Method of making polymer ammunition having a wicking texturing
US-2016003594-A1 · Jan 7, 2016 · US
US10234253B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10234253-B2 |
| Application number | US-201514748554-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 24, 2015 |
| Priority date | Nov 10, 2010 |
| Publication date | Mar 19, 2019 |
| Grant date | Mar 19, 2019 |
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The present invention provides a method of making a polymer ammunition cartridge having a metal injection molded primer insert.
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What is claimed is: 1. A method of making a polymer ammunition cartridge having an injection molded primer insert comprising by the steps of: providing a primer insert injection mold, wherein the primer insert comprises a top surface opposite a bottom surface and a substantially cylindrical coupling element that extends from the bottom surface, a primer recess in the top surface that extends toward the bottom surface, a primer flash aperture positioned in the primer recess to extend through the bottom surface, a flash hole groove that extends circumferentially about the primer flash aperture in the primer recess; and a flange that extends circumferentially about an outer edge of the top surface; molding a primer insert by adding an injection molding composition to the primer insert injection mold to form the primer insert; molding from a first polymer composition a substantially cylindrical polymeric middle body over primer insert at a first end and a substantially cylindrical polymeric coupling region at a second end, wherein the first polymer composition extends over an outer surface of the primer insert to the flange and extends over an interior surface of the substantially cylindrical coupling region into the primer flash hole aperture to the flash hole groove, wherein the first polymer composition extends from the substantially cylindrical polymeric coupling region through the primer flash hole aperture to the flash hole groove; forming a substantially cylindrical polymeric bullet-end component from a second polymer composition comprising a bullet aperture opposite a polymeric bullet-end coupling that mates to the substantially cylindrical coupling region; and coupling the substantially cylindrical coupling region to the polymeric bullet-end coupling to form a propellant chamber that extends from the primer flash hole aperture to the bullet aperture. 2. The method of claim 1 , wherein the first polymer composition is the same as the second polymer composition. 3. The method of claim 1 , wherein the first polymer composition is a ductile polymer. 4. The method of claim 1 , wherein the first polymer composition, the second polymer composition or both comprise a nylon polymer. 5. The method of claim 1 , wherein the first polymer composition, the second polymer composition or both comprise a fiber-reinforced polymeric composite. 6. The method of claim 1 , wherein the first polymer composition, the second polymer composition or both comprise between about 10 and about 70 wt % glass fiber fillers, mineral fillers, or mixtures thereof. 7. The method of claim 1 , wherein the bullet aperture comprises one or more cannelures formed on an inner circumferential surface of the bullet aperture. 8. The method of claim 1 , wherein the substantially cylindrical coupling region and the polymeric bullet-end coupling are welded or bonded together. 9. The method of claim 1 , wherein the first polymer composition, the second polymer composition or both comprise polyurethane prepolymer, cellulose, fluoro-polymer, ethylene inter-polymer alloy elastomer, ethylene vinyl acetate, nylon, polyether imide, polyester elastomer, polyester sulfone, polyphenyl amide, polypropylene, polyvinylidene fluoride or thermoset polyurea elastomer, acrylics, homopolymers, acetates, copolymers, acrylonitrile-butadinen-styrene, thermoplastic fluoro polymers, inomers, polyamides, polyamide-imides, polyacrylates, polyatherketones, polyaryl-sulfones, polybenzimidazoles, polycarbonates, polybutylene, terephthalates, polyether imides, polyether sulfones, thermoplastic polyimides, thermoplastic polyurethanes, polyphenylene sulfides, polyethylene, polypropylene, polysulfones, polyvinylchlorides, styrene acrylonitriles, polystyrenes, polyphenylene, ether blends, styrene maleic anhydrides, polycarbonates, allyls, aminos, cyanates, epoxies, phenolics, unsaturated polyesters, bismaleimides, polyurethanes, silicones, vinylesters, urethane hybrids, polyphenylsulfones, copolymers of polyphenylsulfones with polyethersulfones or polysulfones, copolymers of poly-phenylsulfones with siloxanes, blends of polyphenylsulfones with polysiloxanes, poly(etherimide-siloxane) copolymers, blends of polyetherimides and polysiloxanes, and blends of polyetherimides and poly(etherimide-siloxane) copolymers. 10. The method of claim 1 , further comprising a neck positioned between the bullet aperture and the polymeric bullet-end coupling. 11. The method of claim 10 , further comprising one or more internal structures in the neck to support a bullet. 12. The method of claim 1 , wherein the bullet aperture comprises one, two, three, or more annular rings that mate with one, two, three, or more corresponding annular grooves positioned on the bullet. 13. The method of claim 1 , wherein the primer insert is a metal primer insert comprising 16-18% Cr; 0-0.05% C; 0-1% Mn; 0-1% Si and the balance Fe. 14. The method of claim 1 , wherein the primer insert is a metal primer insert comprising 2-16% Ni; 10-20% Cr; 0-5% Mo; 0-0.6% C; 0-6.0% Cu; 0-0.5% Nb+Ta; 0-4.0% Mn; 0-2.0% Si and the balance Fe. 15. The method of claim 1 , wherein the primer insert is a metal primer insert comprising 2-6% Ni; 13.5-19.5% Cr; 0-0.10% C; 1-7.0% Cu; 0.05-0.65% Nb+Ta; 0-3.0% Mn; 0-3.0% Si and the balance Fe. 16. The method of claim 1 , wherein the primer insert is a metal primer insert comprising 3-5% Ni; 15.5-17.5% Cr; 0-0.07% C; 3-5.0% Cu; 0.15-0.45% Nb+Ta; 0-1.0% Mn; 0-1.0% Si and the balance Fe. 17. The method of claim 1 , wherein the primer insert is a metal primer insert comprising 10-14% Ni; 16-18% Cr; 2-3% Mo; 0-0.03% C; 0-2% Mn; 0-1% Si and the balance Fe. 18. The method of claim 1 , wherein the injection molding composition comprises powdered metal comprising 12-14% Cr; 0.15-0.4% C; 0-1% Mn; 0-1% Si and the balance Fe. 19. The method of claim 1 , wherein the injection molding composition comprises powdered metal comprising 3-12% aluminum, 2-8% vanadium, 0.1-0.75% iron, 0.1-0.5% oxygen, and the remainder titanium. 20. The method of claim 1 , wherein the injection molding composition comprises powdered metal comprising about 6% aluminum, about 4% vanadium, about 0.25% iron, about 0.2% oxygen, and the remainder titanium. 21. The method of claim 1 , wherein the injection molding composition comprises one or more metals. 22. A method of making a polymer ammunition cartridge having an injection molded primer insert comprising by the steps of: forming a primer insert by injection molding from a primer insert injection mold, wherein the primer insert comprises a top surface opposite a bottom surface and a substantially cylindrical coupling element that extends from the bottom surface, a primer recess in the top surface that extends toward the bottom surface, a primer flash aperture positioned in the primer recess to extend through the bottom surface, and a flange that extends circumferentially about an outer edge of the top surface; providing a first polymer composition for molding a polymer ammunition cartridge; molding from the first polymer composition a substantially cylindrical polymeric middle body having the primer insert at a first end and a substantially cylindrical polymeric coupling region at a second end, wherein the first polymer composition extends over an outer surface of the primer insert to the flange and extends over an interior surface of the substantially cylindrical coupling region to the primer flash hole aperture, wherein the first polymer composition extends
with copper · CPC title
with niobium or tantalum · CPC title
of plastics {, i.e. the cartridge-case tube is of plastics} · CPC title
characterised by the range of the alloying elements · CPC title
with Cr, Co, or Ni having a minimum content higher than 5% · CPC title
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