The results of an experimental and numerical study of the effects of imperfections on the buckling response of unstiffened thin-walled composite cylindrical shells are presented. Results that identify the individual and combined effects of traditional initial geometric shell-wall imperfections and non-traditional shell-wall thickness variations, shell-end geometric imperfections and variations in loads applied to the ends of the shells on the shell buckling response are included. In addition, results illustrating the effects of manufacturing flaws in the form of gaps between adjacent pieces of graphite-epoxy tape in some of the laminate plies are presented in detail. The shells have been analyzed with a nonlinear finite-element analysis cod...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76998/1/AIAA-1998-1988-596.pd
A numerical and experimental investigation into the compression response of graphite-epoxy laminated...
Composite shells are efficient structural elements that an engineer can use to achieve the highest s...
The results of an experimental and analytical study of the effects of initial imperfections on the b...
The results of an experimental and numerical study of the effects of initial imperfections on the bu...
Results from a numerical study of the response of thin-wall compression-loaded quasi-isotropic lamin...
Thin-walled shell structures prone to buckling are sensitive to imperfections. The influence of load...
An analysis-based approach .for developing shell-buckling design criteria for laminated-composite cy...
Thin-walled cylindrical shells are susceptible to buckling failures caused by the axial compressive ...
A numerical investigation was conducted into a perturbation-based analysis approach for assessing th...
Thin-walled unstiffened cylindrical composite shells are prone to buckling. The structural behavior ...
Currently, imperfection sensitive shell structures prone to buckling are designed acco...
The worst geometric imperfection is a mathematical concept which should deliver in theory a lower bo...
Advanced lightweight laminated composite shells are increasingly being used in modern aerospace stru...
Thin-walled shell structures like circular cylindrical shells are prone to buckling. Imperfections, ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76998/1/AIAA-1998-1988-596.pd
A numerical and experimental investigation into the compression response of graphite-epoxy laminated...
Composite shells are efficient structural elements that an engineer can use to achieve the highest s...
The results of an experimental and analytical study of the effects of initial imperfections on the b...
The results of an experimental and numerical study of the effects of initial imperfections on the bu...
Results from a numerical study of the response of thin-wall compression-loaded quasi-isotropic lamin...
Thin-walled shell structures prone to buckling are sensitive to imperfections. The influence of load...
An analysis-based approach .for developing shell-buckling design criteria for laminated-composite cy...
Thin-walled cylindrical shells are susceptible to buckling failures caused by the axial compressive ...
A numerical investigation was conducted into a perturbation-based analysis approach for assessing th...
Thin-walled unstiffened cylindrical composite shells are prone to buckling. The structural behavior ...
Currently, imperfection sensitive shell structures prone to buckling are designed acco...
The worst geometric imperfection is a mathematical concept which should deliver in theory a lower bo...
Advanced lightweight laminated composite shells are increasingly being used in modern aerospace stru...
Thin-walled shell structures like circular cylindrical shells are prone to buckling. Imperfections, ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76998/1/AIAA-1998-1988-596.pd
A numerical and experimental investigation into the compression response of graphite-epoxy laminated...
Composite shells are efficient structural elements that an engineer can use to achieve the highest s...