The embodiments of the invention relate firearm magazine loaders, and more particularly, to a firearm magazine loader that assists a user to compresses the spring of a magazine and then insert a cartridge into the magazine. Although embodiments of the invention are suitable for a wide scope of applications, it is particularly suitable for the rapid loading of magazines for firearms.
Generally, to load a magazine manually, a user must compress the spring in the magazine by forcing a rear rim of the round into the mouth of the magazine. Then when the spring is compressed, slide the rear rim of the cartridge to the back of the magazine. This action is repeated with each successive cartridge until the magazine is full. This process can be tedious, time consuming, and painful because the springs of magazines are generally stiff to ensure reliable feeding of every cartridge into the chamber of a firearm. Repeatedly loading a magazine by hand can lead to sore, cut, and chapped fingers. Those with limited dexterity may not be able to perform the precise movements required to insert a cartridge into a magazine.
The related art of magazine loaders includes a broad variety of devices that generally assist users to add cartridges to a magazine by compressing the magazine spring, inserting the cartridge, or both. One such related art loader is disclosed in U.S. Pat. No. 9,212,859 assigned to MagLula Ltd (“MagLula Patent”). The MagLula Patent discloses a sleeve that covers the opening of a magazine having a downwardly facing protrusion on the inside of the sleeve. When the sleeve is pressed down around the magazine, the protrusion compresses the magazine spring and a user can easily manually add a cartridge. The device disclosed in the MagLula Patent allows a user to use their whole hand to exert force on the magazine spring via the protrusion. This saves a user's fingers from sharp pressure associated with manually compressing the magazine spring with a cartridge.
The related art also includes U.S. Pat. No. 10,976,121 of Draper. Draper generally discloses a device to assist a user to compress a magazine spring and insert a cartridge. The Draper device includes a sliding magazine guide having a window and a cartridge slider having an arm. A cartridge can be placed on the cartridge slider. When a magazine is inserted into the magazine guide and pressed against the round, the round compresses the magazine spring. When the magazine spring is compressed, the arm slides through the window pushing the cartridge into the magazine.
There are many problems with the related art. Loaders of the style of the Maglula Patent require some dexterity. First, the bottom of the magazine needs to be placed on something firm so that the Maglula device can then be pressed against the magazine to compress the spring. Second, while the spring is compressed and while balancing the loader and magazine, a user must use a free hand to orient and deposit a cartridge into the magazine and then push the cartridge to the back of the magazine so that it is properly seeded. This balancing act and manual manipulation requires some dexterity and does not fully alleviate the inconveniences of loading standard magazines.
Draper provides a solution to the dexterity problem of the Maglula Patent, but Draper suffers many engineering problems due in part to its unnecessarily complex structure. For example, a great degree of precision is required to have two independently sliding parts work together to load a cartridge. Draper attempts to solve this problem by allowing the arm of the cartridge slide to pass through the window of the magazine guide, but this solution is prone to malfunction. Even small imprecisions can cause the arm to bind or jam on the window. Additionally, when the arm does successfully pass through the window, the arm awkwardly protrudes from the main body of the loader. Draper discloses to cover the arm with a separate cover that slidably attaches to the main body increasing the size and contributing to the awkwardness of the device. Draper's arm-through-window solution is inelegant, prone to malfunction, and cumbersome. Additionally, the precision required for the proper functioning of the Draper mechanism makes Draper not suitable for a wide variety of magazines. Instead, the Draper mechanism must be very closely sized to be compatible with specific magazines.
Accordingly, embodiments of the invention are directed to a magazine loader that substantially obviates one or more of the problems due to limitations and disadvantages of the related art.
An object of embodiments of the invention is to provide a magazine loader that assists a user to compress a magazine spring.
Another object of embodiments of the invention is to provide a magazine loader that inserts a cartridge into a magazine.
Yet another object of embodiments of the invention is to provide a magazine loader having a mechanical design suitable for low cost but high precision manufacturing.
Still another object of embodiments of the invention is to provide a magazine loader suitable for loading a variety of magazines in varying sizes and shapes.
Additional features and advantages of embodiments of the invention will be set forth in the description which follows, and in part will be apparent from the description, or may be learned by practice of embodiments of the invention. The objectives and other advantages of the embodiments of the invention will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
To achieve these and other advantages and in accordance with the purpose of embodiments of the invention, as embodied and broadly described, a magazine loader for loading a cartridge into a magazine includes a base, a groove of the base, a cartridge loader slide, a channel in the cartridge loader slide, a mating portion of the cartridge loader slide sized in relative proportions to mate with the groove in the base, a magazine guide, a pin connecting the magazine guide to the cartridge loader slide, and a housing partially covering the magazine guide.
In another aspect, a magazine loader for loading a cartridge into a magazine includes a base, a magazine guide, a spring biasing the magazine guide away from the base, a cartridge loader slide, a channel in the cartridge loader slide, the channel having a first end and a second end, a pin of the magazine guide, the pin disposed in the channel of the cartridge loader slide, wherein the cartridge loader slide is configured to translate between a first position and a second position, wherein in the first position, the pin is disposed proximate the first end of the channel, and wherein in the second position, the pin is disposed proximate the second end of the channel.
In yet another aspect, a magazine loader for loading a cartridge into a magazine includes a base, an inclined groove in the base, a cartridge loader slide, a bottom of the cartridge loader slide sized in relative proportions to be slidably received in the inclined groove, a top of the cartridge loader slide, a foot protruding from the top of the cartridge loader slide, a channel in a side of the cartridge loader slide, the channel extending from a first end at the top towards an intermediation position at the bottom, and then extending towards a second end at the foot, a magazine guide, a spring biasing the magazine guide away from the base, a pin connected to the magazine guide and slidably disposed in the channel of the cartridge loader slide, and a housing on the base slidably retaining the magazine guide.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory and are intended to provide further explanation of embodiments of the invention as claimed.
The accompanying drawings, which are included to provide a further understanding of embodiments of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of embodiments of the invention.
Reference will now be made in detail to the preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. The invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art. In the drawings, the thicknesses of layers and regions are exaggerated for clarity. Like reference numerals in the drawings denote like elements.
At times, this specification uses relative terms to describe the interrelation of components and to refer to portions of components. With reference to
The mating portion 125 of the cartridge loader slide 120 can be slidably connected to the groove 115 of the base 110. The groove 115 and mating portion 125 can be sized in relative proportions to slide with respect to one another. The groove 115 can be slightly inclined with respect to the bottom 111 of the base 110. When the cartridge loader slide 120 is slidably connected to the groove 115, a downward force exerted on the cartridge loader slide 120 can cause the cartridge loader slide 120 to translate and slide down the inclined slope of the groove 115 towards the front 112.
The top 124 of the cartridge loader slide 120 can receive a cartridge. The foot 126 can act as a stop to position the cartridge on the cartridge loader slide 120. Recessed portion 128 can make the cartridge loader slide 120 thinner and lighter. In embodiments where the cartridge loader slide 120 is made from plastic, the recessed portion 128 can ensure an approximately uniform thickness of plastic throughout the cartridge loader slide 120 and more predictable dimensional stability during cooling after injection molding.
The channel 121 can be approximately L-shaped. The channel can start at first end 122 near the top 124 of the cartridge loader slide 120. The channel 121 can extend approximately linearly downward to intermediate position 127. The channel 121 can extend from the intermediate position 127 to the second end 123. The area between intermediate position 127 and the second end 123 can be approximately triangular. In other embodiments, the area between intermediate position 127 and the second end 123 can be approximately linear. Triangularity can enable the magazine loader to be compatible with a variety of sizes of cartridges. Linearity between intermediate position 127 and the second end 123 can be used for additional precision at the expense of narrower compatibility. The distance between the first end 122 and the intermediate position 127 can be approximately the height of the cartridge. A larger intermediate position 127 can enable compatibility with a greater variety of cartridges. The distance between intermediate position 127 and the second end 123 can be approximately the distance between the front of the lips of a magazine and the backwall of the magazine. A longer distance between intermediate position 127 and the second end 123 can enable compatibility with a wider array of magazines and generally longer cartridges.
Magazine guide 130 can be connected to the cartridge loader slide 120 via pin 135 inserted in pin hole 134 and passing through the channel 121. The pin hole 134 can be disposed on boss 131a. The boss can reinforce the pinhole 134. In an exemplary embodiment, the pinhole 134 can completely traverse the magazine guide 130. In other embodiments, the pinhole 134 can partially traverse the magazine guide 130. Although the disclosed embodiments of the invention disclose a pin 135 and pin hole 134 for connecting magazine guide 130 and cartridge loader slide 120, other types of pins are contemplated and within the scope of the invention. For example, the magazine guide 130 may have a pin or pillar protruding from the inner surface that engages the channel 121 and similarly connects the magazine guide 130 to the cartridge loader slide 120.
The magazine opening 132 of the magazine guide 130 can be sized to receive a magazine. In one embodiment, the magazine opening 132 can be precisely sized for interoperability with a specific magazine. In other embodiments, the magazine opening 132 can be slightly oversized for interoperability with a variety of magazines.
Although the cartridge loader has been shown and described as having a channel 121 in the cartridge loader slide 120 that is connected to a pin 135 inserted in the magazine guide 130, those of skill in the art will appreciate that the channel 121 of the cartridge loader slide 120 could alternatively be formed on an inner surface of the magazine guide 130 and that a pin sized in proportion to slide within the channel could be alternatively formed on a side of the cartridge loader slide 120. Such an arrangement would have substantially the same function, operate in substantially the same way, to achieve substantially the same result and would be an equivalent of the disclosed embodiment within the scope of the invention.
The housing 140 can cover and stabilize the magazine guide 130 and cartridge loader slide 120. The housing 140 can be connected to the base 110 with screws (not shown). The housing 140 have a cartridge chute 142 to assist with guiding a cartridge into the device. The housing 140 can provide a number of benefits to the assembly. First, magazine guide 130 can be slidably received in the housing 140. The housing 140 and the magazine guide 130 can be sized in relative proportions to allow the magazine guide 130 to precisely slide within the housing 140. Boss 131b (
Springs 114a and 114b can bias the magazine guide 130 upwards and away from base 110. Springs 114a and 114b can be retained in spring holes 113a and 113b, respectively. The magazine guide 130 can have corresponding spring holes as shown in conjunction with
In use, the embodiment of
A second position can be associated with a “loaded state.” In the second position, a cartridge has been positioned on the top 124 cartridge loader slide 120 and a magazine has been firmly pressed down into the opening 132 of the magazine guide 130. In the second position, the magazine guide 130 has been pushed downwards compression springs 114a and 114b, the cartridge loader slide 120 has been pushed down the inclined groove 125, and the pin 135 has moved in the channel 121 from the first end 122 to the second end 123.
In use, in transitioning between the first position and the second position, the downward force of the magazine against the cartridge and the cartridge loader slide 120 compresses the spring in the magazine allowing the cartridge to be partially inserted into the magazine. As the magazine is pressed downward, the cartridge loader slide 120 is compelled to move down the inclined groove 125 but is restrained from horizontal movement because the pin is near the first end 122 of the channel 121. As the magazine and magazine guide 130 are pushed downward, the pin 135 slides within the channel from the first end 122 to the intermediate position 127. When the pin 135 reaches the intermediate position 127, the pin 135 is cartridge loader slide 120 is no longer restricted from sliding down the inclined groove 115. The downward force of the magazine against the cartridge and ultimately against the cartridge load slide 120 pushes the cartridge load slide 120 down the inclined groove 115 and the pin 135 can slide between the intermediate position 127 and the second end 123 of the channel 121. As the cartridge loader slide 120 slides down the groove 115, the foot 126 of the cartridge loader slide 120 translates in the same direction pushing and fully seating the cartridge into the magazine. When the cartridge is fully seated, pressure can be released from the magazine, and springs 114a and 114b can return the cartridge loader 100 back to first position and ready to load a subsequent cartridge.
The mating portion 125 of the cartridge loader slide 120 can be sized in relative proportions to mate and slide within the groove 115 of the base 110. The cartridge loader slide 120 can slide from the first position as shown in
The channel 121 can have a first end 122 near the top 124 of the cartridge loader slide 120 The channel 121 can extend downwards towards from the first end 122 towards the intermediate position 127. The channel 121 can extend from the intermediate position 127 to the second end 123. In an embodiment of the invention, the area between the intermediate position 127 and the second end 123 can be approximately triangular. In other embodiments, the area between the intermediate position 127 and the second end 123 can be approximately linear.
The recessed area 128 can be formed within the cartridge loader slide 120. In embodiments where the cartridge loader slide 120 is made from injection molded plastic, recessed area 128 can be sized in relative shape, size, and thickness to approximately match the thickness of other portions of the cartridge loader slide 120. Injection molded plastic can shrink and deform where varying thicknesses of materials cool at different rates. To increase precision, recessed portion 128 can increase the uniformity of thickness of materials in the cartridge loader slide 120 thereby reducing shrinking and deformation during cooling and increasing precision. Even though the recessed portion 128 reduces the width of the cartridge loader slide 120, the thinned recessed portion 128 can add support and stability to the top 124. The top 124 can be slightly concave to guide and center a cartridge. The top 124 can be slightly inclined so that the force of gravity can slide a cartridge down the incline until it contacts foot 126. In cooperation the top 124 and the foot 126 can position the cartridge for insertion into a magazine.
The width (from left to right) of the cartridge loader slide 120 can be the same as the width of upstanding walls (not labeled) forming the groove 115. An inside portion of the magazine guide 130 can be approximately same width as the cartridge loader slide 120 so that the magazine guide 130 can slide down over the cartridge loader slide 120 and the upstanding walls forming the groove 115. These proportions can increase precision of the assembled cartridge loader and prevent the components from being loose or wobbly.
Bosses 131a and 131b can be disposed on a left side 138 and right side of the magazine guide 130. The bosses can reinforce the lower portion of the magazine guide 130 and also cooperate with boss catch (
Magazine opening 132 can be sized in relative proportions to receive a magazine for a firearm. In preferred embodiments of the invention, the magazine opening 132 is sized to be compatible with specific magazines that have similar dimensions. In other embodiments such as will be discussed in conjunction with
Cartridge opening 133 can form an opening to facilitate inserting a cartridge into the cartridge loader. The cartridge opening 133 can have a top wall, left wall, and right wall and be open on the bottom. In use, when a magazine is pressed into the magazine guide 130, the magazine guide 130 can slide down within the housing and the open bottom of the cartridge opening 133 can allow the cartridge opening 133 to the slide down around the cartridge loader slide. The width of the cartridge opening 133 can be approximately the width of the cartridge loader slide. Rear opening 139 can function in a similar matter to cartridge opening 133 except that rear opening 139 may not be specifically configured to allow a cartridge to be inserted into the loader. Rear opening 139 may be shorter than, or not as tall as, cartridge opening 133.
Wings 156 may project downwards from the magazine guide 130. Wings 156 can increase the surface area of the magazine guide 130 that is in contact with the cartridge loader slide when the loader is in the first position where the magazine guide is in the upward most position and the pin is in the first end of the channel of the cartridge loader slide. This increased contact surface area can contribute to increased precisions for the loader as there is a larger indexing surface between the magazine guide 130 and the cartridge loader slide. Wings 156 can additionally prevent smaller cartridges from falling off the top of the cartridge loader slide and becoming jammed in the mechanism.
Right inner surface 155 and left inner surface can be disposed between the cartridge opening 133, rear opening 139, and wings 156. The inner surfaces can be sized in relative proportions to slidably engage with the cartridge loader slide and constrain the two to substantially planar movement.
Spring holes 150 can be sized in relative proportions to receive springs (
Pin hole 134 can extend substantially from the left side 138 through to the right side. Broken line (not labeled) is illustrates the axis of the pin hole 134. Although the pin hole is shown as extending completely through the magazine guide 130, those of skill in the art will appreciate that the pin hole 134 need not extend completely through the magazine guide and that other structures would function in the same way and achieve the same result as the combination of pin hole 134 and pin. For example, pins in the form of protrusions could be formed on the inner surfaces of the magazine guide in approximately the same location as pin hole 134 and engage in with the channel of the cartridge loader slide in the same way as the pin 135 (
Contoured guide surfaces 160 and 161 can be formed near the bottom of magazine opening 132. In embodiments of the invention, the contoured guide surfaces 160 and 161 can be substantially symmetrical. The contoured guide surfaces 160 and 161 can assist to center a magazine inserted into magazine opening 132. The contoured guide surfaces 160 and 161 can serve as a stop for a magazine inserted into magazine opening 132. When a magazine is pressed into the magazine opening 132, the magazine can push against contoured guide surfaces 160 and 161 and, in turn, push the magazine guide 130 down into the housing and around the cartridge loader slide. The contoured guide surfaces 160 and 161 can be contoured to approximately match the shape of a corresponding portion of a specific magazine or a variety of different magazines.
As shown in
As shown in
In
When downward pressure is removed from the magazine 300, springs bias the magazine guide 130 upwards and the aforementioned process can happen substantially in reverse except that the cartridge can be frictionally retained in the magazine. In reverse, the pin 135 slides from the second end 123 back to the intermediate position 127 and, in doing so, forces the cartridge loader slide 120 back up the inclined groove 115. Once in the intermediate position 127, the pin slides up the channel 121 to the first end 122. The loader is now reset and a subsequent cartridge can be inserted for loading.
It will be apparent to those skilled in the art that various modifications and variations can be made in the magazine loader without departing from the spirit or scope of the invention. Thus, it is intended that embodiments of the invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.
This application is a continuation of U.S. patent application Ser. No. 17/701,406 filed Mar. 22, 2022 which is a continuation of U.S. patent application Ser. No. 17/379,008 filed Jul. 19, 2021 now U.S. patent application Ser. No. 11,313,634; the entirety of the aforementioned patents and applications are hereby incorporated by reference.
Number | Name | Date | Kind |
---|---|---|---|
9212859 | Tal et al. | Dec 2015 | B1 |
10126077 | Glover | Nov 2018 | B1 |
10976121 | Draper | Apr 2021 | B2 |
11029108 | Tal | Jun 2021 | B1 |
11041684 | Higby | Jun 2021 | B1 |
11150042 | Hefer | Oct 2021 | B2 |
11204213 | Chen | Dec 2021 | B1 |
11313634 | Newby | Apr 2022 | B1 |
11506462 | Newby | Nov 2022 | B1 |
20180202735 | Draper | Jul 2018 | A1 |
20180321004 | Fausti | Nov 2018 | A1 |
20200158454 | Oross | May 2020 | A1 |
Entry |
---|
American Speedloaders LLC, printout from website, title: “Glock 9mm 40sw”, accessed Jul. 9, 2021. URL: https://americanspeedloaders.com/product/glock-9mm-40sw/ Accessed Jul. 9, 2021. |
Photographs of related art device disclosed in NPL citation #1. Photos taken on Jul. 9, 2021. |
U.S. Appl. No. 29/800,010 of Sylvan Newby et. al., filed Jul. 19, 2021. |
Number | Date | Country | |
---|---|---|---|
20230047946 A1 | Feb 2023 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 17701406 | Mar 2022 | US |
Child | 17962644 | US | |
Parent | 17379008 | Jul 2021 | US |
Child | 17701406 | US |