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Buckling analysis of discretely stringer-stiffened cylindrical shells
Authors:I.V. Andrianov   V.M. Verbonol  J. Awrejcewicz  
Affiliation:

aInstitut für Allgemeine Mechanik, RWTH Aachen, Templergraben 64, D-52056, Aachen, Germany

bPrydniprovskaya State Academy of Civil Engineering and Architecture, 24a Chernyshevskogo Street, Dnepropetrovsk UA-49005, Ukraine

cDepartment of Automatics and Biomechanics, Technical University of Łódź, 1/15 Stefanowskiego Street, Łódź PL-90-924, Poland

Abstract:Engineering approach for computation of stringer stiffened cylindrical shells is realized mainly using the structurally orthotropic theory with momentless pre-buckling state. On the other hand, experimental results suggest that in many cases the mentioned theory provides excessive values of buckling load. The influence of imperfections for stringer stiffened shells seems to be less important than in an isotropic case. Considering axially symmetric momentous components of pre-buckling state cannot essentially improve theoretical results. Specific experiments showed a significant influence of stringer discreteness on the buckling loads of reinforced shells. The mentioned influence can be divided into two parts: excitation of essentially non-axially symmetric pre-buckling and buckling states. Usually, only the latter phenomenon is taken into account. In this paper we show that the first factor dominates. We propose simple analytical expressions governing non-axially symmetric pre-buckling state components. We also propose an asymptotic simplification of the buckling boundary value problem. Results obtained are compared numerically with the known theoretical and experimental data.
Keywords:Stringer-stiffened cylindrical shell   Buckling   Discreteness   Pre-buckling state   Homogenisation   Singular asymptotics
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