EP3022519B1 - Geschoss, insbesondere munition, für eine verteidigungsabschussvorrichtung - Google Patents

Geschoss, insbesondere munition, für eine verteidigungsabschussvorrichtung Download PDF

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Publication number
EP3022519B1
EP3022519B1 EP14739553.7A EP14739553A EP3022519B1 EP 3022519 B1 EP3022519 B1 EP 3022519B1 EP 14739553 A EP14739553 A EP 14739553A EP 3022519 B1 EP3022519 B1 EP 3022519B1
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EP
European Patent Office
Prior art keywords
projectile
central portion
launcher
end portions
designed
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Active
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EP14739553.7A
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English (en)
French (fr)
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EP3022519A1 (de
Inventor
Gaël GUILLERM
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Individual
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Individual
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Priority to PL14739553T priority Critical patent/PL3022519T3/pl
Publication of EP3022519A1 publication Critical patent/EP3022519A1/de
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Publication of EP3022519B1 publication Critical patent/EP3022519B1/de
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B12/00Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material
    • F42B12/72Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the material
    • F42B12/74Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the material of the core or solid body
    • F42B12/745Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the material of the core or solid body the core being made of plastics; Compounds or blends of plastics and other materials, e.g. fillers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B10/00Means for influencing, e.g. improving, the aerodynamic properties of projectiles or missiles; Arrangements on projectiles or missiles for stabilising, steering, range-reducing, range-increasing or fall-retarding
    • F42B10/02Stabilising arrangements
    • F42B10/14Stabilising arrangements using fins spread or deployed after launch, e.g. after leaving the barrel
    • F42B10/16Wrap-around fins
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B14/00Projectiles or missiles characterised by arrangements for guiding or sealing them inside barrels, or for lubricating or cleaning barrels
    • F42B14/06Sub-calibre projectiles having sabots; Sabots therefor
    • F42B14/065Sabots carrying several projectiles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B7/00Shotgun ammunition
    • F42B7/02Cartridges, i.e. cases with propellant charge and missile
    • F42B7/10Ball or slug shotgun cartridges

Definitions

  • the present invention relates to a projectile, in particular ammunition, for a defensive launcher, that is to say a projectile intended to disable an adversary without major risk of fatal injury.
  • offensive launcher within the meaning of the present invention is meant a less lethal weapon, also called sub-lethal or reduced lethal or incapacitating weapon, that is to say a weapon designed for the target to be not killed or hurt heavily.
  • This type of weapon is mainly used for policing riot dispersal and self-defense.
  • less-lethal weapons are weapons systems that are explicitly designed and primarily used to incapacitate people or equipment, while minimizing fatalities or injuries. still permanent injuries to these same people as well as undesirable damage to its integrity and its environment.
  • the present invention aims both at reducing the risk of irreversible injuries likely to be caused by a less-lethal projectile and at proposing a less-lethal projectile which is of reduced dimensions compared to the less-lethal projectiles according to the state of the art. art, in order to increase the number of less lethal projectiles available in a launcher or weapon and in particular in a magazine.
  • the projectiles or ammunition described as "less-lethal" are used by the police to put an end to the disturbances on the public road, in particular during agitated demonstrations or riots.
  • a first type of projectile is currently known in the state of the art: these projectiles, fired in the direction of the crowd but towards the sky, release suffocating or irritating gases in order to provoke the dispersal of the demonstrators.
  • This first type of projectiles has the disadvantage of releasing their substance in a very wide space, because of the nature of the shot and thus to inconvenience a large number of people on the scene, sometimes including people not involved in disturbances, or even the police when they take back possession of the ground previously occupied by the demonstrators at the time of the firing and whose air is largely charged with gas.
  • a second type of projectile is known that is intended for law enforcement or the control of individuals: these so-called neutralization projectiles may be of various shapes, such as spherical or stick-shaped, and are generally made of rubber. or equivalent materials. These projectiles are intended to be fired in tight fire on protesters in order to neutralize them by the shock effect produced by the projectile due to the transformation of its kinetic energy during the contact on the target.
  • the propellant charge of a munition that initially incorporates such a projectile is theoretically adapted so that the impact of the projectile on the demonstrator creates only bruises without danger to the life of the latter.
  • the dimensions of the projectile are also an important parameter so that it can not penetrate without irreversible damage part of a human being, such as an eye.
  • projectiles of shape and / or high deformability with a diameter at impact greater than that of an eyeball that is to say typically greater than or equal to 40 mm.
  • these projectiles are made by molding a thermoplastic foam and have a substantially cylindrical shape whose length is of the order of 50 to 70 mm and whose diameter is of the order of 40 mm, with an end portion front shaped hemispherical cap.
  • the general object of the invention is to meet part of this need.
  • a projectile, in particular ammunition, for a defensive launcher comprising a body of elongated shape along a longitudinal central axis (X), the external surface of which is made of a material (x) deformable (s) adapted to absorb the energy of an impact on a target, the body having a central portion and two end portions each extending outwardly from said central portion; and each connected to the central portion, each of the end portions having one or more cross-sections greater than that of the central portion.
  • Cross section means the section of the body considered orthogonal to the longitudinal axis of the projectile.
  • the projectile is preferably a single piece and the two end portions are identical.
  • the tilting of the projectile according to the invention may be accelerated by an outgrowth on each end portion and which extends outwards along the longitudinal axis.
  • the protrusion may be formed by a flat on a cylindrical section or by a lip projecting outwards.
  • a projectile, in particular ammunition, for a defensive launcher comprising a body of elongated shape along a longitudinal central axis (X), the external surface of which is made of material (x ) deformable (s) adapted to absorb the energy of an impact on a target, the body having a central portion and two end portions each extending outwardly from said central portion and connected each at the central portion, each of the end portions having a cross section equal to that of the central portion, each end portion having an outgrowth extending outward along the longitudinal axis.
  • X longitudinal central axis
  • a projectile is defined in which the widened end portions and / or the protuberances create a large lever arm for the pressure aerodynamic exerted on the exit of weapon or launcher and thus rock the projectile, or in other words makes it rotate around its center of inertia. It should be noted here that this tilting or rotation must not be confused with the rotation at high speed about its longitudinal axis that can be subjected to a projectile according to the state of the art, in particular thanks to a striped tube in helix.
  • the projectile according to the invention tilts around its center of inertia and then stabilizes with its length orthogonal to its trajectory, that is to say, parallel to the target, and therefore impact it according to this length, that is to say, according to its largest dimension.
  • a projectile is obtained whose impact surface is important because defined by its length, which reduces the risk of penetration and injury to a person, compared to a ball or ball according to the state of the art that will always present a primary impact surface (contact with the target) equal to its diameter, not to mention the limited deformation of its structure (secondary impact surface).
  • a primary impact surface contact with the target
  • secondary impact surface the limited deformation of its structure
  • Flash-ball it is made of foam, which can cause an impact on a living target a phenomenon cavitation, that is to say, a strong penetration and occupation of the space left by the retreat of the eyeball by the foam ball, and a rebound phenomenon with unwanted collateral damage.
  • the projectile is initially set up in a weapon or defensive launcher so that its caliber is defined by its widest cross-section, it is possible to size said caliber according to standard gauges of less than 44 mm. .
  • the cross sections of the central and end portions are preferably circular sections.
  • the projectile is preferably symmetrical with respect to a plane of symmetry orthogonal to the longitudinal axis.
  • the material (s) constituting the outer surface of the body is (are) chosen and dimensioned to absorb the energy of the impact on the target the most for a long time possible
  • the rigidity of the body of the projectile according to the invention is dimensioned in order to avoid any deformation in flight which would be detrimental to the accuracy of the shot.
  • the mechanical characteristics and materials of the projectile according to the invention may vary according to the desired effects and the weapons or launchers used.
  • the projectile comprises a ballast arranged in the central portion of the body. This makes it possible to stabilize the projectile during its trajectory before the impact.
  • the projectile comprises, on at least one of its end portions, a blind hole extending towards the central portion and adapted to house a holding stud of a wedging device forming a wad of an ammunition .
  • the body consists of a core made of rigid material and an envelope of deformable material (s) adapted to absorb the energy of an impact on a target, the most as long as possible, the envelope overmoulding the core.
  • the length of the core and the density of the core and the envelope are to be defined according to the impact force sought on the target and the amount of energy to be absorbed.
  • the core may be metal, for example lead or a mixture of rigid plastics, preferably charged and densified.
  • the envelope may be an aluminum foam or a cellular plastic material covered or not with a film. Whatever the chosen material, the envelope must be able to crash on impact without resuming its original shape. The desired impact force depends on the resistance to deformation of the shocks envelope, which is usually called "programmed resistance”.
  • the projectile comprises at least one stabilizing stabilizer adapted to deploy from a passive position in which it extends along the body and an active position in which it extends in a transverse direction to the longitudinal axis (X).
  • the empennage can be made of a flexible material which is folded into a housing defined by the outer shape of the body and which does not interfere with the placement of the projectile in the barrel of a launcher, and therefore the ballistics inside.
  • Another subject of the invention is, according to another of its aspects, a sleeve for the projectile which has just been described, designed to form a caliber greater than the largest section of the projectile, the sleeve consisting of two adapted half-shells to assemble them and whose inner forms define a nesting housing projectile.
  • the projectile according to the invention can be used in a firearm and thus be housed in an ammunition comprising a case / cartridge / sleeve with a wad, an explosive charge and a primer.
  • the invention thus also relates, according to yet another of its aspects, an ammunition comprising a projectile which has just been described, a socket inside which the projectile is housed.
  • the munition comprises a wedging device forming a wad, consisting of a disk and a holding pin projecting from the disk, the holding pin being housed in a blind hole made on an end portion of the projectile.
  • a munition according to the invention may comprise a sleeve described above in which a projectile according to the invention is housed, the sleeve being itself housed in the sleeve.
  • the projectile according to the invention may also be used in any other launcher with a means of propulsion other than an explosive charge.
  • the projectile according to the invention can be propelled directly by a spring-loaded mechanical compression launcher or by a "paint-ball" air-compressed launcher.
  • the invention also relates, in another of its aspects, an adapter sleeve for several projectiles such as that just described, in the form of a shower, for forming a higher caliber.
  • an adapter sleeve makes it possible to form a jet of projectiles according to the invention at the output of the weapon barrel / launcher.
  • Such an adapter sleeve is advantageously made of a foam hollowed out with a number of cells equal to that of the projectiles according to the invention, the inner shape of a cell defining an interlocking housing of a given projectile.
  • a sleeve with a number of seven cells distributed uniformly over a cylindrical diameter of foam can be used.
  • Such a sleeve can also be housed in a socket.
  • the projectile according to the invention can be used in a firearm of caliber 37mm and higher and thus be housed in a munition comprising a sleeve with cells housed in a socket with a wad, an explosive charge and a primer.
  • the invention thus also relates, according to yet another of its aspects, an ammunition comprising a projectile which has just been described, a socket inside which the projectile is housed.
  • a munition according to the invention may comprise a sleeve with cells described above in which the projectiles according to the invention are housed, the cells themselves being housed in the socket.
  • the projectile according to the invention may also be used in any other launcher with a means of propulsion other than an explosive charge.
  • the projectile according to the invention can be propelled directly by a spring-loaded mechanical compression launcher or by a "paint-ball" air-compressed launcher.
  • the projectile and the ammunition according to the invention are advantageously used in a preferred application as a less-lethal weapon.
  • the projectile according to the invention remotely fired can thus be used in closed and / or external premises for the neutralization of one or more persons.
  • the projectile may contain, for example, a chemical powder OC type (oleoresin capsicum) or its derivatives, Capsaicin, CN (2-chloroacetophenone) or CS (O-chlorobenzylidenemalononitrile) or CR (dibenzoxazepine).
  • the projectile, fired remotely allows a neutralization of the person (s) without risk of fire related to conventional smoke devices in a closed room.
  • the shell of the ammunition may consist of a compacted irritating powder disintegrating upon impact.
  • the projectile according to the invention can be projected in order to pierce a window or a door for example.
  • the projectile according to the invention can be used on a living target or a non-living target, fixed or mobile.
  • the projectile 1 according to the invention comprises a body 10 of elongate shape along a longitudinal axis X.
  • the body 10 comprises a central portion 11 of circular section to which two identical end portions 12, 13 are connected, of circular general section greater than that of the central portion and which extend outwardly.
  • Each of the end portions 12, 13 has an outgrowth 12a, 13a in the form of a flat portion formed on a cylindrical portion.
  • the shape of the projectile is symmetrical inverted with respect to a plane of symmetry passing through the center of inertia C.
  • the projectile 1 according to the invention undergoes a tilting around the center of inertia C so that it follows, at the exit of the weapon or the launcher, a trajectory orthogonal to its longitudinal axis X.
  • the projectile 1 according to the invention will come to impact a person that one seeks to control over its length, that is to say on its largest dimension.
  • the caliber of the projectile 1 according to the invention is defined, as for the projectiles according to the state of the art, by the width of the end portions 12, 13, it is possible to accommodate a large number within the same charger without increasing the size of the weapon / launcher.
  • the length L of a projectile according to the invention may be between 40 and 100 mm and the diameter ⁇ defined by the widened section of the end portions 12, 13 may be between 10 and 50 mm.
  • the projectile 1 incorporates a ballast 14 within its central portion which does not modify the center of inertia C which remains in the plane of symmetry.
  • the projectile 1 according to the invention can be integrated into a munition so that it can be used with a firearm.
  • the projectile 1 is housed in the sleeve 2 and wedged against an explosive charge not shown at the bottom of the socket by means of a wedging device 3 usually called wad.
  • the wad 3 comprises a holding pin 30 which fits into a central blind hole 15a formed on an end portion 12 of the projectile 1.
  • the projectile 1 disengages from the socket 2 and the wad 3.
  • the protrusion 12a, 13a is formed on each end portion in the form of a flat, one can also provide a protrusion in the form of a lip projecting outwardly of the body 10 ( Figures 5 and 6 ).
  • the projectile 1 according to the invention may have a general diabolo shape with a reduced central portion 11 and end portions 12, 13 in the form of a truncated cone ( figure 5 ).
  • a sleeve 4 of gauge adaptation consists of two half-shells 40, 41 which can be assembled together by snap-fitting by means of tabs 42, 43 ( figures 7 and 8 ).
  • the sleeve 4 can itself be housed in a bushing 2 of ammunition ( figure 9 ). As usual, once fired, at the exit of the barrel of a firearm, the projectile 1 disengages the sleeve 2, the wad 3 and the sleeve 4 whose two half-shells 40, 41 separate and release the projectile 1.
  • the projectile 1 may consist of a rigid core 16, typically metal or plastic, coated with a molded envelope 17 of material adapted to absorb the energy at impact on a target.
  • the core may be metal, lead example or rigid plastics loaded and densified and the envelope may be an aluminum foam or cellular plastic covered or not with a film.
  • the envelope must crash on impact without returning to its original form. The desired impact force depends on the shock resistance of the envelope, it is called programmed resistance.
  • Different core shapes 16 may be provided, such as a circular section shape ( figure 10 ), in rhombus ( figure 11 ), in square ( figure 12 ), in a rectangle ( figure 13 ), with circular section with wings 16a, 16b ( figure 14 ), in a hemicylindrical form ( figure 15 ).
  • the outer surface of the body 10 of the projectile 1 may have different shapes, such as a shape symmetrical with respect to a plane of symmetry ( figure 16 ) or reverse symmetric ( figure 17 ).
  • the body 10 comprises a central portion 11 of circular section to which are connected two end portions 12, 13 identical, of circular general section equal to that of the central portion and which extend towards the outside, each of the end portions 12, 13 then having an outgrowth 12a, 13a extending outwards along the longitudinal axis ( Figures 18, 19 ).
  • the general shape of the projectile 1 can be a diabolo ( figure 20 ) with the central portion 11 of circular section and two end portions 12, 13 in the form of a truncated cone widening outwardly.
  • diabolo is advantageous because it saves weight by removing material relative to the cylinder, to increase the aerodynamics of the projectile and form a circular arc during the impact contact. This makes it possible to avoid striking an eye of a person who is bulging.
  • the projectile 1 may comprise a stabilizing stabilizer 18 ( Figures 21 and 22 ) or two empennage 18, 19 stabilization ( figure 23 ) each adapted to deploy from a passive position in which it extends along the body and an active position in which it extends in a direction transverse to the longitudinal axis (X).
  • a stabilizing stabilizer 18 Figures 21 and 22
  • two empennage 18, 19 stabilization figure 23
  • they are folded in their passive position along the body 10 of the projectile 1 before launching the weapon / launcher ( figure 21 ), then they deploy automatically in their active position at the exit of the weapon / launcher to stabilize the projectile 1 according to its trajectory symbolized by arrows, which is orthogonal to its longitudinal axis.
  • FIG. 24 a view of an adaptation sleeve 5 for firing a plurality of projectiles 1 in the form of a sheaf by a weapon / launcher, the sleeve 5 in which are housed by interlocking the projectiles 1 being housed in a sleeve 2 of ammunition.
  • the sleeve 5 shown is constituted by a polyurethane foam hollowed with cavities 50 in each of which is housed by interlocking a projectile 1. More precisely, in the example illustrated in FIG. figure 24 , the foam 5 comprises a number of seven identical cells 50 distributed uniformly over the cylindrical diameter and housing seven projectiles 1 identical to that shown in FIG. figure 6 .

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Fluid Mechanics (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
  • Toys (AREA)
  • Catching Or Destruction (AREA)

Claims (11)

  1. Geschoss (1) für eine Abschussvorrichtung zur Verteidigung, welches einen Körper (10) mit einer entlang einer Mittellängsachse (X) lang gestreckten Form umfasst, dessen Außenfläche aus verformbarem (verformbaren) Material(ien) besteht, das (die) dafür ausgelegt ist (sind), die Energie eines Aufpralls auf ein Ziel zu absorbieren, wobei der Körper einen mittleren Abschnitt (11) und zwei Endabschnitte (12, 13), die sich jeweils vom mittleren Abschnitt aus nach außen erstrecken und jeweils mit dem mittleren Abschnitt verbunden sind, aufweist, wobei jeder der Endabschnitte einen oder mehrere Querschnitte aufweist, die größer als derjenige des mittleren Abschnitts sind, wobei die Endabschnitte (12, 13) dafür ausgelegt sind, einen Hebelarm für den aerodynamischen Druck bei der äußeren Ballistik des Geschosses zu erzeugen, um zu bewirken, dass es um sein Trägheitszentrum (C) schwenkt, und zwar derart, dass es nach dem Austritt aus der Abschussvorrichtung einer Trajektorie folgt, die zu seiner Längsachse (X) orthogonal ist.
  2. Geschoss (1) nach Anspruch 1, wobei jeder Endabschnitt einen Vorsprung (12a, 13a) aufweist, der sich entlang der Längsachse nach außen erstreckt.
  3. Geschoss (1) für eine Abschussvorrichtung zur Verteidigung, welches einen Körper (10) mit einer entlang einer Mittellängsachse (X) lang gestreckten Form umfasst, dessen Außenfläche aus verformbarem (verformbaren) Material(ien) besteht, das (die) dafür ausgelegt ist (sind), die Energie eines Aufpralls auf ein Ziel zu absorbieren, wobei der Körper einen mittleren Abschnitt (11) und zwei Endabschnitte (12, 13), die sich jeweils vom mittleren Abschnitt aus nach außen erstrecken und jeweils mit dem mittleren Abschnitt verbunden sind, aufweist, wobei jeder der Endabschnitte einen Querschnitt aufweist, der gleich demjenigen des mittleren Abschnitts ist, wobei jeder Endabschnitt einen Vorsprung (12a, 13a) aufweist, der sich entlang der Längsachse nach außen erstreckt, wobei die Vorsprünge (12a, 13a) dafür ausgelegt sind, einen Hebelarm für den aerodynamischen Druck bei der äußeren Ballistik des Geschosses zu erzeugen, um zu bewirken, dass es um sein Trägheitszentrum (C) schwenkt, und zwar derart, dass es nach dem Austritt aus der Abschussvorrichtung einer Trajektorie folgt, die zu seiner Längsachse (X) orthogonal ist.
  4. Geschoss (1) nach einem der vorhergehenden Ansprüche, wobei die Querschnitte der mittleren Abschnitte und Endabschnitte kreisförmige Querschnitte sind.
  5. Geschoss (1) nach einem der vorhergehenden Ansprüche, welches eine Ballastmasse (14) umfasst, die im mittleren Abschnitt des Körpers angeordnet ist.
  6. Geschoss (1) nach einem der vorhergehenden Ansprüche, welches an wenigstens einem seiner Endabschnitte ein Sackloch (15a) umfasst, das sich zum mittleren Abschnitt hin erstreckt und dafür ausgelegt ist, einen Haltezapfen (30) einer eine Vorladung bildenden Verkeilungsvorrichtung (3) einer Munition aufzunehmen.
  7. Geschoss (1) nach einem der vorhergehenden Ansprüche, wobei der Körper aus einem Kern (16) aus starrem Material und aus einer Hülle (17) aus verformbarem (verformbaren) Material(ien), das (die) dafür ausgelegt ist (sind), die Energie eines Aufpralls auf ein Ziel zu absorbieren, besteht, wobei der Kern (16) von der Hülle überformt ist.
  8. Geschoss (1) nach einem der vorhergehenden Ansprüche, welches wenigstens ein Stabilisierungsleitwerk (18, 19) umfasst, das dafür ausgelegt ist, sich aus einer passiven Position, in welcher es sich entlang des Körpers erstreckt, in eine aktive Position zu entfalten, in welcher es sich entlang einer Richtung quer zur Längsachse (X) erstreckt.
  9. Hülse (5) für mehrere Geschosse (1) nach einem der Ansprüche 1 bis 8, welche dazu bestimmt ist, ein größeres Kaliber zu bilden, das aus einem Schaumstoff besteht, der mit Löchern (50) versehen ist, wobei jedes der Löcher innere Formen aufweist, die eine Aufnahme zum Einstecken eines Geschosses definieren.
  10. Munition, welche ein Geschoss (1) nach einem der Ansprüche 1 bis 8 und eine Hülse (2), in deren Innerem das Geschoss aufgenommen ist, umfasst.
  11. Munition nach Anspruch 10, welche eine eine Vorladung bildende Verkeilungsvorrichtung (3) umfasst, die aus einer Scheibe und aus einem von der Scheibe vorstehenden Haltezapfen (30) besteht, wobei der Haltezapfen (30) in einem Sackloch (15a) aufgenommen ist, das an einem Endabschnitt des Geschosses ausgebildet ist.
EP14739553.7A 2013-07-18 2014-06-13 Geschoss, insbesondere munition, für eine verteidigungsabschussvorrichtung Active EP3022519B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL14739553T PL3022519T3 (pl) 2013-07-18 2014-06-13 Pocisk, zwłaszcza amunicja do miotacza obronnego

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
FR1301715A FR3008786A1 (fr) 2013-07-18 2013-07-18 Projectile a rotation apres projection
FR1452183A FR3008787B1 (fr) 2013-07-18 2014-03-17 Projectile, en particulier munition, pour lanceur de defense
PCT/IB2014/062206 WO2015008175A1 (fr) 2013-07-18 2014-06-13 Projectile, en particulier munition, pour lanceur de defense

Publications (2)

Publication Number Publication Date
EP3022519A1 EP3022519A1 (de) 2016-05-25
EP3022519B1 true EP3022519B1 (de) 2017-12-06

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EP14739553.7A Active EP3022519B1 (de) 2013-07-18 2014-06-13 Geschoss, insbesondere munition, für eine verteidigungsabschussvorrichtung

Country Status (5)

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EP (1) EP3022519B1 (de)
ES (1) ES2660090T3 (de)
FR (2) FR3008786A1 (de)
PL (1) PL3022519T3 (de)
WO (1) WO2015008175A1 (de)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5247280B1 (de) * 1970-08-27 1977-12-01
US3952662A (en) * 1974-05-29 1976-04-27 Greenlees William D Non-lethal projectile for riot control
US5103736A (en) * 1990-02-27 1992-04-14 Olin Corporation Sabot bullet
US5652407A (en) * 1996-02-13 1997-07-29 Academy Of Applied Science Non-lethal ammunition and method
US7350465B2 (en) * 2003-12-29 2008-04-01 Neil Keegstra Extended range less lethal projectile
BRPI0500226B1 (pt) * 2005-01-26 2017-09-12 Condor S/A Indústria Química Projectile for non-lethal ammunition
GB0507719D0 (en) * 2005-04-16 2005-05-25 Secr Defence Low lethality projectile

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Publication number Publication date
FR3008787A1 (fr) 2015-01-23
FR3008786A1 (fr) 2015-01-23
PL3022519T3 (pl) 2018-05-30
EP3022519A1 (de) 2016-05-25
ES2660090T3 (es) 2018-03-20
WO2015008175A1 (fr) 2015-01-22
FR3008787B1 (fr) 2018-04-20

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