강재 배관 Tee의 한계상태 평가를 위한 손상지수의 적용

논문상세정보
' 강재 배관 Tee의 한계상태 평가를 위한 손상지수의 적용' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Damage index
  • Damage model
  • Low-cycle fatigue
  • Steel pipe tee
  • 강재 배관 Tee
  • 손상 모델
  • 손상지수
  • 저주기 피로
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
58 0

0.0%

' 강재 배관 Tee의 한계상태 평가를 위한 손상지수의 적용' 의 참고문헌

  • 주기적 하중을 받는 SCH 40 3-Inch 탄소강관엘보의 소산에너지 기반의 손상지수 평가
    김성완 [2021]
  • Ultimate strength of a thin wall elbow for sodium cooled fast reactors under seismic loads
  • Study on inelastic strain-based seismic fragility analysis for nuclear metal components
    Koo, G. H. [2021]
  • Shear requirements for load reversals on RC members
  • Seismic safety of reinforced concrete members and structures
    Banon, H. [1982]
  • Seismic response analysis of a piping system subjected to multiple support excitations in a base isolated NPP building
    Surh, H. B. [2015]
  • Seismic fragility analysis with artificial neural networks : Application to nuclear power plant equipment
    Wang, Z. [2018]
  • Seismic damage in reinforced concrete frames
    Banon, H. [1981]
  • Ratcheting fatigue failure of a carbon steel pipe tee in a nuclear power plant using the deformation angle
    Kim, S. W. [2020]
  • Ratcheting based seismic performance assessment of a pressurized piping system : Experiments and analysis
  • Piping failure frequency analysis for the main feedwater system in domestic nuclear power plants
    Choi, S. Y. [2004]
  • Pipe elbows under strong cyclic loading
  • Performance-based earthquake evaluation of a full-scale petrochemical piping system
  • Performance assessment of steel components
  • Mechanistic seismic damage model for reinforced concrete
    Park, Y. J. [1985]
  • Low cycle fatigue behavior of elbows with local wall thinning
  • Influence of frequency content of ground motions on seismic fragility of equipment in nuclear power plant
    Ma, Q. [2020]
  • Failure mode and failure strengths for wall thinning straight pipes and elbows subjected to seismic loading
  • Failure criteria and cumulative damage models for steel components under low-cycle fatigue
  • Failure criteria and cumulative damage models for steel components under cyclic loading
  • Failure behavior analyses of piping system under dynamic seismic loading
    Udagawa, M. [2018]
  • Excitation tests on elbow pipe specimens to investigate failure behavior under excessive seismic loads
  • Estimation of low-cycle fatigue life of elbow pipes considering the multi-axial stress effect
  • Energy dissipation in RC beams under cyclic load
    Darwin, D. [1986]
  • Damage-limiting aseismic design of buildings
    Park, Y. J. [1987]
  • ASME Boiler and Pressure Vessel Code, Section VIII