Reliability-based buckling optimization with an accelerated Kriging metamodel for filament-wound variable angle tow composite cylinders
Author:
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference61 articles.
1. Post-buckling analyses of variable-stiffness composite cylinders in axial compression;White;Compos Struct,2015
2. Buckling and post-buckling of filament wound composite tubes under axial compression: linear, nonlinear, damage and experimental analyses;Almeida;Compos Part B Eng,2018
3. Degenhardt R, Kling A, Klein H, Hillger W, Goetting C, Zimmermann R, Rohwer K. Experiments on buckling and postbuckling of thin-walled CFRP structures using advanced measurement systems. Int J Struct Stab Dyn 207;7(2):337–58. doi: 10.1016/j.compstruct.2009.12.014.
4. Investigations on imperfection sensitivity and deduction of improved knock-down factors for unstiffened CFRP cylindrical shells;Degenhardt;Compos Struct,2010
5. Future structural stability design for composite space and airframe structures;Degenhardt;Thin-Wall Struct,2014
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