Stackable projectile
The present invention relates to stackable projectiles having a warhead and a propulsion unit. An adaptor enables the warhead to be coupled to propulsion units made of different materials. Furthermore, an adaptor couples different profiles of warheads and propulsion units and allows projectiles to be stacked without need for design modifications. The assembled projectile can be fired electrically or mechanically.
1. A stackable projectile including:
a warhead having a head section and a base section;
an adaptor having a top surface, a bottom surface and a side surface, wherein the top surface is configured to accommodate the base section of the warhead with the top surface in contact with substantially the entire base section of the warhead; and
a propulsion unit having a base and a cylindrical wall extending from the base to form a receptacle, wherein the receptacle is configured to accommodate the adaptor and the base section of the warhead, wherein the side surface of the adaptor is configured to fit into the receptacle, and wherein the propulsion unit is shaped to accommodate the warhead of a trailing projectile in a stack, wherein when the projectile is assembled, the top surface of the adaptor is coupled to the base section of the projectile, and the side surface of the adaptor is coupled to the cylindrical wall of the propulsion unit.
2. The projectile of claim 1 , wherein the top surface of the adaptor is coupled to the base section of the warhead using adhesives.
3. The projectile of claim 1 , wherein the side surface of the adaptor is coupled to the cylindrical wall of the propulsion unit using screw threads.
4. The projectile of claim 1 further including an electronic detector located in either the propulsion unit or the adaptor, for detecting firing signals from an external firing system.
5. The projectile of claim 1 , wherein the adaptor is made of metal, metal alloys or plastics.
6. An adaptor for coupling a warhead to a propulsion unit to form a stackable projectile, comprising:
an adaptor having a top surface, a bottom surface and a side surface, wherein the top surface is configured for connection to a base section of the warhead with the top surface in contact with substantially the entire base section of the warhead and the side surface is configured for connection to a wall portion of the propulsion unit; and
a detector for signals received from an external firing system and an interface for connecting the detector to a primer or propellant in the propulsion unit.
7. An adaptor according to claim 6 having a substantially solid body of plastics or metallic material, and wherein the top surface is substantially concave, the bottom surface is substantially flat, and the side surface is substantially cylindrical.
8. An adaptor according to claim 7 wherein the side surface includes screw threads for connection to the propulsion unit.
9. An adaptor according to claim 7 wherein the detector includes a circuit board located between plastic supports and the interface includes electrical contacts which extend through the supports.
10. A method for assembling a stackable projectile, comprising the steps of:
providing a warhead having a head section and a base section;
providing a propulsion unit having a base, and a cylindrical wall extending from the base to form a receptacle, wherein the base is shaped to accommodate the head section of a warhead in a trailing projectile in a stack;
providing an adaptor for coupling the warhead to the propulsion unit, wherein the adaptor has a top surface, a bottom surface and a side surface, wherein the top surface of the adaptor is configured to accommodate the base section of the warhead with the top surface in contact with substantially the entire base section of the warhead, and the side surface of the adaptor is configured to fit into the receptacle of the propulsion unit;
coupling the top surface of the adaptor to the base section of the warhead;
and coupling the side surface of the adaptor to the cylindrical wall of the propulsion unit.
11. The method of claim 10 , wherein the step of coupling the top surface of the adaptor to the base section of the projectile further comprises using adhesives.
12. The method of claim 10 , wherein the step of coupling the side surface of the adaptor to the cylindrical wall of the propulsion unit further comprises using screw threads.
13. The method of claim 10 , wherein the adaptor is made of metal, metal alloys or plastics.
14. The method of claim 10 , wherein the propulsion unit is made of metal, metal alloys or plastics.