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The effects of non-linear fluid-structure interaction on the dynamic buckling of structures are investigated.
By introducing the Hamiltonian system into dynamic buckling of structures, the problem can be described mathematically in a symplectic space.
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Budiansky, B., Hutchinson, J.W., " Dynamic Buckling of Imperfection-Sensitive Structures". Proceedings of the Eleventh International Congress of Applied Mechanics, Munich, Germany, edited by H. Gortler, Springer-Verlag,, 637-651 (1964).
Therefore it is essential to establish a reliable procedure to test and evaluate the dynamic buckling behaviors of structures, especially when the structure is designed to be utilized in compressive dynamic loading environment, such as supercavitating underwater vehicle.
Lee, C. & King, S. D. Dynamic buckling of subducting slabs reconciles geological and geophysical observations.
Ferri, E., Antinucci, E., He, M.Y., Hutchinson, J.W., Zok, F.W., Evans, A.G.," Dynamic buckling of impulsively loaded prismatic cores". J. Mech.
The dynamic buckling of cylindrical stringer stiffened shells was investigated both numerically and experimentally.
The effect of static preloading on the dynamic buckling of an arch is also investigated.
Dynamic buckling of piezolaminated plates under thermo-electro-mechanical loads has not been investigated so far.
The nonlinear dynamic buckling of cylindrical panel acted on by axial loading is considered.
The present study deals with the "dynamic buckling" of a laminated composite stringer stiffened curved panel.
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