EP3022512B1 - Case-ejecting device and weapon having such a device - Google Patents
Case-ejecting device and weapon having such a device Download PDFInfo
- Publication number
- EP3022512B1 EP3022512B1 EP14736310.5A EP14736310A EP3022512B1 EP 3022512 B1 EP3022512 B1 EP 3022512B1 EP 14736310 A EP14736310 A EP 14736310A EP 3022512 B1 EP3022512 B1 EP 3022512B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- case
- weapon
- ejecting device
- ejector
- sleeve
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
- 238000003780 insertion Methods 0.000 claims description 5
- 230000037431 insertion Effects 0.000 claims description 5
- 238000010276 construction Methods 0.000 description 2
- 238000010304 firing Methods 0.000 description 2
- 230000010354 integration Effects 0.000 description 2
- 230000032258 transport Effects 0.000 description 2
- 210000000078 claw Anatomy 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 238000000605 extraction Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41A—FUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
- F41A15/00—Cartridge extractors, i.e. devices for pulling cartridges or cartridge cases at least partially out of the cartridge chamber; Cartridge ejectors, i.e. devices for throwing the extracted cartridges or cartridge cases free of the gun
- F41A15/08—Cartridge extractors, i.e. devices for pulling cartridges or cartridge cases at least partially out of the cartridge chamber; Cartridge ejectors, i.e. devices for throwing the extracted cartridges or cartridge cases free of the gun for block-action guns
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41A—FUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
- F41A15/00—Cartridge extractors, i.e. devices for pulling cartridges or cartridge cases at least partially out of the cartridge chamber; Cartridge ejectors, i.e. devices for throwing the extracted cartridges or cartridge cases free of the gun
- F41A15/12—Cartridge extractors, i.e. devices for pulling cartridges or cartridge cases at least partially out of the cartridge chamber; Cartridge ejectors, i.e. devices for throwing the extracted cartridges or cartridge cases free of the gun for bolt-action guns
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41A—FUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
- F41A7/00—Auxiliary mechanisms for bringing the breech-block or bolt or the barrel to the starting position before automatic firing; Drives for externally-powered guns; Remote-controlled gun chargers
- F41A7/08—Drives for externally-powered guns, i.e. drives for moving the breech-block or bolt by an external force during automatic firing
Definitions
- the invention relates to a chain-controlled Hüfsen- / cartridge ejection of an ammunition after their Verschuss or in a Zündversager from a weapon and a weapon with such a sleeve ejection device.
- a cartridge case extraction device for automatic firearms discloses the DE 30 38 769 C2 , After firing a projectile during the backward movement of the closure, the cartridge case is pulled out of the cartridge chamber through the closure. Also the DE 10 2007 034 672 A1 describes a closure and a Ausziehclalle which engages a cartridge bottom edge to remove it from the chamber.
- a sleeve catcher for batorless ammunition known.
- a sleeve guide in the form of an ejection tube for the return of the sleeves in an ammunition container and to align this so that the sleeves comes to rest in the chain links.
- the ejection tube cooperates with spring springs, which are located between the ejection tube and a sleeve damper.
- the ammunition supply takes place only from one side of the weapon.
- the weapon ammunition to be supplied from two sides such integration is not possible. Nevertheless, it may be desirable to achieve a targeted ejection of the sleeves.
- the invention has as its object to show a simple sleeve ejection device, the structurally small, the ejection of the sleeve or a Zündversagers also allows for mutual ammunition feed.
- the invention is based on the idea to support the ejection or the discharge of the sleeve by an ejector tube.
- this is preferably integrated in the weft direction in front of a weapon belonging to the rotor.
- the ejection tube is preferably arranged above the weapon barrel.
- the Wülsenausschvoriques is supplemented by at least one (circulating, closed) chain and driven by the chain ejector.
- the ejector functionally connected to the chain pushes the sleeve into the sleeve ejection or ejection tube.
- the chain provides enough speed to allow the sleeve to be driven through the ejector tube.
- the chain is in turn aligned horizontally (also possible in parallel) to the rotor.
- the ejection can be supported by the ejection tube by a sleeve accelerator. Through this accelerator, a short pulse is introduced to the bottom of the case, which accelerates the ejection and ensures.
- the use of such ejection device is provided on a weapon, in which the ammunition is pushed through a closure in a cartridge chamber of the weapon barrel in its forward movement, which is located in a rotor or star.
- weapons systems are for example from the DE 10 2005 045 824 B3 known, to which reference is hereby made.
- the sleeve is in turn withdrawn after a successful shot by, for example, a claw on the closure of a chamber and again stored in the rotor at a different location.
- the ejector engages with this deposited sleeve, which in turn is guided forwards by the chain.
- a simple transport of the sleeve is achieved because the ejector itself does not have to engage in any groove or the like, but can attack the sleeve bottom from behind.
- the ejector tube is mounted at an angle to the tube axis.
- the ejection tube is slightly directed upwards in the direction of firing.
- the ejection tube has an adapted geometric shape.
- this region has a larger compared to the diameter of the ejection tube border, which then tapers slightly.
- An example of a V-shaped recess in the inlet region of the ejection tube space is created for the sleeve accelerator. This can have a simple step or staircase shape.
- the sleeve accelerator is connected to a unit which generates the pulse to be introduced on the sleeve bottom when the sleeve bottom of the sleeve to be ejected has been guided into the ejection tube.
- two ejector tubes are provided, so that the weapon can be supplied to the ammunition from both sides.
- two driven by chains ejector are involved.
- the ejector tubes are preferably above the gun barrel and are mounted at a slight angle from the tube bore axis of the gun barrel directed upward directed.
- the particularity of this design is that the chains and ejectors, in turn, can operate independently of the ammunition feed, i.e., regardless of which side the ammunition is being supplied to the weapon. This allows easy switching of the ammunition feed during operation of the weapon without further adjustments.
- the ejection tube (s) can / can also be integrated behind the rotor, the chain, etc. are to be arranged accordingly.
- a mirror-image arrangement of the sleeve ejection device (s) also allows their integration below the weapon.
- Fig. 1 to 3 show a section of a weapon 1, in which an ammunition 2 ( Fig. 3 ) is spent by a shutter 3 in a gun not shown in detail.
- a rotor 4 is formed with three shells 5-7 for the exception of the gun barrel supplied ammunition 2, the presentation before the shutter 3 and the removal of a sleeve 8 and a Zündversagers.
- the rotor 4 can be rotated in both directions.
- an ejector 9 are arranged before the two upper shells on the right and left (5, 7) is ever an ejector 9, 10 are arranged. These are directed slightly upwards and at an angle away from the gun barrel. Above the shells 5, 7 a to the ejector 30 associated construction 11 is attached. This includes two preferably motor-driven chains 12, 13.
- the chains 12, 13 is each an ejector 14, 15 functionally connected.
- the ejector 14, 15 are each held in a housing or frame 16, 17.
- the frames 16, 17 each have a groove 18, 19 and are in turn guided arm-fixed in a guide (not shown in detail).
- the chains 12, 13 run simultaneously and shot-dependent (depending on the shot cycles). In this case, the chains 12, 13 are driven in the same direction or in opposite directions.
- Both ejectors 14 are each extended at their forward and pulled up the respective return. Runs the chain 12 with downwardly extended ejector 14 forward, the pull-up ejector 15 is on the way to the rear and vice versa.
- the ejector 30 has in each case one in the movable frame 16, 17 integrated groove 18, 19. Other structural variants are also conceivable.
- the opening or the insertion opening 20 of the ejector tubes 9, 10 is larger in diameter than the caliber of the sleeve 8 is selected.
- the ejector tubes 9, 10 in the threading a V-shaped recess 21. In each of these projects a sleeve accelerator 22. This supports the ejection of the sleeve 8 from the ejection tube 9, 10th
- the rotor 4 comprises three shells, here denoted by 5, 6, 7, and is corresponding to the shot sequence (shot cycles - see, for example DE 10 2008 060 217 A1 ) turned.
- the rotation can be done in both directions - to the right or to the left.
- the shell 5 of the rotor 4 seen in the weft direction left, is used to hold a new ammunition 2.
- the shell 6 lower shell of the rotor 4, there is currently ammunition to be fired 2.
- shell 7 is located the sleeve 8 of the previously lost ammunition.
- the shutter 3 takes when driving forward the ammunition 2 located in the shell 6 with in the cartridge chamber (not shown in detail).
- the gun barrel is locked, the shot is made. Thereafter, the shutter 3 is moved back to the back.
- the shutter 3 transports the sleeve 8 of the ammunition 2 shot back into the shell 6 and deposits it there.
- the rotor 4 is now rotated, so that the shell 6 with the sleeve 8 in the position of the shell 7, the shell 7 in the previous position of the shell 5 and the shell 5 in the previous position of the shell. 6 to be twisted.
- the sleeve accelerator 22 receives a pulse, by which the sleeve accelerator 22 is driven from its rest position in the direction of the sleeve bottom, for example via a spring.
- the spring-driven device 23 receives the information, for example, from the cam 24, via which the ejector 14, 15 with the chain 12, 13 are functionally connected (not shown here).
- the cam 24 then acts on the device 23 in such a way that it moves the sleeve accelerator 22, here in the weft direction S.
- the ammunition supply from the right and the tube ejection run similarly, with the rotor 4 being rotated in the other direction.
- the sleeve 8 located in the left shell (5) is brought out of the weapon system through the ejection tube 9.
- the chains 12, 13 work as described.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Toys (AREA)
- Jet Pumps And Other Pumps (AREA)
Description
Die Erfindung beschäftigt sich mit einem kettengesteuerten Hüfsen-/Patronenauswurf einer Munition nach deren Verschuss bzw. bei einem Zündversager aus einer Waffe sowie einer Waffe mit einer derartigen Hülsenauswurfvorrichtung.The invention relates to a chain-controlled Hüfsen- / cartridge ejection of an ammunition after their Verschuss or in a Zündversager from a weapon and a weapon with such a sleeve ejection device.
Eine Patronenhülsenauszieheinrichtung für automatische Feuerwaffen offenbart die
Aus der
Der Erfindung stellt sich die Aufgabe, eine einfache Hülsenauswurfvorrichtung aufzuzeigen, die baulich klein gehalten, das Ausstoßen der Hülse bzw. eines Zündversagers auch bei einer beiderseitigen Munitionszuführung ermöglicht.The invention has as its object to show a simple sleeve ejection device, the structurally small, the ejection of the sleeve or a Zündversagers also allows for mutual ammunition feed.
Gelöst wird die Aufgabe durch die Merkmale des Patentanspruchs 1 bzw. 8. Vorteilhafte Ausgestaltungen sind in den Unteransprüchen aufgezeigt.The object is achieved by the features of claim 1 and 8. Advantageous embodiments are shown in the subclaims.
Der Erfindung liegt die Idee zugrunde, das Ausstoßen bzw. das Ausleiten der Hülse durch ein Auswurfrohr zu unterstützen. Dieses ist jedoch bevorzugt in Schussrichtung vor einem zur Waffe gehörenden Rotor eingebunden. Für eine baukleine Variante ist das Auswurfrohr bevorzugt oberhalb des Waffenrohres angeordnet. Die Wülsenauswurfvorrichtung wird ergänzt durch zumindest eine (umlaufende, geschlossene) Kette und einen durch die Kette getriebenen Auswerfer. Dabei schiebt der mit der Kette funktional verbundene Auswerfer die Hülse in das Hülsen-Ausstoß- bzw. Auswurfrohr. Durch die Kette wird genügend Geschwindigkeit erzeugt, damit die Hülse durch das Auswurfrohr getrieben werden kann. Die Kette ist ihrerseits horizontal (auch parallel möglich) zum Rotor ausgerichtet. In einer weiteren Ausgestaltung kann das Ausstoßen durch das Ausstoßrohr durch einen Hülsenbeschleuniger unterstützt werden. Durch diesen Beschleuniger wird auf den Hülsenboden ein kurzer Impuls eingeleitet, der das Ausstoßen beschleunigt und sicherstellt.The invention is based on the idea to support the ejection or the discharge of the sleeve by an ejector tube. However, this is preferably integrated in the weft direction in front of a weapon belonging to the rotor. For a small construction variant, the ejection tube is preferably arranged above the weapon barrel. The Wülsenauswurfvorrichtung is supplemented by at least one (circulating, closed) chain and driven by the chain ejector. In this case, the ejector functionally connected to the chain pushes the sleeve into the sleeve ejection or ejection tube. The chain provides enough speed to allow the sleeve to be driven through the ejector tube. The chain is in turn aligned horizontally (also possible in parallel) to the rotor. In a further embodiment, the ejection can be supported by the ejection tube by a sleeve accelerator. Through this accelerator, a short pulse is introduced to the bottom of the case, which accelerates the ejection and ensures.
Grundsätzlich ist der Einsatz einer derartigen Auswurfvorrichtung an einer Waffe vorgesehen, bei welcher die Munition durch einen Verschluss in eine Patronenkammer des Waffenrohres bei seiner Vorwärtsbewegung hinein geschoben wird, die in einem Rotor bzw. Stern liegt. Derartige Waffensysteme sind beispielsweise aus der
Um zu verhindern, dass die durch das Auswurfrohr ausgeworfene Hülse gegen das Waffenrohr getrieben wird, ist das Auswurfrohr in einem Winkel zur Rohrseelenachse angebracht. In einer bevorzugten Ausführung ist das Auswurfrohr in Schussrichtung leicht nach oben gerichtet eingebunden.In order to prevent the ejected through the ejector tube sleeve is driven against the gun barrel, the ejector tube is mounted at an angle to the tube axis. In a preferred embodiment, the ejection tube is slightly directed upwards in the direction of firing.
Um zudem ein einfaches Anschnäbeln der Hülse beim Einführen bzw. Zuführen der Hülse in das Auswurfrohr zu schaffen, weist das Auswurfrohr eine angepasste geometrische Form auf. Im Einlaufbereich des Auswurfrohres, dessen Durchmesser auf den Durchmesser der Hülse abgestimmt ist, weist dieser Bereich eine gegenüber dem Durchmesser des Auswurfrohres größere Umrandung auf, die sich dann leicht verjüngt. Durch eine beispielsweise V-förmige Aussparung im Einlaufbereich des Auswurfrohres wird Platz für den Hülsenbeschleuniger geschaffen. Dieser kann eine einfache Stufen- bzw. Treppenform aufweisen. Der Hülsenbeschleuniger ist mit einer Einheit verbunden, die den auf den Hülsenboden einzuleitenden Impuls erzeugt, wenn der Hülsenboden der auszuwerfenden Hülse im Auswurfrohr hineingeführt worden ist.In addition, in order to create a simple beaking of the sleeve during insertion or feeding of the sleeve into the ejection tube, the ejection tube has an adapted geometric shape. In the inlet region of the ejection tube, whose diameter is matched to the diameter of the sleeve, this region has a larger compared to the diameter of the ejection tube border, which then tapers slightly. An example of a V-shaped recess in the inlet region of the ejection tube space is created for the sleeve accelerator. This can have a simple step or staircase shape. The sleeve accelerator is connected to a unit which generates the pulse to be introduced on the sleeve bottom when the sleeve bottom of the sleeve to be ejected has been guided into the ejection tube.
In Weiterführung der Erfindung sind zwei Auswurfrohre vorgesehen, so dass der Waffe die Munition von beiden Seiten zugeführt werden kann. In diesem Fall sind dann auch zwei mittels Ketten angetriebene Auswerfer eingebunden. Wie in der Einzelausführung befinden sich die Auswurfrohre bevorzugt oberhalb des Waffenrohres und sind in einem leichten Winkel von der Rohrseelenachse des Waffenrohres abgeschwenkt nach oben gerichtet angebracht. Das besondere an dieser Ausführung ist, dass die Ketten und die Auswerfer ihrerseits unabhängig der Munitionszuführung, d.h., unabhängig davon, von welcher Seite die Munition der Waffe zugeführt wird, arbeiten können. Das ermöglicht ein einfaches Umschalten der Munitionszuführung während des Betriebes der Waffe ohne weitere Anpassungen.In continuation of the invention, two ejector tubes are provided, so that the weapon can be supplied to the ammunition from both sides. In this case, then two driven by chains ejector are involved. As in the single version, the ejector tubes are preferably above the gun barrel and are mounted at a slight angle from the tube bore axis of the gun barrel directed upward directed. The particularity of this design is that the chains and ejectors, in turn, can operate independently of the ammunition feed, i.e., regardless of which side the ammunition is being supplied to the weapon. This allows easy switching of the ammunition feed during operation of the weapon without further adjustments.
Das / die Auswurfrohr(e) kann / können auch hinter dem Rotor eingebunden werden, wobei die Kette etc. entsprechend anzuordnen sind. Eine spiegelbildliche Anordnung der Hülsenauswurfvorrichtung(en) ermöglicht auch deren Einbindung unterhalb der Waffe.The ejection tube (s) can / can also be integrated behind the rotor, the chain, etc. are to be arranged accordingly. A mirror-image arrangement of the sleeve ejection device (s) also allows their integration below the weapon.
Es versteht sich, dass durch diese Auswurfvorrichtung(en) auch mögliche Zündversager aus dem Waffensystem herausgeführt werden können.It is understood that by this ejector (s) also possible Zündversager can be led out of the weapon system.
Die Erfindung soll anhand eines Ausführungsbeispieles mit einer beidseitigen Zuführung der Munition mit Zeichnung näher erläutert werden. Es zeigt:
- Fig. 1
- eine leicht perspektivische Darstellung einer beidseitig angeordneten erfindungsgemäßen Auswurfvorrichtung,
- Fig. 2
- eine weitere perspektivische Darstellung der Auswurfvorrichtung,
- Fig. 3
- eine perspektivische Darstellung der Auswurfvorrichtung mit Munitionszuführung sowie Hülsenauswurf,
- Fig. 4
- eine vergrößerte Darstellung mit den wesentlichen Baugruppen eines Hülsenbeschleunigers.
- Fig. 1
- a slightly perspective view of a bilaterally arranged ejection device according to the invention,
- Fig. 2
- another perspective view of the ejector,
- Fig. 3
- a perspective view of the ejection device with ammunition supply and sleeve ejection,
- Fig. 4
- an enlarged view with the main components of a sleeve accelerator.
Für das sichere Gleiten der Hülse 8 in das jeweilige Auswurfrohr 9, 10 weisen diese eine spezielle Bauform auf. Die Öffnung bzw. die Einführöffnung 20 der Auswurfrohre 9, 10 ist im Durchmesser größer als das Kaliber der Hülse 8 gewählt. Zudem weisen die Auswurfrohre 9, 10 im Einfädelbereich eine V-förmige Ausnehmung 21 auf. In diese ragt jeweils ein Hülsenbeschleuniger 22. Dieser unterstützt das Ausstoßen der Hülse 8 aus dem Auswurfrohr 9, 10.For the safe sliding of the sleeve 8 in the
Die Funktionsweise ist wie folgt:The operation is as follows:
Der Rotor 4 umfasst drei Schalen, hier mit 5, 6, 7 bezeichnet, und wird entsprechend des Schussablaufes (Schusszyklen - siehe beispielsweise
Die Schale 5 des Rotors 4, in Schussrichtung gesehen links, dient zur Aufnahme einer neuen Munition 2. In der Schale 6, untere Schale des Rotors 4, befindet sich die aktuell zu verschießende Munition 2. In der rechts im Rotor 4 befindlichen Schale 7 liegt die Hülse 8 der zuvor verschossenen Munition.The
Der Verschluss 3 nimmt beim nach Vorne fahren die in der Schale 6 befindliche Munition 2 mit in die Patronenkammer (nicht näher dargestellt). Das Waffenrohr wird verriegelt, der Schuss erfolgt. Danach wird der Verschluss 3 wieder nach hinten verfahren. Dabei transportiert der Verschluss 3 die Hülse 8 der verschossenen Munition 2 in die Schale 6 zurück und legt sie dort ab. Beim weiteren Rückwärtsfahren des Verschlusses 3 wird nunmehr der Rotor 4 gedreht, so dass die Schale 6 mit der Hülse 8 in die Position der Schale 7, die Schale 7 in die vorherige Position der Schale 5 und die Schale 5 in die vorherige Position der Schale 6 verdreht werden. Es liegt nunmehr wieder eine neue Munition 2 in der unteren Schale des Rotors 4 vor dem Verschluss 3 und die Hülse 8 auf der der Munitionseinlegeposition gegenüberliegenden Schale.The
In der Zeit, in der eine neue Munition 2 in die linke Schale (5) eingelegt wird, fährt der links angeordnete Auswerfer 14, der in seiner Nut 18 nach oben gezogen ist, nach hinten. Dadurch wird ein Kollidieren mit der eingelegten Munition 2 vermieden. Parallel dazu geht der sich hinten befindliche und in der Nut 19 nach unten ausgefahrene rechte Auswerfer 15 nach vorne und nimmt die Hülse 8 mit aus der Schale 7 in Richtung Auswurfrohr 10. Die Hülse 8 wird durch das Auswurfrohr 10 ausgestoßen.In the time in which a new ammunition 2 in the left shell (5) is inserted, moves the
Wie bereits erwähnt, kann das Ausstoßen der Hülse 8 durch einen Hülsenbeschleuniger 22 verbessert werden (
Die Munitionszuführung von rechts und der Hülsenauswurf laufen ähnlich ab, wobei der Rotor 4 in die andere Richtung gedreht wird. Dabei wird die in der linken Schale (5) liegende Hülse 8 durch das Auswurfrohr 9 aus dem Waffensystem verbracht. Die Ketten 12, 13 arbeiten wie beschrieben.As already mentioned, the ejection of the sleeve 8 by a
The ammunition supply from the right and the tube ejection run similarly, with the
Claims (14)
- Case-ejecting device (30), comprising at least one ejection tube (9, 10), characterized by at least one driven chain (12, 13), which is functionally in connection with a respective ejector (14, 15), the ejector (14, 15) being able to act on a case (8) and take it along in the direction of the ejection tube (9, 10) to expel the case (8).
- Case-ejecting device (30) according to Claim 1, characterized in that the ejector (14, 15) is fastened to the chain (12, 13).
- Case-ejecting device (30) according to Claim 1 or 2, characterized in that to expel the case (8) the ejector (14, 15) is brought into an extended position underneath the chain (12, 13).
- Case-ejecting device (30) according to Claim 3, characterized in that to retract or extend the ejector (14, 15) it is guided along a groove (18, 19) which is located in a frame (16, 17) that is guided on the weapon.
- Case-ejecting device (30) according to one of Claims 1 to 4, characterized in that the size of the insertion opening (20) of the ejection tube (9, 10) is greater in diameter than the diameter of the case (8).
- Case-ejecting device (30) according to one of Claims 1 to 5, characterized in that the ejection tube (9, 10) has a V-shaped recess (21) in the threading-in region of the insertion opening (20).
- Case-ejecting device (30) according to one of Claims 1 to 6, characterized in that a case accelerator (22) is incorporated.
- Case-ejecting device (30) according to Claim 7, characterized in that the case accelerator (22) is connected to a unit (23) by which an impulse is imparted to the case accelerator (22) to expel the case (8).
- Weapon with a case-ejecting device (30) according to one of Claims 1 to 8.
- Weapon according to Claim 9, characterized in that the case-ejecting device (30) is mounted above a rotor (4) of the weapon.
- Weapon according to Claim 9 or 10, characterized in that at least two case-ejecting devices (30) are incorporated.
- Weapon according to one of Claims 9 to 11, characterized in that the ejection tube or tubes (9, 10) are mounted such that they are pivoted away by a slight angle from the axis of the bore of the weapon barrel and preferably upwardly directed.
- Weapon according to one of Claims 9 to 12, characterized in that a linear feed of a breech (3) of the weapon takes place.
- Weapon according to one of Claims 10 to 12, characterized in that the rotor (4) has at least three shells (5, 6, 7) for receiving ammunition, presenting ammunition and for transporting cases away.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102013011902.2A DE102013011902A1 (en) | 2013-07-17 | 2013-07-17 | Sleeve ejection device and weapon with such a device |
PCT/EP2014/062477 WO2015007440A1 (en) | 2013-07-17 | 2014-06-13 | Case-ejecting device and weapon having such a device |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3022512A1 EP3022512A1 (en) | 2016-05-25 |
EP3022512B1 true EP3022512B1 (en) | 2017-08-09 |
Family
ID=51136426
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP14736310.5A Active EP3022512B1 (en) | 2013-07-17 | 2014-06-13 | Case-ejecting device and weapon having such a device |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP3022512B1 (en) |
DE (1) | DE102013011902A1 (en) |
WO (1) | WO2015007440A1 (en) |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4269108A (en) | 1979-03-27 | 1981-05-26 | Ares, Inc. | Programmed shell casing ejector apparatus for automatic cannon |
DE3427875C1 (en) * | 1984-07-28 | 1992-04-30 | Heckler & Koch Gmbh | Automatic firearm with barrel-shaped breech |
DE3727740A1 (en) * | 1987-08-20 | 1989-03-02 | Rheinmetall Gmbh | DEVICE FOR A FORWARD-SLEEVED EJECTOR FROM A FOREIGN-DRIVEN MACHINE CANNON |
DE102005003752B4 (en) * | 2005-01-27 | 2008-07-17 | Rheinmetall Waffe Munition Gmbh | Device for the defined ejection of a sleeve or ammunition from a cartridge chamber |
DE102005003751B3 (en) | 2005-01-27 | 2006-07-20 | Rheinmetall Waffe Munition Gmbh | Shell catching device for belt-memberless ammunition has ammunition feeder of weapon which has weapon-side extractor, ejection pipe and shell damper which is functionally connected to ejection pipe |
DE102005045824B3 (en) | 2005-09-24 | 2007-04-26 | Rheinmetall Waffe Munition Gmbh | Device for loading a machine gun |
DE102007034672A1 (en) | 2007-07-25 | 2009-01-29 | Heckler & Koch Gmbh | Catch component for use in weapon, has boundary region embracing bullet base edge by positive effect of extractor claw such that bullet casing is coupled with component during transport to ejection position |
DE102008060217A1 (en) | 2008-12-04 | 2010-06-10 | Rheinmetall Waffe Munition Gmbh | Shutter drive for a weapon |
-
2013
- 2013-07-17 DE DE102013011902.2A patent/DE102013011902A1/en not_active Withdrawn
-
2014
- 2014-06-13 EP EP14736310.5A patent/EP3022512B1/en active Active
- 2014-06-13 WO PCT/EP2014/062477 patent/WO2015007440A1/en active Application Filing
Non-Patent Citations (1)
Title |
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None * |
Also Published As
Publication number | Publication date |
---|---|
DE102013011902A1 (en) | 2015-01-22 |
EP3022512A1 (en) | 2016-05-25 |
WO2015007440A1 (en) | 2015-01-22 |
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