SYSTEMS AND METHODS FOR PENETRATING STRUCTURES WITH REPOSITIONABLE SHAPED CHARGES
20190212110 ยท 2019-07-11
Inventors
- Theodore E. Sivley (Richardson, TX, US)
- Joshua McIntosh (Bloomfield, IN, US)
- Kevin Stewart (Camron, NC, US)
- Eric Scheid (Bloomington, IN, US)
Cpc classification
F42B3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention relates to using at least one explosive device to enable rapid and accurate positioning and repositioning of at least one explosive charge for controlled penetration of targets. A penetrator allows effective demolition with minimal explosive load. An attachment collar with magnetic inserts allows quick repositioning of explosive devices. A plurality of explosive devices allows a demolition profile to be rapidly created and adjusted on-site to adapt to changes in structural or environmental conditions.
Claims
1. An explosive device comprising: a charge container forming a body cavity; an attachment collar forming a plurality of cavities and plurality of apertures, wherein each aperture of the plurality of apertures opens into a respective cavity of the plurality of cavities, wherein the attachment collar comprises a bottom face and is coupled to a first end of said charge container; an explosive load wherein the explosive load is inserted into said body cavity; a wave shaper wherein said waver shaper is disposed within said body cavity; a booster explosive wherein said booster explosive is disposed within said body cavity; a charge top forming a first holding cavity and having a first aperture wherein said charge top is removably placed inside said charge container; an initiator holder disposed within said charge top aperture forming a second holding cavity, wherein the initiator holder is removably placed within the first holding cavity; a penetrator comprising a semi-spherical body comprising an exterior surface, an interior surface, and base rim, wherein the interior surface forms a penetrator cavity within said semi-spherical body and an aperture between the penetrator cavity and exterior of the penetrator; and a plurality of connectors, where each connector is disposed within a respective attachment collar cavity of the plurality of attachment collar cavities such that a bottom face of each connector is even with the bottom face of the attachment collar.
2. An explosive device of claim 1 wherein said charge container is comprised of a clear plastic material.
3. An explosive device of claim 1 wherein said connectors are magnets.
4. An explosive device of claim 1 wherein said connectors are adhesives.
5. An explosive device of claim 1 wherein said connectors are mechanical attachments.
6. An explosive device of claim 1 wherein said charge top is placed into said charge container by friction.
7. An explosive device of claim 1 wherein said charge top is placed into said charge container by a twist lock comprising a plurality of L-shaped notches in which said charge top locks into place.
8. An explosive device of claim 1 wherein said charge top is placed into said charge container by a container cap.
9. An explosive device of claim 1 further comprising a plurality of magnets attached to and projecting from said attachment collar by a ball and socket connection allowing the magnets to swivel in the direction of the of the ferro-magnetic surface.
10. An explosive device of claim 1 wherein said connectors are configured to be interchangeably coupled to said plurality of cavities in said attachment collar.
11. An explosive device of claim 1 wherein said attachment collar further comprises a stand-off bracket system comprised of a knob, gear system and rail wherein said stand-off bracket system is coupled to said attachment collar of said explosive device allowing said penetrator to be raised and lowered within said charge container such that the distance between said penetrator and a target surface is adjustable.
12. An explosive device of claim 1 further comprising disposable ferro-magnetic attachments that allow a target surface to be converted to a ferro-magnetic surface wherein said disposable ferro-magnetic attachments are coupled to a target surface by adhesive or mechanical couplers.
13. A method of demolishing a target comprising: providing at least one repositionable shaped charge; visually inspecting the at least one repositionable shaped charge for explosive load deficiencies and replacing defective charges; identifying at least one target surface; creating a demolition profile comprising identifying a desired demolition effect and identifying at least one target area on the at least one target surface; placing the at least one repositionable shaped charge on the at least one target area; and detonating the at least one repositionable shaped charge.
14. A method of claim 13 wherein at least one target surface is ferro-magnetic.
15. A method of claim 13 wherein said repositionable shaped charge comprises a plurality of connectors wherein at least one of said plurality of connectors is interchanged with a second connector.
16. A method of claim 13 wherein said repositionable shaped charge comprises a penetrator wherein the height of said penetrator from said target surface is adjustable.
17. A method of claim 13 further comprising coupling a disposable ferro-magnetic attachment to said target surface such that said target surface comprises a ferro-magnetic surface after identifying at least one target surface.
18. A method of claim 13 further comprising repositioning at least one shaped charged on said target surface.
19. A method of demolishing a target comprising providing at least one explosive device comprising: a charge container forming a body cavity; an attachment collar forming a plurality of cavities and plurality of apertures, wherein each aperture of the plurality of apertures opens into a respective cavity of the plurality of cavities, wherein the attachment collar comprises a bottom face; an explosive load wherein the explosive load is inserted into said body cavity; a wave shaper wherein said waver shaper is disposed within said body cavity; a booster explosive wherein said booster explosive is disposed within said body cavity; a charge top forming a first holding cavity and having a first aperture wherein said charge top is removably placed inside said charge container; an initiator holder disposed within said charge top aperture forming a second holding cavity, wherein the initiator holder is removably placed within the first holding cavity; a penetrator comprising a semi-spherical body comprising an exterior surface, an interior surface, and base rim, wherein the interior surface forms a penetrator cavity within said semi-spherical body and an aperture between the penetrator cavity and exterior of the penetrator; and a plurality of connectors, where each connector is disposed within a respective attachment collar cavity of the plurality of attachment collar cavities such that a bottom face of each connector is even with the bottom face of the attachment collar. visually inspecting the at least one repositionable shaped charge for explosive load deficiencies and replacing defective charges; identifying at least one target surface; creating a demolition profile comprising identifying a desired demolition effect and identifying at least one target area on the at least one target surface; placing the at least one repositionable shaped charge on the at least one target area repositioning the at least one shaped charge; and detonating the at least one repositionable shaped charge.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The detailed description of the drawings particularly refers to the accompanying figures in which:
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DETAILED DESCRIPTION OF THE DRAWINGS
[0018] The embodiments of the invention described herein are not intended to be exhaustive or to limit the invention to precise forms disclosed. Rather, the embodiments selected for description have been chosen to enable one skilled in the art to practice the invention.
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[0027] Although the invention has been described in detail with reference to certain preferred embodiments, variations and modifications exist within the spirit and scope of the invention as described and defined in the following claims.