• 제목/요약/키워드: collapse failure

검색결과 506건 처리시간 0.023초

두께가 다른 이종배관 용접부 면삭 각도 변화에 따른 하중지지능력 평가 (Load Bearing Capacity of Welded Joints between Dissimilar Pipelines with Unequal Wall Thickness)

  • 백종현;김영표;김우식
    • 대한기계학회논문집A
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    • 제36권9호
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    • pp.961-970
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    • 2012
  • 두께가 다른 이종강도 배관 용접부에서 인장, 내압 및 굽힘응력에 대한 하중지지능력을 평가하였다. 1.22, 1.54 및 1.89의 두께비를 갖는 API X65-API X80, API X42-API X65 및 API X42-API X80 배관 용접부를 유한요소해석을 통하여 하중지지능력을 평가하였다. 이종강도 배관의 두께비가 1.5 이하에서 인장강도와 최대모멘트는 면삭각도 변화에 큰 영향을 받지 않으나 두께비가 1.5 이상에서는 큰 영향을 받는다. 저강도 배관의 길이방향 면삭각도와 두께비 변화에 따라서는 내압에 의한 파열압력은 영향을 받지 않는다.

나선형 철물을 사용한 전통 목구조의 장부 보강기법 (Tenon Reinforcement Technique on Tradition Wooden Structures Using Spiral Hardware)

  • 유혜란;권기혁
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권2호
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    • pp.104-112
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    • 2012
  • 전통 목구조는 기둥-보-도리로 가구를 구성하며, 보 장부의 파괴는 전통 목구조의 붕괴로 이어질 수 있다. 장부의 구조성능을 평가하기 위해 장부 두께에 따른 내력과 강성을 평가하고, 상부 구조체를 해체하여야 가능한 기존 보강방안을 보완하여 상부 구조체를 해체하지 않고 보강하는 방안을 제안한다. 효과적인 보강방안을 제안하기 위해 철물 개수 및 간격, 모양 및 삽입깊이를 요인으로 실험을 행하여 비보강 실험체와 내력, 강성을 비교한다. 장부의 전단실험을 통하여 다음과 같은 결론을 도출한다. 장부의 내력과 초기전단강성은 장부 두께가 두꺼워질수록 증가하지만, 장부 두께를 크게 하면 기둥의 사개부분이 약해져 구조적 안전성에 영향을 미친다. 장부의 내력 전단응력 전단강성을 효과적으로 향상시키기 위해서는 철물 3개를 장부의 중앙부에 배치하여 보강하여야 한다. 이를 토대로 기둥-보-도리 등의 접합부에 대한 연구도 진행되어야 할 것이다.

보강토옹벽의 최적 보강길이비 산정을 위한 수치해석적 연구 (Numerical Analysis for Optimum Reinforcement Length Ratio of Reinforced Earth Retaining Wall)

  • 박춘식;안우종
    • 한국지반환경공학회 논문집
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    • 제19권12호
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    • pp.5-14
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    • 2018
  • 최근 국내에 사용되고 있는 보강토옹벽 공법은 전면체의 재질, 보강재, 축조방법, 축조경사에 따라 수많은 종류가 제안되었으나 각 공법에 따른 설계방법이나 상세검토항목 등의 규정이 명확하지 않으며 집중호우에 따른 붕괴도 빈번하게 발생하고 있는 실정이다. 본 연구에서는 이러한 보강토옹벽의 설계에 있어서 좀 더 안정된 기술적 접근을 위해 설치높이별 단면을 가정하고 단일 강도의 보강재를 사용한 보강토옹벽의 인발파괴와 높이별 최적의 보강재 조합을 산정하고 산정된 각 단면에 대해서 보강길이비(L/H)에 따른 안전율 변화를 통하여 보강재의 최적 설계와 다단식 보강토옹벽의 최적 설계 그리고 보강재인 토목섬유의 재질에 따른 최적 길이비를 산정하여 제시하였다.

독일민사소송법상 외국중재판정의 승인 및 집행 - 「독일민사소송법」 제1061조를 중심으로 - (Recognition or Enforcement of Arbitral Awards under the German Civil Procedure Act)

  • 성준호
    • 한국중재학회지:중재연구
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    • 제29권2호
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    • pp.107-132
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    • 2019
  • The arbitration procedure, which is a private trial, does not have a separate enforcement agency. Therefore, unless a party consents to the arbitration award and voluntarily fulfills the award, its execution is accomplished through the implementation of the national court. In particular, the decision in the foreign arbitration procedure will be refused or rejected for the arbitration award in case the proceedings of the law and procedure on which the judgment is based are caused by inconsistency with the domestic law or procedural defect. However, all foreign arbitration awards generally do not have to go through the approval process, and it will come into force with the arbitration award. In the case of Germany in the revision of the German Civil Procedure Act of 1996, the main provisions of the New York Convention concerning the ratification and enforcement of arbitration proceedings are reflected. Germany provides for the arbitration procedures in the arbitration proceedings of Book 10 of the Civil Procedure Act. Particularly, with Article 1061 in Book 10 Section 8 below, the approval and enforcement of foreign arbitrators shall be governed. Article 1061 has been referred to as "The New York Convention on the Recognition and Enforcement of Foreign Jurisdictions," Article 5 (1). The main reasons for approval and enforcement rejection are: (1) Reason for the acceptance or refusal of enforcement by request of the parties: Reason for failure of subjective arbitration ability, invalidation of arbitration agreement, collapse of attack or defense method, dispute not included in arbitration agreement, (2) Reasons for the approval and enforcement of arbitration considered by the competent authority of the arbitrator: violation of objective arbitration ability, violation of public order, but not based on the default of German statute.

지하수위 변화에 따른 지반함몰 영향연구 (Influence Ground Sinking with Variation of Ground Water Level)

  • 김숙자;정관수
    • 한국재난정보학회 논문집
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    • 제14권4호
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    • pp.399-408
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    • 2018
  • 연구목적: 최근 들어 도심지를 중심으로 빈번하게 발생하는 지반함몰은 인명 및 경제적 피해를 야기하여 사회적으로 큰 이슈가 되고 있다. 지반함몰 또는 도로함몰은 일반적으로 불리는 싱크홀과는 다른 원인으로 작용하고 있다. 석회암 지반이 용해되어 침식이 일어나는 싱크홀과는 달리 지반함몰 및 도로함몰은 지하수가 흙 사이로 빠져나가게 되면서 공동이 발생하게 되고 이완 및 확장이 진행되어 상부지반이 붕괴되는 현상을 말한다. 지반의 공동화는 집중호우시 침입수에 의한 공동 형성, 지하수위 상승 및 하강에 의한 토사유실 및 하수유출반복에 의한 공동 형성이 주된 원인이다. 연구방법: 본 연구에서는 지하수 모델링을 통하여 지하구조물 공사시 지하수 흐름을 검토하였다. 연구결과: 지하수 모델링결과 지하수는 하천방향으로 흐르는 것으로 분석되었으며, 이에 따른 지반함몰의 영향은 미미한 것으로 확인되었다. 결론: 지하수위 저하 및 흐름방향에 따른 지반함몰보다는 지층을 구성하는 입자의 구성에 영향을 받는 것으로 분석되었다.

깊이 1200mm급 변단면보의 중간모멘트골조용 내진접합부 개발 (Beam-Column Connection with 1200mm Deep Multi-Reduced Taper Beam for Intermediate Moment Frame)

  • 정시화;알미아이유 로벨 원디므;박만우;주영규
    • 대한건축학회논문집:구조계
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    • 제35권4호
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    • pp.135-146
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    • 2019
  • Deep beam has high section modules compared with shallow beam of the same weight. However, deep beam has low rotational capacity and high possibility of brittle failure so it is not possible to apply deep beams with a long span to intermediate moment frames, which should exhibit a ductility of 0.02rad of a story drift angle of steel moment frames. Accordingly, KBC and AISC limit the beam depth for intermediate and special moment frame to 750mm and 920mm respectively. The purpose of this paper is to improve the seismic performance of intermediate moment frame with 1200mm depth beam. In order to enhance vulnerability of plastic deformation capacity of deeper beam, Multi-Reduced Taper Beam(MRTB) shape that thickness of beam flange is reinforced and at the same time some part of the beam flange width is weakened are proposed. Based on concept of multiple plastic hinge, MRTB is intended to satisfy the rotation requirement for intermediate moment frame by dividing total story drift into each hinge and to prevent the collapse of the main members by inducing local buckling and fracture at the plastic hinge location far away from connection. The seismic performance of MRTB is evaluated by cyclic load test with conventional connections type WUF-W, RBS and Haunch. Some of the proposed MRTB connection satisfies connection requirements for intermediate moment frame and shows improved the seismic performance compared to conventional connections.

흙 사면의 강우 침식보강을 위한 토양개량제 개발에 관한 연구 (A Study on Soil Improvement Agent for Rainfall-Induced Erosion on the Soil Slope)

  • 강대흥;김영석;황인택;김재홍
    • 대한토목학회논문집
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    • 제41권3호
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    • pp.237-246
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    • 2021
  • 기후변화로 극한강우에 의해 발생하는 얕은 비탈면 붕괴와 침식으로 토석류 유발이 잦아지고 있다. 앵커나 네일링 공법으로 보강하기 보다는 원지반을 이용하여 식생이 되는 비탈면 보강이 경제적이면서 친환경적인 공법으로 연구되고 있다. 본 연구에서는 충분한 식생이 가능하도록 부엽토와 한약재 찌꺼기를 활용하여 토양개량제를 개발하였다. 그리고 표면침식을 방지하기 위해 첨가제로 마이크로 시멘트와 반수석고 등을 사용하여 전단강도를 증가시켰다. 이러한 주재료와 첨가제 결정은 실내시험을 통하여 강우로 인한 지반 표층의 침식 진행을 확인하여 전단강도의 증가를 확인할 수 있었다. 원지반을 활용하는 토양개량제의 보강은 식생이 가능하고 침식에 대해 저항력이 크게 증가한다. 이러한 보강은 사면 불안정성의 주요 원인인 인장균열 발생을 방지하고 침식에 의한 토석류 유발을 막을 수 있기 때문에 다른 공법들보다 장마철 폭우에 대한 대처방안으로 효율적인 방법이라고 판단된다.

Seismic analysis of high-rise steel frame building considering irregularities in plan and elevation

  • Mohammadzadeh, Behzad;Kang, Junsuk
    • Steel and Composite Structures
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    • 제39권1호
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    • pp.65-80
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    • 2021
  • Irregularities of a building in plan and elevation, which results in the change in stiffness on different floors highly affect the seismic performance and resistance of a structure. This study motivated to investigate the seismic responses of high-rise steel-frame buildings of twelve stories with various stiffness irregularities. The building has five spans of 3200 mm distance in both X- and Z-directions in the plan. The design package SAP2000 was adopted for the design of beams and columns and resulted in the profile IPE500 for the beams of all floors and box sections for columns. The column cross-section dimensions vary concerning the number of the story; one to three: 0.50×0.50×0.05m, four to seven: 0.45×0.45×0.05 m, and eight to twelve: 0.40×0.40×0.05 m. Real recorded ground accelerations obtained from the Vrancea earthquake in Romania together with dead and live loads corresponding to each story were considered for the applied load. The model was validated by comparing the results of the current method and literature considering a three-bay steel moment-resisting frame of eight-story height subject to seismic load. To investigate the seismic performance of the buildings, the time-history analysis was performed using ABAQUS. Deformed shapes corresponding to negative and positive peaks were provided followed by the story drifts and fragility curves which were used to examine the probability of collapse of the building. From the results, it was concluded that regular buildings provided a seismic performance much better than irregular buildings. Furthermore, it was observed that building with torsional irregularity was more vulnerable to seismic failure.

Experimental and numerical study of an innovative 4-channels cold-formed steel built-up column under axial compression

  • G, Beulah Gnana Ananthi;Roy, Krishanu;Lim, James B.P.
    • Steel and Composite Structures
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    • 제42권4호
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    • pp.513-538
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    • 2022
  • This paper reports on experiments addressing the buckling and collapse behavior of an innovative built-up cold-formed steel (CFS) columns. The built-up column consists of four individual CFS lipped channels, two of them placed back-to-back at the web using two self-drilling screw fasteners at specified spacing along the column length, while the other two channels were connected flange-to-flange using one self-drilling screw fastener at specified spacing along the column length. In total, 12 experimental tests are reported, covering a wide range of column lengths from stub to slender columns. The initial geometric imperfections and material properties were determined for all test specimens. The effect of screw spacing, load-versus axial shortening behaviour and buckling modes for different lengths and screw spacing were investigated. Nonlinear finite element (FE) models were also developed, which included material nonlinearities and initial geometric imperfections. The FE models were validated against the experimental results, both in terms of axial capacity and failure modes of built-up CFS columns. Furthermore, using the validated FE models, a parametric study was conducted which comprises 324 models to investigate the effect of screw fastener spacing, thicknesses and wide range of lengths on axial capacity of back-to-back and flange-to-flange built-up CFS channel sections. Using both the experimental and FE results, it is shown that design in accordance with the American Iron and Steel Institute (AISI) and Australia/New Zealand (AS/NZS) standards is slightly conservative by 6% on average, while determining the axial capacity of back-to-back and flange-to-flange built-up CFS channel sections.

Dynamic punching shear tests of flat slab-column joints with 5D steel fibers

  • Alvarado, Yezid A.;Torres, Benjamin;Buitrago, Manuel;Ruiz, Daniel M.;Torres, Sergio Y.;Alvarez, Ramon A.
    • Structural Engineering and Mechanics
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    • 제81권3호
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    • pp.281-292
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    • 2022
  • This study aimed to analyze the dynamic punching shear performance of slab-column joints under cyclic loads with the use of double-hooked end (5D) steel fibers. Structural systems such as slab-column joints are widely found in infrastructures. The susceptibility to collapse of such structures when submitted to seismic loads is highly dependent on the structural performance of the slab-column connections. For this reason, the punching capacity of reinforced concrete (RC) structures has been the subject of a great number of studies. Steel fibers are used to achieve a certain degree of ductility under seismic loads. In this context, 5D steel hooked fibers provide high levels of fiber anchoring, tensile strength and ductility. However, only limited research has been carried out on the performance under cyclic loads of concrete structural members containing steel fibers. This study covers this gap with experimental testing of five different full-scale subassemblies of RC slab-column joints: one without punching reinforcement, one with conventional punching reinforcement and three with 5D steel fibers. The subassemblies were tested under cyclic loading, which consisted of applying increasing lateral displacement cycles, such as in seismic situations, with a constant axial load on the column. This set of cycles was repeated for increasing axial loads on the column until failure. The results showed that 5D steel fiber subassemblies: i) had a greater capacity to dissipate energy, ii) improved punching shear strength and stiffness degradation under cyclic loads; and iii) increased cyclic loading capacity.