Flutter of a Laminated Cantilever Cylindrical Shell with a Ring-Stiffened Edge


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The aeroelastic stability of a medium length cantilever cylindrical shell stiffened by an edge ring with the outer surface exposed to supersonic gas flow is investigated. The shell motion is described by the equations of the semi-membrane theory for laminated shells and considered with various end conditions. The dependences of the critical flutter speed on the dimensions of the ring cross-section, the value of the structural damping coefficient, the flow parameters, and the type of boundary conditions are obtained.

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V. Bakulin

Institute of Applied Mechanics

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Email: vbak@yandex.ru
俄罗斯联邦, pr. Leningradskii 7, Moscow, 125040

M. Konopel’chev

AO Corporation Moscow Institute of Heat Technology

Email: vbak@yandex.ru
俄罗斯联邦, alleya Berezovaya 10, Moscow, 127273

A. Nedbai

AO Corporation Moscow Institute of Heat Technology

Email: vbak@yandex.ru
俄罗斯联邦, alleya Berezovaya 10, Moscow, 127273

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