Strengthening and Toughening Epoxy Composites by Constructing MOF/CF Multi-Scale Reinforcement
Abstract
:1. Introduction
2. Materials and Methods
2.1. Materials
2.2. Fabrication of MOF/CF
2.3. Preparation of MOF/CF Epoxy Composites
2.4. Characterization
3. Results
3.1. Surface Chemical Composition Analysis of MOF/CF
3.2. Surface Topography of MOF/CF
3.3. Wettability of MOF/CF
3.4. Interlaminar Shear Strength of MOF/CF Composites
3.5. Impact Strength of MOF/CF Composites
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Gao, B.; Zhang, J.; Hao, Z.; Huo, L.; Zhang, R.; Shao, L. In-Situ Modification of Carbon Fibers with Hyperbranched Polyglycerol via Anionic Ring-Opening Polymerization for Use in High-Performance Composites. Carbon 2017, 123, 548–557. [Google Scholar] [CrossRef]
- Chen, C.; Li, Y.; Gu, Y.; Li, M.; Zhang, Z. Effect of MWCNTs Added by Electrostatic Flocking Method on Adhesion of Carbon Fiber Prepreg/Nomex Honeycomb Sandwich Composites. Mater. Des. 2017, 127, 15–21. [Google Scholar] [CrossRef]
- Zhao, M.; Meng, L.; Ma, L.; Wu, G.; Xie, F.; Ma, L.; Wang, W.; Jiang, B.; Huang, Y. Stepwise Growth of Melamine-Based Dendrimers onto Carbon Fibers and the Effects on Interfacial Properties of Epoxy Composites. Compos. Sci. Technol. 2017, 138, 144–150. [Google Scholar] [CrossRef]
- Liu, F.; Shi, Z.; Dong, Y. Improved Wettability and Interfacial Adhesion in Carbon Fibre/Epoxy Composites via an Aqueous Epoxy Sizing Agent. Compos. Part A Appl. Sci. Manuf. 2018, 112, 337–345. [Google Scholar] [CrossRef]
- Eyckens, D.J.; Arnold, C.L.; Simon, Ž.; Gengenbach, T.R.; Pinson, J.; Wickramasingha, Y.A.; Henderson, L.C. Covalent Sizing Surface Modification as a Route to Improved Interfacial Adhesion in Carbon Fibre-Epoxy Composites. Compos. Part A Appl. Sci. Manuf. 2021, 140, 106147. [Google Scholar] [CrossRef]
- Chen, S.; Cao, Y.; Feng, J. Polydopamine as an Efficient and Robust Platform to Functionalize Carbon Fiber for High-Performance Polymer Composites. ACS Appl. Mater. Interfaces 2013, 6, 349–356. [Google Scholar] [CrossRef]
- Zhao, M.; Meng, L.; Ma, L.; Ma, L.; Yang, X.; Huang, Y.; Ryu, J.E.; Shankar, A.; Li, T.; Yan, C.; et al. Layer-By-Layer Grafting CNTs onto Carbon Fibers Surface for Enhancing the Interfacial Properties of Epoxy Resin Composites. Compos. Sci. Technol. 2018, 154, 28–36. [Google Scholar] [CrossRef]
- Xu, H.; Zhang, X.; Liu, D.; Yan, C.; Chen, X.; Hui, D.; Zhu, Y. Cyclomatrix-Type Polyphosphazene Coating: Improving Interfacial Property of Carbon Fiber/Epoxy Composites and Preserving Fiber Tensile Strength. Compos. B Eng. 2016, 93, 244–251. [Google Scholar] [CrossRef]
- Deng, Y.; Islam, M.S.; Tong, L. Effects of Grafting Strength and Density on Interfacial Shear Strength of Carbon Nanotube Grafted Carbon Fibre Reinforced Composites. Compos. Sci. Technol. 2018, 168, 195–202. [Google Scholar] [CrossRef]
- Demir, B.; Henderson, L.C.; Walsh, T.R. Design Rules for Enhanced Interfacial Shear Response in Functionalized Carbon Fiber Epoxy Composites. ACS Appl. Mater. Interfaces 2017, 9, 11846–11857. [Google Scholar] [CrossRef]
- Wang, C.; Li, Y.; Tong, L.; Song, Q.; Li, K.; Li, J.; Peng, Q.; He, X.; Wang, R.; Jiao, W.; et al. The Role of Grafting Force and Surface Wettability in Interfacial Enhancement of Carbon Nanotube/Carbon Fiber Hierarchical Composites. Carbon 2014, 69, 239–246. [Google Scholar] [CrossRef]
- Wang, C.; Chen, L.; Li, J.; Sun, S.; Ma, L.; Wu, G.; Zhao, F.; Jiang, B.; Huang, Y. Enhancing the Interfacial Strength of Carbon Fiber Reinforced Epoxy Composites by Green Grafting of Poly(Oxypropylene) Diamines. Compos. Part A Appl. Sci. Manuf. 2017, 99, 58–64. [Google Scholar] [CrossRef]
- Ma, Q.; Gu, Y.; Li, M.; Wang, S.; Zhang, Z. Effects of Surface Treating Methods of High-Strength Carbon Fibers on Interfacial Properties of Epoxy Resin Matrix Composite. Appl. Surf. Sci. 2016, 379, 199–205. [Google Scholar] [CrossRef]
- Zhao, J.; Li, H.; Li, C.; Zhang, Q.; Sun, J.; Wang, X.; Guo, J.; Xie, L.; Xie, J.; He, B.; et al. MOF for Template-Directed Growth of Well-Oriented Nanowire Hybrid Arrays on Carbon Nanotube Fibers for Wearable Electronics Integrated with Triboelectric Nanogenerators. Nano Energy 2018, 45, 420–431. [Google Scholar] [CrossRef]
- Liu, X.-W.; Sun, T.-J.; Hu, J.-L.; Wang, S.-D. Composites of Metal–Organic Frameworks and Carbon-Based Materials: Preparations, Functionalities and Applications. J. Mater. Chem. A 2016, 4, 3584–3616. [Google Scholar] [CrossRef]
- Jiang, G.; Jiang, N.; Zheng, N.; Chen, X.; Mao, J.; Ding, G.; Li, Y.; Sun, F.; Li, Y. MOF-Derived Porous Co3O4-NC Nanoflake Arrays on Carbon Fiber Cloth as Stable Hosts for Dendrite-Free Li Metal Anodes. Energy Stor. Mater. 2019, 23, 181–189. [Google Scholar] [CrossRef]
- Li, H.; Wang, S.; Feng, M.; Yang, J.; Zhang, B. MOF-Derived ZnCo2O4/C Wrapped on Carbon Fiber as Anode Materials for Structural Lithium-Ion Batteries. Chin. Chem. Lett. 2019, 30, 529–532. [Google Scholar] [CrossRef]
- Yang, X.; Jiang, X.; Huang, Y.; Guo, Z.; Shao, L. Building Nanoporous Metal–Organic Frameworks “Armor” on Fibers for High-Performance Composite Materials. ACS Appl. Mater. Interfaces 2017, 9, 5590–5599. [Google Scholar] [CrossRef] [PubMed]
- Xing, L.; Feng, Z.; Bao, J.; Li, S. Facing Opportunity and Challenge of Carbon Fiber and Polymer Matrix Composites Industry Development. Acta Mater. Compos. Sin. 2020, 37, 2700–2706. [Google Scholar] [CrossRef]
- Jian, R.K.; Lin, X.B.; Liu, Z.Q.; Zhang, W.; Zhang, J.; Zhang, L.; Li, Z.; Wang, D.Y. Rationally Designed Zinc Borate@Zif-8 Core-Shell Nanorods for Curing Epoxy Resins Along with Low Flammability and High Mechanical Property. Compos. Part B Eng. 2020, 200, 108349. [Google Scholar] [CrossRef]
- Ma, S.; Hou, Y.; Xiao, Y.; Chu, F.; Cai, T.; Hu, W.; Hu, Y. Metal-Organic Framework@Polyaniline Nanoarchitecture for Improved Fire Safety and Mechanical Performance of Epoxy Resin. Mater. Chem. Phys. 2020, 247, 122875. [Google Scholar] [CrossRef]
- Xu, B.; Zong, H.; Zhang, J.; Zhang, K.; Huang, H.; Lu, Z.; He, D. Research Status and Development Trend of Carbon Fiber Reinforced Polymer Hydraulic Cylinder. Acta Mater. Compos. Sin. 2022, 39, 446–459. [Google Scholar] [CrossRef]
- Kandiah, M.; Nilsen, M.H.; Usseglio, S.; Jakobsen, S.; Olsbye, U.; Tilset, M.; Larabi, C.; Quadrelli, E.A.; Bonino, F.; Lillerud, K.P. Synthesis and Stability of Tagged UiO-66 Zr-MOFs. Chem. Mater. 2010, 22, 6632–6640. [Google Scholar] [CrossRef]
- Ramezanzadeh, M.; Tati, A.; Bahlakeh, G.; Ramezanzadeh, B. Construction of an epoxy composite coating with exceptional thermo-mechanical properties using Zr-based NH2-UiO-66 metal-organic framework (MOF): Experimental and DFT-D theoretical explorations. Chem. Eng. J. 2021, 408, 127366. [Google Scholar] [CrossRef]
- Shao, Y.; Xu, F.; Liu, W.; Zhou, M.; Li, W.; Hui, D.; Qiu, Y. Influence of Cryogenic Treatment on Mechanical and Interfacial Properties of Carbon Nanotube Fiber/Bisphenol-F Epoxy Composite. Compos. B Eng. 2017, 125, 195–202. [Google Scholar] [CrossRef]
- Peng, Q.; Li, Y.; He, X.; Lv, H.; Hu, P.; Shang, Y.; Wang, C.; Wang, R.; Sritharan, T.; Du, S. Interfacial Enhancement of Carbon Fiber Composites by Poly(Amido Amine) Functionalization. Compos. Sci. Technol. 2013, 74, 37–42. [Google Scholar] [CrossRef]
- Hu, C.; Xiao, J.-D.; Mao, X.-D.; Song, L.-L.; Yang, X.-Y.; Liu, S.-J. Toughening Mechanisms of Epoxy Resin Using Aminated Metal-Organic Framework as Additive. Mater. Lett. 2019, 240, 113–116. [Google Scholar] [CrossRef]
- Hiremath, N.; Mays, J.; Bhat, G. Recent Developments in Carbon Fibers and Carbon Nanotube-Based Fibers: A Review. Polym. Rev. 2016, 57, 339–368. [Google Scholar] [CrossRef]
- Pickering, K.L.; Efendy, M.G.A.; Le, T.M. A Review of Recent Developments in Natural Fibre Composites and Their Mechanical Performance. Compos. Part A Appl. Sci. Manuf. 2016, 83, 98–112. [Google Scholar] [CrossRef] [Green Version]
- Wu, G.; Chen, L.; Liu, L. Effects of silanization and silica enrichment of carbon fibers on interfacial properties of methylphenylsilicone resin composites. Compos. Part A Appl. Sci. Manuf. 2017, 98, 159–165. [Google Scholar] [CrossRef]
- Lode, D.; Amaël, C.; Timo, M.; Jasper, B.; Siebe, S.; Mathias, K.; Ives, D.; Hubert, R.; Véronique, M.; Wim, V.; et al. Electrospun nanofibrous interleaves for improved low velocity impact resistance of glass fibre reinforced composite laminates. Mater. Des. 2018, 141, 170–184. [Google Scholar] [CrossRef]
- McCrary-Dennis, M.C.; Okoli, O.I. A Review of Multiscale Composite Manufacturing and Challenges. J. Reinf. Plast. Compos. 2012, 31, 1687–1711. [Google Scholar] [CrossRef]
- Zhang, H.; Li, Y.; Tu, H. Research on interlayer properties of short fiber intercalated carbon fiber/epoxy composites. Acta Mater. Compos. Sin. 2022, 39, 3674–3683. [Google Scholar] [CrossRef]
- Wang, A.; Liu, X.; Yue, Q. Low-velocity impact resistance of carbon fiber reinforced polymer composite and its cables: A review. Acta Mater. Compos. Sin. 2022, 39, 5049–5061. [Google Scholar] [CrossRef]
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Zhao, M.; Sun, Z.; Guo, J.; Qu, Q.; Jiang, T.; Wang, G.; Wang, J. Strengthening and Toughening Epoxy Composites by Constructing MOF/CF Multi-Scale Reinforcement. Coatings 2023, 13, 170. https://doi.org/10.3390/coatings13010170
Zhao M, Sun Z, Guo J, Qu Q, Jiang T, Wang G, Wang J. Strengthening and Toughening Epoxy Composites by Constructing MOF/CF Multi-Scale Reinforcement. Coatings. 2023; 13(1):170. https://doi.org/10.3390/coatings13010170
Chicago/Turabian StyleZhao, Min, Zhuo Sun, Jinlong Guo, Qing Qu, Tingting Jiang, Gang Wang, and Jing Wang. 2023. "Strengthening and Toughening Epoxy Composites by Constructing MOF/CF Multi-Scale Reinforcement" Coatings 13, no. 1: 170. https://doi.org/10.3390/coatings13010170
APA StyleZhao, M., Sun, Z., Guo, J., Qu, Q., Jiang, T., Wang, G., & Wang, J. (2023). Strengthening and Toughening Epoxy Composites by Constructing MOF/CF Multi-Scale Reinforcement. Coatings, 13(1), 170. https://doi.org/10.3390/coatings13010170