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A Study on the Snap-through Behaviour of Plate Elements due to the Initial Deflection Shape  

Park, Joo-Shin (목포해양대학교 해양시스템공학부)
Lee, Kye-Hee (목포해양대학교 해양시스템공학부)
Ko, Jae-Yong (목포해양대학교 해양시스템공학부)
Publication Information
Journal of the Computational Structural Engineering Institute of Korea / v.18, no.1, 2005 , pp. 13-20 More about this Journal
Abstract
Since High Tensile Steel has been widely used to thin plate on the steel structure and marine structure, It has increased possibility of buckling. Especially, initial deflection of ship structure is mainly caused by heat processing of welding or cutting etc. This initial deflection has negative effect to thin plate, which would incur a complicated nonlinear behavior accompanied with secondary buckling. If idealized initial deflection is considered in early marine structure design of secondary buckling, accuracy and reliability will be improved considerably. The measurement data of initial deflection from experiment is applied to finite element series analysis. For FEA(ANSYS), Applied nonlinear buckling analysis is used by Newton-Raphson method & Arc-length method included in this program.
Keywords
high tensile steel; initial deflection; buckling; finite element method; secondary buckling; snap-through;
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