Bullet for infantry ammunition

Information

  • Patent Grant
  • 7311046
  • Patent Number
    7,311,046
  • Date Filed
    Wednesday, April 17, 2002
    22 years ago
  • Date Issued
    Tuesday, December 25, 2007
    16 years ago
Abstract
The invention relates to a bullet for infantry ammunition comprising a bullet core (1), a bullet tip (13), and a metal case (2). The aim of the invention is to create a durable connection between the bullet core (1) and the metal case (2). To this end, the metal case (2) is a shell, which is open at the front and which is pulled onto the bullet core (1) from the rear. The bullet tip (13) projects away from the metal case (2), and a constriction (4) is provided on the bullet core (1). The case end (5) that is open at the front projects into this constriction.
Description

The invention relates to a projectile for infantry ammunition according to the preamble of claim 1.


Projectiles for infantry ammunition in a known manner comprise a projectile core with a projectile nose and a metal casing, wherein the projectile core is made of lead. Firing lead projectiles generates lead-containing gases, which are detrimental to health. Lead moreover pollutes the environment.


The underlying object of the invention is to improve a projectile for infantry ammunition according to the preamble of claim 1 in such a way that a durable connection between projectile core and metal casing is achieved.


According to the invention this object is achieved in that the metal casing is a case, which is open at the front end and is drawn from the rear onto the projectile core, wherein the projectile nose projects from the metal casing and there is disposed on the projectile core a necking, into which the open front casing end projects.


The necking therefore holds the metal casing fast and prevents the latter from being pulled off upon penetration into a non-rigid medium. It is moreover highly advantageous that the casing end consequently lies in the flow shadow of the projectile nose.


In an advantageous development of the invention the projectile core is made of hardenable steel, tungsten, metal carbides, sintered metals or ceramic material.


The metal casing is preferably made of copper, a copper alloy, clad steel, soft iron or a zinc-tin alloy.


Advantageously at least one relief groove is disposed on the outer periphery of the projectile core, wherein the metal casing may rest in the region of the relief groove against the projectile core. These relief grooves may be of differing diameters and widths and may be arranged distributed over the entire length of the projectile.


A twist transmission is effected by the projectile portions having diameters that match the appropriate projectile calibre.


The base of the metal casing advantageously has a greater thickness than the wall thickness of the cylindrical part. The thickness of the base of the metal casing may however alternatively be less than or equal to the wall thickness of the cylindrical part. The base may be convex or concave with e.g. radii of between 0.5 and 10 calibres or flat. Alternatively the base of the metal casing may form a concave or convex cone point.


The shape of the rear of the metal casing may be conical with an angle of between 0° and 90°. The rear is the region of the metal casing adjoining the base.


The projectile core is advantageously roughened or knurled, thereby achieving a better seating of the projectile casing and/or metal casing on the projectile core.





Further features of the invention arise from the single drawing, which is described below.





The reference character 1 denotes the projectile core, which is made of hardenable steel, tungsten, metal carbides, sintered metals or ceramic material. The projectile core 1 has a projectile nose 13, which projects from a metal casing 2.


The metal casing 2 is made either of copper, a copper alloy, clad steel, soft iron or a zinc-tin alloy. Other metals are however also conceivable.


The metal casing 2 is drawn from behind, i.e. from the rear 12 onto the projectile core 1, wherein the projectile nose 13, as already mentioned, is exposed.


For the durable fastening there is disposed on the projectile core 1 a necking 4, into which the open front casing end 5 projects. The casing end 5 therefore lies in the flow shadow of the projectile nose 13 and has a continuous circular cross-section.


Provided on the outer periphery of the projectile core 1 there is in this particular case a single relief groove 7, whereby the metal casing 2 rests against the projectile core 1. It is however also possible to select a form of construction having a plurality of relief grooves, e.g. of differing widths and diameters.


A twist transmission is effected by projectile portions having cylinder diameters that match the appropriate projectile calibre (see e.g. portions 9).


The base 10 of the metal casing 2 has a greater thickness than the wall thickness in the cylindrical region. In this embodiment the base is flat. It may however alternatively be convex or concave with radii of between 0.5 and 10 calibres. The base shape may also be configured as a convex or concave cone point.


In the embodiment illustrated here, the rear 12 adjoining the base is of a cylindrical design. It may however alternatively be cone-shaped.


The projectile nose may be of any conventional shape, e.g. from pointed to flattened.

Claims
  • 1. Projectile for infantry ammunition comprising a projectile core made of hardenable steel, tungsten, metal carbides, sintered metals or ceramic material, and a metal casing, wherein the metal casing is a case, which is open at the front end and is drawn from behind onto the projectile core, wherein the projectile nose projects from the metal casing, there is disposed on the projectile core a necking, into which the open front casing end projects, at least one relief groove is disposed on the outer periphery of the projectile core in a direction traverse to a longitudinal direction of the projectile, the metal casing rests in the region of the at least one relief groove against the projectile core such that the projectile has at least one relief groove on an outer periphery of the casing, such that the outer periphery of the casing in a region in front of the at least one relief groove and in a region to the rear of the at least one relief groove is in the form of a cylinder having a cylinder diameter equal to a caliber of the projectile, that the casing comprises a base and a cylindrical part, that the at least one relief groove is provided in the cylindrical part, and that the base of the metal casing has a greater thickness than the wall thickness of the cylindrical part.
  • 2. Projectile according to claim 1, characterized in that the projectile core is roughened or knurled.
  • 3. Projectile according to claim 1, characterized in that the metal casing is made of copper, a copper alloy, clad steel, soft iron or a zinc-tin alloy.
  • 4. Projectile according to claim 3, characterized in that the projectile core is made of hardenable steel and the metal casing is made of a copper alloy.
  • 5. Projectile according to claim 1, characterized in that the projectile core is made of hardenable steel.
  • 6. Projectile according to claim 1, characterized in that the metal casing is made of a copper alloy.
  • 7. Projectile according to claim 1, characterized in that the projectile core has a one-piece construction.
Priority Claims (2)
Number Date Country Kind
101 19 156 Apr 2001 DE national
102 11 094 Mar 2002 DE national
PCT Information
Filing Document Filing Date Country Kind 371c Date
PCT/EP02/04236 4/17/2002 WO 00 5/10/2004
Publishing Document Publishing Date Country Kind
WO02/086414 10/31/2002 WO A
US Referenced Citations (15)
Number Name Date Kind
932014 Haase Aug 1909 A
1767308 Phillips Jun 1930 A
2333091 Crasnoff Nov 1943 A
3103889 Keeney, Sr. Sep 1963 A
3143966 Burns, Jr. et al. Aug 1964 A
3345949 Nosler Oct 1967 A
4878434 Sommet Nov 1989 A
4977657 Engel et al. Dec 1990 A
4977834 Denis Dec 1990 A
5641937 Carter Jun 1997 A
5794320 Wernz et al. Aug 1998 A
5939662 Bootes et al. Aug 1999 A
6186071 Fry Feb 2001 B1
6305293 Fry et al. Oct 2001 B1
6546875 Vaughn et al. Apr 2003 B2
Foreign Referenced Citations (3)
Number Date Country
DE 39 171 Oct 1909 AT
18589 Jan 1910 GB
1110507 Apr 1968 GB
Related Publications (1)
Number Date Country
20040200376 A1 Oct 2004 US