Abradable composite material and method of making the same
An abradable composite material comprising a matrix of sintered metallic particles and non-metallic solid lubricants disposed within the interstitial spaces of the matrix is described. The abradable composite material is capable of being used with, e.g., titanium-alloy blades of a gas turbine at least in part because the abradable composite material does not cause excessive wear or damage to the blades of the gas turbine. Methods of forming the abradable composite material are also described.
1. An abradable composite material consisting essentially of:
a matrix of sintered metallic particles, the matrix having
a porosity; and
a plurality of non-metallic solid lubricant particles, the non-metallic solid lubricant particles disposed in interstitial spaces of the matrix of sintered metallic particles;
wherein the metallic particles of the matrix of sintered metallic particles are Ni-based alloy particles, Fe-based alloy particles, or a combination thereof,
wherein the abradable composite material comprises from 15 to 50 wt % non-metallic solid lubricant particles,
wherein the non-metallic solid lubricant particles have a particle size ranging from about 200 to 1000 microns,
wherein the non-metallic solid lubricant particles are not clad with metallic material, and
wherein the non-metallic solid lubricant particles are hexagonal boron nitride particles, aluminum oxide, titanium dioxide, zirconium oxide, or combinations thereof.
2. The abradable composite material of claim 1 , wherein the metallic particles of the matrix of sintered metallic particles further comprises Co-based alloy.
3. The abradable composite material of claim 1 , wherein the abradable composite material comprises from 35 to 85 wt % metallic particles.
4. The abradable composite material of claim 1 , wherein the metallic particles of the matrix of sintered metallic particles have an elongated, fibrous or spherical shape.
5. The abradable composite material of claim 1 , wherein the porosity of the matrix of sintered metallic particles is in the range of from 15 to 80%.
6. The abradable composite material of claim 1 , wherein the abradable composite material comprises 15 wt % non-metallic solid lubricant particles.
7. The abradable composite material of claim 1 , wherein the abradable composite material comprises 50 wt % non-metallic solid lubricant particles.
8. The abradable composite material of claim 1 , wherein non-metallic solid lubricant particles have a spherical shape, rounded shape, angular shape, or flaky shape.