Affiliation:
1. e-mail:
2. e-mail: Tokyo Gas Co., Ltd., Suehiro, Tsurumi, Yokohama 230-0045, Japan
Abstract
Buried pipelines may be corroded, despite the use of corrosion control measures such as protective coatings and cathodic protection, and buried pipelines may be deformed due to earthquakes. Therefore, it is necessary to ensure the integrity of such corroded pipelines against earthquakes. This study has developed a method to evaluate earthquake resistance of corroded pipelines subjected to seismic motions. Pipes were subjected to artificial local metal loss and axial cyclic loading tests to clarify their cyclic deformation behavior until buckling occurred under seismic motion. As the cyclic loading progressed, displacement shifted to the compression side due to the formation of a bulge. The pipe buckled after several cycles. To evaluate the earthquake resistance of different pipelines with varying degrees of local metal loss, a finite-element analysis method was developed that simulates cyclic deformation behavior. A combination of kinematic and isotropic hardening was used to model the material properties. The associated material parameters were obtained by small specimen tests that consisted of a monotonic tensile test and a low-cycle fatigue test under a specific strain amplitude. This method enabled the successful prediction of cyclic deformation behavior, including the number of cycles required for the buckling of pipes with varying degrees of metal loss.
Subject
Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality
Reference29 articles.
1. Failure Strength Assessment of Pipes With Local Wall Thinning Under Combined Loading Based on Finite Element Analyses;ASME J. Pressure Vessel Technol.,2004
2. Chen, Q., Khoo, H. A., Cheng, R., and Zhou, J., 2010, “Remaining Local Buckling Resistance of Corroded Pipelines,” Proceeding International Pipeline Conference, IPC2010-31512.
3. Failure Mode and Failure Strengths for Wall Thinning Straight Pipes and Elbows Subjected to Seismic Loading;ASME J. Pressure Vessel Technol.,2008
4. Ohno, A., and Tahara, T., 2008, “Earthquake Resistant Design Code and Validation of Local Metal Loss Procedure Based on the Experimental Data Collected in Japan,” Proceedings Pressure Vessels and Piping Conference, PVP2008-16845.
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