none7The benefits of interleaving polymeric electrospun nanofibers in between laminae of composite structure have been widely demonstrated in the past several years. Among the work that still has to be done, this paper aims to study delamination propagation of virgin and nanomodified specimens under Mode I fatigue loading. A 40-micron thick layer of Nylon 6,6 nanofibers have been produced and interleaved in carbon fiber-epoxy resin composite laminates; static and dynamic double cantilever tests have been performed to determine delamination growth onset and crack propagation rate vs. maximum energy release rate respectively. Nanomodified specimens exhibited improved delamination resistance during both the tests: delamination toughness increa...
Adding toughening particles to composite laminates is a common approach to increase their delaminati...
The use of high strength-to-weight ratio-laminated fiber-reinforced composites is emerging in engine...
Nylon 6,6 electrospun nanofibrous membranes interleaved in Carbon Fibre Reinforced Plastic (CFRP) la...
The benefits of interleaving polymeric electrospun nanofibers in between laminae of composite struct...
Delamination is the most common failure mode in laminated composite materials and it may cause catas...
Delamination is the most frequent failure mode in laminated composite materials and it may cause cat...
AbstractDelamination is the most frequent failure mode in laminated composite materials and it may c...
This paper presents an experimental investigation on epoxy resin-carbon fibers composites interleave...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
This paper presents an experimental investigation on epoxy resin-carbon bers composites interleaved ...
Nylon 6,6 electrospun nanofibrous membranes interleaved in \u201chigh performance\u201d Carbon Fiber...
Nylon 6,6 electrospun nanofibrous membranes interleaved in “high performance” Carbon Fiber Reinforce...
Adding toughening particles to composite laminates is a common approach to increase their delaminati...
The use of high strength-to-weight ratio-laminated fiber-reinforced composites is emerging in engine...
Nylon 6,6 electrospun nanofibrous membranes interleaved in Carbon Fibre Reinforced Plastic (CFRP) la...
The benefits of interleaving polymeric electrospun nanofibers in between laminae of composite struct...
Delamination is the most common failure mode in laminated composite materials and it may cause catas...
Delamination is the most frequent failure mode in laminated composite materials and it may cause cat...
AbstractDelamination is the most frequent failure mode in laminated composite materials and it may c...
This paper presents an experimental investigation on epoxy resin-carbon fibers composites interleave...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
This paper presents an experimental investigation on epoxy resin-carbon bers composites interleaved ...
Nylon 6,6 electrospun nanofibrous membranes interleaved in \u201chigh performance\u201d Carbon Fiber...
Nylon 6,6 electrospun nanofibrous membranes interleaved in “high performance” Carbon Fiber Reinforce...
Adding toughening particles to composite laminates is a common approach to increase their delaminati...
The use of high strength-to-weight ratio-laminated fiber-reinforced composites is emerging in engine...
Nylon 6,6 electrospun nanofibrous membranes interleaved in Carbon Fibre Reinforced Plastic (CFRP) la...