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Title of Article

FINITE-ELEMENT ANALYSIS OF ELASTOPLASTIC SPHERICAL SHELL STABILITY UNDER ALL-AROUND COMPRESSION


Issue
3
Date
2011

Article type
scientific article
UDC
539.3
Pages
158-162
Keywords
spherical shell, stability, geometric and physical nonlinearity, finite element method


Authors
Artemeva Anastasiya Anatolevna
NII mekhaniki Nizhegorodskogo gosuniversiteta im. N.I. Lobachevskogo

Baranova Mariya Sergeevna
NII mekhaniki Nizhegorodskogo gosuniversiteta im. N.I. Lobachevskogo

Kibets Aleksandr Ivanovich
NII mekhaniki Nizhegorodskogo gosuniversiteta im. N.I. Lobachevskogo

Romanov Vladimir Igorevich
RFYaTs-VNIIEF, g. Sarov Nizhegorodskoy obl

Ryabov Aleksandr Alekseevich
RFYaTs-VNIIEF, g. Sarov Nizhegorodskoy obl

Shoshin Dmitriy Igorevich
NII mekhaniki Nizhegorodskogo gosuniversiteta im. N.I. Lobachevskogo


Abstract
In the axisymmetric formulation, the buckling failure and postbuckling behavior of an elastoplastic spherical shell under uniform all-around compression are considered. The solution of the geometrically and physically nonlinear problem is based on the finite element method and the explicit finite-difference time-domain scheme. The computation results are compared with experimental data.

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