The collapse of composite stiffened panels in compression is complex and involves the interactions of many different failure modes. However, when the panel is allowed to enter the post-buckling regime, skin-stringer separation due to the interaction of the post-buckling deformations with the skin-stringer interface is often the critical failure mode. The accurate prediction of skin-stringer separation in these types of panels is therefore crucial for their design. Due to the high computational costs associated with modelling damage in a large multistringer panel and the manufacturing and testing costs associated with testing such a panel, single stringer specimens that accurately represent the behaviour of critical regions in these panels h...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
Thermoplastic composite three-stringer panels with omega stiffeners and conduction welded joints are...
In this paper, a numerical study on the skin–stringer debonding growth in composite panels under com...
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...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
To design aeronautical composite multi-stringer panels that can safely operate in a postbuckled stat...
Two aeronautical thermoplastic composite stiffened panels are analysed and tested to investigate the...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
In this paper, a numerical study on the skin-stringer debonding growth in composite panels under com...
model Thin-walled stiffened structures are widely used in aerospace structures. Loaded in compressio...
According to various experimental results, stiffened panels under compressive loading are prone to d...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
Thermoplastic composite three-stringer panels with omega stiffeners and conduction welded joints are...
In this paper, a numerical study on the skin–stringer debonding growth in composite panels under com...
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...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
To design aeronautical composite multi-stringer panels that can safely operate in a postbuckled stat...
Two aeronautical thermoplastic composite stiffened panels are analysed and tested to investigate the...
Aeronautical composite stiffened structures have the capability to carry loads deep into postbucklin...
In this paper, a numerical study on the skin-stringer debonding growth in composite panels under com...
model Thin-walled stiffened structures are widely used in aerospace structures. Loaded in compressio...
According to various experimental results, stiffened panels under compressive loading are prone to d...
Omega stringers are widely used in aeronautics to increase the rigidity of composite panels. The sti...
Thermoplastic composite three-stringer panels with omega stiffeners and conduction welded joints are...
In this paper, a numerical study on the skin–stringer debonding growth in composite panels under com...