The present invention relates to the field of firearms and more particularly relates to an improved ammunition magazine.
Ammunition magazines are well known in the art of firearms. Their basic construction is a containment shell with two open ends. One end is deemed the “floor” of the magazine and is covered by a plate while the opposite end is the “feed” end and interfaces with the weapon. Inside the volume defined by the shell and plate is a spring and follower assembly. When ammunition is loaded into the magazine, the ammunition pushes the follower down towards the floor and thereby compresses the spring. In use, when one magazine is expended, the compressed spring releases and pushes the follower and associated ammunition upwards toward the feed end and the next round of ammunition is thereby readied.
Prior magazines have been manufactured in many different configurations and of different materials. Perhaps the best known in the U.S. are the AK-47 and the USGI AR15/M16 magazines. These magazines function similarly, though they are made with slight variations to interface with their host system. Of notable difference is that the AK-47 magazine has a relatively constant curvature while the AR15/M16 magazine has a less curved lower region that gradually resolves to a more linear function towards the feed end. Both use the same type of internal system. Of particular note with both, and all follower magazine systems, is that the system works well only as the follower smoothly travels the inside of the magazine. This is to say that the follower evenly distributes pressure on the round stack, even as other factors of the magazine and stack, including magazine curvature, case taper and upward pitch of the follower, are all considered and addressed. As the follower must move, there is room for the follower in all the known prior art magazines to move axially, or “wobble” and possibly jam. This is notorious in the AR15/M16 magazine style as the geometry of the magazine is inherently not uniform. The parent application involves a solution to these issues for a larger capacity magazine (30 rounds) by presenting a magazine with a constant internal curve and a follower with severely limited motion. However, these solutions are not well received with a smaller (20 round) capacity magazine, as curved 20 round magazines tend not to fit certain weapons. Consumers also tend to prefer their smaller capacity magazines straight and straight magazines are easier to mold.
The present invention is a polymer magazine with an angularly shaped guide rails to interface with the internal follower, thereby restricting, but not totally inhibiting axial motion of the follower. The magazine also features a two-piece floor plate locking system. The present invention represents a departure from the prior art in that the magazine of the present invention allows for more controlled and level motion of the follower while the magazine is loaded or unloaded.
In view of the foregoing disadvantages inherent in the known types of ammunition magazines, this invention provides an improved, smaller capacity magazine. As such, the present invention's general purpose is to provide a new and improved magazine that is backwards compatible with known weapon platforms and presents a more stable follower and follower path.
To accomplish these objectives, the improved ammunition magazine comprises a plurality of later angularly shaped guide rails within the magazine shell and a follower that is configured to abut them. By interfacing with more internal structure, most non-advantageous linear and axial motion is inhibited and the follower is then more controlled in its progress. The follower is constructed to allow advantageous fore/aft axial tilt, of approximately 10 degrees (1 degree of case taper per 10 cases on one side of a staggered stack). The magazine also features a polymer construction and can accommodate an ammunition load indicator system. The magazine also features a cover for storage.
The more important features of the invention have thus been outlined in order that the more detailed description that follows may be better understood and in order that the present contribution to the art may better be appreciated. Additional features of the invention will be described hereinafter and will form the subject matter of the claims that follow.
Many objects of this invention will appear from the following description and appended claims, reference being made to the accompanying drawings forming a part of this specification wherein like reference characters designate corresponding parts in the several views.
Before explaining at least one embodiment of the invention in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangements of the components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced and carried out in various ways. Also it is to be understood that the phraseology and terminology employed herein are for the purpose of description and should not be regarded as limiting.
As such, those skilled in the art will appreciate that the conception, upon which this disclosure is based, may readily be utilized as a basis for the designing of other structures, methods and systems for carrying out the several purposes of the present invention. It is important, therefore, that the claims be regarded as including such equivalent constructions insofar as they do not depart from the spirit and scope of the present invention.
With reference now to the drawings, the preferred embodiment of the ammunition magazine is herein described. It should be noted that the articles “a”, “an” and “the”, as used in this specification, include plural referents unless the content clearly dictates otherwise.
With reference to
Inside the body 10, along the fore side of the magazine 1, is a rib 15, shown in
It should also be noted that magazine body 10 presents no internal curve. The parent application presents a constant internal curve. The lower capacity magazine is less dependent on internal curvature and performs well without. Since there is no curve, the follower is redesigned to provide a slight upward pitch (axial tilt) function to aid in ammunition feeding to the weapon. Other disadvantageous motions, notably roll and side-to-side twisting (yaw) and downward pitch, are limited. As such, the follower 20 and associated ammunition travel more smoothly through the magazine body 10 with lessened round stack variation as compared to other 20 round straight magazines.
As shown in
At the top of rib 15 is a slight tab 15a (
In the preferred embodiment, the magazine body is comprised of a long glass-reinforced thermoplastic polymer selected to resist the heat generated from firing a rifle. However, other polymers, like polycarbonate, may be used and the magazines may be made in any color or opacity (which can reduce or eliminate the need for a magazine level indicator). Some polymers, such as polycarbonate, may be used without reinforcement. Other reinforcement materials, such as steel, carbon fiber, or other materials may also be used to reinforce the magazine. Likewise, the magazine body may be made of other materials having suitable strength and durability, such as titanium, ceramics, laminates, amorphous metals, etc.
The magazine 1 is structured to increase its structural integrity. To that end, fore rib 15 provides added durability to the magazine. Protective cover 30 also provides reinforcement during storage, as pressures from the stored ammunition and spring 13 would normally force the feed lips 11 of the magazine 1 apart. Protective cover 30 interfaces with geometry on the magazine body 10 and forces the ammunition downward with an underside spacer, thereby absorbing and distributing the forces that would normally be applied to the feed lips 11 in a more advantageous manner. This relation is best described in the parent application. The cover 30 also serves as a magazine tool as the cover latch will fit between the feed lips 11 so as to push rounds of ammunition out of the magazine 1. It also has a specialized gauge to determine if the feed lips 11 have splayed or compressed in a manner to prevent operability of the magazine with the weapon.
Although the present invention has been described with reference to preferred embodiments, numerous modifications and variations can be made and still the result will come within the scope of the invention. No limitation with respect to the specific embodiments disclosed herein is intended or should be inferred.
This Application claims priority on earlier filed U.S. Provisional Application No. 60/941,646, filed on Jun. 1, 2007, and incorporates the same in its entirety by reference.
Number | Date | Country | |
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60941646 | Jun 2007 | US |