Atomizer for improved ultra-fine powder production
A concentric ring gas atomization nozzle with isolated gas supply manifolds is provided for manipulating the close-coupled atomization gas structure to improve the yield of atomized powders.
1. A discrete gas jet nozzle for atomizing a melt, comprising a melt supply tube having a melt discharge orifice, a first annular array of a plurality of first discrete gas orifices arranged about the periphery of the melt supply tube to discharge gas jets toward the melt discharge orifice, a first gas supply manifold for supplying pressurized gas to the first discrete gas jet orifices, a second annular array of a plurality of second discrete gas jet orifices arranged outwardly of the first annular array, and a second gas supply manifold isolated from the first gas supply manifold for supplying pressurized gas to the second annular array, wherein the first gas supply manifold and the second gas supply manifold supply atomizing gas to the first annular array and the second annular array in a manner to control an atomizing gas flow structure to have a gas recirculation zone immediately below the melt discharge orifice.
2. The nozzle of claim 1 wherein the first gas supply manifold and the second gas supply manifold have such different gas supply pressures as to form a more truncated gas recirculation zone as compared to a gas recirculation zone formed without pressurized gas in the second gas supply manifold.
3. The nozzle of claim 1 wherein the first gas supply manifold and second gas supply manifold have different atomizing gas compositions.
4. The atomizing nozzle of claim 1 wherein the first gas supply manifold and second gas supply manifold have the same atomizing gas.
5. The atomizing nozzle of claim 1 wherein the second annular array of a plurality of second discrete gas jet orifices is arranged outwardly of and downstream of the first annular array.