Nanofibrous interlayer toughening strategy for laminated composite materials typically demonstrated at quasi-static loading is here evaluated under high strain rate deformation. Carbon fiber reinforced composite laminates of (0/90)(25s) stacking sequence are interlayered by polystyrene-co-glycidyl methacrylate (P(St-co-GMA)) nanofibers which are chemically tuned for interfacial compatibility when embedded in epoxy matrix. The cubical composite specimens are cut and subjected to high strain-rate deformation via Split Hopkinson pressure bar testing. Specimens are hit at their through-the-thickness (stacking) and side-to-side (in-plane) directions. The change in the dissipation of energy due to altered interlaminar microstructure is monitored ...
Today, fiber-reinforced polymer composites are a standard material in applications where a high stif...
Multi-scale toughening is a key strategy employed by biological systems, made of intrinsically britt...
In the work polymeric electrospun nanofibers are used as interleaving filler placed between adjacent...
Nanofibrous interlayer toughening strategy for laminated composite materials typically demonstrated ...
Surface reactive P(St-co-GMA) copolymer and P(St-co-GMA)/MWCNT fibrous mats are placed onto a conven...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
This paper presents an experimental investigation on epoxy resin-carbon fibers composites interleave...
The stiffness degradation of hybrid carbon/glass fibre composites are investigated under cyclic load...
Mode I interlaminar fracture toughness is investigated for a carbon-fibre composite toughened by nan...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
Delamination is the most common failure mode in laminated composite materials and it may cause catas...
The present work aims for investigate the influence of electrospun Nylon 6,6 nanofibrous mat on the ...
The main objective of the present study is to assess the loading rate effects on mode-I delamination...
Electrospun nanofibre interleaving has a great potential for toughening of composite laminates as an...
Today, fiber-reinforced polymer composites are a standard material in applications where a high stif...
Multi-scale toughening is a key strategy employed by biological systems, made of intrinsically britt...
In the work polymeric electrospun nanofibers are used as interleaving filler placed between adjacent...
Nanofibrous interlayer toughening strategy for laminated composite materials typically demonstrated ...
Surface reactive P(St-co-GMA) copolymer and P(St-co-GMA)/MWCNT fibrous mats are placed onto a conven...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
This paper presents an experimental investigation on epoxy resin-carbon fibers composites interleave...
The stiffness degradation of hybrid carbon/glass fibre composites are investigated under cyclic load...
Mode I interlaminar fracture toughness is investigated for a carbon-fibre composite toughened by nan...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
Delamination is the most common failure mode in laminated composite materials and it may cause catas...
The present work aims for investigate the influence of electrospun Nylon 6,6 nanofibrous mat on the ...
The main objective of the present study is to assess the loading rate effects on mode-I delamination...
Electrospun nanofibre interleaving has a great potential for toughening of composite laminates as an...
Today, fiber-reinforced polymer composites are a standard material in applications where a high stif...
Multi-scale toughening is a key strategy employed by biological systems, made of intrinsically britt...
In the work polymeric electrospun nanofibers are used as interleaving filler placed between adjacent...