Claims
- 1. A spray nozzle for producing an asymmetrically distributed fluid discharge pattern wherein the location of the maximum fluid discharge is offset from the center of the fluid discharge pattern, the spray nozzle comprising:
a body portion having an internal fluid passageway which terminates in a substantially hemispherical dome shaped end wall, the fluid passageway having a longitudinal axis, and a discharge orifice provided in the end wall, the discharge orifice being configured by superimposing on each other a relatively rounder first opening and a relatively more elongated second opening which extends partially beyond a perimeter of the first opening such that the fluid discharge pattern produced by the discharge orifice has a continuous non-linear taper in the amount of fluid discharged from the location of maximum discharge to a point of minimum flow at one end of the discharge pattern so as to form a curve which for a substantial portion thereof is below a line connecting the point of maximum discharge with the point of minimum flow at the one end of the discharge pattern, wherein the relatively rounder first opening defines first edges of the discharge orifice which extend in a first plane and the relatively more elongated opening defines second edges of the discharge orifice which extend in a second plane and wherein the first plane extends at an angle closer to perpendicular relative to the longitudinal axis of the fluid passageway than the second plane, and wherein a ratio of a flow rate produced by the first opening to a flow rate produced by the entire discharge orifice is between approximately 0.60 and approximately 0.95.
- 2. The spray nozzle according to claim 1 wherein the body portion has a cylindrical portion with a first radius and a dome-shaped portion with a second radius wherein the ratio of the second radius to the first radius is between approximately 1 and approximately 2.
- 3. The spray nozzle according to claim 1 wherein the first set of edges of the discharge orifice extend between 0° and 5° relative to an axis perpendicular to the longitudinal axis of the fluid passageway.
- 4. The spray nozzle according to claim 1 wherein the second set of edges of the discharge orifice extend at an angle of between approximately 10° and approximately 40° relative to an axis perpendicular to the longitudinal axis of the fluid passageway.
- 5. The spray nozzle according to claim 1 wherein the first opening is produced with a first cutting edge having angled sides defining an included angle of between approximately 40° and approximately 100°.
- 6. The spray nozzle according to claim 1 wherein the second opening is produced with a second cutting edge having angled sides defining an included angle of between approximately 19° and approximately 35°.
- 7. The spray nozzle according to claim 1 wherein the ratio of the flow rate of the first opening to the flow rate produced by the entire discharge orifice is between approximately 0.85 and 0.95.
- 8. A spray nozzle for producing an asymmetrically distributed fluid discharge pattern wherein the location of the maximum fluid discharge is offset from the center of the fluid discharge pattern, the spray nozzle comprising:
a body portion having an internal fluid passageway which terminates in a substantially hemispherical dome shaped end wall, the fluid passageway having a longitudinal axis, and a discharge orifice provided in the end wall, the discharge orifice being produced by superimposing on each other a relatively rounder first opening and a relatively more elongated second which extends partially beyond perimeter of the first opening, wherein the first opening defines a first set of edges of the discharge orifice which extend between 0° and 5° relative to an axis perpendicular to the longitudinal axis of the fluid passageway and the second opening defines a second set of edges of the discharge orifice which extend at an angle of between approximately 10° and approximately 40° relative to the perpendicular axis, and wherein the fluid discharge pattern thereby produced by the discharge orifice has a continuous non-linear taper in the amount of fluid discharged from the location of maximum discharge to points of minimum flow at either end of the discharge pattern so as to form a curve on either side of the location of maximum discharge, for a substantial portion thereof each curve being below a respective line connecting the location of maximum a discharge orifice provided in the end wall, the discharge orifice being configured by superimposing on each other a relatively rounder first opening produced with a first cutting edge having angled sides defining an included angle of between approximately 40° and approximately 100° and a relatively more elongated second opening produced by a second cutting edge having angled sides defining an included angle of between approximately 19° and approximately 35° such that the fluid discharge pattern produced by the discharge orifice has a continuous non-linear taper in the amount of fluid discharged from the location of maximum discharge to a point of minimum flow at one end of the discharge pattern so as to form a curve which for a substantial portion thereof is below a line connecting the point of maximum discharge with the point of minimum flow at the one end of the discharge pattern, wherein the relatively rounder first opening defines first edges of the discharge orifice which extend in a first plane and the relatively more elongated opening defines second edges of the discharge orifice which extend in a second plane and wherein the first plane extends at an angle closer to perpendicular relative to the longitudinal axis of the fluid passageway than the second plane.
- 14. The spray nozzle according to claim 13 wherein the body portion has a cylindrical portion with a first radius and a dome-shaped portion with a second radius wherein the ratio of the second radius to the first radius is between approximately 1 and approximately 2.
- 15. The spray nozzle according to claim 13 wherein the first set of edges of the discharge orifice extend between 0° and 5° relative to an axis perpendicular to the longitudinal axis of the fluid passageway.
- 16. The spray nozzle according to claim 13 wherein the second set of edges of the discharge orifice extend at an angle of between approximately 10° and approximately 40° relative to an axis perpendicular to the longitudinal axis of the fluid passageway.
- 17. The spray nozzle according to claim 13 wherein the ratio of a flow rate of the first opening to a flow rate produced by the entire discharge orifice is between approximately 0.60 and 0.85.
CROSS-REFERENCE TO RELATED PATENT APPLICATION
[0001] This patent application is a continuation-in-part of U.S. patent application Ser. No. 09/491,344 filed Jan. 26, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09491344 |
Jan 2000 |
US |
| Child |
09967417 |
Sep 2001 |
US |