EP3379193A1 - Chargeur adapté à une arme à feu destinée à des fins d'exercice ou de formation et arme à feu modifiée dotée d'un tel chargeur adapté - Google Patents

Chargeur adapté à une arme à feu destinée à des fins d'exercice ou de formation et arme à feu modifiée dotée d'un tel chargeur adapté Download PDF

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Publication number
EP3379193A1
EP3379193A1 EP18163114.4A EP18163114A EP3379193A1 EP 3379193 A1 EP3379193 A1 EP 3379193A1 EP 18163114 A EP18163114 A EP 18163114A EP 3379193 A1 EP3379193 A1 EP 3379193A1
Authority
EP
European Patent Office
Prior art keywords
magazine
compressed gas
valve
firearm
pressure accumulator
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.)
Granted
Application number
EP18163114.4A
Other languages
German (de)
English (en)
Other versions
EP3379193B1 (fr
Inventor
Ralf Wallburg
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Thales Deutschland GmbH
Original Assignee
Thales Management and Services Deutschland GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Thales Management and Services Deutschland GmbH filed Critical Thales Management and Services Deutschland GmbH
Publication of EP3379193A1 publication Critical patent/EP3379193A1/fr
Application granted granted Critical
Publication of EP3379193B1 publication Critical patent/EP3379193B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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
    • F41A33/00Adaptations for training; Gun simulators
    • F41A33/06Recoil simulators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/60Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas
    • F41B11/62Compressed-gas guns, e.g. air guns; Steam guns characterised by the supply of compressed gas with pressure supplied by a gas cartridge
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/70Details not provided for in F41B11/50 or F41B11/60
    • F41B11/72Valves; Arrangement of valves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/70Details not provided for in F41B11/50 or F41B11/60
    • F41B11/73Sealing arrangements; Pistons
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41BWEAPONS FOR PROJECTING MISSILES WITHOUT USE OF EXPLOSIVE OR COMBUSTIBLE PROPELLANT CHARGE; WEAPONS NOT OTHERWISE PROVIDED FOR
    • F41B11/00Compressed-gas guns, e.g. air guns; Steam guns
    • F41B11/50Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines
    • F41B11/55Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being stored in stacked order in a removable box magazine, rack or tubular magazine
    • F41B11/56Magazines for compressed-gas guns; Arrangements for feeding or loading projectiles from magazines the projectiles being stored in stacked order in a removable box magazine, rack or tubular magazine the magazine also housing a gas cartridge

Definitions

  • the present invention relates to a rebuilt magazine for insertion into a magazine receptacle of a firearm which has been converted for practice or training purposes and which has a pneumatic device for simulating a recoil of the firearm upon actuation of a trigger of the firearm and the rebuilt magazine.
  • the magazine has a pneumatic pressure accumulator, in which a compressed gas for actuating the pneumatic device of the Firearm is stored, and a filling opening, which is provided for filling the pneumatic pressure accumulator with compressed gas from a compressed gas source, with a check valve.
  • the check valve is designed to close the accumulator gas-tight in its shut-off position, if no compressed gas from the compressed gas source is applied to the filling opening to prevent leakage of the stored pressure gas in the pressure accumulator.
  • the invention also relates to a firearm which has been converted for practice or training purposes and which comprises a pneumatic device for simulating a recoil of the firearm upon actuation of a trigger of the firearm and a rebuilt magazine with a pneumatic pressure accumulator in which a compressed gas for actuating the pneumatic Device of the firearm is stored.
  • weapon simulators which simulate the firing of weapons.
  • This firearms are used, which have been converted for practice purposes.
  • the weapon simulators are mainly used in the military environment. From the US 4,302,190
  • a rifle recoil simulator is known in which compressed air passes through openings in the gun barrel to move the rifle barrel upward in a simulated recoil motion.
  • a switch on the trigger activates an electromagnetic pneumatic valve to control the flow of air to the openings in the gun barrel.
  • the recoil is not simulated by a reciprocating shutter, but solely by a controlled air flow.
  • a converted firearm for a weapon simulator in which a reciprocable closure is pneumatically triggered by compressed air when the trigger is actuated.
  • the converted firearm usually does not shoot any ammunition, it lacks a firing triggered by the firing of the ammunition and a consequent back-and-forth motion of the shutter.
  • the recoil can be simulated by the well-known converted firearm.
  • a pneumatic pressure accumulator contain, from which air can escape via electromagnetically actuated pneumatic valves when pressing the trigger and can be used for reciprocating movement of the closure.
  • Hand-held weapons adapted for training purposes are known in which the pneumatic pressure accumulator, in which compressed gas is stored for actuating the device for simulating a recoil of the weapon in the event of firing a shot, is part of a rebuilt magazine.
  • the rebuilt magazine is very similar to a real magazine containing cartridges to be fired from a real firearm.
  • the converted magazine can be inserted into a magazine receptacle in the handle portion of a converted firearm and releasably secured therein.
  • the accumulator includes a certain amount of pressurized gas, so that with the rebuilt firearm a certain number of shots can be delivered. With each fired shot, a portion of the compressed gas stored in the pressure accumulator is discharged into the recoil simulation apparatus. When the maximum possible number of shots is reached, the accumulator must be recharged, which can be done with a trained loader.
  • the rebuilt magazine with the pneumatic accumulator has an outlet opening over which the in the Magazine receptacle in the handle portion of the converted firearm inserted magazine or the pneumatic accumulator contained therein is connected to the device for simulating a recoil of the firearm.
  • the outlet opening of the rebuilt magazine is associated with a check valve which automatically closes the outlet opening as soon as the magazine is removed from the magazine receptacle and releases the outlet opening as soon as the magazine is fully inserted into the magazine receptacle.
  • the rebuilt magazine has a filling opening, via which the pneumatic pressure accumulator can be filled with compressed gas.
  • the filling opening of the rebuilt magazine is associated with a check valve, which automatically closes the filling opening when the magazine no longer has a connection to a compressed gas connection of a compressed gas source or no more compressed gas for charging the pressure accumulator, and the filling opening releases as soon as the magazine to a compressed gas connection Pressure gas source is connected and compressed gas flows to charge the pressure accumulator.
  • the check valves of the known converted magazines are usually constructed in a conventional manner, that is they have a valve body, for example. In the form of a ball which is pressed by means of a spring element against a valve seat.
  • designed check valves are only for relatively low Suitable pressures, for example, about 11 bar when using butane as the pressurized gas or about 57 bar when using carbon dioxide as a pressurized gas.
  • compressed or compressed air should be able to be used as compressed gas, which bears against the check valve at pressures in the range from 250 to 300 bar.
  • the magazine forms no flat surface in the region of the filling opening and the check valve. Rather, the filling opening is always formed clearly visible, so that when using the gun provided with the known gun dirt and moisture can be deposited in the filling opening, which then a filling of the pneumatic accumulator of the magazine is affected by compressed gas, since a gas-tight connection between a Pressure gas source of a charging device and the accumulator of the magazine then under certain circumstances can no longer be produced.
  • the present invention therefore based on the object to design the known magazine and further, that it can be filled via the filling opening with compressed gas at very high pressures in the range of about 250 to 300, that the Filling opening is protected against contamination and damage from the outside and that, if possible, can also be directly and clearly recognized from the outside without additional aids, whether the accumulator of the magazine is depressurized or not.
  • a rebuilt magazine with the features of claim 1 is proposed.
  • the check valve has a valve in a bore parallel to the flow direction of the pressurized gas through the filling opening movable valve piston having at its distal end a directed to the outside of the magazine outer surface and is formed such that the Outer surface of the valve piston in the shut-off position of the check valve is flush with the outside of the magazine.
  • the valve piston forms the closure part of the check valve. It is deliberately designed as a piston with an outer surface facing the outside of the magazine at a distal end of the piston. This outer surface of the valve piston closes in the shut-off position of the check valve flush with the outside of the magazine around the filling opening around, so that a flat Outside of the magazine also in the region of the filling opening results. Ingress of dirt and / or moisture into the filling opening is effectively prevented.
  • a gas-tight connection between a compressed gas source of a charging device for filling the pneumatic pressure accumulator of the magazine with compressed gas and the pressure accumulator of the magazine can be produced with higher reliability and reliability.
  • an outlet opening of the charging device can be gas-tightly connected to the filling opening of the magazine or the accumulator without problems due to contamination or moisture to fill the pressure accumulator with compressed gas.
  • the design of the closure part of the check valve as a valve piston results in a much more stable and robust design of the check valve, so that it can withstand even very high pressures in the range of 250 to 300 bar without problems, as they can, for example, when using pressure or compressed air when filling the pressure accumulator with compressed gas and in the pressure accumulator itself occur.
  • the outer surface formed at the distal end of the valve piston serves to indicate whether pressurized gas is still under pressure in the pneumatic accumulator of the magazine or not. This is especially true when alone the voltage applied from the outside of the valve piston pressure of the compressed gas from the Pressure gas source and the pressure applied from the inside to the valve piston of the pressure gas stored in the pressure accumulator cause a movement of the valve piston parallel to the flow direction of the compressed gas through the filling opening and the check valve has no additional spring elements. In this case, the outer surface of the valve piston is flush with the outer surface of the magazine as long as the pneumatic accumulator is under pressure.
  • valve piston Only when the pressure accumulator is depressurized, no force acts on the valve piston, which could press this outwardly into the shut-off position, and the valve piston falls into a retracted rest position in which the outer surface of the valve piston dips into the filling. This can be clearly seen from outside the magazine without any additional aids. In this case, the valve piston either due to gravity or supported by an additional spring element can reach the rest position as soon as the pressure applied in the pressure accumulator has fallen below a certain low pressure value. As a result, the safety in handling the magazine, in particular with regard to maintenance and repair, can be significantly improved.
  • FIG. 1 is a retrofitted for practice purposes firearm as part of a weapon simulator in its entirety by the reference numeral 1 denotes.
  • the weapon simulator (not shown) is used to train as realistic as possible using rebuilt firearms, such as the firearm 1.
  • the weapon simulator can be a central control computer in which all firearms used in the vicinity of the weapon simulator, such as the firearm 1 and other converted firearms, are registered or registered.
  • the control computer communicates with the registered firearms in a communication connection, which can be realized via an electrical line or wirelessly, for example by radio.
  • the control computer serves for the coordination and evaluation of training units of the individual registered firearms.
  • On a central control computer of the weapon simulator can also be dispensed with if, for example, the converted firearm 1 is used for recreational purposes.
  • the firearm 1 is similar in appearance and weight, as well as in its feel and operability from a real firearm.
  • the firearm 1, however, has been converted so that it does not shoot blank cartridges or real ammunition.
  • the various actions that take place in a real firearm before, during and after a delivery of a shot and cause a recoil of the weapon must therefore be simulated in the converted firearm 1.
  • the firearm 1 has a pneumatically operated by means of compressed gas device for simulating a recoil when "firing" a simulated shot.
  • sensors can be arranged, which detect a current operating state of the firearm 1, and it can be provided actuators that make depending on the current operating state corresponding actions, so that the most realistic possible use of the firearm 1 is given.
  • a sensor 2 ' may detect the actuation of a trigger or trigger 2, resulting in the "firing" of a simulated shot, possibly after further conditions are met.
  • an electronic control unit 17 can be activated and thus a laser 36 can be activated in order to emit a laser beam in the target direction out of the barrel 38 of the weapon 1.
  • the sensor 2 'and the control electronics 17 are shown only schematically; those skilled in the art know how to connect and switch to each other so that the laser 36 is activated at the time the trigger 2 is actuated.
  • a recoil of the firearm 1 is simulated.
  • the movement of the closure 3 can be triggered, for example, by means of a shooting cylinder / piston arrangement 9.
  • a further sensor (not shown) may be provided.
  • a hydraulic medium for example a gas, in particular air, is used to actuate the closure 3, which, if necessary, the closure 3 and the shooting cylinder / piston assembly 9 applied.
  • a housing of the firearm 1 is denoted by the reference numeral 4.
  • the housing 4 comprises a handle 10, which has an opening 11 at its lower end side, behind which hides a magazine holder formed in the interior of the handle 10.
  • a magazine with one or more cartridges contained therein is inserted and releasably secured in the magazine receptacle.
  • a converted magazine 12 is inserted and fixed in the magazine receptacle.
  • a further sensor may be provided in order to detect a magazine 12 which has been inserted and fixed properly in the magazine receptacle.
  • the rebuilt magazine 12 resembles a real magazine in terms of its appearance and weight, as well as its feel and usability.
  • the rebuilt magazine 12 comprises in its interior a pneumatic pressure accumulator 13, in which a compressed gas, for example air, is stored under high pressure, for example in the range from 200 to 300 bar.
  • a compressed gas for example air
  • the stored in the pressure accumulator 13 compressed gas is used to actuate the shutter 3 when "firing" a "shot” with the firearm 1 to simulate a recoil of the weapon 1.
  • the shutter 3 Upon actuation of the trigger 2, the shutter 3 by compressed gas from the pressure accumulator 13 out and reciprocated. It is conceivable that only the rearwardly directed forward movement of the closure 3 is generated by the compressed gas, whereas the forwardly directed movement in another way, for example.
  • the shutter 3 return element eg a compression spring
  • the pressure accumulator 13 of the rebuilt magazine 12 communicates via a line 20 with an outlet opening 22, which is associated with a check valve 24 which closes the outlet opening 22 when the magazine 12 is not fully inserted into the magazine holder.
  • the firearm 1 has at the foot of the magazine receptacle on a connecting piece 26 which protrudes with inserted magazine 12 in the outlet opening 22 and the check valve 24 opens automatically, so that the compressed gas from the pressure accumulator 13 is applied to the pneumatic device for the simulation of the recoil of the firearm 1 ,
  • the flow of compressed gas in the device for the simulation of the recoil can be controlled, so that the compressed gas, for example.
  • the connecting piece 26 is provided on its outer peripheral surface with sealing rings 28, through which the connecting piece 26 is sealed against the inner wall of the outlet opening 22.
  • an inlet opening 30 is formed, on the fully inserted into the magazine holder magazine 12, the compressed gas from the pressure accumulator 13 via the line 20, the open valve 24 and the outlet opening 22 in the device for simulating the recoil of the firearm 1 passes.
  • the pressure accumulator 13 of the rebuilt magazine 12 is also connected via a line 32 with a filling opening 34, which is also associated with a check valve 40 which closes the filling opening 34 when the magazine 12 is not at a charging station for charging the pressure accumulator 13 with a pressurized gas is connected or if no compressed gas from a compressed gas source for charging the pressure accumulator 13 is applied.
  • a filling opening can also be arranged laterally on the magazine 12.
  • a corresponding filling opening 34 ' is shown in dashed lines and communicates via a line 32' with the pressure accumulator 13 in connection.
  • this filling opening 34 ' is associated with a check valve 40', which corresponds in function to the check valve 40 of the filling opening 34.
  • a laterally arranged filling opening 34 ' is less susceptible to damage and contamination, for example. As a result of dropping the weapon in the field.
  • the filling openings 34, 34 ' are arranged in this example in a collar-shaped edge portion 15 of the magazine 12. Of course, they can also be arranged at any other location on the outside of the magazine 12.
  • the firearm 1 may comprise purely mechanically or pneumatically actuated control means to the pneumatic Actuation of the shutter 3 to control.
  • the control means of the weapon 1 may also have electrical or electronic components which, for example, actuate electromagnetically actuated pneumatic valves in order to control the pneumatic actuation of the closure 3.
  • the control means of the weapon 1 comprise electronic components, for example in the form of an electrical power supply device 16, control electronics 17 (eg a programmable microprocessor) and means 18 (eg a computer program running on the microprocessor) for sequencing the firearm 1.
  • FIG. 1 The components contained in the weapon 1 for actuating the closure 3 or a shooting cylinder / piston arrangement 9 which acts on the closure 3, are in FIG. 1 only shown schematically. Except the in FIG. 1 shown and described above, other components, in particular further pneumatic lines and / or pneumatic valves can be provided.
  • the electrical power supply device 16 of the weapon 1 is designed, for example, as a battery, preferably as a rechargeable battery.
  • the power supply device 16 may also include an electrical plug element (not shown) to which a cable for powering the weapon 1 can be connected from the outside.
  • the weapon 1 at least one programmable microprocessor 17 and Have means (eg in the form of a computer program that runs on the microprocessor 17) for sequencing the firearm 1 have.
  • the computer program is stored in an external or internal memory element of the microprocessor 17 and is at the beginning of a training session or booting ("booting") of the central control computer of the weapon simulator, preferably immediately after a supply of the weapon 1 with electrical energy from the power supply device 16, at least partially loaded into the microprocessor 17 and is there ready for processing or is processed there.
  • booting booting
  • a loading device for filling the pressure accumulator 3 of the magazine 12 with compressed gas is described below with reference to FIG Figures 2 and 3 explained in more detail.
  • a loader is in its entirety in FIG. 2 designated by the reference numeral 50.
  • the charging device 50 serves to charge the pneumatic pressure accumulator 13 with a compressed gas from a compressed gas source 52.
  • the compressed gas source 52 is in FIG. 2 only symbolically drawn. It may, for example, be designed as a compressor or as a high-pressure gas tank in which a large amount of compressed gas is stored.
  • the compressed gas source 52 is connected via a pneumatic line 54 to the charging device 50.
  • the pressure accumulator 13 is arranged in a converted magazine, such as.
  • the magazine 12 off FIG. 1 The accumulator 13 is - as I said - trained compressed gas for a firearm, which is converted for practice purposes, such as the firearm 1 from FIG. 1 , for simulation a recoil of the firearm 1 to provide.
  • the loading device 50 has a loading position 56 immediately in front of an outlet opening 58 of the loading device 50.
  • the loading position 56 in this example comprises two guide rails 60 arranged on opposite sides into which the edge section 15 of the magazine 12 can be inserted from above.
  • the loading position 56 can also be designed differently, such as, for example, another, simultaneously filed with the present patent application patent application of the same applicant can be taken in detail.
  • edge portion 15 is arranged on the bottom of the magazine 12 filling opening 34 of the pressure accumulator 13 directly opposite the outlet opening 58 of the charging device 50th This is in FIG. 3 shown.
  • the outlet opening 58 is gas-tight sealed at the filling opening 34 and 34 'of the pressure accumulator 13 at. Subsequently, the filling opening is referred to only with the reference numeral 34, but the statements apply in a corresponding manner also for the filling opening 34 '. If pressure gas is now supplied from the compressed gas source 52 via the outlet opening 58 of the charging device 50, this compressed gas flows in the flow direction 70 via the filling opening 34 and the corresponding non-return valve 40 in the pressure accumulator 30. This will be described below with reference to FIG. 4 explained in more detail, showing the check valve 40 in a flow position in which - as I said - the compressed gas is fed from the compressed gas source 52 into the pressure accumulator 13.
  • the pressure accumulator 13 is realized by three juxtaposed and mutually parallel bores 72 which are connected via oblique connecting holes 74 with each other. Outwardly, the two outer holes 72 are closed by means of plugs 76, which can be pressed or screwed into the holes 72. Annular seals 78 disposed in annular grooves 80 formed on the outer peripheral surface of the plugs 76 seal the plugs 76 against the bores 72.
  • the central bore 72 is closed by means of the check valve 40.
  • the filling opening 34 is associated with a check valve 40 which controls the flow through the filling opening 34.
  • the check valve 40 is designed to close the filling opening 34 gas-tight in its shut-off position, if no compressed gas from the compressed gas source 52 bears against the filling opening 34 in order to prevent leakage of the compressed gas stored in the pressure accumulator 13.
  • the check valve 40 has a valve piston 84 which is movable in a valve bore 82 parallel to the flow direction 70 of the compressed gas through the filling opening 34. This has at its distal end to the outside of the magazine 12 directed outer surface 86 and is such formed such that the outer surface 86 of the valve piston 84 in the shut-off position (see. FIG. 5 ) of the check valve 40 is flush with the outside 88 of the magazine 12.
  • the valve piston 84 has a circular cross-section. It has a guide section 90 directed towards the outside 88 of the magazine 12 and a sealing section 92 directed toward the inside of the magazine 12.
  • the sealing portion 90 has a larger diameter than the guide portion 92.
  • the outer surface 86 of the valve piston 84 is formed at the distal end of the guide portion 90.
  • a step 94 is formed, which comprises a directed towards the outside 88 of the magazine 12 annular sealing surface 96 which in the shut-off position (see. FIG.
  • valve piston 84 is associated with an annular sealing element 100 which is arranged on the outside of the guide portion 90 on the sealing surface 96 and in the shut-off position of the check valve 40 (see. FIG. 5 ) between the sealing surface 96 of the valve piston 84 and the bearing surface 98 of the valve bore 82 acts.
  • valve piston 84 only the pressure of the compressed gas from the compressed gas source 52 acting from outside on the valve piston 82 and the pressure of the compressed gas stored in the pressure accumulator 13 cause the valve piston 84 to move parallel to the flow direction 70 of the compressed gas through the filling opening 34, wherein the two pressures are opposite to each other.
  • the check valve 40 has no additional spring elements.
  • the formed on the distal end of the valve piston 84 outer surface 86 can be used to display whether in the pneumatic pressure accumulator 13 of the magazine 12 is still pressurized gas under pressure or not.
  • the check valve 40 has a valve body 102, in which the valve bore 82 is formed, in which the valve piston 84 is guided reciprocably.
  • the valve body 102 has an external thread for screwing of the valve body 102 into a corresponding formed in the magazine 12 provided with an internal thread opening (the central bore 72).
  • the check valve 40 comprises a provided with a longitudinal bore 104 stop member 106 which is fixed from the filling opening 34 opposite side in the valve body 102 which closes the valve bore 82 to the inside of the magazine 12 toward or in the direction of the pressure accumulator 13 and a stop for the valve body 84 in its flow position (see. FIG.
  • the stop member 106 preferably has an external thread for screwing the stopper member 106 into a corresponding formed in the valve body 102 provided with an internal thread opening 108 which opens into the valve bore 82. Via an annular sealing element 110, the valve body 102 is radially sealed relative to the central bore 72.
  • the retrofitted firearm according to the invention for example the firearm 1 FIG. 1 , Has an inventive rebuilt magazine 12, as exemplified by the FIGS. 4 and 5 was explained.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
EP18163114.4A 2017-03-24 2018-03-21 Chargeur adapté à une arme à feu destinée à des fins d'exercice ou de formation et arme à feu modifiée dotée d'un tel chargeur adapté Active EP3379193B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102017106440.0A DE102017106440A1 (de) 2017-03-24 2017-03-24 Umgebautes Magazin für eine zu Übungs- oder Trainingszwecken umgerüstete Schusswaffe und umgerüstete Schusswaffe mit einem solchen umgebauten Magazin

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Publication Number Publication Date
EP3379193A1 true EP3379193A1 (fr) 2018-09-26
EP3379193B1 EP3379193B1 (fr) 2021-05-12

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EP18163114.4A Active EP3379193B1 (fr) 2017-03-24 2018-03-21 Chargeur adapté à une arme à feu destinée à des fins d'exercice ou de formation et arme à feu modifiée dotée d'un tel chargeur adapté

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1998014745A1 (fr) * 1996-10-02 1998-04-09 Kehl, Hermann Pistolet au laser
US20090283084A1 (en) * 2008-05-15 2009-11-19 Real Action Paintball Pneumatic Container and Paintball Gun Containing Same and Pneumatic Recharging System
US20120006445A1 (en) * 2010-07-09 2012-01-12 L'air Liquide, Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Filler coupling and corresponding receptacle and filling method
EP2737234A1 (fr) * 2011-07-26 2014-06-04 L'Air Liquide Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude Raccord de remplissage, récipient, procédé de remplissage et prise de conditionnement
GB2512228A (en) * 2014-06-20 2014-09-24 David Guy Woodman Snapshut valve
DE102015211619A1 (de) * 2015-06-23 2016-12-29 Thales Deutschland Gmbh Umgebautes Magazin einer hydraulischen Vorrichtung zur Simulation eines Rückstoßes einer Feuerwaffe, die Teil eines Waffensimulators ist, Feuerwaffe mit einem solchen Magazin und Waffensimulator mit solchen Feuerwaffen

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4302190A (en) 1979-12-19 1981-11-24 The United States Of America As Represented By The Secretary Of The Navy Rifle recoil simulator
GB9913038D0 (en) * 1999-06-05 1999-08-04 Bsa Guns Improvements in and relating to air guns
ES2231346T3 (es) 2001-06-02 2005-05-16 Sicurta Ag Pistola de laser y procedimiento de transformacion de una pistola convencional en una pistola de laser.
HK1079866B (en) 2002-08-09 2009-11-20 Meggitt Training Systems, Inc. Gas operating system for firearm simulators

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1998014745A1 (fr) * 1996-10-02 1998-04-09 Kehl, Hermann Pistolet au laser
US20090283084A1 (en) * 2008-05-15 2009-11-19 Real Action Paintball Pneumatic Container and Paintball Gun Containing Same and Pneumatic Recharging System
US20120006445A1 (en) * 2010-07-09 2012-01-12 L'air Liquide, Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Filler coupling and corresponding receptacle and filling method
EP2737234A1 (fr) * 2011-07-26 2014-06-04 L'Air Liquide Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude Raccord de remplissage, récipient, procédé de remplissage et prise de conditionnement
GB2512228A (en) * 2014-06-20 2014-09-24 David Guy Woodman Snapshut valve
DE102015211619A1 (de) * 2015-06-23 2016-12-29 Thales Deutschland Gmbh Umgebautes Magazin einer hydraulischen Vorrichtung zur Simulation eines Rückstoßes einer Feuerwaffe, die Teil eines Waffensimulators ist, Feuerwaffe mit einem solchen Magazin und Waffensimulator mit solchen Feuerwaffen

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EP3379193B1 (fr) 2021-05-12
DE102017106440A1 (de) 2018-09-27

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