IP Library Granted Patent US 12,352,522
Granted Patent B2
US 12,352,522 · App. 18/321,499 · Granted Jul 8, 2025

Air gun with mixed gas charge

Inventor: Jeffrey D. Hansen (Honeoye Falls, NY)
Assignee: Crosman Corporation
F41B11/62F41B11/71F41B11/723
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Quick Facts
Patent No.
US 12,352,522
App. No.
18/321,499
Granted
Jul 8, 2025
Kind
B2
Abstract

An air gun includes a first reservoir storing a first compressed gas, e.g., compressed air, and a second reservoir storing a second compressed gas different from the first compressed gas, e.g., helium. A mixed gas system mixes a supply of the first compressed gas and a supply of the second compressed gas as a gaseous mixture. A firing valve is selectively actuated to release the gaseous mixture to a barrel of the air gun, to fire the air gun.

Claims (68)

1. An air gun comprising:

a housing;

a barrel extending from the housing;

a first reservoir coupled to the housing and containing a first compressed gas;

a second reservoir coupled to the housing and containing a second compressed gas different from the first compressed gas; and

a fluid transfer system configured to perform operations comprising:

receiving a first supply of the first compressed gas from the first reservoir;

receiving a second supply of the second compressed gas from the second reservoir;

retaining a gaseous mixture including the first supply of the first compressed gas and the second supply of the second compressed gas; and

transferring, in response to firing of the air gun, the gaseous mixture including the first supply of the first compressed gas and the second supply of the second compressed gas through the barrel to launch a projectile.

2. The air gun of claim 1 , wherein the fluid transfer system comprises a third reservoir configured to retain gaseous mixture including the first supply of the first compressed gas and the second supply of the second compressed gas.

3. The air gun of claim 2 , further comprising:

a first valve configured to meter flow of the first supply of the first compressed gas from the first reservoir; or

a second valve configured to meter flow of the second supply of the second compressed gas from the second reservoir.

4. The air gun of claim 3 , further comprising a regulator associated with the first valve or the second valve.

5. The air gun of claim 4 , wherein the regulator is adjustable to modify a ratio of the first compressed gas to the second compressed gas.

6. The air gun of claim 1 , wherein the fluid transfer system comprises:

a first conduit for transferring the first supply of the first compressed gas; and

a second conduit for transferring the second supply of the second compressed gas, the second conduit converging with the first conduit to provide the second compressed gas to a flow of the first compressed gas through the first conduit.

7. The air gun of claim 1 , further comprising:

a first valve configured to control flow of the first supply from the first reservoir;

a second valve configured to control flow of the second supply from the second reservoir; and

a controller configured to selectively actuate the first valve and the second valve to control a ratio of a mix including the first supply and the second supply.

8. The air gun of claim 7 , further comprising:

a third reservoir configured to receive the first supply of the first compressed gas and the second supply of the second compressed gas,

wherein the controller is further configured to perform actions comprising:

causing the first valve to open to allow transfer of the first supply from the first reservoir to the third reservoir;

causing, in response to the transfer of the first supply, the first valve to close;

after causing the first valve to close, causing the second valve to open to allow transfer of the second supply from the second reservoir to the third reservoir; and

causing, in response to the transfer of the second supply, the second valve to close.

9. The air gun of claim 8 , further comprising:

a one-way valve associated with the third reservoir, the one-way valve configured to allow at least one of the transfer of the first supply to the third reservoir or the transfer of the second supply to the third reservoir and to prevent the first supply or the second supply from the third reservoir.

10. The air gun of claim 7 , further comprising:

a user interface configurable by a user to select the ratio of the mix including the first supply and the second supply.

11. An air gun comprising:

a barrel disposed to fire a projectile;

a first reservoir containing a first compressed gas; and

a second reservoir containing a second compressed gas,

wherein a first supply of the first compressed gas and a second supply of the second compressed gas are mixed to form a gaseous mix,

wherein the gaseous mix is retained in the air gun as a retained gaseous mix prior to firing of the air gun, and

wherein, in response to firing of the air gun, the retained gaseous mix is provided to the barrel to fire the air gun.

12. The air gun of claim 11 , further comprising:

a first metering orifice associated with the first reservoir to control transfer of the first supply of the first compressed gas from the first reservoir; and

a second metering orifice associated with the second reservoir to control transfer of the second supply of the second compressed gas from the second reservoir.

13. The air gun of claim 12 , further comprising:

a firing valve proximate the barrel and controllable to release the gaseous mix into the barrel.

14. The air gun of claim 13 , further comprising:

a trigger,

wherein actuation of the trigger causes the firing valve to open.

15. The air gun of claim 11 , further comprising:

a third reservoir arranged to receive the first supply of the first compressed gas and the second supply of the second compressed gas, the first supply and the second supply being mixed in the third reservoir to form the gaseous mix.

16. The air gun of claim 11 , further comprising:

a first valve configured to control flow of the first supply from the first reservoir; and

a second valve configured to control flow of the second supply from the second reservoir.

17. The air gun of claim 16 , wherein:

the first valve is a first restrictor; and

the second valve is a second restrictor.

18. The air gun of claim 16 , further comprising:

a controller configured to selectively actuate the first valve and the second valve to control a ratio of the first compressed gas and the second compressed gas in the gaseous mix.

19. The air gun of claim 18 , further comprising:

a third reservoir configured to receive the first supply of the first compressed gas and the second supply of the second compressed gas,

wherein the controller is further configured to perform actions comprising:

causing the first valve to open to allow transfer of the first supply from the first reservoir to the third reservoir;

causing, in response to the transfer of the first supply, the first valve to close;

after causing the first valve to close, causing the second valve to open to allow transfer of the second supply from the second reservoir to the third reservoir; and

causing, in response to the transfer of the second supply, the second valve to close.

20. The air gun of claim 19 , further comprising:

a one-way valve associated with the third reservoir, the one-way valve configured to allow at least one of the transfer of the first supply to the third reservoir or the transfer of the second supply to the third reservoir and to prevent the first supply or the second supply from the third reservoir.

Assignments (2)
SECURITY INTEREST Recorded Feb 5, 2026
From: CROSMAN CORPORATION
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 073702/0224 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2023
From: HANSON, JEFFREY D
To: CROSMAN CORPORATION
Reel/Frame 064664/0948 →
Continuity (1)
Related Publication 20240393080A1 · Nov 28, 2024
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