Submunitions

4858532
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Inventors

Persson, Per-Olof
Albrektsson, Kjell
Axinger, Jan
Fixell, Jan-Olof
Hyvarinen, Jari

Application #

028949

Filed

Mar-23-1987

Published

Aug-22-1989

Current US Class

102/211
102/214
102/387
102/476

International Classes

F42B 001/02; F42B 013/00

Field of Search

102/386-388 102/393 102/306 102/307 102/309 102/211-214 102/475 102/476

Assignee

Aktiebolaget Bofors (Bofors, SE)

Examiners

Brown; Daivd H.

Attorney, Agent or Firm

Pollock, Vande Sande & Priddy

US Patent References

4050381   Low density indirec...
4176814   Terminally correcte...
4207841   Dipole antenna for...
4492166   Submunition havin...
4538519   Warhead unit
4565341   Inflatable decelerator
4583461   Method for attackin...
4583703   One fin orientation...
4622900   Exploding missile
4635553   Maneuvering air d...
4655411   Means for reducin...
4691636   Exploding missile

Referenced by:

View Backward References

Citation

Cite This Patent

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Abstract
The disclosure relates to a submunition disposed to be separated from an aeronautical body, for example a shell carrier canister or the like above a target area, the submunition essentially including a warhead (5), a target detector (6) and a device which imparts rotation to the submunition for scanning the target area in a helical pattern (4) during the fall of the submunition towards the target area. The target detector (6) is pivotally disposed on a carrying shaft (12a) parallel to the line of symmetry (5a) of the warhead in order to permit outward activation of the target detector (6) from a collapsed position where the optical axis of the target detector coincides with the line of symmetry (5a) of the warhead to an activated position where the optical axis of the target detector is parallel with the line of symmetry (5a) of the warhead, so as to permit free scanning vision for the target detector (6) beyond the warhead (5).
 
Claims
What we claim and desire to secure by Letters Patent is:

1. A submunition arranged to be separated from an aeronautical body over a target area, the submunition comprising:

a warhead,

a target detector being pivotally mounted on a mounting shaft disposed on said warhead parallel with an axis of symmetry of the warhead to activate said target detector outwardly between a retracted position in which an optical axis of the target detector coincides with the axis of symmetry of the warhead to an extended position in which the axis of symmetry of the warhead permits free vision of the target detector beyond the warhead; and

a carrier surface member for imparting a controlled rotation and fall speed to the submunition for scanning of the target area in a helical pattern during the fall of the submunition towards the target area, said carrier surface member being pivotally mounted on said warhead between a retracted position and an outwardly extended position, said carrier surface member in said retracted position having its axis of symmetry aligned with the axis of symmetry of said warhead and in said outwardly extended position extends beyond the warhead.



Description
TECHNICAL FIELD

The present invention relates to a submunition which is arranged to be separated from an aeronautical body, for example a shell canister or the like, above a target area, the submunition comprising a warhead, a target detector and a device imparting rotation to the submunition for scanning the target area, in a helical pattern during the fall of the submunition towards the target area.

BACKGROUND ART

Despite improved methods for target ranging and fire control, conventional weaponry systems suffer from a limited effective range. The unavoidable spread of shot or projectile and difficulties in exactly ranging a target entail that hit probability declines rapidly as range increases. In such a situation, a considerable amount of ammunition and a generous amount of time are required to combat a target, factors which are not readily proffered in a combat situation.

For Forward Edge of Battle Area targets visible from the launching site, hit probability may be increased by the use of guided projectiles or missiles, for example a missile which is guided towards the target automatically or manually throughout its entire trajectory. However, such systems are apt to be extremely complex and, as a result, costly. Special launching devices are required for missiles and it must be possible for the gunnery officer to observe and track the target.
 
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