Toughening Behavior of Carbon/Epoxy Laminates Interleaved by PSF/PVDF Composite Nanofibers
暂无分享,去创建一个
[1] M. A. Najafabadi,et al. Fracture and fatigue behavior of carbon/epoxy laminates modified by nanofibers , 2020 .
[2] M. A. Najafabadi,et al. Mode-II fatigue response of AS4/8552 carbon /epoxy composite laminates interleaved by electrospun nanofibers , 2020 .
[3] H. Taheri,et al. Toughening phenolic composite laminates by interleaving hybrid pyrolytic carbon/polyvinyl butyral nanomat , 2020, Composites Part B: Engineering.
[4] G. Lubineau,et al. Post-impact flexural behavior of carbon-aramid/epoxy hybrid composites , 2020 .
[5] I. Bavasso,et al. Effect of electrospun nanofibres and MWCNTs on the low velocity impact response of carbon fibre laminates , 2020 .
[6] Chuanguo Ma,et al. Interlaminar fracture toughness and conductivity of carbon fiber/epoxy resin composite laminate modified by carbon black-loaded polypropylene non-woven fabric interleaves , 2020 .
[7] Xitao Zheng,et al. Effects of braiding architectures on damage resistance and damage tolerance behaviors of 3D braided composites , 2020 .
[8] A. Zucchelli,et al. Shear mode of fracture in composite laminates toughened by polyvinylidene fluoride nanofibers , 2019, Composite Structures.
[9] H. Heidary,et al. Comparing various toughening mechanisms occurred in nanomodified laminates under impact loading , 2019, Composites Part B: Engineering.
[10] G. Minak,et al. Effect of nanofiber diameter and arrangement on fracture toughness of out of autoclave glass/phenolic composites - Experimental and numerical study , 2019, Thin-Walled Structures.
[11] H. Abedini,et al. Investigation into high velocity impact response of pre-loaded hybrid nanocomposite structure , 2019, Thin-Walled Structures.
[12] Y. Mai,et al. Synergetic improvement of interlaminar fracture energy in carbon fiber/epoxy composites with nylon nanofiber/polycaprolactone blend interleaves , 2019, Composites Part B: Engineering.
[13] H. Heidary,et al. Finding the best sequence in flexible and stiff composite laminates interleaved by nanofibers , 2019, Journal of Composite Materials.
[14] M. Nami,et al. Geometric analysis and constrained optimization of woven z-pinned composites for maximization of elastic properties , 2019, Composite Structures.
[15] A. Ravindran,et al. Synergistic mode II delamination toughening of composites using multi-scale carbon-based reinforcements , 2019, Composites Part A: Applied Science and Manufacturing.
[16] R. Zdero,et al. Impact properties of a new hybrid composite material made from woven carbon fibres plus flax fibres in an epoxy matrix , 2019, Composite Structures.
[17] Giangiacomo Minak,et al. Improvement of the Impact Properties of Composite Laminates by Means of Nano-Modification of the Matrix—A Review , 2018, Applied Sciences.
[18] M. A. Najafabadi,et al. Considering damage during fracture tests on nanomodified laminates using the acoustic emission method , 2018, European Journal of Mechanics - A/Solids.
[19] Naresh Chandra Murmu,et al. Effects of hydrazine reduced graphene oxide on the inter-laminar fracture toughness of woven carbon fiber/epoxy composite , 2018, Composites Part B: Engineering.
[20] M. Sadighi,et al. Experimental and numerical investigation of low velocity impact on electrospun nanofiber modified composite laminates , 2018, Composite Structures.
[21] M. A. Najafabadi,et al. Considering damages to open-holed composite laminates modified by nanofibers under the three-point bending test , 2018, Polymer Testing.
[22] G. Cai,et al. Strain and damage self-sensing of basalt fiber reinforced polymer laminates fabricated with carbon nanofibers/epoxy composites under tension , 2018, Composites Part A: Applied Science and Manufacturing.
[23] E. Ahmadloo,et al. Effect of PA66 nanofiber yarn on tensile fracture toughness of reinforced epoxy nanocomposite , 2018, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science.
[24] M. Latifi,et al. The experimental and numerical study on the effect of PVB nanofiber mat thickness on interlaminar fracture toughness of glass/phenolic composites , 2018 .
[25] A. Zucchelli,et al. Electrospun nanofibers as reinforcement for composite laminates materials – a review , 2017 .
[26] W. Paepegem,et al. Improved fatigue delamination behaviour of composite laminates with electrospun thermoplastic nanofibrous interleaves using the Central Cut-Ply method , 2017 .
[27] Y. Mai,et al. Improvement of interlaminar fracture toughness in carbon fiber/epoxy composites with carbon nanotubes/polysulfone interleaves , 2017 .
[28] Kendrick Q. Henderson,et al. Effect of carbon nanofiber z-threads on mode-I delamination toughness of carbon fiber reinforced plastic laminates , 2016 .
[29] A. Zucchelli,et al. The effect of nanofibrous membrane thickness on fracture behaviour of modified composite laminates – A numerical and experimental study , 2016 .
[30] T. Peijs,et al. Localized toughening of carbon/epoxy laminates using dissolvable thermoplastic interleaves and electrospun fibres , 2015 .
[31] A. Zucchelli,et al. The effect of PVDF nanofibers on mode-I fracture toughness of composite materials , 2015 .
[32] Y. Liu,et al. Ex-situ method for toughening glass/epoxy composites by interlaminar films made of polyetherketone cardo and calcium sulfate whisker , 2014 .
[33] Tong Lin,et al. Phase morphology of nanofibre interlayers: Critical factor for toughening carbon/epoxy composites , 2012 .
[34] K. Magniez,et al. Toughening of a Carbon-Fibre Composite Using Electrospun Poly(Hydroxyether of Bisphenol A) Nanofibrous Membranes Through Inverse Phase Separation and Inter-Domain Etherification , 2011, Materials.
[35] K. Magniez,et al. The effects of molecular weight and polymorphism on the fracture and thermo-mechanical properties of a carbon-fibre composite modified by electrospun poly (vinylidene fluoride) membranes , 2010 .
[36] S. Zhang,et al. Novel carbon fiber/epoxy composite toughened by electrospun polysulfone nanofibers , 2008 .
[37] Zhang Zilong,et al. Toughness improvement of carbon laminates by periodic interleaving thin thermoplastic films , 2002 .
[38] A. Zucchelli,et al. Improvement the impact damage resistance of composite materials by interleaving Polycaprolactone nanofibers , 2015 .
[39] P. Li,et al. Synchronous effects of multiscale reinforced and toughened CFRP composites by MWNTs-EP/PSF hybrid nanofibers with preferred orientation , 2015 .
[40] S. Ramakrishna,et al. Influence of electrospun Nylon 6,6 nanofibrous mats on the interlaminar properties of Gr–epoxy composite laminates , 2012 .