An experimental investigation is presented into the explosive blast response of fibre-reinforced polymer laminates used in naval ship structures. Blast tests using plastic explosive charges were performed in air on square target plates made of carbon-polyester, glass-polyester, carbon-vinyl ester or glass-vinyl ester laminates, which are composite materials used in naval ships. The laminates were dynamically loaded by shock waves of increasing pressure and impulse, and the deformation, damage and residual mechanical properties were determined. The amount of blast-induced damage and the post-blast mechanical properties depend on both the fibre reinforcement and polymer matrix. E-glass laminates have higher resistance to blast-induced delamin...
The use of composite sandwich structures across multiple disciplines, including the naval sector, is...
The response of E-Glass/Vinyl ester curved composite panels subjected to underwater explosive loadin...
Naval vessels may undergo high strain rate loading, including impact, wave slamming and blast loadin...
An experimental investigation is presented into the explosive blast response of fibre-reinforced pol...
An experimental investigation in to the dynamic response and blast resistance of composite materials...
In recent times, E-Glass and Carbon fiber based composites have found extensive use in naval structu...
Large surface ships have traditionally used steel for their construction, which provides good blast ...
Fibre-based polymer composites are used in applications were there is the risk of an explosive blast...
The resistance of glass and carbon fibre reinforced polymer (GFRP and CFRP) sandwich panels and lam...
The blast resistance of a carbon fiber-reinforced epoxy (CFRE) resin has been investigated through e...
The blast resistance of a carbon fiber-reinforced epoxy (CFRE) resin has been investigated through e...
The influence of the fibre-polymer matrix interfacial bond strength on the explosive blast response ...
The resistance of glass-fibre reinforced polymer (GFRP) sandwich panels and laminate tubes to blast ...
Explosions are an ever-present risk to laminates used in naval ships, submarines and offshore oil/ga...
This research project has investigated the performance of composite sandwich panels with hybrid skin...
The use of composite sandwich structures across multiple disciplines, including the naval sector, is...
The response of E-Glass/Vinyl ester curved composite panels subjected to underwater explosive loadin...
Naval vessels may undergo high strain rate loading, including impact, wave slamming and blast loadin...
An experimental investigation is presented into the explosive blast response of fibre-reinforced pol...
An experimental investigation in to the dynamic response and blast resistance of composite materials...
In recent times, E-Glass and Carbon fiber based composites have found extensive use in naval structu...
Large surface ships have traditionally used steel for their construction, which provides good blast ...
Fibre-based polymer composites are used in applications were there is the risk of an explosive blast...
The resistance of glass and carbon fibre reinforced polymer (GFRP and CFRP) sandwich panels and lam...
The blast resistance of a carbon fiber-reinforced epoxy (CFRE) resin has been investigated through e...
The blast resistance of a carbon fiber-reinforced epoxy (CFRE) resin has been investigated through e...
The influence of the fibre-polymer matrix interfacial bond strength on the explosive blast response ...
The resistance of glass-fibre reinforced polymer (GFRP) sandwich panels and laminate tubes to blast ...
Explosions are an ever-present risk to laminates used in naval ships, submarines and offshore oil/ga...
This research project has investigated the performance of composite sandwich panels with hybrid skin...
The use of composite sandwich structures across multiple disciplines, including the naval sector, is...
The response of E-Glass/Vinyl ester curved composite panels subjected to underwater explosive loadin...
Naval vessels may undergo high strain rate loading, including impact, wave slamming and blast loadin...