IP Library Granted Patent US 11,609,059
Granted Patent B2
US 11,609,059 · App. 17/404,050 · Granted Mar 21, 2023

Firearm suppressor

Inventor: Michael B. Slack (Viroqua, WI)
Assignee: Stealth Project, LLC
F41A21/30F41A21/24F41A21/34
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Quick Facts
Patent No.
US 11,609,059
App. No.
17/404,050
Granted
Mar 21, 2023
Kind
B2
Abstract

Disclosed herein are suppressors for use with firearms or the like, and methods of making and using such firearm suppressors. Some aspects relate to a firearm suppressor including a helical portion extending helically around a cylindrical body portion, at least a section of the helical portion being canted such that it extends radially outward from the cylindrical body portion at an oblique angle relative to a plane normal to the central longitudinal axis. In some cases, the helical portion is canted distally. In another respect, a firearm suppressor including a helical portion extending radially outward from and helically around a cylindrical body portion having a bore to define a crest and a root, and at least one channel extends from an inner opening along the bore to an outer opening along the root of the helical portion. In yet another respect, a firearm suppressor including a cylindrical wall defining a central bore extending about a longitudinal axis, and one or more cooling bores spaced from the central bore, the cooling bores extending into the wall offset from the central longitudinal axis.

Claims (23)

1. A firearm suppressor comprising:

a cylindrical body portion including a proximal end designed to be coupled to a firearm and a distal end, the cylindrical body portion defining a bore extending along a central longitudinal axis from the proximal end to the distal end; and

a continuous helical portion extending helically around the cylindrical body portion and having a length from adjacent the proximal end to adjacent the distal end, wherein the helical portion has a first direction of twist along the length and includes a pitch that varies along the length,

wherein the cylindrical body portion includes a cylindrical wall including an inner surface defining the bore, and an outer surface, the cylindrical wall defining at least one channel in each turn of the helical portion that extends through the cylindrical wall from the inner surface to the outer surface.

2. The firearm suppressor of claim 1 , wherein the pitch varies in a stepwise manner.

3. The firearm suppressor of claim 1 , wherein the pitch varies in a constantly changing manner.

4. The firearm suppressor of claim 1 , wherein at least a portion of the pitch of the helical portion is in the range of 0.1 to 0.6.

5. The firearm suppressor of claim 1 , wherein at least a portion of the pitch of the helical portion is in the range of 0.2 to 0.5.

6. The firearm suppressor of claim 1 , further including an outer cylindrical housing portion disposed over at least a part of the helical portion.

7. The firearm suppressor of claim 1 , wherein at least a full turn of the helical portion is canted such that it extends radially outward from the cylindrical body portion at an oblique angle relative to a plane normal to the central longitudinal axis.

8. The firearm suppressor of claim 7 , wherein the helical portion is canted distally.

9. The firearm suppressor of claim 1 , wherein at a point along the helical portion, the helical portion defines a crest furthest from the cylindrical body portion, and a base closest to the cylindrical body portion, and wherein the helical portion is canted such that a line drawn from the central longitudinal axis, through a midpoint of the base, and through the midpoint of the crest defines an oblique angle relative to a plane normal to the central longitudinal axis.

10. The firearm suppressor of claim 1 , wherein the at least one channel is canted at an oblique angle relative to a plane normal to the central longitudinal axis.

11. The firearm suppressor of claim 1 , wherein the helical portion is permanently affixed to the cylindrical body portion.

12. The firearm suppressor of claim 1 , wherein the helical portion and the cylindrical body portion are of monolithic construction.

13. A method of making a firearm suppressor, the method comprising: creating an internal component from a single piece of material, the internal component including both a cylindrical body portion and a helical portion formed from the single piece of material, wherein the cylindrical body portion includes a proximal end designed to be coupled to a firearm and a distal end, the cylindrical body portion defining a bore extending along a central longitudinal axis from the proximal end to the distal end;

wherein the helical portion extends helically around the cylindrical body portion and has a length from adjacent the proximal end to adjacent the distal end, wherein the helical portion has a first direction of twist along the length and includes a pitch that varies along the length; disposing an external component over the internal component to define an attenuation chamber; and

wherein the cylindrical body portion includes a cylindrical wall including an inner surface defining the bore, and an outer surface, the cylindrical wall defining at least one channel in each turn of the helical portion that extends through the cylindrical wall from the inner surface to the outer surface.

14. A firearm suppressor comprising:

a cylindrical body portion including a proximal end designed to be coupled to a firearm and a distal end, the cylindrical body portion defining a bore extending along a central longitudinal axis from the proximal end to the distal end; and

a helical portion extending helically around the cylindrical body portion, wherein the helical portion has a length, a first direction of twist along the length, and includes a pitch that varies along the length;

wherein at least a full turn of the helical portion is canted such that it extends radially outward from the cylindrical body portion at an oblique angle relative to a plane normal to the central longitudinal axis; and

wherein the helical portion is canted distally.

Continuity (4)
Continuation 16111066 · Aug 23, 2018
Continuation 15256219 · Sep 2, 2016
Provisional Application 62283539 · Sep 4, 2015
Related Publication 20210381793A1 · Dec 9, 2021
Cited By (1)
US 1,080,792