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A constrained spline finite strip method for the mode decomposition of cold-formed steel sections using GBT principles
Published in Elsevier Ltd
2017
Volume: 113
   
Pages: 83 - 93
Abstract
In this paper, an analysis procedure has been presented for cold-formed steel sections, for decomposing the buckling modes obtained using spline finite strip method (SFSM) into their primary and independent buckling modes such as local, distortional and global buckling. This procedure utilizes principles of generalized beam theory (GBT) to evaluate the restraint matrices corresponding to different modes. The restraint matrices are integrated in to spline stiffness matrices using transformation technique to extract pure modes corresponding to local, distortional and global modes. The proposed analysis technique termed as constrained spline finite strip method (cSFSM) has been validated for cold-formed steel open cross-sections subjected to axial compression and bending under various boundary conditions. The results are in agreement with buckling stresses evaluated using constrained finite strip method (cFSM) and GBT. © 2017 Elsevier Ltd
About the journal
JournalData powered by TypesetThin-Walled Structures
PublisherData powered by TypesetElsevier Ltd
ISSN02638231
Open AccessNo
Concepts (12)
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    Buckling
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    Decomposition
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    Linear transformations
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    Stiffness matrix
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    Strip metal
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    Studs (structural members)
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    Cold-formed steel
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    DIRECT STRENGTH METHODS
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    GENERALIZED BEAM THEORIES
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    MODE DECOMPOSITION
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    SPLINE FINITE STRIP METHOD
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    Columns (structural)