• 제목/요약/키워드: Static load capacity

검색결과 529건 처리시간 0.031초

외삽법을 이용한 풍화암에 근입된 현장타설말뚝의 극한하중 예측 (Prediction of Ultimate Load of Drilled Shafts Embedded in Weathered Rock by Extrapolation Method)

  • 정성준;이상인;전종우;김명모
    • 대한토목학회논문집
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    • 제29권4C호
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    • pp.145-151
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    • 2009
  • 일반적으로 풍화암에 근입된 현장타설말뚝은 지지력이 매우 크므로 많은 경우에 설계하중만을 검증한 다음 극한하중을 확인하기 전에 재하시험을 종료한다. 그러나 만일 미완성 하중-침하 곡선으로부터 신뢰할 수 있는 극한하중의 예측이 가능하다면 설계의 질적인 향상뿐만 아니라 경제적인 면에서도 크게 기여를 할 수 있을 것이라고 생각된다. 본 연구의 목적은 극한하중을 얻지 못한 말뚝 재하시험의 하중-침하 곡선으로부터 외삽법을 이용하여 추정한 극한하중의 신뢰성 판단 방법을 제안 하는데 있다. 이를 위해 극한하중이 구해진 10본의 말뚝을 3개 현장에 걸쳐서 수집하였다. 그리고 이 10개의 하중-침하 곡선으로부터 Davisson 방법을 이용하여 구한 실제 계측 극한하중의 25%, 50%, 60%, 70%, 80%, 그리고 90%에 해당하는 하중-침하 곡선 자료만이 확보되었다고 가상하고 각각의 자료에 대하여 쌍곡선 방법으로 외삽한 다음, 극한하중을 새로이 결정하였다. 이렇게 결정된 외삽 극한하중의 신뢰성을 통계분석을 통하여 평가하였다. 그 결과, 확보하였다고 가상한 하중-침하 곡선의 최대 침하량 대 외삽 극한하중에서의 침하량 비가 0.6 이상인 경우, 외삽으로 예측한 극한하중은 실제 계측 극한하중보다 평균적으로 20% 이내에서 보수적인 값을 나타내었다. 또한, 항타말뚝의 정재하시험 자료에 대하여 본 논문에서 제안한 방법으로 분석하여 동일한 결과를 확인하였다.

Nonlinear finite element analysis of ultra-high performance fiber reinforced concrete beams subjected to impact loads

  • Demirtas, Gamze;Caglar, Naci;Sumer, Yusuf
    • Structural Engineering and Mechanics
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    • 제82권1호
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    • pp.81-92
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    • 2022
  • Ultra-high performance fiber reinforced concrete (UHPFRC) is a composite building material with high ductility, fatigue resistance, fracture toughness, durability, and energy absorption capacity. The aim of this study is to develop a nonlinear finite element model that can simulate the response of the UHPFRC beam exposed to impact loads. A nonlinear finite element model was developed in ABAQUS to simulate the real response of UHPFRC beams. The numerical results showed that the model was highly successful to capture the experimental results of selected beams from the literature. A parametric study was carried out to investigate the effects of reinforcement ratio and impact velocity on the response of the UHPFRC beam in terms of midpoint displacement, impact load value, and residual load-carrying capacity. In the parametric study, the nonlinear analysis was performed in two steps for 12 different finite element models. In the first step, dynamic analysis was performed to monitor the response of the UHPFRC beam under impact loads. In the second step, static analysis was conducted to determine the residual load-carrying capacity of the beams. The parametric study has shown that the reinforcement ratio and the impact velocity affect maximum and residual displacement value substantially.

지반특성에 기초한 모형 연성방호책 지주의 정적 및 동적안정성 평가 (Static and Dynamic Stability Evaluation of Model Guardrail Posts Based on Geotechnical Properties)

  • 임유진
    • 한국도로학회논문집
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    • 제11권1호
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    • pp.233-245
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    • 2009
  • 연성방호책 지주(post)의 설계 지반물성치를 파악하고 이를 이용한 해석방법을 수립하기 위한 방법으로서 공내재하시험(PMT)의 사용가능성을 검토하였다. 공내재하시험 결과를 이용하여 지주의 휨모멘트 및 하중-변위관계를 예측할 수 있는 해석방법의 수립가능성을 검토하였다. 모형지반과 모형지주를 이용한 정재하시험을 실시하여 하중-변위의 발생패턴과 크기를 분석하였으며 이를 공내재하시험 해석방법으로부터 구한 결과값과 비교하여 공내재하시험 해석방법의 타당성을 검토하였다. 또한 모형차(bogie)를 이용하여 모형 지주에 대한 충격시험을 실시하여 지주주변지반의 파괴형태를 파악하였으며 측정된 최대감가속도로부터 정적지지력 대비 동적지지력의 발생크기를 분석하였다. 이와 같은 시험 및 해석결과로부터 공내재하시험이 방호책 지주와 도로지반 사이의 역학적 상호연관성을 분석하기 위한 합리적인 시험방법이 될 수 있음을 확인하였다.

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슈퍼 섬유를 이용한 Shock Energy Absorber Lanyard의 제조 및 특성분석 (Preparation and Characterization of Shock Energy Absorber Lanyard used Super Fibers)

  • 조진원;권상준;최종덕;김상태;지병철;염정현
    • 한국염색가공학회지
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    • 제26권3호
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    • pp.173-180
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    • 2014
  • Fall-arrest system have been widely applied to provide a safe stop during fall incidents for occupational activities. This research object to evaluate the energy capacity of fall arrest shock energy absorber lanyard in relation to the used super fiber. In this work, shock energy absorber lanyard was prepared using high tenacity PET, high tenacity PET/P-aramid and high tenacity PET/UHMWPE, respectively. Dynamic load and static load tests based on the Korea fall protection equipment standard(Korea Occupational Safety & Health Agency standard 2013-13) were conducted. Maximum arrest force by dynamic load test of shock energy absorber showed below 6,000N. Also, static strength by static load test of lanyard and rope remains 15,000N and 22,000N for 1 min.

T형상용접 이음에서 매몰된 라멜라균열이 용접부의 기계적 강도에 미치는 영향 (Effects of the buried lamellar tears on the mechanical strength in the welded T joints)

  • 고진현
    • Journal of Welding and Joining
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    • 제6권4호
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    • pp.44-53
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    • 1988
  • The mechanical strengths of buried lamellar tears located near the weld toe in the welded tee joints were evaluated in terms of the loss of load carrying capacity as a function of tear area. In static loading, the load carrying capacity was significantly reduced when tear intercepted over 10% of the cross-sectional area of the welded joints. However, the welded joints containing buried tears still failed at stresses over the yield strength of the base metal in the through-thickness direction in spite of the presence of tears up to 20-25% of the area. Fatigue strength of welded joints containing tears markedly reduced with increasing tear areas. Lehigh lamellar tearing test used in this study to produce speicmens was described in detail. The load carrying cpapacity in static loading was influenced by the reduction of supporting area whereas that in fatigue loading was influenced by the stress-concentration effects of lamellar tears and the reduction of supporting area. In bend tests, the pre-existing lamellar tears always grew up toward the weld toe. However, in fatigue loading, cracks grew up and down simultaneously form both the weld toe and the top of lamellar tears because of stress concentration. In fatigue loading, delaminations and decohesion of inclusion/matrix interface generated in multipass welds provided crack propagation paths and enhanced crack propagation because the tips of delaminations and deconhesios acted as stress raisers.

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Study on Thermal Load Capacity of Transmission Line Based on IEEE Standard

  • Song, Fan;Wang, Yanling;Zhao, Lei;Qin, Kun;Liang, Likai;Yin, Zhijun;Tao, Weihua
    • Journal of Information Processing Systems
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    • 제15권3호
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    • pp.464-477
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    • 2019
  • With the sustained and rapid development of new energy sources, the demand for electric energy is increasing day by day. However, China's energy distribution is not balanced, and the construction of transmission lines is in a serious lag behind the improvement of generating capacity. So there is an urgent need to increase the utilization of transmission capacity. The transmission capacity is mainly limited by the maximum allowable operating temperature of conductor. At present, the evaluation of transmission capacity mostly adopts the static thermal rating (STR) method under severe environment. Dynamic thermal rating (DTR) technique can improve the utilization of transmission capacity to a certain extent. In this paper, the meteorological parameters affecting the conductor temperature are analyzed with the IEEE standard thermal equivalent equation of overhead transmission lines, and the real load capacity of 220 kV transmission line is calculated with 7-year actual meteorological data in Weihai. Finally, the thermal load capacity of DTR relative to STR under given confidence is analyzed. By identifying the key parameters that affect the thermal rating and analyzing the relevant environmental parameters that affect the conductor temperature, this paper provides a theoretical basis for the wind power grid integration and grid intelligence. The results show that the thermal load potential of transmission lines can be effectively excavated by DTR, which provides a theoretical basis for improving the absorptive capacity of power grid.

노후된 잔교식 부두의 신뢰성 및 내하력 평가 (Assessment of Reliability and Load Carrying Capacity of Aged Wharf Structure of Pier Type)

  • 조효남;김성훈;김종규;이승재;최영민
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1994년도 가을 학술발표회 논문집
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    • pp.71-78
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    • 1994
  • The main objectives of the study may be stated as follows : \circled1 the acquisition of fundamental updated data for the assessment of aged wharf structures of pier type based on systematic static/dynamic load testing \circled2 the study of techniques and methods for field testing \circled3 realistic safety and load carrying capacity assessment based on practical reliability analysis. In this study field testing of real structure is performed and the results are compared with those of the 2D and 3D linear structural analysis. It may be seen that the practical reliability methods can be applied for the safety and capacity assessment of aged wharf structures of pier type.

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IPC 거더 연속교의 실교량 내하력 평가 연구 (Load Bearing Capacity Evaluation of Continuous IPC Girder Bridge.)

  • 한만엽;황의승;진경석;강상훈;신재우
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.475-478
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    • 2005
  • This study was performed to evaluate about load bearing capacity of continuos IPC Girder Bridge under and after Construction. This is Ichi-1 Bridge that is 2-40m span continuous bridge on a extension road through the Ichun and the Naesa. The result of static loading test to use a 25ton truck after construction, deflection ratio is 0.64 that is $35\%$ and average of response ratio is 0.48$\~$0.89 that is less than theoretical value. The result of dynamic loading test, the number of proper vibrations is 3.06Hz that is like theoretical value 3.61Hz, the modulus of impact is 0.235 that is bigger than specification 0.19. the load bearing capacity is minimum DB-40 that is so big value. In the result, continuos IPC Girder Bridge is safe in short period. we will evaluate long period behavior of continuos IPC Girder Bridge.

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Performance of Rock-socketed Drilled Shafts in Deep Soft Clay Deposits

  • Kim, Myung-Hak
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 추계 학술발표회
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    • pp.409-429
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    • 2006
  • In designing rock-socketed drilled shaft, bearing capacity evaluation is very important because the maximum values of base and side resistance are not generally mobilized at the same value of displacement, FHWA and AASHTO code suggest different ultimate bearing capacity formular according to rock type and shaft settlement. In domestic code suggest base resistance and side resistance can be added on condition that after confirming the result of field load test with axial load transfer test. This paper shows that static load test and hi-directional load test result analysis of deep rock-socketed drilled shaft in three different sites. Load-settlement curve, t-z, and q-w curve in rock-socketed part were calculated and compared. t-z curve in weathered and soft rock showed no deflection softening behavior in pretty large strain (about 2-3% of diameter). Ultimate resistance could be the summation of side resistance and base resistance in rock-socketed drilled shaft in domestic sites.

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Axial impact behavior of confined concrete filled square steel tubes using fiber reinforced polymer

  • Zhang, Yitian;Shan, Bo;Kang, Thomas H.K.;Xiao, Yan
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.165-176
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    • 2021
  • Existing research on confined concrete filled steel tubular (CCFT) columns has been mainly focused on static or cyclic loading. In this paper, square section CCFT and CFT columns were tested under both static and impact loading, using a 10,000 kN capacity compression test machine and a drop weight testing equipment. Research parameters included bonded and unbonded fiber reinforced polymer (FRP) wraps, with carbon, basalt and glass FRPs (or CFRP, BFRP, and GFRP), respectively. Time history curves for impact force and steel strain observed are discussed in detail. Experimental results show that the failure modes of specimens under impact testing were characterized by local buckling of the steel tube and cracking at the corners, for both CCFT and CFT columns, similar to those under static loading. For both static and impact loading, the FRP wraps could improve the behavior and increase the loading capacity. To analyze the dynamic behavior of the composite columns, a finite element, FE, model was established in LS-DYNA. A simplified method that is compared favorably with test results is also proposed to predict the impact load capacity of square CCFT columns.