Delamination is the most severe weakness affecting all composite materials with a laminar structure. Nanofibrous mat interleaving is a smart way to increase the interlaminar fracture toughness: the use of thermoplastic polymers, such as poly(ϵ-caprolactone) and polyamides (Nylons), as nonwovens is common and well established. Here, electrospun polyethylene oxide (PEO) nanofibers are proposed as reinforcing layers for hindering delamination in epoxy-based carbon fiber-reinforced polymer (CFRP) laminates. While PEO nanofibers are well known and successfully applied in medicine and healthcare, to date, their use as composite tougheners is undiscovered, resulting in the first investigation in this application field. The PEO-modified CFRP lamina...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
In the present work, thermoplastic elastomeric nanofibers made up of a homogenous blend of nitrile b...
Delamination is the main responsible for structural failure of composites having a laminar structure...
Delamination is the most severe weakness affecting all composite materials with a laminar structure....
AbstractInherent brittleness of epoxy in composite laminates restricted their application in many in...
Nanofibrous mats provide substantial delamination hindering in composite laminates, especially if th...
Graphene (G) can effectively enhance polymers’ and polymer composites’ electric, thermal, and mechan...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Rubbery electrospun nanofibers represent a smart way for hindering delamination and enhancing dampin...
Electrospun nanofibre interleaving has a great potential for toughening of composite laminates as an...
Still today, concerns regarding delamination limit the widespread use of high-performance composite ...
Epoxy is a material of choice for demanding applications thanks to its high chemical stability, stif...
Fiber reinforced polymer composites are the go-to materialfor designing applications thatrequire a h...
The interlaminar toughening of a carbon fibre reinforced composite by interleaving a thin layer (~20...
Featured Application The present findings may find application in manufactured composite material fo...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
In the present work, thermoplastic elastomeric nanofibers made up of a homogenous blend of nitrile b...
Delamination is the main responsible for structural failure of composites having a laminar structure...
Delamination is the most severe weakness affecting all composite materials with a laminar structure....
AbstractInherent brittleness of epoxy in composite laminates restricted their application in many in...
Nanofibrous mats provide substantial delamination hindering in composite laminates, especially if th...
Graphene (G) can effectively enhance polymers’ and polymer composites’ electric, thermal, and mechan...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Rubbery electrospun nanofibers represent a smart way for hindering delamination and enhancing dampin...
Electrospun nanofibre interleaving has a great potential for toughening of composite laminates as an...
Still today, concerns regarding delamination limit the widespread use of high-performance composite ...
Epoxy is a material of choice for demanding applications thanks to its high chemical stability, stif...
Fiber reinforced polymer composites are the go-to materialfor designing applications thatrequire a h...
The interlaminar toughening of a carbon fibre reinforced composite by interleaving a thin layer (~20...
Featured Application The present findings may find application in manufactured composite material fo...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
In the present work, thermoplastic elastomeric nanofibers made up of a homogenous blend of nitrile b...
Delamination is the main responsible for structural failure of composites having a laminar structure...