IP Library Patent Application 12539578
Patent Application
App. No. 12/539,578

FIBER SIZING COMPRISING NANOPARTICLES

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Patent No.
US None
App. No.
12/539,578
Abstract

A fiber sizing formulation includes (1) a nanoparticle (NP)solution that includes a dispersion of transition metal nanoparticles (NPs) in a solvent and (2) a first fiber sizing agent. The NPs disperse throughout the first fiber sizing agent after application of the fiber sizing formulation to a fiber and removal of the solvent. The NPs serve a function selected from a secondary sizing agent, a catalyst for further nanostructure growth on the fiber, and combinations thereof. A fiber includes a sizing disposed about the fiber. The sizing includes transition metal nanoparticles dispersed throughout the sizing. A method includes applying the sizing formulation to a fiber during manufacture of the fiber, and removing the solvent from the applied formulation. A method includes adding a solution of transition metal NPs to a sizing-coated fiber and baking, whereby the sizing solution of NPs is added before baking the sizing.

Claims (27)

1 . A fiber sizing formulation comprising (1) a nanoparticle (NP)solution comprising a dispersion of transition metal nanoparticles (NPs) in a solvent and (2) a first fiber sizing agent;

wherein the NPs disperse throughout the first fiber sizing agent after application of the fiber sizing formulation to a fiber and removal of the solvent; and

wherein the NPs serve a function selected from a secondary sizing agent, a catalyst for further nanostructure growth on the fiber, and combinations thereof.

2 . The formulation of claim 1 , wherein the NPs are present in a range between about x to about y weight percent of the formulation.

3 . The formulation of claim 1 , wherein the NPs range in size from between about 1 nm to about 800 nm.

4 . The formulation of claim 3 , wherein the NPs range in size from between about 5 nm to about 60 nm.

5 . The formulation of claim 3 , wherein the NPs range in size from between about 5 nm to about 30 nm.

6 . The formulation of claim 3 , wherein the NPs range in size from between about 0.05 nm to about 2 nm.

7 . The formulation of claim 1 , wherein the nanostructures are carbon nanotubes or nanowires/nanorods.

8 . The formulation of claim 7 , wherein the nanowires/nanorods are selected from the group consisting of SiC, CdS, B 4 C, ZnO, Ni, Pt, Si, InP, GaN, SiO 2 , and TiO 2 .

9 . The formulation of claim 1 , wherein the NPs are electrically conductive.

10 . The formulation of claim 1 , wherein the NPs are thermally conductive.

11 . The formulation of claim 1 , wherein the transition metal NPs are selected from the group consisting of Ni, Fe, Co, Mo, Cu, Pt, Au, Ag, TiO 2 , ZnO, MnO, SnO and mixtures thereof.

12 . The formulation of claim 1 , wherein the first fiber sizing agent comprises a silane-based material and, optionally, a pre-polymer to cross linking with a resin matrix.

13 . The formulation of claim 1 , wherein the first fiber sizing agent is present in a range between about 0.01 to about 5 weight percent of the formulation.

14 . A fiber comprising a sizing disposed about the fiber, wherein the sizing comprises transition metal nanoparticles dispersed throughout the sizing.

15 . The fiber of claim 14 , wherein the fiber is incorporated into a fiber tow.

16 . The fiber of claim 14 , where in the fiber is incorporated into a composite comprising a matrix material.

17 . The fiber of claim 16 , wherein the matrix material is selected from the group consisting of epoxy, polyester, vinylester, polyetherimide, polyetherketoneketone, polyphthalamide, polyetherketone, polytheretherketone, polyimide, phenol-formaldehyde, and bismaleimide.

18 . The fiber of claim 16 , wherein the NPs are used to synthesize a nanostructure prior to incorporation into the composite.

19 . A method comprising applying the formulation of claim 1 to a fiber during manufacture of the fiber, and removing the solvent from the applied formulation.

20 . The method of claim 19 , further comprising incorporating the fiber into a fiber tow.

21 . The method of claim 19 , further comprising incorporating the fiber into a matrix material to form a composite.

22 . The method of claim 21 , further comprising growing carbon nanotubes on the fiber prior to the step of incorporating the fiber into the matrix material to form the composite.

23 . A method comprising adding a solution of transition metal NPs to a sizing-coated fiber and baking the sizing, wherein the solution of NPs is added before baking the sizing.

24 . The method of claim 23 , further comprising incorporating the fiber into a matrix material to form a composite.

25 . The method of claim 24 , further comprising growing carbon nanotubes on the fiber prior to the step of incorporating the fiber into the matrix material to form the composite.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2010
From: LOCKHEED MARTIN CORPORATION
To: APPLIED NANOSTRUCTURED SOLUTIONS, LLC
Reel/Frame 024349/0133 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2009
From: WAICUKAUSKI, JAMES A.; SHAH, TUSHAR K.; GALLO, CHRISTINA; MALECKI, HARRY C.; ALBERDING, MARK R.; LEDFORD, JORDAN T.
To: LOCKHEED MARTIN CORPORATION
Reel/Frame 023210/0440 →