IP Library › Granted Patent US 11,268,777
Granted Patent B1
US 11,268,777 · App. 16/372,295 · Granted Mar 8, 2022

Suppression device and related methods

Inventor: Jeffrey S. Grant (Palm Bay, FL)
F41A21/30F01N1/083F41A21/34F41A21/36
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Quick Facts
Patent No.
US 11,268,777
App. No.
16/372,295
Granted
Mar 8, 2022
Kind
B1
Abstract

Shockwave suppression is accomplished by channeling a shockwave from a shockwave source, such as a firearm, into a suppression device along a propagation path, and within the suppression device, deflecting a portion of the shockwave away from the firing axis, and channeling the deflected portion through a feedback path and back to a region behind the deflected shockwave. The suppression device can be formed from one more chambers arranged within an outer wall and including baffles and inner wall sections.

Claims (39)

1. A firearm suppression device comprising:

an outer wall extending around a propagation path between outer wall inlet and outlet ends;

at least one baffle extending inwardly from the outer wall toward the propagation path between the outer wall inlet and outlet ends, the at least one baffle defining a baffle opening between a baffle inlet face and a baffle outlet face through which the propagation path passes; and

at least one inner wall section extending around the propagation path inwardly of the outer wall and outwardly of the baffle opening such that a circumferential volume is defined between the outer wall and the at least one inner wall section, the at least one inner wall section extending from the at least one baffle toward the outer wall inlet end between inner wall section first and second ends, the inner wall section first end adjoining the baffle inlet face, first and second fluid flow paths communicating with the circumferential volume being defined through the inner wall section first and second end, respectively, such that a portion of fluid propagating along the propagation path will be deflected by the baffle inlet face through the first fluid flow path into the circumferential volume, and out the second fluid path back toward the propagation path;

wherein the at least one baffle is angled toward the outer wall inlet end from the outer wall; and

wherein the first and second fluid flow paths are both angled from the circumferential volume toward the outer wall inlet end.

2. The suppression device of claim 1 , wherein a firearm muzzle connector is arranged at the outer wall inlet end, the firearm muzzle connector including an inlet plate defining muzzle attachment opening concentric with the propagation path and the baffle opening of the at least one baffle.

3. The suppression device of claim 1 , wherein a diffuser is arranged at the outer wall outlet end, the diffuser including an outlet plate defining an exit opening concentric with the propagation path and the baffle opening of the at least one baffle.

4. The suppression device of claim 3 , wherein a diameter of the exit opening is less than or equal to a diameter of the baffle opening.

5. The suppression device of claim 3 , wherein the outlet plate further defines a plurality of vent openings around the exit opening.

6. The suppression device of claim 1 , wherein the at least one baffle is angled toward the outer wall inlet end from the outer wall.

7. The suppression device of claim 6 , wherein the at least one baffle is frustoconical with the baffle opening formed at a missing tip thereof.

8. The suppression device of claim 6 , wherein the first fluid flow path is angled from the circumferential volume toward the outer wall inlet end.

9. The suppression device of claim 6 , wherein the second fluid flow path is angled from the circumferential volume toward the outer wall inlet end.

10. The suppression device of claim 6 , wherein the first and second fluid flow paths are both angled from the circumferential volume toward the outer wall inlet end.

11. The suppression device of claim 10 , wherein the first and second fluid flow paths are both angled from the circumferential volume toward the outer wall inlet end at an angle equal to that of the at least one baffle.

12. The suppression device of claim 11 , wherein the at least one baffle is angled 45 degrees toward the outer wall inlet.

13. The suppression device of claim 1 , wherein the first and second fluid flow paths comprise respective first and second pluralities of flow holes.

14. The suppression device of claim 13 , wherein diameters of the first plurality of flow holes are greater than diameters of the second plurality of flow holes.

15. The suppression device of claim 1 , wherein the at least one baffle comprises a plurality of baffles, each of the plurality of baffles extending inwardly from the outer wall toward the propagation path between the outer wall inlet and outlet ends, and each of the plurality of baffles defining a baffle opening between a baffle inlet face and a baffle outlet face through which the propagation path passes; and

wherein the at least one inner wall section comprises a plurality of inner wall sections, each of the plurality of inner wall sections corresponding to one of the plurality of baffles, each of the plurality of inner wall sections extending around the propagation path inwardly of the outer wall and outwardly of the baffle opening of the corresponding one of the plurality of baffles such that a circumferential volume is defined between the outer wall and the at least one inner wall section, each of the plurality of inner wall sections extending from the corresponding one of the plurality of baffles toward the outer wall inlet end between inner wall section first and second ends, the inner wall section first end adjoining the baffle inlet face of the corresponding one of the plurality of baffles, first and second fluid flow paths communicating with the circumferential volume being defined through the inner wall section first and second end, respectively, such that a portion of fluid propagating along the propagation path will be deflected by the baffle inlet face of the corresponding one of the plurality of baffles through the first fluid flow path into the circumferential volume, and out the second fluid path back toward the propagation path.

16. The suppression device of claim 1 , wherein a diameter of the baffle openings of a first portion of the plurality of baffles more proximate to the outer wall inlet end is larger than a diameter of the baffle openings of a second portion of the plurality of baffles more proximate to the outer wall outlet end.

17. The suppression device of claim 15 , wherein each of the plurality of inner wall sections forms a unitary piece with the corresponding one of the plurality of baffles.

18. The suppression device of claim 17 , wherein each of the unitary pieces is separately removable from the outer wall.

19. The suppression device of claim 18 , wherein each of the plurality of baffles is frustoconical with the baffle opening formed at a missing tip thereof located more proximate to the outer wall inlet opening, an angle of each of the plurality of baffles toward the outer wall inlet opening being equal; and

wherein the inner wall section second end of each of the plurality of inner walls includes a chamfered edge matching the angle of each of the plurality of baffles toward the outer wall inlet opening.

20. A suppression device comprising:

an outer wall extending around a propagation path between outer wall inlet and outlet ends;

a plurality of baffles, each of the plurality of baffles extending inwardly from the outer wall toward the propagation path between the outer wall inlet and outlet ends, defining a baffle opening between a baffle inlet face and a baffle outlet face through which the propagation path passes, and being angled toward the outer wall inlet end from the outer wall;

a plurality of inner wall sections, each of the plurality of inner wall sections corresponding to one of the plurality of baffles, each of the plurality of inner wall sections extending around the propagation path inwardly of the outer wall and outwardly of the baffle opening of the corresponding one of the plurality of baffles such that a circumferential volume is defined between the outer wall and the at least one inner wall section, each of the plurality of inner wall sections extending from the corresponding one of the plurality of baffles toward the outer wall inlet end between inner wall section first and second ends, the inner wall section first end adjoining the baffle inlet face of the corresponding one of the plurality of baffles, first and second fluid flow paths communicating with the circumferential volume being defined through the inner wall section first and second end, respectively, such that a portion of fluid propagating along the propagation path will be deflected by the baffle inlet face of the corresponding one of the plurality of baffles through the first fluid flow path into the circumferential volume, and out the second fluid path back toward the propagation path; and

a firearm muzzle connector arranged at the outer wall inlet end, the firearm muzzle connector including an inlet plate defining muzzle attachment opening concentric with the propagation flow path and the baffle openings of the plurality of baffles.

21. The suppression device of claim 20 , wherein the first and second fluid flow paths of each of the plurality of inner wall sections are both angled from the circumferential volume toward the outer wall inlet end at an angle equal to that of the plurality of baffles.

22. The suppression device of claim 21 , wherein the plurality of baffles are angled 45 degrees toward the outer wall inlet.

23. The suppression device of claim 22 , wherein each of the plurality of baffles is frustoconical with the baffle opening formed at a missing tip thereof located more proximate to the outer wall inlet opening.

24. The suppression device of claim 23 , wherein each of the plurality of inner wall sections forms a unitary piece with the corresponding one of the plurality of baffles and is separately removable from the outer wall.

25. The suppression device of claim 24 , wherein a diameter of the baffle openings of a first portion of the plurality of baffles more proximate to the outer wall inlet end is larger than a diameter of the baffle openings of a second portion of the plurality of baffles more proximate to the outer wall outlet end.

26. A method of suppressing a firearm, the method comprising: channeling a shockwave from a muzzle of the firearm into a suppression device along a firing axis; and within the suppression device, deflecting a portion of the shockwave away from the firing axis, and channeling the deflected portion rearwardly through a feedback path and inwardly back to a region behind the deflected shockwave, wherein the suppression device includes a plurality of chambers arranged along the firing axis, and deflecting the portion of the shockwave away from the firing axis, and channeling the deflected portion through the feedback path and back to the region behind the deflected shockwave is performed successively in each chamber.

27. The method of claim 26 , wherein, in each of the plurality of chambers, deflecting the portion of the shockwave away from the firing axis is performed by a baffle surrounding a baffle opening concentric opening and angled toward an inlet of the suppression device.

28. The method of claim 27 , wherein, in each of the plurality of chambers, channeling the deflected portion through the feedback path and back to the region behind the deflected shockwave includes channeling the deflected portion through a first fluid flow path formed through an inner wall section first end adjacent the baffle, passing the deflected portion through a circumferential volume between the inner wall section and an outer wall of the suppression device, and passing the deflected though a second fluid flow path formed through an inner wall section second end.

Continuity (2)
Provisional Application 62782467 · Dec 20, 2018
Provisional Application 62651082 · Mar 31, 2018
Cited By (4)
US 12,326,310 US 12,345,491 US 12,535,285 US 12,595,983