This invention relates to ammunition magazines for automatic and semiautomatic firearms.
Traditional ammunition magazines for automatic and semiautomatic firearms, in particular, “single-stack” pistol magazines, comprise a tube with a set of feed lips flanking the opening of the tube. These feed lips retain and control the position of the first cartridge in the magazine and guide it into the barrel chamber during feeding. Typically, the feed lips are symmetric about the center of the magazine tube, and the cartridges feed from the magazine on center. One of the drawbacks of a single stack magazine tube is the direct vertical stacking of cartridges, which can position the rim of the first cartridge directly over the rebate of the second cartridge immediately below it. This can result in “rim lock”, where the rim of the first cartridge engages the rebate of the second cartridge, which can hinder cartridge feeding and even result in a malfunction. There is clearly an opportunity to improve the reliability of semiautomatic and automatic firearms by mitigating the effects of rim lock.
The invention concerns an ammunition magazine for a firearm. In one example embodiment the magazine comprises a tube defining a bore adapted to receive a plurality of cartridges. The bore has an axis extending lengthwise along the tube through a geometric center of the bore. A base is positioned at a first end of the tube. The base is oriented transversely to the axis and underlies the bore. A follower is positioned within the bore and is movable through the tube lengthwise along the axis. A spring is positioned within the bore between the base and the follower for biasing the follower toward a second end of the tube opposite to the first end. A first lip is positioned on a first side of the tube at the second end of the tube. A second lip is positioned at the second end of the tube on a second side thereof opposite to the first lip. The second lip is closer to the axis than the first lip. The first and second lips thereby define an opening in the tube offset from the axis toward the first side of the tube.
In an example embodiment the bore has a rectangular cross sectional shape. Further by way of example, the second lip comprises an edge of a sidewall forming the tube. In another example, a portion of the sidewall comprising the edge is angularly oriented toward the axis. In a particular example the first and second lips are oriented angularly about the axis relatively to the bore. The opening defined by the lips is thereby skewed about the axis. In a practical example the opening is skewed at an angle to the axis ranging from 1° to 5°. In a specific example embodiment, the opening is skewed at an angle of 3° to the axis.
In an example embodiment the tube may comprise first and second sidewalls positioned respectively on first and second sides of the bore. A projection extends from one of the first and second sidewalls toward the bore. The projection is positioned in spaced relation to the opening and engageable with the cartridges for skewing the cartridges relatively to the axis. In an example embodiment the projection extends from the first sidewall. By way of example, the projection may be positioned to engage the cartridges adjacent to or within a rebate thereof. In a further example the projection may be positioned to engage the cartridges adjacent to a projectile thereof. In an example embodiment the projection comprises an elongated surface oriented parallel to the axis. Specifically by way of example, the elongated surface may further comprise a first ramp sloped toward the base. Additionally by way of example, the elongated surface may further comprise a second ramp sloped toward the opening.
In an example embodiment the tube comprises first and second sidewalls positioned respectively on first and second sides of the bore. The first and second sidewalls are in spaced apart relation sufficient to receive the cartridges in a single stack. In another example embodiment the tube comprises first and second sidewalls positioned respectively on first and second sides of the bore. The first and second sidewalls are in spaced apart relation sufficient to receive the cartridges in a semi-staggered stack.
As shown in
As shown in
As shown in
The offset of opening 40 is expected to mitigate “rim lock”, a phenomenon which occurs when the rim 70 of the first cartridge 16 engages the rebate 58 of the second cartridge as the first cartridge is stripped from the magazine 10 during chambering of the cartridge. The skew angle 54 is intended to compensate for the offset of opening 40 and better align the bullet 62 of the first cartridge 16 with a feed ramp of a firearm. The skew angle is expected to increase the reliability of chambering the first cartridge during the firing cycle of the firearm. The projection 56 is intended to further control the location of rim 70 of the second cartridge and prevent contact between the rims of the first and second cartridges.
The example magazine 10 shown in
Magazines according to the invention are expected to have the following advantages: 1) reduced slide spring force making it easier to “rack” the slide or bolt and chamber a round or clear a jam; 2) reduced magazine spring force making it easier to load cartridges into the magazine; and 3) reduced potential for feeding malfunctions leading to a more reliable firearm.
This application is based upon and claims benefit of priority to U.S. Provisional Application No. 62/675,191, filed May 23, 2018 and hereby incorporated by reference herein.
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Entry |
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Author Unknown; DPMS Magazine for .30 Remington AR 4 Round—MA-R30-4; https://www.healyarms.com/dpms-magazine-for-30-remington-ar-4-round-ma-r30-4. |
Number | Date | Country | |
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62675191 | May 2018 | US |