IP Library Granted Patent US 9,915,357
Granted Patent B1
US 9,915,357 · App. 14/996,887 · Granted Mar 13, 2018

Actuator with back pressure valve

Inventor: John H. Ehlert (Dallas, TX)
Assignee: TSI Products, Inc.
F16K5/0605
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Quick Facts
Patent No.
US 9,915,357
App. No.
14/996,887
Granted
Mar 13, 2018
Kind
B1
Abstract

An actuator device for a pressurized container incorporating an internal back flow prevention valve. The actuator may include a ball and socket check valve with a resilient component to maintain the ball in a condition to operate as a check valve even when upside-down.

Claims (45)

1. An actuator comprising:

said actuator having a housing comprising:

an input port operable to connect to a canister output of a pressurized canister,

an interior channel fluidly connected to said input port, and

an output having an output channel with a first end, which connects to said interior channel at a fluid connection, and a second end opposite said interior channel, wherein said output is connectable at said second end of said output channel to a tube, which is not part of said housing; and

an internal one-way valve located within said interior channel of said housing which allows fluid flow from said input port to said output and restricts fluid flow from said output to said input port;

wherein said housing is for causing a release of content from said canister output into said input port when said housing is connected to said canister output and actuated; and

wherein said housing comprises a main body component and a second body component attached to said main body component and includes a sealing element between said main body component and said second body component, wherein said second body component comprises the input port and a seat for engaging said canister output.

2. The actuator according to claim 1 , wherein said fluid connection for said output channel is between a first end of said interior channel which is operably connected to said input port and a second end of said interior channel opposite said input port.

3. The actuator according to claim 2 , wherein said output channel extends from said interior channel at an angle of greater than 30 degrees.

4. The actuator according to claim 1 , wherein said internal one-way valve comprises a ball within said interior channel and said second body component comprises a socket which is located at a first end of said interior channel and is fitted to said ball such that said ball when engaged with said socket forms a seal to prevent a backflow pressure from said output from reaching said input port.

5. The actuator according to claim 4 , wherein said interior channel has a resilient component therein which holds said ball in a first position when said actuator is upside-down, wherein said ball in said first position remains operable to function as a component of the internal one-way valve in conjunction with said socket when said backflow pressure from said output is applied to said ball.

6. The actuator according to claim 5 , wherein said resilient component is a spring.

7. The actuator according to claim 6 , wherein said ball is freely moveable between said first position and a second position within said interior channel, wherein said moveable ball is in contact with a spring in said first position and is not in contact with said spring in said second position.

8. The actuator according to claim 5 , wherein said ball compresses said resilient component when a pressure is applied from said pressurized canister through said input port.

9. The actuator according to claim 8 , wherein when said resilient component is compressed, the ball moves beyond the said fluid connection.

10. An actuator comprising:

an actuator housing having an internal check valve comprising:

an input port operable to connect to a valve stem of a pressurized canister;

an interior channel fluidly connected to said input port;

an output having an output channel fluidly connected to said interior channel;

said internal check valve located within said interior channel of said actuator which allows fluid flow from said input port to said output and restricts fluid flow from said output to said input port, comprising a moveable ball and a socket dimensioned to fit said moveable ball and creating a seal when a backflow pressure is applied against said movable ball from said output into said interior channel which is greater than an input pressure applied through said input port,

wherein said moveable ball is freely moveable between a first position and a second position within said interior channel until a fluid flow pressure is applied to said moveable ball; and

wherein said moveable ball is in contact with a spring in said first position and is not in contact with said spring in said second position.

11. The actuator according to claim 10 , wherein said actuator housing comprises a main body component and a second body component attached to said main body component and includes a sealing element between said main body component and said second body component.

12. An apparatus comprising:

a pressurized canister having an output trigger mechanism, and

an actuator comprising:

an input port operable to connect to an output of said pressurized canister;

an interior channel fluidly connected to said input port;

an output having an output channel which connects to said interior channel at a fluid connection; and

an internal one-way valve having a moveable ball located within said interior channel which allows fluid flow from said input port to said output and restricts fluid flow from said output to said input port,

wherein said actuator comprises a main body component and a second body component attached to said main body component and includes a sealing element between said main body component and said second body component forming an actuator body, including said interior channel, that is for actuating said output trigger mechanism; and

wherein said moveable ball is freely moveable within said interior channel between a socket and a resilient component, wherein said moveable ball contacts said resilient component in a first position and does not contact said resilient component in a second position.

13. The apparatus according to claim 12 , wherein said resilient component is a spring.

14. An actuator comprising:

said actuator having a housing comprising:

an input port operable to connect to an output of a pressurized canister, an interior channel fluidly connected to said input port, and

an output having an output channel with a first end, which connects to said interior channel at a fluid connection, and a second end opposite said interior channel, wherein said output is connectable at said second end of said output channel to a tube, which is not part of said housing; and

an internal one-way valve comprising a ball and a fitted socket which is located within said interior channel of said housing which allows fluid flow from said input port to said output and restricts fluid flow from said output to said input port;

wherein said housing is for causing a release of content from said output of said pressurized canister into said input port when said housing is connected to said output of said pressurized canister and actuated; and

wherein said interior channel has a resilient component therein which holds said ball in a first position when said actuator is upside-down, wherein said ball in said first position remains operable to function as a component of the one-way valve in conjunction with said socket when a backflow pressure from said output is applied to said ball, and

wherein said ball is freely moveable within said interior channel between said fitted socket and said resilient component, wherein said moveable ball contacts said resilient component in said first position and does not contact said resilient component in a second position.

15. The actuator according to claim 14 , wherein said ball when engaged with said fitted socket forms a seal to prevent a backflow pressure from said output from reaching said input port.

16. The actuator according to claim 14 , wherein said resilient component is a spring.

Assignments (5)
TERMINATION AND RELEASE OF SECURITY IN PATENTS RECORDED AT R/F 53764/0307 Recorded Dec 6, 2024
From: JPMORGAN CHASE BANK, N.A.
To: AC AVALANCHE LLC; B'LASTER LLC
Reel/Frame 069530/0810 →
SECURITY INTEREST Recorded Oct 26, 2023
From: AC AVALANCHE LLC; B'LASTER LLC
To: CAPITAL ONE, NATIONAL ASSOCIATION, AS SECURED PARTY
Reel/Frame 065354/0529 →
SECURITY INTEREST Recorded Sep 14, 2020
From: B'LASTER LLC; AC AVALANCHE LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 053764/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2020
From: TSI PRODUCTS, INC.
To: AC AVALANCHE LLC
Reel/Frame 053577/0528 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2016
From: EHLERT, JOHN H.
To: TSI PRODUCTS, INC.
Reel/Frame 037612/0679 →
Continuity (1)
Provisional Application 62118349 · Feb 19, 2015