IP Library Granted Patent US 9,952,011
Granted Patent B2
US 9,952,011 · App. 15/366,771 · Granted Apr 24, 2018

Rotationally actuated and dual pin supported linkage incorporated into a lower receiver of a firearm for establishing a last shot hold open condition with an upwardly displaceable magazine follower

Inventors: John L. Overstreet (Fayette, MO); Tyson Bradshaw (Kirksville, MO); Von Davis (Columbia, MO); Jordan Wilson (Columbia, MO)
Assignee: 22 Evolution LLC
F41A17/36F41A3/66
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Quick Facts
Patent No.
US 9,952,011
App. No.
15/366,771
Granted
Apr 24, 2018
Kind
B2
Abstract

A bolt hold open linkage incorporated into a lower receiver of a firearm for elevating a bolt catch into contact with a forwardly displacing bolt associated with an upper receiver reciprocating action assembly. An elongated central stem has a forward end and an opposite rearward end, a shoulder being supported, via an extending portion, from the rearward end. A pair of axially aligning mounting pins are supported at spaced apart locations of the lower receiver above a magazine receiving well incorporated into the lower receiver, the pins mounting the opposite ends in pivoting fashion about a centerline extending between the axially aligning pins which is offset from the shoulder. Upon an upwardly displaceable follower, associated with a magazine which is secured to the well, being adapted to elevate into contact with the linkage at a location offset from the axial centerline, the shoulder actuating in a combined pivoting and elevating fashion and adapted to contact and elevate the bolt catch for intercepting the forwardly displacing bolt.

Claims (28)

1. A bolt hold open linkage incorporated into a lower receiver of a firearm for elevating a bolt catch into contact with a forwardly displacing bolt associated with an upper receiver reciprocating action assembly, said linkage comprising:

an elongated stem having a forward end and an opposite rearward end;

a pair of axially spaced mounting pins supported at spaced apart and elevated locations of the lower receiver and defining an axis extending over a magazine receiving well incorporated into the lower receiver, said pins mounting said stem at said forward and rearward ends in pivoting fashion; and

upon an upwardly displaceable follower associated with a magazine which is secured to the well being adapted to elevate into contact with said linkage at a location offset from a pivot axis established between said pins, a flattened shoulder projecting from said stem actuating in a combined pivoting and elevating fashion and adapted to contact and elevate the bolt catch for intercepting the forwardly displacing bolt.

2. The linkage as described in claim 1 , said forward end of said linkage further comprising a downwardly angled portion with a first pin receiving aperture, said rearward end likewise including a further downwardly angled portion through which is formed a further pin receiving aperture.

3. The linkage as described in claim 2 , the lower receiver including a pair of forward and rearward spaced apart bridge supports associated with an upper surface of the lower receiver on opposite ends of the magazine well, said axially extending pins pivotally mounting said linkage in extending fashion between said bridge supports.

4. The linkage as described in claim 1 , said flattened shoulder further comprising a flattened plate shape, a downwardly extending portion interconnecting said plate shape with said stem so that said plate shape is in abutting contact with an underside ledge of the bolt catch.

5. The linkage as described in claim 1 , further comprising an abutment member adapted to being secured to the lower receiver, said abutment member having a vertical extending portion and an angled upper portion which is contacted by said flattened shoulder to define a maximum pivoting contact location with said linkage.

6. The linkage as described in claim 1 , said stem further comprising a shoulder supported, via an extending portion, from said rearward end.

7. The linkage as described in claim 1 , further comprising a pair of cylindrical mounting posts affixed to said lower receiver for engaging said pins.

8. The linkage as described in claim 7 , further comprising opposing mounting faces of said posts exhibiting flattened profiles.

9. The linkage as described in claim 8 , said forward and rearward ends of said stem further comprising flattened end faces opposing said post mounting faces.

10. A bolt hold open linkage incorporated into a lower receiver of a firearm for elevating a bolt catch into contact with a forwardly displacing bolt associated with an upper receiver reciprocating action assembly, said linkage comprising:

an elongated stem pivotally mounted at fore and aft locations by a pair of axially aligning mounting pins supported at spaced apart locations of the lower receiver in extending fashion above a magazine receiving well incorporated into the lower receiver; and

upon a follower contained within a magazine adapted to being secured to the well displacing upwardly following discharge of a final remaining round, the follower adapting to contact a first location of stem which is offset from a pivot axis extending between said fore and aft locations, pivoting of said stem causing a second axial offset location of said stem to be adapted to contact an underside location of the bolt catch and to elevate the bolt catch to intercept the forwardly displacing bolt.

11. The linkage as described in claim 10 , said first contact location of said stem further comprising a portion extending from said fore location.

12. The linkage as described in claim 10 , said second location of said stem further comprising a flattened shoulder extending from said aft location.

13. The linkage as described in claim 10 , further comprising first and second pins mounting said stem at said fore and aft locations.

14. The linkage as described in claim 13 , further comprising a pair of cylindrical mounting posts affixed to said lower receiver for engaging said pins.

15. The linkage as described in claim 14 , further comprising opposing mounting faces of said posts exhibiting flattened profiles.

16. The linkage as described in claim 15 , said forward and rearward ends of said stem further comprising flattened end faces opposing said post mounting faces.

17. The linkage as described in claim 14 , further comprising lower apertures formed in said mounting posts which, upon aligning with apertures formed in the lower receiver, receiving laterally inserted pins for anchoring said posts.

18. The linkage as described in claim 17 , further comprising upper apertures extending at an angle relative to said lower apertures, said upper apertures adapted to receiving said pins.

19. A bolt hold open linkage incorporated into a lower receiver of a firearm for elevating a bolt catch into contact with a forwardly displacing bolt associated with an upper receiver reciprocating action assembly, said linkage comprising:

an elongated stem having a forward end and an opposite rearward end;

a pair of axially spaced mounting pins supported at spaced apart and elevated locations of the lower receiver and defining an axis extending over a magazine receiving well incorporated into the lower receiver, said pins mounting said stem at said forward and rearward ends in pivoting fashion;

a pair of cylindrical mounting posts affixed to said lower receiver for engaging said pins; and

upon an upwardly displaceable follower associated with a magazine which is secured to the well being adapted to elevate into contact with said linkage at a location offset from a pivot axis established between said pins, a flattened shoulder projecting from said stem actuating in a combined pivoting and elevating fashion and adapted to contact and elevate the bolt catch for intercepting the forwardly displacing bolt.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2016
From: OVERSTREET, JOHN L.; BRADSHAW, TYSON; DAVIS, VON; WILSON, JORDAN
To: 22 EVOLUTION, LLC
Reel/Frame 040487/0014 →
Continuity (2)
Provisional Application 62263485 · Dec 4, 2015
Related Publication 20170160032A1 · Jun 8, 2017