Fabric reinforced with carbon nanostructures to improve mechanical performance
Fabrics that have unique mechanical properties are comprised of fibers that have been reacted to provide carbon nanostructures covalently grafted to these fibers so that the entanglement and/or the reactive bonding between adjacent fibers creates a hierarchal structure reinforcement of the fabric. This entanglement and/or reactivity is also effective for developing reinforcement between plies of structural fabric composites in order to enhance inter-laminar shear strength and mechanical properties.
1. A fabric comprising:
a plurality of functionalized fibers; and
a plurality of isocyanate functional carbon nanostructures;
wherein:
the fibers are functionalized using ammonia, carbon dioxide, and vapor of acetic acid such that the fabric comprises amine, hydroxyl, and carboxyl reactive functional groups;
the plurality of isocyanate functional carbon nanostructures are provided by reacting a plurality of carbon nanostructures with diisocyanate;
the isocyanate functional carbon nanostructures are covalently grafted to the fiber thereby becoming part of an intrinsic structure of the fibers.
2. The fabric according to claim 1 , wherein the fibers comprise filaments, threads, and/or tow.
3. The fabric according to claim 1 , wherein the fibers, and any yarn made therefrom, are natural or synthetic.
4. The fabric according to claim 1 , wherein the fibers are made into the fabric by at least one process selected from the group consisting of spinning, weaving, and drawing.
5. The fabric according to claim 1 , wherein the fibers are functionalized by a chemical or plasma process.
6. The fabric according to claim 1 , wherein the carbon nanostructures comprise at least one nanostructure selected from the group consisting of:
carbon nanotubes;
carbon nanoparticles;
graphene;
carbon nanoribbons; and
graphene oxide.
7. The fabric according to claim 6 , wherein the carbon nanostructures comprise carbon nanotubes, graphene, and carbon nanoribbons.
8. The fabric according to claim 1 , wherein the functionalized carbon nanostructures are further reacted to form more complex nanostructures comprising two or more joined nanocarbons, wherein each of the two or more joined nanocarbons is grafted to the fiber.
9. The fabric according to claim 8 , wherein the formed complex nanostructures are straight nanostructures, or branched nanostructures.
10. The fabric according to claim 8 , wherein the formed complex nanostructures grafted to one of the plurality of functionalized fibers are of sufficient size to entangle with adjacent nanostructures grafted to another of the plurality of functionalized fibers thereby developing an entangled network.
11. The fabric according to claim 8 , wherein;
at least one of the complex nanostructures has a terminal carbon nanostructure; and
the terminal nanocarbon structure is reactive and is configured to react with an adjacent reactive nanocarbon groups to covalently link fabric fibers into a single layer composite structure.
12. The fabric according to claim 11 , wherein the terminal nanocarbon structure of the single layer composite structure is configured to react with a second terminal nanocarbon structure of a second single layer composite structure to form a two-ply composite structure.
13. Soft armor constructed with fabric according to claim 1 , 5 , or 8 .
14. A composite structure constructed with fabric according to claim 1 or 8 .