Claims
- 1. A method for increasing fragmentation and combustion rate of a propellant charged polymer-containing gun propellant casing used in a firing sequence, comprising manufacturing a casing wall comprising a propellant-holding inner element, an intermediate adhesive layer, and an outer expansion-resistant cylindrical-shaped casing layer externally concentrically arranged with respect to said inner element, said outer layer and said inner element comprising consumable and fragmentable polymer components selected from the group consisting of films, film laminates, and fiber windings having a hoop strength relative to corresponding longitudinal casing wall strength in a range of about 100-1000 to 1; wherein said outer layer and said inner element are characterized individually as having circumferential moduli of said outer layer-to-said-inner element within a ratio of about (10-50)-to (1-8); wherein propellant ignited within said inner element generates an effective amount of pressure, initially effecting expansion of said inner element and adhesive layer against said outer expansion-resistant layer, creating a plurality of randomly positioned microflaws having rapid propagation velocity within said casing, thereby obtaining a high degree of microfragmentation and combustion of casing components.
- 2. The method of claim 1 wherein said adhesive layer is brittle.
- 3. The method of claim 2 wherein said adhesive layer comprises a low energy polymeric material.
- 4. The method of claim 3 wherein said adhesive layer comprises at least one coat of a brittle adhesive selected from the group consisting of epoxy-and acrylate-type adhesives.
- 5. The method of claim 2 wherein said adhesive contains a booster amount of a filler component of at least one member selected from the group consisting of NQ, RDX, HMX, PETN, and inorganic nitrate salt.
- 6. The method of claim 1 wherein said inner element comprises a laminate of overlapping film layers axially oriented and wound in a generally circumferential direction relative to said casing.
- 7. The method of claim 1 wherein said inner element comprises a polymer molded by a method selected from the group consisting of blow molding, injection molding and stretch molding.
- 8. The method of claim 1 wherein said inner element comprises a laminate of heat shrinkable polymer film.
- 9. The method of claim 1 wherein the cylindrical shaped outer casing layer is formed by winding high modulus fiber circumferentially within about 70.degree.-90.degree. relative to the long axis of said propellant casing.
- 10. A consumable gun propellant casing comprising, in combination,
- (i) an open ended inner element of at least one expandable polymeric layer holding propellant material;
- (ii) an open ended expansion-resistant cylindrical shaped outer layer externally concentrically arranged with respect to said inner element, said outer layer having a circumferential modulus higher than the corresponding circumferential modulus of said inner element and wherein said outer layer and said inner element are characterized individually as having circumferential moduli of said outer layer-to-said-inner element within a ratio of about (10-50)-to-(1-8); and
- (iii) a brittle adhesive layer positioned between said inner element and said expansion resistant outer layer, wherein said inner element, said outer layer and said adhesive layer comprises consumable and fragmentable materials.
- 11. The consumable gun propellant casing of claim 10 further comprising at least one consumable end cap secured to the open ends of said propellant casing said at least one end cap having a firing initiator port functionally associated with an igniter assembly means for effecting the firing of propellant material held within said casing; whereby propellant ignited by said igniter assembly means through said igniter port initially generates an effective amount of pressure with expansion of said inner element and adhesive layer against said expansion-resistant outer layer, creating a plurality of randomly positioned microflaws having rapid propagation velocities within said expansion-resistant outer layer before failure of said expansion-resistant outer layer, to effect microfragmentation and consumption of the consumable gun propellant casing.
- 12. The propellant casing of claim 10 wherein said adhesive layer comprises a brittle low energy polymeric material.
- 13. The propellant casing of claim 10 wherein said adhesive layer comprises a brittle adhesive selected from the group consisting of epoxy-type adhesives and acrylate-type adhesives.
- 14. The propellant casing of claim 10 wherein said adhesive layer comprises an energetic filler component selected from the group consisting of NQ, RDX, HMX, PETN, and inorganic nitrate salt.
- 15. The propellant casing of claim 10 wherein said inner element comprises a laminate of overlapping film layers axially oriented and wound in a generally circumferential direction relative to said cylindrical shaped casing.
- 16. The propellant casing of claim 10 wherein said inner element comprises a material selected from the group consisting of blow molded polymers, injection molded polymers and laminates of heat shrinkable polymeric film.
- 17. The propellant casing of claim 10 wherein the externally arranged cylindrical shaped outer casing layer comprises a winding of high modulus fiber arranged circumferentially within about 70.degree.-90.degree. relative to the long axis of said propellant casing.
- 18. The propellant casing of claim 13 wherein said outer layer comprises a high modulus carbon fiber winding.
Parent Case Info
The present invention is a continuation-in-part of U.S. Ser. No. 07/740535 filed on Aug. 5, 1991 now abandoned, that relates to combustible, but flash-resistant, inert layered propellant casings and a method for increasing the fragmentation and combustion rate of such casings during a conventional firing sequence.
US Referenced Citations (7)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2557284 |
Jun 1985 |
FRX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
740535 |
Aug 1991 |
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