• 제목/요약/키워드: Tensile buckling

검색결과 130건 처리시간 0.026초

고강도콘크리트충전 각형강관장주의 내력에 관한 실험적 연구 (An Experimental Study on Stength of Slender Square Tube Columns Filled with High Strength Concrete)

  • 서성연;정진안
    • 한국강구조학회 논문집
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    • 제14권4호
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    • pp.471-479
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    • 2002
  • 본 논문에서는 고강도콘크리트충전 각형강관장주에 대한 실험결과와 탄소성해석결과를 비교분석했다. 실험체는 모두 고강도콘크리트 충전 각형강관장주로 18개를 제작하였으며, 편심비에 따라 중심 및 편심가력하였다. 본 연구의 주요 파라메타는 단면폭에 대한 유효좌굴 길이의 비($L_K$/D)= 4, 8, 12, 24, 30와 가력편심비(e)=0, k, 3k이다. 본 논문에서 고강도콘크리트 충전 각형강관장주의 내력에 관한 해석 및 실험을 통하여 다음과 같은 결과를 얻었다. $L_K$/D=12 이하의 고강도콘크리트충전 각형강관단주는 콘크리트 감소계수 $c{\gamma}u=0.85$를 고려한 전소성내역에 도달했으나, $L_K$/D=18 이상의 장주실험체는 콘크리트 감소계수를 고려한 전소성내력에 도달하지 않았다. 실험에 의한 고강도콘크리트충전 각형강관장주의 탄소성거동은 제안된 해석치의 종국내력$N_{ASSUMED}$과 비교적 양호한 접근을 보여주었다. 콘크리트 압축강도의 감소계수 $c{\gamma}u=0.85$를 고려하지 않은 CFT설계기준과 고강도 콘크리트를 충전한 각형강관기둥의 실험결과치는 비교적 잘 일치함을 알 수 있었다.

극후판 Box Column 코너이음부의 용접잔류응력 및 Groove형상 특성에 관한 연구 (A Study on the Characteristics of Welding Residual Stresses and Groove Sja[e pf Cprmer Joint in Box Column with Ultra Thick Plate)

  • 방한서;안규백;김종명;석한길;장웅성
    • Journal of Welding and Joining
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    • 제17권1호
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    • pp.97-103
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    • 1999
  • Ships, structures on the ocean, bridges, and other structures tend to be large by the development of industry. These ultra thick plate were welded with large heat input, which causes welding stresses, deformation and buckling, so it has to be considered the weld design, safety, reliability. The welded residual stresses were produced and redistributed due to the effect of large heat input. The mechanical phenomenon has not been surely identified yet. In spite of the lack of the study on the box column, there are various types of steel frame such as I type, H type, + type and $\bigcirc$ type, used in high story building. In this study, we performed computer simulation with two dimensional heat conduction and plane deformation thermal elasto-plastic finite element computer program as changing the plate thickness to 100mm, 150mm and groove angle to $60^{\circ}C$, $45^{\circ}C$, $30^{\circ}C$ of corner joint in box column. And then, to identify mechanical phenomenon such as the phenomenon of thermal distribution, welding residual stresses and deformation and to decide optimum groove angle and welding condition. The main conclusion can be summarized as follows: 1) Since the groove angle has became cooling down rapidly due to its smaller value, the temperature slope was steeped somewhat. 2) The tensile stress within the welding direction stresses was somewhat decreased at the weld metal and HAZ, increasing of the groove angle. 3) The local stress concentration of the groove angle $60^{\circ}C$ was appeared smaller than groove angle $30^{\circ}$.

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Non-linear analyses model for composite box-girders with corrugated steel webs under torsion

  • Ko, Hee-Jung;Moon, Jiho;Shin, Yong-Woo;Lee, Hak-Eun
    • Steel and Composite Structures
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    • 제14권5호
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    • pp.409-429
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    • 2013
  • A composite box-girder with corrugated steel webs has been used in civil engineering practice as an alternative to the conventional pre-stressed concrete box-girder because of several advantages, such as high shear resistance without vertical stiffeners and an increase in the efficiency of pre-stressing due to the accordion effect. Many studies have been conducted on the shear buckling and flexural behavior of the composite box-girder with corrugated steel webs. However, the torsional behavior is not fully understood yet, and it needed to be investigated. Prior study of the torsion of the composite box-girder with corrugated steel webs has been developed by assuming that the concrete section is cracked prior to loading and doesn't have tensile resistance. This results in poor estimation of pre-cracking behaviors, such as initial stiffness. To overcome this disadvantage of the previous analytical model, an improved analytical model for torsion of the composite box-girder with corrugated steel webs was developed considering the concrete tension behavior in this study. Based on the proposed analytical model, a non-linear torsional analysis program for torsion of the composite box-girder with corrugated steel webs was developed and successfully verified by comparing with the results of the test. The proposed analytical model shows that the concrete tension behavior has significant effect on the initial torsional stiffness and cracking torsional moment. Finally, a simplified torsional moment-twist angle relationship of the composite box-girder with corrugated steel webs was proposed based on the proposed analytical model.

복합재 내압선체의 적층에 따른 좌굴하중 변화에 관한 유한요소 해석 (Finite Element Analysis on Buckling Pressure by the Lamination of Composite Pressure Bull)

  • 손정윤;조종래;배원병;권진회;최진호;조윤식;김두기
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 춘계학술대회 논문집
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    • pp.458-462
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    • 2005
  • This paper deal with the optimal lamination condition of cylindrical shell applied new composite URN300 for a study of composite empirical formula. Finite element analyses for isotropic materials considered element numbers and boundary conditions are compared with existing empirical formulas to apply FE analysis for composite. And composite tensile test is done to know the composite material applied FE analysis for composite. The results of FE analyses for isotropic materials have indicated that Optimal element number and boundary condition were 1600 and both simple support. These conditions were applied in composite FE analyses. Ply orientations and lamination patterns in FE analyses for composite were considered. Ply orientations are $0^{\circ},\;15^{\circ},\;30^{\circ},\;45^{\circ},\;60^{\circ},\;75^{\circ},\;and\;90^{\circ}$. Lamination patterns are $[\pm\theta/0/90]_{14s]$ and $[\pm\theta_{14}/0_{14}/90_{14}]_s$ in FE analysis. Lamination pattern $[\pm\theta_{14}/0_{14}/90_{14}]_s$ is the equivalent model of $[\pm\theta/0/90]_{14s}$. At the result of this study, the FE analyses for composite have indicated that the optimized ply orientation $75^{\circ}$ is and real model must use in FE analysis for accurate results.

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자기복구형 에너지소산 가새시스템을 적용한 종합병원의 내진보강효과 (Seismic Retrofitting Effects of General Hospital Using Self-Centering Energy Dissipative Bracing System)

  • 김태완;추유림;번다리 디워스
    • 한국지진공학회논문집
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    • 제23권3호
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    • pp.159-167
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    • 2019
  • 2016 Gyeongju and 2017 Pohang earthquakes led Koreans to acknowledge that the Korean peninsula is not an earthquake-free zone anymore. Among various buildings crucial to after-shock recovery, general hospital buildings, especially existing old ones, are very significant so seismic retrofitting of those must be an important issue. Self-centering energy dissipative(SCED) brace is one of retrofitting methods, which consists of tendon with restoring force and friction device capable of dissipating seismic energy. The strength of the SCED brace is that the tendon forces a structure to go back to the original position, which means residual drift can be negligible. The residual drift is a very important parameter to determine usableness of general hospitals after shock. To the contrary, buckling-restrained braces(BRB) are also a very effective way to retrofit because they can resist both compressive and tensile, but residual drift may exist when the steel core yields. On this background, the seismic retrofitting effect of general hospitals reinforced with SCED braces was investigated and compared to that of the BRD in this study. As a result, although the floor acceleration cannot be reduced, the story drift and residual drift, and the shear demand of walls significantly decreased. Consequently, seismic retrofitting by SCED braces are very effective for domestic low-rise general hospitals.

Strain demand prediction of buried steel pipeline at strike-slip fault crossings: A surrogate model approach

  • Xie, Junyao;Zhang, Lu;Zheng, Qian;Liu, Xiaoben;Dubljevic, Stevan;Zhang, Hong
    • Earthquakes and Structures
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    • 제20권1호
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    • pp.109-122
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    • 2021
  • Significant progress in the oil and gas industry advances the application of pipeline into an intelligent era, which poses rigorous requirements on pipeline safety, reliability, and maintainability, especially when crossing seismic zones. In general, strike-slip faults are prone to induce large deformation leading to local buckling and global rupture eventually. To evaluate the performance and safety of pipelines in this situation, numerical simulations are proved to be a relatively accurate and reliable technique based on the built-in physical models and advanced grid technology. However, the computational cost is prohibitive, so one has to wait for a long time to attain a calculation result for complex large-scale pipelines. In this manuscript, an efficient and accurate surrogate model based on machine learning is proposed for strain demand prediction of buried X80 pipelines subjected to strike-slip faults. Specifically, the support vector regression model serves as a surrogate model to learn the high-dimensional nonlinear relationship which maps multiple input variables, including pipe geometries, internal pressures, and strike-slip displacements, to output variables (namely tensile strains and compressive strains). The effectiveness and efficiency of the proposed method are validated by numerical studies considering different effects caused by structural sizes, internal pressure, and strike-slip movements.

PC 접합부의 실물 성능실험을 통한 기계식이음 구조성능 평가 (Evaluation of Mechanical Joint Structural Performance through Actual Performance Testing of PC Connections)

  • 김재영;김용남;서민정;김범진;김승직;이기학
    • 한국지진공학회논문집
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    • 제28권3호
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    • pp.129-139
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    • 2024
  • In this study, the SBC system, a new mechanical joint method, was developed to improve the constructability of precast concrete (PC) beam-column connections. The reliability of the finite element analysis model was verified through the comparison of experimental results and FEM analysis results. Recently, the intermediate moment frame, a seismic force resistance system, has served as a ramen structure that resists seismic force through beams and columns and has few load-bearing walls, so it is increasingly being applied to PC warehouses and PC factories with high loads and long spans. However, looking at the existing PC beam-column anchorage details, the wire, strand, and lower main bar are overlapped with the anchorage rebar at the end, so they do not satisfy the joint and anchorage requirements for reinforcing bars (KDS 41 17 00 9.3). Therefore, a mechanical joint method (SBC) was developed to meet the relevant standards and improve constructability. Tensile and bending experiments were conducted to examine structural performance, and a finite element analysis model was created. The load-displacement curve and failure pattern confirmed that both the experimental and analysis results were similar, and it was verified that a reliable finite element analysis model was built. In addition, bending tests showed that the larger the thickness of the bolt joint surface of the SBC, the better its structural performance. It was also determined that the system could improve energy dissipation ability and ductility through buckling and yielding occurring in the SBC.

알루미늄 합금과 고장력 강판 접합을 위한 헬리컬 SPR의 설계 (Design of Helical Self-Piercing Rivet for Joining Aluminum Alloy and High-Strength Steel Sheets)

  • 김원영;김동범;박진근;김도훈;김기호;이인환;조해용
    • 대한기계학회논문집A
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    • 제38권7호
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    • pp.735-742
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    • 2014
  • Self-piercing rivet(SPR)은 이종재료 접합을 위해 사용되는 결합용 기계요소로써, 대표적으로는 알루미늄 합금과 강판 등 용융점이 서로 다른 재료의 접합에 사용된다. SPR 접합은 일반 리벳접합과 달리 스스로 홀을 가공하며 삽입되기 때문에 사전의 홀 가공이 필요 없다.(1) 상부판재를 천공하고 하부판재와 함께 소성 변형되어 결합된다. 자동차의 차체 경량화를 위해서는 알루미늄 합금과 같은 경량소재가 사용되며, 부분적으로 스틸과 알루미늄 합금의 이종재료 접합이 요구된다. 그러나 알루미늄 합금과 강판은 용융점이 다르므로 기존의 차체 결합방법으로 이용되고 있는 저항 용접이 불가능하다. 이에 따라, 기계적 결합방법의 하나인 SPR 접합이 요구된다.(2) 따라서 본 연구에서는 강소성 유한요소해석 프로그램을 이용하여 리벳과 판재의 접합 성형성을 검토하고, 고장력 강판을 접합할 수 있는 새로운 형상의 SPR을 설계하였다. 또한 해석결과와 실험의 비교를 통하여 해석의 신뢰성을 검증하였다.

고연성 PET 섬유로 보강된 철근콘크리트 원형 기둥의 내진성능 (Seismic Performance of Circular RC Columns Retrofitted Using Ductile PET Fibers)

  • 소라삭 바치라판야쿤;임명관;최동욱
    • 콘크리트학회논문집
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    • 제28권3호
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    • pp.289-298
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    • 2016
  • 휨강도 및 연성이 부족한 철근콘크리트 원형 기둥의 섬유를 사용한 내진보강에 대하여 실험적 연구를 수행하였다. 일정한 축력을 받는 4개 기둥의 횡 방향 유사동적 실험에서 변수는 GF, PET 및 PET+GF 혼합 보강(HF) 등 섬유의 종류이었다. 이 연구에 적용한 PET는 인장강도(600 MPa 이상)가 우수하고 고연성(약 15%)이나, 탄성계수가 GF의 1/6 수준으로 매우 낮다. 기둥 실험 결과, 모든 보강 기둥은 컨트롤 기둥보다 7~20% 증가한 휨강도를 보였고, 연성은 1.6~1.8배로 증가하였다. 무보강 기둥은 주근 좌굴, GF 및 HF 보강 기둥의 최종 파괴모드는 GF 파단이었으나, 고연성 PET는 극한단계에서도 파단이 발생하지 않았다. PET는 휨강도 및 연성 증진 측면에서 RC 부재의 보강용으로 적합하다고 사료되나, 탄성계수가 낮으므로 많은 양을 사용하여야 하는 단점이 있으므로 이 연구에서 PET는 GF에 비해 인장 강성비 20% 수준으로 사용하였다. 한편 PET의 내구성에 대하여는 현재 연구가 진행 중에 있다.

고강도 강관말뚝의 항타후 구조성능 분석 (Structural Capacity of High Strength Steel Pipe Pile After Pile Driving)

  • 나승민;유한규
    • 대한토목학회논문집
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    • 제31권6C호
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    • pp.251-258
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    • 2011
  • 강관말뚝은 오랫동안 다양한 깊은 기초에 적용되어 왔으나 최근 강재가격의 상승으로 균질한 품질, 큰 강성, 용이한 시공 등의 장점에도 불구하고 기술자들이 자유롭게 적용 못하고 있다. 그러므로 강관말뚝으로 시공할 경우에는 초기 항타후 계획고 이상에서 절단된 강관을 재활용할 수 있다면 공사비를 절감하는데에 기여할 수 있다. 이러한 사유로 인하여 시공자들은 항타후 절단된 강관말뚝을 새롭게 시공할 말뚝과 함께 시공하고자 하나 명확한 정량적인 항타후 강관말뚝의 거동특성의 부재 및 재활용을 위한 적절한 대응방법과 기준의 부재로 인하여 말뚝의 건전도 문제, 문제 발생시의 대응방법 부재 등이 실제 현장에서 종종 발생하고 있다. 본 연구에서는 신규 강관말뚝과 사용자 하중 또는 극한 하중을 받은 강관말뚝에 대하여 현장에서 수행한 말뚝 동재하시험과 실내에서의 피로시험, 인장시험, 샤르피 충격시험을 실시하여 그 결과를 비교분석하였다. 시험결과로부터 허용응력 수준의 항타응력이 발생한 사용 하중조건에서는 항복강도의 변화가 2% 이하이며 최대 허용항타응력($0.9{\sigma}_y$)을 항타횟수가 3000회까지 받은 극한 하중조건에서는 항복강도의 변화가 5% 이하인 것을 확인할 수 있다. 또한 각 변수의 민감도를 확인하기 위하여 통계분석을 실시하였다. 모든 실험결과로부터 강관말뚝의 재활용 가능여부에 대한 판단 기준은 항복강도의 변화 보다는 오히려 샤르피충격에너지, 용접부에서의 강도변화 및 품질관리, 강관의 단면 변화, 항타후 강관의 국부좌굴에 기인하는 것을 확인할 수 있었다.