Low-velocity impact and compression after impact (CAI) tests were performed to investigate the impact behavior of hybrid composite laminates reinforced by basalt-nylon intraply fabrics. The purpose of using this hybrid composite is to combine the good mechanical property of basalt fiber as a brittle fiber with the excellent impact resistance of nylon fiber as a ductile fiber. Five different types of woven fabric with different contents of nylon (0%, 25%, 33.3%, 50% and 100%) were used as reinforcement. The effect of nylon/basalt fiber content on impact parameters, impact damage behavior and CAI strength was studied at different nominal impact energy levels (16, 30 and 40 J). The results indicate that at low impact energy, hybridization and ...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
In an attempt to increase the low-velocity impact response of natural fiber composites, a new hybrid...
Low-velocity impact and compression after impact (CAI) tests were performed to investigate the impac...
Low-velocity impact tests were performed to investigate the impact behaviour of hybrid composite lam...
The low velocity impact behavior of E-glass/basalt reinforced hybrid laminates, manufactured by resi...
In this study, the tensile and compressive behaviors of pure and hybrid composite laminates reinforc...
In this study, the tensile and compressive behaviors of pure and hybrid composite laminates reinforc...
The low-velocity impact behaviour of hybrid laminates reinforced with woven aramid and basalt fabric...
In this paper, the residual impact strength of inter-ply, intra-ply, and functionally gradient compo...
Hybridization of inherently brittle carbon fibers with basalt fibers in the fiber reinforced plastic...
© 2019 Elsevier Ltd This work investigates the effects of carbon/glass/basalt hybridization and fabr...
This study addresses the effects of basalt fibre hybridization on quasi-static mechanical properties...
A major limitation to the spreading of natural fibre reinforced composites in semi-structural compon...
Composites are emerging as realistic alternatives to the metal alloys in many applications like auto...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
In an attempt to increase the low-velocity impact response of natural fiber composites, a new hybrid...
Low-velocity impact and compression after impact (CAI) tests were performed to investigate the impac...
Low-velocity impact tests were performed to investigate the impact behaviour of hybrid composite lam...
The low velocity impact behavior of E-glass/basalt reinforced hybrid laminates, manufactured by resi...
In this study, the tensile and compressive behaviors of pure and hybrid composite laminates reinforc...
In this study, the tensile and compressive behaviors of pure and hybrid composite laminates reinforc...
The low-velocity impact behaviour of hybrid laminates reinforced with woven aramid and basalt fabric...
In this paper, the residual impact strength of inter-ply, intra-ply, and functionally gradient compo...
Hybridization of inherently brittle carbon fibers with basalt fibers in the fiber reinforced plastic...
© 2019 Elsevier Ltd This work investigates the effects of carbon/glass/basalt hybridization and fabr...
This study addresses the effects of basalt fibre hybridization on quasi-static mechanical properties...
A major limitation to the spreading of natural fibre reinforced composites in semi-structural compon...
Composites are emerging as realistic alternatives to the metal alloys in many applications like auto...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
Since natural fiber composites have a high potential as an alternative to synthetic materials, their...
In an attempt to increase the low-velocity impact response of natural fiber composites, a new hybrid...