Buckling Analysis of Short Cylinders of Uniform Thickness under Uniform External Pressure

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Abstract:

The failure of elastic perfect cylinders under uniform external pressure is caused by circumferential buckling. The effects of the cylinder length, of the restraining conditions at boundaries and of the length of the pressurized zone all have great influences on the critical buckling load. In the European Standard for Shells EN 1993-1-6 (2007), the critical circumferential buckling stress is obtained by introducing an external buckling factor which takes the influence of different boundary conditions into account. However, the restraint of the meridional rotation at boundaries was not considered separately for the factor. For short cylinders, any restraint of the boundaries affects the buckling mode and buckling strength greatly. In this paper, the effect of meridional end rotations on the buckling strength of short cylinders was studied. The pre-buckling membrane stress state given by membrane theory was assumed for all the analyses.

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501-504

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] R. Greiner: Cylindrical shells under uniform external pressure, in Buckling of Thin Metal Shells, eds J.G. Teng & J.M. Rotter, Spon, London (2004), pp.154-174.

DOI: 10.4324/9780203301609_chapter_5

Google Scholar

[2] S.B. Batdorf: A simplified method of elastic stability analysis for thin cylindrical shells, NACA TN No. 1341 (1947).

Google Scholar

[3] W.A. Nash: Buckling of cylindrical shells subject to hydrostatic pressure, J. Aeron. Sci., 21 (1954), 354-355.

DOI: 10.2514/8.3028

Google Scholar

[4] W. Flügge: Stresses in shells, 2nd ed. New York/Heidelberg/Berlin, Springer (1973).

Google Scholar

[5] N. Yamaki: Elastic Stability of Circular Cylindrical Shells, North Holland, Elsevier Applied Science Publishers, Amsterdam (1984).

Google Scholar

[6] R. Abdelmoula and A. Leger: Singular perturbation analysis of the buckling of circular cylindrical shells, European Journal of Mechanics A/Solids, 27 (2008), pp.706-729.

DOI: 10.1016/j.euromechsol.2007.11.010

Google Scholar

[7] EN 1993-1-6 Eurocode 3: Design of steel structures, Part 1. 6: Strength and stability of shell structures. CEN, Brussels (2007).

Google Scholar

[8] HKS: ABAQUS Version 6. 6 Standard user's guide and theoretical manual, Hibbit, Karlsson and Sorensen Inc., Pawtucket, Rhode Island, USA (2006).

Google Scholar