Combustible cartridge cased ammunition assembly

Information

  • Patent Grant
  • 8146502
  • Patent Number
    8,146,502
  • Date Filed
    Monday, January 8, 2007
    18 years ago
  • Date Issued
    Tuesday, April 3, 2012
    12 years ago
Abstract
A combustible cartridge assembly is described. The assembly of one embodiment includes a projectile, a body having a first end portion coupled to the projectile and a second end portion opposite the first end portion. The body is made of a combustible material configured to be consumed upon firing the ammunition round assembly. A sleeve is at least partially contained within the base. The sleeve has a free end portion radially to adjacent to and coupled to the second end portion of the body. The sleeve and the body defines an interior area configured to contain a combustible propellant. A non-combustible base at least partially is coupled to the sleeve and is adjacent to the second end portion of the body.
Description
TECHNICAL FIELD

This document describes a configuration for ammunition, including large-bore ammunition having combustible cartridge cases.


BACKGROUND

A combustible cartridge case (CCC) typically includes two main structural components. The first is an elongated generally cylindrical combustible cartridge case body that has an interior area containing a propellant bed. The case body has a bottom dome portion to interface with a composite metal/elastomer case base. The second is an adapter with a tapered shoulder to interface with a projectile. The adapter can be manufactured from combustible materials or inert materials. The adapter and the body are affixed together by an adhesive at an angled lap-type joint known as a skive joint. The angled joining surfaces expose more material to the adhesive than a butt-type joint for greater structural strength.


The CCC configuration allows complex propellant bed geometries and integration with projectiles that have deep intrusions into the propellant bed (e.g., armor-piercing fin-stabilized discarding-sabot kinetic energy type projectiles). A typical assembly sequence includes assembling a projectile with an adapter, inverting the assembly to a nose-down orientation, and disposing a propellant bed to the intruding projectile. Meanwhile, the CCC body is assembled to a composite metal/elastomer case base. The base incorporates a cartridge head-spacing feature (e.g., a rim). Finally, the case base/CCC body assembly is attached to the projectile/adapter/propellant bed assembly at the skive joint with an adhesive.


The attachment of the case base/CCC body assembly to the projectile/adapter/propellant bed assembly is often used to establish and control the overall length of the complete cartridge. If the partially assembled cartridge needs to be shortened during manufacturing, the cartridge can be axially compressed so as to overdrive the skive joint, thereby shortening the overall length of the completed cartridge into an acceptable range. As a result, the overdriven skive joint forms a rear-facing lip as the adapter (female) expands beyond the CCC body (male), which creates a risk that the cartridge may be damaged. For example, sliding the complete cartridge across any discontinuity can cause the adapter lip be caught, torn, and possibly expose the propellant bed.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a partially cut-away isometric view of a Combustible Cartridge Cased (CCC) ammunition assembly in accordance with an embodiment of the present invention.



FIG. 2 is an enlarged, partially cut-away isometric view of the CCC ammunition assembly of FIG. 1.



FIG. 3 is an enlarged partial cross-sectional view of the case body/sleeve/case base assembly of the CCC ammunition assembly of an embodiment.



FIG. 4 is an enlarged partial cross-sectional view of the case body/sleeve/case base assembly of the CCC ammunition assembly of another embodiment.



FIG. 5 is a partially exploded isometric view of the case body and the sleeve of the CCC ammunition assembly of an embodiment with a sleeve spaced apart from the case body.



FIG. 6 is an isometric view of the sleeve and case body of FIG. 5 shown in an assembled configuration.





DETAILED DESCRIPTION

A combustible cartridge cased ammunition round assembly in accordance with the present invention overcomes drawbacks of the prior art and provides other benefits. Embodiments of the present invention are disclosed below and shown in the attached Figures. FIGS. 1 and 2 are partially cut-away isometric views of a Combustible Cartridge Cased (CCC) ammunition round assembly 10 in accordance with an embodiment of the present invention. FIGS. 1 and 2 show for illustrative purposes the CCC ammunition round assembly 10 having a projectile 16, a combustible body 12, a sleeve 14 disposed partially inside the body 12, and a base 26 that forms a closed-ended bottom of the CCC ammunition round assembly 10. The body 12 and the sleeve 14 define an interior area 24 that contains a propellant charge 27 (partially shown in phantom lines for purposes of clarity) that can be ignited by an ignition device (e.g., a primer 32) upon firing. The CCC ammunition round assembly 10 can optionally include projectile assemblies, such as a sabot assembly housed in a housing 22.


The body 12 of the illustrated embodiment is a generally cylindrical body having a sidewall 13 extending from a first end portion 18 to a second end portion 20. The first end portion 18 has a substantially continuous tapered case shoulder 19 and an open end 21 (sometimes referred to as a case “mouth”) shaped and sized to removably receive at least a portion of the projectile 16. The open end 21 of the first end portion 18 can have various features for engaging the projectile 16. For example, the open end 21 of the first end portion 18 can include threads, holes, grooves, or notches for interface with the projectile 16 with any suitable interface, such as bolted, glued, interference-fit, lipped, clamped, threaded, and/or notched, or other interface. As best seen in FIGS. 3 and 4, the second end portion 20 of the body 12 has a generally circular cross section with an inner body diameter corresponding to an inner surface 50 and an outer body diameter corresponding to an outer surface 52 of the sidewall 13.


The body 12 is constructed from a combustible cartridge material that will be substantially fully consumed when the ammunition round assembly 10 is fired in a gun or other firing device. In one embodiment, the body 12 is fabricated from a molded resonated, short-fiber composite whose main constituent is nitrocellulose. In another embodiment, the body 12 is constructed from a laminated material having an inner layer of an energetic combustible material and an outer layer of an inert material. The inert layer can be integrated with the energetic layer using various techniques. In one embodiment, the inert layer is integrated with the energetic layer by a secondary pre-forming operation. During fabrication, a pre-forming tool is first immersed in an energetic formulation to form the energetic substrate. Then, the energetic substrate is selectively immersed in an inert formulation to form and integrate with the inert layer. This selectivity may be achieved by, for example, masking and/or selective immersion. After the pre-forming operation, the body 12 is molded to complete the integration of the two layers. In another embodiment, the body 12 is constructed with two pre-forms. For example, a pre-form fabricated from the energetic material and an inert shield pre-form fabricated from the inert material. The pre-forms may have designed features, such as mechanical locking features that fasten the two pre-forms when the two pre-forms are mated together prior to molding.


The external surface of the body 12 can be optionally coated with an environmentally protective coating containing, for example, polyvinyl alcohol and polyurethane. This protective coating is also consumable when the ammunition round assembly 10 is fired. The coating may be applied to the completely assembled ammunition round assembly 10 or individually to the body 12 and the sleeve 14.


The sleeve 14 is a generally cylindrical body that at least partially overlaps with and attaches to second end portion 20 of the body 12 generally adjacent to the base 26. In the illustrated embodiment, the sleeve 14 is sized to mate with the body 12 in a lap-joint configuration wherein a portion of the sleeve 14 directly attaches to the second end portion 20 of the body 12. For example, the sleeve's outer diameter can approximately correspond to the body's inner diameter at the second end portion 20 such that the sleeve 14 can be partially inserted into the second end portion 20 of the body 12 in the overlapping configuration. As a result, the second end portion 20 of the body 12 and the sleeve 14 overlap to define the interior area 24 configured to retain a combustible propellant. The sleeve 14 can incorporate form features at or near the top edge portion, such as scallops (as shown in FIGS. 1 and 2), holes, or contours that provide enough of the sleeve to connect to the body's second end portion 20 while exposing a greater area of the body's combustible material to the gun gases during firing. This exposure minimizes the risk that unburned residue remains after firing.


The sleeve 14 of the illustrated embodiment is constructed from a suitable material with sufficient strength and durability to withstand forces applied thereto during normal or rough handling of the ammunition round assembly 10. In one embodiment, the sleeve 14 is fabricated from the same material as the body 12. In another embodiment, the sleeve 14 is fabricated from a similar material as the body 12 but is inert to prevent premature burning when the firing chamber contains hot residual. In yet another embodiment, the sleeve 14 is fabricated with a non-combustible material, for example, steel, such that after firing, the sleeve 14 can be recovered with the base 26.


The base 26 engages the sleeve 14 such that the base 26 at least partially isolates the sleeve 14 from the outside environment. In one embodiment, the base 26 includes a metallic cup portion 28 having a closed end 33, an open end 31, and an elastomer ring 30 mated to the open end 31. The closed end 33 of the base 26 provides a solid mounting feature 44 (e.g., a primer boss) for attaching the primer 32 or other ignition device that can ignite the propellant charge. The outside edge of the closed end 33 of the base 26 defines a rim 38 configured for properly locating the CCC ammunition round assembly 10 in a firing chamber of a gun or other firing device. The rim 38 is also configured for removing the base 26 from the firing chamber after the ammunition round assembly 10 has been fired.



FIG. 3 is a partial cross-sectional view of the CCC ammunition round assembly 10 of FIG. 1 in accordance with one embodiment. In the illustrated embodiment, the sleeve 14 has a substantially uniform diameter along a generally cylindrical section 39 of the sleeve 14 and a domed section 41 with a central hole 41 for permitting a primer 32 to extend through the domed section. The sleeve 14 is sized to fit within the cup portion 28 of the base 26, so the central hole 41 of the sleeve 14 fits over the mounting feature 44 of the base 26. The sleeve 14 is securely retained in the base 26 by using a retention device, for example, a spring disc 46 and a snap ring 48. In one embodiment, adhesives can also be used to securely retain the sleeve 14 within the base 26. The primer 32 extends through the base 26 and the central hole 41 in the sleeve 14 to engage the base 26 by, for example, engaging threads of the mounting feature 44. The sleeve 14 and the base 26 engage the body 12 by forming a lap-type joint between an outer surface of the sleeve and an inner surface 50 of the body as illustrated in FIGS. 3 and 4.



FIG. 4 is a partial cross-sectional view of the CCC ammunition round assembly 10 in accordance with another embodiment. The features of this illustrated embodiment are generally similar to the features described above with reference to FIG. 3. The sleeve 14, however, is a generally cylindrical body having two open ends. The first portion 34 of the sleeve 14 engages the body 12 at the second end portion 20 by forming a lap-type joint between an outer surface of the sleeve and an inner surface 50 of the body. The second portion 36 of the sleeve 14 is securely coupled to the base 26 by using an adhesive, friction fit, mechanical fastener, or other securing mechanism that secures the sleeve 14 and an internal surface of the base 26.


In both embodiments described above with reference to FIGS. 3 and 4, the base 26 is adjacent to the second end portion 20 of the body 12 when the sleeve 14, the base 26, and the body 12 are assembled together. In the illustrated embodiment, the second end portion 20 of the body 12 is at least partially abutting the edge of the elastomer ring 30 of the base 26. The second end portion 20 can be positioned to engage the edge of the elastomer ring in a butt joint, so that the edge of the body may partially compress a portion of the elastomer ring 30 to achieve improved sealing of the sleeve 14. In other embodiments, the elastomer ring 30 at least partially encloses the second end portion 20 of the body 12. In further embodiments, the second end portion 20 of the body 12 separates from the elastomer ring 30 by a small distance.


During assembly of one embodiment, the projectile 16 (FIG. 1) is first attached to the first end portion 18 of the body 12. The propellant charge 27 is then disposed in the body 12 through the open second end portion 20 while the body 12 is engaged with the projectile 16. Before the base 26 is coupled to the body 12, the sleeve 14 is securely attached to the base 26. In one embodiment, the sleeve 14 is secured to the base 26 with a retention device, such as a spring disk, a snap ring and/or other retention means. When the sleeve 14 is attached to the base 26, the central hole 40 in the sleeve 14 is adjacent to and coaxially aligned with a primer hole 41 that extends through mounting feature 44 of the base. The primer 32 is then inserted into the primer hole 41 and the central hole 40 in the sleeve 14. In one embodiment, the primer 32 can have a set of exterior threads, and the primer 32 can be screwed into the base 26 so that the external threads mate with the internal threads in the mounting member 44, thereby forming a base/primer/sleeve assembly. Then, the base/primer/sleeve assembly is partially inserted into the second end portion 20 of the body 12, such that the sleeve 14 and the body 12 partially overlap and until the leading edge of the body's second end portion 20 abuts against the elastomer ring 30. Accordingly, the elastomer ring 30 can provide a flexible structure that blocks the primer/base/sleeve assembly from being inserted too far into the body 12 during the assembly process. In one embodiment, the elastomer ring 30 may be compressed a bit by the body if needed to properly size the overall assembly or to properly position the base relative to the body. The interface of the ring 30 and the body 12, however, do not create a radially protruding projection (e.g., a raised lip) that can be caught or damaged during handling, storage, or use of the ammunition assembly 10. The first portion 34 of the sleeve 14 and the body 12 are then secured together, such as by applying an adhesive at the lap joint or by using another securing device, mechanism, or means.


The lap joint between the sleeve 14 and the body 12 permits final adjustments of the overall length of the CCC ammunition round assembly 10 without the risk of overdriving the joint to result in a raised lip. In one embodiment, the CCC ammunition round assembly 10 can be lengthened during the assembly process by reducing the amount of the sleeve 14 within the body 12 prior to fixing the sleeve and body together. In another embodiment, the CCC ammunition round assembly 10 can be shortened by pushing the sleeve 14 further into the body 12, thereby increasing the amount of the sleeve's first portion 34 that engages the second end portion 20 of the body 12. In either embodiment, the second end portion 20 of the body 12 is adjacent to the base 26.


The assembly process for manufacturing the CCC ammunition assembly 10 is simple, fast, and easy, thereby reducing the manufacturing costs. When the CCC ammunition assembly 10 is assembled, the lap joint adjacent to the base can be sealed and protected by the elastomer ring 30 of the base 26. The resulting interface between the base, the sleeve and the body provides a smooth surface transition. Further, the location of the lap-type joint adjacent to the base is in a low-stress area and is protected by the elastomer ring 30 and the rim 38 of the base 26, so that the assembled CCC ammunition round assembly 10 is extremely durable for use in the harshest environments.


From the foregoing, it will be appreciated that specific embodiments of the invention have been described herein for purposes of illustration, but that various modifications may be made without deviating from the spirit and scope of the invention. Accordingly, the invention is not limited except as by the appended claims.

Claims
  • 1. An ammunition round assembly, comprising: a projectile;a base opposite the projectile;a body having a first end portion connected to the projectile and a second end portion opposite the first end portion, adjacent to the base, and not connected to the projectile, the body being made of a material consumed upon firing the ammunition round assembly;a propellant; anda sleeve at least partially contained within the base and having a free end portion immediately adjacent to and connected to the second end portion of the body, the sleeve and the body defining an interior area that contains the propellant, wherein the sleeve and the body form a lap joint that allows for axial adjustment in the length of the ammunition round assembly during manufacture of the ammunition round assembly.
  • 2. The ammunition round assembly of claim 1 wherein the base is at least partially in contact with the second end portion of the body.
  • 3. The ammunition round assembly of claim 1 wherein the base includes a flexible band adjacent to the second end portion of the body.
  • 4. The ammunition round assembly of claim 1 wherein the second end portion of the body abuts an edge of the base.
  • 5. The ammunition round assembly of claim 1 wherein the base has an opening defined by an edge, the sleeve extends through the opening, and wherein the edge is immediately adjacent to the second end portion of the body.
  • 6. The ammunition round assembly of claim 1 wherein the base includes a generally cylindrical metallic base portion and a sealing ring, the sealing ring substantially radially aligned with the second end portion of the body.
  • 7. The ammunition round assembly of claim 1 wherein the free end portion of the sleeve comprises one or more features selected from the group consisting of a scallop, a hole, a notch, and a slit.
  • 8. The ammunition round assembly of claim 1 wherein the sleeve is made of a material configured to be consumed upon firing the ammunition round assembly.
CROSS-REFERENCE TO RELATED APPLICATIONS

This non-provisional application claims priority to Provisional U.S. Patent Application No. 60/757,142, entitled COMBUSTIBLE CARTRIDGE CASED AMMUNITION ASSEMBLY, filed Jan. 6, 2006, hereby incorporated in its entirety by reference thereto.

US Referenced Citations (156)
Number Name Date Kind
260153 Bennett Jun 1882 A
2072671 Foulke Mar 1937 A
2322624 Forbes Jun 1943 A
2346792 Rush Apr 1944 A
2383053 Fanger et al. Aug 1945 A
2489337 Sperling Nov 1949 A
2775943 Ekserzian Jan 1957 A
2824755 Lamphear Feb 1958 A
2862446 Ringdal Dec 1958 A
2866412 Meyer et al. Dec 1958 A
2998988 Kunz Aug 1961 A
3077330 Lamphear Feb 1963 A
3127148 Collar Mar 1964 A
3160099 Nooker Dec 1964 A
3194161 Becker et al. Jul 1965 A
3224371 Kempton et al. Dec 1965 A
3224372 Nooker Dec 1965 A
3249050 Cordle et al. May 1966 A
3320888 Churchill May 1967 A
3434422 Herman et al. Mar 1969 A
3485170 Scanlon Dec 1969 A
3490374 Nooker Jan 1970 A
3561725 Torres Feb 1971 A
3605624 Dinsdale et al. Sep 1971 A
3609115 Sammons et al. Sep 1971 A
3658008 Larson Apr 1972 A
3662802 Bedell May 1972 A
3680483 Staudacher et al. Aug 1972 A
3690257 Nooker et al. Sep 1972 A
3696750 Colgate et al. Oct 1972 A
3696751 Kempton Oct 1972 A
3705549 Quinlan et al. Dec 1972 A
3713390 Pieper Jan 1973 A
3720168 Sylwester Mar 1973 A
3742856 Welanetz Jul 1973 A
3745927 Tanner et al. Jul 1973 A
3791303 Sweeney et al. Feb 1974 A
3808973 Galluzzi May 1974 A
3814017 Backstein et al. Jun 1974 A
3853645 Kaufman et al. Dec 1974 A
3863254 Turner Jan 1975 A
3878396 Vallet Apr 1975 A
3885727 Gilley May 1975 A
3894679 Reifers et al. Jul 1975 A
3895578 Shaw et al. Jul 1975 A
3901153 Brabets et al. Aug 1975 A
3910189 Whidden et al. Oct 1975 A
3911824 Barr et al. Oct 1975 A
3938441 Sewell et al. Feb 1976 A
3955506 Luther et al. May 1976 A
3986655 Rynning Oct 1976 A
4015527 Evans Apr 1977 A
4036103 Gawlick et al. Jul 1977 A
4069762 Maury Jan 1978 A
4077326 Funk et al. Mar 1978 A
4098625 French et al. Jul 1978 A
4196129 Rhein et al. Apr 1980 A
4197801 LaFever et al. Apr 1980 A
4220089 Smith Sep 1980 A
4237789 Stauers et al. Dec 1980 A
4276100 Colvin et al. Jun 1981 A
4289295 Allread Sep 1981 A
4335657 Bains Jun 1982 A
4392432 Fenrick et al. Jul 1983 A
4404912 Sindermann Sep 1983 A
4434718 Kopsch et al. Mar 1984 A
4435481 Baldi Mar 1984 A
4444115 Romer et al. Apr 1984 A
4446793 Gibbs May 1984 A
4459915 Lynch Jul 1984 A
4505203 Brady et al. Mar 1985 A
4535697 Moser et al. Aug 1985 A
4593622 Fibranz Jun 1986 A
4604954 Clarke et al. Aug 1986 A
4640195 Campoli Feb 1987 A
4739708 Halpin et al. Apr 1988 A
4763577 Romer et al. Aug 1988 A
4768439 Singer et al. Sep 1988 A
4802415 Clarke et al. Feb 1989 A
4815390 Garcia Mar 1989 A
4863534 Forsberg Sep 1989 A
4867036 Haskins Sep 1989 A
4881464 Sayles Nov 1989 A
4907510 Martwick et al. Mar 1990 A
4941244 Ortmann et al. Jul 1990 A
5029530 Martwick et al. Jul 1991 A
5042388 Warren et al. Aug 1991 A
5078051 Amundson Jan 1992 A
5090323 Kallevig et al. Feb 1992 A
5097765 Ziemba Mar 1992 A
5121692 DiCarlo Jun 1992 A
5136950 Halpin et al. Aug 1992 A
5138949 Swartout et al. Aug 1992 A
5147973 Ziemba Sep 1992 A
5155295 Campoli Oct 1992 A
5160804 Wahner et al. Nov 1992 A
5233928 Ducros et al. Aug 1993 A
5265540 Ducros et al. Nov 1993 A
5289776 Thiesen et al. Mar 1994 A
5317163 Obkircher May 1994 A
5333551 Heitmann et al. Aug 1994 A
5335599 Thiesen et al. Aug 1994 A
5343794 Andreotti et al. Sep 1994 A
H001367 Allen, Jr. et al. Nov 1994 H
5361700 Carbone Nov 1994 A
5388522 Martwick et al. Feb 1995 A
5400714 Thiesen et al. Mar 1995 A
5400715 Roach et al. Mar 1995 A
5415104 Bispling et al. May 1995 A
5423262 Pettersson et al. Jun 1995 A
5433148 Barratault et al. Jul 1995 A
5443009 Thiesen et al. Aug 1995 A
5456455 Dillehay et al. Oct 1995 A
5467716 Boual Nov 1995 A
5524546 Rozner et al. Jun 1996 A
5526751 Spivey et al. Jun 1996 A
5531163 Dillehay et al. Jul 1996 A
5557059 Warren et al. Sep 1996 A
5561260 Towning et al. Oct 1996 A
5563365 Dineen et al. Oct 1996 A
H001603 Deckard et al. Nov 1996 H
5610365 Thiesen Mar 1997 A
5631441 Briere et al. May 1997 A
5639984 Nielson Jun 1997 A
5650589 Thiesen Jul 1997 A
5661257 Nielson et al. Aug 1997 A
5679921 Hahn et al. Oct 1997 A
5827958 Sigler Oct 1998 A
5841062 Manole et al. Nov 1998 A
5907121 Fritze May 1999 A
5912430 Nielson Jun 1999 A
6013144 Callaway Jan 2000 A
6119600 Burri Sep 2000 A
6158348 Campoli Dec 2000 A
6276277 Schmacker Aug 2001 B1
6284990 Arnold et al. Sep 2001 B1
6311622 Adimari Nov 2001 B1
6389976 Zacharin May 2002 B1
H002039 Holt et al. Aug 2002 H
6427599 Posson et al. Aug 2002 B1
6450099 Desgland Sep 2002 B1
6457603 Freist et al. Oct 2002 B1
6460460 Jasper, Jr. et al. Oct 2002 B1
6526892 Heitmann et al. Mar 2003 B2
6725781 Niemeyer et al. Apr 2004 B2
6745697 Haak et al. Jun 2004 B2
6748870 Heidenreich et al. Jun 2004 B2
6901866 Mutascio et al. Jun 2005 B2
20020088367 Mac Aleese et al. Jul 2002 A1
20030033953 Haak et al. Feb 2003 A1
20030121444 Mutascio et al. Jul 2003 A1
20060081149 Salizzoni et al. Apr 2006 A1
20070289474 Mutascio Dec 2007 A1
20090145320 Harrison Jun 2009 A1
20090217836 Dietrich et al. Sep 2009 A1
20090266263 Quesenberry et al. Oct 2009 A1
Foreign Referenced Citations (12)
Number Date Country
2705235 Aug 1978 DE
463904 Jan 1992 EP
0483787 May 1992 EP
0307307 Jul 1992 EP
2385075 Oct 1978 FR
2702554 Sep 1994 FR
732633 Jun 1955 GB
2044416 Oct 1980 GB
2266944 Nov 1993 GB
WO-9420813 Sep 1994 WO
WO-9420814 Sep 1994 WO
WO-9924778 May 1999 WO
Related Publications (1)
Number Date Country
20100229750 A1 Sep 2010 US
Provisional Applications (1)
Number Date Country
60757142 Jan 2006 US