IP Library › Granted Patent US 9,200,881
Granted Patent B1
US 9,200,881 · App. 14/467,927 · Granted Dec 1, 2015

Systems and methods for an improved firing assembly

Inventor: F. Richard Langner (Fountain Hills, AZ)
F42D5/04F41A19/06
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Quick Facts
Patent No.
US 9,200,881
App. No.
14/467,927
Granted
Dec 1, 2015
Kind
B1
Abstract

Methods and apparatus of a firing assembly for activating a cartridge to launch a projection from a disrupter cannon to disable or destroy an explosive device.

Claims (50)

1. A disrupter cannon for launching a provided projectile toward an explosive device to disable or destroy the explosive device, the disrupter cannon comprising:

a barrel;

a breech cap coupled to the barrel;

a firing assembly coupled to the breech cap, the firing assembly comprising a housing, a retainer, a magnet, a cover, and a firing pin, the housing having a first passage therethrough; wherein:

the retainer, the magnet, the cover, and the firing pin are positioned in the first passage of the housing;

the retainer has a protrusion and a second passage therethrough, a portion of the second passage through the protrusion;

the magnet has a third passage therethrough, the magnet positioned proximate to the retainer, the protrusion positioned through the third passage such that the protrusion extends past the magnet;

the cover having a forth passage therethrough, the cover positioned proximate to the magnet, the protrusion positioned through the forth passage such that the protrusion extends past the cover; and

the firing pin including a base and a rod;

the cover is positioned between the magnet and the firing pin such that the firing pin does not contact the magnet;

in a pre-firing position, the firing pin is proximate to the cover, the protrusion is positioned proximate to the base, the rod is positioned in the housing;

a force of an expanding gas transmitted via the passage through the protrusion directly to the base moves the firing pin from the pre-firing position to a firing position;

in the firing position, an end portion of the rod extends from the housing to launch a provided projectile;

as a magnitude of the force of the expanding gas decreases, a force of a magnetic field of the magnet moves the firing pin from the firing position to the pre-firing position.

2. The firing assembly of claim 1 wherein:

the base of the firing pin includes a cavity;

in the pre-firing position, an end portion of the protrusion is positioned in the cavity.

3. The firing assembly of claim 1 wherein the first passage, the second passage, the third passage, and the fourth passage are coaxial.

4. The firing assembly of claim 1 wherein:

the cover includes a cavity;

the magnet is positioned in the cavity such that the cover covers the magnet.

5. The firing assembly of claim 1 wherein the magnet couples to the retainer.

6. The firing assembly of claim 1 wherein an adhesive couples the magnet to the retainer.

7. The firing assembly of claim 1 wherein the cover couples to at least one of the retainer and the magnet.

8. The firing assembly of claim 1 wherein an adhesive couples the cover to at least one of the retainer and the magnet.

9. The firing assembly of claim 1 wherein:

a rearward face of the magnet contacts a forward face of the retainer;

a forward face of the magnet contacts a rearward face of the cover.

10. A firing assembly for a disrupter cannon, the firing assembly comprising:

a retainer having a protrusion and a first passage therethrough,

a magnet having a second passage therethrough, the magnet positioned proximate to the retainer,

a cover having a third passage therethrough, the cover positioned proximate to the magnet,

a firing pin including a base and a rod,

wherein the cover is positioned between the magnet and the firing pin such that the firing pin does not contact the magnet;

in a pre-firing position, the firing pin is proximate to the cover, the protrusion is positioned proximate to the base;

a force of an expanding gas transmitted via the first passage through the protrusion directly to the base moves the firing pin from the pre-firing position to a firing position to launch a provided projectile;

as a magnitude of the force of the expanding gas decreases, a force of a magnetic field of the magnet moves the firing pin from the firing position to the pre-firing position.

11. The firing assembly of claim 10 wherein:

the base of the firing pin includes a cavity;

in the pre-firing position, an end portion of the protrusion is positioned in the cavity.

12. The firing assembly of claim 10 wherein the first passage, the second passage, and the third passage are coaxial.

13. The firing assembly of claim 10 wherein:

the cover includes a cavity;

the magnet is positioned in the cavity such that the cover covers the magnet.

14. The firing assembly of claim 10 wherein the magnet couples to the retainer.

15. The firing assembly of claim 10 wherein an adhesive couples the magnet to the retainer.

16. The firing assembly of claim 10 wherein the cover couples to at least one of the retainer and the magnet.

17. The firing assembly of claim 10 wherein an adhesive couples the cover to at least one of the retainer and the magnet.

18. The firing assembly of claim 10 wherein:

a rearward face of the magnet contacts a forward face of the retainer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2019
From: LANGNER, F. RICHARD
To: CONCEPT DEVELOPMENT CORPORATION
Reel/Frame 051035/0080 →
Continuity (4)
Continuation In Part 13616987 · Sep 14, 2012
Provisional Application 61659414 · Jun 13, 2012
Provisional Application 61628006 · Oct 24, 2011
Provisional Application 61628115 · Oct 25, 2011