Wear resistance of a high-temperature component imparted by a cobalt coating
10100651 ยท 2018-10-16
Assignee
Inventors
Cpc classification
B32B15/017
PERFORMING OPERATIONS; TRANSPORTING
F01D5/288
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D5/282
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B15/01
PERFORMING OPERATIONS; TRANSPORTING
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
F05D2300/175
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C23C28/34
CHEMISTRY; METALLURGY
B32B15/013
PERFORMING OPERATIONS; TRANSPORTING
B32B9/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B15/00
PERFORMING OPERATIONS; TRANSPORTING
B32B7/02
PERFORMING OPERATIONS; TRANSPORTING
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
F01D5/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B32B15/04
PERFORMING OPERATIONS; TRANSPORTING
B32B15/01
PERFORMING OPERATIONS; TRANSPORTING
B32B9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A coated high-temperature component including a cobalt coating that has a higher carbon content is provided. A layer composed of a cobalt-based alloy is applied which is known as or is similar to substrate material, to the region of the component which is subject to the wear, wherein the component preferably comprises a nickel-based alloy as substrate material, the carbon content of which is lower than that of the cobalt-based alloy. At the high operating temperatures, carbon diffuses from the coating into the base material; this is normally undesirable, but here leads to a higher carbide proportion in the substrate and therefore to a higher hardness and therefore to an increased wear resistance.
Claims
1. A component comprising: a metallic substrate, wherein the metallic substrate is a nickel-based superalloy or a cobalt-based superalloy, and wherein the metallic substrate has a first carbon content; and a layer composed of a cobalt-based alloy, wherein the layer is applied directly to a region of the metallic substrate having increased wear and wherein the layer has a thickness of 1 ?m to 100 ?m, wherein the cobalt-based alloy of the layer comprises at least chromium, nickel, and tungsten, and at least one substance selected from the group consisting of: tantalum, aluminum, and titanium, wherein the cobalt-based alloy fails to include rhenium and fails to include yttrium, wherein the layer has a second carbon content that is greater than the first carbon content of the metallic substrate, and wherein the metallic substrate is coated with a metallic coating and/or a ceramic coating on the metallic coating, which adjoin the region of the metallic substrate having the increased wear, and wherein the metallic coating comprises no carbon and wherein the metallic coating comprises NiCoCrAl, NiCoCrAlY, NiCoCrAlTa, NiCoCrAlFe, NiCoCrAlYFe, NiCoCrAlYFeTa, NiCoCrAlFeTa, or NiCoCrAlYTa, wherein the layer is at least 10% thinner than the metallic coating of the metallic substrate.
2. The component as claimed in claim 1, wherein the region of the metallic substrate represents a flat, planar tip.
3. The component as claimed in claim 1, wherein the region of the metallic substrate represents a tip with a freestanding wall.
4. The component as claimed in claim 1, wherein an absolute difference in the first carbon content of the metallic substrate and the second carbon content of the layer is at least 0.03% by weight.
5. The component as claimed in claim 1, wherein the metallic substrate is directionally solidified in columnar form and is solidified in single-crystal form.
6. The component as claimed in claim 1, wherein the layer at most partially overlaps the metallic coating of the metallic substrate.
7. The component according to claim 1, wherein after 100 hours of operation at 1173-1223 Kelvin, at least a portion of the second carbon content diffuses from the layer into the metallic substrate.
8. A component comprising: a substrate having a first carbon content, wherein the substrate is a nickel-based superalloy or a cobalt-based superalloy, and wherein a metallic coating is applied to lateral faces of the substrate; and a layer composed of a cobalt-based alloy, wherein the cobalt-based alloy fails to include rhenium and fails to include yttrium, wherein the layer is applied directly to a tip region of the substrate, the tip region including a first outer freestanding wall and a second outer freestanding wall surrounding a recess, further wherein the layer is applied to the entirety of the tip region including the recess, and wherein the layer has a second carbon content that is greater than the first carbon content of the substrate.
9. The component of claim 8, wherein the nickel-based superalloy of the substrate comprises at least chromium, cobalt, tungsten, aluminum, titanium, and tantalum, wherein the nickel-based superalloy of the substrate contains no rhenium and no yttrium, wherein the cobalt-based alloy of the layer comprises at least chromium, nickel, and tungsten, and at least one substance selected from the group consisting of: tantalum, aluminum, and titanium.
10. The component of claim 8, wherein the layer at most partially overlaps the metallic coating of the substrate.
11. The component of claim 8, wherein the layer is at least 10% thinner than the metallic coating of the substrate.
12. The component of claim 8, wherein the layer has a thickness of 1 ?m to 100 ?m.
13. The component of claim 12, wherein the metallic coating comprises NiCoCrAl, NiCoCrAlY, NiCoCrAlTa, NiCoCrAlFe, NiCoCrAlYFe, NiCoCrAlYFeTa, NiCoCrAlFeTa, or NiCoCrAlYTa.
14. The component of claim 8, wherein the metallic coating comprises no carbon.
Description
BRIEF DESCRIPTION
(1) Some of the embodiments will be described in detail, with reference to the following figures, wherein like designations denote like members, wherein:
(2)
(3)
(4) The figures and the description represent only exemplary embodiments of the invention.
DETAILED DESCRIPTION
(5)
(6) Particularly in the case of high-temperature components such as turbine blades or vanes 1, 120, 130 (of
(7) The metallic protective coating 7, 7 is preferably free of carbon (C) and has in particular the composition NiCoCrAl or NiCoCrAiX (X?Y, Re), NiCoCrAlTa, NiCoCrAlFe, NiCoCrAlYFe, NiCoCrAlYFeTa, NiCoCrAlFeTa or NiCoCrAlYTa, in particular consisting thereof The proportions of tantalum (Ta) or iron (Fe) lie in the single-digit percentage range, in particular <=5% by weight.
(8) Previously, the flat blade or vane tip 19, 19 (of
(9) A layer 13, 13 (of
(10) This cobalt-based alloy has a higher carbon content (C) than the substrate 4, 4, the absolute difference in the carbon content of the substrate 4, 4 and the layer 13, 13 being at least 0.03% by weight.
(11)
(12) Likewise, a layer 13 composed of a cobalt-based alloy is applied to the substrate 4 in the region of the tip 19 there 20, 23.
(13) Without a further heat treatment of the components shown in
(14) A ceramic layer, if appropriate in connection with the ceramic layers 10, 10, may preferably be present on the layers 13, 13.
(15) The nickel-based alloy of the substrate 4, 4 preferably comprises at least chromium (Cr), cobalt (Co), tungsten (W), aluminum (Al), titanium (Ti), optionally tantalum (Ta) and preferably no rhenium (Re) and preferably no yttrium (Y).
(16) The substrate is directionally solidified in columnar form and is solidified in single-crystal form.
(17) The cobalt-based alloy comprises at least chromium (Cr), nickel (Ni), tungsten (W), optionally tantalum (Ta), aluminum (Al), titanium (Ti) and preferably no rhenium (Re) and preferably no yttrium (Y).
(18) Although the present invention has been disclosed in the form of preferred embodiments and variations thereon, it will be understood that numerous additional modifications and variations could be made thereto without departing from the scope of the invention.
(19) For the sake of clarity, it is to be understood that the use of a or an throughout this application does not exclude a plurality, and comprising does not exclude other steps or elements.