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Buckling of sandwich cylindrical shell with corrugated main core and three-layer faces

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The subject of numerical research is a seven-layer cylindrical shell subjected uniformly distributed external pressure. The shell is thin-walled sandwich structure composed of main corrugated core (made of a thin metal sheet) and two three-layer faces. The cores of the faces are porous and made of isotropic metal foam. The corrugation of the main core is along longitudinal axis of the shell. The shell is simply supported at its all outer edges. Numerical FEM model of the shell is elaborated. Critical pressure for the family of these shells are calculated. Furthermore, developed a model of an equivalent single-layer shell wherein diameter, and weight are the same as the seven-layer shell. It has been shown several times higher resistance to buckling of a seven-layer shell compared to the single-layer shell.
Rocznik
Strony
18--25
Opis fizyczny
Bibliogr. 14 poz., fig., tab.
Twórcy
  • University of Zielona Góra, Faculty of Mechanical Engineering, ul. Prof. Z. Szafrana 4, 65-516 Zielona Góra, Poland
autor
  • University of Zielona Góra, Faculty of Mechanical Engineering, ul. Prof. Z. Szafrana 4, 65-516 Zielona Góra, Poland, e-mail: m.malinowski@ibem.uz.zgora.pl
autor
  • Poznan University of Technology, Institute of Applied Mechanics, ul. ul. Jana Pawła II 24, 61-139 Poznań, Poland
Bibliografia
  • [1] Libove C., Butdorf S. B.: A general small-deflection theory for flat sandwich plates. NACA TN 1526, 1948.
  • [2] Reissner E.: Finite deflections of sandwich plates. Journal of the Aeronautical Science, vol. 15, 7, 1948, pp. 435-440.
  • [3] Plantema F. J.: Sandwich Construction. Wiley&Sons, London, Sydney, 1966.
  • [4] Grigolyuk E. I., Chulkov P. P.: Stability and vibrations of three layers shells. Mashinostroene, Moskow, 1973. [in Russian]
  • [5] Magnucki K., Ostwald M.: Stability and optimization of sandwich structures. Wydawnictwo Instytutu Technologii Eksploatacji w Radomiu, Poznań, Zielona Góra, 2001. [in Polish]
  • [6] Magnucka-Blandzi E., Magnucki K.: Effective design of a sandwich beam with a metal foam core. Thin-Walled Structures, vol. 45, 2007, pp. 432-438.
  • [7] Magnucka-Blandzi E.: Mathematical modeling of a rectangular sandwich plate with a metal foam core. J. Theoretical and Applied Mechanics, vol. 49 (2), 2011, pp. 439-455.
  • [8] Belica T., Magnucka-Blandzi E.: Non-linear stability analysis of a porous-cellular cylindrical panels. Proc. of the 10th SSTA Conf., Vol.3, Shell Structures: Theory and Applications, W. Pietraszkiewicz, J. Górski (Eds.) Taylor & Francis Group, London, 2014, pp. 175-178.
  • [9] Belica T., Malinowski M., Magnucki K.: Dynamic stability of an isotropic metal foam cylindrical shell subjected to external pressure and axial compression. J. Applied Mechanics – Transactions of the ASME, vol. 78 (4), Article No. 041003, 2011.
  • [10] Belica T., Magnucki K.: Stability of a porous-cellular cylindrical shell subjected to combined loads. J. Theoretical and Applied Mechanics, vol. 51 (4), 2013, pp. 927-936.
  • [11] Xiong J., Ghosh R., Ma L., Vaziri A., Wang Y., Wu L.: Sandwich-walled cylindrical shells with lightweight metallic lattice truss cores and carbon fiber-reinforced composite face sheets. Composites: Part A, vol. 56, 2014, pp. 226-238.
  • [12] Magnucki K., Jasion P., Kruś M., Kuligowski P., Wittenbeck L.: Strength and buckling of sandwich beams with corrugated core. Journal of Theoretical and Applied Mechanics, vol. 51 (1), 2013, pp. 15-24.
  • [13] Magnucki K., Walachowski M., Magnucka-Blandzi E.: Bending and buckling of circular sandwich orthotropic plates with corrugated cores. Proc. of the 5th SEMC 2013 Conf., Cape Town, South Africa, Structural Engineering, Mechanics and Computation, A. Zingoni (Ed.), Taylor & Francis Group, London, 2013, pp. 879-883.
  • [14] Szyniszewski S. T., Smith B.H., Hajjar J. F., Schafer B. W., Arwade S. R.: The mechanical properties and modeling of a sintered hollow sphere steel foam. Materials and Design, vol. 54, 2014, pp. 1083-1094.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b7c99b81-680a-4399-8dd0-9bfd55618c0f
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