Abrasion-resistant weld overlay
A material blend for deposition of an abrasion-resistant overlay onto a metal substrate comprising a first metal particle component, a second metal particle component, and a carbide particle component and a method for the application thereof, wherein the overlay process conditions and the homogeneity of tungsten carbide distribution in the overlay are improved.
1. A material blend for deposition of an abrasion-resistant overlay onto a metal substrate, the blend comprising:
a first powder metal component comprising first powder alloy selected from the group consisting of Ni alloy, Fe alloy, Co alloy and mixtures thereof;
a second powder metal component comprising second alloy powder including one or more elements selected from the group consisting of Al, Ti, Y, V, Nb, Ta, Zr, Hf and rare earth elements; and
a tungsten carbide particle component, wherein the tungsten carbide particle component is present in an amount of 50 to 80 weight percent of the material blend, and the second powder metal component is present in an amount of 3 to 20 weight percent of the material blend.
2. The material blend of claim 1 , wherein the first powder metal is Ni alloy.
3. The material blend of claim 2 , wherein the Ni alloy comprises Cr.
4. The material blend of claim 2 , wherein Ni is present in the alloy in an amount of at least 75 weight percent.
5. The material blend of claim 1 , wherein the first powder metal component is present in an amount of 15 to 35 weight percent of the material blend.
6. The material blend of claim 3 , wherein the Ni—Cr alloy further comprises at least one of Si, B and C.
7. The material blend of claim 1 , wherein at least 80 weight percent of the second powder alloy is Ni, Fe or Co.
8. The material blend of claim 7 , wherein at least 80 weight percent of the second powder alloy is Ni.
9. The material blend of claim 7 , wherein the second powder alloy includes Al.
10. A material blend for deposition of an abrasion-resistant overlay onto a metal substrate, the blend comprising:
a first powder metal component comprising a first powder alloy including Ni in an amount of at least 75 weight percent;
a second powder metal component comprising second alloy powder including one or more elements selected from the group consisting of Al, Ti, Y, V, Nb, Ta, Zr, Hf and rare earth elements; and
a tungsten carbide particle component, wherein the tungsten carbide particle component is present in an amount of 50 to 80 weight percent of the material blend.
11. The material blend of claim 10 , wherein the first powder alloy further comprises Cr.
12. The material blend of claim 1 , wherein the first powder metal component is present in an amount of 15 to 35 weight percent of the material blend.
13. The material blend of claim 10 , wherein the second alloy powder further comprises a majority alloying element selected from the group consisting of Ni, Fe, and Co.
14. The material blend of claim 13 , wherein at least 80 weight percent of the second alloy powder is Ni, Fe, or Co.
15. The material blend of claim 10 , wherein the second powder metal component is present in an amount of 3 to 20 weight percent of the material blend.
16. A material blend for deposition of an abrasion-resistant overlay onto a metal substrate, the blend comprising:
a first powder metal component comprising first powder alloy selected from the group consisting of Ni alloy, Fe alloy, Co alloy and mixtures thereof;
a second powder metal component comprising second alloy powder including a majority alloying element of Ni, Fe, or Co in an amount of at least 80 weight percent, and one or more additional elements selected from the group consisting of Al, Ti, Y, V, Nb, Ta, Zr, Hf and rare earth elements; and
a tungsten carbide particle component, wherein the tungsten carbide particle component is present in an amount of 50 to 80 weight percent of the material blend.
17. The material blend of claim 16 , wherein the first powder alloy further comprises Cr.
18. The material blend of claim 16 , wherein the first powder metal component is present in an amount of 15 to 35 weight percent of the material blend.
19. The material blend of claim 10 , wherein the second powder metal component is present in an amount of 3 to 20 weight percent of the material blend.