The present invention relates to rail platform assemblies (typically including an upper receiver and a handguard) for firearms. Particularly, the present invention relates an integrated leveler positioned within a rail platform of a firearm to provide integrated, versatile, and compact anti-cant functionality.
Rail platforms are commonly used in connection with automatic and semi-automatic rifles, such as military M-16 rifles and AR 15 type rifles, respectively. A rail platform typically corresponds to an upper receiver of a rifle and sometimes to both an upper receiver and a handguard that covers the barrel of the rifle. The rail platform accommodates a variety of accessories, such as lights, additional scopes, and anti-cant (leveling) devices. Known anti-cant devices are added in the field and extend externally of the handguard and rail platform. A user has to put up with the anti-cant device extending outwardly of the rail platform and can have impaired vision when shooting the rifle after leveling the rifle via the anti-cant device, because it is impractical to remove the anti-cant accessory once the rifle is aligned. Further, it can be time consuming and awkward to add and remove accessories in the field, especially when timing is of the essence. Furthermore, externally-extending rifle accessories are more likely to be damaged or entangled with brush or clothing.
The present invention is directed to a rail platform with an anti-cant feature (leveler) that is integrated with a rail platform. The rail platform may be configured to be in two pieces: a first rail portion to be configured with an upper receiver for a firearm and a second rail portion to be configured with a handguard that itself is configured to receive a barrel assembly of a firearm. Each rail portion may include a plurality of outwardly extending and spaced apart upper ridges that laterally span the rail platform. The two rail portions are aligned end to end to form a slot between the two rail portions. The slot is configured to receive an anti-cant leveler. Alternatively, the rail platform may be configured in one piece that is configured with its respective upper receiver and handguard portion, with a slot between the two at the rail platform.
The leveler, which is configured to be received within the slot, includes a level vial and a level vial barrel receiver that may be axially received into a separate barrel having a cam lock and guide slot. The level vial is filled with leveling liquid that creates a visible bubble that can be externally visible of the level vial receiver when the level vial is axially received into the level vial receiver. In the embodiment with a separate barrel having a cam lock and guide slot, a spring biases the level vial receiver against an end of the barrel. When the level vial receiver pushes against the spring, the position can be held by a retaining pin that locks the leveler when the retaining pin is moved into the cam lock. In this way, the leveler can move between an open position and a closed and locked position.
According to one aspect of the invention, the end of the leveler may be knurled making it easier to move the leveler between the open and closed and locked position with a single fingertip.
Fasteners secure the leveler within the slot of the rail platform. The assembled leveler is compact and may not extend above the top portions of adjacent upper ridges. Further, when the leveler is closed and locked, the leveler barely extends past the lateral sides of the rail platform.
The fasteners may be spaced apart and oppositely situated from each other relative to the leveler, with the slot accommodating this particular shape. The leveler can be rotated 180 degrees so that the integrated leveler can be used for both right hand and left hand operations.
These and other advantages are discussed and/or illustrated in more detail in the DRAWINGS, the CLAIMS, and the DETAILED DESCRIPTION OF THE INVENTION.
The accompanying Figures, which are incorporated in and constitute a part of this specification, illustrate various exemplary embodiments.
Referring to
The upper receiver portion 102 includes an elongated upper receiver rail portion 108 that extends longitudinally of the upper receiver portion. Together the upper receiver rail portion and the handguard rail portion form an elongated rail platform 110 that may be unitary or formed from separate rail platform portions. The rail platform may include a plurality of laterally-extending upper ridges 120 generally equally spaced apart and extending along the elongated upper receiver rail portion to form a top portion 112 of the upper receiver portion. One or more openings 114 may be added to elongated upper receiver rail portion 108 in which to accommodate an optional rifle accessory (not illustrated) such as a scope or a light fixture. A partial slot 116 is created at one end of upper receiver rail portion 108.
In similar fashion to the upper receiver portion, handguard portion 104 also includes an elongated handguard rail portion 118 that extends longitudinally of the handguard portion. Handguard rail portion 118 may include a plurality of laterally-extending upper ridges 120 that may be like those of the upper receiver rail portion and also generally equally spaced apart and extending along the elongated handguard rail portion. One or more openings 122 that are similar to opening 114 of the upper receiver rail portion 108 may be added to accommodate an optional rifle accessory (not illustrated). A partial slot 124 is created at one end of the handguard rail portion.
In assembled form, upper receiver portion 102 aligns with and is adjoined to handguard portion 104 such that the upper receiver rail portion 108 and handguard rail portion 118 are in a confronting relationship at the two partial slots to form one (completed) slot 126 of a size and shape to accept the integrated leveler assembly 10. Alternatively, slot 126 may be integrally formed with a one piece rail platform (such as illustrated in
Slot 126 may be formed from a pair of outwardly extending protuberances 128 that are opposite and spaced-apart from each other with a laterally-spanning channel 130 therebetween. Each protuberance 128 may further include a tapped screw hole 132. If an imaginary axis split the slot in half either laterally or longitudinally, the two halves of the slot would be mirror images of each other according to this embodiment.
Now referring particularly to
One of skill in the art would know that the level vial would be nearly completely filled with a liquid 32 normally an alcohol, such as ethanol, and be colored (typically in a highly-visible color such as yellow or lime-green). A bubble 34 is created within the liquid within the level vial 12 and such bubble is visible between lines or guides when the level vial is horizontal (level). Outer edges of level vial receiver 14 that form opening 30 may function as the guide for purposes of determining when the level vial/level vial receiver are horizontal (level). Alternatively, guide lines can be added to the level vial itself to indicate the placement of the bubble to indicate the level vial is horizontal (level).
Level vial receiver 14 is of a size and shape to be axially received within barrel 16 as well illustrated in
When the level vial receiver goes into the closed position, an axial force is applied to the non-receiving end of the level, which biases the extension spring against the closed end of barrel 16, and compresses the spring so that the lock pin can move into the cam lock. When the lock pin is positioned within the cam lock, the level vial/level vial receiver is locked into the closed position (
The non-receiving end of the level may be knurled, as illustrated (particularly in
Referring particularly to
In one form of the invention, flanges 26 are spaced apart and oppositely situated from each other relative to the leveler barrel 16. Each flange may be positioned near an end of the barrel, one at one end and the other at the other end. Each flange corresponds to the outwardly extending protuberance 128 of slot 126 with the barrel 16 being received into channel 130. In this way, the leveler is rotatable 180 degrees and can be secured to slot 126 via the holes 132 through fasteners 28. In this manner, the integrated leveler can be accommodated into slot 126 for either right or left hand operations. To switch between the two operations, fasteners 28 are removed and the leveler is rotated 180 degrees and refastened into the slot.
When the upper receiver portion 102 and handguard portion 104 are assembled with the remaining rifle components (e.g., a butt stock, a lower receiver including a trigger assembly, a bolt carrier, and a rifle barrel assembly), the integrated leveler assembly along with the combined upper receiver/handguard portion forms improved anti-cant (leveling) functionality over the prior art anti-cant add-on accessories currently available. This is because the integrated leveler assembly is fixedly attached to both the handguard portion and the upper receiver portion between the two rail portions and there is less “play” (room for movement) between them. Additionally, the level vial/level vial receiver/barrel is aligned with the upper ridges of the rail portions and can be positioned to not extend above top portions 121 of upper ridges 120 (see section view of
Referring particularly to
These few examples and embodiments, which are by no means exhaustive, are merely intended to illustrate some of the many variations that can occur without departing from the spirit of the invention.
This application claims priority to U.S. provisional patent application Ser. No. 61/915,075 filed on Dec. 12, 2013, the contents of which are fully incorporated herein by reference.
Number | Date | Country | |
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61915075 | Dec 2013 | US |