Nickel-Based Superalloys and Articles
Abstract
Rhenium-free nickel based alloys are provided. More particularly, the alloys comprise preferred levels and ratios of elements so as to achieve good high temperature strength of both gamma matrix phase and gamma prime precipitates, as well as good environmental resistance, without using rhenium. When cast and directionally solidified into single crystal form, the alloys exhibit oxidation resistance better than or comparable to rhenium-bearing single-crystal alloys, and creep rupture life comparable to rhenium-bearing single-crystal alloys. Further, the alloys can be processed by directional solidification into articles in single crystal form or columnar structure comprising fine dendrite arm spacing, e.g., less than 400 μm, if need be, so that further improvements in mechanical properties in the articles can be seen.
Claims
exact text as granted — not AI-modified1 . A rhenium-free, nickel-based alloy comprising from about 5.2 wt % to about 12 wt % cobalt (Co), from about 4.0 wt % to about 10 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.0 wt % to about 11 wt % tungsten (W), from about 4.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.5 wt % titanium (Ti), from about 4.0 wt % to about 8.0 wt % tantalum (Ta), from about 0.5 wt % to about 1.7 wt % hafnium (Hf), up to about 0.1 wt % carbon (C), up to about 0.01 wt % boron (B), with the remainder being nickel (Ni) and incidental impurities, and wherein:
Al+0.15Ta is from about 5.9 wt % to about 8.5 wt %; Al+0.15Hf is from about 5.2 wt % to about 7.0 wt %; and Mo+0.52W is from about 4.2 wt % to about 6.5 wt %.
2 . The nickel-based alloy of claim 1 , comprising from about 5.5 wt % to about 10 wt % cobalt (Co), from about 6.0 wt % to about 8.5 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.4 wt % to about 10.6 wt % tungsten (W), from about 4.5 wt % to about 6.0 wt % aluminum (Al), from about 0 wt % to about 1.3 wt % titanium (Ti), from about 4.4 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
3 . The nickel-based alloy of claim 2 , comprising from about 6 wt % to about 9.5 wt % cobalt (Co), from about 6.5 wt % to about 8 wt % chromium (Cr), from about 1.0 wt % to about 2.7 wt % molybdenum (Mo), from about 6 wt % to about 7.5 wt % tungsten (W), from about 4.7 wt % to about 5.7 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5 wt % to about 7.0 wt % tantalum (Ta), and from about 1.0 wt % to about 1.6 wt % hafnium (Hf).
4 . The nickel-based alloy of claim 1 , comprising from about 8.0 wt % to about 11 wt % cobalt (Co), from about 6.0 wt % to about 8.0 wt % chromium (Cr), from about 1 wt % to about 2.5 wt % molybdenum (Mo), from about 7.0 wt % to about 9.0 wt % tungsten (W), from about 5.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5.0 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
5 . The nickel-based alloy of claim 4 , comprising from about 9.0 wt % to about 10 wt % cobalt (Co), from about 6.5 wt % to about 7.5 wt % chromium (Cr), from about 1.5 wt % to about 2.5 wt % molybdenum (Mo), from about 8.0 wt % to about 9.0 wt % tungsten (W), from about 5.5 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 0.5 wt % titanium (Ti), from about 5.0 wt % to about 6.5 wt % tantalum (Ta), and from about 1 wt % to about 1.5 wt % hafnium (Hf).
6 . An article, comprising a rhenium-free, nickel-based alloy comprising from about 5.2 wt % to about 12 wt % cobalt (Co), from about 4.0 wt % to about 10 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.0 wt % to about 11 wt % tungsten (W), from about 4.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.5 wt % titanium (Ti), from about 4.0 wt % to about 8.0 wt % tantalum (Ta), from about 0.5 wt % to about 1.7 wt % hafnium (Hf), up to about 0.1 wt % carbon (C), up to about 0.01 wt % boron (B), with the remainder being nickel (Ni) and incidental impurities, wherein:
Al+0.15Ta is from about 5.9 wt % to about 8.5 wt %; Al+0.15Hf is from about 5.2 wt % to about 7.0 wt %; Mo+0.52W is from about 4.2 wt % to about 6.5 wt %.
7 . The article of claim 6 , wherein the nickel-based alloy comprises from about 5.5 wt % to about 10 wt % cobalt (Co), from about 6.0 wt % to about 8.5 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.4 wt % to about 10.6 wt % tungsten (W), from about 4.5 wt % to about 6.0 wt % aluminum (Al), from about 0 wt % to about 1.3 wt % titanium (Ti), from about 4.4 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
8 . The article of claim 7 , wherein the nickel-based alloy comprises from about 6 wt % to about 9.5 wt % cobalt (Co), from about 6.5 wt % to about 8 wt % chromium (Cr), from about 1.0 wt % to about 2.7 wt % molybdenum (Mo), from about 6 wt % to about 7.5 wt % tungsten (W), from about 4.7 wt % to about 5.7 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5 wt % to about 7.0 wt % tantalum (Ta), and from about 1.0 wt % to about 1.6 wt % hafnium (Hf).
9 . The article of claim 6 , wherein the nickel-based alloy comprises from about 8.0 wt % to about 11 wt % cobalt (Co), from about 6.0 wt % to about 8.0 wt % chromium (Cr), from about 1 wt % to about 2.5 wt % molybdenum (Mo), from about 7.0 wt % to about 9.0 wt % tungsten (W), from about 5.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5.0 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
10 . The article of claim 9 , wherein the nickel-based alloy comprises from about 9.0 wt % to about 10 wt % cobalt (Co), from about 6.5 wt % to about 7.5 wt % chromium (Cr), from about 1.5 wt % to about 2.5 wt % molybdenum (Mo), from about 8.0 wt % to about 9.0 wt % tungsten (W), from about 5.5 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 0.5 wt % titanium (Ti), from about 5.0 wt % to about 6.5 wt % tantalum (Ta), and from about 1 wt % to about 1.5 wt % hafnium (Hf).
11 . The article of claim 6 , wherein the alloy comprises a dendritic structure.
12 . The article of claim 11 , wherein the dendritic structure comprises primary dendrite arms having a nominal spacing less than about 400 micrometers.
13 . The article of claim 12 , wherein the alloy is a single crystal.
14 . The article of claim 13 , wherein the alloy comprises a directionally solidified microstructure.
15 . The article of claim 6 , wherein the article is a component of a gas turbine assembly.
16 . The article of claim 15 , wherein the article comprises a blade, vane, shroud, or combustor component.
17 . A method for manufacturing an article comprising casting into a mold a rhenium-free, nickel-based alloy comprising from about rhenium-free, nickel-based alloy comprising from about 5.2 wt % to about 12 wt % cobalt (Co), from about 4.0 wt % to about 10 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.0 wt % to about 11 wt % tungsten (W), from about 4.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.5 wt % titanium (Ti), from about 4.0 wt % to about 8.0 wt % tantalum (Ta), from about 0.5 wt % to about 1.7 wt % hafnium (Hf), up to about 0.1 wt % carbon (C), up to about 0.01 wt % boron (B), with the remainder being nickel (Ni) and incidental impurities, wherein:
Al+0.15Ta is from about 5.9 wt % to about 8.5 wt %;
Al+0.15Hf is from about 5.2 wt % to about 7.0 wt %;
Mo+0.52W is from about 4.2 wt % to about 6.5 wt %; and wherein the article is cast and directionally solidified into a single crystal form or columnar structure and so that the primary dendrite arm spacing within the article is less than about 400 μm.
18 . The method of claim 17 , wherein the nickel-based alloy comprises from about 5.5 wt % to about 10 wt % cobalt (Co), from about 6.0 wt % to about 8.5 wt % chromium (Cr), from about 0 wt % to about 3.0 wt % molybdenum (Mo), from about 5.4 wt % to about 10.6 wt % tungsten (W), from about 4.5 wt % to about 6.0 wt % aluminum (Al), from about 0 wt % to about 1.3 wt % titanium (Ti), from about 4.4 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
19 . The method of claim 18 , wherein the nickel-based alloy comprises from about 6 wt % to about 9.5 wt % cobalt (Co), from about 6.5 wt % to about 8 wt % chromium (Cr), from about 1.0 wt % to about 2.7 wt % molybdenum (Mo), from about 6 wt % to about 7.5 wt % tungsten (W), from about 4.7 wt % to about 5.7 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5 wt % to about 7.0 wt % tantalum (Ta), and from about 1.0 wt % to about 1.6 wt % hafnium (Hf).
20 . The method of claim 17 , wherein the nickel-based alloy comprises from about 8.0 wt % to about 11 wt % cobalt (Co), from about 6.0 wt % to about 8.0 wt % chromium (Cr), from about 1 wt % to about 2.5 wt % molybdenum (Mo), from about 7.0 wt % to about 9.0 wt % tungsten (W), from about 5.0 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 1.0 wt % titanium (Ti), from about 5.0 wt % to about 7.0 wt % tantalum (Ta), and from about 0.7 wt % to about 1.7 wt % hafnium (Hf).
21 . The method of claim 20 , wherein the nickel-based alloy comprises from about 9.0 wt % to about 10 wt % cobalt (Co), from about 6.5 wt % to about 7.5 wt % chromium (Cr), from about 1.5 wt % to about 2.5 wt % molybdenum (Mo), from about 8.0 wt % to about 9.0 wt % tungsten (W), from about 5.5 wt % to about 6.5 wt % aluminum (Al), from about 0 wt % to about 0.5 wt % titanium (Ti), from about 5.0 wt % to about 6.5 wt % tantalum (Ta), and from about 1 wt % to about 1.5 wt % hafnium (Hf).Join the waitlist — get patent alerts
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