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Publication Date:
11 02 2012
ISSN:
2191-0294
DOI:
10.1515/ijnsns.2011.105

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Editor-in-Chief: Nandakumar, Krishnaswamy

null Chou, Tom / Gao, Zhanjun (Justin) / Rangarajan, Govindan / Wang, Liqiu "Rick" / Marzocchella, Antonio

8 Issues per year

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Dynamic Buckling of Cylindrical Shells under Axial Impact in Hamiltonian System

Sun, Jia-Bin 1 / 1 / Lim, Chee-Wah 2

1State Key Laboratory of Structure Analysis of Industrial Equipment and Department of Engineering Mechanics, Dalian University of Technology, Dalian, P.R. China

2Department of Building and Construction, City University of Hong Kong, Hong Kong, P.R. China

Citation Information: Int. J. Nonlinear Sci. Numer. Simul.. Volume 13, Issue 1, Pages 93–97, ISSN (Online) 2191-0294, ISSN (Print) 1565-1339, DOI: 10.1515/ijnsns.2011.105, February 2012

Publication History:

Received: 02/11/2011;
Accepted: 07/11/2011;
Published Online: 27/02/2012

Abstract

In this paper, the dynamic buckling of an elastic cylindrical shell subjected to an axial impact load is analyzed in Hamiltonian system. By employing a symplectic method, the traditional governing equations are transformed into Hamiltonian canonical equations in dual variables. In this system, the critical load and buckling mode are reduced to solving symplectic eigenvalues and eigensolutions respectively. The result shows that the critical load relates with boundary conditions, thickness of the shell and radial inertia force. And the corresponding buckling modes present some local shapes. Besides, the process of dynamic buckling is related to the stress wave, the critical load and buckling mode depend upon the impacted time. This paper gives analytically and numerically some new rules of the buckling problem, which is useful for designing shell structures.

Keywords.: Axial impact; dynamic buckling; cylindrical shell; stress wave; Hamiltonian system

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