Claims
- 1. A curable film-forming composition that on curing produces an abrasion resistant coating, comprising in a medium (i) 10 to 90 percent by weight based on the total weight of resin solids in the film-forming composition of a crosslinking agent; (ii) 10 to 90 percent by weight based on the total weight of resin solids in the film-forming composition of a polymer containing a plurality of functional groups reactive with the crosslinking agent; and (iii) 20 to 85 percent by volume based on the total volume of the film-forming composition of particles having a mean particle size less than 100 nm, and having an affinity for the medium sufficient to keep the particles suspended therein, said affinity of the particles for the medium being greater than the affinity of the particles for each other, thereby preventing agglomeration of the particles within the medium.
- 2. The film-forming composition of claim 1 wherein the polymer is present in the film-forming composition in amounts of 25 to 75 percent by weight, based on the total weight of resin solids in the film-forming composition.
- 3. The film-forming composition of claim 1 wherein the crosslinking agent is present in the film-forming composition in amounts of 25 to 75 percent by weight, based on the total weight of resin solids in the film-forming composition.
- 4. The film-forming composition of claim 1 wherein the particles are present in the film-forming composition in amounts of 30 to 70 percent by volume based on the total volume of the film-forming composition.
- 5. The film-forming composition of claim 1 wherein the particles comprise 10 to 70 percent by weight, based on the total weight of the particles, aluminum oxide and 30 to 90 percent by weight, based on the total weight of the particles, silica.
- 6. The film forming composition of claim 1 wherein the particles (iii) have an index of refraction (n) that is greater than or less than that of the mixture of crosslinking agent (i) and polymer (ii) by an amount less than Δnmax, wherein Δnmax is determined by the equation:
- 7. The film-forming composition of claim 6 wherein H is less than 133.
- 8. The film-forming composition of claim 7 wherein H is less than 41.
- 9. The film-forming composition of claim 1 wherein the particles have a mean particle size less than 50 nm.
- 10. The film-forming composition of claim 9 wherein the particles have a mean particle size less than 20 nm.
- 11. The film-forming composition of claim 1 wherein the particles have an index of refraction between 1.50 and 1.60.
- 12. The film-forming composition of claim 1 wherein the particles are substantially free of hydroxyl functional groups on the particle surface.
- 13. The film-forming composition of claim 1 wherein the particles are substantially free of surface treatment.
- 14. The film-forming composition of claim 1 wherein the particles are substantially spherical.
- 15. The film-forming composition of claim 1 wherein the particles are substantially colorless.
- 16. The film-forming composition of claim 1 wherein the particles are prepared by a process comprising: (a) introducing reactants into a reaction chamber; (b) rapidly heating the reactants by means of a plasma to a selected reaction temperature sufficient to yield a gaseous reaction product; (c) rapidly cooling the gaseous reaction product by passing the gaseous reaction product through a restrictive convergent-divergent nozzle or contacting the gaseous reaction product with a cool surface or quenching gas; and (d) condensing the gaseous reaction product to yield ultrafine solid particles.
- 17. The film-forming composition of claim 1 wherein the particles are prepared by a process comprising: (a) introducing a reactant stream into one axial end of a reaction chamber; (b) rapidly heating the reactant stream by means of a plasma to a selected reaction temperature as the reactant stream flows axially through the reaction chamber, yielding a gaseous reaction product; (c) passing the gaseous reaction product through a restrictive convergent-divergent nozzle arranged coaxially within the end of the reaction chamber to rapidly cool the gaseous reaction product adiabatically and isentropically as the gaseous reaction product flows through the nozzle, retaining a desired end product within the flowing gaseous stream; and (d) subsequently cooling and slowing the velocity of the desired end product exiting from the nozzle, yielding ultrafine solid particles.
- 18. The film-forming composition of claim 1 wherein when the composition is a liquid and is applied to a vertically oriented substrate having one or more punched holes with a diameter of 0.25 in (0.635 cm), and heated to a temperature and for a time sufficient to effect cure, the average sag measured from the bottom of a punched hole is less than that of a similar cured coating without the particles.
- 19. The film-forming composition of claim 18 wherein the particles are substantially monodisperse with respect to particle size distribution.
- 20. A multi-component composite coating composition comprising a pigmented film-forming composition serving as a base coat and a clear film-forming composition serving as a transparent topcoat over the base coat wherein the transparent topcoat is a curable film-forming composition comprising in a medium (i) 10 to 90 percent by weight based on the total weight of resin solids in the clear film-forming composition of a crosslinking agent; (ii) 10 to 90 percent by weight based on the total weight of resin solids in the clear film-forming composition of a polymer containing a plurality of functional groups reactive with the crosslinking agent; and (iii) 20 to 85 percent by volume based on the total volume of the clear film-forming composition of particles having a mean particle size less than 100 nm, and having an affinity for the medium sufficient to keep the particles suspended therein, said affinity of the particles for the medium being greater than the affinity of the particles for each other, thereby preventing agglomeration of the particles within the medium.
- 21. The multi-component composite coating composition of claim 20 wherein the polymer is present in the clear film-forming composition in amounts of 25 to 75 percent by weight, based on the total weight of resin solids in the clear film-forming composition.
- 22. The multi-component composite coating composition of claim 20 wherein the crosslinking agent is present in the clear film-forming composition in amounts of 25 to 75 percent by weight, based on the total weight of resin solids in the clear film-forming composition.
- 23. The multi-component composite coating composition of claim 20 wherein the particles are present in the clear film-forming composition in amounts of 30 to 70 percent by volume, based on the total volume of the clear film-forming composition.
- 24. The multi-component composite coating composition of claim 20 wherein the particles (iii) have an index of refraction (n) that is greater than or less than that of the mixture of crosslinking agent (i) and polymer (ii) by an amount less than Δnmax, wherein Δnmax is determined by the equation:
- 25. The multi-component composite coating composition of claim 24 wherein H is less than 133.
- 26. The multi-component composite coating composition of claim 25 wherein H is less than 41.
- 27. The, multi-component composite coating composition of claim 20 wherein the particles comprise 10 to 70 percent by weight, based on the total weight of the particles, aluminum oxide and 30 to 90 percent by weight, based on the total weight of the particles, silica.
- 28. The multi-component composite coating composition of claim 20 wherein the particles have a mean particle size less than 50 nm.
- 29. The multi-component composite coating composition of claim 28 wherein the particles have a mean particle size less than 20 nm.
- 30. The multi-component composite coating composition of claim 20 wherein the particles have an index of refraction between 1.50 and 1.60.
- 31. The multi-component composite coating composition of claim 20 wherein the particles are substantially free of hydroxyl functional groups on the particle surface.
- 32. The multi-component composite coating composition of claim 20 wherein the particles are substantially free of surface treatment.
- 33. The multi-component composite coating composition of claim 20 wherein the particles are substantially spherical.
- 34. The multi-component composite coating composition of claim 20 wherein the particles are substantially colorless.
- 35. The multi-component composite coating composition of claim 20 wherein the particles are prepared by a process comprising: (a) introducing reactants into a reaction chamber; (b) rapidly heating the reactants by means of a plasma to a selected reaction temperature sufficient to yield a gaseous reaction product; (c) rapidly cooling the gaseous reaction product by passing the gaseous reaction product through a restrictive convergent-divergent nozzle or contacting the gaseous reaction product with a cool surface or quenching gas; and (d) condensing the gaseous reaction product to yield ultrafine solid particles.
- 36. The multi-component composite coating composition of claim 20 wherein the particles are prepared by a process comprising: (a) introducing a reactant stream into one axial end of a reaction chamber; (b) rapidly heating the reactant stream by means of a plasma to a selected reaction temperature as the reactant stream flows axially through the reaction chamber, yielding a gaseous reaction product; (c) passing the gaseous reaction product through a restrictive convergent-divergent nozzle arranged coaxially within the end of the reaction chamber to rapidly cool the gaseous reaction product adiabatically and isentropically as the gaseous reaction product flows through the nozzle, retaining a desired end product within the flowing gaseous stream; and (d) subsequently cooling and slowing the velocity of the desired end product exiting from the nozzle, yielding ultrafine solid particles.
- 37. A coated substrate in which the curable coating composition of claim 1 is applied to the substrate and cured to form a cured coating; the cured coating having a thickness of at least 5 microns.
- 38. A coated substrate in which the multi-component composite coating composition of claim 20 is applied to the substrate and cured to form a cured coating; the cured coating having a thickness of at least 5 microns.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority under 35 U.S.C. § 119 to Provisional Application Serial No. 60/358,282, filed Feb. 20, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60358282 |
Feb 2002 |
US |