IP Library Granted Patent US 12,259,207
Granted Patent B2
US 12,259,207 · App. 18/037,615 · Granted Mar 25, 2025

Recoil reduction system

Inventor: Robert Duane Hill (Madison, AL)
F41A3/80F41C23/06
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Quick Facts
Patent No.
US 12,259,207
App. No.
18/037,615
Granted
Mar 25, 2025
Kind
B2
Abstract

An improved recoil reduction system comprises a forward body, a friction spring, a rear body, a bolt, and, optionally, a bumper. When in forward battery, the said friction spring is compressed to a preloaded operating point by the bolt. In embodiments, when a weapon equipped with the improved recoil reduction system is fired, the front body is impacted by the bolt carrier group of the weapon and the rear body moves aft and strikes the rear of the shoulder stock of the weapon, compressing the friction spring. During compression, the tapered mating surfaces of the friction spring generate friction and thereby dissipate the energy generated from firing the weapon in the form of heat, thus reducing the felt recoil of the weapon.

Claims (30)

1. A recoil reduction device, comprising:

a forward body;

a rear body;

a bolt fixedly attached to said forward body and movably attached to said rear body; and

a friction spring compressed between said forward body and said rear body by attachment of said forward body and said rear body to opposite ends of said bolt, wherein said bolt passes between said forward body and said rear body through an interior of said friction spring;

wherein said forward body further comprises an interior cavity sized to house a cylindrical weight, and further comprising a cylindrical weight housed within said interior cavity; and

wherein a number of coils in said friction spring is calibrated to optimize a desired recoil force of a weapon in which said recoil reduction device is installed.

2. The recoil reduction device of claim 1 , wherein said forward body comprises a threaded insert for capturing a distal end of said bolt.

3. The recoil reduction device of claim 2 , wherein said rear body comprises a pocket to house a proximal end of said bolt in a movable and self-centering configuration.

4. The recoil reduction device of claim 1 , further comprising a threaded insert for capturing a distal end of said bolt; and

wherein said interior cavity opens proximate a second end of said forward body, wherein said threaded insert is sized to fit within said cavity adjacent to said second end of said forward body.

5. The recoil reduction device of claim 4 , wherein said second end of said forward body has a reduced exterior cross section sized to fit within a front end of said friction spring.

6. The recoil reduction device of claim 5 , wherein a first end of said rear body has a reduced exterior cross section sized to fit within a rear end of said friction spring, said rear end being opposite said front end.

7. The recoil reduction device of claim 1 , wherein

said friction spring comprises at least two inner rings and at least two outer rings, said inner rings each having two tapered top surfaces, and said outer rings each having two bottom tapered surfaces, and wherein

said tapered surfaces of said inner rings are each sized for mating engagement with an adjoining tapered surface of one of said outer rings.

8. The recoil reduction device of claim 1 , wherein said friction spring comprises two nested friction springs.

9. A method for custom fitting a recoil reduction device within a weapon, the method comprising:

obtaining a recoil reduction device as described by claim 1 ;

customizing the number of coils in said friction spring based on both an energy class of said weapon and a desired recoil force; and

customizing a length of one or more spacers adjacent to said friction spring based on said number of coils in said friction spring.

10. The method for custom fitting a recoil reduction device within a weapon of claim 9 , further comprising:

optimizing a location of said recoil reduction device within a stock of said weapon.

11. A recoil reduction device, comprising:

a forward body;

a rear body;

a bolt fixedly attached to said forward body and movably attached to said rear body;

a friction spring compressed between said forward body and said rear body by attachment of said forward body and said rear body to opposite ends of said bolt, wherein said bolt passes between said forward body and said rear body through an interior of said friction spring; and

a buffer at least partially enclosed within a second end of said rear body, wherein said buffer and said rear body both include a retaining pin aperture sized for receiving a retaining pin, the retaining pin aperture of said buffer being located to align with the retaining pin aperture of said rear body when said device is assembled;

wherein a number of coils in said friction spring is calibrated to optimize a desired recoil force of a weapon in which said recoil reduction device is installed.

Continuity (2)
Provisional Application 63116307 · Nov 20, 2020
Related Publication 20240027152A1 · Jan 25, 2024
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