• 제목/요약/키워드: No-Load Test

검색결과 691건 처리시간 0.023초

플랜트 탱크의 좌굴 거동에 근거한 풍하중 설계기준 비교 연구 (Comparison of Wind Load Provisions Based on the Wind Buckling Behaviors of Plant Tank)

  • 배두병;박일규;박장호;오창국
    • 한국강구조학회 논문집
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    • 제28권3호
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    • pp.203-211
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    • 2016
  • 국내의 플랜트 탱크 설계를 위한 풍하중 기준은 KS B 6283 액체 저장 탱크의 내풍압 및 내진에 대한 설계 요건 등 여러기준에 제시되어 있으나, 그 내용이 서로 다르고 연관성도 없으며 실제의 풍하중을 반영하고 있는지 명확하지 않다. 국내 풍하중 기준의 정당성을 평가하고 적합한 풍하중 기준을 제안하기 위해 외국의 저장 탱크 설계를 위한 대표적 기준인 API 650, ASCE 7-10, EN 1991-1-4의 풍하중 기준 들과 비교분석하였다. 풍동 실험이 수행되어 보고된 논문에 적용된 탱크 제원을 적용하여 기본적으로 각 기준에 의한 압력계수 Cp값을 산정해 비교하고, 탱크 지붕 높이와 지름 비(f/d) 및 탱크 깊이 및 지름 비(h/d)를 변수로 한 각 기준에 의한 풍하중 좌굴해석을 수행하였다. 결과를 분석 종합하여 실제 풍하중에 의한 좌굴 거동을 반영하면서도 설계 시 쉽게 적용할 수 있는 풍하중 기준을 제안 하였다.

비부착 강연선에 대한 포스트텐션 정착구 개발 및 성능 시험 (Development and Performance Test for Unbonded Post-Tensioned Anchor)

  • 조아서;조영욱;전병갑;강현구
    • 콘크리트학회논문집
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    • 제27권1호
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    • pp.11-20
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    • 2015
  • 본 연구에서는 유한요소해석을 통하여 직경 15.2 mm의 비부착식 강연선을 위한 포스트텐션 1구 정착구를 개발하였고 이에 대한 성능시험을 수행하였다. 정착장치에 대한 성능시험으로 콘크리트 표준시방서에 따라 KCI-PS101에 제시된 정하중시험과 하중전달시험 방법이 사용되었다. 정하중시험과 강연선 인장시험을 통하여 개발된 정착구가 강연선 공칭인장강도에도 손상 및 파괴되지 않음을 확인하였다. 하중전달시험을 통해서는 각종 철근보강에 따른 실험체의 압축성능을 확인하였고, 무보강 실험체가 강연선 인장강도의 1.64배까지 저항할 수 있다는 결과를 얻었다.

연직 불연속면이 존재하는 얕은 심도의 사질토 지반에서 2-arch 터널 단계별 굴착에 따른 하중전이에 관한 실험적연구 (An experimental study on the load transfer machanism of shallow 2-arch tunnel excavation sequence with vertical discontinuity planes in sandy ground)

  • 오범진;이상덕
    • 한국터널지하공간학회 논문집
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    • 제13권3호
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    • pp.215-231
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    • 2011
  • 본 논문에서는 연직 불연속면을 포함하는 지반에서 얕은 심도 2-arch 터널 굴착에 따른 거동특성을 실험적으로 연구하였으며, 2-arch 터널 굴착에 따른 필러부 하중전이 특성을 관찰하였다. 연직 불연속면의 위치를 변화시키고, 2-arch터널 시공단계별로 모형실험을 수행하였다. 실험결과, 2-arch 터널 굴착에 따른 이완하중이 불연속면이 위치한 곳에 집중되었고, 불연속면에 차단되어 불연속면을 넘어서까지 하중이 전이되지는 않았다. 또한 인접한 터널의 하반을 굴착할 때보다 상반을 굴착할 때에 필러부와 지반변형에 더 큰 영향을 미치는 것으로 나타났다.

격자지보재(Lattice Girder)의 실내성능평가기법 개발 (Development of a laboratory testing method for evaluating the loading capability of lattice girder)

  • 김동규;배규진
    • 한국터널지하공간학회 논문집
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    • 제10권4호
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    • pp.371-382
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    • 2008
  • 본 연구의 목적은 국내터널현장에서 강지보재로 주로 사용되어지고 격자지보재(Lattice Gilder)의 공학적인 성능을 보다 객관적으로 판단하기 위한 실내성능평가기법의 제안에 있다. 본 연구를 위하여 국내에서 격자지보재로 주로 사용되는 $LG-50{\times}20{\times}30$, $LG-70{\times}20{\times}30$, 및 $LG-95{\times}22{\times}32$를 사용하여 3-point 휨강도 실험 및 4-point 휨강도 실험을 수행하였다. 또한, 하중재하위치에 따른 격자지보재의 하중-변위거동을 분석하기 위하여 각각의 실험방법에서 두 가지 하중재하방식을 사용하여 실험을 수행하였다. 각 부재에 스트레인 게이지를 부착하여 각각의 실험방법에 따라 각 부재에 작용하는 하중분포를 분석하였다. 3-point 휨강도 실험에 적용한 두 가지 하중재하방식으로 측정된 평균 최대하중은 $10%{\sim}33%$까지 차이가 나타났으며, 4-point 휨강도 실험에 적용한 두 가지 하중재하방식에 의해 측정된 평균 최대하중은 거의 차이가 없었다. 4-point 휨강도 실험의 평균 최대하중은 3-point 휨강도 실험보다 $13.56%{\sim}31.55%$와 정도 크게 나타났다. 3-point 휨강도 실험은 주강봉에 주로 하중이 집중되는 반면 4-point 휨강도 실험은 각 부재로 비교적 골고루 하중이 작용하는 것으로 나타났다.

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완전소성해석을 이용한 원형노치 인장시편의 한계하중 및 완전소성응력장 해석 (Limit Load and Fully Plastic Stress Analysis for Circular Notched Plates and Bars Using Fully Plastic Analysis)

  • 오창균;명만식;김윤재;박진무
    • 대한기계학회논문집A
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    • 제29권12권
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    • pp.1605-1614
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    • 2005
  • For the last four decades, tension test of notched bars has been performed to investigate the effect of stress triaxiality on ductile fracture. To quantify the effect of the notch radius on stress triaxiality, the Bridgman equation is typically used. However, recent works based on detailed finite element analysis have shown that the Bridgman equation is not correct, possibly due to his assumption that strain is constant in the necked ligament. Up to present, no systematic work has been performed on fully plastic stress fields for notched bars in tension. This paper presents fully plastic results for tension of notched bars and plates in plane strain, via finite element limit analysis. The notch radius is systematically varied, covering both un-cracked and cracked cases. Comparison of plastic limit loads with existing solutions shows that existing solutions are accurate for notched plates, but not for notched bars. Accordingly new limit load solutions are given for notched bars. Variations of stress triaxiality with the notch radius and depth are also given, which again indicates that the Bridgman solution for notched bars is not correct and inaccuracy depends on the notch radius and depth.

Linear elastic and limit state solutions of beam string structures by the Ritz-method

  • Xue, Weichen;Liu, Sheng
    • Structural Engineering and Mechanics
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    • 제35권1호
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    • pp.67-82
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    • 2010
  • The beam string structure (BSS) has been widely applied in large span roof structures, while no analytical solutions of BSS were derived for it in the existing literature. In the first part of this paper, calculation formulas of displacement and internal forces were obtained by the Ritz-method for the most commonly used arc-shaped BSS under the vertical uniformly distributed load and the prestressing force. Then, the failure mode of BSS was proposed based on the static equilibrium. On condition the structural stability was reliable, BSS under the uniformly distributed load would fail by tensile strength failure of the string, and the beam remained in the elastic or semi-plastic range. On this basis, the limit load of BSS was given in virtue of the elastic solutions. In order to verify the linear elastic and limit state solutions proposed in this paper, three BSS modal were tested and the corresponding elastoplastic large deformation analysis was performed by the ANSYS program. The proposed failure mode of BSS was proved to be correct, and the analytical results for the linear elastic and limit state were in good agreement with the experimental and FEM results.

Sloshing design load prediction of a membrane type LNG cargo containment system with two-row tank arrangement in offshore applications

  • Ryu, Min Cheol;Jung, Jun Hyung;Kim, Yong Soo;Kim, Yooil
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제8권6호
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    • pp.537-553
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    • 2016
  • This paper addresses the safety of two-row tank design by performing the extensive sloshing model tests. Owing to the uncertainties entangled with the scale law transforming the measured impact pressure up to the full scale one, so called comparative approach was taken to derive the design sloshing load. The target design vessel was chosen as 230 K LNG-FPSO with tow-row tank arrangement and the reference vessel as 138 K conventional LNG carrier, which has past track record without any significant failure due to sloshing loads. Starting with the site-specific metocean data, ship motion analysis was carried out with 3D diffraction-radiation program, then the obtained ship motion data was used as 6DOF tank excitation for subsequent sloshing model test and analysis. The statistical analysis was carried out with obtained peak data and the long-term sloshing load was determined out of it. It was concluded that the normalized sloshing impact pressure on 230 K LNG-FPSO with two-row tank arrangement is higher than that of convectional LNG carrier, hence requires the use of reinforced cargo containment system for the sake of failure-free operation without filling limitation.

원주방향균열이 존재하는 원전 배관계통의 파괴거동에 관한 실험적 연구(I) - 직관부에서의 균열거동 평가 - (An Experimental Study on the Fracture Behavior of Nuclear Piping System with a Circumferential Crack(I) - Estimation of Crack Behavior in Straight Piping -)

  • 최영환;박윤원
    • 대한기계학회논문집A
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    • 제23권7호
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    • pp.1182-1195
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    • 1999
  • The purpose of this study is to investigate experimentally the effects of both seismic loading and crack length on the fracture behavior of piping system with a circumferential crack in nuclear power plants. The experiments were performed using both large scale piping system facility and 4 points bending test machine under PWR operating conditions. The difference in the load carrying capacities between cracked piping and non-cracked piping was also investigated using the results from experiments and numerical calculations. The results obtained from the experiments and estimation are as follows : (1) The safety margin under seismic loading is larger than those under quasi static loading or simple cyclic loading. (2) There was no significant effect of crack length on tincture behavior of piping system with both a surface crack and a through-wall crack. (3) The load carrying capacity in cracked piping was reduced by factors of 7 to 46 compared to non-cracked piping.

Bond-slip constitutive model of concrete to cement-asphalt mortar interface for slab track structure

  • Su, Miao;Dai, Gonglian;Peng, Hui
    • Structural Engineering and Mechanics
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    • 제74권5호
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    • pp.589-600
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    • 2020
  • The bonding interface of the concrete slab track and cement-asphalt mortar layer plays an important role in transferring load and restraining the track slab's deformation for slab track structures without concrete bollards in high-speed railway. However, the interfacial bond-slip behavior is seldom considered in the structural analysis; no credible constitutive model has been presented until now. Elaborating the field tests of concrete to cement-asphalt mortar interface subjected to longitudinal and transverse shear loads, this paper revealed its bond capacity and failure characteristics. Interfacial fractures all happen on the contact surface of the concrete track slab and mortar-layer in the experiments. Aiming at this failure mechanism, an interfacial mechanical model that employed the bilinear local bond-slip law was established. Then, the interfacial shear stresses of different loading stages and the load-displacement response were derived. By ensuring that the theoretical load-displacement curve is consistent with the experiment result, an interfacial bond-slip constitutive model including its the corresponding parameters was proposed in this paper. Additionally, a finite element model was used to validate this constitutive model further. The constitutive model presented in this paper can be used to describe the real interfacial bonding effect of slab track structures with similar materials under shear loads.

램프 틸트에 의한 언로드 특성 분석 (Analysis of Unload Characteristics by Ramp Tilt)

  • 이용현;김기훈;김석환;이상직;박노철;박영필;박경수;김철순;유진규
    • 정보저장시스템학회논문집
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    • 제5권2호
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    • pp.70-75
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    • 2009
  • Most hard disk drives uses load/unload technology because of benefits as like an increased areal density, a reduced power consumption and an improved shock resistance. However, ramp tilt induced by ramp manufacture and assembly causes mechanical problems such as unload fail in case of exceeding ramp tolerance. In this paper, we focus on experimental analysis for unloading characteristics affected by ramp tilt. We repeatedly perform load/unload test as 500,000 cycles for original model and ramp tilt model. This paper shows that it is possible to analyze unload characteristics through measuring scratch and wear of suspension lift-tab, ramp, suspension dimple-flexure and disk. We also identify structural relation between suspension lift-tab and ramp through scratch and wear of suspension lift-tab and ramp. As the result of measurement and analysis, we can investigate decrease of unloading performance in ramp tilt model.

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