IP Library › Granted Patent US 11,359,895
Granted Patent B2
US 11,359,895 · App. 17/114,417 · Granted Jun 14, 2022

Supercharged accelerating projectile fired in a flight trajectory towards a target

Inventor: Darren J. Kennedy (Beloit, WI)
F42B10/40F42B14/064
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Quick Facts
Patent No.
US 11,359,895
App. No.
17/114,417
Granted
Jun 14, 2022
Kind
B2
Abstract

A projectile system has a projectile with a metal body having a first outside diameter, a forward end and a rearward end, a plastic base wad engaged at the rearward end, the plastic base wad of solid plastic having a first length and a second outside diameter, greater than the first outside diameter, and a rifled barrel having a third inside diameter at the tips of the rifling, the third inside diameter greater than the first outside diameter but less than the second outside diameter, and a fourth diameter at the root of the rifling greater than the second outside diameter. With the projectile translating along the rifled barrel, the metal body passes inside the rifling, avoiding metal to metal friction, while the plastic base wad fully engages the rifling, imparting rotation to the metal projectile.

Claims (20)

1. A projectile system, comprising:

a projectile with a metal body having a central cavity, a first outside diameter, a forward end, and a rearward end;

a plastic base wad engaged at the rearward end, the plastic base wad of solid plastic having a central bore, a first length, and a second outside diameter greater than the first outside diameter; and

a rifled barrel having a third inside diameter at the tips of the rifling, the third inside diameter greater than the first outside diameter but less than the second outside diameter, and a fourth diameter at the root of the rifling greater than the second outside diameter;

wherein, in firing the projectile, expanding gas enters through the central bore and pressurizes the central cavity while the projectile translates along the rifled barrel and the metal body passes inside the rifling, avoiding metal to metal friction, while the plastic base wad fully engages the rifling, imparting rotation to the metal projectile.

2. The system of claim 1 further comprising a forward tip of explosive material or depleted uranium.

3. The system of claim 1 further comprising a one-way valve in the central bore in the plastic base wad, allowing gas into the central cavity of the metal body, but preventing gas from exiting the cavity through the central bore.

4. The system of claim 1 wherein the plastic base wad has a second length greater than the first length, an internal cavity filled with explosive material, wherein the central bore of the base wad is at a forward end of the internal cavity, and an ignition system adapted to ignite the explosive material in the internal cavity of the base wad.

5. The system of claim 4 wherein the central bore of the base wad is sealed with tape, and a rearward end of the base wad is covered with magnesium foil.

6. The system of claim 5 wherein the ignition system comprises two electrodes in contact with the magnesium foil, the electrodes connected to opposite terminals of a battery through an ignition switch, such that closing the ignition switch closes an electric circuit through the magnesium foil, igniting the explosive material.

7. A method for delivering an explosive device or an armor-penetrating element to a target, comprising:

incorporating the explosive device or armor-penetrating element in a tip of a metal body of a projectile, the metal body having a central cavity, a first outside diameter, a forward end, and a rearward end;

engaging a plastic base wad at the rearward end of the metal body, the plastic base wad of solid plastic having a central bore, a first length, and a second outside diameter greater than the first outside diameter;

placing the combination of the metal body and the plastic base wad in a first end of a rifled barrel having a third inside diameter at the tips of the rifling, the third inside diameter greater than the first outside diameter but less than the second outside diameter, and a fourth diameter at the root of the rifling greater than the second outside diameter; and

igniting an explosive charge to propel the combination of the metal body and the plastic base wad along the rifled barrel;

wherein, in firing the projectile, expanding gas enters through the central bore and pressurizes the central cavity while the projectile translates along the rifled barrel and the metal body passes inside the rifling, avoiding metal to metal friction, while the plastic base wad fully engages the rifling, imparting rotation to the combination of the metal body and the plastic base wad.

8. The method of claim 7 wherein the central bore in the plastic base wad has a one-way valve, allowing gas into the central cavity of the metal body, but preventing gas from exiting the cavity through the central bore, further comprising trapping gas in the central cavity by virtue of the one way valve.

9. The method of claim 7 wherein the plastic base wad has a second length greater than the first length, an internal cavity filled with explosive material, wherein the central bore of the base wad is at a forward end of the internal cavity, and an ignition system adapted to ignite the explosive material in the internal cavity of the base wad, further comprising igniting the explosive material, driving the combination of the metal body and base wad along the rifled barrel.

10. The method of claim 9 wherein the central bore of the base wad is sealed with tape, and a rearward end of the base wad is covered with magnesium foil, further comprising igniting the explosive material by closing an ignition switch in wiring connecting electrodes in contact with the magnesium foil.

11. The method of claim 10 further comprising driving the combination metal body and plastic base wad along the rifled barrel, compressing gas in the central cavity of the metal body, until the combination exits the rifled barrel, whereupon the plastic base wad ejects from the metal body, and the compressed gas in the central cavity further propels the metal body toward the target.

Continuity (3)
Continuation In Part 16883164 · May 26, 2020
Provisional Application 62857255 · Jun 4, 2019
Related Publication 20210302141A1 · Sep 30, 2021