PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2014

The single perturbation load approach applied to imperfection sensitive conical composite structures

Authors

Khakimova, Regina
Warren, Christopher J.
Zimmermann, Rolf
Castro, Saullo G.P.
Degenhardt, Richard

Thin Walled Structures , vol. 84 , pp. 369-377

ISSN: 02638231

56
Citations
6
Authors

Abstract

The importance of taking into account geometric imperfections for cylindrical and conical thin-walled structures prone to buckling had been already recognized by the first authors dealing with new formulations. Nowadays, the analysts still use empirically based lower-bound methods such as the NASA SP-8007 guideline to calculate the required knock-down factors (KDFs), which does include important mechanical properties of laminated composite materials, such as the stacking sequence. New design approaches that allow taking full advantage of composite materials are required. The single perturbation load approach (SPLA), a new deterministic approach first proposed by Hühne, will be investigated with unstiffened composite conical structures varying the geometry, lamina and layup. The SPLA's capability for predicting KDF is compared with the NASA approach. The SPLA was applied to the geometrically perfect structures and to the structure with geometric imperfections of two types, mid-surface imperfections and thickness imperfections. The study contributes to the European Union (EU) project DESICOS, whose aim is to develop less conservative design guidelines for imperfection sensitive thin-walled structures. © 2014 Elsevier Ltd. All rights reserved.

Keywords

Buckling Composite Design Imperfections Knock-down factor Truncated conical shell

Civil and Structural Engineering (ENGI) Building and Construction (ENGI) Mechanical Engineering (ENGI)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-84907320158
PII: S0263823114002183