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EP 2 360 445 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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21.08.2013 Bulletin 2013/34 |
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Date of filing: 24.02.2010 |
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International Patent Classification (IPC):
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A recoil absorbing assembly for automatic weapons
Eine Rücklaufeinheit für eine Schnellfeuerwaffe
Un appareil pour absorber le recul d'une arme automatique
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Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO
PL PT RO SE SI SK SM TR |
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Date of publication of application: |
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24.08.2011 Bulletin 2011/34 |
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Proprietor: Vinghög AS |
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3106 Nötteröy (NO) |
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Inventors: |
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- Schöning-Olsen, Sigvart
NO-3148, Hvasser (NO)
- Hektoen, Jan Marius
NO-3140, Nötteröy (NO)
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Representative: Rygh, Karl Egil Bjørn |
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Zacco Norway AS
Patent Department
Haakon VII's gt. 2
P.O. Box 2003 Vika 0125 Oslo 0125 Oslo (NO) |
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References cited: :
DE-C- 730 010 FR-A1- 2 283 417 GB-A- 190 914 804
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DE-U1- 8 812 370 GB-A- 1 386 823
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The present invention relates to a recoil absorbing assembly for automatic weapons,
and in particular an assembly in which the recoil energy is absorbed by means of spring
and friction force.
[0002] A lot of solutions similar to the assembly mentioned above is known in the prior
art. One typical example is presented by
US-A 5,159,148 in which the friction force is effected by means of sliding guides comprising a bolt
secured to the fixed cradle portion and protruding through a slot in the movable cradle
portion and more than one such sliding guide are needed i.e. often three pairs at
the longitudinal sides of the two cradle portions. Despite this fact and due to torsional
movements, practice has also proved that the precision during firing is not satisfactorily
involving that the actual targets are missed. Another secondary disadvantages are
increased weight and manufacturing costs.
[0003] Known from prior art is also
GB 1 386 823 A to D'Assault Avions, which relates to a shock-absorbing device for repeating firearms
and discloses a recoil absorbing assembly according to the preamble of claim 1. The
device makes use of a spring to store energy from the recoil movement, and use that
energy to return the moving parts to their initial positions. Further, the device
comprises an arrangement of frictionalwedges arranged to enable a frictional force
affecting movement of various parts of the shock-absorbing device.
[0004] The objects of the present invention are to remedy these disadvantages and these
are achieved by the features of claim 1, i.e a recoil absorbing assembly for automatic
weapons secured to a weapon cradle having an fixed portion and a portion longitudinally
movable thereto, the fixed cradle portion being rotatably mounted to a support, comprising
a recoil absorbing spring and friction means arranged in connection with the cradle
portions, wherein the friction means are including a main shaft provided with angled
friction blocks and a movable bearing housing surrounding the main shaft and having
free floating pistons as to cooperate with the friction blocks, the recoil absorbing
spring being situated on the main shaft in elongation of the bearing housing, furthermore,
to adapt the present recoil absorbing assembly to different types of automatic weapons
and ammunitions, the main shaft is provided with means tuning the friction by pushing
the friction blocks outward, the friction tuning means includes a shaft portion longitudinally
movable using a tension sleeve arranged in an end of the mains shaft opposite of the
friction blocks.
[0005] To further increase the friction effect, the angled friction blocks are formed with
inclined surfaces adjacent corresponding surface portions of the main shaft. Friction
block surfaces opposite of the main shaft can be inclined vertically. Further, the
free floating pistons can be situated in a manner forming an angle to the main shaft,
preferentially 4°. The free floating pistons can be provided with friction increasing
portions adjacent the friction blocks, and spring biased against the friction blocks.
[0006] To enable unobstructed longitudinal movements relatively to the main shaft, the bearing
housing is formed with bearings arranged at each end thereof and surrounding the main
shaft. The bearings can be made from metal, preferentially bronze.
[0007] To secure the recoil absorbing assembly, the main shaft is connected to the fixed
cradle portion, whereas the bearing housing is connected to the movable cradle portion
by preferentially using brackets situated in each end of the main shaft and one end
of the bearing housing, respectively.
[0008] The present recoil absorbing assembly allows for mounting and firing of automatic
weapons such as heavy machine guns and 40mm automatic grenade launchers from the soft-mount.
The recoil is absorbed by using spring force and decreasing/increasing friction which
transfers the recoil energy into heat. Thereby, the precision during firing is increased
and the weight of the unit including inter alia the recoil absorbing assembly and
weapon cradle is reduced.
[0009] The recoil absorbing assembly according to the present invention consists of two
main parts. A main shaft including the angled and adjustable friction blocks and its
integrated tuning means. The main shaft also acts as a guide for the recoil spring.
The second main part is the bearing housing which during recoil travels back and forth
along the main shaft. When the assembly is in its forward i.e. extracted position,
the recoil spring is preloaded and the forward position is hold by the friction force
created by the two pistons thrusting against the friction blocks inside the main shaft.
When the recoil of the weapon pushes the bearing housing rearwards the recoil spring
is compressed and the friction force is slowly decreasing due to the angled friction
blocks. On its return, the increasing friction force creates a "soft stop" of the
assembly before it enters the physical end stop of the assembly.
[0010] The integrated tuning assembly allows the operator to tune the friction force involving
that the two friction blocks are pushed outwards. By tuning the friction force, an
adaptation to the different weapons it is possible as to get maximum dampening effect
and achieve reliability of the weapons also when firing at high elevations. The recoil
spring is also having separate tuning means involving that its spring force needed
can be set for the actual weapons.
[0011] Now, the present invention is to be discussed in detail with reference to preferred
embodiment illustrated in the accompanying drawings, in which:
Fig. 1a-e show an recoil absorbing assembly in bottom and front perspective, vertical
sectional, side perspective and horizontal sectional views, respectively, presented
in a extended position;
Fig. 2a-c show the same assembly in bottom perspective, vertical and horizontal sectional
views, respectively, presented in the compressed position;
Fig. 3 shows an exploded top perspective view of the same assembly; and
Fig. 4a-b show the assembly used for different types of automatic weapons in perspective
views, seen from the left and right hand sides.
[0012] According to the present invention, the recoil absorbing assembly allows mounting
and firing of automatic weapons such as heavy machine guns and 40mm automatic grenade
launchers from the soft-mount. As illustrated in Fig. 4a-b, two different weapons
are mounted in a weapon cradle having a fixed portion 1 and a portion 2 longitudinally
movable thereto. The fixed cradle portion is rotatably mounted to a suitable support,
not shown, by means of a pin connection 25, for instance. The fixed and movable cradle
portions can be formed in any appropriate manner but these features are not part of
the present invention and are not be discussed in detail herein as well as the others
depicted in Fig. 4a-b.
[0013] As shown in Fig. 1-3, the present assembly includes a recoil absorbing spring 3 and
friction means 4, 5 known per se and arranged in connection with the cradle portions.
However, contrary to the prior art the present friction means include a main shaft
4 provided with angled friction blocks 6, 7 and a movable bearing housing 5 surrounding
the main shaft and having free floating pistons 8, 9 as to cooperate with the friction
blocks, whereas the recoil absorbing spring 3 being situated on the main shaft in
elongation of the bearing housing; cf. Fig. 1e, for instance. The main shaft 4 is
connected to the fixed cradle portion 1, whereas the bearing housing 5 is connected
to the movable cradle postion.2 by preferentially using brackets 22, 23, 24 situated
in each end of the main shaft and one end of the bearing housing, respectively, see
Fig. 1a. It is understood that the brackets illustrated can be replaced by other suitable
means.
[0014] The angled friction blocks 6, 7 are formed with inclined surfaces 12, 13 adjacent
corresponding surface portions 14, 15 of the main shaft 4. The respective inclined
surfaces and surface portions of the friction blocks and main shaft, respectively,
are preferentially planar but this other configurations such as angled or curved are
not excluded. The friction effect is increased by means of friction block surfaces
16, 17 opposite of the main shaft portion 10 being vertically inclined. The slope
of these surfaces can be varied as to fit to different weapon and ammunition types.
[0015] Further, the main shaft 4 is provided with means 10, 11 tuning the friction by pushing
the friction blocks 6, 7 outwards. These means could include a main shaft portion
10 longitudinally movable using a tension sleeve 11 arranged in an end of the mains
shaft 4 opposite of the friction blocks 6, 7. The shaft portion and tension sleeve
are arranged in connection with a bore within the main shaft and are mutually rotatably
using a ball bearing 26, for instance. These can be secured using appropriate means.
[0016] The movable bearing housing 5 is formed with bearings 18, 19 arranged at each end
thereof and surrounding the main shaft 4, see Fig. 1c. These bearings are made from
metal, preferentially bronze.
[0017] The free floating pistons 8, 9 arranged in the bearing housing 5 are situated in
a manner forming an angle to the main shaft 4, preferentially 4°. The pistons are
within apertures 26, 27 made therethrough and are communicating with corresponding
apertures 28, 29 formed in the main shaft 4, whereby the friction blocks 6, 7 are
pressed against the shaft portion 10. Additionally, the floating pistons are provided
with friction increasing portions 20, 21 adjacent the friction blocks and are spring
biased against these friction blocks. The floating pistons are preferentially biased
using cup springs 30, 31 but other types of springs are also applicable.
[0018] Although Fig. 1-3 illustrate more elements than discussed above, these shall only
be considered as examples of supplementary accessories and not understood in a restrict
manner. Moreover, it is noted that the exploded view in Fig. 3 is not including the
bearings 18, 19 situated in each end of the bearing housing 5. The spring force of
the recoil spring 3 can be adjusted to different types of weapons and ammunitions
by means of appropriate means such as a set screw 32.
1. A recoil absorbing assembly for automatic weapons secured to a weapon cradle having
a fixed portion (1) and a portion (2) movable longitudinally thereto, wherein the
fixed cradle portion (1) is rotatably mounted to a support, and wherein said recoil
absorbing assembly comprises a recoil absorbing spring (3) and friction means (4,
5) arranged in connection with the cradle portions, wherein, the friction means are
including a main shaft (4) provided with angled friction blocks (6, 7) and a movable
bearing housing (5) surrounding the main shaft, and wherein the recoil absorbing spring
(3) is situated on the main shaft (4) in elongation of the bearing housing characterized in the bearing housing having free floating pistons (8, 9) arranged in the bearing housing
(5) and spring biased against the friction blocks (6, 7),
wherein the main shaft (4) is provided with means (10, 11) for tuning the friction
by pushing the friction blocks (6, 7) outwards, and
wherein the friction tuning means (10, 11) comprises a shaft portion (10) longitudinally
movable using a tension sleeve (11) arranged in an end of the main shaft (4) opposite
of the friction blocks (6, 7).
2. A recoil absorbing assembly according to any of the preceding claims, characterized in that the angled friction blocks (6, 7) are formed with inclined surfaces (12, 13) adjacent
corresponding surface portions (14, 15) of the main shaft (4).
3. A recoil absorbing assembly according to claim 2, characterized i n that friction block surfaces (16, 17) opposite of the main shaft portion (10)
are inclined vertically.
4. A recoil absorbing assembly according to any of the preceding claims, characterized i n that the movable bearing housing (5) is formed with bearings (18, 19) arranged
at each end thereof and surrounding the main shaft (4).
5. A recoil absorbing assembly according to claim 4, characterized in that the bearings (18, 19) are made from metal, preferentially bronze.
6. A recoil absorbing assembly according to any of the preceding claims, characterized in that the free floating pistons (8, 9) are provided with friction increasing portions (20,
21) adjacent the friction blocks (6, 7).
7. A recoil absorbing assembly according to any of the preceding claims, characterized in that the main shaft (4) is connected to the fixed cradle portion (1), whereas the bearing
housing (5) is connected to the movable cradle portion (2) by using brackets (22,
23, 24) situated in each end of the main shaft and one end of the bearing housing,
respectively.
1. Rückstoßabsorbierende Anordnung für Schnellfeuerwaffen, befestigt an einer Waffenwiege,
die einen fixierten Teil (1) und einen dazu längsbeweglichen Teil (2) aufweist, wobei
der fixierte Wiegenteil (1) an einem Träger drehbar montiert ist, und wobei die rückstoßabsorbierende
Anordnung eine rückstoßabsorbierende Feder (3) und Reibungsmittel (4, 5) umfasst,
die im Zusammenhang mit den Wiegenteilen angeordnet sind, wobei die Reibungsmittel
eine mit abgewinkelten Reibungsblöcken (6, 7) versehene Hauptwelle (4) und ein die
Hauptwelle umgebendes bewegliches Lagergehäuse (5) aufweisen, und wobei die rückstoßabsorbierende
Feder (3) an der Hauptwelle (4) in Verlängerung des Lagergehäuses angeordnet ist,
dadurch gekennzeichnet, dass das Lagergehäuse freischwebende Kolben (8, 9) aufweist, die im Lagergehäuse (5) angeordnet
und gegen die Reibungsblöcke (6, 7) federvorgespannt sind,
wobei die Hauptwelle (4) mit Mitteln (10, 11) zum Abstimmen der Reibung durch Nach-außen-Schieben
der Reibungsblöcke (6, 7) versehen ist, und wobei das Reibungsabstimmmittel (10, 11)
einen Wellenteil (10) umfasst, der unter Verwendung einer Spannhülse (11) längsbeweglich
ist, die gegenüber den Reibungsblöcken (6, 7) an einem Ende der Hauptwelle (4) angeordnet
ist.
2. Rückstoßabsorbierende Anordnung nach irgendeinem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die abgewinkelten Reibungsblöcke (6, 7) mit geneigten Oberflächen (12, 13) gebildet
sind, die zu entsprechenden Oberflächenteilen (14, 15) der Hauptwelle (4) benachbart
sind.
3. Rückstoßabsorbierende Anordnung nach Anspruch 2, dadurch gekennzeichnet, dass Reibungsblockoberflächen (16, 17) gegenüber dem Hauptwellenteil (10) vertikal geneigt
sind.
4. Rückstoßabsorbierende Anordnung nach irgendeinem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das bewegliche Lagergehäuse (5) mit Lagern (18, 19) gebildet ist, die an jedem Ende
davon angeordnet sind und die Hauptwelle (4) umgeben.
5. Rückstoßabsorbierende Anordnung nach Anspruch 4, dadurch gekennzeichnet, dass die Lager (18, 19) aus Metall, bevorzugt Bronze, hergestellt sind.
6. Rückstoßabsorbierende Anordnung nach Anspruch 6, dadurch gekennzeichnet, dass die freischwebenden Kolben (8, 9) mit zu den Reibungsblöcken (6, 7) benachbarten
reibungserhöhenden Teilen (20, 21) versehen sind.
7. Rückstoßabsorbierende Anordnung nach irgendeinem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Hauptwelle (4) mit dem fixierten Wiegenteil (1) verbunden ist, während das Lagergehäuse
(5) mit dem beweglichen Wiegenteil (2) durch Verwendung von Beschlägen (22, 23, 24)
verbunden ist, welche an jedem Ende der Hauptwelle beziehungsweise einem Ende des
Lagergehäuses angeordnet sind.
1. Appareil pour absorber le recul d'une arme automatique fixée à un berceau d'arme comportant
une partie fixe (1) et une partie (2) mobile longitudinalement à celle-ci, la partie
de berceau fixe (1) étant monté à rotation à un support, et ledit appareil pour absorber
le recul comprenant un ressort d'absorption du recul (3) et des moyens de friction
(4, 5) disposés en liaison avec les parties de berceau, les moyens de friction comprenant
un arbre principal (4) muni de blocs de friction en angle (6, 7) et un logement de
palier mobile (5) entourant l'arbre principal, et le ressort d'absorption du recul
(3) étant situé sur l'arbre principal (4) en élongation du logement de palier, caractérisé en ce que le logement de palier présente des pistons libres flottants (8, 9) arrangés dans
le logement de palier (5) et sollicités par ressort contre les blocs de friction (6,
7),
l'arbre principal (4) étant pourvu de moyens (10, 11) de syntonisation à friction
(/pour ajuster la friction) en poussant les blocs de friction (6, 7) vers l'extérieur,
et
le moyen de syntonisation à friction (10, 11) comprenant une portion d'arbre (10)
longitudinalement mobile en utilisant un manchon de tension (11) arrangé dans une
extrémité de l'arbre principale (4) en face des blocs de friction (6, 7).
2. Appareil pour absorber le recul selon l'une quelconque des revendications précédentes,
caractérisé en ce que les blocs de friction en angle (6, 7) sont pourvus de surfaces inclinées (12, 13)
adjacentes à des portions de surface correspondantes (14, 15) de l'arbre principal
(4).
3. Appareil pour absorber le recul selon la revendication 2, caractérisé en ce que des surfaces du bloc de friction (16, 17) en face de la partie de l'arbre principal
(10) sont inclinées verticalement.
4. Appareil pour absorber le recul selon l'une quelconque des revendications précédentes,
caractérisé en ce que le logement de palier mobile (5) est pourvu de paliers (18, 19) disposés à chaque
extrémité de celui-ci et entourant l'arbre principal (4).
5. Appareil pour absorber le recul selon la revendication 4, caractérisé en ce que les paliers (18, 19) sont faits de métal, de préférence de bronze.
6. Appareil pour absorber le recul selon l'une quelconque des revendications précédentes,
caractérisé en ce que les pistons flottants libres (8, 9) sont pourvus de parties d'accroissement du friction
(20, 21) adjacents aux blocs de friction (6, 7).
7. Appareil pour absorber le recul selon l'une quelconque des revendications précédentes,
caractérisé en ce que l'arbre principal (4) est relié à la partie de berceau fixe (1), tandis que le logement
de palier (5) est relié à la partie de berceau mobile (2) à l'aide de crochets (22,
23, 24) situés respectivement à chaque extrémité de l'arbre principal et à une extrémité
du logement de palier.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description