Claims
- 1. A protective coating resistant to corrosion consisting essentially of the following elements (in percent by weight):
- 25 to 40% nickel; 25 to 32% chromium; 7 to 9% aluminum; 0.5 to 2% silicon; 0.3 to 1% of at least one reactive element of the rare earths; selectively from 0 to 15% of at least one of the elements of the group consisting of rhenium, platinum, palladium, zirconium, manganese, tungsten, titanium, molybdenum, niobium, iron, hafnium, and tantalum, the total share of the elements of the group being from 0 to a maximum of 15%; impurities; and a remainder of at least 5% cobalt; and
- the coating applied on a nickel-based or cobalt-based superalloy substrate defining a combination comprising the coating and the substrate having a ductile brittle transition temperature below 600.degree. C.
- 2. The protective coating according to claim 1, wherein the protective coating and the component have a ductile brittle transition temperature below 500.degree. C.
- 3. The protective coating according to claim 1, wherein the ductile brittle transition temperature is lower than approximately 450.degree. C.
- 4. The protective coating according to claim 1, wherein the ductile brittle transition temperature is lower than approximately 400.degree. C.
- 5. The protective coating according to claim 1, wherein the nickel is 25 to 35% by weight, the chromium is 25 to 31% by weight, the aluminum is 7.5 to 8.5% by weight, and the reactive element of the rare earths is yttrium.
- 6. The protective coating according to claim 5, wherein the nickel is approximately 30% by weight, the chromium is approximately 28% by weight, the aluminum is approximately 8% by weight, the silicon is approximately 0.7% by weight and the yttrium is approximately 0.6% by weight.
- 7. The protective coating according to claim 1, wherein the superalloy is a nickel-based superalloy consisting essentially of the following elements (in percent by weight): 0.08 to 0.1% carbon; 12 to 16% chromium; 8 to 10% cobalt; 1.5 to 2% molybdenum; 2.5 to 4% tungsten; 1.5 to 4.5% tantalum; 0 to 1% titanium; 0 to 0.1% zirconium; 0 to 1% hafnium; and a balance of nickel.
- 8. The protective coating according to claim 1, wherein the superalloy is a nickel-based superalloy consisting essentially of the following elements (in percent by weight): 0.08 to 0.1% carbon; 12 to 16% chromium; 8 to 10% cobalt; 1.5 to 2% molybdenum; 2.5 to 4% tungsten; 1.5 to 4.5% tantalum; 0 to 1% titanium; 0 to 0.1% zirconium; 0 to 1% hafnium, a trace amount of boron, and a balance of nickel.
- 9. The protective coating according to claim 1, wherein the coating has a thickness of between 200 .mu.m and 300 .mu.m.
- 10. The protective coating according to claim 1, wherein the superalloy is a nickel-based superalloy consisting essentially of the following elements (in percent by weight): 0.07 to 0.1% carbon; 12 to 16% chromium; 8 to 10% cobalt; 1.5 to 2% molybdenum; 2.5 to 4% tungsten; 1.5 to 5% tantalum; 0 to 1% niobium; 3 to 4% aluminum; 3.5 to 5% titanium; 0 to 0.1% zirconium; 0 to 1% hafnium; a trace amount of boron, and a balance of nickel.
- 11. A protective coating on a component formed of a nickel-based or cobalt-based superalloy, the protective coating comprising (in percent by weight):
- 25 to 40% nickel; 28 to 32% chromium; 7 to 9% aluminum; 0.5 to 2% silicon; 0.3 to 1% of at least one reactive element of the rare earths; 1 to 15% rhenium; impurities; and a remainder of at least 5% cobalt.
- 12. The protective coating according to claim 11, wherein the addition of rhenium is approximately 7% by weight.
- 13. A protective coating resistant to corrosion consisting essentially of the following elements (in percent by weight):
- 25 to 40% nickel; 28 to 32% chromium; 7 to 9% aluminum; 0.5 to 2% silicon; 0.3 to 1% of at least one reactive element of the rare earths; selectively from 0 to 15% of at least one of the elements of the group consisting of rhenium, platinum, palladium, zirconium, manganese, tungsten, titanium, molybdenum, niobium, iron, hafnium, and tantalum, the total share of the elements of the group being from 0 to a maximum of 15%; impurities; and a remainder of at least 5% cobalt; and
- the coating applied on a nickel-based or cobalt-based superalloy substrate defining a combination comprising the coating and the substrate having a ductile brittle transition temperature below 600.degree. C.
- 14. A protective coating composition resistant to corrosion consisting essentially of the following elements (in percent by weight): approximately 30% nickel; approximately 28% chromium; approximately 8% aluminum; approximately 0.7% silicon; 0.6% yttrium; selectively from 0 to 15% of at least one of the elements selected from the group consisting of rhenium, platinum, palladium, zirconium, manganese, tungsten, titanium, molybdenum, niobium, iron, hafnium, and tantalum; impurities; and a remainder of at least 5% cobalt.
- 15. A protective coating composition resistant to corrosion consisting essentially of the following elements (in percent by weight): approximately 30% nickel; approximately 25 to 31% chromium; approximately 8% aluminum; approximately 0.7% silicon; 0.3 to 1% of at least one reactive element of the rare earths; from 0 to 15% of a composition consisting of at least one of the elements selected from the group consisting of rhenium, platinum, palladium, zirconium, manganese, tungsten, titanium, molybdenum, niobium, iron, hafnium, and tantalum; impurities; and a remainder of at least 5% cobalt.
CROSS-REFERNECE TO RELATED APPLICATION
This application is a continuation of Ser. No. 08/411,459, filed Mar. 28, 1995, which is a continuation-in-part of application Ser. No. 08/082,602, filed Jun. 25, 1993, now Pat. No. 5,401,307; which is a continuation-in-part of application Ser. No. 07/566,144, filed Aug. 10, 1990, now abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (10)
Number |
Date |
Country |
0025263 |
Mar 1981 |
EPX |
0194392 |
Sep 1986 |
EPX |
2463192 |
Feb 1981 |
FRX |
2511042 |
Feb 1983 |
FRX |
729862 |
Oct 1943 |
DEX |
2526683 |
Jan 1976 |
DEX |
2355674 |
Apr 1976 |
DEX |
1758010 |
Dec 1978 |
DEX |
2095700 |
Oct 1982 |
GBX |
2103656 |
Feb 1983 |
GBX |
Non-Patent Literature Citations (3)
Entry |
"The Durability and Performance of Coatings in Gas . . . ", Materials Science and engineering 88, 1987, no month, pp. 321-330. |
"Some effects of structure and . . . " Boone et al., J. Vac Sci, Technology, vol. 11, No. 4, (Jul./Aug. 1974) pp. 641-646. |
"Die Zahigkeit metallischer . . . ", Schmidt et al., Z. Werkstofftechnik 15, 1984, pp. 73-82 [No Month]. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
411459 |
Mar 1995 |
|
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
82602 |
Jun 1993 |
|
Parent |
566144 |
Aug 1990 |
|