• 제목/요약/키워드: Anchor body

검색결과 52건 처리시간 0.027초

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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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.

지반개량(SI)앵커의 인발거동특성 (Characteristics of Pullout Behavior of Soil Improvement(SI) Anchor)

  • 임종철;홍석우;송무효;강낙안
    • 한국지반공학회지:지반
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    • 제14권6호
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    • pp.139-151
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    • 1998
  • SI 앵커는 지반개량 앵커를 의미한다. 이는 앵커를 지지하는 지반을 JSP로 개량한 것으로, SI 앵커체는 80cm 정도의 직경을 가지게 된다. SI 앵커는 앵커체와 지반사이의 마찰저항력과 앵커체 앞면의 지압저항력으로 인해 높은 인발저항력을 발휘하게 되는데, 특히 마찰저항력은 JSP로 개량된 앵커체의 직경의 증대로 인해 상당히 증가하게 된다. 본 연구에서는 SI 앵커의 인발저항기구를 분석하기 위해 실내 모형실험과 현장실험을 실시하였다. 공기건조 모래지반 내에서의 실내 모형실험을 통해 SI 앵커 주변지반의 변형률장을 분석하였는데, 이는 토조 벽면에 설치된 라텍스 멤브레인을 이용한 사진 분석법을 통해 이루어 졌다. 10매의 변형률게이지가 부착된 특수 설계된 PVC 파이프를 앵커체 내에 설치하고 변형률을 측정하여 현장실험의 결과를 분석하였는데, 역시 실내 모형실험과 같이 앵커체 내에서의 변형률을 측정하였다.

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확공을 이용한 지압형 앵커의 인발거동 특성 연구 (The Study of Pullout-Behavior Characteristics of The Ground Anchor Using Expanded Hole)

  • 민경남;정찬묵;정대호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.1502-1508
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    • 2011
  • Ground anchor expands the hollow wall of settled part and has the structure which resists the designed tensile load by the bearing pressure generated by the wedge of the anchor body pressing in the expanded part. Such ground anchor has been recognized for stability and economicality since 1960s in technologically advanced nations such as Japan and Europe, and in 1970s, the Japan Society of Soil Engineering has established and announced the anchor concept map. The ground anchor introduced in Korea, however, has the structural problem where the tensile strength is comes only from the ground frictional force due to expansion of the wedge body. In an interval where the ground strength is locally reduced due to fault, discontinuation or such, this is pointed out as a critical weakness where the anchor body of around 1.0m must resist the tensile load. Also, in the installation of concrete block, the concentrated stress of concrete block constructed on the uneven rock surface causes damage, and many such issues in the anchor head have been reported. Thus, in this study, by using the expanded bit for precise expansion of settled part, the ground anchor system was completed so that the bearing pressure of ground anchor can be expressed as much as possible, and the bearing plate was inserted into the ground to resolve the existing issues of concrete block. Through numerical analysis and pullout test executed for verification of site applicability, the pullout-behavior characteristics of anchor was analyzed.

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풍화암 지반에 정착된 앵커의 인발저항 특성 (Pull - out Capacity of Ground Anchor in Weathered Rock)

  • 이승환;황의석;이봉열;김학문
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 가을 학술발표회 논문집
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    • pp.435-442
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    • 2002
  • Fluid Confirmation Tests(FCT) on 1500 ground Anchors install in weathered rock were carried out to investigate upper and lower limit of elastic elongation, frictional resistant of fixed anchor body, mobilized angle between anchor body and soil. All the measured data were analysed and compared with theoretical equations. The frictional angles of diaphragm wall and anchorage system in weathered rock showed nonlinear curve between upper and lower limit of standard elongation. The FCT results indicated that the frictional resistant angles increased with higher values of surcharge load. The quality assurance on the fixed anchor location was investigated by means of measuring elastic elongation during the FCT, and comparing these with theoretical design length, the quality of anchors in this particular site found to be above average standard. The results of this research works with provide valuable guide line on quality assurance of anchors system as well as resonable prediction of friction resistance between the fixed anchor body and the weathered rock.

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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.

풍화암에 근입된 그라운드 앵커의 인발거동 연구 (A Study on the Pullout Behavior of Ground Anchored in Weatherd Rock)

  • 박병수;정길수;전상현;유남재
    • 산업기술연구
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    • 제26권A호
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    • pp.109-117
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    • 2006
  • This study is an numerical study of predicting the behavior of anchor embedded in weathered rocks, subjected to uplift loads, about ultimate pullout capacity and the failure mechanism. Factors influencing the behavior of anchors were investigated by reviewing the data about in-situ anchor tests performing numerical modelling with changing the bondage length of anchor, diameter of anchor body and diameter of tenden, and by Correlations between those factors were evaluated to apply them to predict the behavior of anchors. As results of numerical analysis, a linear relationship between bondage length, diameter of anchor body and diameter of tenden with ultimate pullout capacity was obtained on the one hand, from the result of numerical analysis changing the Young's modulus of weathered rock, this parameter was found to inflence to load-displacement and ultimate pullout capacity within the range of 10%, which was mot so significant to affect.

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일반 가설앵커의 문제점과 개선방향 (Ground Anchor Testing on Temporary Excavations)

  • 김성규;김낙경;김정렬
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.545-552
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    • 2003
  • For temporary excavation support in a congested urban area, the strand of ground anchor should be removed to get permission of the private land to install anchors. But the strand doesn't need to be removed in the outside city area after use. So the anchor body, tension anchor, is fabricated in-situ. The unbonded length of This anchor has several strands, which wrap only one sheath. When the anchor body is carried into job-site or installed in the bore hole, the sheath is torn easily because it is a very week material. So the grout permeate into the torn sheath. Because of that, the load doesn't transfer to the bond length of ground anchors. It may indicate that load is being transferred along the unbonded length and thus within the potential slip surface assumed for overall stability of the anchored system. The load tests were performed on seven low-pressure grouted anchors installed in weathered soil to verify its problems. Four anchors(Type A) have the unbonded length, which consist of five strands and a week sheath and three anchors(Type B) have strands, which is covered by plastic sheath filled with grease, in the unbonded length. Both anchors are compared with load tests results.

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Application of numerical simulation for the analysis and interpretation of pile-anchor system failure

  • Saleem, Masood
    • Geomechanics and Engineering
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    • 제9권6호
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    • pp.689-707
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    • 2015
  • Progressive increase in population causing land scarcity, which is forcing construction industry to build multistory buildings having underground basements. Normally, basements are constructed for parking facility. This research work evaluates important factors which have caused the collapse of pile-anchor system at under construction five star hotel. 21 m deep excavation is carried out, to have five basements, after installation of 600 mm diameter cast in-situ contiguous concrete piles at plot periphery. To retain piles and backfill, soil anchors are installed as pit excavation is proceeded. Before collapse, anchors are designed by federal highway administration procedure and four anchor rows are installed with three strands per anchor in first row and four in remaining. However, after collapse, system is modeled and analyzed in plaxis using mohr-coulomb method. It is investigated that in-appropriate evaluation of soil properties, additional surcharge loads, lesser number of strands per anchor, shorter grouted body length and shorter pile embedment depth caused large deformations to occur which governed the collapse of east side pile wall. To resume work, old anchors are assumed to be standing at one factor of safety and then system is analyzed using finite element approach. Finally, it is concluded to use four strands per anchor in first new row and five strands in remaining three with increase in grouted and un-grouted body lengths.

복합형 앵커의 인발거동에 관한 실험적 연구 (Experimental Study on Pullout Behavior of Composite Type Ground Anchor)

  • 홍석우
    • 한국지반공학회논문집
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    • 제24권11호
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    • pp.143-155
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    • 2008
  • 지반앵커는 그라우트가 힘을 받는 형태에 따라 분류되는데 앵커의 인발시 그라우트가 인장을 받으면 인장형 앵커로 압축을 받으면 압축형 앵커로 분류된다. 본 연구에서는 인장과 압축을 동시에 받는 기구를 가진 복합형 앵커를 개발하였다. 현장시험을 위해 연약지반내의 앵커체 내부에 변형률게이지를 설치하였고, 측정된 시험결과를 통해 인장과 압축변형률이 동시에 발생하는 인발저항기구를 관찰할 수 있었다.