Aeronautical composite stiffened structures have the capability to carry loads deep into postbuckling, yet they are typically designed to operate below the buckling load to avoid potential issues with durability and structural integrity. Large out-of-plane postbuckling deformation of the skin can result in the opening of the skin-stringer interfaces, especially in the presence of defects, such as impact damage. To ensure that skin-stringer separation does not propagate in an unstable mode that can cause a complete collapse of the structure, a deeper understanding of the interaction between the postbuckling deformation and the development of damage is required. The present study represents a first step towards a methodology based on analysis...
Blade-stiffened skin designs have the potential to produce highly efficient composite structures pro...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
This study aims at better understanding the damage tolerance of stiffened composite panels subjected...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
A methodology is presented to investigate and improve the strength and damage tolerance of stiffened...
A methodology is presented to investigate and improve the strength and damage tolerance of stiffened...
To design aeronautical composite multi-stringer panels that can safely operate in a postbuckled stat...
The large strength reserves of stiffened composite structures in the postbuckling range appeal to th...
The postbuckling response and the collapse of composite specimens with a co-cured hat stringer are i...
The collapse of composite stiffened panels in compression is complex and involves the interactions o...
Two aeronautical thermoplastic composite stiffened panels are analysed and tested to investigate the...
An experimental and numerical investigation was performed into the damage mechanisms and failure loa...
Blade-stiffened skin designs have the potential to produce highly efficient composite structures pro...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
This study aims at better understanding the damage tolerance of stiffened composite panels subjected...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
A methodology is presented to investigate and improve the strength and damage tolerance of stiffened...
A methodology is presented to investigate and improve the strength and damage tolerance of stiffened...
To design aeronautical composite multi-stringer panels that can safely operate in a postbuckled stat...
The large strength reserves of stiffened composite structures in the postbuckling range appeal to th...
The postbuckling response and the collapse of composite specimens with a co-cured hat stringer are i...
The collapse of composite stiffened panels in compression is complex and involves the interactions o...
Two aeronautical thermoplastic composite stiffened panels are analysed and tested to investigate the...
An experimental and numerical investigation was performed into the damage mechanisms and failure loa...
Blade-stiffened skin designs have the potential to produce highly efficient composite structures pro...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
This study aims at better understanding the damage tolerance of stiffened composite panels subjected...