WO2014106566A1 - Ammunition box - Google Patents

Ammunition box Download PDF

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Publication number
WO2014106566A1
WO2014106566A1 PCT/EP2013/076278 EP2013076278W WO2014106566A1 WO 2014106566 A1 WO2014106566 A1 WO 2014106566A1 EP 2013076278 W EP2013076278 W EP 2013076278W WO 2014106566 A1 WO2014106566 A1 WO 2014106566A1
Authority
WO
WIPO (PCT)
Prior art keywords
box
ammunition
venting system
internal pressure
openings
Prior art date
Application number
PCT/EP2013/076278
Other languages
German (de)
French (fr)
Inventor
Hendrik REDEKER
Tobias Schmidt
Kolja Garber
Franz VON STAUFFENBERG
Original Assignee
Rheinmetall Waffe Munition 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 Rheinmetall Waffe Munition Gmbh filed Critical Rheinmetall Waffe Munition Gmbh
Priority to EP13807971.0A priority Critical patent/EP2941619B1/en
Priority to ES13807971.0T priority patent/ES2670685T3/en
Priority to PL13807971T priority patent/PL2941619T3/en
Publication of WO2014106566A1 publication Critical patent/WO2014106566A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B39/00Packaging or storage of ammunition or explosive charges; Safety features thereof; Cartridge belts or bags
    • F42B39/14Explosion or fire protection arrangements on packages or ammunition
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B39/00Packaging or storage of ammunition or explosive charges; Safety features thereof; Cartridge belts or bags
    • F42B39/20Packages or ammunition having valves for pressure-equalising; Packages or ammunition having plugs for pressure release, e.g. meltable ; Blow-out panels; Venting arrangements

Definitions

  • the invention is concerned with the subject of the safe transport of a particularly insensitive ammunition (IM). It is envisaged to incorporate a type of ventilation concept (IM venting) into an ammunition box which will be activated when the ammunition box is exposed to a higher temperature and / or an internal pressure builds up which could lead to critical situations.
  • IM venting a type of ventilation concept
  • the boxes filled with ammunition are exposed by an external heat source - fire at Fast Cook-Of, heat at Slow Cook Of.
  • the explosives are heated to the auto-ignition temperature, which can lead to reactions.
  • the lid of the box can be blown off and / or ammunition parts can be thrown out.
  • a container in particular for receiving ammunition, which comprises a so-called venting system.
  • a fusible link between a lower flange and an upper flange is integrated with a sealing flange.
  • the fusible material has a melting point below the ignition temperature of the ammunition. Depending on the application, this melting point is between 190 ° F and 270 ° F.
  • the material proposed is synthetic material, preferably an ionomeric (thermoplastic) plastic reinforced with glass fibers, which has a melting point of about 250 ° F to about 270 ° F. If the ammunition container is subject to such a high temperature, the material melts and ensures a venting of the container.
  • a cartridge ammunition is known, which is filled in channels with a fusible, solid and pressure-tight material whose melting temperature is lower than the ignition temperature of the pyrotechnic ignition device.
  • the channels rejuvenate towards their exit, which reduces the firing of cartridge cartridges. ori occurring high pressures are collected, so that prevents the melted metal! begins to flow and the channels are released.
  • the cartridge is heated to the melting temperature of the molding material, the material melts. If the primer and thus the propellant charge are ignited at further increasing temperatures, no pressure can build up in the propellant chamber.
  • the exposed passages act as pressure relief ports.
  • US 2003/0205161 A describes a projectile whose bottom is closed off by a lid, which is held in the projectile by an externally located sealing ring made of a melting material. When the temperature rises, this sealing ring melts, so that the lid is released from the ground and an explosive ignition of the actual active charge is prevented.
  • the invention has as its object to show a Munitionsbox that realizes a secure transport for particular IM ammunition.
  • the invention is based on the idea of incorporating a type of ventilation concept (IM - Venting) into a box itself, the ventilation concept then being put into action when the box is exposed to a higher temperature and / or an internal pressure builds up which leads to critical situations could.
  • This may preferably be an already existing or known box, such as an ammunition box. If desired, the other properties of the box can be retained.
  • Holes and / or openings in the wall of the crate are integrated into the crate at defined locations as exhaust openings for the integration of the venting system. These can be filled with a fusible material. This makes the box waterproof and dustproof. As a result, a retrofit is possible. Similar to the solution for insensitive ammunition, the exhaust openings are opened upon reaching a certain internal pressure or a critical temperature. The appropriate fusible material is turned off to the maximum allowable temperature. Through these openings, the internal pressure can escape.
  • the openings or openings can also be closed with a defined thin-walled material or a plug.
  • the plug or thin-walled material is pushed outward. Plug and material are again at the maximum in the box.
  • intractable internal pressure Taken intractable internal pressure.
  • a combination of both variants has the charm that temperature and internal pressure can be taken into account as parameters for the venting system.
  • Below the box closure is a closure opener, which is driven by the venting system. This shutter opener is designed so that when the venting system is triggered on the end faces, the pressure is absorbed axially and the shutter of the box is opened.
  • the venting system itself is designed so that neither the stability nor the environmental resistance of the box are adversely affected.
  • the venting system also improves the IM properties of the ammunition itself in an ammunition box.
  • FIG. 1 shows a ammunition box with a venting system according to the invention
  • 1 a is a side view of the ammunition box of FIG. 1,
  • Fig. 3a, b is a schematic diagram of a shutter opener.
  • FIG. 1a show a box or box 1, here an ammunition box, with a cover 2, a venting system 3 in the ammunition box 1 and a box closure 4.
  • a venting system 3 for the integration of the venting system 3 at defined locations holes / openings. 5 placed in the box wall. These points are located laterally and / or in the lid 2 of the ammunition box 1. Holes or openings 5 can also be provided in the bottom area. These openings or holes 5 are closed with a (defined) thin-walled material or plug 6 (FIG. 2). This ensures that the ammunition box 1 is waterproof and dirt-proof.
  • the thin-walled material / plug 6 may itself be meltable. Alternatively, it is provided that this material / the plug 6 burst to release the holes 5.
  • the venting system 3 is triggered.
  • the increase in internal pressure can also be due to an increase in the temperature that may be subject to the ammunition box.
  • the increase in temperature leads to melting of the material / plug 6.
  • This can also cause the venting system 3 to be triggered, the bores 5 to be released and the internal pressure to be reduced.
  • a so-called closure opener 7 can be integrated below the box closure 4, which can be triggered and / or driven by the venting system 3, in addition to the opening of the box 1 by hand.
  • This shutter opener 7 is designed so that when the venting system 3 is triggered on the front sides, the pressure of the material and / or plug 6 or the internal pressure itself is absorbed axially, which is sufficient to open the closure 4 of the box 1. As a result, the shutter 4 is pushed away from the box 1, the ceiling! 2 can, here in the context of a closing bow, yield. This lid 2 releases the opening of the box 1, which can open itself to a small degree.
  • Fig. 3a in a plan view
  • Fig. 3b in a side view.
  • the "defined" thin-walled material and the stopper 6 are quantitatively chosen so that they take over the function of opening the shutter 4, but can be driven out of the holes themselves by the influence of internal pressure.
  • metallic alloys such as tin-bismuth, in which the melting temperature is about 138, are also suitable as the fusible material.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Pressure Vessels And Lids Thereof (AREA)
  • Closures For Containers (AREA)
  • Fuses (AREA)

Abstract

The invention relates to a type of venting concept (IM venting) is integrated into a box (1), such as an ammunition box/case, which concept swings into action when the box (1) is exposed to a higher temperature and/or an internal pressure that could lead to critical situations builds up. The box (1) is used in particular to accommodate non-sensitive ammunition and comprises a cover (2) and a closure (4). In order to integrate the venting system (3), bore holes and/or through-holes (5) which are closed by means of a defined thin-walled material or plug (6) are placed in the box wall.

Description

BESCHREIBUNG  DESCRIPTION
Munitionskiste ammunition box
Die Erfindung beschäftigt sich mit der Thematik des sicheren Transportes einer insbesondere insensitiven Munition (IM). Vorgesehen ist, eine Art Belüftungskonzept (IM-Venting) in eine Munitionskiste /-box einzubinden, das dann in Aktion tritt, wenn die Munitionskiste einer höheren Temperatur ausgesetzt ist und / oder sich ein Innendruck aufbaut, der zu kritischen Situationen führen könnte. The invention is concerned with the subject of the safe transport of a particularly insensitive ammunition (IM). It is envisaged to incorporate a type of ventilation concept (IM venting) into an ammunition box which will be activated when the ammunition box is exposed to a higher temperature and / or an internal pressure builds up which could lead to critical situations.
Bei IM - Tests werden die mit Munition gefüllten Kisten durch eine externe Wärmequelle - Feuer bei Fast Cook-Of, Hitze bei Slow Cook Of - ausgesetzt. Hierbei werden die Explosivstoffe bis zur Selbstentzündungstemperatur erhitzt, was zu Reaktionen führen kann. Sobald der Innendruck der Munitionskiste zu hoch ist, kann die Kiste Fragmente und Splitter bilden, der Deckel der Kiste abgesprengt und / oder Munitionsteile herausgeschleudert werden. In IM tests, the boxes filled with ammunition are exposed by an external heat source - fire at Fast Cook-Of, heat at Slow Cook Of. Here, the explosives are heated to the auto-ignition temperature, which can lead to reactions. As soon as the internal pressure of the ammunition box is too high, the box can form fragments and splinters, the lid of the box can be blown off and / or ammunition parts can be thrown out.
Aus der US 5,611 ,424 A1 ist ein Behälter bekannt, insbesondere zur Aufnahme von Munition, der ein so genanntes Venting-System umfasst. Dabei ist eine schmelzbare Sicherung zwischen einem unteren Flansch und einem oberen Flansch mit einem Dichtungsflansch eingebunden. Das schmelzbare Material besitzt einen Schmelzpunkt unterhalb der Zündtemperatur der Munition. Dieser Schmelzpunkt liegt je nach Anwendung zwischen 190°F bis 270°F. Als Material wird synthetisches Material, bevorzugt ein ionomerer (thermoplastischer) Kunststoff mit Glasfasern verstärkt, vorgeschlagen, der einen Schmelzpunkt von etwa 250°F bis etwa 270°F aufweist. Wenn der Munitionsbehälter einer derart hohen Temperatur unterliegt, schmilzt das Material und sorgt für eine Entlüftung des Behälters. From US 5,611, 424 A1 a container is known, in particular for receiving ammunition, which comprises a so-called venting system. Here, a fusible link between a lower flange and an upper flange is integrated with a sealing flange. The fusible material has a melting point below the ignition temperature of the ammunition. Depending on the application, this melting point is between 190 ° F and 270 ° F. The material proposed is synthetic material, preferably an ionomeric (thermoplastic) plastic reinforced with glass fibers, which has a melting point of about 250 ° F to about 270 ° F. If the ammunition container is subject to such a high temperature, the material melts and ensures a venting of the container.
Aus der EP 1 735 584 B1 ist eine Patronenmunition bekannt, die in Kanälen mit einem schmelzbaren, festen und druckdichtem Material ausgefüllt ist, dessen Schmelztemperatur niedriger als die Zündtemperatur der pyrotechnischen Zündeinrichtung ist. Die Kanäle verjüngen sich in Richtung zu ihrem Ausgang, wodurch die beim Abschuss der Patronenmuniti- ori auftretenden hohen Drücke aufgefangen werden, sodass verhindert wird, dass das Schmelzmetal! zu fließen beginnt und die Kanäle freigegeben werden. Wird jedoch die Patrone bis auf die Schmelztemperatur des Schme!zmaterials aufgeheizt, schmilz das Material. Sollten bei weiter steigenden Temperaturen das Zündhütchen und dadurch die Treibladung gezündet werden, kann sich in der Treibkammer kein Druck aufbauen. Die freigelegten Passagen fungieren als Druckentlastungsöffnungen. From EP 1 735 584 B1 a cartridge ammunition is known, which is filled in channels with a fusible, solid and pressure-tight material whose melting temperature is lower than the ignition temperature of the pyrotechnic ignition device. The channels rejuvenate towards their exit, which reduces the firing of cartridge cartridges. ori occurring high pressures are collected, so that prevents the melted metal! begins to flow and the channels are released. However, if the cartridge is heated to the melting temperature of the molding material, the material melts. If the primer and thus the propellant charge are ignited at further increasing temperatures, no pressure can build up in the propellant chamber. The exposed passages act as pressure relief ports.
Die US 2003/0205161 A beschreibt ein Geschoss, dessen Boden durch einen Deckel abgeschlossen ist, der in dem Geschoss durch einen außen gelegenen Verschlussring aus einem Schmelzmaterial gehalten wird. Bei Temperaturerhöhungen schmilzt dieser Verschlussring, sodass der Deckel aus dem Boden gelöst und eine explosive Zündung der eigentlichen Wirkladung verhindert wird. US 2003/0205161 A describes a projectile whose bottom is closed off by a lid, which is held in the projectile by an externally located sealing ring made of a melting material. When the temperature rises, this sealing ring melts, so that the lid is released from the ground and an explosive ignition of the actual active charge is prevented.
Die Erfindung stellt sich die Aufgabe, eine Munitionsbox aufzuzeigen, die einen sicheren Transport für insbesondere IM-Munition realisiert. The invention has as its object to show a Munitionsbox that realizes a secure transport for particular IM ammunition.
Gelöst wird die Aufgabe durch die Merkmale des Patentenanspruchs 1 . Vorteilhafte Ausgestaltungen sind in den Unteransprüchen aufgezeigt. The problem is solved by the features of patent claim 1. Advantageous embodiments are shown in the subclaims.
Der Erfindung liegt die Idee zugrunde, eine Art Belüftungskonzept (IM - Venting) in eine Kiste selbst einzubinden, wobei das Belüftungskonzept dann in Aktion tritt, wenn die Kiste einer höheren Temperatur ausgesetzt ist und / oder sich ein Innendruck aufbaut, der zu kritischen Situationen führen könnte. Dabei kann es sich vorzugsweise um eine bereits vorhandene bzw. bekannte Kiste, wie beispielswiese eine Munitionsbox, handeln. Wenn erwünscht, können die sonstigen Eigenschaften der Box beibehalten werden. In die Kiste werden an definierten Stellen Bohrungen und / oder Durchbrüche in der Kistenwandung als Ausblasöffnungen eingebunden zur Integration des Venting- Systems. Diese können mit einem schmelzbaren Material ausgefüllt sein. Dadurch ist die Kiste wasserdicht und staubgeschützt. Dadurch ist auch eine Nachrüstung möglich. Ähnlich der Lösung bei der insensitiven Munition werden bei Erreichen eines bestimmten Innendrucks oder einer kritischen Temperatur die Ausblasöffnungen geöffnet. Das entsprechende schmelzbare Material wird auf die maximal zulässige Temperatur abgestellt. Durch diese Öffnungen kann der Innendruck entweichen. The invention is based on the idea of incorporating a type of ventilation concept (IM - Venting) into a box itself, the ventilation concept then being put into action when the box is exposed to a higher temperature and / or an internal pressure builds up which leads to critical situations could. This may preferably be an already existing or known box, such as an ammunition box. If desired, the other properties of the box can be retained. Holes and / or openings in the wall of the crate are integrated into the crate at defined locations as exhaust openings for the integration of the venting system. These can be filled with a fusible material. This makes the box waterproof and dustproof. As a result, a retrofit is possible. Similar to the solution for insensitive ammunition, the exhaust openings are opened upon reaching a certain internal pressure or a critical temperature. The appropriate fusible material is turned off to the maximum allowable temperature. Through these openings, the internal pressure can escape.
Alternativ können die Öffnungen oder Durchbrüche auch mit einem definiert dünnwandigen Material oder einem Stopfen verschlossen werden. Bei Erhöhung des Innendrucks und Erreichen eines vorgegebenen Innendrucks werden der Stopfen oder das dünnwandige Material nach außen gedrückt. Stopfen und Material sind wiederum auf den maximalen in der Kis- te einnehmbaren Innendruck abgestimmt. Eine Kombination beider Varianten hat den Charme, dass die Temperatur und der Innendruck als Parameter für das Venting- System berücksichtigt werden können. Unterhalb des Kisten verschlusses ist ein Verschlussöffner eingebunden, der durch das Venting- System angetrieben wird. Dieser Verschlussöffner ist so konzipiert, dass bei dem Auslösen des Venting- Systems an den Stirnseiten der Druck axial aufgefangen und damit der Verschluss der Kiste geöffnet wird. Das Venting- System selbst ist derart ausgebildet, dass weder die Stabilität noch die Umweltbeständigkeit der Kiste negativ beeinflusst werden. Das Venting- System verbessert zudem bei einer Munitionskiste die IM- Eigenschaften der Munition selbst. Alternatively, the openings or openings can also be closed with a defined thin-walled material or a plug. When the internal pressure is increased and a given internal pressure is reached, the plug or thin-walled material is pushed outward. Plug and material are again at the maximum in the box. Taken intractable internal pressure. A combination of both variants has the charm that temperature and internal pressure can be taken into account as parameters for the venting system. Below the box closure is a closure opener, which is driven by the venting system. This shutter opener is designed so that when the venting system is triggered on the end faces, the pressure is absorbed axially and the shutter of the box is opened. The venting system itself is designed so that neither the stability nor the environmental resistance of the box are adversely affected. The venting system also improves the IM properties of the ammunition itself in an ammunition box.
Anhand eines Ausführungsbeispiels mit Zeichnung soll die Erfindung näher erläutert werden. Es zeigt: Reference to an embodiment with drawing, the invention will be explained in more detail. It shows:
Fig. 1 eine Munitionskiste mit einem Venting- System nach der Erfindung, 1 shows a ammunition box with a venting system according to the invention,
Fig. 1 a eine Seitenansicht der Munitionskiste aus Fig. 1 ,  1 a is a side view of the ammunition box of FIG. 1,
Fig. 2 Varianten des Venting- Systems aus Fig. 1 ,  2 variants of the venting system of FIG. 1,
Fig. 3a, b eine Prinzipdarstellung eines Verschlussöffners.  Fig. 3a, b is a schematic diagram of a shutter opener.
Fig. 1 , 1a zeigen eine Kiste oder Box 1 , hier eine Munitionskiste, mit einem Deckel 2, einem Venting- System 3 in der Munitionskiste 1 sowie einem Kistenverschluss 4. Zur Integration des Venting- Systems 3 sind an definierten Stellen Bohrungen / Durchbrüche 5 in der Kistenwandung platziert. Diese Stellen befinden sich seitlich und / oder im Deckel 2 der Munitionskiste 1. Bohrungen bzw. Durchbrüche 5 können auch im Bodenbereich vorgesehen werden. Diese Durchbrüche bzw. Bohrungen 5 sind mit einem (definierten) dünnwandigen Material oder Stopfen 6 verschlossen (Fig. 2). Dadurch ist sichergestellt, dass die Munitionskiste 1 wasserdicht und schmutzgeschützt ist. Das dünnwandige Material / Stopfen 6 kann selbst schmelzbar sein. Alternativ ist vorgesehen, dass dieses Material / der Stopfen 6 bersten, um die Bohrungen 5 freizugeben. 1, 1a show a box or box 1, here an ammunition box, with a cover 2, a venting system 3 in the ammunition box 1 and a box closure 4. For the integration of the venting system 3 at defined locations holes / openings. 5 placed in the box wall. These points are located laterally and / or in the lid 2 of the ammunition box 1. Holes or openings 5 can also be provided in the bottom area. These openings or holes 5 are closed with a (defined) thin-walled material or plug 6 (FIG. 2). This ensures that the ammunition box 1 is waterproof and dirt-proof. The thin-walled material / plug 6 may itself be meltable. Alternatively, it is provided that this material / the plug 6 burst to release the holes 5.
Durch bzw. bei Erhöhung des Innendrucks in der Munitionskiste 1 werden das Material und / oder der (die) Stopfen 6 nach außen gedrückt, das Venting-System 3 ausgelöst. Die Erhöhung des Innendrucks kann sich auch durch eine Erhöhung der Temperatur einsteilen, der die Munitionskiste unterliegen kann. Bei einem schmelzbaren Material / Stopfen 6 führt die Temperaturerhöhung zum Schmelzen des Materials / Stopfens 6. Auch dadurch kann das Venting- System 3 ausgelöst, die Bohrungen 5 freigegeben und der Innendruck abgebaut werden. Zusätziich zu dem Venting- System 3 ist vorgesehen, bevorzugt unterhalb des Kistenver- schlusses 4 einen so genannten Verschlussöffner 7 einzubinden, der durch das Venting- System 3 ausgelöst und / oder angetrieben werden kann, zusätzlich zur Öffnung der Kiste 1 per Hand. Dieser Verschlussöffner 7 ist so konzipiert, dass bei dem Auslösen des Venting- Systems 3 an den Stirnseiten der Druck des Materials und / oder Stopfens 6 oder der Innendruck selbst axial aufgefangen wird, der ausreicht, den Verschluss 4 der Kiste 1 zu öffnen. Dadurch wird der Verschluss 4 von der Kiste 1 weggedrückt, der Decke! 2 kann, hier im Rahmen eines Verschlussbügeis, nachgeben. Dieser Deckel 2 gibt die Öffnung der Kiste 1 frei, der sich selbst zu einem geringen Grad öffnen kann. Eine derartige Anordnung zeigt die Fig. 3a in einer Draufsichtdarstellung bzw. Fig. 3b in einer Seitendarstellung. Durch diese zusätzliche Kombination des Ventig-Systems 3 mit dem Verschlussöffner 7 wird eine weitere Möglichkeit geschaffen, den Innendruck schnell und sicher abzubauen. By or when increasing the internal pressure in the ammunition box 1, the material and / or the plug (s) 6 are pressed outwards, the venting system 3 is triggered. The increase in internal pressure can also be due to an increase in the temperature that may be subject to the ammunition box. In the case of a fusible material / plug 6, the increase in temperature leads to melting of the material / plug 6. This can also cause the venting system 3 to be triggered, the bores 5 to be released and the internal pressure to be reduced. In addition to the venting system 3, it is provided that a so-called closure opener 7 can be integrated below the box closure 4, which can be triggered and / or driven by the venting system 3, in addition to the opening of the box 1 by hand. This shutter opener 7 is designed so that when the venting system 3 is triggered on the front sides, the pressure of the material and / or plug 6 or the internal pressure itself is absorbed axially, which is sufficient to open the closure 4 of the box 1. As a result, the shutter 4 is pushed away from the box 1, the ceiling! 2 can, here in the context of a closing bow, yield. This lid 2 releases the opening of the box 1, which can open itself to a small degree. Such an arrangement is shown in Fig. 3a in a plan view and Fig. 3b in a side view. Through this additional combination of the Ventig system 3 with the shutter opener 7, a further possibility is created to reduce the internal pressure quickly and safely.
Dazu werden das„definierte" dünnwandige Material sowie der Stopfen 6 mengenmäßig so gewählt, dass sie die Funktion das Öffnens des Verschlusses 4 übernehmen, selbst aber durch Einfluss des Innendrucks aus den Bohrungen ausgetrieben werden können. For this purpose, the "defined" thin-walled material and the stopper 6 are quantitatively chosen so that they take over the function of opening the shutter 4, but can be driven out of the holes themselves by the influence of internal pressure.
Als schmelzbares Material bieten sich neben synthetischen Materialien auch metallische Legierungen, wie Zinn-Bismuth an, bei denen die Schmelztemperatur bei ca. 138 liegt. In addition to synthetic materials, metallic alloys, such as tin-bismuth, in which the melting temperature is about 138, are also suitable as the fusible material.

Claims

PATENTANSPRÜCHE
1. Kiste (1 ), insbesondere zur Aufnahme von Munition, wie insensitiver Munition, mit einem Deckel (2) sowie einem Verschluss (4), dadurch gekennzeichnet, dass ein Venting- System (3) als Belüftung eingebunden ist, wozu seitlich Bohrungen und / oder Durchbrüche (5) in der Kistenwandung platziert sind, die mit einem schmelzbaren Material, einem dünnwandigen Materia! und / oder Stopfen (6) verschlossen werden. 1. box (1), in particular for receiving ammunition, such as insensitive ammunition, with a lid (2) and a closure (4), characterized in that a venting system (3) is integrated as ventilation, including laterally bores and / or breakthroughs (5) are placed in the wall of the crate, which with a fusible material, a thin-walled Materia! and / or plugs (6) are closed.
2. Kiste (1) nach Anspruch 1 , dadurch gekennzeichnet, dass das schmelzbare Metall eine metallische Legierung, wie beispielsweise Zinn-Bismuth, ist. 2. Box (1) according to claim 1, characterized in that the fusible metal is a metallic alloy, such as tin bismuth.
3. Kiste (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass sich Bohrungen und / oder Durchbrüche (5) sich auch im Deckel (2) der Munitionskiste (1) befinden. 3. crate (1) according to claim 1 or 2, characterized in that bores and / or openings (5) are also in the lid (2) of the ammunition box (1).
4. Kiste (1) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass Bohrungen bzw. Durchbrüche (5) auch im Bodenbereich vorgesehen sind. 4. box (1) according to one of claims 1 to 3, characterized in that bores or openings (5) are also provided in the bottom area.
5. Kiste (1 ) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass das dünnwandige Material und / oder die Stopfen (6) bei einem vorgegebenen Innendruck aus den Bohrungen / Durchbrüchen (5) nach außen gedrückt wird. 5. box (1) according to one of claims 1 to 4, characterized in that the thin-walled material and / or the plug (6) is pressed at a predetermined internal pressure from the holes / openings (5) to the outside.
6. Kiste (1 ) nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass unterhalb des Verschlusses (4) ein Verschlussöffner (7) eingebunden ist. 6. box (1) according to one of claims 1 to 5, characterized in that below the closure (4) a shutter opener (7) is integrated.
7. Kiste (1) nach Anspruch 6, dadurch gekennzeichnet, dass der Verschlussöffner (7) durch das Venting- System (3) ausgelöst und / oder angetrieben wird. 7. box (1) according to claim 6, characterized in that the shutter opener (7) by the venting system (3) is triggered and / or driven.
PCT/EP2013/076278 2013-01-07 2013-12-11 Ammunition box WO2014106566A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
EP13807971.0A EP2941619B1 (en) 2013-01-07 2013-12-11 Ammunition box
ES13807971.0T ES2670685T3 (en) 2013-01-07 2013-12-11 Ammo box
PL13807971T PL2941619T3 (en) 2013-01-07 2013-12-11 Ammunition box

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102013000043.2 2013-01-07
DE102013000043.2A DE102013000043A1 (en) 2013-01-07 2013-01-07 ammunition box

Publications (1)

Publication Number Publication Date
WO2014106566A1 true WO2014106566A1 (en) 2014-07-10

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Application Number Title Priority Date Filing Date
PCT/EP2013/076278 WO2014106566A1 (en) 2013-01-07 2013-12-11 Ammunition box

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EP (1) EP2941619B1 (en)
DE (1) DE102013000043A1 (en)
ES (1) ES2670685T3 (en)
NO (1) NO2961529T3 (en)
PL (1) PL2941619T3 (en)
WO (1) WO2014106566A1 (en)

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Publication number Priority date Publication date Assignee Title
EP3495763A1 (en) * 2017-12-11 2019-06-12 Nuctech Company Limited Intelligent explosion-proof table
US10604986B2 (en) 2017-08-17 2020-03-31 James Carl Folk Ammunition safe
EP3990853B1 (en) 2019-06-25 2023-06-07 Rheinmetall BAE Systems Land Limited Overpressure protection system for a magazine

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR449191A (en) * 1911-12-16 1913-02-19 Jean Pierre Raymond De La Rocq Device for ensuring safety in the transport and storage of powders of war and others
DE2209111A1 (en) * 1972-02-16 1973-08-30 Hoover Ball & Bearing Co METALLIC CONTAINER
US3757933A (en) * 1971-04-27 1973-09-11 Us Army Container for packaging a plurality of explosive units so as to prevent sympathetic detonations
FR2627272A1 (en) * 1988-02-11 1989-08-18 France Etat Armement Metal casing for explosive device - has multiple orifices formed in casing walls and sealed by plugs of low melting point metal alloy
US5611424A (en) 1996-07-11 1997-03-18 The United States Of America As Represented By The Secretary Of The Army Container fuse for enhanced survivability
WO2000006967A1 (en) * 1998-07-27 2000-02-10 Müller AG Verpackungen Ammunition container
US20030205161A1 (en) 2002-05-06 2003-11-06 Roach Eric E. Method and apparatus for releasably attaching a closure plate to a casing
EP1735584B1 (en) 2004-04-08 2010-12-29 Rheinmetall Waffe Munition GmbH Cartridged ammunition, especially of middle caliber

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE195062C (en) *
US4423683A (en) * 1981-12-28 1984-01-03 The United States Of America As Represented By The Secretary Of The Navy Enclosure for a warhead case
US5155298A (en) * 1991-09-30 1992-10-13 The United States Of America As Represented By The Secretary Of The Navy Thermally activated case venting safety apparatus
DE602005009633D1 (en) * 2004-11-19 2008-10-23 Vid Aps An explosion-proof container for the storage and transport of pyrotechnic material in particular.
ES2352881T3 (en) * 2007-06-28 2011-02-23 S.E.I. Societa Esplosivi Industriali S.P.A. SECURITY DEVICE FOR EXPLOSIVE CONTAINERS, EXPLOSIVE CONTAINERS AND METHOD FOR PREPARING SAFE CONTAINERS FOR EXPLOSIVES.

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR449191A (en) * 1911-12-16 1913-02-19 Jean Pierre Raymond De La Rocq Device for ensuring safety in the transport and storage of powders of war and others
US3757933A (en) * 1971-04-27 1973-09-11 Us Army Container for packaging a plurality of explosive units so as to prevent sympathetic detonations
DE2209111A1 (en) * 1972-02-16 1973-08-30 Hoover Ball & Bearing Co METALLIC CONTAINER
FR2627272A1 (en) * 1988-02-11 1989-08-18 France Etat Armement Metal casing for explosive device - has multiple orifices formed in casing walls and sealed by plugs of low melting point metal alloy
US5611424A (en) 1996-07-11 1997-03-18 The United States Of America As Represented By The Secretary Of The Army Container fuse for enhanced survivability
WO2000006967A1 (en) * 1998-07-27 2000-02-10 Müller AG Verpackungen Ammunition container
US20030205161A1 (en) 2002-05-06 2003-11-06 Roach Eric E. Method and apparatus for releasably attaching a closure plate to a casing
EP1735584B1 (en) 2004-04-08 2010-12-29 Rheinmetall Waffe Munition GmbH Cartridged ammunition, especially of middle caliber

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10604986B2 (en) 2017-08-17 2020-03-31 James Carl Folk Ammunition safe
EP3495763A1 (en) * 2017-12-11 2019-06-12 Nuctech Company Limited Intelligent explosion-proof table
RU2716031C1 (en) * 2017-12-11 2020-03-05 Нюктек Компани Лимитед Intelligent explosion-proof table
US11454483B2 (en) 2017-12-11 2022-09-27 Nuctech Company Limited Intelligent explosion-proof table
EP3990853B1 (en) 2019-06-25 2023-06-07 Rheinmetall BAE Systems Land Limited Overpressure protection system for a magazine

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DE102013000043A1 (en) 2014-07-10
PL2941619T3 (en) 2018-08-31
EP2941619B1 (en) 2018-03-14
NO2961529T3 (en) 2018-05-19
EP2941619A1 (en) 2015-11-11
ES2670685T3 (en) 2018-05-31

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