IP Library Granted Patent US 12,145,113
Granted Patent B2
US 12,145,113 · App. 17/146,463 · Granted Nov 19, 2024

Adjustable additive cartridge systems and methods

Inventors: Garrett S. Waggoner (Sarasota, FL); Andrew Gay (Mill Creek, WA); Thomas A. Urbanik (Watertown, MA); William G. Kurth (Dunbarton, NH); Daniel J. Faulkner (Portland, OR); Drew Kissinger (Carlisle, MA)
Assignee: Cirkul, Inc.
B01F23/451A47J31/005A47J41/0083A47J43/27B01F25/31433B01F25/315B01F33/5011B01F33/50111B01F35/7162B65D47/06B65D47/243B65D81/3244B01F23/483B65D47/244
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Quick Facts
Patent No.
US 12,145,113
App. No.
17/146,463
Granted
Nov 19, 2024
Kind
B2
Abstract

An additive delivery system may incorporate a cartridge system, including a container cap and a reservoir assembly that provides for storage of an additive. The container cap includes a mixing nozzle for mixing of the additive with a base fluid as the base fluid flows from the base fluid container through the cartridge. A one-way valve prevents backflow of base fluid and/or mixed base fluid/additive from an area downstream of the mixing nozzle such that the base fluid supply remains in a pure state.

Claims (40)

1. An additive cartridge for adding additive to base liquid in response to the base liquid flowing through the additive cartridge from a base liquid container, the additive cartridge comprising:

a base for securing the additive cartridge to the base liquid container;

a mixing nozzle comprising:

a main body portion;

a mixing nozzle stem extending from the main body portion, the mixing nozzle stem including an opening to an interior space defined by a mixing nozzle metering surface on an interior of the mixing nozzle stem;

a reservoir assembly interface extending from the main body portion and adapted to support a reservoir assembly;

an additive passage extending through the mixing nozzle stem and defining an additive flow path from the reservoir assembly interface to the mixing nozzle metering surface; and

at least one base liquid port extending through the mixing nozzle main body portion adjacent to the mixing nozzle stem;

a metering component extending through the opening and within the interior space of the mixing nozzle stem and having a metering component metering surface shaped complementarily to the mixing nozzle metering surface; and

an additive adjustment actuator cooperating with the metering component such that movement of the additive adjustment actuator causes movement of the metering component metering surface relative to the mixing nozzle metering surface.

2. The cartridge of claim 1 , further comprising the reservoir assembly holding the additive, wherein the reservoir assembly includes a collapsible reservoir.

3. The cartridge of claim 1 , wherein the reservoir assembly interface includes at least two arms extending from the main body portion, wherein the at least two arms are adapted to engage the reservoir assembly with a snap.

4. The cartridge of claim 1 , wherein the at least one base liquid port comprises at least two base liquid ports arranged in a circumferential pattern around the mixing nozzle stem.

5. The cartridge of claim 1 , further comprising an annular flexible seal arranged on the mixing nozzle stem to form a one-way seal that prevents backflow of base liquid through the at least one base liquid port.

6. The cartridge of claim 1 , wherein the mixing nozzle metering surface is a conical surface, and the metering component is configured to move into and out of the interior space in response to movement of the additive adjustment actuator.

7. A mixing nozzle for use in an additive cartridge for mixing additive with a base liquid in response to the base liquid flowing through the additive cartridge, the mixing nozzle comprising:

a main body portion;

a mixing nozzle stem extending from the main body portion, the mixing nozzle stem including an interior space defined in part by a mixing nozzle metering surface on an interior of the mixing nozzle stem;

a reservoir assembly interface extending from the main body portion and adapted to support a reservoir assembly;

an additive passage extending through the mixing nozzle stem from the reservoir assembly interface to the mixing nozzle metering surface;

at least one base liquid port extending through the mixing nozzle main body portion adjacent to the mixing nozzle stem; and

a metering component adapted to extend within the interior of the mixing nozzle stem and having a metering component metering surface shaped complementarily to the mixing nozzle metering surface,

wherein the mixing nozzle is configured such that base liquid passing through the at least one base liquid port contacts a portion of an outer surface of the mixing nozzle between the reservoir assembly interface and the mixing nozzle metering surface.

8. The mixing nozzle of claim 7 , wherein the reservoir assembly interface includes at least two arms extending from the main body portion, wherein the at least two arms are adapted to engage the reservoir assembly with a snap-fitting.

9. The mixing nozzle of claim 7 , wherein the at least one base liquid port comprises at least two base liquid ports arranged in a circumferential pattern around the mixing nozzle stem.

10. The mixing nozzle of claim 7 , further comprising an annular flexible seal arranged on the mixing nozzle stem to form a one-way seal that prevents backflow of base liquid through the at least one base liquid port.

11. The mixing nozzle of claim 7 , wherein the mixing nozzle metering surface is a conical surface.

12. The mixing nozzle of claim 7 , wherein the additive passage includes a converging section upstream of the mixing nozzle metering surface.

13. The mixing nozzle of claim 7 , wherein the mixing nozzle stem includes at least one thread and wherein the metering component is adapted to cooperate with the at least one thread to vary a position of the metering component metering surface relative to the mixing nozzle metering surface when the metering component rotates relative to the mixing nozzle stem.

14. The mixing nozzle of claim 7 , wherein the metering component is adapted to form a safety seal with the mixing nozzle stem.

15. The mixing nozzle of claim 7 , wherein the metering component is adapted to positively lock when the metering component is in a sealed position on the mixing nozzle stem.

16. The mixing nozzle of claim 7 , further in combination with the additive cartridge, the additive cartridge comprising the reservoir assembly having a reservoir stem defining a reservoir flow path, wherein the reservoir assembly interface is adapted to support the reservoir assembly such that the reservoir stem is aligned with the mixing nozzle stem.

17. The mixing nozzle of claim 7 , wherein the metering component comprises at least one guide channel adapted to permit the metering component to rotate with a user adjustment actuator and to guide the metering component within the user adjustment actuator.

18. The cartridge of claim 1 , wherein the additive flow path includes a converging section upstream of the mixing nozzle metering surface.

19. The cartridge of claim 1 , wherein the mixing nozzle stem includes at least one thread and wherein the metering component is adapted to cooperate with the at least one thread to vary a position of the metering component metering surface relative to the mixing nozzle metering surface when the metering component rotates relative to the mixing nozzle stem.

20. The cartridge of claim 1 , wherein the metering component is adapted to form a safety seal with the mixing nozzle stem.

21. The cartridge of claim 1 , wherein the metering component is adapted to positively lock when the metering component is in a sealed position on the mixing nozzle stem.

22. The cartridge of claim 1 , further comprising a reservoir assembly, wherein the reservoir assembly includes a reservoir stem defining a reservoir flow path, wherein the reservoir assembly interface is adapted to support the reservoir assembly such that the reservoir stem is aligned with the mixing nozzle stem.

23. The cartridge of claim 1 , wherein the metering component comprises at least one guide channel adapted to permit the metering component to rotate with the additive adjustment actuator and to guide the metering component within the additive adjustment actuator.

24. The mixing nozzle of claim 7 , wherein the metering component is configured such that base liquid passing through the at least one base liquid port contacts a portion of an outer surface of metering component.

Assignments (6)
SECURITY INTEREST Recorded Mar 30, 2026
From: CIRKUL, INC.
To: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 075311/0397 →
SECURITY INTEREST Recorded Apr 23, 2025
From: CIRKUL, INC.
To: ACP REDSTONE CREDIT, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 071008/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2024
From: WAGGONER, GARRETT S.; GAY, ANDREW; URBANIK, THOMAS A.; KURTH, WILLIAM G.; FAULKNER, DANIEL J.; KISSINGER, DREW
To: CIRKUL, INC.
Reel/Frame 066597/0708 →
TERMINATION AND RELEASE OF SECURITY AGREEMENT Recorded Dec 12, 2023
From: JPMORGAN CHASE BANK, N.A.
To: CIRKUL, INC.
Reel/Frame 065966/0665 →
SECURITY INTEREST Recorded Dec 11, 2023
From: CIRKUL, INC.
To: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 065829/0216 →
SECURITY INTEREST Recorded Jun 7, 2022
From: CIRKUL, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 060122/0079 →