This invention relates to a device mounted to a pistol for facilitating the grasping and pulling of the pistol slide during various operations.
Pistols include a slide which houses the firing mechanism and the barrel, through which the bullet is fired. During the recoil process, the slide slides backwards, along tracks in the top of the pistol's frame. When the slide is in its backwards position, a bullet from the magazine is urged into the barrel. The slide is then pulled forward by the recoil spring, thereby completing the loading process of the pistol, and at least partially cocking the firing mechanism. After firing the last bullet in the magazine, the pistol is reloaded by inserting a full magazine into the receiver and by manually pulling the slide rearwards, allowing a new round to be chambered. The pistol slide must also be pulled rearward to eject a chambered round during unloading and to clear certain malfunctions. Consequently, manually pulling or “racking” a pistol slide is a frequent operation for pistols.
The present invention relates to a slide device for facilitating grasping and pulling a pistol slide rearward during various pistol operations. The slide device or “racker” facilitates pulling back the pistol slide utilizing relatively little force. The racker includes an adaptor and a rack plate interconnected by a sliding dovetail joinery. The adaptor replaces the traditional slide cover plates on conventional striker fired pistols. The rack adaptor has an integral interface shoe, which seats within a complementary channel in the rack plate. The rack plate has a pair of opposed side protrusions or wings that are configured to fit or be engaged by the fingers or hand of the user, so as to allow the user to easily pull the slide rearward.
The above described features and advantages, as well as others, will become more readily apparent to those of ordinary skill in the art by reference to the following detailed description and accompanying drawings.
The present invention may take form in various system and method components and arrangement of system and method components. The drawings are only for purposes of illustrating exemplary embodiments and are not to be construed as limiting the invention. The drawings illustrate the present invention, in which:
In the following detailed description of the preferred embodiments, reference is made to the accompanying drawings that form a part hereof, and in which is shown by way of illustration specific preferred embodiments in which the invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the invention, and it is understood that other embodiments may be utilized and that logical, structural, mechanical, electrical, and chemical changes may be made without departing from the spirit or scope of the invention. To avoid detail not necessary to enable those skilled in the art to practice the invention, the description may omit certain information known to those skilled in the art. The following detailed description is, therefore, not to be taken in a limiting sense, and the scope of the present invention is defined only by the appended claims.
Referring now to the drawings,
As shown, racker 100 uses a two piece design and includes a cover plate adaptor 110 and a detachable rack plate 120. Adaptor 110 and rack plate 120 are interconnected using a sliding dovetail interface or similar joinery. Adaptor 110 and rack plate 120 are ideally formed or molded from a suitable thermoplastic polymer, however, one or the other may be cast or machined of a suitable metal.
Adaptor 10 is configured to affix directly within the open end of slide 12 and functions as a conventional slide cover plate, as well as, an interconnection element between rack plate 120 and slide 12. Adaptor 110 typically affixes to the slide 12 in the same way as the conventional rear cover plate. Adaptor 110 can be fitted to slide 12 without having to make any changes in the original slide or pistol. For example, if the rear wall of slide 12 includes a groove for receiving a rear cover plate, adaptor 110 would include tracks or facets complementary to the slide groove for mounting the adaptor to the slide. This way, mounting the slide grip on the pistol can be carried out by simply replacing the original rear cover plate of the slide, without having to drill holes in the slide, or to weld racker 100 to the slide. Adaptor 110 has a proximal end configured to seat within the rear opening of slide 12 and a distal end that extends past the rear of the slide. The distal end of rack adaptor 110 has an integral interface shoe 114. Interface shoe 114 is a flat tombstone shaped feature that generally lies perpendicular to the longitudinal axis of slide 12. Interface shoe 114 has a beveled peripheral edge 116. The distal face of interface shoe 114 has a vertical (relative to the top of slide 12) recessed slot 117 and a recess pocket 119 separated by a horizontal ridge 118.
Rack plate 120 is a relatively flat rectangular member having two opposed side wings 122 that are configured to protrude laterally beyond the sidewalls of slide 12 when racker 100 is fitted to the slide. Each wing 122 has a forward facing gripping surface, preferably including serrations, ridges or texturing to facilitate gripping of racker 100 while pulling slide 12 rearward. The proximal or interior face of rack plate 120 has a complementary tombstone shaped channel 123 for receiving interface shoe 112 of adaptor 110. Channel 123 is defined by a back wall 124 and an inset beveled rim 126. Interface shoe 114 seats within channel 123 with beveled edge 116 mating against bevel rim 126. The configuration of interface shoe 114 and channel 123 provide a sliding dovetail joinery to hold rack plate 120 to adaptor 110. Rack plate 120 also includes a rectangular protrusion or pintle 128 that extends outward from back wall 122. Pintle 128 provides a locking mechanism to secure the dovetail joinery of rack plate 120 to adaptor 110. Pintle 128 extend into slot 117 sliding along its length as interface shoe 114 is seated into channel 123, until snapping over ridge 118 and restrictively seating within pocket 119. Rack plate 120 is held in place to adaptor 110 by pintle 128 seating within pocket 119, which prevents the rack plate from disengaging from interface shoe 114 and adaptor 110.
It should be apparent from the foregoing that an invention having significant advantages has been provided. While the invention is shown in only a few of its forms, it is not just limited but is susceptible to various changes and modifications without departing from the spirit thereof. The embodiment of the present invention herein described and illustrated is not intended to be exhaustive or to limit the invention to the precise form disclosed. It is presented to explain the invention so that others skilled in the art might utilize its teachings. The embodiment of the present invention may be modified within the scope of the following claims.
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