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Articles

Robustness optimisation of opening casing wall-strengthened cylindrical pressure hulls based on 6σ

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Pages 1002-1015 | Received 30 Mar 2022, Accepted 05 Jul 2022, Published online: 18 Jul 2022

References

  • ABAQUS, Inc. 2003. ABAQUS Theory Manual: 2-89.
  • Cheng YX, Pang YJ, Yang ZY, Feng L. 2014. 6σ design of pressurized cylindrical shells based on RBF. J Shang Hai Jiao Tong Univ. 48(4):493–498.
  • Deb K, Pratap A, Agrawal S, Meyarivan T. 2002. A fast and elitist multi-objective genetic algorithm: NSGA-II. IEEE Trans Evol Comput. 6(2):182–197.
  • Faulkner D. 1991. Application of Reliability Theory in Submarine Design. International Conference on advances in Marine Structures. ARE Dunfermline:566-585.
  • Han YZ. 2019. Research on stability and reliability of cylindrical shell structure. Jiangsu Univ of science and technology.
  • Kwok L. 2007. An overview of taguchi method and newly developed statistical method for robust design. AIIE Trans. 24(5):44–57.
  • Li B, Pang YJ, Zhu XM, Cheng YX. 2019. 6 σ optimal design of the ring stiffened composite pressure shell of the underwater vehicle. Acta Armamentarii. 39(6):1171–1177.
  • Liu F, Han DF, Yao J. 2016. Robust optimization of a pressure spherical shell with a strengthened opening. J Harbin Eng Univ. 37(12):1613–1618, 1637.
  • Ma QL. 2018. Study on the ultimate strength of the pressure shell of the large depth submersible. Jiangsu University of Science and Technology.
  • Motta RD, Afonso SM. 2016. An efficient procedure for structural reliability-based robust design optimization. Struct Multidiscipl Optim. 54(3):511–530.
  • Qing QX, Qing X, Xiao JR, Liao HD. 2017. Robust optimization design of the Mars airbag lander. China Mech Eng. 28(1):20–26.
  • Shi DX, Wang XT. 2007. Submarine strength. Harbin: Harbin Engineering University Press.
  • Sun SP, Liang LY, Zhang T. 2017. Study on the ultimate strength of the pressure shell of the large depth submersible. China Water Transp. 11(7):78–80.
  • Tong DH, Hao ZY. 2015. The decoupling and robust design of mounting system based on six sigma method. Automot Eng. 37(2):194–199.
  • Wang FC, Pan Y, Song YZ, Sun ZG. 2014. Study on robust design and optimization technology of civil aircraft manufacturing process based on six-sigma. Ind Eng Manag. 19(3):127–134.
  • Wang SP, Liu CC, Wang YH, Lei G, Zhu JG. 2019. 6σ robust multidisciplinary design optimization method for permanent magent motors with soft magnetic composite cores. Trans China Electrotech Soc. 34(4):637–645.
  • Zhang H. 2018. Comparative analysis of the forms of opening and strengthening of pressure spherical shell structure of submersible. Shipbuild Sci Tech. 21(3):19–22.
  • Zhang HY, Lv XJ, Zhou DY, Gao JW, Gu XG. 2020. Optimization design of vehicle structural crashworthiness with consideration of robustness. Automot Eng. 42(2):220–225,277.
  • Zhang W, Mao XL, Cui WC. 2001. Sensitivity analysis of shell buckling of marine structure cylinder shelll. J Ship Mech. 5(4):47–54.
  • Zhen CB, Ying Y, Wang TL, Yu PY. 2019. Robust optimization of round dish-shaped underwater glider’s pressure structure based on combinatorial optimization method. J Huazhong Univ Sci Tech (Natural Science Edition). 47(2):87–91.
  • Zhou CT. 1973. Elastoplastic instability of ring stiffened cylindrical shells under uniform hydrostatic pressure. J Dalian Inst Technol. 1:95–125.

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