Publication Cover
Plastics, Rubber and Composites
Macromolecular Engineering
Volume 52, 2023 - Issue 6
203
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Preparation and interfacial properties of functionalised graphene oxide modified carbon fibre/epoxy resin matrix composites

, , , &

References

  • Hung PY, Lau KT, Fox B, et al. Surface modification of carbon fibre using graphene–related materials for multifunctional composites. Compos B-Eng. 2018;133:240–257.
  • Karger-Kocsis J, Mahmood H, Pegoretti A. All-carbon multi-scale and hierarchical fibers and related structural composites: A review. Compos Sci Technol. 2019;186:107932.
  • Wu Q, He JQ, Wang F, et al. Constructing a simple anti-sandwich structure on carbon fiber surface for simultaneously strengthening and toughening the interphase of epoxy composites. Compos Struct. 2020;240:112075.
  • Chen Q, Peng QY, Zhao X, et al. Grafting carbon nanotubes densely on carbon fibers by poly (propylene imine) for interfacial enhancement of carbon fiber composites. Carbon N Y. 2020;158:704–107710.
  • Zhou J, Zhong KD, Zhao CT, et al. On the role of carbon nanotubes addition in carbon fiber-reinforced magnesium matrix composites. J Mater Sci. 2020;55:1–23.
  • Huang YD, Liu L, Qiu JH, et al. Influence of ultrasonic treatment on the characteristics of epoxy resin and the interfacial property of its carbon fiber composites. Compos Sci Technol. 2002;62:2153–2159.
  • Sun HF, Memon SA, Gu Y, et al. Degradation of carbon fiber reinforced polymer from cathodic protection process on exposure to NaOH and simulated pore water solutions. Mater Struct. 2016;49:5273–5283.
  • Liu Y, Zhang X, Song CC, et al. An effective surface modification of carbon fiber for improving the interfacial adhesion of polypropylene composites. Mater Des. 2015;88:810–819.
  • Zhang MJ, Cheng CX, Guo CQ, Jin L, Liu L, Li M, et al. Co-depositing bio-inspired tannic acid-aminopropyltriethoxysilane coating onto carbon fiber for excellent interfacial adhesion of epoxy composites. Compos Sci Technol 2020;204:108639.
  • Yuan XY, Jiang J, Wei HW, et al. PAI/MXene sizing-based dual functional coating for carbon fiber/PEEK composite. Compos Sci Technol. 2020;201:108496.
  • Zhu P, Ruan FT, Bao LM. Preparation of polyetherimide nanoparticles on carbon fiber surface via evaporation induced surface modification method and its effect on tensile strength and interfacial shear strength. Appl Surf Sci. 2018;454:54–60.
  • Park M, Park JH, Yang BJ, et al. Enhanced interfacial, electrical, and flexural properties of polyphenylene sulfide composites filled with carbon fibers modified by electrophoretic surface deposition of multi-walled carbon nanotubes. Composites Part A. 2018;109:124–130.
  • Zabihi O, Ahmadi M, Li QX, et al. Carbon fibre surface modification using functionalized nanoclay: a hierarchical interphase for fibre-reinforced polymer composites. Compos Sci Technol. 2017;148:49–58.
  • Gravis D, Moisan S, Poncin-Epaillard F. Surface character of plasma-modified carbon fiber: Correlation between surface chemistry and morphology of the single strand. Surf Interfaces. 2020;21:100731.
  • Cheng Y, Liu PF, Xiao P, et al. Effect of surface chemical modifications on the bioactivity of carbon fibers reinforced epoxy composites. Surf Coat Technol. 2019;377:124889–124889.
  • Zhang YY, Zhang YZ, Liu Y, et al. A novel surface modification of carbon fiber for high-performance thermoplastic polyurethane composites. Appl Surf Sci. 2016;382:144–154.
  • Andideh M, Esfandeh M. Effect of surface modification of electrochemically oxidized carbon fibers by grafting hydroxyl and amine functionalized hyperbranched polyurethanes on interlaminar shear strength of epoxy composites. Carbon. 2017;123:233–242.
  • Wang SD, Yang YC, Mu YF, et al. Synergy of electrochemical grafting and crosslinkable crystalline sizing agent to enhance the interfacial strength of carbon fiber/PEEK composites. Compos Sci Technol. 2020;203:108562.
  • Paipetis A, Galiotis C. Effect of fibre sizing on the stress transfer efficiency in carbon/epoxy model composites. Composites Part A. 1996;27:755–767.
  • Raphael N, Namratha K, Chandrashekar BN, et al. Surface modification and grafting of carbon fibers: a route to better interface. Prog Cryst Growth Charact Mater. 2018;64:75–101.
  • Sorokin AE, Petrova GN. Lubricants and coupling agents in the processes of the liquid-phase modification of the surface of carbon and glass fiber fillers in the production of structural materials: a review. Theor Found Chem Eng. 2020;54:737–744.
  • Ma WS, Zhou JW, Lin XD. Preparation and characterization of functionalized graphene with ethanolamine. Acta Chim Sinica. 2011;69:1463–1468.
  • Wan YJ, Tang LC, Gong LX, et al. Grafting of epoxy chains onto graphene oxide for epoxy composites with improved mechanical and thermal properties. Carbon N Y. 2014;69:467–480.
  • Bao CL, Guo YQ, Song L. In situ preparation of functionalized graphene oxide/epoxy nanocomposites with effective reinforcements. J Mater Chem. 2011;24:13290–13298.
  • Subramanian V, Van Ooij WJ. Effect of the amine functional group on corrosion rate of iron coated with films of organofunctional silanes. Corrosion. 1998;54:204–215.
  • Gao ZN, Jiang XB, Guo K. Study of the hydrolysis of 3-aminopropyltriethoxysilane (KH550) and the surface modification of silica. J B Univ Chem Technol (Nat. Sci. Ed.). 2012;39:7–12.
  • Yan F, Liu L, Li KX, et al. A novel π bridging method to graft graphene oxide onto carbon fiber for interfacial enhancement of epoxy composites. Compos Sci Technol. 2021;201:108489.
  • Zheng XH, Fei J, Gu YF, et al. Constructing interfacial path for enhancing mechanical and thermal performances of carbon fiber/cyanate ester resin composite. Colloids Surf A. 2021;617:126311.
  • Mahapatra SS, Ramasamy MS, Yoo HJ, et al. A reactive graphene sheet in situ functionalized hyperbranched polyurethane for high performance shape memory material. RSC Adv. 2014;4:15146–15153.
  • Bouazizi N, Vieillard J, Bargougui R, et al. Entrapment and stabilization of iron nanoparticles within APTES modified graphene oxide sheets for catalytic activity improvement. J Alloys Compd. 2019;771:1090–1102.
  • Lee W, Lee JU, Byun JH. Catecholamine polymers as surface modifiers for enhancing interfacial strength of fiber-reinforced composites. Compos Sci Technol. 2015;110:53–61.
  • Li LB. Synergistic effects of interface slip and fiber fracture on stress-dependent mechanical hysteresis of SiC/SiC minicomposites. Compos Interfaces. 2020;27:1–72.
  • Qin JJ, Wang CG, Lu RJ, et al. Uniform growth of carbon nanotubes on carbon fiber cloth after surface oxidation treatment to enhance interfacial strength of composites. Compos Sci Technol. 2020;195:108198.
  • Bian L, Hui Y, Meng D. Thermal residual stress and interface binding effects on fiber reinforced composites. Arch Appl Mech. 2021;91:3315–103326.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.