IP Library › Granted Patent US 10,967,391
Granted Patent B2
US 10,967,391 · App. 16/244,666 · Granted Apr 6, 2021

Pressure regulator in a rotationally driven sprinkler nozzle housing assembly

Inventor: Carl L. C. Kah, Jr. (North Palm Beach, FL)
B05B3/045B05B1/3006B05B3/0422B05B12/087B05B15/74
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Quick Facts
Patent No.
US 10,967,391
App. No.
16/244,666
Granted
Apr 6, 2021
Kind
B2
Abstract

A rotary sprinkler in accordance with an embodiment of the present disclosure includes a riser with a nozzle assembly rotatable mounted thereon. The nozzle assembly includes a pressure regulator and flow control element.

Claims (32)

1. A sprinkler assembly comprising:

a riser in fluid communication with a water supply including a flow path for water provided to the sprinkler assembly from the water supply;

a nozzle assembly rotatably mounted on the riser and in fluid communication with the riser, the nozzle assembly including:

a center flow passage in fluid communication with the flow path of the riser;

a nozzle mounted in the nozzle assembly and in fluid communication with the center flow passage, the nozzle configured to direct water out of the nozzle assembly; and

a pressure regulator responsive to pressure in the nozzle assembly upstream from the nozzle; and

a throttling valve operably connected to the pressure regulator to selectively reduce flow to the nozzle when pressure upstream of the nozzle exceeds a reference pressure,

wherein the pressure regulator is provided coaxially with a central axis of the sprinkler assembly, and

the pressure regulator further comprises:

a reference pressure chamber configured to maintain the reference pressure related to a desired pressure;

a pressure responsive member movably mounted in the reference pressure chamber;

a biasing member, positioned in the reference pressure chamber and configured to apply a predetermined biasing force on the pressure responsive member; and

a movable member secured to the nozzle assembly and movable into the reference pressure chamber to modify the biasing force of the biasing member.

2. The sprinkler assembly of claim 1 , further comprising:

a connecting rod connected at a top end to the pressure responsive member and to the throttling valve at a bottom end thereof such that the connecting rod and a movable valve element of the throttling valve are movable with the pressure responsive member to adjust the flow of water to the nozzle.

3. The sprinkler assembly of claim 1 , wherein a top surface of the pressure responsive member is exposed to the reference pressure chamber and a bottom surface of the pressure responsive member is exposed to an inlet area of the nozzle.

4. The sprinkler assembly of claim 1 , wherein the movable member further comprises an opening configured to expose the reference pressure chamber to atmospheric pressure, such that the reference pressure is substantially atmospheric pressure.

5. The sprinkler assembly of claim 2 , wherein the throttling valve further comprises:

a first element positioned immediately upstream from the nozzle; and

the movable valve element positioned immediately upstream from the first element and connected to the connecting rod such that the movable valve element is movable relative to the first element between an open position where the movable valve element has substantially no effect on flow to the nozzle and a closed position in which the movable valave element impedes flow to the nozzle.

6. The sprinkler assembly of claim 5 , wherein the nozzle assembly includes a flow path, the flow path including a straight portion in fluid communication with the flow path of the riser and an angled portion positioned downstream of the straight portion where the movable valve element is mounted in the straight portion of the flow path.

7. The sprinkler assembly of claim 6 , wherein the first element of the throttling valve is positioned in the angled portion of the flow path in the nozzle assembly.

8. The sprinkler assembly of claim 1 , wherein the biasing member is removable from the reference pressure chamber entirely such that the throttling valve is pushed up by water pressure into a throttling position to stop the flow of water to the nozzle.

9. The sprinkler assembly of claim 1 , wherein the nozzle is removably mounted in the nozzle assembly.

10. The sprinkler assembly of claim 2 , further comprising a drive shaft connecting the nozzle assembly to the riser, wherein a flow path of the nozzle assembly is formed in the drive shaft.

11. The sprinkler assembly of claim 10 , wherein the throttling valve is connected to the bottom end of the connecting rod adjacent to an inlet of the drive shaft and includes the movable valve element with the pressure responsive member and the connecting rod to adjust the flow of water into the drive shaft.

12. The sprinkler assembly of claim 2 , wherein the movable valve element moves axially with the connecting rod toward an inlet of a drive shaft to restrict water flow when pressure in the nozzle assembly upstream of the nozzle exceeds the reference pressure.

13. The sprinkler assembly of claim 2 , wherein the movable valve element includes a cylindrical sidewall extending parallel to the direction of the water flow.

14. The sprinkler assembly of claim 13 , further comprising a plug member mounted below the movable valve element and configured to direct the flow of water up the cylindrical sidewall of the valve element.

15. The sprinkler assembly of claim 14 , wherein the plug member further comprises at least one rib element configured to secure the plug member in place below the movable valve element.

16. The sprinkler assembly of claim 2 , wherein the movable valve element is operatively connected to the connecting rod such that movement of the movable member upward and downward provides flow control and throttling to the nozzle assembly.

17. The sprinkler assembly of claim 1 , wherein the biasing member is removable from the reference pressure chamber entirely and the movable member is movable upward and downward to set a position of a second movable valve element such that flow to the nozzle assembly is set at a desired rate.

Continuity (4)
Continuation In Part 14564435 · Dec 9, 2014
Continuation 13327230 · Dec 15, 2011
Provisional Application 61423400 · Dec 15, 2010
Related Publication 20190143361A1 · May 16, 2019
Cited By (1)
US 12,686,024