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Sommaire du brevet 2444864 

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L'apparition de différences dans le texte et l'image des Revendications et de l'Abrégé dépend du moment auquel le document est publié. Les textes des Revendications et de l'Abrégé sont affichés :

  • lorsque la demande peut être examinée par le public;
  • lorsque le brevet est émis (délivrance).
(12) Demande de brevet: (11) CA 2444864
(54) Titre français: MODULE DE BLINDAGE REACTIF
(54) Titre anglais: REACTIVE ARMOR MODULE
Statut: Morte
Données bibliographiques
(51) Classification internationale des brevets (CIB):
  • F41H 5/007 (2006.01)
(72) Inventeurs :
  • SCHLUTER, KLAUS (Allemagne)
  • RUDOLF, KARL (Allemagne)
  • SCHILDKNECHT, MANFRED (Allemagne)
(73) Titulaires :
  • DIEHL MUNITIONSSYSTEME GMBH & CO. KG (Allemagne)
(71) Demandeurs :
  • DIEHL MUNITIONSSYSTEME GMBH & CO. KG (Allemagne)
(74) Agent: FETHERSTONHAUGH & CO.
(74) Co-agent:
(45) Délivré:
(86) Date de dépôt PCT: 2002-04-13
(87) Mise à la disponibilité du public: 2002-10-31
Requête d'examen: 2003-11-12
Licence disponible: S.O.
(25) Langue des documents déposés: Anglais

Traité de coopération en matière de brevets (PCT): Oui
(86) Numéro de la demande PCT: PCT/EP2002/004135
(87) Numéro de publication internationale PCT: WO2002/086410
(85) Entrée nationale: 2003-10-20

(30) Données de priorité de la demande:
Numéro de la demande Pays / territoire Date
101 19 596.6 Allemagne 2001-04-21

Abrégés

Abrégé français

L'invention concerne un module de blindage réactif (14) qui comporte une structure en sandwich (16) enfermée dans un corps (18), laquelle est formée d'au moins un élément plat en sandwich (20) coudé en forme de toit de faîtage, lequel comporte, entre une plaque avant (34) et une plaque intermédiaire (36), une couche d'explosif brisant (HE) (40), et, entre la plaque intermédiaire (36) et une plaque arrière (38), une couche d'amortissement (42) en matière élastique. De préférence, au moins deux éléments plats en sandwich (20) coudés en forme de toit de faîtage sont disposés l'un sur l'autre de façon croisée.


Abrégé anglais




The invention relates to a reactive armor module (14) comprising a sandwich
structure (16) enclosed by a housing (18). Said sandwich structure is
configured by at least one sandwich surface element (20) that is bent like a
ridged roof and that comprises, between a front board (34) and an intermediate
board (36), a high-explosive layer (40), and, between the intermediate board
(36) and a back board (38), a damping layer (42) from an elastic material.
Preferably, at least two sandwich surface elements (20) that are bent like a
ridged roof are disposed one on top of the other in a cross-twisted manner.

Revendications

Note : Les revendications sont présentées dans la langue officielle dans laquelle elles ont été soumises.





6


1. A reactive armour module comprising a sandwich structure (16)
enclosed by a housing (18) and having an explosive layer, wherein two
sandwich structures (16) are arranged in a roof ridge shape relative to each
other and wherein an HE-explosive layer portion (40) forming the explosive
layer is arranged between a front plate (34) and an intermediate plate (36)
and a damping layer (42) of elastic material is arranged between the
intermediate plate (36) and a rear plate (38), characterised in that the
sandwich structure (16) is in the form of a sandwich surface element (20)
which is angled in a roof ridge shape.

2. A reactive armour module according to claim 1 characterised in
that the front plate (34) comprises sintered material.

3. A reactive armour module according to claim 1 characterised in
that the intermediate plate (36) comprises steel.






6A

CLAIMS

1. A reactive armour module comprising a sandwich structure (16)
enclosed by a housing (18) and including an explosive layer, characterised
in that the sandwich structure (16) is formed by at least one sandwich
surface element (20) which is angled in a roof ridge shape and which has
an HE-explosive layer portion (40) forming the explosive layer between a
front plate (34) and an intermediate plate (36) and which has a damping
layer (42) of elastic material between the intermediate plate (36) and a
rear plate (38).

2. A reactive armour module according to claim 1 characterised in
that the front plate (34) comprises sintered material.

3. A reactive armour module according to claim 1 characterised in
that the intermediate plate (36) comprises steel.

4. A reactive armour module according to claim 1 characterised in
that the rear plate (38) is formed by a buckling plate.

5. A reactive armour module according to claim 1 characterised in
that the damping layer (42) comprises rubber material.

6. A reactive armour module according to claim 1 characterised in
that the at least one sandwich surface element (20) which is angled in a
roof ridge shape has an at least approximately square base surface (22).

7. A reactive armour module in particular according to claims 1 and 6
characterised in that at least two sandwich surface elements (20) which are
angled in a roof ridge shape are arranged in mutually superposed
relationship and turned crosswise relative to each other.





7


8. A reactive armour module according to one of the preceding
claims characterised in that the at least one sandwich surface element (20)
which is angled in a roof ridge shape is enclosed by a separating wall casing
(26) which is connected at the front side to a cover means (28) and which
is connected at the rear side to a base element (30), wherein they form the
housing (18) of the armour module (14).

9. A reactive armour module according to claim 8 characterised in
that the sandwich surface element (20) which is angled in a roof ridge
shape is provided directly adjacent to the base element (30).

10. A reactive armour module according to claim 8 characterised in
that a spacer element (44) is provided between the sandwich surface
element (20) which is angled in a roof ridge shape and the base element
(30).

11. A reactive armour module according to one of claims 8 to 10
characterised in that fixing elements (32) are provided on the base element
(30) at the rear side.


Description

Note : Les descriptions sont présentées dans la langue officielle dans laquelle elles ont été soumises.



CA 02444864 2003-10-20
r
W002/086410 09.05.2003
Diehl Munitionssysteme GmbH & Co KG
DP1797W0 - WB/bu
Reactive armour module
The invention concerns a reactive armour module as set forth in the
classifying portion of claim 1.
Such a reactive armour module is known from EP-A3-0 379 080. The
armour module includes two sandwich structures which are arranged at an
angle relative to each other. The two sandwich structures accordingly have
an explosive layer portion. However they are connected to each other but
are separated from each other by a spacing in the apex region. A hollow
charge jet which impinges into that region penetrates the armour module
substantially unimpeded.
The object of the present invention is to provide a reactive armour
module of the kind set forth in the opening part of this specification, with
which the impact action of
(continued on page 1, line 24 of the translation of the original PCT text)


CA 02444864 2003-10-20
DP 1797 WO
FI WB bu
Diehl Munitionssysteme GmbH & Co KG
Fischbachstrasse 16. 90552 Rothenbach
Reactive armour module
The invention concerns a reactive armour module as set-forthr~fi
classifying portion of claim 1.
Such a reactive armour module is known for example from DE 37 29
211 C1. That known armour module has two inert plates, between which an
explosive is arranged. The plates are provided approximately diagonally in
respect of height in a parallelepipedic structure and are embedded in a hard
foam body. They are arranged in front of a laminated brittle body structure
which under a thin explosive cover layer has brittle bodies which are spaced
from each other by thin explosive separating layers. That armour module
can be provided with fixing elements for arrangement thereof on a passive
armouring assembly.
The object of the present invention is to provide a reactive armour
module -of the kind set forth in the opening part of this specification, with
which the impact action ofhollow charges is reduced and sympathetic
detonation of adjacent armour modules is avoided.
In accordance with the invention, in a reactive armour module of the
kind set forth in the opening part of this specification, that object is
attained by the features of the characterising portion of claim 1. Preferred
developments and configurations of the reactive armour module according
to the invention are characterised in appendant claims 2 to 6. In
accordance with claim 7 at least two sandwich surface elements which are
angled in a roof ridge shape are arranged in mutually superposed
relationship turned crosswise relative to each other. Independent patent
protection is requested for that configuration of the reactive armour
module. Developments of the reactive armour module according to the
invention are also characterised in appendant claims 8 to 11.


CA 02444864 2003-10-20
2
The reactive armour module according to the invention has the
advantages that it has a high level of effectiveness in relation to HE
bombardment - even under perpendicular bombardment - or that it has a
virtually angle-independent effectiveness, and that sympathetic detonation
of adjacent armour modules is avoided.
Further details, features and advantages will be apparent from the
description hereinafter of configurations of the armour module according to
the invention and essential details thereof, which are shown
diagrammatically and not true to scale in the drawing. In the drawing:
Figure 1 is a diagrammatic view in section of a first embodiment of
the reactive armour module on a passive armouring assembly of which a
portion is shown,
Figure 2 shows the detail II of Figure 1 on another scale, that is to
say in longitudinal section in respect of a portion thereof, illustrating the
sandwich surface element angled in a roof ridge shape of the armour
module of Figure 1,
Figure 3 is a perspective view of a sandwich surface element angled
in a roof ridge shape of the armour module of Figure 1,
Figure 4 is a view similar to Figure 1 of a second and preferred
configuration of the reactive armour module in combination with a passive
armour assembly of which a portion is shown,
Figure 5 is a perspective view of two sandwich surface elements of
the armour module of Figure 4, which are angled in a roof ridge shape and
are arranged in mutually superposed relationship and turned crosswise
relative to each other, and
Figure 6 is a view similar to Figures 1 and 4 of an embodiment of the
reactive armour module in which a sandwich surface element which is
angled in a roof ridge shape is combined with a spacer element.
Figure 1 is a sectional view showing a portion, of a passive armouring
assembly 10 on which there is provided a base protection 12. The passive
armouring assembly 10 which is provided with the base protection 12 is
provided with reactive armour modules 14 which are arranged in closely
mutually juxtaposed relationship in order to implement a reduction in the


CA 02444864 2003-10-20
3
impact action of hollow charges. The respective reactive armour module 14
has a sandwich structure 16 which contains an explosive layer and which is
enclosed by a housing 18. The sandwich structure 16 is described in further
detail hereinafter with reference to Figure 2.
In the embodiment of the reactive armour module 14 which is shown
in Figure 1 the sandwich structure 16 is formed by a sandwich surface
element 20 which is angled in a roof ridge shape and which has a square
base surface. That square base surface is indicated in Figure 3 by double
dash-dotted lines and identified there by reference numeral 22.
The spread angle, identified by reference 23 in Figure 1, of the
sandwich surface element 20 which is angled in a roof ridge shape and
which has two equal-length limbs 24 is for example 90 degrees of angle.
That avoids sympathetic detonation of adjacent armour modules 14.
The sandwich surface element 20 which is angled in a roof ridge
shape of the respective reactive armour module 14 is enclosed by a
separating wall casing 26 which at the front is connected to a cover means
28 and which at the rear is connected to a base element 30 in order to
form the housing 18 of the reactive armour module 14. The sandwich
surface element 20 which is angled in a roof ridge shape is arranged in the
housing 18 without a gap or play, that is to say the sandwich surface
element 20 which is angled in a roof ridge shape bears snugly against the
separating wall casing 26, against the cover means 28 and against the base
element 30 of the housing.
Fixing elements 32 are provided at the rear side of the base element
30, which rear side is remote from the cover means 28 at the front side.
The respective reactive armour module 14 is replaceably fixed to the base
protection 12 of the passive armouring assembly 10 by means of the fixing
elements 32.
Figure 2 is a view in longitudinal section showing a portion of the
sandwich surface element 20 which is angled in a roof ridge shape and
which comprises a front plate 34, an intermediate plate 36 and a rear plate
38, wherein provided between the front plate 34 and the intermediate plate
36 is an HE-explosive layer portion 40 forming the above-mentioned


CA 02444864 2003-10-20
4
explosive layer of the sandwich structure 16 while provided between the
intermediate plate 36 and the rear plate 38 is a damping layer 42 of elastic
material. The front plate 34 desirably comprises sintered material, for
example sintered tungsten powder, it can be of a thickness of for example
6 to 8 mm. The HE-explosive layer portion 40 can be for example of a
thickness of 4 to 5 mm. The intermediate plate 36 is desirably in the form
of a steel plate which for example is from 2 to 4 mm in thickness. The
damping layer 42 can comprise a rubber material and be of a thickness of 1
to 2 mm. The rear plate 38 is preferably formed by a buckling plate which
can be of a thickness of 1 to 2 mm. It will be appreciated that other
materials and/or thickness sizes are also possible.
Figure 3 is a perspective view showing a sandwich surface element
angled in a roof ridge shape, with its square base surface 22 which has
already been referred to hereinbefore.
15 Upon initiation of the sandwich surface element 20 which is angled in
a roof ridge shape, the two limbs 24 are initiated so that a hollow charge
jet which impinges on the reactive armour module 14 is in many cases
affected twice. That consequently affords optimum effectiveness in relation
to HE-bombardment, such effectiveness being virtually independent of
20 angle.
Figure 4 is a view similar to Figure 1 showing a passive armouring
assembly 10 with a base protection 12 and with reactive armour modules
14. In this embodiment each reactive armour module 14 has in a housing
18 a sandwich structure 16 formed by two sandwich surface elements 20
which are angled in a roof ridge shape and which are arranged in mutually
superposed relationship and which are turned crosswise relative to each
other. This is also clearly visible in Figure 5 in which the two sandwich
surface elements which are angled in a roof ridge shape are shown in a
perspective view arranged in mutually superposed relationship and turned
crosswise relative to each other.
The same details are identified in Figures 4 and 5 by the same
references as in Figures 1 and 3 so that there is no need for all those


CA 02444864 2003-10-20
features to be described in detail once again with reference to Figures 4
and 5.
Figure 4 is a view similar to Figures 1 and 3 showing a portion in
longitudinal section of a passive armouring assembly 10 with a passive
5 protection 12 and with reactive armour modules 14, wherein each reactive
armour module 14 is of a similar design to the embodiment shown in Figure
1, but wherein a sandwich surface element 20 angled in a roof ridge shape
is combined with a spacer element 44. The sandwich surface element 20
which is angled in a roof ridge shape is spaced from the base protection 12
of the passive armouring assembly 10 by a defined distance, by means of
the spacer element 44. That affords an enhancement in the effectiveness of
the armour module 14 in relation to marginal penetration.
The same details are also identified in Figure 6 by the same
references as in Figures 1 to 5 so that there is no need for all those
features to be described in detail once again with reference to Figure 6.

Dessin représentatif
Une figure unique qui représente un dessin illustrant l'invention.
États administratifs

Pour une meilleure compréhension de l'état de la demande ou brevet qui figure sur cette page, la rubrique Mise en garde , et les descriptions de Brevet , États administratifs , Taxes périodiques et Historique des paiements devraient être consultées.

États administratifs

Titre Date
Date de délivrance prévu Non disponible
(86) Date de dépôt PCT 2002-04-13
(87) Date de publication PCT 2002-10-31
(85) Entrée nationale 2003-10-20
Requête d'examen 2003-11-12
Demande morte 2006-04-13

Historique d'abandonnement

Date d'abandonnement Raison Reinstatement Date
2005-04-13 Taxe périodique sur la demande impayée

Historique des paiements

Type de taxes Anniversaire Échéance Montant payé Date payée
Le dépôt d'une demande de brevet 300,00 $ 2003-10-20
Requête d'examen 400,00 $ 2003-11-12
Taxe de maintien en état - Demande - nouvelle loi 2 2004-04-13 100,00 $ 2004-03-25
Enregistrement de documents 100,00 $ 2004-12-17
Titulaires au dossier

Les titulaires actuels et antérieures au dossier sont affichés en ordre alphabétique.

Titulaires actuels au dossier
DIEHL MUNITIONSSYSTEME GMBH & CO. KG
Titulaires antérieures au dossier
RUDOLF, KARL
SCHILDKNECHT, MANFRED
SCHLUTER, KLAUS
Les propriétaires antérieurs qui ne figurent pas dans la liste des « Propriétaires au dossier » apparaîtront dans d'autres documents au dossier.
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Description du
Document 
Date
(yyyy-mm-dd) 
Nombre de pages   Taille de l'image (Ko) 
Abrégé 2003-10-20 1 16
Revendications 2003-10-20 3 83
Dessins 2003-10-20 3 65
Description 2003-10-20 6 236
Dessins représentatifs 2003-10-20 1 8
Page couverture 2003-12-24 1 38
PCT 2003-10-20 13 503
Poursuite-Amendment 2003-11-12 1 39
PCT 2003-10-20 4 136
Cession 2003-10-20 2 83
Correspondance 2003-12-22 1 26
Cession 2004-12-17 2 73