Process for producing refractory metal alloy powders
A process for producing refractory metal alloy powders includes the steps of blending at least one powder with at least one solvent and at least one binder to form a slurry; forming a plurality of agglomerates from the slurry; screening the plurality of agglomerates; sintering the plurality of agglomerates; and melting said plurality of agglomerates to form a plurality of homogenous, densified powder particles.
1. A molybdenum-based refractory metal alloy made according to a process comprising the steps of:
blending at least one powder with at least one solvent and at least one binder to form a slurry;
forming a plurality of agglomerates from said slurry;
screening said plurality of agglomerates;
sintering said plurality of agglomerates; and
melting said plurality of agglomerates and rapidly solidifying to form a plurality of homogeneous, densified, rapidly solidified powder particles,
wherein said molybdenum-based refractory metal alloy has an oxygen content in the range of from about 0.01 wt % to about 1.5 wt % and a carbon content in the range of from about 0.05 wt % to about 0.5 wt %.
2. The molybdenum-based refractory metal alloy of claim 1 , wherein said at least one powder comprises at least one multi-component powder present in an amount sufficient to provide a silicon concentration of at least about 3% by weight and a boron concentration of at least about 1% by weight for each of said plurality of homogeneous, densified powder particles.
3. The molybdenum-based refractory metal alloy of claim 1 , wherein said at least one powder comprises one of an elemental powder, a multi-component powder, and both an element powder and a multi-component powder.
4. The molybdenum-based refractory metal alloy of claim 3 , wherein said elemental powder comprises silicon, boron or molybdenum.
5. The molybdenum-based refractory metal alloy of claim 3 , wherein said at least one multi-component powder comprises MoB 2 , MoSi 2 , SiB x where x=3 to 6 and MoSi y B z where y=1-6 and z=1-6.
6. The molybdenum-based refractory metal alloy of claim 1 , further comprising at least about 3.0 wt % silicon and at least about 1.0 wt % boron.
7. The molybdenum-based refractory alloy of claim 1 , wherein said alloy has 0.185 wt % carbon, 0.182 wt % oxygen, 1.41 wt % boron, and 2.59 wt % silicon and a density of 79.7 g/cu. in.
8. The molybdenum-based refractory alloy of claim 7 , wherein said particles have a particle size distribution of d10—27.5μ, d50—41.0μ, and d90—59.5μ.