US2006239852A1PendingUtilityA1
Nickel alloy composition
Est. expiryNov 18, 2020(expired)· nominal 20-yr term from priority
F01D 5/20C22C 19/058B23P 6/007B23K 35/304F01D 5/28C22C 19/057
33
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Claims
Abstract
A nickel alloy composition, having particular utility for forming an oxidation resistant blade tip on a turbine blade, preferably has a composition substantially as defined by the nominal composition Cr 4.5 wt %; Al 6 wt %; Co 4 wt %; Ta 6 wt %; Re 4 wt %; Hf 0.15 wt %; C 0.05 wt %; Si 0.1 wt %; B 0.005 wt %; W 2 wt %; La 0.003-0.005 wt %; and Y 0.003 to 0.005 wt %; the remainder being nickel.
Claims
exact text as granted — not AI-modified1 . A nickel alloy composition, substantially as defined by the nominal composition: Cr 4.5 wt %; Al 6 wt %; Co 4 wt %; Ta 6 wt %; Re 4 wt %; Hf 0.15 wt %; C 0.05 wt %; Si 0.1 wt %; B 0.005 wt %; W 2 wt %; La 0.003-0.005 wt %; and Y 0.003-0.005 wt %; the remainder being nickel;
2 . A nickel alloy composition comprising about 4 to about 8 wt % Cr, about 5 to about 6.5 wt % Al, about 2 to about 6 wt % Co, about 4 to about 8 wt % Ta, about 3 to about 5 wt % Re, about 0.1 to about 0.5 wt % Hf, about 0.04 to about 0.1 wt % C, about 0.05 to about 0.3 wt % Si and about 0.003 to about 0.01 wt % B, about 0.003 to about 0.008 wt % La and about 0.003 to about 0.008 wt % Y, with at least the major part of the balance being nickel;
wherein the composition is free of Mo, Ti, V and Nb.
3 . A nickel alloy composition as claimed in claim 2 , further including one or more element selected from up to about 5 wt % W and up to about 5 wt % Pt.
wherein the composition is free of Mo, Ti, V and Nb.
4 . A method for forming a blade tip of a gas turbine blade, particularly a blade tip of a gas turbine propulsion engine, the method comprising applying a nickel alloy composition as claimed in claim 2 , to the tip of the gas turbine blade.
5 . A method as claimed in claim 4 , wherein the application of the nickel alloy composition is carried out by a laser cladding or weld deposition process.
6 . A method for repairing a metal article, the method comprising applying a nickel alloy composition as claimed in claim 2 , to a damaged portion of the metal article to repair the same.
7 . A method as claimed in claim 6 , wherein the application of the nickel alloy composition is carried out by a laser cladding or a weld deposition process.
8 . A method as claimed in claim 6 , wherein the metal article is a cast metal turbine component.
9 . A method as claimed in claim 8 , wherein the cast metal turbine component is a turbine blade, a turbine shroud segment or a nozzle guide vane.
10 . A method for forming a blade tip or blade tip structure of a gas turbine blade, or for forming a repair structure to repair a cast metal turbine component, the method comprising laser cladding or weld depositing a nickel alloy composition as claimed in claim 2 , to the tip of the gas turbine blade or to the cast metal turbine component, to a depth in excess of the desired blade tip or structure, and subsequently machining the nickel alloy composition to reduce the depth thereof to form the desired blade tip or structure.
11 . A method as claimed in claim 10 , wherein the blade tip comprises a squealer.
12 . A method as claimed in claim 10 , wherein the nickel alloy composition is applied by laser cladding.
13 . A method as claimed in claim 12 , wherein the blade tip comprises a squealer.Join the waitlist — get patent alerts
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