218
Views
3
CrossRef citations to date
0
Altmetric
Articles

Buckling of spherical shells with pitting corrosion under external pressure

, , , &
Pages 2470-2479 | Received 20 Jul 2021, Accepted 25 Oct 2021, Published online: 22 Dec 2021

References

  • Ahn J-H, Choi W-R. 2016. Residual compressive strength of inclined steel tubular members with local corrosion. Appl Ocean Res. 59:498–509.
  • Ahn J-H, Jeon S-H. 2018. Evaluation of residual compressive strength and behavior of corrosion-damaged carbon steel tubular members. J Technol Sci. 11(7):1–20.
  • Bhandari J. 2015. Modelling of pitting corrosion in marine and offshore steel structures – a technical review. J Loss Prev Process Ind. 37:39–62.
  • Blachut J. 2010. Buckling of axially compressed cylinders with imperfect length. Comput Struct. 88:365–374.
  • Blachut J. 2018. Load bearing of corroded shells under external/internal pressure. J Structur Integrity Maint. 3(4):217–226.
  • Charis A-A, Sotiris D, Vagelis G-P. 2013. Chloride-induced corrosion of steel reinforcement–mechanical performance and pit depth analysis. Constr Build Mater. 38:139–146.
  • China Classification Society. 2013. Rules for the classification and construction of diving systems and submersibles.
  • Eldeen S-S, Garbatov Y, Guedes S-C. 2013. Ultimate strength assessment of corroded box girders. Ocean Eng. 58:35–47.
  • EN 1993-1-6. 2007. Strength and stability of shell structures. EN 1993-1-6. EN Special publication.
  • Fan Z. 2017. Effect of axial length parameters of ovality on the collapse pressure of offshore pipelines. Thin-Walled Struct. 116:19–25.
  • GB/T 228.1-2010. 2010. Metallic materials - tensile testing - part 1: method of test at room temperature. People’s Republic of China: Chinese Standard Institute, China. Chinese.
  • Hibbit K. Sorensen. ABAQUS, 2014. Analysis User Guide Version 6.14, USA.
  • Horner D-A. 2011. Novel images of the evolution of stress corrosion cracks from corrosion pits. Corros Sci. 53(11):3466–3485.
  • Luo S, Wang W. 2019. Status and prospects on the pressure shell structure of submersible. Ship Sci Technol. 41(19):7–16.
  • Schmidt H, Swadlo P. 1996. Shells of revolution with Arbitrary meridional shapes-Buckling design by use of computer analysis. ECSC contract No.7210-SA/208.
  • Sheng J, Xia J. 2017. Effect of simulated pitting corrosion on the tensile properties of steel. Constr Build Mater. 131:90–100.
  • Tatsuro N, Hisao M, Norio Y. 2007. Effect of pitting corrosion on ultimate strength of Web plates subjected to shear loading. Key Eng Mater. 63:489–494.
  • Valor A, Caleyo F, Alfonso L. 2013. Markov chain models for the stochastic modeling of pitting corrosion. Math Probl Eng. 2013:108386. https://doi.org/10.1155/2013/108386.
  • Wang H, Yu Y, Yu J, Duan J, Zhang Y. 2018a. Effect of 3D random pitting defects on the collapse pressure of pipe — Part I: experiment. Thin-Walled Struct. 129:512–526.
  • Wang H, Yu Y, Yu J, Wang Z, Li H. 2019. Development of erosion equation and numerical simulation methods with the consideration of applied stress. Tribol Int. 137:387–404.
  • Wang R, Fang Y, Dou P, Lin Z. 2015. Investigation on ultimate strength of pile-foundation platform legs with pitting corrosion subjected to axial compression. Ocean Eng. 33(3):29–35.
  • Wang R, Tong Z, Guo H, Sun J. 2018b. Study on impact of randomly distributed pitting on ultimate strength of steel tubular sections. Ocean Eng. 36(06):101–108.
  • Xu Q, Wan Z-Q. 2010. Finite element method of pitting corrosive shell. J Ship Mech. 14(Z1):84–93.
  • Yulia GP. 2013. Analytical solution for the general mechanochemical corrosion of an ideal elastic–plastic thick-walled tube under pressure. Int J Solids Struct. 50:3626–3633.
  • Yulia GP. 2015a. Comment on “New understanding of the effect of hydrostatic pressure on the corrosion of Ni–Cr–Mo–V high strength steel”. Corros Sci. 100:672–673.
  • Yulia GP. 2015b. Analytical solution for decelerated mechanochemical corrosion of pressurized elastic–perfectly plastic thick-walled spheres. Corros Sci. 90:161–167.
  • Yulia GP, Sedova O, Grekov M, Sergeeva T. 2018. On corrosion of a thin-walled spherical vessel under pressure. Int J Eng Sci. 130:115–128.
  • Zhang J. 2014. Overviews of investigation on submersible pressure hulls. Adv Nat Sci. 7(4):54–61.
  • Zhang J, Zhang M, Cui W, Tang W-X, Wang F. 2018. Elastic-plastic buckling of deep sea spherical pressure hulls. Marine Structures. 57:38–51.
  • Zhao Z, Liu H, Liang B. 2019a. Compressive capacity of corroded welded hollow spherical joints. J PerformConstr Facili. 33(1):1–12.
  • Zhao Z, Liu H, Liang B. 2019b. Probability distribution of the compression capacity of welded hollow spherical joints with randomly located corrosion. Thin-Walled Struct. 137:167–176.
  • Zhao Z, Zhang H, Xian L, Liu H. 2020b. Tensile strength of Q345 steel with random pitting corrosion based on numerical analysis. Thin-Walled Struct. 148:106579. https://doi.org/10.1016/j.tws.2019.106579.
  • Zhao Z, Zhang M, Wu G. 2020a. Influence of compression force on the probability distribution of moment capacity for WHSJs with randomly located corrosion. J Build Eng. 32:2352–7102.
  • Zhu Y-M, Chen B-B, Zhao B, Zhao X-L, Tang W-X. 2020b. Buckling characteristics of externally pressurised toroidal shell. Ships Offsh Struct. 15(8):804–814.
  • Zhu Y-M, Zhao B, Chen B-B, Zhao X-L. 2020a. Buckling of externally pressurized toroidal shell with stiffened ribs. J Pressure Vessel Technol. 142(6):061301-0613013.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.