IP Library Granted Patent US 9,470,466
Granted Patent B2
US 9,470,466 · App. 13/840,371 · Granted Oct 18, 2016

Monolithic noise suppression device for firearm

Inventors: Richard Ryder Washburn, III (Brooklyn, NY); Richard Ryder Washburn, II (New York, NY)
Assignee: CENTRE FIREARMS CO., INC.
F41A21/30
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Quick Facts
Patent No.
US 9,470,466
App. No.
13/840,371
Granted
Oct 18, 2016
Kind
B2
Abstract

A monolithic noise suppression device comprising a monolithic, integral baffle housing module. The module comprising, in turn, at least no welded joints or seams between the various components that make up the core of the module and no welded joints or seams between the core, or any structures that make up the core, and the various interior surfaces and/or structures that make up the body of the module. The module is preferably plastic and manufactured using a layered printing process. The monolithic, integral baffle housing module may include various other features that enhance performance, reduce manufacturing cost, facilitate customization and eliminate restrictions on disposability as compared to conventional noise suppression devices. The monolithic noise suppression device may further comprise a first stage noise suppression device to be used in conjunction with the monolithic, integral baffle housing module.

Claims (33)

1. A monolithic noise suppression device for use with a firearm, said device comprising:

a body having an outermost external surface of the noise suppression device and an internal surface;

a plurality of internal chambers; and

a core comprising one or more baffles having space between the baffles forming the plurality of internal chambers, seamlessly connected to the internal surface of the body,

wherein the noise suppression device includes no joints, seams, or any formerly separate pieces within any of the body, the core, and the one or more baffles.

2. The monolithic noise suppression device of claim 1 , wherein each of said one or more baffles has formed therethrough an opening centered on a longitudinal axis associated with said monolithic noise suppression device.

3. The monolithic noise suppression device of claim 2 , wherein at least one of said one or more baffles has formed therethrough a bleed hole, in addition to the opening centered on the longitudinal axis.

4. The monolithic noise suppression device of claim 2 wherein the one or more baffles are linearly aligned.

5. The monolithic noise suppression device of claim 4 , wherein the orientation of the one or more bleed holes associated with each of the plurality of baffles is offset relative to the one or more bleed holes associated with an adjacent baffle.

6. The monolithic noise suppression device of claim 4 , wherein the size of the one or more bleed holes changes towards a distal end of said monolithic noise suppression device.

7. The monolithic noise suppression device of claim 1 , wherein at least one internal surface associated with at least one of said one or more baffles intersects an internal surface associated with said body such that the point where the surfaces intersect is rounded or filleted.

8. The monolithic noise suppression device of claim 1 , wherein at least one of said plurality of internal chambers contains ablative material, and wherein an internal surface associated with the at least one internal chamber is textured.

9. The monolithic noise suppression device of claim 8 , wherein the texture is a lattice-like structure.

10. The monolithic noise suppression device of claim 8 , further comprising:

a first seal to close off an opening formed through a proximal end of said monolithic noise suppression device; and

a second seal to close off an opening formed through a distal end of said monolithic noise suppression device.

11. The monolithic noise suppression device of claim 10 , wherein said monolithic noise suppression device contains inert gas.

12. The monolithic noise suppression device of claim 1 , wherein said monolithic noise suppression device is plastic.

13. A method of manufacturing said monolithic noise suppression device of claim 1 comprising a layered printing process.

14. A noise suppression device for use with a firearm, said device comprising:

a first stage noise suppression device attached to the firearm; and

a monolithic, integral baffle housing module attached to said first stage noise suppression device, said monolithic, integral baffle housing module comprising:

an outermost body having an external surface of the noise suppression device;

a plurality of internal chambers; and

a core comprising one or more baffles having space between the baffles forming the plurality of internal chambers, wherein the core is seamlessly connected to the internal surface of the body,

wherein the housing module includes no joints, seams, or any formerly separate pieces within any of the body, the core, and the one or more baffles.

15. The noise suppression device of claim 14 , wherein said first stage noise suppression device extends into a first one of the internal chambers of said monolithic, integral baffle housing module, and wherein a longitudinal axis associated with said first stage noise suppression device aligns with a longitudinal axis associated with said monolithic, integral baffle housing module.

16. The noise suppression device of claim 14 , wherein said first stage noise suppression device is metal and said monolithic, integral baffle housing module is plastic.

17. The noise suppression device of claim 14 , wherein at least one internal surface associated with the core intersects an internal surface associated with the body such that the point where the surfaces intersect is rounded or filleted.

18. The noise suppression device of claim 14 , wherein said monolithic, integral baffle housing module comprises a plurality of linearly aligned baffles, wherein each of the plurality of baffles has formed therethrough an opening centered on a longitudinal axis associated with said monolithic, integral baffle housing module and one or more bleed holes in addition to the opening centered on the longitudinal axis, and wherein the orientation of the one or more bleed holes associated with each of the plurality of baffles is offset relative to the one or more bleed holes associated with an adjacent baffle.

19. The noise suppression device of claim 14 , wherein at least one of the plurality of internal chambers contains an ablative material, and wherein an internal surface associated with the at least one internal chamber is textured.

20. The noise suppression device of claim 19 , wherein said monolithic, integral baffle housing module contains inert gas.

21. The noise suppression device of claim 14 , wherein said monolithic, integral baffle housing module is manufactured in accordance with a layered printing process.

Assignments (2)
SECURITY INTEREST Recorded Aug 13, 2020
From: CENTRE FIREARMS CO.
To: CF FINANCE LLC
Reel/Frame 053486/0749 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2013
From: WASHBURN, RICHARD RYDER, II; WASHBURN, RICHARD RYDER, III
To: CENTER FIREARMS CO., INC.
Reel/Frame 030020/0452 →
Continuity (1)
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