Buckling optimization of composite axisymmetric cylindrical shells under uncertain loading combinations
Autores
Journal of Applied Mechanics Transactions ASME , vol. 68 , no. 4 , pp. 632-639
ISSN: 00218936
Resumo
Optimal elastic buckling loads of composite axisymmetric circular cylinders under uncertain loading conditions are investigated. The mechanical loads applied to the cylinder are a combination of axial compression, lateral pressure, and torsion. Additionally, these loads are allowed to vary within a certain class of admissible loads during the optimization search, as opposed to the restriction of fixed loads in the traditional optimization. The consideration of a degree of uncertainty in the mechanical loads leads to optimal designs which are inherently insensitive to perturbations and/or randomness in the applied loads. © 2001 ASME.
2-s2.0-0037942988
