kg and 20 kg anchor were used. The holding power of the danforth anchors were measured by dropping both weights 10 times. However the coastal fishing vessel anchors were dropped only 5 times each, because no substantial differences were found between drops. In the results of the danforth anchors, an anchor awoke occurred in 2 drops of the 30 kg anchor and in 4 drops of the 20 kg anchor, wherein there was no holding power to be measured. With exception to the anchor awoke cases, the maximum holding power of the danforth 30 kg and 20 kg anchors was 250-520 kg and 123-233 kg, respectively. In the case of the coastal fishing vessel anchors of 30 kg and 20 kg, throughout the experiment, there was no occurrence of an anchor awoke. For the 30 kg and 20 kg anchors, the maximum holding power was measured to be 209-230 kg and 155-170 kg, respectively. Therefore, the holding power of the coastal fishing vessel anchor was shown to be much poorer than that of the danforth anchor. However, the holding power of the danforth anchor was very unstable. Due to the occurrences of anchor awoke, there was no holding power and the measurement value of maximum holding power showed too much variation among the drop tests. Also, after the maximum holding power was achieved, anchor awoke occurred easily. In the case of the coastal fishing vessel anchor was much more stabile, because there was no anchor awoke and no instance where holding power failed. Also the maximum holding power was reached quickly and almost no variation occurred among the drop tests.

현장실험에 의한 압축형 앵커의 인발거동특성 연구 (The Study on Pullout Resistance Characteristics of the Compression Anchor by Pullout Tests on the Field)

  • 홍석우
    • 한국해양공학회지
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    • 제16권2호
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    • pp.44-52
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    • 2002
  • The mechanism of pullout resistance of compression anchor is analysed. This anchor is developed through the field pullout tests and the laboratory element test. The compression anchor is characterized by decrease of progressive failure, simple site work, economy and durability compared with tension anchor. The characteristics of compression anchor, compared with tension anchor. mainly are summarized as follows ; (1) The plastic displacement of anchor body is very small during pullout of anchor. (2) Total anchor length decreases by the shortening of free length; (3) The progressive failure is decreased.; (4) The safety factor for pullout resistance increases with time after construction of anchor.

앵커 형식별 인발거동과 설계법 개발 (Pullout Behavior of Typical friction Anchors and Development of Design Method)

  • 송일준;김가야;홍석우
    • 한국해양공학회지
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    • 제17권4호
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    • pp.43-51
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    • 2003
  • The resistance mechanism of anchor changes according to the types of anchor. Friction anchors are classified into tension and compression types. In this study, the characteristics and mechanism of pullout are analysed, and the design method of anchor and computer program for design are developed through compression test results of anchor body grout. The characteristics of compression anchor, compared with tension anchor, are summarized mainly as follows: (1) The effect of progressive failure of compression anchor body are much smaller than those of tension anchor during pullout of anchor: (2) The skin friction resistance is increased by Possion effect of grout (anchor body) during pullout of compression anchor.

앵커의 극한 지지력 변화와 파괴 거동에 관한 연구 (A Study on Variation of Ultimate Pullout Resistance and Failure Behavior for Vertical Plate Anchors in Sands)

  • 장병욱;황명수
    • 한국농공학회지
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    • 제32권4호
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    • pp.71-80
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    • 1990
  • Model tests for the ultimate pullout resistance of anchorages and investigation of failure behaviors in cohesionless soil have been conducted. The factors affecting the anchorage are mostly the geometry of the system, and soil properties of sands. The main conclusions of the experimental work were as follows. 1. The load - displacement relationship can be a form of parabolic curve for all plates. 2. The change in ultimate pullout resistance of anchor is mostly affected by embedment ratio and size of anchor, and influenced to a lesser degree by its shape. 3. Critical embedment ratio which is defined as the failure mode changes from shallow to deep mode is increased with increasing height of anchor. 4. For a constant anchor height, as the width of anchor increases the ultimate pullout resistance also increases. However, considering the efficiency of anchor for unit area, width of anchor does not appear to have any sigrnificant contribution on increasing anchor city. 5. Anchor capacity has a linear relation to sand density for any given section and the rate of change increases as the section increases. Critical depth determining the failure patterns of anchor is decreased with a decrease of sand density. 6. With increasing inclination angle, size of anchor, and decreasing embedment ratio, the ultimate pullout resistance of anchor under inclined loading is significantly decreased. 7. The ultimate pullout resistance of double anchor, a method of improving single of anchor capacity, is influenced by the center - to - center spacing adjacent anchors. It is also found that tandem and parallel anchor rigging arrangements decrease the anchor system capacity to less than twice the single anchor capacity due to anchor interference.

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지반앵커의 인발저항 특성에 따른 인장.압축 복합 시스템 개발 (Development of Composite Tension.Compression Anchor System based on the pull out resistance characteristics of Ground Anchor)

  • 염호형;임종철;홍석우;김철웅;신철성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.788-795
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    • 2005
  • In this study, the progressive failure and creep of the traditional ground anchor structure were decreased and a new ground anchor that can attain the required pull-out resistance even in soft sandy soils with low confining pressure was developed. Ground anchors are classified depending on the kind of stress the grout is subjected. If the grout material is subjected to tension then it is classified as tension anchor while when the grout material is subjected to compression it is classified as compression anchor. The ground anchor that possesses both the tension and compression mechanism mentioned above is known as composition anchor. It is the objective of this study to develope this type of composition anchor. The structure of the newly developed ground anchor was presented. Pull-out test in different types of soil and the behaviour during Pull-out test was also presented.

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콘크리트의 동결융해와 앵커의 부식에 따른 후 설치 앵커시스템의 성능평가 (An Performance Evaluation of the Post-installed Anchor System According to the Freezing and Thawing of Concrete and the Corrosion of Anchor)

  • 권민호;김진섭;정우영;권상원
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권5호
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    • pp.31-39
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    • 2013
  • 본 연구에서는 콘크리트 강도와 앵커의 강도 변화에 따른 앵커시스템의 성능을 평가하였다. 성능평가를 위하여 후 설치 앵커의 한 종류인 Set Anchor를 선정하였다. 동결융해 시험을 통하여 콘크리트의 강도를 감소시켰고, 부식을 통하여 앵커의 강도 감소를 고려하였다. 설치 앵커인 Set Anchor를 동결융해 된 콘크리트와 일반 앵커를 설치하고, 일반 콘크리트에 부식된 앵커를 설치하여 콘크리트 내력에 따른 인발 내력을 고찰 하였다. 각 시험체별로 앵커의 직경, 앵커의 근입 깊이를 변수로 설정하였다. 실험결과 인발 하중을 받는 경우에는 앵커의 직경 및 근입 깊이에 영향이 있는 것으로 나타났다. 인발 실험시 콘크리트 콘 파괴 및 뽑힘파괴 등 콘크리트와 앵커의 내구성에 따라 파괴모드가 다르게 발생하였다. 또한 앵커의 인발 내력을 CCD (Concrete Capacity Design)방법을 사용한 결과와 비교 평가하여 새로운 수정식을 제안하였으며, 수정식을 사용하여 일반 및 동결융해 콘크리트에 설치된 앵커의 인발 내력을 예측 할 수 있었다.

아스팔트용 고강도 앵커시스템의 인발강도식 검토에 관한 기초적 연구 (A Fundamental Study on the Pullout Strength Equation of High Strength Anchor for Asphalt Pavement)

  • Choi, Jaemin;Lee, Seungyong;Sung, Kitae;Han, Youngdoo
    • 한국재난정보학회 논문집
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    • 제13권3호
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    • pp.313-321
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    • 2017
  • 인장하중을 받는 아스팔트 도로용 고강도 앵커의 강도특성에 관한 기초 성능을 규명하기 위해 앵커 매립깊이, 포장두께, 앵커 직경, 앵커 종류, 실험 온도, 에폭시 종류, 그룹인발 수량 등을 실험변수로 하여 정적 인발실험을 실시하고, 아스팔트 앵커의 인발강도에 대하여 분석을 실시하였다. 그 결과 아스팔트 앵커의 강재강도는 기존 콘크리트 앵커의 강재강도식을 적용하면 1.08배 이상의 안전율을 확보할 수 있으므로 콘크리트 앵커 강재강도식을 사용하여도 무관한 것으로 나타났다. 아스팔트 앵커의 실험을 통해 얻은 인발하중을 제안식과 비교하면 약 ${\pm}10%$ 이내의 오차로 근사치를 나타내고 있다. 이로부터 아스팔트 앵커의 경우에도 콘크리트 앵커와 동일한 투영면적의 비가 성립될 수 있을 것으로 판단된다.

Anchor bracket 체결 볼트에 대한 절단 강도 해석 (Breaking Strength Analysis for Bolt Connection of Anchor Bracket)

  • 이봉주;양헌석;오형식
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.55-60
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    • 2011
  • For the bolster type bogie, bolster anchor body connections are proviede to transmit the longitudinal loads for traction or braking between the carbody and the truck. The bolster anchor body connection is generally composed of anchor rod bracket, anchor rod and its fastening devices. The bolster anchor body connection shall be basically capable of withstanding a longitudinal load resulting from excessive braking case or impact. Additionally the north America standard requires that the anchor rod bracket shall be frangible, I.e. the anchor rod bracket shall fail and fall away under load before the carbody structure is damaged since to protect the cabody structure in the event of unexpected accident. This paper describes the shear connection design using the optimized mechanical fasteners in the bolster anchor body connection to satisfy these Northe America requirements.

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타이백 억지토류벽에서 앵커 자유장 및 앵커하중의 크기와 벽체변위와의 상관성 (A Relation between Anchor Unbonded Length, Anchor Loads, and Wall Deflection in Tieback Anchored Wall)

  • 임유진
    • 한국지반공학회논문집
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    • 제15권6호
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    • pp.187-200
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    • 1999
  • 타이백 앵커 억지 토류벽의 거동을 분석하기위해 광범위한 현장계측자료를 조사하고 이중 한 현장에 대한 유한요소해석을 실시하였다. 특히, 임의 굴착깊이에 대한 벽체변위-앵커자유장-앵커긴장하중 사이의 상관성을 조사하였다. 유한요소해석은 앵커하중과 앵커자유장을 변화시키면서 벽체변위의 증감을 조사하기 위해 실시하였다. 굴착깊이로 정규화시킨 횡방향 벽체 변위와 앵커위치의 상관도를 작성하였으며 임의 굴착깊이에 대한 벽체변위-앵커자유장-앵커긴장하중 사이에 고유한 관계가 설정됨을 확인하였다. 차후 실무차원에서 이를 활용하기 위해서는 더 많은 현장계측자료의 집적과 유한요소해석의 추가적인 실시가 필요하다.

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