This invention concerns a gun cartridge having a highly unique long range construction which allows the projectile load, e.g., a shotgun shell pellet type charge, to be propelled an extraordinary distance with markedly enhanced accuracy wherein the charge is beginning its dispersile not at its exit from the gun barrel but at the impact (target) site wherein the target damage is the result of the full impact of the high momentum projectile charge in minimally dispersed form and its subsequent dispersile.
Heretofore, gun cartridges which employ a dispersible type load as in shotgun shells have provided limited range distance accuracy due to the natural rapid dispersal of pellets by contact with air molecules beginning at their very exit form the barrel. The present cartridge is constructed such that pellet dispersal is prevented until the load reaches the target.
The present invention in one preferred embodiment is summarized as a gun cartridge capable of delivering a pelletized charge to a target with greatly improved accuracy and destructive force at greatly increased long range distances, wherein the present cartridge comprises a rifle cartridge shell or a shotgun shell having an explosive section and a load section, a projectile element in the load section and having a tubular projectile casing of frangible plastic material, most preferably polycarbonate, a nose cone covering a distal end of the casing to provide a load chamber, a MV plug fitted into a proximal end of the casing, a pelletized load within the load chamber, and the outside surface of the casing being provided with rifling ridges, wherein the projectile casing readily breaks apart on impacting a force resistive (non-atmospheric) target and allows dispersal of the pellets, and wherein the weighted MV (momentum) plug greatly increases the distance and accuracy which the housed pellet charge will travel when fired.
The invention will be understood further from the drawings herein wherein the figures are not drawn to scale or in consistent proportions and dimensions and are intended to illustrate the preferred structure and functions of the various basic and exemplary components of the present invention, and wherein:
Referring to the drawings, and particularly in regard to a preferred embodiment of the present invention,
The proximal end of casing 18 preferably is not grooved such as to provide a sturdy base rim 19 on 18 for receiving impact forces from MV section 20 upon firing and for preventing air pressure in the groove 33 from causing separation of section 20 from casing 18. Further, grooves 33 are angled “β”, e.g., 20°-60° as shown by surfaces 21 and assist in reducing direct air pressure forces against rim 19, which forces otherwise could retard the projectile flight. The nose cone 26 is shaped such that impact of the target on the nose 28 of the cone will indent the cone and pressurize the load section 13 to assist in explosion of the casing and dispersion of the load components 38 such as metal pellets, BB's, metal shards, etc.
The MV section 20 is preferably of aluminum but can be of steel, copper, brass or other metals or materials which in combination with the load will distribute the force of the powder explosion uniformly around the casing 18 and prevent premature breaking up of the casing as well as imparting momentum to the projectile to carry it on a predetermined trajectory and imparting forward momentum to the load pellet after impacting the target. This section 20 is formed with a plug portion 40 and a head portion 42 wherein the plug portion is hand or machine press fitted into the neck portion 44 of casing 18. Typically, wadding such as 46 is provided as needed.
The invention has been described in detail with particular reference to preferred embodiments thereof, but it will be understood that variations and modifications will be effected within the spirit and scope of the invention.
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Number | Date | Country |
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2032070 | Apr 1980 | GB |
Number | Date | Country | |
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61959332 | Aug 2013 | US |