4.7 Article

Free vibration analysis of uniform and stepped combined paraboloidal, cylindrical and spherical shells with arbitrary boundary conditions

Journal

INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES
Volume 145, Issue -, Pages 64-82

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijmecsci.2018.06.021

Keywords

Free vibration; Uniform and stepped combined paraboloidal, Cylindrical and spherical shells; Multi-segment partitioning strategy; Penalty method

Funding

  1. National Natural Science Foundation of China [51209052]
  2. Ph.D. Student Research and Innovation Fund of the Fundamental Research Funds for the Central Universities [HEUGIP201801]
  3. National keyResearch and Development program [2016YFC0303406]
  4. Fundamental Research Funds for the Central University [HEUCFD1515, HEUCFM170113]
  5. High Technology Ship Funds of Ministry of Industry and Information of P.R. China
  6. Assembly Advanced Research Fund Of China [6140210020105]
  7. China Postdoctoral Science Foundation [2014M552661]
  8. Major innovation projects Of High Technology Ship Funds of Ministry of Industry and Information of P.R.China
  9. Naval pre-research project

Ask authors/readers for more resources

A semi analytical approach is employed to analyze the free vibration characteristics of uniform and stepped combined paraboloidal, cylindrical and spherical shells subject to arbitrary boundary conditions. The analytical model is established on the base of multi-segment partitioning strategy and Flugge thin shell theory. The admissible displacement functions are handled by unified Jacobi polynomials and Fourier series. In order to obtain continuous conditions and satisfy arbitrary boundary conditions, the penalty method about the spring technique is adopted. The solutions about free vibration behavior of uniform and stepped combined paraboloidal, cylindrical and spherical shells were obtained by approach of Rayleigh-Ritz. To confirm the reliability and accuracy of proposed method, convergence study and numerical verifications for combined paraboloidal, cylindrical and spherical shell with different boundary conditions, Jacobi parameters, spring parameters and maximum degree of permissible displacement function are carried out. Through comparative analyses, it is obvious that the present method has a good stable and rapid convergence property and the results of this paper agree closely with FEM. In addition, some interesting results about the geometric dimensions are investigated.

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