IP Library Granted Patent US 7,563,503
Granted Patent B2
US 7,563,503 · App. 10/755,856 · Granted Jul 21, 2009

Coatings, materials, articles, and methods of making thereof

Assignees: The University of Connecticut; US Nanocorp, Inc.; Inframat Corporation
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Quick Facts
Patent No.
US 7,563,503
App. No.
10/755,856
Granted
Jul 21, 2009
Kind
B2
Abstract

A thermal spray process comprises injecting precursor solution droplets into the hot zone of the thermal spray flame. Also described are materials resulting from the process.

Claims (34)

1. A material comprising: a metal oxide, metal carbide, metal nitride, metal silicide, semiconductor, stabilized or partially stabilized ceramic, or a combination of one or more of the foregoing,

wherein splats having an average diameter of less than or equal to about 2 micrometers are present in the material, and

wherein at least one inter pass boundary having a porosity of about 20 to about 95 volume percent, based on a total volume of the inter pass boundary, is present in the material.

2. The material of claim 1 wherein the splats have a thickness less than or equal to about 800 nanometers.

3. The material of claim 1 , wherein all the splats are less than 5 micrometers in diameter.

4. The material of claim 1 , wherein the material has a material porosity of about 1 to about 50 volume percent, based on the total volume of the material.

5. The material of claim 4 wherein the material porosity results from pores that are micrometer sized, submicron sized, nanometer sized, or a combination of two or more of the foregoing.

6. The material of claim 4 wherein the material porosity is greater than or equal to about 8 volume percent and the material porosity is three dimensional.

7. The material of claim 1 wherein the inter pass boundary has a thickness of about 0.1 to about 2 micrometers.

8. The material of claim 1 wherein the material coats a substrate and there are no inter pass boundaries within about 50 micrometers of an interface between the substrate and the material.

9. The material of claim 1 wherein one or more vertical cracks are present in the material.

10. The material of claim 9 wherein the vertical cracks have lengths of about 0.5 to about 1.0 times the thickness of the material.

11. The material of claim 9 wherein the vertical cracks are spaced at a distance up to two times the thickness of the material.

12. The material of claim 9 , wherein the material has a porosity of about 1 to about 50 volume percent, based on the total volume of the material.

13. The material of claim 1 , wherein the material has a thickness of about 1 micrometers to about 5 millimeters.

14. A wear resistant coating, corrosion resistance coating, thermal barrier coating, dielectric coating, catalytic film, electrolyte layer, electrode layer, thick metal oxide coating, solid conductive layer, soft magnetic film, semi-conductor film, sensor or activator comprising the material of claim 1 .

15. The material of claim 1 , wherein the metal comprises aluminum, boron, sodium, potassium, lithium, calcium, barium, and magnesium chromium, iron, nickel, zinc, niobium, titanium, zirconium, scandium, yttrium, lanthanum, cerium, gadolinium, praseodymium, neodymium, samarium, terbium, ytterbium or a combinations comprising one or more of the foregoing metals.

16. The material of claim 1 , wherein the stabilized ceramic comprises zirconia stabilized with yttria, zirconia stabilized with ceria, zirconia stabilized with scandia, zirconia stabilized with calcia, zirconia stabilized with magnesia, zirconia stabilized with gadolinia, zirconia stabilized with lanthia, zirconia stabilized with samaria, zirconia stabilized with neodymium or zirconia stabilized with ytterbia.

17. A thermal barrier coating comprising: a metal oxide, metal carbide, metal nitride, metal silicide, stabilized or partially stabilized ceramic, or a combination of one or more of the foregoing,

wherein splats having an average diameter of less than or equal to about 2 micrometers are present in the thermal barrier coating,

wherein at least one inter pass boundary having a porosity of about 20 to about 95 volume percent, based on a total volume of the inter pass boundary, is present in the thermal barrier coating,

wherein vertical cracks are present in the thermal barrier coating, and

wherein the thermal barrier coating has a thickness of greater than about 125 micrometers and a coating porosity of about 15 to about 40 volume %, based on the total volume of the coating.

18. The thermal barrier coating of claim 17 , wherein the stabilized ceramic comprises ZrO 2 and 7 percent by weight Y 2 O 3 based on the total weight of the coating.

19. The thermal barrier coating of claim 17 wherein the inter pass boundary has a thickness of about 0.1 to about 2 micrometers.

20. The thermal barrier coating of claim 17 , wherein the splats have a thickness less than or equal to about 800 nanometers.

21. The thermal barrier coating of claim 17 , wherein all the splats are less than 5 micrometers in diameter.

22. The thermal barrier coating of claim 17 wherein the coating porosity results from pores that are micrometer sized, submicron sized, nanometer sized or a combination of two or more of the foregoing.

23. The thermal barrier coating of claim 17 wherein the coating porosity is three dimensional.

24. The thermal barrier coating of claim 17 wherein the vertical cracks have lengths of about 0.5 to about 1.0 times the thickness of the material.

25. The thermal barrier coating of claim 17 wherein the vertical cracks are spaced at a distance up to two times the thickness of the thermal barrier coating.

26. The thermal barrier coating of claim 17 , wherein the metal comprises aluminum, boron, sodium, potassium, lithium, calcium, barium, and magnesium chromium, iron, nickel, zinc, niobium, titanium, zirconium, scandium, yttrium, lanthanum, cerium, gadolinium, praseodymium, neodymium, samarium, terbium, ytterbium or a combinations comprising one or more of the foregoing metals.

27. The thermal barrier coating of claim 17 , wherein the stabilized ceramic comprises zirconia stabilized with yttria, zirconia stabilized with ceria, zirconia stabilized with scandia, zirconia stabilized with calcia, zirconia stabilized with magnesia, zirconia stabilized with gadolinia, zirconia stabilized with lanthia, zirconia stabilized with samaria, zirconia stabilized with neodymium or zirconia stabilized with ytterbia.

28. A coating or bulk structural material comprising at least two alternating layers wherein each layer comprises a metal oxide, metal carbide, metal nitride, metal silicide, stabilized or partially stabilized ceramic, or a combination of one or more of the foregoing, wherein splats having an average diameter of less than or equal to about 2 micrometers and no vertical cracks or inter pass boundaries are present in one layer, wherein about 80 to about 95% of the splats are splats having an average diameter of less than or equal to about 2 micrometers, and wherein inter pass boundaries and optionally vertical cracks are present in another layer.

Assignments (3)
CONFIRMATORY LICENSE Recorded Jun 27, 2012
From: CONNECTICUT, UNIVERSITY OF
To: NAVY, SECRETARY OF THE UNITED STATES OF AMERICA
Reel/Frame 028467/0009 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2004
From: GELL, MAURICE; JORDAN, ERIC; PADTURE, NITIN P.; XIE, LIANGDE
To: UNIVERSITY OF CONNECTICUT, THE
Reel/Frame 015166/0062 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2004
From: MA, XINQING; XIAO, DANNY; DECARMINE, ANTHONY
To: US NANOCORP, INC.; INFRAMAT CORPORATION
Reel/Frame 015166/0112 →
Continuity (2)
Provisional Application 6043928800 · Jan 10, 2003
Related Publication 20040229031A1 · Nov 18, 2004