US2026063381A1PendingUtilityA1
Bolt-Action Firearm Device
Est. expirySep 4, 2044(~18.1 yrs left)· nominal 20-yr term from priority
Inventors:HEGAZY OMAR SHERIF
F41A 3/72F41A 21/325F41A 3/20
22
PatentIndex Score
0
Cited by
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References
0
Claims
Abstract
A bolt-action mechanism for accelerating the cycling speed of a firearm is provided. The bolt-action mechanism includes a rail configured to couple with a portion of a firearm, the rail is configured for reciprocation axially along the firearm, a cam defining a slot formed in a portion thereof, the slot is sizably configured to engage a portion of the firearm, and a charging handle, wherein the bolt-action mechanism is configured to cycle the firearm.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A bolt-action mechanism for a firearm, the bolt-action mechanism comprising:
a rail configured to couple with a portion of a firearm, the rail is configured for reciprocation axially along the firearm; a cam defining a slot formed in a portion thereof, the slot is sizably configured to engage a portion of the firearm; and a charging handle; wherein the bolt-action mechanism is configured to cycle the firearm.
2 . The bolt-action mechanism of claim 1 , further comprising a collar configured to engage a bolt of the firearm, the collar defining a pin configured to be received by slot.
3 . The bolt-action mechanism of claim 1 , wherein the rail guide is configured to engage with a mounting structure of the firearm.
4 . The bolt-action mechanism of claim 3 , wherein the mounting structure is a picatinny rail or a dovetail.
5 . The bolt-action mechanism of claim 1 , wherein the slot defines a travel path for the pin.
6 . The bolt-action mechanism of claim 5 , wherein the travel path is based on any of a rotation and a reciprocation of a bolt during charging.
7 . The bolt-action mechanism of claim 1 , wherein the bolt-action mechanism is configured to combine a reciprocal and a rotational motion of the bolt defined by cycling the firearm into a linear motion.
8 . The bolt-action mechanism of claim 1 , wherein the slot comprises a handgrip portion.
9 . The bolt-action mechanism of claim 1 , wherein the cam comprises a curvilinear cross section adapted to a curvature of the firearm.
10 . The bolt-action mechanism of claim 1 , further comprising a picatinny rail disposed superjacent to the mechanism.
11 . A kit for accelerating a cycling speed of a firearm, comprising:
a rail configured to couple with a portion of a firearm, the rail is configured for reciprocation axially along the firearm; a cam defining a slot formed in a portion thereof, the slot is sizably configured to engage a portion of the firearm; and a charging handle; wherein the kit is configured to cycle the firearm.
12 . The kit of claim 11 , further comprising a collar configured to engage a bolt of the firearm, the collar defining a pin configured to be received by slot.
13 . The kit of claim 11 , wherein the rail is configured to engage with a mounting structure of the firearm.
14 . The kit of claim 13 , wherein the mounting structure is a picatinny rail or a dovetail.
15 . The kit of claim 11 , wherein the slot defines a travel path for the pin.
16 . The kit of claim 15 , wherein the travel path is based on a rotation and a reciprocation of a bolt during charging.
17 . The kit of claim 11 , wherein the kit is configured to combine a reciprocal and a rotational motion of the bolt defined by cycling the firearm into a linear motion.
18 . The kit of claim 11 , wherein the slot comprises a handgrip portion.
19 . The kit of claim 11 , wherein the cam comprises a curvilinear cross section adapted to a curvature of the firearm.
20 . The kit of claim 11 , wherein the kit is configured to adapt to a Remington model 700 bolt-action rifle.Join the waitlist — get patent alerts
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