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  5. Design, analysis and optimization of anisogrid composite lattice conical shells

Design, analysis and optimization of anisogrid composite lattice conical shells

Author(s)
Belardi, Valerio G.
Fanelli, Pierluigi  
Vivio, Francesco
Date Issued
2018
Type
article
Volume
150
Start Page
184
End Page
195
DOI
10.1016/j.compositesb.2018.05.036
Journal
COMPOSITES. PART B, ENGINEERING  
Abstract
A methodology for structural analysis and optimal design of conical anisogrid composite lattice shell structures subject to different external loads concurrently applied and multiple stiffness constraints is presented. The critical buckling load of the anisogrid lattice conical structure is exactly assessed, independently of the buckling failure mode, by means of a discrete approach. The method makes use of a full FE parametric modeling technique able to manage all the geometrical parameters of the anisogrid composite lattice structure. Additionally, the genetic algorithm NSGA-II is employed to set up an optimization procedure which allows to analyze different sets of geometrical variables, both continuous and discrete, to reach the optimal solution in terms of mass amount and fulfilling of structural and stiffness requirements, aiming at the preliminary design of an actual structure. Numerical case-studies are outlined in order to demonstrate the practical usefulness and versatility of the proposed procedure to industrial cases where the anisogrid lattice conical structure undergoes multiple external loads and various stiffness constraints must be satisfied.
Handle
http://hdl.handle.net/2067/47636
File(s)
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manuscript.pdf

Size

7.93 MB

Format

Adobe PDF

Checksum (MD5)

82c11171bcaa55d853f686c0a83f2abd

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