Xu et al., 2022 - Google Patents
Study on the construction of dopamine/poly (ethyleneimine)/aminoated carbon nanotube multilayer films on aramid fiber surfaces to improve the mechanical …Xu et al., 2022
View HTML- Document ID
- 4600414114205026293
- Author
- Xu T
- Tian J
- An L
- Jiao Y
- Yin Q
- Tan Y
- Publication year
- Publication venue
- ACS omega
External Links
Snippet
To improve the mechanical properties of aramid fiber (AF) reinforced epoxy resin (EP) composites without damaging the strength of the AF body, in this paper, poly (ethyleneimine)(PEI) and aminoated carbon nanotubes (NH2-CNTs) were successfully …
- 239000000835 fiber 0 title abstract description 299
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08J—WORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G
- C08J5/00—Manufacture of articles or shaped materials containing macromolecular substances
- C08J5/04—Reinforcing macromolecular compounds with loose or coherent fibrous material
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08K—USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
- C08K7/00—Use of ingredients characterised by shape
- C08K7/02—Fibres or whiskers
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08K—USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
- C08K9/00—Use of pretreated ingredients
- C08K9/08—Ingredients agglomerated by treatment with a binding agent
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Sun et al. | Multi-scale structure construction of carbon fiber surface by electrophoretic deposition and electropolymerization to enhance the interfacial strength of epoxy resin composites | |
Gao et al. | Interfacial microstructure and enhanced mechanical properties of carbon fiber composites caused by growing generation 1–4 dendritic poly (amidoamine) on a fiber surface | |
Raphael et al. | Surface modification and grafting of carbon fibers: A route to better interface | |
Yang et al. | Codepositing mussel-inspired nanohybrids onto one-dimensional fibers under “green” conditions for significantly enhanced surface/interfacial properties | |
Xu et al. | Study on the construction of dopamine/poly (ethyleneimine)/aminoated carbon nanotube multilayer films on aramid fiber surfaces to improve the mechanical properties of aramid fibers/epoxy composites | |
Sa et al. | Surface modification of aramid fibers by bio-inspired poly (dopamine) and epoxy functionalized silane grafting | |
Chen et al. | Polydopamine as an efficient and robust platform to functionalize carbon fiber for high-performance polymer composites | |
Zhang et al. | Enhanced mechanical properties of multiscale carbon fiber/epoxy composites by fiber surface treatment with graphene oxide/polyhedral oligomeric silsesquioxane | |
Eyckens et al. | Fiber with butterfly wings: creating colored carbon fibers with increased strength, adhesion, and reversible malleability | |
Ma et al. | Effects of bonding types of carbon fibers with branched polyethyleneimine on the interfacial microstructure and mechanical properties of carbon fiber/epoxy resin composites | |
Li et al. | Amino-terminated nitrogen-rich layer to improve the interlaminar shear strength between carbon fiber and a thermoplastic matrix | |
Wu et al. | Effects of silanization and silica enrichment of carbon fibers on interfacial properties of methylphenylsilicone resin composites | |
Wu et al. | Interfacially reinforced methylphenylsilicone resin composites by chemically grafting multiwall carbon nanotubes onto carbon fibers | |
Zhang et al. | Facile preparation of hyperbranched polysiloxane-grafted aramid fibers with simultaneously improved UV resistance, surface activity, and thermal and mechanical properties | |
Gao et al. | Bioinspired modification via green synthesis of mussel-inspired nanoparticles on carbon fiber surface for advanced composite materials | |
Jiang et al. | Enhanced mechanical properties and anti-hydrothermal ageing behaviors of unsaturated polyester composites by carbon fibers interfaced with POSS | |
Chen et al. | POSS-bound ZnO nanowires as interphase for enhancing interfacial strength and hydrothermal aging resistance of PBO fiber/epoxy resin composites | |
Chen et al. | Facile fabrication of hierarchically structured PBO-Ni (OH) 2/NiOOH fibers for enhancing interfacial strength in PBO fiber/epoxy resin composites | |
Shariatnia et al. | Hybrid cellulose nanocrystal-bonded carbon nanotubes/carbon fiber polymer composites for structural applications | |
Zhang et al. | Polyhedral oligomeric silsesquioxanes/carbon nanotube/carbon fiber multiscale composite: influence of a novel hierarchical reinforcement on the interfacial properties | |
Mei et al. | Multiscale carbon nanotube-carbon fiber reinforcement for advanced epoxy composites with high interfacial strength | |
Tian et al. | Graphene oxide-modified aramid fibers for reinforcing epoxy resin matrixes | |
Li et al. | One-pot strategy for covalent construction of POSS-modified silane layer on carbon fiber to enhance interfacial properties and anti-hydrothermal aging behaviors of PPBES composites | |
Li et al. | Two-step method to realize continuous multi-wall carbon nanotube grafted on the fibers to improve the interface of carbon fibers/epoxy resin composites based on the Diels-Alder reaction | |
Li et al. | Fluorinated nanosilica size effect on hierarchical structure and superhydrophobic properties of the epoxy nanocomposite film |