Bolt action chassis for rifles, shotguns, and muzzle loaders
10132583 ยท 2018-11-20
Assignee
Inventors
Cpc classification
F41C23/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A3/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A3/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41C9/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41C23/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41C7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F41A35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A3/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A3/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41C9/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41C7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A universal chassis for a firearm includes sidewalls. The sidewalls define a trigger well that is configured to receive a trigger mechanism. One of the sidewalls may define a cutout adjacent the trigger well. The chassis is configured to interchangeably receive a bolt action and a barrel for a shotgun, a muzzle loader, and a rifle. The cutout is sized and dimensioned to receive a lever arm of the bolt action.
Claims
1. A chassis for a firearm, the chassis comprising: a first sidewall having a first top surface, a first inner surface, and a first outer surface opposite the first inner surface, the first sidewall defining a first cutout that extends through the first inner and outer surfaces, the first cutout being open at the first top surface; and a second sidewall parallel to the first sidewall, the second side wall having a second top surface, a second inner surface, and a second outer surface opposite the second inner surface, the second inner surface opposing the first inner surface, the second sidewall defining a second cutout that extends through the second inner and outer surfaces, the second cutout being open at the second top surface, the first and second sidewalls defining a channel between the first and second inner surfaces, each of the first and second cutouts configured to receive a lever arm of a bolt action received in the channel when the lever arm is in a locked closed position.
2. The chassis according to claim 1, wherein each of the first and second cutouts are configured to receive a plug to seal the respective one of the first or second sidewalls at the respective one of the first or second cutouts.
3. The chassis according to claim 2, further comprising a plug received in one of the first or second cutouts to seal the respective one of the first or second sidewalls at the respective one of the first or second cutouts.
4. The chassis according to claim 1, wherein the channel is defined along a longitudinal axis of the chassis, the first and second cutouts longitudinally aligned with one another along the longitudinal axis.
5. The chassis according to claim 1, wherein the first top surface is coplanar with the second top surface.
6. The chassis according to claim 1, wherein the channel is configured to interchangeably receive a bolt action for each of a shotgun, a muzzle loader, and a rifle.
7. The chassis according to claim 1, wherein the first and second sidewalls define a trigger well between the first and second inner surfaces, the first and second cutouts adjacent the trigger well.
8. The chassis according to claim 1, wherein the channel is configured to receive a right-handed bolt action and a left-handled bolt action.
9. A firearm comprising: a bolt action selected from a group consisting of a shotgun bolt action, a rifle bolt action, and a muzzle loader bolt action, the bolt action having a lever arm; a barrel selected from a group consisting of a shotgun barrel, a rifle barrel, and a muzzle loader barrel; and a chassis defining a groove, the barrel received within the groove, the chassis including: a first sidewall having a first topmost surface, a first inner surface, and a first outer surface opposite the first inner surface, the first sidewall defining a first cutout that extends through the first inner and outer surfaces, the first cutout being open at the first topmost surface; and a second sidewall parallel to the first sidewall, the second side wall having a second topmost surface, a second inner surface, and a second outer surface opposite the second inner surface, the second inner surface opposing the first inner surface, the second sidewall defining a second cutout that extends through the second inner and outer surfaces, the second cutout being open at the second topmost surface, the first and second sidewalls defining a channel between the first and second inner surfaces, the lever arm receivable in the first and second cutouts.
10. The firearm according to claim 9, wherein the first and second sidewalls define a trigger well between the first and second inner surfaces.
11. The firearm according to claim 10, wherein the first and second cutouts are adjacent the trigger well.
12. The firearm according to claim 10, further comprising a trigger mechanism received within the trigger well.
13. The firearm according to claim 9, further comprising a plug received in one of the first cutout of the first sidewall or the second cutout of the second sidewall to seal the respective sidewall adjacent the channel.
14. A chassis for a firearm, the chassis comprising: sidewalls defining a trigger well configured to receive a trigger mechanism, each of the sidewalls having an inner surface, a channel defined between the inner surfaces of the sidewalls, each of the sidewalls defining a cutout adjacent the trigger well that opposes the cutout of the other sidewall, each of the cutouts configured to receive a lever arm of a bolt action when the lever arm is in a locked closed position, each of the cutouts open to a top surface of the respective sidewall.
15. The chassis according to claim 14, wherein the cutouts are configured to receive a plug to seal the respective sidewall.
16. The chassis according to claim 15, further comprising a plug received in one of the cutouts to seal the respective sidewall at the respective cutout.
17. The chassis according to claim 14, wherein the top surfaces of the sidewalls are coplanar with one another.
18. The chassis according to claim 14, wherein the channel is configured to interchangeably receive a bolt action for each of a shotgun, a muzzle loader, and a rifle.
19. The chassis according to claim 1, wherein the sidewalls define a trigger well therebetween, the cutouts adjacent the trigger well.
20. The chassis according to claim 14, wherein the channel is configured to receive a right-handed bolt action and a left-handled bolt action.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Various aspects of the present disclosure are described hereinbelow with reference to the drawings, which are incorporated in and constitute a part of this specification, wherein:
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DETAILED DESCRIPTION
(25) Embodiments of the present disclosure are now described in detail with reference to the drawings in which like reference numerals designate identical or corresponding elements in each of the several views. Throughout this description, the term proximal refers to the portion of the device or component thereof that is closest to a user and the term distal refers to the portion of the device or component thereof that is farthest from the user.
(26) As used herein the term firearm refers to a barreled weapon that launches one or more projectiles driven by an explosive force including, but not limited to, weapons colloquially referred to as rifles, shotguns, pistols, and muzzleloaders.
(27) Detailed herein is a modular firearm system including a universal chassis for use with a bolt action. The chassis may be right-handed, left-handed, or ambidextrous. The chassis includes shallow sidewalls that are positioned below the centerline of the barrel and the action. The right and left sidewalls of the chassis may define cutouts adjacent the trigger well to allow the chassis to receive a lever arm of a right or left-handed action. The chassis may also include a plug for closing the cutout opposite the lever arm to prevent debris from entering the trigger mechanism of the modular firearm system.
(28) Referring now to
(29) With reference to
(30) Referring to
(31) The bolt 54 is slidable and rotatable within rifle action 50 and through the channel 28 between a locked closed position (
(32) With reference to
(33) The chassis 20 is ambidextrous to receive a right-handed or left-handed rifle action 50. The chassis 20 defines a cutout 32 in each sidewall 22 configured to receive the lever arm 56 of the bolt 54 and place it in the locked closed position. As shown, the rifle action 50 is a right-handed action allowing the lever arm 56 to rotate towards the right side of the modular rifle system 10 such that when the rifle action 50 is in the locked closed position, the cutout 32 in the right sidewall 22 of the chassis 20 receives the lever arm 56 of the bolt 54. With particular reference to
(34) It will be appreciated that a left-handed rifle action 50 allows the lever arm 56 to rotate towards the left side of the modular rifle system 10 such that when the modular rifle system 10 is in the locked closed position, the cutout 32 in the left sidewall 22 of the chassis 20 receives the lever arm 56 of the bolt 54. Further, when a left-handed rifle action 50 is received by the chassis 20, the cutout 32 in the right sidewall 22 of the chassis 20 is open exposing the trigger well 24 of the chassis 20.
(35) Referring to
(36) With reference to
(37) Referring now to
(38) The movement of the bolt 54 from the locked closed position, to the unlocked closed position, and to the open position is detailed herein for a right-handed rifle action 50. In the locked closed position, the lever arm 56 is positioned in the cutout 32 defined in the right sidewall 22 of the chassis 20 as shown in
(39) When a new cartridge is within the chamber 52, the lever arm 56 is engaged to slide the bolt 54 distally towards the unlocked closed position. As the bolt 54 slides distally within the channel 28, the new cartridge is positioned or loaded into the chamber 52. When the bolt 54 reaches the unlocked closed position, the lever arm 56 is rotated clockwise into the cutout 32 and into the locked closed position to rotate the bolt 54 about its longitudinal axis.
(40) It will be appreciated that when the modular rifle system 10 includes a left-handed rifle action 50, the rifle action 50 functions in a substantially similar manner with the rotation of the lever arm 56 reversed. That is, the lever arm 56 is rotated in the clockwise direction to unlock the bolt 54 and rotated in the counter-clockwise direction to lock the bolt 54. Further, spent cartridges are ejected from the left side of the chamber instead of from the right side of the chamber when the modular rifle system 10 includes a left-handed rifle action 50.
(41) Referring to
(42) The plug 134 includes an inner wall 135a, an outer wall 135b, and a central portion 136 connecting the inner and outer walls 135a, 135b. The central portion 136 is contiguous with an upper surface of the inner and outer walls 135a, 135b such that the upper surface of the plug 134 may form a contiguous upper surface with an upper surface of the sidewalls 22 of the chassis 20 when the plug 134 is received within one of the cutouts 32. The inner wall 135a defines cutouts 137 near an upper surface of the central portion 136 with form tabs 139 of the inner wall. The tabs 139 may engage the sidewall 22 of the chassis 20 to secure the plug 134 within the cutout 32 of the chassis 20.
(43) It is contemplated that a chassis (e.g., chassis 20) and plug (e.g., plug 34 or 134) may be constructed from the same material or made from different materials. Contemplated materials for chassis and plugs include, but are not limited to, natural materials (e.g., wood), man-made materials (e.g.) Kevlar, composite materials (e.g., carbon fiber), metals, metal alloys, synthetic materials, laminated materials, compressed woven materials, and any combination thereof.
(44) As detailed herein, the cutouts 32 and the plugs 34, 134 are substantially rectangular in shape; however, it is contemplated that the cutouts 32 and the plugs 34, 134 may have differing shapes, including but not limited to, semi-circular and elliptical to provide clearance for the lever arm 56 of the bolt 54 in the locked closed position.
(45) Referring now to
(46) In addition, it is envisioned that a chassis similar to the ambidextrous chassis 20 could be manufactured with a contiguous sidewall opposite the sidewall that defines a cutout 32 to receive a lever arm of the action such that the chassis is right-handed or left-handed. Further, the ambidextrous chassis 20 may include a plug (e.g., plug 34 or plug 134) that is permanently installed in a cutout 32 to prevent the ambidextrous chassis 20 from being switched between right-handed and left-handed operation.
(47) As detailed above, the ambidextrous chassis 20 is used with the modular rifle system 10 and the modular shotgun system 210. It is also envisioned that the ambidextrous chassis 20 can be used with modular muzzle loader systems. It is envisioned that the same ambidextrous chassis 20 may be interchangeably used for each of a modular rifle system, a modular shotgun system, and a modular muzzle loader system. In addition, it is envisioned that a chassis similar to the ambidextrous chassis 20 could be manufactured with a contiguous sidewall opposite the sidewall that defines a cutout 32 to receive a lever arm of the action such that the chassis is right-handed or left-handed. Further, the ambidextrous chassis 20 may include a plug (e.g., plug 34 or plug 134) that is permanently installed in a cutout 32 to prevent the ambidextrous chassis 20 from being switched between right-handed and left-handed operation.
(48) While several embodiments of the disclosure have been shown in the drawings, it is not intended that the disclosure be limited thereto, as it is intended that the disclosure be as broad in scope as the art will allow and that the specification be read likewise. Any combination of the above embodiments is also envisioned and is within the scope of the appended claims. Therefore, the above description should not be construed as limiting, but merely as exemplifications of particular embodiments. Those skilled in the art will envision other modifications within the scope of the claims appended hereto.