Semi-Automatic Rifle Resstrictors
20190277587 ยท 2019-09-12
Inventors
Cpc classification
F41A3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A3/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F41A3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A production direct gas impingement semi-automatic AR-style rifle is converted to a single shot, straight pull bolt action rifle that includes: a) conventional rifle components, including an upper receiver and lower, trigger, trigger guard, barrel; b) a direct gas impingement semi-automatic firing mechanism including automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality, including a bolt carrier with two production carrier gas key screw threaded receiving orifices and having no production carrier gas key, and a having a metal gas blocking and diverting mechanism attached to the bolt carrier in the place of a production carrier gas key. This inhibits semi-automatic operation of the rifle by disabling the automatic gas actuated casing ejection, bolt and hammer reset, and cartridge reload functionality. In some embodiments the bolt carrier assembly and aforementioned gas diverting block mechanism components are unistructurally formed.
Claims
1. A production AR style direct gas impingement semi-automatic rifle that has been fixedly converted to a single shot, straight pull bolt action rifle, which includes: a) conventional rifle components, including but not limited to an upper receiver and lower, trigger, trigger guard, barrel; b) a direct gas impingement semi-automatic firing mechanism including an automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality and including a bolt carrier with two threaded carrier gas key receiving orifices and having no production carrier gas key and a having a fixed dual-bored metal gas diverting block mechanism attached to said bolt carrier at said two threaded carrier key receiving orifices, said dual-bored metal gas diverting block mechanism having a front end that is at least partially askew from a right angle to said bolt carrier, said front end being selected from the group consisting of: (i) a front end having a front wall with a deflection wall angled askew from said right angle to said bolt carrier; and (ii) a front end having a deflection channel angled askew from said right angle to said bolt carrier; said dual-bored metal gas diverting block mechanism being positioned so as to inhibit semi-automatic operation of said semi-automatic AR style rifle by disabling the automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality, thereby rendering it a single shot, straight pull bolt action rifle.
2. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 1 wherein said metal gas diverting block mechanism is a metal selected from the group consisting of aluminum, titanium, steel and stainless steel.
3. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 1 wherein said bolt carrier has a top flat portion with two threaded orifices for receiving carrier gas key screws and said metal gas diverting block mechanism contains two corresponding orifices and said metal gas blocking and diverting mechanism is screwed to said bolt carrier.
4. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 1 wherein said metal gas diverting block mechanism is a unitary component.
5. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 1 wherein there is further included a modified charge handle having an extension with two attachment orifices corresponding to said metal gas diverting block mechanism orifices and is correspondingly attached to said bolt carrier, wherein said metal gas diverting block mechanism and said charge handle, in combination, are selected from the group consisting of a single piece combination and a multiple piece combination.
6. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 5 wherein said metal gas diverting block mechanism and charge handle combination is selected from the group consisting of aluminum, titanium, steel and stainless steel.
7. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 5 wherein said metal gas diverting block mechanism and charge handle combination is a unitary component.
8. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 1 wherein said charge handle further includes at least one backward extending pull handle.
9. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 8 wherein said charge handle further includes two opposing backward extending pull handles.
10. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 9 wherein said charge handle and said two opposing backward extending pull handles are a unitary component.
11. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 9 wherein said charge handle and said two opposing backward extending pull handles are separate components that are connected to one another.
12. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 9 wherein said two opposing backward extending pull handles are left hand and right hand pull handles respectively, and one of said left hand and right hand pull handles further includes a pull handle extension removably attached to it, and further wherein said pull handle extension is interchangeable with the other of one of said left hand and right hand pull handles such that it is attachable to either of said left hand and right hand pull handles.
13. A production AR-style direct gas impingement semi-automatic rifle that has been fixedly converted to a single shot, straight pull bolt action rifle, which includes: a) conventional rifle components, including but not limited to an upper receiver and lower, trigger, trigger guard, barrel; b) a semi-automatic firing mechanism including an automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality and including a bolt carrier component that is unistructurally formed, and includes a bolt carrier structure and an integrated metal gas diverting block mechanism, said metal gas diverting block mechanism having a front end that is selected from the group consisting of: (i) said front end being at least partially flat at a right angle to said bolt carrier; (ii) said front end having a deflection wall angled askew from said right angle to said bolt carrier; and (iii) said front end having a deflection channel angled askew from said right angle to said bolt carrier; said metal gas diverting block mechanism being positioned so as to block gas from entering the bolt carrier and thereby inhibit semi-automatic operation of said semi-automatic rifle by disabling the automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality, thereby rendering it a single shot, straight pull bolt action rifle.
14. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 13 wherein said bolt carrier component is made of metal selected from the group consisting of an aluminum, titanium, steel and stainless steel.
15. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 13 wherein there is further included a modified charge handle having an extension attached to said bolt carrier component.
16. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 13 wherein said charge handle further includes at least one backward extending pull handle.
17. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 13 wherein said charge handle further includes two opposing backward extending pull handles.
18. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 17 wherein said charge handle and said two opposing backward extending pull handles are a unitary component.
19. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 17 wherein said charge handle and said two opposing backward extending pull handles are separate components that are connected to one another.
20. A production AR-style direct gas impingement semi-automatic rifle that has been converted to a single shot, straight pull bolt action rifle of claim 17 wherein said two opposing backward extending pull handles are left hand and right hand pull handles respectively, and one of said left hand and right hand pull handles further includes a pull handle extension removably attached to it, and further wherein said pull handle extension is interchangeable with the other of one of said left hand and right hand pull handles such that it is attachable to either of said left hand and right hand pull handles.
21. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle which comprises: a) removing the bolt carrier with carrier gas key from the upper receiver of said rifle; b) removing said carrier gas key from said bolt carrier; c) installing a dual-bored metal gas diverting block mechanism in place of said carrier gas key on said bolt carrier attached to said bolt carrier at said two threaded carrier gas key screw receiving orifices; and, d) inserting said bolt carrier with said metal gas diverting block mechanism back into the upper receiver of said rifle so as to inhibit semi-automatic operation of said semi-automatic rifle by disabling the automatic gas actuated casing ejection, automatic gas actuated bolt and hammer reset, and automatic gas actuated cartridge reload functionality.
22. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 21 wherein said metal gas diverting block mechanism is made of metal selected from the group consisting of aluminum, titanium, steel and stainless steel.
23. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 21 wherein said bolt carrier has a top flat portion with two threaded orifices for receiving carrier gas key screws and said metal gas diverting block mechanism contains two corresponding orifices and said step c) of claim 21 is performed by screwing said metal gas diverting block mechanism to said bolt carrier.
24. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 21 wherein said metal gas diverting block mechanism is a unitary component.
25. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 21 wherein said metal gas diverting block mechanism is a two-component metal gas diverting block mechanism.
26. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle which comprises: a) removing the charge handle and bolt carrier with carrier gas key from the upper receiver of said rifle; b) removing said carrier gas key from said bolt carrier; c) installing a gas blocking/diverting mechanism and a charge/pull handle combination mechanism in place of said carrier gas key on said bolt carrier, that includes a dual-bored and threaded metal gas diverting block mechanism and a charging handle; and, d) inserting bolt carrier with said metal gas diverting block mechanism and said charge/pull handle combination mechanism back into the upper receiver of said rifle.
27. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 26 wherein said metal gas diverting block mechanism and charge handle combination is selected from the group consisting of aluminum, titanium, steel and stainless steel.
28. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 26 wherein said bolt carrier has a top flat portion with two threaded orifices for receiving carrier gas key screws and each of said metal gas diverting block mechanism and said charging handle contains two corresponding orifices and said step c) of claim 26 is performed by screwing said metal gas diverting block mechanism and said charging handle combination to said bolt carrier.
29. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 26 wherein said metal gas diverting block mechanism and charge handle combination is a unitary component.
30. A method of converting a production AR-style direct gas impingement semi-automatic rifle to a single shot, straight pull bolt action rifle of claim 26 wherein said metal gas diverting block mechanism and charge handle combination is a two-component metal gas diverting block mechanism.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS(S)
[0034] The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate preferred embodiments of the invention and together with the detailed description serve to explain the principles of the invention. In the drawings:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0048] AR style rifles are manufactured as semi-automatic weapons that may be repeatedly fired in rapid sequence by repeated rapid pulling of the trigger, that is, a single spent case is automatically ejected, and the next round is automatically moved into the firing position with every single pull of the trigger. This is accomplished by propellant gas direct impingement. Direct Impingement is the original technology, devised by Eugene Stoner. At the pull of the trigger and the firing of a single round of ammunition, propellant gas is bled through a small hole located in the barrel, which is then channeled through a very small tube back in the direction of the chamber where it can proceed to directly contact (or impinge) the bolt carrier mechanism through a carrier gas key. At this point the bolt carrier group is pushed to the rear of the rifle, extracting and ejecting the spent casing, and resetting the hammer. The bolt carrier group is then pushed forward by spring-loaded action, stripping an unspent cartridge from the magazine, loading it directly into the chamber of the barrel, readying the rifle to fire another single round at another pull of the trigger. To qualify as a semiautomatic AR style rifle, such as an AR-15, a rifle must be self-loading, and be able to perform a specific set of basic functions mechanically, without user assistance. To be more specific, when depressing the trigger, the rifle needs to fire a single cartridge, and then extract that spent casing from the chamber and eject it in some manner from the rifle, and then automatically reset the hammer. Next, it must then load an unspent cartridge into the chamber. The round is advanced from the magazine, chambered, the breech is then locked, and the rifle is ready to fire another single round. The rifle will then have a fresh round loaded, and again be ready to fire by simply pulling the trigger again. The present invention is directed to eliminating the foregoing semi-automatic features to render the rifle no longer semi-automatic, but instead, make it a single shot, straight pull bolt action; requiring user actions to accomplish eject/reload functions. Thus, what the present invention does is a) prevent the AR rifle from functioning as a semi-automatic rifle; and, b) it changes the most basic functionality of the rifle. What we are left with when using this invention is something that aesthetically looks like an AR style rifle (e.g. AR-15) but no longer acts, behaves, or performs as it was originally intended.
[0049] Many semi-automatic AR style rifles such as the AR-10, AR-15, M-16, M-4 and others have been modified to accommodate different size ammunition cartridges, to enhance functional speed, to accommodate left handed people, to convert to single shot and/or to change from pull action to side charging action. These conversion packages involve complex, expensive component change outs, and, very often, upper receiver modifications that require metal machining, cutting, drilling, welding or other complex changes, or the purchase of a totally new and sometimes proprietary (non-mil-spec) upper components. The present invention is directed to inexpensive, simple and convenient devices and methods for conversion of such semi-automatic rifles to single shot, straight pull bolt action rifles, without modifying any of the main carrier system or upper structures of the rifle and maintaining the factory integrity and mil-spec components of the rifle, with the sole exception of the elimination of the carrier gas key, or carrier gas key and bolt carrier, to replace these with a gas diverting block mechanism. In the present invention, the carrier gas key, or the carrier gas key, pull handle, and/or bolt carrier, are removed and the present invention device is installed. All of the complexities and physical structure modifications (drilling, cutting, machining, etc.) are completely eliminated, along with avoidance of needing to purchase separate, proprietary or non-military spec upper components.
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[0060] Referring specifically to
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[0072] In addition to other advantageous features described above, the present invention combination charging handle with metal gas diverting block mechanism is, as mentioned, bolted directly to the bolt carrier in place of the carrier gas key, and also eliminates the need for, the complexity of, and the possible problems with, the conventional charging handle spring-loaded locking mechanism. Thus, these versions of the present invention has five simultaneous and synergistic advantages: (1) the direct impingement semi-automatic AR style rifle is converted to a single shot, straight pull bolt action rifle; (2) the conversion is accomplished without rebuilding the carrier or other mechanisms within the rifle; (3) no additional proprietary or non mil-spec upper receiver needs to be purchased; (4) no new machining or drilling or welding is needed for attachment; (5) the pull handle is locked in place on the upper without needing a spring actuated locking mechanism; and (6) as a result of eliminating the handle spring/lock, subsequent spring/lock wear and/or malfunction is eliminated.
[0073] As mentioned, as with all charge handle/gas diverting block combination versions of the present invention, there is no need for a spring locking mechanism on the charge handle (or any locking mechanism on the charge handle for that matter). This is important because current prior art versions with an extended design are more expensive and they require much more complex charge handled unlocking mechanisms which need to be actuated from the very end of the long arm.
[0074] In this present invention iteration with pull handles, the present invention devices allow for the shooter to pull from a more forward location on the rifle (further up towards the barrel), thereby providing the user with a more comfortable, natural, ergonomic pulling motion than is allowed by models where the pull motion is much closer to the face. The purpose behind this concept is to allow for the rifle to be charged manually without removing one's face from the shooting position (eyes aligned with the sights). This means that 99.9% of the time the rifle is manually charged with one hand and the other supports the rifle in a fixed position, i.e., only one hand instead of both hands needs to move to effect charging. To grab both sides of the pull handle at once would require the shooter to totally remove his face from the shooting position in order to make room for his forearm). The extended forward position allows for a more comfortable pulling motion as the hand and elbow are not as crowded by one's body and face. Most right handed shooters will pull with their left hands in order to maintain their shooting hand grip on the weapon and trigger guard. Still, the shorter pull handle on the right side allows for purchase if the shooter desires to pull with his right hand instead. Most shooters will pull only from one side, with one hand, because the goal is to stay in an accurate shooting position on the rifle during charging. Thus, another alternative embodiment would be a mirror image of the some of the above embodiments. Finally, the reversible extension arm variation will allow lefties and righties to try either side for pulling with or without the arm, to customize the present invention to suit each user's personal preference.
[0075] Although particular embodiments of the invention have been described in detail herein with reference to the accompanying drawings, it is to be understood that the invention is not limited to those particular embodiments, and that various changes and modifications may be effected therein by one skilled in the art without departing from the scope or spirit of the invention as defined in the appended claims. For example, the actual shape of the main housing may be any of numerous possibilities as long as its functionality as described is not affected adversely.