• Title/Summary/Keyword: concrete pile

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원커팅 철근보강 PHC 말뚝의 속채움 콘크리트 부착파괴 성능 (Slip Failure Strength of Infilled Concrete with Reinforced PHC Pile by One-Cutting Method)

  • 천영수;심영종;박종배
    • 토지주택연구
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    • 제2권4호
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    • pp.553-558
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    • 2011
  • 말뚝두부와 기초판의 연결방법으로서 기존의 강선남김방식은 시공성이 좋지 않고, 말뚝두부에 파손 및 균열이 발생할 가능성이 높을 뿐만 아니라 현장 인명사고가 자주 발생하여 최근에는 대안적인 방법으로서 원커팅에 의한 철근보강 방식이 제안되어 사용되고 있다. 하지만 이러한 방법들은 역학적인 성능규명에 의하여 그 상세가 구체적으로 제안 또는 검증된 사례가 없다. 이 연구는 원커팅 철근보강 방식에 있어서 최적 보강상세를 제안 할 목적으로 후 타설된 말뚝 내 속채움 콘크리트와 말뚝간의 전단마찰 저항력의 부족으로 인한 파괴를 실험을 통하여 규명하고, 적정 채움 깊이를 제안하였다. 실험결과에 근거하여 말뚝 부착파괴 강도를 안전측의 값으로 0.4MPa를 가정한다면, 부착파괴 이전에 철근이 항복에 도달하도록 하기 위해서 속채움 콘크리트의 깊이는 최소한 PHC 450과 PHC 500의 경우 600mm 이상, PHC 600의 경우 1,000mm 이상 확보하여야 할 것으로 판단된다.

점토지반에 타입된 콘크리트 말뚝의 인발저항 및 크리프 거동 (Uplift Capacity and Creep Behavior of Concrete Pile Driven in Clay)

  • 신은철;김종인;박정준;이학주
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 봄 학술발표회 논문집
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    • pp.371-378
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    • 2001
  • The working load at pile is sometimes subjected to not only compression load but also lateral load and uplift forces. Pile foundation is essential and uplift load can be applied because of buoyancy, a typhoon, wind or seismic forces. This study was carried out to determine the uplift capacity of concrete pile foundation driven in clay. Pile was driven in clay, between pile and clay adhesion factor was estimated, and it is the mean value between the cast-in-situ-pile and steel pipe pile. When pile foundation is loaded for long time, creep behavior occurs. The behavior of creep is originated from the clay creep contacted with pile. The creep behavior of pile foundation embedded in clay is heavily depended on the thickness of clay around the pile shaft, pore water pressure in clay, and creep behavior of clay.

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Shaft resistance of bored cast-in-place concrete piles in oil sand - Case study

  • Barr, L.;Wong, R.C.K.
    • Geomechanics and Engineering
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    • 제5권2호
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    • pp.119-142
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    • 2013
  • Pile load tests using Osterberg cells (O-cell) were conducted on cast-in-place concrete piles founded in oil sand fill and in situ oil sand at an industrial plant site in Fort McMurray, Alberta, Canada. Interpreted pile test results show that very high pile shaft resistance (with the Bjerrum-Burland or Beta coefficient of 2.5-4.5) against oil sand could be mobilized at small relative displacements of 2-3% of shaft diameter. Finite element simulations based on linear elastic and elasto-plastic models for oil sand materials were used to analyze the pile load test measurements. Two constitutive models yield comparable top-down load versus pile head displacement curves, but very different behaviour in mobilization of pile shaft and end bearing resistances. The elasto-plastic model produces more consistent matching in both pile shaft and end bearing resistances whereas the linear elastic under- and over-predicts the shaft and end bearing resistances, respectively. The mobilization of high shaft resistance in oil sand under pile load is attributed to the very dense and interlocked structure of oil sand which results in high matrix stiffness, high friction angle, and high shear dilation.

비배토 현장타설 콘크리트 말뚝의 지지력 산정에 관한 연구 (Bearing capacity Calculation of Displacement in-situ Concrete Pile)

  • 박종배;박태순
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 말뚝기초 학술발표회
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    • pp.65-84
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    • 2000
  • Europe and US which have more restrictive regulations than Korea about the noise and vibration during construction are using Auger-cast Pile to reduce the problem relating with noise and vibration. However Auger-cast Pile has problems like difficult quality control and low bearing capacity. In Europe, Displacement in-situ concrete Pile has been used to sove that problems since 1990s, and Korea has performed the test construction in 1997 and it has been used as the real structural foundation since 1998. Test and real construction results verified that the allowable capacity of the pile(diameter = 410mm) is between 70 and 100ton. Though De Beer & Van Imps design method utilizing CPT result is used to calculate the bearing capacity of the Displacement in-situ Pile, Korea is dependant upon the SPT as the sounding test, so design method utilizing SPT result is necessary to promote the application of the pile. To find out reasonable design method using SPT result, rearing capacity of the pile constructed in sand and clay in Korea was calculated using Meyerhof, SPT-CPT translation method, Nordlund, Douglas and DM-7 method, and the calculation results were compared to the load test result. Analysis result shows that SPT-CPT translation method is more reliable than others and economical design can be possible because it considers efficiently the friction capacity of Displacement in-situ Pile.

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원심성형 고성능 철근콘크리트 말뚝의 휨 성능 연구 (Flexural Performance of Enhanced Spun High Strength RC Piles)

  • 황훈희;배재현;주상훈;권의성
    • 한국안전학회지
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    • 제33권3호
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    • pp.52-57
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    • 2018
  • The pile construction method is changing from the pile driving operation to the injected precast pile method. It is to prevent environmental damage and to minimize complaints caused by noise. Therefore, economic alternatives optimized for the injected precast pile method are required. In this study, the enhanced spun reinforced concrete piles manufactured by high strength materials were proposed. Experimental tests were conducted to evaluate their structural safety and nonlinear finite element analysis was performed to improve the reliability of experimental results. The experimental results and the analytical results were in good agreement with each other and the proposed enhanced spun reinforced concrete pile has better performance than that required by the design. However, the performance of the joint using the existing method used in the PHC pile was considered to be insufficient.

Numerical Analysis of Pile-Soil Interaction under Axial and Lateral Loads

  • Khodair, Yasser;Abdel-Mohti, Ahmed
    • International Journal of Concrete Structures and Materials
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    • 제8권3호
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    • pp.239-249
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    • 2014
  • In this paper, the analysis of a numerical study of pile-soil interaction subjected to axial and lateral loads is presented. An analysis of the composite pile-soil system was performed using the finite difference (FD) software LPILE. Two three dimensional, finite element (FE) models of pile-soil interaction have been developed using Abaqus/Cae and SAP2000 to study the effect of lateral loading on pile embedded in clay. A lateral displacement of 2 cm was applied to the top of the pile, which is embedded into the concrete pile cap, while maintaining a zero slope in a guided fixation. A comparison between the bending moments and lateral displacements along the depth of the pile obtained from the FD solutions and FE was performed. A parametric study was conducted to study the effect of crucial design parameters such as the soil's modulus of elasticity, radius of the soil surrounding the pile in Abaqus/Cae, and the number of springs in SAP2000. A close correlation is found between the results obtained by the FE models and the FD solution. The results indicated that increasing the amount of clay surrounding the piles reduces the induced bending moments and lateral displacements in the piles and hence increases its capacity to resist lateral loading.

Application of steel-concrete composite pile foundation system as energy storage medium

  • Agibayeva, Aidana;Lee, Deuckhang;Ju, Hyunjin;Zhang, Dichuan;Kim, Jong R.
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.753-763
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    • 2021
  • Feasibility studies of a reinforced concrete (RC) deep pile foundation system with the compressed air energy storage (CAES) technology were conducted in previous studies. However, those studies showed some technical limitations in its serviceability and durability performances. To overcome such drawbacks of the conventional RC energy pile system, various steel-concrete composite pile foundations are addressed in this study to be utilized as a dual functional system for an energy storage medium and load-resistant foundation. This study conducts finite element analyses to examine the applicability of various composite energy pile foundation systems considering the combined effects of structural loading, soil boundary forces, and internal air pressures induced by the thermos-dynamic cycle of compressed air. On this basis, it was clearly confirmed that the role of inner and outer tubes is essential in terms of reliable storage tank and better constructability of pile, respectively, and the steel tubes in the composite pile foundation can also ensure improved serviceability and durability performances compared to the conventional RC pile system.

PHC 파일의 압축강도와 재료분리층에 대한 실험연구 (Experimental Study on Segregated Layers of Materials and Compressive Strength of Concrete for Pretensioned Spun High Strength Concrete Pile)

  • 이성로;강성수;유성원
    • 콘크리트학회논문집
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    • 제13권1호
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    • pp.16-22
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    • 2001
  • PHC 파일은 높은 재하능력과 충격저항 그리고 경제성 및 내구성이 우수하지만 제품 제작시 프리스트레스 텐던이 적절한 콘크리트 덮개를 확보하여야 하며 엄격한 콘크리트 덮개를 확보하여야 하며 엄격한 품질관리가 요구된다. 원심 성형시 파일단면이 시멘트풀, 모르타르 층으로 분리되면 프리스트레스 텐던의 덮개를 충분히 확보하기 어려워 파일의 운반, 야적 및 항타시 발생하는 하중효과에 의해 균열이 발생할 수 있으며, 텐던의 부식을 유발할 수 있다. 본 연구에서는 프르텐션방식 원심력 고강도콘크리트 파일 생산시 원심력콘크리트의 원심조건이 파일의 재료분리층과 압축강도에 미치는 영향을 연구하기 위해 실험을 수행하였다. 실험결과에 의하면, 재료분리는 파일의 강도에 큰 영향을 주지는 않으나 원심력 크기 및 원심시간에 따라 재료분리층의 두께 변화가 심하여, 특히 고속의 원심 성형이 파일의 강도를 크게 하는 반면 재료분리도 크게 발생함을 알 수 있다. PHC 파일의 경우 재료분리가 크면 프리스트레싱 텐던의 피복두께 감소로 인해 부착력 감소, 텐던 주변의 종균열 발생, 내구성저하를 가져오고 또한, 텐던의 처짐, 비대칭 배치에 의해 불필요한 응력발생시 횡균열 발생이 가능하므로 재료분리가 적은 최적의 원심력, 원심시간결정은 중요한 것으로 보인다.

상압증기양생방식에 의한 PHC PILE의 제조기술 연구 (An Experimental Study on Manufactural Technics of PHC Pile Using Low Pressure Steam Curing Method)

  • 김종흡;안상기;이동근;심흥섭
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1994년도 가을 학술발표회 논문집
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    • pp.405-414
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    • 1994
  • The High Strength Concrete REsearch Team of the Dong-Ah Construction R&D Institute has achieved the preactical use of the PHC pile manufacture technique at the Dong-Ah Chang-dong PC Plant. Components of the high strength concrete are used high strength cement, admixtures(water reducing high range admixture, micro silion fume, fly ash, gypsum). The design strength required 800kg/$\textrm{cm}^2$ was developed raging from 870kg/$\textrm{cm}^2$ to 1010kg/$\textrm{cm}^2$. The new manufacture procedure of HPC pile which include placing, molding, steam curing is able to apply a current PC pile manufacture procedure easily without using the high pressure steam curing.

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