IP Library Granted Patent US 9,459,061
Granted Patent B2
US 9,459,061 · App. 14/687,148 · Granted Oct 4, 2016

Super and subsonic gas regulator assembly

Inventor: Charles B. Cassels (New Smyma Beach, FL)
F41A5/28
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,459,061
App. No.
14/687,148
Granted
Oct 4, 2016
Kind
B2
Abstract

A retro fit capable super & subsonic gas regulator assembly designed to interface with an auto-loading gas operated host firearm is provided to replace existing gas systems. The gas regulator assembly optimizes gas flow into the host firearm's operating system. The gas regulator has a spring actuated gas regulator and cross-pin including a flat that disengages with the gas regulator when the gas regulator is rotated to allow the gas flow to be set to one of a plurality of gas settings e.g., four. In embodiments, setting one is optimal for using supersonic ammunition with a silencer, setting two is optimal for using supersonic ammunition without a silencer, setting three is optimal for subsonic ammunition, and setting four turns the gas flow off optimizing sound reduction and providing for manual operation of the host firearm. The system works by precisely metering gas entering the operating system and not by exhausting excess gas into the atmosphere. The super & subsonic gas regulator assembly provides optimal performance with both subsonic and supersonic ammunition in a single firearm allowing the operator full advantage.

Claims (25)

1. An adjustable gas regulator assembly for use with a gas operated firearm, the adjustable gas regulator assembly comprising:

a gas block defining a barrel bore configured to receive the barrel of a firearm, a cross-pin bore and a gas regulator bore, the gas regulator bore communicating with the barrel bore via a gas block gas port;

a gas regulator rotatably received within a first end of the gas regulator bore, the gas regulator defining a plurality of regulator gas ports, the gas regulator being rotatable within the first end of the gas regulator bore to selectively position any one of the plurality of regulator gas ports in registration with the gas block gas port;

a cross-pin positioned within the cross-pin bore, the cross-pin defining a first surface, wherein the gas regulator defines a plurality of position stops, each of the position stops being configured to engage the first surface of the cross-pin to selectively secure the gas regulator in one of a plurality of rotationally fixed positions within the gas regulator bore, wherein each of the plurality of position stops of the gas regulator defines a flat and the first surface of the cross-pin defines a flat.

2. The adjustable gas regulator assembly according to claim 1 , wherein the gas regulator is biased into engagement with cross-pin and rotational movement of the gas regulator within the gas regulator bore causes the first surface of the cross-pin to cam the gas regulator to effect axial movement of the gas regulator within the gas regulator bore.

3. The adjustable gas regulator assembly according to claim 1 , wherein the gas regulator includes an adjustment knob to facilitate manual rotation of the gas regulator within the gas regulator bore.

4. The adjustable gas regulator assembly according to claim 1 , wherein the gas regulator defines an annular channel between the plurality of position stops and the adjustment knob, the cross-pin being received within the annular channel to prevent separation of the gas regulator from the gas regulator bore.

5. The adjustable gas regulator assembly according to claim 4 , wherein the cross-pin is removable from the cross-pin bore to facilitate separation of the gas regulator from the gas regulator bore.

6. The adjustable gas regulator assembly according to claim 1 , wherein a piston is received within a second end of the gas block bore.

7. The adjustable gas regulator assembly according to claim 6 , wherein the piston is biased into engagement with the gas regulator to urge the gas regulator into engagement with the cross-pin.

8. The adjustable gas regulator assembly according to claim 7 , wherein the piston is configured to engage a rifle operating system.

9. The adjustable gas regulator assembly according to claim 7 , wherein the piston is configured to engage an op-rod of a direct gas impingement system of a rifle to urge the piston into engagement with the gas regulator.

10. The adjustable gas regulator assembly according to claim 5 , wherein when the cross-pin is received within the annular channel, the gas regulator is capable of 360° rotation without effecting separation of the gas regulator from the gas block bore.

11. The adjustable gas regulator assembly according to claim 3 , wherein the adjustment knob is fixed in relation to the gas regulator such that rotation of the adjustment knob effects corresponding rotation of the gas regulator.

12. The adjustment gas regulator assembly according to claim 11 , wherein the adjustment knob is configured to allow ambidextrous single handed operation.

13. An adjustable gas regulator assembly for use with a gas operated firearm, the adjustable gas regulator assembly comprising:

a gas block defining a barrel bore configured to receive the barrel of a firearm, a cross-pin bore and a gas regulator bore, the gas regulator bore communicating with the barrel bore via a gas block gas port;

a gas regulator rotatably received within a first end of the gas regulator bore, the gas regulator defining a plurality of regulator gas ports, the gas regulator being rotatable within the first end of the gas regulator bore to selectively position any one of the plurality of regulator gas ports in registration with the gas block gas port;

a cross-pin positioned within the cross-pin bore, the cross-pin defining a first surface, wherein the gas regulator defines a plurality of position stops, each of the position stops being configured to engage the first surface of the cross-pin to selectively secure the gas regulator in one of a plurality of rotationally fixed positions within the gas regulator bore, wherein the first surface of the cross-pin is a 45° flat that is configured to interlock with each of the plurality of position stops.

14. An adjustable gas regulator assembly for use with a gas operated firearm, the adjustable gas regulator assembly comprising:

a gas block defining a barrel bore configured to receive the barrel of a firearm, a cross-pin bore and a gas regulator bore, the gas regulator bore communicating with the barrel bore via a gas block gas port;

a gas regulator rotatably received within a first end of the gas regulator bore, the gas regulator defining a plurality of regulator gas ports, the gas regulator being rotatable within the first end of the gas regulator bore to selectively position any one of the plurality of regulator gas ports in registration with the gas block gas port;

a cross-pin positioned within the cross-pin bore, the cross-pin defining a first surface, wherein the gas regulator defines a plurality of position stops, each of the position stops being configured to engage the first surface of the cross-pin to selectively secure the gas regulator in one of a plurality of rotationally fixed positions within the gas regulator bore, wherein each of the plurality of position stops includes a 45° flat to interlock with the cross-pin.

15. The adjustable gas regulator assembly according to claim 1 , wherein the plurality of regulator gas ports are dimensioned to optimize gas flow for sub and supersonic ammunition with or without a silencer.

16. The adjustable gas regulator assembly according to claim 1 , wherein a compression spring is positioned to urge the gas regulator into engagement with the cross-pin to urge a selected one of the plurality of position stops into engagement with the cross-pin.

Continuity (2)
Provisional Application 61979584 · Apr 15, 2014
Related Publication 20150292825A1 · Oct 15, 2015