Today, fiber-reinforced polymer composites are a standard material in applications where a high stiffness and strength are required at minimal weight, such as aerospace structures, ultralight vehicles, or even flywheels for highly efficient power storage systems. Although fiber-reinforced polymer composites show many advantages compared to other materials, delamination between reinforcing plies remains a major problem limiting further breakthrough. Traditional solutions that have been proposed to toughen the interlaminar region between reinforcing plies have already reached their limit or have important disadvantages such as a high cost or the need for adapted production processes. Recently, electrospun nanofibers have been suggested as a m...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
none7siThe present work aims at investigating the influence of electrospun Nylon 6,6 nanofibrous mat...
Delamination is the most frequent failure mode in thermoset-based composite laminates which can be e...
Today, fiber-reinforced polymer composites are a standard material in applications where a high stif...
Fiber reinforced polymer composite laminates have become a standard material in applications were a ...
Fiber reinforced polymer composites are the go-to materialfor designing applications thatrequire a h...
Fiber reinforced polymer composites are the material of choice for designing applications which requ...
Delamination between reinforcing plies is one of the most important failure mechanisms encountered i...
Electrospun (polymeric) nanofibers are proved to be one of the most successful toughening techniques...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
Today, fiber reinforced polymer composites are a standard material in applications where a high stif...
The present work aims for investigate the influence of electrospun Nylon 6,6 nanofibrous mat on the ...
In this study, the effects of interleaved nanofibre veils on the Mode I and Mode II interlaminar fra...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
none7siThe present work aims at investigating the influence of electrospun Nylon 6,6 nanofibrous mat...
Delamination is the most frequent failure mode in thermoset-based composite laminates which can be e...
Today, fiber-reinforced polymer composites are a standard material in applications where a high stif...
Fiber reinforced polymer composite laminates have become a standard material in applications were a ...
Fiber reinforced polymer composites are the go-to materialfor designing applications thatrequire a h...
Fiber reinforced polymer composites are the material of choice for designing applications which requ...
Delamination between reinforcing plies is one of the most important failure mechanisms encountered i...
Electrospun (polymeric) nanofibers are proved to be one of the most successful toughening techniques...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
Today, fiber reinforced polymer composites are a standard material in applications where a high stif...
The present work aims for investigate the influence of electrospun Nylon 6,6 nanofibrous mat on the ...
In this study, the effects of interleaved nanofibre veils on the Mode I and Mode II interlaminar fra...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
none7siThe present work aims at investigating the influence of electrospun Nylon 6,6 nanofibrous mat...
Delamination is the most frequent failure mode in thermoset-based composite laminates which can be e...