Bending of Composite Cylindrical Shells with Circular Cutouts

Experimental Validation

Journal Article (2019)
Author(s)

Edgars Labans (TU Delft - Aerospace Engineering)

Chiara Bisagni (TU Delft - Aerospace Engineering)

Mansur Celebi (University of South Carolina)

Brian Tatting (University of South Carolina)

Zafer Gürdal (University of South Carolina)

Agnes Blom-Schieber (Boeing)

M Rassaian (Boeing)

Steven Wanthal (Boeing)

Research Group
Aerospace Structures & Computational Mechanics
DOI related publication
https://doi.org/10.2514/1.C035247 Final published version
More Info
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Publication Year
2019
Language
English
Research Group
Aerospace Structures & Computational Mechanics
Issue number
4
Volume number
56
Pages (from-to)
1534-1550
Downloads counter
196

Abstract

An experimental study of unstiffened graphite-epoxy cylindrical shells with cutouts subjected to bending load is presented. Two cylinders were tested: a classical laminated cylinder with constant-stiffness and a fiber-steered cylinder with variable stiffness in circumferential direction. Both cylinders were tested until collapse in displacement control. Displacements and strains were measured by displacement sensors, strain gauges, and two digital image correlation systems. Analysis of the test data indicates that the highest stressed area was the edges of the cutouts where local displacements created large compression strains. The experimental data were compared with progressive damage analysis results obtained with a finite element analysis that included measured geometrical imperfections. The research contributes to the knowledge of variable-stiffness composite structures and their applications in aircraft fuselages.