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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)

References

1 
Ravi Kiran, A., Reddy, G. R., Agrawal, M. K. (2019), Seismic fragility analysis of pressurized piping systems considering ratcheting: A case study, International Journal of Pressure Vessels and Piping, 169, 26-36.DOI
2 
Xu, Z. D., Ge, T., Miao, A. (2019), Experimental and theoretical study on a novel multi-dimensional vibration isolation and mitigation device for large-scale pipeline structure, Mechanical Systems and Signal Processing, 129, 546-567.DOI
3 
Koo, G. H., Kim, J. S., Kim, Y. J. (2020), Feasibility study on strain-based seismic design criteria for nuclear components, Energies, 13(17), 13174435DOI
4 
Kim, S. W., Jeon, B. G., Hahm, D. G., Kim, M. K. (2019), Seismic fragility evaluation of the base-isolated nuclear power plant piping system using the failure criterion based on stress-strain, Nuclear Engineering and Technology, 51(2), 561-572.DOI
5 
Kwag, S. Y., Eem, S. H., Kwak, J. S., Oh, J. H. (2020), Evaluation model of seismic response behavior and performance of nuclear plant piping systems, Journal of the Korean Society for Advanced Composite Structures, 11(1), 54-62.Google Search
6 
Kim, S. W., Choi, H. S., Jeon, B. G., Hahm, D. G., Kim, M. K. (2018), Strain and deformation angle for a steel pipe elbow using image measurement system under in-plane cyclic loading, Nuclear Engineering and Technology, 50(1), 190-202.DOI
7 
Kim, S. W., Choi, H. S., Jeon, B. G., Hahm, D. G. (2019b), Low-cycle fatigue behaviors of the elbow in a nuclear power plant piping system using the moment and deformation angle, Engineering Failure Analysis, 96, 348-361.DOI
8 
Park, Y. J., Ang, A. H. S., Wen, Y. K. (1987), Damage-limiting a seismic design of buildings, Earthquake Spectra, 3, 1-26.DOI
9 
Banon, H., Veneziano, D. (1982), Seismic safety of reinforced concrete members and structures, Earthquake Engineering and Structural Dynamics, 10(2), 179-193.DOI
10 
American Society of Mechanical Engineers, (2004), ASME Boiler and Pressure Vessel Code, Section VIII, American Society Mechanical Engineers, new york(usa)Google Search
11 
Takahashi, K., Ando, K., Matsuo, K., Urabe, Y. (2014), Estimation of low-cycle fatigue life of elbow pipes considering the multi-axial stress effect, Journal of Pressure Vessel Technology, 136(4), 041405DOI
12 
Kim, S. W., Jeon, B. G., Cheung, J. H., Kim, S. D. (2019), Low-cycle Fatigue Behaviors of the Steel Pipe Tee of a Nuclear Power Plant Using Image Signals, Journal of the Korea Institute for Structural Maintenance and Inspection, 23(6), 77-83.DOI
13 
Kim, S. W., Yun, D. W., Cheung, J. H., Kim, S. D. (2020), Limit State Assessment of SCH80 3-inch Steel Pipe Elbows Using Moment-deformation angle Relationship, Journal of the Korea Institute for Structural Maintenance and Inspection, 24(3), 16-23.DOI
14 
Darwin, D., Nmai, C. K. (1986), Energy dissipation in RC beams under cyclic load, Journal of Structural Engineering, 112(8), 1829-1846.DOI
15 
Krawinkler, H. (1987), Performance assessment of steel components, Earthquake Spectra, 3(1), 27-41.DOI
16 
Gosain, N. K., Brown, R. H., Jirsa, J. O. (1977), Shear requirements for load reversals on RC members, Journal of Structural Engineering, 103(7), 1461-1476.DOI
17 
Salimi Firoozabad, E., Jeon, B.G., Choi, H. S., Kim, N. S. (2016), Failure criterion for steel pipe elbows under cyclic loading, Engineering Failure Analysis, 66(1), 515-525.DOI
18 
Castiglioni, C. A., Pucinotti, R. (2009), Failure criteria and cumulative damage models for steel components under cyclic loading, Journal of Constructional Steel Research, 65(4), 751-765.DOI
19 
Jeon, B. G., Kim, S. W., Choi, H. S., Park, D. U., Kim, N. S. (2017), A failure estimation method of steel pipe elbows under in-plane cyclic loading, Nuclear Engineering and Technology, 49(1), 245-253.DOI