IP Library Granted Patent US 11,365,814
Granted Patent B2
US 11,365,814 · App. 17/209,788 · Granted Jun 21, 2022

Control valve for fluid treatment apparatus

Inventors: Eugene Boglio (Glendale Heights, IL); Doug Anderson (St. Charles, IL); Adam Sloma (Arlington Heights, IL); Lonnie Webb (Waterford, WI); Harkirat Sahni (Tampa, FL); Bill Lathouris (Arlington Heighls, IL)
Assignee: CULLIGAN INTERNATIONAL COMPANY
F16K1/36C02F1/42C02F5/00F16K1/46F16K3/246F16K11/10F16K27/0263F16K27/04F16K31/122F16K31/1245F16K47/04C02F2201/005
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Quick Facts
Patent No.
US 11,365,814
App. No.
17/209,788
Granted
Jun 21, 2022
Kind
B2
Abstract

A control valve for a fluid treatment apparatus is provided, including a valve body having a control portion and a treatment portion, the portions being separated from each other so that fluid in the control portion is isolated from fluid in the treatment portion. The treatment portion includes a plurality of piston valves reciprocating in corresponding openings defined in a corresponding number of cylinders for controlling water to be treated in the apparatus. Each of the cylinders has a plurality of peripherally spaced, vertically-extending guide ribs configured for facilitating engagement of the piston valves with the openings and for reducing unwanted cavitation.

Claims (24)

1. A control valve for a fluid treatment apparatus, comprising:

a valve body having a control portion and a treatment portion, said portions being separated from each other so that fluid in said control portion is isolated from fluid in said treatment portion;

said treatment portion including a plurality of piston valves reciprocating in corresponding openings defined in a corresponding number of cylinders for controlling water to be treated in said apparatus;

each of said cylinders having a plurality of peripherally spaced, vertically-extending guide ribs configured for facilitating engagement of said piston valves with said openings and for reducing unwanted cavitation.

2. The control valve of claim 1 , wherein each said guide rib has a beveled interior edge at an upper end.

3. The control valve of claim 2 , wherein said beveled interior edge faces an interior of said cylinder, and extends from an upper edge of said opening to an upper end of said guide rib.

4. The control valve of claim 2 , wherein beveled edge defines an angle and a first piston valve half defines a complementarily angled edge for promoting piston guidance into said cylinder.

5. The control valve of claim 1 , wherein each said guide rib extends vertically past an upper end of said corresponding opening in said cylinder.

6. The control valve of claim 1 , wherein each said guide rib projects radially inwardly from an inner surface of said cylinder.

7. A control valve for a fluid treatment device, comprising:

a valve body having a control portion and a treatment portion, and at least one port constructed and arranged for releasably accommodating a connection nipple fitting; and

a quick release clip connecting said nipple fitting to said associated port, said clip being generally “U”-shaped when viewed from the front or rear, and having depending, biased arms with free ends having formations constructed and arranged for releasably lockingly engaging associated hook lugs on said valve body for preventing release of said clip from said valve body.

8. The control valve of claim 7 , wherein said at least one port includes at least one of an inlet port, an outlet port and a drain outlet port.

9. The control valve of claim 7 , wherein said formations on said free ends of said clip are “T”-bar formations, extending transversely from ends of said free ends.

10. The control valve of claim 7 , wherein said quick release clip includes at least one depending guide formation for engaging a corresponding slot in said port and an associated groove in said nipple.

11. The control valve of claim 10 , wherein said depending guide formations are located between said depending biased arms.

12. The control valve of claim 11 , further including a pair of said guide formations.

13. The control valve of claim 7 , further including a tab on an upper end of said clip configured for facilitating grasping by an operator for releasing said clip for removing said nipple fitting.

14. The control valve of claim 7 , wherein said hook lugs are secured to said valve body in spaced parallel orientation for accommodating free ends of said biased arms.

15. The control valve of claim 14 , wherein said hook lugs are wedge-shaped, and extend gradually farther from said valve body closer to an engagement point of said formations on said free ends.

16. A clip for use with a fluid treatment device control valve having a valve body and at least one pair of hook lugs located in spaced, parallel relationship on said valve body, and at least one port constructed and arranged for releasably accommodating a connection nipple fitting, said clip comprising:

a general “U”-shape when viewed from the front or rear, including a pair of depending, biased arms with free ends having “T”-bar formations, extending transversely from ends of said free ends and being constructed and arranged for releasably lockingly engaging the hook lugs on the valve body for preventing release of the clip from the valve body;

at least one depending guide formation for engaging a corresponding slot in the port and an associated groove in the nipple, said at least one guide formation being located between said depending arms; and

a tab on an upper end of said clip configured for facilitating grasping by an operator for releasing the clip for removing the nipple fitting.

Assignments (1)
SECURITY INTEREST Recorded Aug 10, 2021
From: CULLIGAN INTERNATIONAL COMPANY; RAYNE CORPORATION; LVD ACQUISITION, LLC; PARAGON WATER SYSTEMS, INC.; ZERO TECHNOLOGIES, LLC
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 057145/0728 →
Continuity (4)
Continuation 16560807 · Sep 4, 2019
Division 15282452 · Sep 30, 2016
Provisional Application 62245751 · Oct 23, 2015
Related Publication 20210207717A1 · Jul 8, 2021
Cited By (1)
US 1,112,650