Robust buckling optimization of laminated composite structures using discrete material optimization considering “worst” shape imperfections

Søren Randrup Henrichsen, Esben Lindgaard, Erik Lund

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25 Citations (Scopus)

Abstract

Robust buckling optimal design of laminated composite structures is conducted in this work. Optimal designs are obtained by considering geometric imperfections in the optimization procedure. Discrete Material Optimization is applied to obtain optimal laminate designs. The optimal geometric imperfection is represented by the “worst” shape imperfection. The two optimization problems are combined through the recurrence optimization. Hereby the imperfection sensitivity of the considered structures can be studied. The recurrence optimization is demonstrated through a U-profile and a cylindrical panel example. The imperfection sensitivity of the optimized structure decreases during the recurrence optimization for both examples, hence robust buckling optimal structures are designed.
Original languageEnglish
JournalThin-Walled Structures
Volume94
Pages (from-to)624-635
ISSN0263-8231
DOIs
Publication statusPublished - 2015

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