IP Library Granted Patent US 10,550,012
Granted Patent B2
US 10,550,012 · App. 16/240,545 · Granted Feb 4, 2020

Softener eductor with embedded check valve

Inventors: Douglas Anderson (St. Charles, IL); Harkirat Sahni (Tampa, FL); David Jan West (Skokie, IL)
Assignee: CULLIGAN INTERNATIONAL COMPANY
C02F1/42B01F5/043B01J49/75C02F2201/005C02F2209/40
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Quick Facts
Patent No.
US 10,550,012
App. No.
16/240,545
Granted
Feb 4, 2020
Kind
B2
Abstract

An eductor for a water treatment system, including an eductor body having an inlet end and an opposite outlet end, the body defining an interior with a nozzle chamber and a flared conical portion. A jet nozzle is provided that is dimensioned for location in the nozzle chamber, defining an internal passage in fluid communication with the interior. A duckbill valve located in the jet nozzle includes a base from which project a pair of inherently biased, complementary flaps, free ends of the flaps oriented to open towards the outlet end. A mesh cap has a porous exterior wall defining a cavity in fluid communication with the interior, the cap having an open end engageable in the inlet end of the eductor body so that upon attachment of the mesh cap to the inlet end, the duckbill valve is held in position in the internal passage of the jet nozzle.

Claims (24)

1. An eductor for use in a water treatment system, comprising:

an eductor body having an inlet end and an opposite outlet end, said body defining an interior with a nozzle chamber and a flared conical portion;

a jet nozzle dimensioned for location in said nozzle chamber, defining an internal passage in fluid communication with said interior;

a duckbill valve located in said internal passage and including a base from which project a pair of inherently biased, complementary flaps, free ends of said flaps oriented to open towards said outlet end; and

a mesh cap with a porous exterior wall defining a cavity in fluid communication with said interior, said cap having an open end engageable in said inlet end of said eductor body so that upon attachment of said mesh cap to said inlet end, said duckbill valve is held in position in said internal passage of said jet nozzle.

2. The eductor of claim 1 , wherein said internal passage of said jet nozzle has an annular shoulder for receiving said base of said duckbill valve.

3. The eductor of claim 1 , further including a compression ring disposed between said mesh cap and said base of said duckbill valve.

4. The eductor of claim 3 , further including spaced, generally parallel ribs in said mesh cap cavity which engage said compression ring.

5. The eductor of claim 3 , wherein said compression ring has a tapered internal throughbore.

6. The eductor of claim 1 wherein said base of said duckbill valve is annular and defines a space in fluid communication with said interior.

7. The eductor of claim 1 wherein said duckbill flaps define rectangular free ends.

8. The eductor of claim 1 herein said jet nozzle has an exterior with a plurality of knurled ribs.

9. The eductor of claim 1 wherein said interior of said eductor housing has an internal seat, and an outlet end of said jet nozzle engages said seat.

10. The eductor of claim 9 , wherein said seat defines an opening in fluid communication with said interior.

11. An eductor for use in a water treatment system, comprising:

an eductor body having an inlet end and an opposite outlet end; said body defining an interior with a nozzle chamber and a flared conical portion;

a jet nozzle dimensioned for location in said nozzle chamber, defining an internal passage in fluid communication with said interior, said internal passage defining an annular shoulder;

a duckbill valve located in said internal passage and including a base from which project a pair of inherently biased, complementary flaps, free ends of said flaps oriented to open towards said outlet end, said base engaging said shoulder;

a mesh cap with a porous exterior wall defining a cavity in fluid communication with said interior, said cap having an open end engageable in said inlet end of said eductor body so that upon attachment of said mesh cap to said inlet end, said duckbill valve is held in position in said internal passage of said jet nozzle; and

a compression ring disposed between said base of said duckbill valve and ends of internal ribs in said mesh cap, said ring constructed and arranged so that as said mesh cap is engaged on said inlet end of said eductor body, clamping force is exerted on said base of said duckbill valve.

12. The eductor of claim 11 wherein said base of said duckbill valve is annular and defines a space in fluid communication with said interior.

13. The eductor of claim 11 wherein said duckbill flaps define rectangular free ends.

14. The eductor of claim 11 wherein said interior of said eductor housing has an internal seat, and an outlet end of said jet nozzle engages said seat.

15. The eductor of claim 14 , wherein said seat defines an opening in fluid communication with said interior.

Assignments (2)
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 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2019
From: ANDERSON, DOUGLAS; SAHNI, HARKIRAT; WEST, DAVID JAN
To: CULLIGAN INTERNATIONAL COMPANY
Reel/Frame 051298/0334 →