Claims
- 1. An eductor-spike nozzle device for mounting through side walls of a fluidized bed jet mill to discharge a composite stream of high velocity fluid for receiving, entraining and delivering particles of material into a grinding chamber of a fluidized bed jet mill for particle to particle collisions, the eductor-spike nozzle device comprising:
(a) a first cylindrical member having a first wall including a cowl lip and defining a first hollow interior, and (b) a second cylindrical member mounted within said first hollow interior and having a second wall (i) externally defining an annular flow path with said first wall for flow of a first stream of fluid, and a fluid compressing throat region with said cowl lip for accelerating said first low velocity stream of fluid into a first high velocity stream of fluid, and (ii) internally defining a second hollow interior for flow of a second stream of fluid for forming the composite stream of high velocity fluid with said first high velocity stream of fluid, thereby increasing a probability of said composite stream receiving and entraining particles introduced into said composite stream.
- 2. An eductor-spike nozzle device for mounting through side walls of a fluidized bed jet mill to discharge a stream of high velocity fluid for receiving, entraining and delivering particles of material into a grinding chamber of the fluidized bed jet mill for particle to particle collisions, the eductor-spike nozzle device comprising:
(a) a first cylindrical member having (i) a first end for receiving a first low velocity stream of fluid, (ii) a second end for pointing towards a central axis of the grinding chamber when mounted through said side walls, and for discharging said first low velocity stream of fluid as a first high velocity stream of fluid, and (iii) a first wall having a cowl lip at said second end, and defining a first hollow interior; and (b) a second cylindrical member mounted within said first hollow interior and having a second wall defining (i) an annular flow path for said first low velocity stream of fluid and said first high velocity stream of fluid, (ii) a throat region with said cowl lip for accelerating said first low velocity stream of fluid into first high velocity stream, and (iii) a second hollow interior for receiving and discharging a second low velocity stream of fluid.
- 3. The eductor-spike nozzle device of claim 2, wherein said second hollow interior has a cross-sectional area that is between 40% and 60%, preferrably between 50% and 55%, and a flowrate between 0.5% and 3.0% of a cross-sectional area of said annular flow path.
- 4. The eductor-spike nozzle device of claim 2, including an input conduit, for particles of material, connected to and communicating with said second hollow interior for introducing particles of into the second low velocity stream of fluid.
- 5. The eductor-spike nozzle device of claim 2, wherein said first high velocity stream of fluid upon discharge expands inwardly onto, and engulfs said second low velocity stream of fluid.
- 6. The eductor-spike nozzle device of claim 2, wherein said second wall of said second cylindrical member includes a downstream decreasing diameter portion for inducing an inward expansion of said first high velocity stream of fluid.
- 7. The eductor spike nozzle device of claim 6, wherein said decreasing diameter portion includes a truncated end resulting in first high velocity stream of fluid and said second low velocity fluid forming an aero-spike substantially equivalent in profile to that of a non-truncated spike profile.
- 8. A fluidized bed jet mill for grinding particles of material comprising:
(a) a base, a top and side walls defining a grinding chamber having a central axis; and (b) plural eductor-spike nozzle devices mounted through said side walls into said grinding chamber to each discharge a stream of high velocity fluid for receiving, entraining and delivering, for particle to particle collisions, particles of material to be ground within said grinding chamber, said each eductor-spike nozzle device including:
(i) a first cylindrical member having (i) a first end for receiving a first low velocity stream of fluid, (ii) a second end for pointing towards a central axis of the grinding chamber when mounted through said side walls, and for discharging said first low velocity stream of fluid as a first high velocity stream of fluid, and (iii) a first wall having a cowl lip at said second end, and defining a first hollow interior; and (ii) a second cylindrical member mounted within said first hollow interior and having a second wall defining (i) an annular flow path for said first low velocity stream of fluid and said first high velocity stream of fluid, (ii) a throat region with said cowl lip for accelerating said first low velocity stream of fluid into first high velocity stream, and (iii) a second hollow interior for receiving and discharging a second low velocity stream of fluid.
- 9. A fluidized bed jet mill for grinding particles of material comprising:
(a) a base, a top and side walls defining a grinding chamber having a central axis; and (b) plural eductor-spike nozzle devices mounted through said side walls into said grinding chamber to each discharge a stream of high velocity fluid for receiving, entraining and delivering, for particle to particle collisions, particles of material to be ground within said grinding chamber, said each eductor-spike nozzle device including:
(i) a first cylindrical member having (i) a first end for receiving a first low velocity stream of fluid, (ii) a second end for pointing towards a central axis of the grinding chamber when mounted through said side walls, and for discharging said first low velocity stream of fluid as a first high velocity stream of fluid, and (iii) a first wall having a cowl lip at said second end, and defining a first hollow interior; and (ii) a second cylindrical member mounted within said first hollow interior and having a second wall defining (i) an annular flow path for said first low velocity stream of fluid and said first high velocity stream of fluid, (ii) a throat region with said cowl lip for accelerating said first low velocity stream of fluid into first high velocity stream, and (iii) a second hollow interior for receiving and discharging a second low velocity stream of fluid.
- 10. The fluidized bed jet mill of claim 9, wherein said second hollow interior has a cross-sectional area that is between 40% and 60%, preferrably between 50% and 55%, and a flowrate between 0.5% and 3.0% of a cross-sectional area of said annular flow path.
- 11. The fluidized bed jet mill of claim 9, including an input conduit, for particles of material, connected to and communicating with said second hollow interior for introducing particles of into the second low velocity stream of fluid.
- 12. The fluidized bed jet mill of claim 9, wherein said first high velocity stream of fluid upon discharge expands inwardly onto, and engulfs said second low velocity stream of fluid.
- 13. The fluidized bed jet mill of claim 9, wherein said second wall of said second cylindrical member includes a downstream decreasing diameter portion for inducing an inward expansion of said first high velocity stream of fluid.
- 14. The fluidized bed jet mill of claim 10, wherein said second hollow interior has a cross-sectional area that is between 40% and 60%, preferrably between 50% and 55%, and a flowrate between 0.5% and 3% of said cross-sectional area of said annular flow path.
- 15. The eductor spike nozzle device of claim 13, wherein said decreasing diameter portion includes a truncated end resulting in first high velocity stream of fluid and said second low velocity fluid forming an aero-spike substantially equivalent in profile to that of a non-truncated spike profile.
CROSS REFERENCE TO ISSUED PATENTS
[0001] This application is based on a Provisional Patent Application No. 60/398,354, filed Jul. 23, 2002.
[0002] Attention is directed to commonly owned and assigned U.S. Pat. No. 5,133,504 issued Jul. 28, 1992, entitled THROUGHPUT EFFICIENCY ENHANCEMENT OF FLUIDIZED BED JET MILL, and 5,683,039 issued Nov. 4, 1997, entitled LAVAL NOZZLE WITH CENTRAL FEED TUBE AND PARTICLE COOMINUTION PROCESS THEREOF.
[0003] This application is related to U.S. application Ser. No. ______ (Applicants' Docket No. D/A1127) entitled “PLURAL ODD NUMBER BELL-LIKE OPENINGS NOZZLE DEVICE FOR A FLUIDIZED BED JET MILL” filed on the same date herewith, and having at least one common inventor.
Provisional Applications (1)
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Number |
Date |
Country |
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60398354 |
Jul 2002 |
US |