Embodiments of the invention generally relate to a bolt assembly for firearms, and in particular to a rotating bolt assembly for shotguns wherein the bolt head rotates to lock the bolt into battery prior to firing but does not extend from the bolt body during operation.
In semiautomatic shotguns and in some pump shotguns, a rotating bolt head typically is used, with the bolt head generally translating or extending outwardly from the bolt carrier during operation, and at the same time rotating for engagement, extraction and ejection of a spent shell and to enable loading of a next shell and locking of the bolt into battery in the barrel of the shotgun. Since the bolt head often translates or extends a substantial distance in most rotary bolt assemblies, a barrel extension typically is provided between the barrel of the firearm and the receiver. Such barrel extensions generally are required to have a significant length to accommodate the full extension of the bolt head. One of the issues with barrel manufacturing for shotguns therefore has been the provision of longer barrel extensions to accommodate the translating rotary bolt head, which can, however, create issues with regard to machining of the barrel around the lockup and chamber area thereof. In addition, most traditional rotary bolt designs further typically require a longer receiver, in addition to the use of a longer barrel extension, all of which adds weight and further cost and complexity to the manufacture of these shotguns.
Accordingly, it can be seen that a need exists for a bolt assembly for a shotgun that addresses the foregoing and other related and unrelated problems in the art.
The embodiments disclosed are directed to a bolt assembly for a shotgun, such as an auto-loading or pump shotgun. The bolt assembly includes a bolt body, bolt head and a bolt carrier, with the bolt head being rotatable with respect to the bolt body so as to lock the bolt head into battery within the barrel of the shotgun to contain firing pressures. The bolt carrier is located below the bolt body and translates relative to the bolt body and bolt head. The bolt carrier further includes a cam pin that extends into a cam surface cut in the bolt head such that the longitudinal or translating movement of the bolt carrier, and thus the cam pin therewith, causes the bolt head to rotate. When the bolt carrier moves toward the forward position, the bolt head can be rotated in a generally clockwise direction so that the lugs on the bolt head engage lug cuts in the barrel of the firearm to lock the bolt head into a battery, and as the bolt carrier is translated rearwardly upon firing, the bolt head can be rotated in a generally clockwise direction to disengage the lugs of the bolt head from the barrel for extraction and ejection of the spent shell and loading of a new shell in the chamber of the firearm. The bolt assembly includes a bolt carrier blocker along one of the sides adjacent and interacting with interior of the receiver. The bolt carrier blocker locks the bolt head in the fully clockwise direction (open position) when the bolt carrier translates rearward, clearing the bolt head from the lockup. The bolt assembly further can include a bolt handle inserted into the bolt carrier along one of the sides thereof. The bolt handle enables the manual translation of the bolt assembly in a rearward direction for opening and/or clearing of the chamber and/or loading a new shell in the chamber as needed.
In the bolt assembly of the disclosed embodiments, the bolt head generally is held within the bolt body by an extractor that is hingedly affixed to the bolt body and a cam pin, which is captured in the assembly by the firing pin. The extractor includes a forward, engaging portion that extends forwardly of the lugs of the bolt head, a rear portion that is pivotally connected to the bolt body, and a slotted intermediate section that engages a corresponding recessed portion of the bolt head so as to enable rotation of the bolt head with respect to the extractor. The bolt assembly further includes an ejector mounted along an opposite side of the bolt body from the extractor and generally comprising an elongated rod that is translatable through the bolt body. As the bolt body is moved rearwardly upon firing, the ejector rod engages the back of the firearm receiver and is driven forwardly relative to the bolt body, moving through a shell support mounted along the bolt body for engaging and ejecting a shell from the firearm. The shell support generally is mounted along the bolt body and along the bolt head opposite the extractor and engages and supports the shell against the biasing force exerted thereagainst by the extractor so that the shell is held against the front face of the bolt head between extraction from the barrel and ejection from the firearm by the ejector.
In one embodiment, a rotatable bolt assembly is provided for a firearm having a receiver, a barrel and a fire control. The rotatable bolt assembly includes a bolt body; a bolt head received and retained within the bolt body; and a bolt carrier mounted below the bolt body and having a cam pin mounted thereto, the bolt carrier translatable relative to the bolt body to cause rotation of the bolt head as the bolt carrier is translated relative to the bolt body while the bolt head is retained within the bolt body and against extension therefrom.
These and other advantages and aspects of the embodiments of the disclosure will become apparent and more readily appreciated from the following detailed description of the embodiments taken in conjunction with the accompanying drawings, as follows.
Those skilled in the art will appreciate and understand that, according to common practice, various features of the drawings discussed below are not necessarily drawn to scale, and that dimensions of various features and elements of the drawings may be expanded or reduced to more clearly illustrate the embodiments of the present invention described herein.
The following detailed description is provided as an enabling teaching of embodiments of the invention. Those skilled in the relevant art will recognize that many changes can be made to the embodiments described, while still obtaining the beneficial results. It will also be apparent that some of the desired benefits of the embodiments described can be obtained by selecting some of the features of the embodiments without utilizing other features. Accordingly, those who work in the art will recognize that many modifications and adaptations to the embodiments described are possible and may even be desirable in certain circumstances. Thus, the following description is provided as illustrative of the principles of the invention and not in limitation thereof, since the scope of the invention is defined by the claims.
Referring now to the drawings in which like numerals indicate like parts throughout the several views,
The bolt assembly 10 according to one embodiment is illustrated in further detail in
The bolt carrier 21 is illustrated in
As shown in
For example, as the bolt carrier is translated rearwardly upon firing, the bolt head generally can be rotated in a clockwise direction as the cam pin of the bolt carrier is moved along the corresponding cam surfaces of the bolt head body so as to disengage a series of lugs 50 formed about the periphery 51 of the bolt head from the barrel of the firearm for extraction and ejection of a spent shell and to facilitate loading of a new shell in the chamber of the firearm. Thereafter, as the bolt carrier is moved toward a forward position with the return action of the firearm after firing, the cam pin of the bolt carrier is moved forwardly along the cam surface of the bolt head body, causing the bolt head to rotate in a generally counterclockwise direction so that the lugs 50 of the bolt head will engage corresponding lug cuts in the barrel of the firearm so as to lock the bolt head into engagement with the barrel in a battery condition for firing.
In addition, as illustrated in
In an exemplary embodiment, while the bolt head is rotated as needed for locking the bolt head into a battery condition for firing of a round of ammunition, and/or thereafter is rotated in a reverse direction for extraction and ejection of a spent shell, the bolt head generally remains within a longitudinal position inside the bolt housing and does not translate or extend with respect to the bolt housing. Thus, the bolt assembly of the exemplary embodiment is enabled to be made much more compact with a smaller longitudinal length since its bolt head does not need to extend or otherwise translate into and out of its bolt body. This accordingly can enable a reduction in length of the receiver and/or reduction of a lengthy barrel extension, as well as substantially simplify machining/fabrication of the firearm barrel and receiver. The addition of shell support, shell ejection, and bolt head anti-rotation features, such as the bolt carrier blocker, in the bolt assembly also facilitate a reduction in length of the receiver and/or reduction in length of the barrel extension, substantially simplifying machine/fabrication of the firearm barrel and receiver.
As illustrated in
The firing pin 55 is received through the bolt body 20, as indicated in
As indicated in
As shown in
As further illustrated in
A shell support 85 also generally is mounted along the bolt body 20 on the opposite side of the bolt head 22 from the extractor, as indicated in
As indicated in
The compact design of the exemplary embodiment, which enables rotation of the bolt head without requiring the translation or extension of the bolt head from the bolt body, allows for a significant reduction in the overall length of the bolt assembly, which in turn enables shorter, more compact receivers to be utilized, as well as reducing the length of any barrel extension that might still be required, all of which in turn reduce the overall weight of the firearm. The non-translating/non-extending bolt head further allows for the extractor to be mounted to the bolt body, while also enabling the extractor to remain free from rotation with the bolt head, resulting in the simplification of the machining of the barrel and removal of features of the barrel required for receiving and mounting of the extractor therein, which features can catch or interfere with the feeding/loading of new shells or cartridges within the firearm chamber. Still further, the compact design also can enable simplified machining of the receiver and barrel by enabling the placement or location of the ejector within the bolt assembly as opposed to being in the receiver or along a long barrel extension and likewise controlling the rotation of the bolt head within the bolt body so as to not require additional features for preventing over-rotation of the bolt head when the gun is out of battery.
The corresponding structures, materials, acts, and equivalents of all means plus function elements in nay claims below are intended to include any structure, material, or acts for performing the function in combination with other claim elements as specifically claimed.
Those skilled in the art will appreciate that many modifications to the exemplary embodiments are possible without departing from the scope of the invention. In addition, it is possible to use some of the features of the embodiments disclosed without the corresponding use of the other features. Accordingly, the foregoing description of the exemplary embodiments is provided for the purpose of illustrating the principles of the invention, and not in limitation thereof, since the scope of the invention is defined solely by the appended claims.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 61/742,881 filed on Aug. 20, 2012. The specification and drawings of the provisional patent application are specifically incorporated by reference herein.
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