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Plastic Buckling of Cylindrical Shells Under Transverse Loading

Chonghou ZHANG1( )Yansheng LIU2Yoshiaki Goto3
Department of Civil Engineering, Tsinghua University, Beijing 100084, China
Yangtze Delta Region Institute of Tsinghua University, Jiaxing 314050, China
Department of Civil Engineering, Nagoya Institute of Technology, Nagoya 466, Japan
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Abstract

Thick cylindrical shells under transverse loading exhibit an elephant foot buckling mode, whereas moderately thick cylindrical shells show a diamond buckling mode. There exists some intermediate geometry at which the transition between buckling modes can take place. This behavior is significantly influenced by the radius-to-thickness ratio and the material yield strength, rather than the length-to-radius ratio and the axial force. This paper presents a critical value at which the transition of buckling modes occurs as a function of the radius-to-thickness ratio and the material yield strength. The result shows that the circumferential wave number of the diamond buckling mode increases with decreasing wall thickness. The strain concentration is also intensified for the diamond buckling modes compared with the elephant foot buckling modes.

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Tsinghua Science and Technology
Pages 202-210

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Cite this article:
ZHANG C, LIU Y, Goto Y. Plastic Buckling of Cylindrical Shells Under Transverse Loading. Tsinghua Science and Technology, 2008, 13(2): 202-210. https://doi.org/10.1016/S1007-0214(08)70034-8

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Received: 23 October 2006
Revised: 25 October 2007
Published: 01 April 2008
© Tsinghua University Press 2008