Gas turbine part provided with a protective coating
View Patent ↗A gas turbine part comprises a superalloy metal substrate, a bonding underlayer formed on the substrate and comprising an intermetallic compound of aluminum, nickel, and platinum, and a ceramic outer layer anchored on the alumina film formed on the bonding underlayer. The bonding underlayer essentially comprises an Ni—Pt—Al ternary system constituted by an aluminum-enriched α-NiPt type structure, in particular an Ni—Pt—Al ternary system having a composition Ni z Pt y Al x in which z, y, and x are such that 0.05≦z≦0.40, 0.30≦y≦0.60, and 0.15≦x≦0.40.
1. A gas turbine part comprising a superalloy metal substrate, a bonding underlayer formed on the substrate and comprising an intermetallic compound comprising aluminum, nickel, and platinum, and a ceramic outer coating anchored on a film of alumina formed on the bonding underlayer,
wherein a majority of the bonding underlayer by atomic percentage is formed of a Ni—Pt—Al ternary system constituted by an aluminum-enriched α-NiPt structure.
2. A gas turbine part according to claim 1 , wherein the Ni—Pt—Al ternary system has a composition Ni z Pt y Al x in which z, y, and x are such that 0.05≦z≦0.40, 0.30≦y≦0.60, and 0.15≦x≦0.40.
3. A gas turbine part according to claim 1 , wherein the bonding underlayer further comprises at least one additional metal other than aluminum, nickel, and platinum.
4. A gas turbine part according to claim 3 , wherein the at least one additional metal is selected from the group consisting of cobalt and chromium.
5. A gas turbine part according to claim 3 , wherein the at least one additional metal comprises at least one metal selected from the group consisting of palladium, ruthenium, and rhenium.
6. A gas turbine part according to claim 1 , wherein the bonding underlayer further comprises at least one reactive element selected from the group consisting of yttrium, zirconium, hafnium, and the lanthanides.
7. A gas turbine part according to claim 1 , wherein the thickness of the bonding underlayer lies in the range 2 μm to 120 μin.
8. A gas turbine part according to claim 7 , wherein the thickness of the bonding underlayer is less than 40 μin.
9. A gas turbine part according to claim 7 , wherein the thickness of the bonding underlayer is less than 20 μin.