The stress intensity factors (SIFs) for pipes containing semi-elliptical surface cracks with large aspect ratios were calculated by finite-element analysis (FEA). The cracks were circumferential and axial surface cracks inside the pipes. The parameters of the SIFs are crack aspect ratio, crack depth, and the ratio of pipe radius to wall thickness. In comparing SIFs for plates and pipes, it can be clarified that SIFs for both plates and thin pipes with t/Ri ≤ 1/10 are almost the same, and the SIFs for plates can be used as a substitute for pipes with t/Ri ≤ 1/10, where t is the pipe wall thickness, and Ri is the inner radius of the pipe. This means that it is not necessary to provide SIF solutions for pipes with t/Ri ≤ 1/10, and it is suggested that the number of tables for influence coefficient values for pipes can be significantly reduced.
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April 2017
Research-Article
Development of Stress Intensity Factors for Cracks With Large Aspect Ratios in Pipes and Plates
Yinsheng Li,
Yinsheng Li
Japan Atomic Energy Agency (JAEA),
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: li.yinsheng@jaea.go.jp
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: li.yinsheng@jaea.go.jp
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Kunio Hasegawa,
Kunio Hasegawa
Center Advanced Innovation Technologies,
VSB-Technical University of Ostrava,
17 listopadu, 15,
Ostrava-Poruba 70800, Czech Republic
e-mail: kunioh@kzh.biglobe.ne.jp
VSB-Technical University of Ostrava,
17 listopadu, 15,
Ostrava-Poruba 70800, Czech Republic
e-mail: kunioh@kzh.biglobe.ne.jp
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Makoto Udagawa
Makoto Udagawa
Japan Atomic Energy Agency (JAEA),
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: udagawa.makoto@jaea.go.jp
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: udagawa.makoto@jaea.go.jp
Search for other works by this author on:
Yinsheng Li
Japan Atomic Energy Agency (JAEA),
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: li.yinsheng@jaea.go.jp
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: li.yinsheng@jaea.go.jp
Kunio Hasegawa
Center Advanced Innovation Technologies,
VSB-Technical University of Ostrava,
17 listopadu, 15,
Ostrava-Poruba 70800, Czech Republic
e-mail: kunioh@kzh.biglobe.ne.jp
VSB-Technical University of Ostrava,
17 listopadu, 15,
Ostrava-Poruba 70800, Czech Republic
e-mail: kunioh@kzh.biglobe.ne.jp
Makoto Udagawa
Japan Atomic Energy Agency (JAEA),
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: udagawa.makoto@jaea.go.jp
Shirakata,
Tokai-mura 319-1195, Japan
e-mail: udagawa.makoto@jaea.go.jp
Contributed by the Pressure Vessel and Piping Division of ASME for publication in the JOURNAL OF PRESSURE VESSEL TECHNOLOGY. Manuscript received January 7, 2016; final manuscript received July 4, 2016; published online September 27, 2016. Assoc. Editor: David L. Rudland.
J. Pressure Vessel Technol. Apr 2017, 139(2): 021202 (13 pages)
Published Online: September 27, 2016
Article history
Received:
January 7, 2016
Revised:
July 4, 2016
Citation
Li, Y., Hasegawa, K., and Udagawa, M. (September 27, 2016). "Development of Stress Intensity Factors for Cracks With Large Aspect Ratios in Pipes and Plates." ASME. J. Pressure Vessel Technol. April 2017; 139(2): 021202. https://doi.org/10.1115/1.4034286
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