159
Views
5
CrossRef citations to date
0
Altmetric
Articles

Buckling and postbuckling of functionally graded porous material nearly cylindrical shells under external lateral pressure in thermal environments

& ORCID Icon
Pages 1016-1024 | Received 06 Apr 2022, Accepted 06 Jul 2022, Published online: 22 Jul 2022

References

  • Cong PH, Chien TM, Khoa ND, Duc ND. 2018. Nonlinear thermomechanical buckling and post-buckling response of porous FGM plates using Reddy’s HSDT. Aerosp Sci Technol. 77:419–428.
  • Cooper PA. 1972. Buckling of nearly cylindrical shells under lateral pressure. AIAA J. 10(2):232–234.
  • Hieu PT, Tung HV. 2019. Thermomechanical nonlinear buckling of pressure-loaded carbon nanotube reinforced composite toroidal shell segment surrounded by an elastic medium with tangentially restrained edges. Proc Inst Mech Eng E J Mechanical Engineering Science. 233(9):3193–3207.
  • Hieu PT, Tung HV. 2020a. Thermal and thermomechanical buckling of shear deformable FG-CNTRC cylindrical shells and toroidal shell segments with tangentially restrained edges. Arch Appl Mech. 90(7):1529–1546.
  • Hieu PT, Tung HV. 2020b. Buckling of shear deformable FG-CNTRC cylindrical shells and toroidal shell segments under mechanical loads in thermal environments. ZAMM. 100(11):e201900243.
  • Hieu PT, Tung HV. 2021. Nonlinear buckling behavior of functionally graded material sandwich cylindrical shells with tangentially restrained edges subjected to external pressure and thermal loadings. J Sandwich Struct Mater. 26(6):2000–2027.
  • Huang H, Han Q. 2010. Research on nonlinear postbuckling of functionally graded cylindrical shells under radial loads. Compos Struct. 92:1352–1357.
  • Huang H, Han Q, Feng N, Fan X. 2011. Buckling of functionally graded cylindrical shells under combined loads. Mech Advanced Mater Struct. 18:337–346.
  • Kim J, Zur KK, Reddy JN. 2019. Bending, free vibration, and buckling of modified couples stress-based functionally graded porous micro-plates. Compos Struct. 209:879–888.
  • Li H, Liu D, Li P, Zhao J, Han Q, Wang Q. 2021c. A unified vibration modeling and dynamic analysis of FRP-FGPGP cylindrical shells under arbitrary boundary conditions. Appl Math Model. 97:69–80.
  • Li H, Lv H, Gu J, Xiong J, Han Q, Liu J, Qin Z. 2021a. Nonlinear vibration characteristics of fibre reinforced composite cylindrical shells in thermal environments. Mech Syst Signal Process. 156:107665.
  • Li H, Lv H, Sun H, Qin Z, Xiong J, Han Q, Liu J, Wang X. 2021b. Nonlinear vibrations of fiber-reinforced composite cylindrical shells with bolt loosening boundary conditions. J Sound Vib. 496(31):115935.
  • Li H, Lv H, Zhang T, Han Q, Liu J, Xiong J, Guan Z. 2022. Modeling and evaluation of dynamic degradation behaviors of carbon fibre-reinforced epoxy composite shells. Appl Math Model. 104:21–33.
  • Li H, Wang Z, Lv H, Zhou Z, Han Q, Liu J, Qin Z. 2020. Nonlinear vibration analysis of fiber reinforced composite cylindrical shells with partial constrained layer damping treatment. Thin-Walled Struct. 157:107000.
  • Long VT, Tung HV. 2021a. Thermal nonlinear buckling of shear deformable functionally graded cylindrical shells with porosities. AIAA J. 59(6):2233–2241.
  • Long VT, Tung HV. 2021b. Thermomechanical nonlinear buckling of pressurized shear deformable FGM cylindrical shells including porosities and elastically restrained edges. J Aerospace Eng. 34(3):04021011.
  • Long VT, Tung HV. 2021c. Mechanical buckling analysis of thick FGM toroidal shell segments with porosities using Reddy’s higher order shear deformation theory. Mech Advanced Mater Struct. 1–10. In Press. https://doi.org/10.1080/15376494.2021.1969606
  • Long VT, Tung HV. 2022. Buckling behavior of thick porous functionally graded material toroidal shell segments under external pressure and elevated temperature including tangential edge restraint. J Press Vessel Technol. 144(5):051310.
  • Shen HS. 2003. Postbuckling analysis of pressure-loaded functionally graded cylindrical shells in thermal environments. Eng Struct. 25:487–497.
  • Shen HS, Noda N. 2007. Postbuckling of pressure-loaded FGM hybrid cylindrical shells in thermal environment. Compos Struct. 77:546–560.
  • Thai HT, Vo TP. 2012. Bending and free vibration of functionally graded beams using various higher-order shear deformation beam theories. Int J Mech Sci. 62(1):57–66.
  • Thai HT, Vo TP. 2013. A new sinusoidal shear deformation theory for bending, buckling, and vibration of functionally graded plates. Appl Math Model. 37(5):3269–3281.
  • Tossapanon P, Wattanasakulpong N. 2020. Flexural vibration analysis of functionally graded sandwich plates resting on elastic foundation with arbitrary boundary conditions: Chebyshev collocation technique. J Sandwich Struct Mater. 22(2):156–189.
  • Tung HV. 2014. Postbuckling of functionally graded cylindrical shells with tangential edge restraints and temperature-dependent properties. Acta Mech. 225:1795–1808.
  • Tung HV, Hieu PT. 2018. Nonlinear buckling of CNT-reinforced composite toroidal shell segment surrounded by an elastic medium and subjected to uniform external pressure. Vietnam J mech. VAST. 40(3):285–301.
  • Tung HV, Trang LTN. 2021. Nonlinear stability of advanced sandwich cylindrical shells comprising porous functionally graded material and carbon nanotube reinforced composite layers under elevated temperature. Appl Math Mech (English ed). 42(9):1327–1348.
  • Wattanasakulpong N, Bui TQ. 2018. Vibration analysis of third order shear deformable FGM beams with elastic support by Chebyshev collocation method. Int J Struct Stab Dy. 18(5):1850071.
  • Wattanasakulpong N, Ungbhakorn V. 2014. Linear and nonlinear vibration analysis of elastically restrained ends FGM beams with porosities. Aerosp Sci Technol. 32:111–120.

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.