By J.G. Teng
A result of inherent houses of skinny shelled steel buildings, buckling is the most explanation for failure and is accordingly a subject of serious challenge and curiosity. This ebook is the assimilation of a wealth of modern learn, adventure and data at the topic. formerly scattered info is made to be had in a concise, handy and easy-to-understand shape and cutting-edge learn findings are completely tested. This booklet is appropriate to these concerned with such constructions as: airplane, missiles, submarines, silos, tanks, pipelines, chimneys and offshore structures.
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Additional resources for Buckling of thin metal shells
Takahashi, M. and Hashimoto, S. (1987). Buckling tests of steel cylindrical shells subjected to combined bending and shear. Transactions of Architectural Institute of Japan No. 371, p. 44 (in Japanese). , Kokubo, K. and Ooka, Y. (1991). Outline of the seismic buckling guideline of FBR. Proceedings of the 11th International Conference on Structural Mechanics in Reactor Technology, Vol. E, p. 239. L. K. (1990). Buckling considerations in the design of elevated steel water tanks. Thin-Walled Structures 9(1–4), 389–406.
Combescure, A. (1986). Static and dynamic buckling of large thin shells. Nuclear Engineering and Design 92, 339–354. Combescure, A. (1991). Upon the different theories of plastic buckling: elements for a choice. In Buckling of Shell Structures, on Land, in the Sea and in the Air (ed. F. Jullien). Elsevier Applied Science, London, pp. 448–457. Combescure, A. (1994). Etude de la stabilité non linéaire géométrique et nonlinéaire matériau des coques minces, Habilitation, INSA de Lyon, Lyon, 122 pp.
Partial axisymmetric imperfections and their effect on the buckling strength of axially compressed cylinders. Proceedings of the International Workshop on Imperfections in Metal Silos: Measurement, Characterisation and Strength Analysis, CA-Silo, Lyon, France, 19 April, pp. 35–48. Q. M. (1996). Imperfection measurement of cylinders using automated scanning with a laser displacement meter. Strain 32(1), 3–7. M. Q. (2000). Compression tests on cylinders with circumferential weld depressions. Journal of Engineering Mechanics, ASCE 126(4), 405–413.