The present study evaluates the toughening capability of electrospun PA66 nanofibers for carbon/epoxy composite laminates subjected to mode II loading conditions at elevated temperatures. The Dynamic Mechanical Analysis (DMA) test showed that the glass transition temperature of the produced nanofibers is in a range of ∼60–80 °C. Accordingly, End-Notched Flexure (ENF) carbon/epoxy specimens interleaved by a 50 μm-layer of electrospun PA66 nanofibers were subjected to the quasi-static mode II loading at room temperature (∼25 °C), 100 °C, 125 °C, and 160 °C. At room temperature, the mode II interlaminar fracture toughness (GIIC) of the nano-modified specimen was ∼4 times higher than the virgin specimen (non-modified) (3.12 kJ/m2 vs 0.81 kJ/m2)...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Nylon 6,6 electrospun nanofibrous membranes interleaved in \u201chigh performance\u201d Carbon Fiber...
The present study evaluates the toughening capability of electrospun PA66 nanofibers for carbon/epox...
In this study, carbon fiber–epoxy composites are interleaved with electrospun polyamide-6,6 (PA 66) ...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
Delamination is the most frequent failure mode in thermoset-based composite laminates which can be e...
Epoxy is one of the most commonly used resins in the composite industry, but its inherent brittlenes...
Polyetherketone cardo (PEK-C) nanofibres were produced by an electrospinning technique and directly ...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
As a highly promising lightweight material, carbon fiber reinforced plastics (CFRP) composites have ...
Fiber reinforced polymer composite laminates have become a standard material in applications were a ...
International audienceCould thermoplastic-based composites be used to replace thermosetting-based co...
In this study, the effects of interleaved nanofibre veils on the Mode I and Mode II interlaminar fra...
Interleaving composite laminates with nanofibrous mat is one of the most reliable methods for increa...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Nylon 6,6 electrospun nanofibrous membranes interleaved in \u201chigh performance\u201d Carbon Fiber...
The present study evaluates the toughening capability of electrospun PA66 nanofibers for carbon/epox...
In this study, carbon fiber–epoxy composites are interleaved with electrospun polyamide-6,6 (PA 66) ...
This paper presents an investigation on fracture behavior of carbon/epoxy composite laminates interl...
Delamination is the most frequent failure mode in thermoset-based composite laminates which can be e...
Epoxy is one of the most commonly used resins in the composite industry, but its inherent brittlenes...
Polyetherketone cardo (PEK-C) nanofibres were produced by an electrospinning technique and directly ...
Among various failure modes in composite laminate materials, the delamination is one of the most com...
As a highly promising lightweight material, carbon fiber reinforced plastics (CFRP) composites have ...
Fiber reinforced polymer composite laminates have become a standard material in applications were a ...
International audienceCould thermoplastic-based composites be used to replace thermosetting-based co...
In this study, the effects of interleaved nanofibre veils on the Mode I and Mode II interlaminar fra...
Interleaving composite laminates with nanofibrous mat is one of the most reliable methods for increa...
An experimental and theoretical study is performed to explore the novel delamination suppression con...
The present article overcomes existing challenges in inter-laminar toughening of novel multifunction...
Nylon 6,6 electrospun nanofibrous membranes interleaved in \u201chigh performance\u201d Carbon Fiber...