EP2669615B1 - Schusswaffenaufbau mit einem Auswurfkanal für Hülsen - Google Patents

Schusswaffenaufbau mit einem Auswurfkanal für Hülsen Download PDF

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Publication number
EP2669615B1
EP2669615B1 EP13170188.0A EP13170188A EP2669615B1 EP 2669615 B1 EP2669615 B1 EP 2669615B1 EP 13170188 A EP13170188 A EP 13170188A EP 2669615 B1 EP2669615 B1 EP 2669615B1
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EP
European Patent Office
Prior art keywords
weapon
cradle
plate
fact
assembly according
Prior art date
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Application number
EP13170188.0A
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English (en)
French (fr)
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EP2669615A1 (de
Inventor
Jean-Luc Hasler
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Nexter Systems SA
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Nexter Systems SA
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Priority to PL13170188T priority Critical patent/PL2669615T3/pl
Publication of EP2669615A1 publication Critical patent/EP2669615A1/de
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Publication of EP2669615B1 publication Critical patent/EP2669615B1/de
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A9/00Feeding or loading of ammunition; Magazines; Guiding means for the extracting of cartridges
    • F41A9/60Empty-cartridge-case or belt-link collectors or catchers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A23/00Gun mountings, e.g. on vehicles; Disposition of guns on vehicles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A27/00Gun mountings permitting traversing or elevating movement, e.g. gun carriages
    • F41A27/06Mechanical systems

Definitions

  • the technical field of the invention is that of mounting weapons.
  • a conventional weapon assembly includes a cradle carrying a weapon and which is pivotally mounted on journals integral with a carriage.
  • the trunnions conventionally allow the pointing of the weapon in site.
  • the axis of the trunnions is therefore usually horizontal.
  • the carriage is generally pivotally mounted relative to a structure, such as a vehicle, a ship or an aircraft.
  • the pivot axis of the carriage allows the pointing of the weapon in the field. This axis is then vertical.
  • the weapon is mounted in a known manner on the cradle by slides that allow the recoil of the weapon when firing.
  • Small arms (caliber less than 15mm) or medium caliber (caliber between 15mm and 50mm) fire projectiles that are integral with a socket.
  • the socket is a firing residue that is ejected from the weapon after firing the projectile.
  • baffles are provided, such as plates on which the bushes bounce and are thus removed from the carriage.
  • the invention aims to propose a weapon assembly comprising means for controlling the trajectory of the sockets ejected by the weapon regardless of the angle of elevation given to the weapon.
  • the invention thus relates to a weapon assembly comprising a cradle for receiving a weapon and pivotally mounted on journals integral with a carriage and allowing a pointing in the weapon's site, mounting a weapon comprising a corridor ejection bushings, corridor having a first end intended to be disposed in the vicinity of an ejection opening of the weapon through which the bushes are ejected during a firing and a second end which is arranged in the vicinity ejected casing storage magazine, weapon assembly characterized in that the passage is partly delimited by a fixed bottom plate relative to the carriage and an upper plate articulated on a fixed hinge relative to the view and having an axis parallel to the trunnions, the upper plate being further guided on a first groove which is curved and carried by a flange integral with the cradle, the profile of the first groove being defined so as to ensure positioning of the upper plate substantially parallel to the bottom plate over at least 50% of the pivoting movement of the cradle on its trunnions.
  • the assembly comprises a first rear plate which is hinged to the flange integral with the cradle and which carries at a front end at least one roller guided by a path secured to the bottom plate.
  • the weapon assembly also comprises a second rear plate which is also articulated on the flange integral with the cradle and which is guided on a second groove carried by the first rear plate, the dimensions and the position of the second groove. being defined in such a way as to ensure when pointing the cradle with a negative site a decrease in the angle between the first and second back plates.
  • the first groove may include a portion that will be defined so that, for a cradle pointing higher than a given angle, the upper plate will no longer be parallel to the bottom plate, the end of the upper plate next to the first groove then deviating from the bottom plate.
  • the upper plate and the bottom plate each comprise two lateral cheeks, the cheeks of the upper plate moving parallel to the cheeks of the bottom plate when pointing the cradle, the cheeks thus partially delimiting the ejection corridor.
  • the first backplate may also include two lateral cheeks which will move relative to the cheeks of the bottom plates and upper when pointing the weapon, thus completing the ejection corridor.
  • the weapon assembly may comprise a magazine containing at least one dihedral deflector which is disposed substantially facing an opening in a front wall of the magazine and intended to be positioned facing the corridor, the dihedral deflector comprising two planes forming a first angle between them, the intersecting edge of the planes being further inclined at a second angle relative to the wall carrying the opening.
  • the weapon assembly may in particular comprise two dihedral deflectors arranged one above the other with respect to a geometric plane perpendicular to the front wall carrying the opening and with a substantially symmetrical orientation with respect to this geometric plane.
  • the weapon assembly may also include at least one side plate extending between one of the planes of a deflector dihedral towards a rear wall of the magazine parallel to the front wall, this side plate being inclined with respect to the front wall.
  • the weapon assembly may comprise at least two partitions located on either side of the or baffles, partitions which each extend between the front wall and the rear wall, each partition extending vertically to a intermediate plan located at a distance from the store ceiling.
  • a weapon assembly 1 comprises a cradle 2 which carries a weapon 3 and which is pivotally mounted on pins 4 integral with a carriage 5.
  • the carriage 5 comprises two parallel panels forming a fork to the inside which the cradle 2 is positioned.
  • the carriage 5 is itself pivotally mounted on a base 6 so as to allow a bearing pointing of the weapon 3 (rotation about the vertical axis 7 - arrow G ).
  • the pins 4 can rotate the cradle 2 and the weapon 3 (arrow S).
  • the axis of the trunnions 4 materializes the pointing axis in the weapon's site which is a horizontal axis, perpendicular to the vertical axis 7 and to the axis 8 of the tube 3a of the weapon 3.
  • the weapon 3 is fixed to the cradle 2 by slides (not shown) which allow the recoil of the weapon during firing.
  • a bottom plate 10 integral with the carriage 5
  • an upper plate 11 plates which delimit an ejection lane 12 for the sockets leaving the opening 9.
  • a first end of the passage 12 is disposed in the vicinity of the ejection opening 9 and a second end of the passageway is disposed in the vicinity of a magazine 13, which is fixed to the carriage 5 and which allows the storage of ejected bushes .
  • the corridor 12 opens into the store at an opening 14 which is arranged in a front wall 13a of the store.
  • the corridor 12 (as the ejection opening 9) is located between the two panels of the fork of the carriage 5.
  • the architecture of the corridor of the weapon assembly according to the invention is visible more precisely in the figure 2 .
  • the weapon 3 is partially represented.
  • One of the panel of the carriage 5 is removed.
  • a pin 4 is visible in the form of arcs of circles which schematize the fixing bearings of the cradle 2 on the rear panel 5a.
  • the weapon 3 is shown in the rest position.
  • the ejection opening 9 of the sleeves is located just behind the pin 4, above a passage 28 which is arranged in the cradle 2.
  • This forward position of the weapon is the one that corresponds during the firing cycle when ejection of the sleeve out of the weapon.
  • the sockets are ejected with a significant speed (of the order of 10 m / s).
  • the corridor 12 thus makes it possible to guide them and to drive them reliably to the storage magazine 13.
  • the passage 12 is partly delimited by the base plate 10 which is fixed relative to the carriage 5 and by an upper plate 11.
  • the upper plate 11 is articulated at its front edge on a hinge 15 which is fixed relative to the carriage 5.
  • the hinge 15 has its axis parallel to the axis of the pins 4.
  • a flange 20 constituted by a plate integral with the cradle 2.
  • This flange 20 pivots with the cradle 2 when pointing in site.
  • the upper plate 11 has its rear edge 16 which is close to the pin 4 and which is guided on a first groove 17 of curved shape and carried by the flange 20.
  • the weapon mounting is symmetrical with respect to a vertical plane.
  • the guiding of the upper plate 11 is ensured at each flange 20 by a rotary roller 18 mounted on an axis integral with the upper plate, which roller can roll in the first groove 17.
  • the upper plate thus carries two rollers 18 (see FIG. figure 3a ), each roller flowing in a groove 17 of one of the flanges 20.
  • the upper plate 11 is a folded sheet which has two lateral flanges 11a and 11b.
  • the rollers 18 and their axes are carried by a small structure 19 of folded sheets which is welded to the upper plate 11.
  • the bottom plate 10 is also a folded sheet which has two lateral cheeks 10a, 10b.
  • the cheeks thus form a chute with variable geometry that partially delimits the ejection corridor 12.
  • the first groove 17 comprises a first part 17a which has a curvature whose concavity is oriented towards the journal 4.
  • the profile of this part 17a of the first groove 17 is defined so as to ensure a positioning of the upper plate 11 substantially parallel to the bottom plate 10 on at least 50% of the swinging movement of the cradle 2 on the journals 4.
  • the ejection corridor 12 does not see its reduced section, the risk of blocking sockets ejected in the corridor 12 are eliminated. This is all the more important as the direction of ejection of the casings out of the weapon varies with the angle of pointing in site.
  • the sockets are thus projected towards the bottom plate 10 and bounce with different angles towards the upper plate 11. If the lane 12 saw its section vary during the pointing, the sockets could be blocked across the corridor.
  • the weapon assembly also comprises a first rear plate 21 which is articulated by a pivot 22 on the flange 20 integral with the cradle 2.
  • the first rear plate 21 carries at a front end at least one roller 23 guided by a path 24 integral with the bottom plate 10.
  • the structure is of course symmetrical with respect to a vertical plane.
  • the first rear plate 21 is a folded sheet which also has two side panels 21a and 21b.
  • Each cheek 21a and 21b carries a roller 23 which cooperates with a path 24 of the bottom plate 10.
  • Each cheek 21a and 21b also carries a pivot 22 which cooperates with a flange 20 secured to the cradle.
  • the cradle when the cradle pivots in site, it drives the first rear plate 21 whose end before sliding along the bottom plate 10, guided by the rollers 23. During this movement, the lateral cheeks 21a and 21b of the first rear plate 21 move relative to the cheeks 10a, 10b and 11a, 11b of the bottom plates. and higher. The first rear plate thus completes the ejection corridor 12 towards the rear of the assembly. Such an arrangement is necessary to prevent a rebound of the sockets towards the rear of the corridor 12. It is indeed not possible to extend the bottom plate 10 too far back because it could interfere with the cradle 2 during the clocking at high site.
  • the first rear plate 21 makes it possible to vary the length of the ejection corridor 12 during pointing.
  • the weapon assembly finally comprises a second rear plate 24a which is articulated by a pivot 25 on the flange 20 integral with the cradle 2.
  • This second rear plate 24a is guided by rollers (of which only the axis 26 is visible on the figure 2 ) on a second groove 27 carried by the first rear plate 21.
  • the second groove 27 is visible at the figure 3d .
  • This groove has a relatively short length.
  • the second rear plate serves to close the rear of the corridor 12.
  • the pivot 25 is located in the vicinity of the passage 28 arranged in the cradle and behind the ejection opening 9.
  • the second groove 27 has dimensions and a location defined so as to ensure, when pointing the cradle with a negative site, a decrease in the angle ⁇ between the first and second back plates.
  • the figure 4 shows the mounting with such a score with negative site (-10 °).
  • the reduction of the angle ⁇ is done in conjunction with a reduction in the angle ⁇ formed between the second rear plate 24a and the firing plane (plane formed by the axis 8 of the weapon and the axis of the trunnions).
  • Such an arrangement makes it possible, during a negative-site firing configuration which is very unfavorable for the ejection of the bushings, to move the second rear plate 24a away from the ejection opening 9. bushings and reduces the risk of blockage of the corridor 12 by the latter.
  • the figure 4 thus shows a view of the assembly with a pointing at negative site (site of -10 ° for the axis 8 of the weapon).
  • rollers 18 which guide the upper plate 11 have followed the first portion 17a of the first groove 17 to its end.
  • the upper plate 11 remained parallel to the bottom plate 10 during this pointing movement of the weapon from 0 ° to -10 °.
  • the figure 5 shows a view of the assembly with a 30 ° positive site pointing for the 8 axis of the weapon.
  • the figure 6 finally shows the assembly with a maximum score (+ 50 ° for the axis 8 of the weapon).
  • This second part 17b (see figure 2 ) has its convexity oriented towards the pins 4, so an orientation opposite that of the first part 17a. This movement has the effect of moving away from the bottom plate 10 the rear end 16 of the upper plate 11.
  • the upper plate 11 is no longer parallel to the bottom plate 10.
  • the angle ⁇ between these plates is of the order of 5 °.
  • Such an arrangement is intended to further open the entrance of the corridor 12 in this pointing configuration where the direction of ejection of the sleeves approaches an orientation parallel to the bottom plate 10.
  • a first end of the passage 12 is disposed in the vicinity of the ejection opening 9 and a second end of the passageway is disposed in the vicinity of a magazine 13, which is fixed to the carriage 5 and which allows the storage of ejected bushes .
  • the figure 7 shows schematically the magazine 13.
  • the latter here has a parallelepiped shape. Its front face 13a carries the opening 14 which is rectangular.
  • the figure 8 allows to see more precisely the internal structure of the magazine 13.
  • the front wall 13a of the store is cut to show the storage chamber 29 delimited by the walls of the store 13.
  • the dotted line 14 is shown to specify its location.
  • the magazine is intended to collect and store ammunition bushings (not shown) ejected from the weapon 3 and which are led to it by the passage 12.
  • the bushings enter the magazine 13 through the opening 14 which is positioned opposite the corridor 12 for ejection bushes.
  • the magazine 13 comprises at least one dihedral (or dihedral) deflector 30 which is disposed substantially opposite the opening 14 and at a distance therefrom.
  • the dihedron 30 has two planes 30a, 30b forming a first angle ⁇ between them. This angle is here 90 °.
  • intersection edge 31 of the planes 30a and 30b is inclined by a second angle ⁇ with respect to the wall 13a carrying the opening 14.
  • the angle ⁇ is here 45 °.
  • the deflector 30 is made of folded sheet.
  • the purpose of these angles ⁇ and ⁇ is as follows:
  • the second angle ⁇ deflects the trajectory of a bushing impacting the edge 31 of the deflector 30.
  • the bushing is directed towards the ceiling 41 of the store because of the orientation of this edge 31. It will therefore be required to lodge in other areas of the enclosure 29 and not to clutter the space in front of the opening 14.
  • the first angle ⁇ has a similar function.
  • the bushings which impact the deflector 30 at the right plane 30a will be housed in the portion D of the chamber 29 to the right of the opening 14.
  • the sockets that impact the deflector 30 at the left plane 30b will be housed in the part G of the enclosure 29 to the left of the opening 14.
  • the magazine comprises a second dihedral baffle 32 which is disposed above the first baffle 30 relative to a geometric plane (not shown) passing through the apex 33 of the baffles and perpendicular to the front wall 13a carrying the opening.
  • the relative provisions of the two deflectors are such that the orientations of their planes are substantially symmetrical with respect to this geometric plane.
  • the second deflector 32 also has two planes 32a and 32b which form between them an angle ⁇ .
  • the value of the angle ⁇ is equal to that of the angle ⁇ (90 °). A different value for these angles would of course be possible.
  • intersection edge 34 of the planes 32a and 32b is inclined at an angle ⁇ with respect to the wall 13a carrying the opening 14.
  • the value of the angle ⁇ is here equal to that of the angle ⁇ ( 45 °). A different value for these angles would of course be possible.
  • the second dihedron 32 completes the functions of the first dihedron 30.
  • the sockets that impact its edge 34 are returned to the first dihedron 30. They will impact one or other of the planes 30a or 30b of the latter to be returned to the sides left of G or right D of the chamber 29.
  • the sockets that impact the second deflector 32 at the right plane 32a will be housed in the part D of the chamber 29 to the right of the opening 14.
  • the sockets which impact the deflector 32 at the left plane 32b will be housed in the part G of the chamber 29 to the left of the opening 14.
  • This double deflector is completed by first side plates 35a and 35b which extend between each of the planes 30a or 30b of the first deflector 30 and a rear wall 13c of the magazine.
  • first side plates 35a and 35b are inclined relative to the front wall 13a carrying the opening 14.
  • angle ⁇ between the rear wall 13c and the plate 35a.
  • the rear wall 13c is parallel to the front wall 13a of the store.
  • the angle ⁇ thus also represents the inclination of the first lateral plate 35a with respect to the front wall 13a.
  • the baffle is finally completed by second side plates 36a and 36b.
  • Each second side plate 36a or 36b extends from the edge of one of the planes 30a or 30b of the first dihedron.
  • These second side plates are inclined relative to the front wall 13a of the magazine and extend to the first side plate 35a or 35b located on the same side of the dihedron.
  • the first and second side plates are intended to oppose the sockets entering the chamber 29 inclined obstacles which deflect the trajectory of the sleeves and orient them laterally, to the left or to the right along the plates considered.
  • a bushing which impacts the second side plate 36a will be guided to the first side plate 35a which will eject the bushing towards the right side D of the distance magazine of the baffle 30.
  • All this architecture contributes to a regular distribution of the sleeves in the magazine to the left or to the right which avoids an axial space in front of the opening 14.
  • the figures 9 and 10 show another embodiment of a store usable by the invention.
  • This mode differs from the previous one only by the presence of two partitions 39a and 39b which are located on either side of the deflector 30. These partitions are integral with the second side plates 36a or 36b and they each extend between the front wall 13a and the rear wall 13c. Each partition 39a, 39b also extends vertically from the side plates 36a, 36b to an intermediate plane 40 which is located at a distance d from the ceiling 41 of the magazine 13 (see FIG. figure 10 ). The distance d is here such that the plane 40 is located substantially in the middle of the opening 14.
  • the partitions 39a and 39b are inclined relative to the floor 13b by an angle ⁇ (here this angle is equal to 45 °).
  • This inclination is intended to orient the sleeves laterally to the left G or to the right D during an impact on the partitions.
  • the bushes which impact the deflectors 30, 32 and the various plates and partitions are oriented along the arrows F1 or F2 to pass over the partitions 39a or 39b.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)

Claims (10)

  1. Schusswaffenaufbau mit einem Träger (2), der eine Schusswaffe (3) aufnehmen soll und schwenkbar auf Schildzapfen (4) montiert ist, die fest mit einer Lafette (5) verbunden sind und ein Höhenrichten der Schusswaffe ermöglichen, wobei der Schusswaffenaufbau einen Kanal (12) zum Auswerfen von Hülsen aufweist, wobei der Kanal ein erstes Ende aufweist, das dafür bestimmt ist, in der Nähe einer Auswurföffnung (9) der Schusswaffe angeordnet zu werden, durch die hindurch die Hülsen bei einem Schuss ausgeworfen werden, und ein zweites Ende, das in der Nähe eines Magazins (13) zum Lagern von ausgeworfenen Hülsen angeordnet ist, wobei der Schusswaffenaufbau dadurch gekennzeichnet ist, dass der Kanal teilweise durch eine bezogen auf die Lafette (5) feste Bodenplatte (10) und eine obere Platte (11) begrenzt ist, die an einem Gelenk (15) drehgelenkig angebracht ist, das bezogen auf die Lafette (5) fest ist und eine zu den Schildzapfen (4) parallele Achse aufweist, wobei die obere Platte (11) darüber hinaus an einer ersten Nut (17) geführt ist, die gekrümmt ist und von einem Seitenblech (20) getragen wird, das fest mit dem Träger verbunden ist, wobei das Profil der ersten Nut (17) so definiert ist, dass eine Platzierung der oberen Platte (11) ungefähr parallel zur Bodenplatte (10) über mindestens 50% des Schwenkwegs des Trägers (2) auf seinen Schildzapfen (4) gewährleistet ist.
  2. Schusswaffenaufbau nach Anspruch 1, dadurch gekennzeichnet, dass er eine erste hintere Platte (21) aufweist, die drehgelenkig an dem Seitenblech (20) angebracht ist, das fest mit dem Träger (2) verbunden ist, und die an einem vorderen Ende mindestens eine Rolle (23) trägt, die von einer Bahn (24) geführt wird, die fest mit der Bodenplatte (10) verbunden ist.
  3. Schusswaffenaufbau nach Anspruch 2, dadurch gekennzeichnet, dass er eine zweite hintere Platte (24a) aufweist, die ebenfalls drehgelenkig an dem Seitenblech (20) angebracht ist, das fest mit dem Träger (2) verbunden ist, und die an einer zweiten Nut (27) geführt wird, die von der ersten hinteren Platte (21) getragen wird, wobei die Abmessungen und die Position der zweiten Nut (27) so festgelegt sind, dass sie bei einem Richten des Trägers (2) mit einem negativen Höhenwinkel eine Verkleinerung des Winkels (β) zwischen der ersten (21) und zweiten hinteren Platte (24a) sicherstellen.
  4. Schusswaffenaufbau nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass die erste Nut (17) einen Teil (17b) aufweist, der so festgelegt ist, dass bei einem Richten des Trägers (2) über einem bestimmten Winkel die obere Platte (11) nicht mehr parallel zur Bodenplatte (10) verläuft, sich das Ende der oberen Platte (11) nahe der ersten Nut (17) also von der Bodenplatte (10) entfernt.
  5. Schusswaffenaufbau nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass die obere Platte (11) und die Bodenplatte (10) jeweils zwei Seitenwangen (10a, 10b, 11a, 11b) aufweisen, wobei sich die Wangen der oberen Platte (11) beim Richten des Trägers (2) parallel zu den Wangen der Bodenplatte (10) bewegen, wobei die Wangen so teilweise den Auswurfkanal (12) begrenzen.
  6. Schusswaffenaufbau nach Anspruch 5, dadurch gekennzeichnet, dass die erste hintere Platte (21) auch zwei Seitenwangen (21a, 21b) aufweist, die sich beim Richten der Schusswaffe bezogen auf die Wangen der Bodenplatte (10) und der oberen Platte (11) bewegen und so den Auswurfkanal (12) vervollständigen.
  7. Schusswaffenaufbau nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass er ein Magazin (13) umfasst, das mindestens ein diedrisches Ablenkelement (30, 32) einschließt, das ungefähr gegenüber einer Öffnung (14) angeordnet ist, die in einer Vorderwand (13a) des Magazins angeordnet ist und gegenüber dem Kanal (12) platziert werden soll, wobei das diedrische Ablenkelement zwei Ebenen (30a, 30b; 32a, 32b) aufweist, die einen ersten Winkel (λ, γ) dazwischen bilden, wobei die Schnittkante (31, 34) der Ebenen darüber hinaus unter einem zweiten Winkel (µ, σ) bezogen auf die Wand (13a) geneigt ist, die die Öffnung (14) aufweist.
  8. Schusswaffenaufbau nach Anspruch 7, dadurch gekennzeichnet, dass er zwei diedrische Ablenkelemente (30, 32) aufweist, die bezogen auf eine geometrische Ebene senkrecht zur Vorderwand (13a), die die Öffnung (14) aufweist, übereinander angeordnet sind und eine in etwa symmetrische Ausrichtung bezogen auf diese geometrische Ebene aufweisen.
  9. Schusswaffenaufbau nach Anspruch 8, dadurch gekennzeichnet, dass er mindestens eine Seitenplatte (35a, 35b; 36a, 36b) aufweist, die zwischen einer der Ebenen eines diedrischen Ablenkelements (30, 32) in Richtung einer zur Vorderwand (13a) parallelen Rückwand (13c) verläuft, wobei diese Seitenplatte bezogen auf die Vorderwand (13a) geneigt ist.
  10. Schusswaffenaufbau nach einem der Ansprüche 7 bis 9, dadurch gekennzeichnet, dass er mindestens zwei Zwischenwände (39a, 39b) aufweist, die sich auf beiden Seiten des oder der Ablenkelemente (30, 32) befinden, wobei die Zwischenwände jeweils zwischen der Vorderwand (13a) und der Rückwand (13c) verlaufen, wobei jede Zwischenwand senkrecht bis zu einer Zwischenebene (40) verläuft, die sich in einem Abstand zur Decke (41) des Magazins (13) befindet.
EP13170188.0A 2012-06-01 2013-05-31 Schusswaffenaufbau mit einem Auswurfkanal für Hülsen Active EP2669615B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13170188T PL2669615T3 (pl) 2012-06-01 2013-05-31 Zespół broni zawierający zsyp do wyrzucania łusek nabojów

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1201602A FR2991446B1 (fr) 2012-06-01 2012-06-01 Montage d'arme comportant un couloir d'ejection des douilles

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EP2669615A1 EP2669615A1 (de) 2013-12-04
EP2669615B1 true EP2669615B1 (de) 2015-03-11

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EP (1) EP2669615B1 (de)
FR (1) FR2991446B1 (de)
PL (1) PL2669615T3 (de)
RU (1) RU2632555C2 (de)
ZA (1) ZA201303936B (de)

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ES2910160T3 (es) * 2019-05-22 2022-05-11 John Cockerill Defense SA Dispositivo de expulsión de eslabones de municiones

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BE532182A (de) * 1953-10-15
EP0022286B1 (de) * 1979-07-06 1982-11-03 Werkzeugmaschinenfabrik Oerlikon-Bührle AG Ladeautomat für ein Panzerfahrzeug
RU2191969C1 (ru) * 2001-05-21 2002-10-27 Открытое акционерное общество Акционерная компания "Туламашзавод" Артиллерийская установка
FR2884601B1 (fr) 2005-04-19 2010-10-29 Giat Ind Sa Montage d'arme compact
US8151684B2 (en) * 2009-05-19 2012-04-10 The United States Of America As Represented By The Secretary Of The Navy Ammunition canister and feed system
RU2406053C1 (ru) * 2009-07-14 2010-12-10 Государственное унитарное предприятие "Конструкторское бюро приборостроения" Устройство для выброса гильзы зенитного комплекса

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FR2991446A1 (fr) 2013-12-06
EP2669615A1 (de) 2013-12-04
ZA201303936B (en) 2014-08-27
FR2991446B1 (fr) 2014-06-06
RU2632555C2 (ru) 2017-10-05
PL2669615T3 (pl) 2015-08-31
RU2013125320A (ru) 2014-12-10

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