This invention relates generally to a firearm blowback bolt system, and more particularly to a configurable blowback bolt system.
AR-style rifles that use a blowback bolt are usually used to fire pistol-caliber cartridges in the platform that was originally designed to fire rifle cartridges. These AR-style rifles can be converted from firing rifle cartridges to pistol cartridges, or they can be used with AR-style rifles designed from the beginning to be blowback systems to fire mainly pistol-caliber cartridges. This is generally done by changing out the entire rifle-caliber bolt assembly for a bolt assembly that can handle pistol-caliber cartridges.
What is needed is a configurable blowback bolt system with a modular design that can be configured for use with both pistol and rifle cartridges of different calibers.
The present invention relates to a configurable blowback bolt system. Generally, the configurable blowback bolt system includes a bolt carrier, a configurable bolt, and a buffer, wherein the configurable bolt can be configured to fire rifle- or pistol-cartridges, of different calibers, and can be configured to eject the cartridges on a right or left side of the firearm.
The bolt assembly of the present invention comprises two main parts, the bolt and the bolt carrier. The bolt carrier is an elongated member having a front portion and a rear portion. The front portion comprises an opening, for receiving the bolt therein. When assembled, a boss of the bolt extends through a slot in the top of the bolt carrier, thereby maintaining the orientation of the bolt within the opening of the bolt carrier. The bolt carrier gives the bolt assembly its overall length to allow it to operate in an AR platform and provides the necessary mass to allow the blowback system to operate safely and as intended.
The novel modular design of the bolt assembly of the present invention allows the bolt to be easily interchanged with other bolts of different calibers to accommodate cartridges of other calibers. Changing the caliber of the bolt assembly is a simple matter of interchanging the bolt with a bolt of another caliber.
The configurable blowback bolt system of the present invention may also comprise a buffer inserted into a buffer tube of the firearm directly behind the rear end of the bolt carrier. Various combinations of different masses and lengths of the buffer, in conjunction with various masses and configurations of interchangeable bolts, as described above, may be selected, interchangeably, to accommodate firing of different calibers of cartridges, as well as either long-stroke or short-stroke blowback operation of the firearm, as appropriate for different cartridge lengths.
The two-part bolt assembly of the present invention is easier to manufacture than conventional bolt assemblies. For example, conventional bolt assemblies require the firing pin through hole to be bored through the entire length of the bolt carrier. In contrast, the firing pin hole of the bolt of the present invention need only be bored through the bolt portion and not through the rear portion of the bolt carrier. The two-part assembly also allows for manufacture of a single bolt carrier that can accommodate multiple calibers by choosing the correct bolt for the desired caliber, in a modular fashion.
Another novel feature of a configurable blowback bolt system of the present invention is that the cup of the bolt is configured to retain an extractor on either side of the cup. The bolt has two extractor recesses, one extractor recess being on one side of the cup and the second extractor recess being on the other side of the cup. Interchangeability of the extractor and extractor spring enables the configurable blowback bolt system to be used for ejection of spent cartridges either to the right side or to the left side of the firearm, interchangeably. The bolt further comprises a pair of longitudinal ejector grooves, each longitudinal ejector groove thereof being disposed directly opposite one of the extractor recesses, respectively, for accommodating a static ejector of the receiver of the firearm, either on the right side of the firearm or on the left side of the firearm, interchangeably. The bolt, having two longitudinal ejector grooves, one on each side, and two extractor recesses, one on each side, may be configured for ejecting spent cartridges either to the right side or to the left side of a firearm, interchangeably.
The foregoing and other features and advantages of the present invention will be apparent from the following more detailed description of the particular embodiments of the invention, as illustrated in the accompanying drawings.
A more complete understanding of the present invention may be derived by referring to the detailed description and claims when considered in connection with the Figures, wherein like reference numbers refer to similar items throughout the Figures, and:
A configurable blowback bolt system comprises a configurable blowback bolt assembly and buffer for AR-style firearms that can be easily configured to eject spent cartridges either to the right side or to the left side and to accommodate cartridges of different calibers, including pistol calibers and rifle calibers. The buffer, along with a feature on the bolt, allows the system to be easily configured for use with long-stroke or short-stroke firearms
AR-style rifles that use a blowback bolt are commonly used to fire pistol-caliber cartridges in the platform that was originally designed to fire rifle cartridges. These AR-style rifles can be converted from firing rifle cartridges to pistol cartridges, or they can be used with AR-style rifles designed from the beginning to be a blowback system to fire mainly pistol-caliber cartridges. This is generally done by changing out the entire bolt assembly for one that can handle pistol caliber cartridges.
Referring to the drawings, as shown in
Tolerances in the joints between corresponding surfaces of the bolt 14 and the bolt carrier 16 are intentionally large, to lower machining costs and to increase the ease of assembly. The large tolerances allow for some looseness between the bolt 14 and the bolt carrier 16 when assembled and prior to being tightly secured. The bolt 14 and bolt carrier 16 are held securely together by a pair of connecting pins 30 that are inserted laterally through the bolt carrier 16 and the bolt 14. The bolt carrier 16 and the bolt 14 have lateral apertures, 32 and 34, respectively, therethrough for receiving the connecting pins 30. The lateral apertures 32 through the bolt carrier 16 are machined close to the diameter of the connecting pins 30. The lateral apertures 34 through the bolt 14 are machined to a slightly larger diameter. Each of the pair of connecting pins 30 comprises a groove 36 around the middle thereof, as shown in
To remove and exchange the bolt 14 for a bolt 14 of a different caliber, the two cub point set screws 46 are removed, and the two cone point set screws 40 are loosened just enough to clear the grooves 36 of the connecting pins 30 to remove the two connecting pins 30. With the connecting pins 30 removed, the bolt 14 will drop downward and out of the opening 22 of the bolt carrier 16. A bolt 14 of a different caliber is then inserted up through the opening 22, the connecting pins 30 reinserted, and the set screws, 40 and 46, tightened again.
As shown in
The size and shape of the cup 26 determines what cartridge caliber the bolt 14 is compatible with. The novel modular design of the bolt assembly 12 of the present invention allows the bolt 14 to be easily interchanged with other bolts 14 of different calibers to accommodate cartridges of other calibers. Bolts 14 of different calibers also have different masses that are tuned to properly dissipate recoil forces when firing the weapon. They may also have different lengths to allow the hammer to be properly cocked when used with longer or shorter stroke systems to accommodate different lengths of cartridges. Pistol cartridges are generally shorter than rifle cartridges. Changing the caliber of the bolt assembly 12 is a simple matter of interchanging the bolt 14 with a bolt 14 of another caliber.
The configurable blowback bolt system 10 of the present invention may also comprise a buffer 52, as shown in
The configurable blowback bolt system 10 of the present invention may therefore be used with either a short stroke or a long stroke system and with cartridges of different lengths and calibers. The modular design allows for interchangeability of the buffer 52 and the bolt 14, while using the same bolt carrier 16. As explained above, different combinations of masses and lengths of the buffer 52 and the bolt 14 allow for use with both short stroke and long stroke systems and for firing of cartridges of different calibers, including both rifle cartridges and pistol cartridges.
As shown in
The two-part bolt assembly 12 of the present invention is easier to manufacture than conventional bolt assemblies. For example, conventional bolt assemblies require the firing pin through hole 54 to be bored through the entire length of the bolt carrier 16. In contrast, the firing pin through hole 54 of the bolt 14 of the present invention need only be bored through the bolt portion 14 and not through the rear portion 20 of the bolt carrier 16. The two-part bolt assembly 12 also allows for manufacture of a single bolt carrier 16 that can accommodate multiple calibers by choosing the correct bolt 14 for the desired caliber, in a modular fashion.
As shown in
Another novel feature of a configurable blowback bolt system 10 of the present invention is that the cup 26 of the bolt 14 is configured to retain an extractor 80 on either side of the cup 26. The bolt 14 has two extractor recesses 78, as described above as regarding either side of the cup 26—one extractor recess 78 being on one side of the cup 26 and the second extractor recess 78 being on the other side of the cup 26. All of the features and configurations of the extractor recess 78 on one side, including the extractor spring recess 86 and the tab 88, are symmetrically configured on the opposing side of the cup 26. In this fashion, the cup 26 of the present invention is configured to retain an extractor 80, with its corresponding extractor spring 84 on either of the one side or the other. For example, the extractor 80 and extractor spring 84 may be inserted into the extractor recess 78 and spring recess 86, respectively, on one side of the cup 26, or the extractor 80 and extractor spring 84 may be inserted into the extractor recess 78 and spring recess 53 on the opposed side of the cup 26, interchangeably. The extractor 80 and extractor spring 84 may be moved from one side of the cup 26 to the other side of the cup 26 when the bolt 14 is disassembled from the bolt carrier 16, as described above. This interchangeability of the extractor 80 and extractor spring 84 enables the configurable blowback bolt system 10 to be used for ejection of spent cartridges either to the right side or to the left side of the firearm, interchangeably.
Accordingly, the bolt 14 further comprises a pair of longitudinal ejector grooves 92, as shown in
The embodiments and examples set forth herein were presented in order to best explain the present invention and its practical application and to thereby enable those of ordinary skill in the art to make and use the invention. However, those of ordinary skill in the art will recognize that the foregoing description and examples have been presented for the purposes of illustration and example only. The description as set forth is not intended to be exhaustive or to limit the invention to the precise form disclosed. Many modifications and variations are possible in light of the teachings above without departing from the spirit and scope of the forthcoming claims.
This application claims priority to U.S. Provisional patent application entitled “CONFIGURABLE BLOW BACK BOLT,” Ser. No. 62/637,461, filed Mar. 2, 2018, the disclosure of which is hereby incorporated entirely herein by reference.
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Number | Date | Country | |
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20190271515 A1 | Sep 2019 | US |
Number | Date | Country | |
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62637461 | Mar 2018 | US |