Alloy, overlay, and methods thereof
View Patent ↗An alloy comprising about 0.5 weight percent to about 2 weight percent carbon, about 15 weight percent to about 30 weight percent chromium, about 4 weight percent to about 12 weight percent nickel, up to about 3 weight percent manganese, up to about 2.5 weight percent silicon, up to about 1 weight percent zirconium, up to about 3 weight percent molybdenum, up to about 3 weight percent tungsten, up to about 0.5 weight percent boron, up to about 0.5 weight percent impurities, and iron.
1. A hardfacing welding alloy that can be applied by welding to form an overlay over an upper surface of a steel substrate for protection against cracking, high-temperature corrosion and erosive wear, the hardfacing welding alloy comprising about 0.5 weight percent to about 2 weight percent carbon, about 15 weight percent to about 30 weight percent chromium, about 4 weight percent to about 12 weight percent nickel, about 0.5 to about 2.0 weight percent manganese, up to about 2.5 weight percent silicon, up to about 1 weight percent zirconium, up to about 3 weight percent molybdenum, up to about 3 weight percent tungsten, up to about 0.5 weight percent boron, and balance being iron along with about 0.5 weight percent impurities, and wherein the ratio of chromium to nickel is in a range of about 2 to about 3.
2. An overlay formed on a substrate component by welding of the hardfacing welding alloy according to claim 1 , wherein the overlay has a hardness ranging from Rockwell “C” value of RC 25 or higher.
3. An overlay formed on a substrate component by welding of the hardfacing welding alloy according to claim 1 , wherein the overlay has a hardness ranging from Rockwell “C” value of RC 30 or higher.
4. A method of weld overlaying a substrate comprising: applying the welding alloy of claim 1 to the substrate to form an overlay, wherein the substrate is formed of a material selected from the group consisting of carbon steel, low alloy steel, Cr-Mo steel, and stainless steel.
5. The method of claim 4 , further comprising heat-treating the overlay at temperatures above about 649° C. (1200° F.).
6. The method of claim 4 , wherein the substrate is at least a portion of a waterwall in a boiler.
7. The method of claim 4 , wherein the substrate is at least a portion of a processing vessel or processing equipment.
8. The method of claim 4 , wherein the welding alloy is applied to the substrate by a welding method selected from the group consisting of gas-metal-arc welding, gas-tungsten-arc welding, submerged arc welding, electroslag welding, plasma transfer arc welding, and laser welding.