IP Library Granted Patent US 8,479,771
Granted Patent B2
US 8,479,771 · App. 12/276,200 · Granted Jul 9, 2013

Diverter valve

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Quick Facts
Patent No.
US 8,479,771
App. No.
12/276,200
Granted
Jul 9, 2013
Kind
B2
Abstract

An exemplary embodiment of a diverter valve system includes a valve body defining an internal chamber having at least first, second and third ports, and a first valve seat associated with the first port and a second valve seat associated with the second port. A valve shaft structure includes an internal shaft portion positioned within the internal chamber, the valve shaft structure configured for rotation about a valve axis through a range of motion. A diverter structure includes a diverter face portion configured to seat against the first valve seat when in a first rotational position and against the second valve seat when in a second position, and a mounting portion configured to mount on the internal shaft portion of the valve shaft structure.

Claims (29)

1. A valve system, comprising:

a valve body defining an internal chamber having a plurality of ports including a first port, the valve body defining a stationary first seal surface surrounding the first port;

a valve shaft structure including an internal shaft portion positioned within the internal chamber, the valve shaft structure configured for rotation about a valve axis through a range of motion;

a diverter structure actuated by the valve shaft structure for movement about the valve axis, including a rigid diverter face portion and a mounting portion configured to mount on the internal shaft portion of the valve shaft structure;

the valve shaft structure configured to apply a seal force on the mounting portion to push the rigid diverter face portion into a sealing position relative to the first port in contact with said first seal surface of the valve body, as the valve shaft structure is rotated in a first direction, to remove the seal force on the mounting portion as the valve shaft structure is rotated in a second direction and to push the rigid diverter face portion away from the first port and out of contact with said first seal surface and with internal surfaces of the valve body, and to carry the diverter structure with the valve shaft structure as the valve shaft structure is rotated in the second direction with a clearance distance between the rigid diverter face portion and inner surfaces of the valve body and without any portion of the rigid diverter face portion in contact with the inner surfaces of the valve body during said rotation to reduce binding with dirt or grit and to allow self cleaning of the valve diverter face portion by fluid flow through the valve; and

wherein the rigid diverter face portion is configured to cover the first port in said sealing position;

wherein the plurality of ports further includes a second port and a third port, the first and second ports disposed at radially separated positions relative to the shaft structure, and the third port is an inlet port disposed at an axial position relative to the shaft structure, and in axial alignment with said valve axis; and

wherein the valve body includes a housing with a bottom hub portion supported by a plurality of ribs extending radially from the hub portion to a housing wall with open regions between the ribs, and a removable top cover having an open top shaft support boss, the bottom hub portion including a lower shaft support boss, wherein the top shaft support boss and the lower shaft support boss support the shaft structure for rotation, and wherein the first port is fluidically coupled to the open regions to allow fluid flow through the open regions between the hub and the ribs, and fluid may be diverted from the first port to one of the second or third ports or to both ports in dependence on the position of the diverter structure.

2. A diverter valve system for a bathing installation, configured to control a water flow through the bathing installation, comprising:

a valve body defining an internal chamber having at least first, second and third ports, and a first valve seat surrounding the first port and a second stationary valve seat surrounding the second port;

a valve shaft structure including an external shaft portion extending outside the valve body and an internal shaft portion positioned within the internal chamber, the valve shaft structure configured for rotation about a valve axis through a range of motion;

a diverter structure including a rigid diverter face portion configured to seat against and in contact with the first valve seat when in a first rotational position and against and in contact with the second valve seat when in a second position, and a mounting portion configured to mount on the internal shaft portion of the valve shaft structure;

the valve shaft structure including a cam structure configured to push the rigid diverter face portion into a first sealing position against the first valve seat as the valve shaft structure is rotated in a first direction, and to push the rigid diverter face portion into a second sealing position against the second valve seat as the valve shaft structure is rotated in a second direction;

a bias structure coupled between the mounting portion and the internal shaft portion and configured to apply a bias force tending to push the diverter face portion toward the internal shaft portion, such that the diverter face portion is out of contact with either said first or said second valve seat and with internal surfaces of the chamber when the cam structure is in a release orientation relative to the mounting portion of the diverter structure and without any portion of the rigid diverter face portion in contact with the inner surfaces of the valve body when the cam structure is in said release orientation to reduce binding with dirt or grit and to allow self cleaning of the valve diverter face portion by water flow through the valve; and

wherein the rigid diverter face portion is configured to cover the first port in said first sealing position to allow water flow between the second and third ports while blocking flow through the first port and to cover the second port in said second sealing position to allow water flow between the first and third ports while blocking flow through the second port.

3. The valve system of claim 2 , wherein the valve body includes a threaded pipe coupling for each of the plurality of ports.

4. The valve system of claim 2 , wherein the first, second and third ports are disposed at radially separated positions relative to the shaft structure.

5. The valve system of claim 2 , wherein the valve body includes a housing with a bottom hub portion and a removable top cover having an open top shaft support boss, the bottom hub portion including a lower shaft support boss, and wherein the top shaft support boss and the lower shaft support boss support the shaft structure for rotation.

6. The valve system of claim 2 , wherein said first port is an inlet port, and the diverter structure may be positioned to selectively close said second port while leaving said third port open, to close said third port while leaving said first port open, and to leave both ports open for water flow.

7. The system of claim 2 , wherein the bias structure and the cam structure are configured to position the rigid diverter face portion at a clearance distance D from the internal surfaces of the chamber with the cam structure in the release orientation and the rigid diverter face portion is positioned between the first and second ports.

8. The valve system of claim 2 , further comprising a coupling on the shaft structure for connection to an actuating system to apply a rotational force to the shaft.

9. The valve system of claim 8 , wherein the actuating system includes an electric motor.

10. The valve system of claim 8 , wherein the actuating system is a manually operable handle.

11. The valve system of claim 2 , wherein the first and second ports are disposed at radially separated positions relative to the shaft structure, and the third port is an inlet port disposed at an axial position relative to the shaft structure, wherein the third port is in axial alignment with said valve axis.

12. The system of claim 11 , wherein the valve body includes a housing with a bottom hub portion supported by a plurality of ribs extending radially from the hub portion to a housing wall with open regions between the ribs, and a removable top cover having an open top shaft support boss, the bottom hub portion including a lower shaft support boss, wherein the top shaft support boss and the lower shaft support boss support the shaft structure for rotation, and wherein the first port is fluidically coupled to the open regions to allow fluid flow through the open regions between the hub and the ribs, and fluid may be diverted from the first port to one of the second or third ports or to both ports in dependence on the position of the diverter structure.

13. The system of claim 11 , wherein the internal valve shaft portion comprises a plurality of surface features, including spaced first and second dog surfaces, each configured to engage a protruding rib extending from an interior facing surface of the mounting portion of the diverter structure as the valve shaft structure is rotated through the range of motion in the respective first and second directions and stop rotation of the diverter structure relative to the internal valve shaft portion.

14. A water flow system for a bathing installation, including a pump, a recirculating water flow path, and a diverter valve system according to claim 2 .

15. The system of claim 14 , wherein the valve body includes a threaded pipe coupling for each of the plurality of ports, and the plurality of ports are connected to pipes comprising the water flow path by a plurality of union connections to permit removal and replacement of the diverter valve system in the water flow system.

16. The system of claim 15 , further comprising a union connection for connecting an inlet port of the pump to the water flow path, and a plurality of shutoff valves in the water path, wherein the shutoff valves are positioned so that the pump and diverter valve system may be removed and replaced when the shutoff valves are closed without draining the bathing installation.

Assignments (9)
CORRECTIVE ASSIGNMENT TO CORRECT THE PROPERTY NUMBER 8191183 PREVIOUSLY RECORDED AT REEL: 054344 FRAME: 0637. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Aug 10, 2021
From: BMO HARRIS BANK, N.A.
To: BALBOA WATER GROUP, LLC
Reel/Frame 057144/0919 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Nov 6, 2020
From: BALBOA WATER GROUP, LLC
To: PNC BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 054341/0169 →
RELEASE OF SECURITY INTEREST Recorded Nov 6, 2020
From: BMO HARRIS BANK, N.A.
To: BALBOA WATER GROUP, LLC
Reel/Frame 054344/0627 →
RELEASE OF SECURITY INTEREST Recorded Mar 20, 2020
From: PNC BANK, NATIONAL ASSOCIATION
To: BALBOA WATER GROUP, INC.; BALBOA INSTRUMENTS, INC.; G-G DISTRIBUTION AND DEVELOPMENT CO., INC.; SPA & BATH HOLDINGS, INC.; BALBOA WATER GROUP, LLC
Reel/Frame 052918/0717 →
ENTITY CONVERSION Recorded Mar 11, 2020
From: BALBOA WATER GROUP, INC.
To: BALBOA WATER GROUP, LLC
Reel/Frame 052150/0661 →
PATENT SECURITY AGREEMENT Recorded Feb 12, 2020
From: BALBOA WATER GROUP, LLC
To: BMO HARRIS BANK N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 051906/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2013
From: G-G DISTRIBUTION AND DEVELOPMENT CO., INC.
To: BALBOA WATER GROUP, INC.
Reel/Frame 030963/0703 →
SECURITY AGREEMENT Recorded Nov 19, 2009
From: BALBOA WATER GROUP, INC.; BALBOA INSTRUMENTS, INC.; G-G DISTRIBUTION AND DEVELOPMENT CO., INC.
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 023538/0406 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2009
From: CAMPBELL, GRAHAM J; FUENTES, LUIS E; HILLYARD, JASON W
To: G-G DISTRIBUTION AND DEVELOPMENT CO., IINC.
Reel/Frame 022462/0628 →