EP2379979B1 - Systeme de securite et methode associee destinee a etre utilisee avec des explosifs pompables - Google Patents

Systeme de securite et methode associee destinee a etre utilisee avec des explosifs pompables Download PDF

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Publication number
EP2379979B1
EP2379979B1 EP09801252.9A EP09801252A EP2379979B1 EP 2379979 B1 EP2379979 B1 EP 2379979B1 EP 09801252 A EP09801252 A EP 09801252A EP 2379979 B1 EP2379979 B1 EP 2379979B1
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EP
European Patent Office
Prior art keywords
container
charging
discharging means
discharging
security
Prior art date
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EP09801252.9A
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German (de)
English (en)
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EP2379979A1 (fr
Inventor
Rudolph Buhrmann
Rudolph Teodor Buhrmann
Theuns Botha
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Iptree Trust (Trust Number 503/2009)
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Iptree Trust (Trust Number 503/2009)
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Publication of EP2379979A1 publication Critical patent/EP2379979A1/fr
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Publication of EP2379979B1 publication Critical patent/EP2379979B1/fr
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B33/00Manufacture of ammunition; Dismantling of ammunition; Apparatus therefor
    • F42B33/02Filling cartridges, missiles, or fuzes; Inserting propellant or explosive charges
    • F42B33/0278Safety arrangements therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42DBLASTING
    • F42D1/00Blasting methods or apparatus, e.g. loading or tamping
    • F42D1/08Tamping methods; Methods for loading boreholes with explosives; Apparatus therefor
    • F42D1/10Feeding explosives in granular or slurry form; Feeding explosives by pneumatic or hydraulic pressure

Definitions

  • This invention relates to a system and a method for improving security in the handling and use of blasting intermediates, commonly referred to as pumpable explosives.
  • Explosives are inherently dangerous products and security in the storage and handling of explosives has been a concern, especially as their use in mining and industry has increased since the invention of dynamite.
  • a series of new situations has arisen which place ever increasing demands on users of explosives to ensure that they are securely stored, handled and accounted for.
  • South Africa for example, large quantities of explosives are used in deep level mining environments as well as in open cast mining and in civil engineering projects.
  • the rise of a number of relatively new unlawful uses of explosives has produced a demand for tighter control on their use.
  • pirate mining of existing mines has become an increasing problem, both in South Africa and elsewhere.
  • the two liquids must, however, be separately transported from an explosives gel manufacturing facility and then loaded into separate tanks in the pumping unit for mixing and placement by the user into a blast hole. Since the separate components are harmless on their own, transport and security requirements for the separate gel components have been relaxed and the security focus has moved to the pumping unit in which the two gel components are present in close proximity for the first time in the blasting cycle. This has resulted in several different methods to prevent unauthorized use and operation of the pumping unit.
  • One solution has been to fit a conventional keyed lock to the pumping unit, which an authorized user can use to lock the pumping unit to prevent unauthorized use and operation of the pump.
  • the contents of the container may be accessible only through the access port of the container, the container being otherwise sealed, and the closable access port of the container may be enabled to open only if engaged with a charging or discharging means having a security device matching that of the container.
  • the container may have a unique identifier associated therewith.
  • the unique identifier may be a visible mark on the container or may be invisible to the naked eye.
  • Operation of the charging and/or discharging means may be enabled only if engaged with a container having a security device matching that of the charging or discharging means and may be otherwise disenabled.
  • the security devices of the container and the charging and/or discharging means may include complementary coupling devices on the container and the charging and/or discharging means, a first of which is located on the container at the port thereof and a second of which is located on the charging and/or discharging means, the devices, when coupled, being operable to permit the flow of contents to between the container and the charging and/or discharging means.
  • the complementary coupling devices may comprise a spigot on the container or the charging and/or discharging means and a socket on the other of the container or the charging and/or discharging means.
  • the coupling means may include pressure equalizing means for equalizing the pressure in the container with ambient pressure as the container is emptied or filled.
  • the pressure equalizing means may comprise an aperture controlled by a valve to permit the flow of air but restrict the flow of liquid contents of the container.
  • the container may be collapsible or may contain a collapsible bladder.
  • the security devices of the container and the charging and/or discharging means may include electronic signal communications means on the container and the charging and/or discharging means, the communications means of the container and the charging and/or discharging means being operable for signal communication therebetween.
  • the container and the charging and/or discharging means may include complementary signal interfaces.
  • the signal communication between the electronic signal communications means on the container and the charging and/or discharging means may be by means of a digital signal.
  • the signal may be communicated wirelessly.
  • the signal may be a Radio Frequency (RF) signal.
  • RF Radio Frequency
  • the security device of the container may include a unique identifier in the form of a digital code that is communicated by the signal communications means whenever the container is engaged with the charging means.
  • the discharging device may also include a unique identifier in the form of a digital code that is communicated by the signal communications means whenever the container is engaged with the discharging means.
  • the container may include a data storage means and the container may be operable to save at least the following information relating to each event in which a container is engaged with the discharging means:
  • the discharging means may also include a data storage means and the discharging means may be operable to save at least the following information relating to each event in which the container is engaged with the discharging means:
  • the charging means may include a data storage means and the charging means may be operable to save at least the following information relating to each event in which the container is engaged with the charging device:
  • the charging means may be operable to save the following additional information relating to each event in which the container is engaged with the charging device:
  • the charging means may be operable to download and save at least the following additional information:
  • the charging means may be operable to delete data from the data storage means of the container once that data has been downloaded to the data storage means of the charging means.
  • the discharging means may have a data storage means and the discharging means may be enabled only if the unique identifier of the container matches an identifier saved in the data storage means of the discharging means.
  • the charging means may be enabled only if the unique identifier of the container matches an identifier saved in the data storage means of the charging means.
  • the charging means may be operably connected to a computer data processing system, the data storage means of the charging means being accessible thereby.
  • the information communicated by the electronic signal communications means may be encrypted upon transmission and decrypted upon receipt.
  • Only a single container may have a security device that matches the security device of the charging and/or discharging means.
  • the security system comprises a system for distributing a two-part pumpable explosives gel for charging blast holes in a mine or other industry;
  • the container comprises a container for at least one of the components of the explosives gel;
  • the charging means comprises a filling station for filling containers with the at least one explosives gel component;
  • the discharging means comprises an explosives gel pump for charging blast holes with the explosives gel.
  • the at least one component many be activator component of the explosives gel.
  • the filling station may be operable to test the integrity of the container and its closure when the container is engaged with the pump and to suspend filling of the container if the integrity of the container is compromised and/or to record that the integrity of the container has been compromised.
  • the test may comprise a pressure test.
  • the one gel is called the activator or sensitizer, and the other the base emulsion/water-gel.
  • the activator or sensitizer Several different types of liquid explosives are available some of which require a delayed chemical reaction to activate after being mixed, while others are activated immediately after being brought together.
  • a conventional keyed lock (8) is fitted to the pumping unit (1) and an authorized user can use the key to lock the pumping unit (1) to prevent unauthorized use and operation of the pumping unit.
  • Figures 2 to 4 show different components comprising a security system for providing conditional access to contents of a container to prevent unauthorized use and operation of the pumping unit as well as access to the contents of the container.
  • the system uses what may be described as a "liquid key", in the form of a removable container (12), for one of the gels components.
  • this component is preferably the activator/ sensitizer.
  • the removable container (12) may contain either one or both of the two gel components or two separate removable containers could be used, one for each of the respective gel components.
  • the container (12) has a connector (13) for connecting the container (12) to a pumping unit (15) when the container (12) is engaged with the pumping unit (15).
  • the container (12) also has an electronic signal interface (14), which engages with a complementary interface (11) on the pumping unit (15).
  • the pumping unit (15) is designed so that when the container (12) is removed from the pumping unit (15) the pumping unit (15) is disabled and cannot produce a material that will perform as an explosive. In effect, the container (12) may be said to perform the function of a key.
  • the container (12) may be a rigid device having an internal collapsible bladder for its contents or the container (12) itself may be collapsible.
  • the container may include an pressure equalization device (not shown) for equalizing the pressure in the container (12) with ambient pressure as the container (12) is emptied or filled.
  • the pressure equalizing device may comprise an aperture controlled by a valve to permit the flow of air but restrict the flow of liquid contents of the container (12) or may be of any suitable design.
  • the pressure equalization device may comprise a part of the connector (13) of the container (12).
  • the connector (13) on the container (12) is a plug or spigot-like connector and is received into a complementary socket (19) on the pumping unit (15).
  • the spigot and socket (13,19) are of a special configuration and are designed in such a manner that it is difficult to connect a container (12) other than that containing the special spigot (13) to the pumping unit (15).
  • the spigot (13) incorporates a closure (not shown), which is only operable to open and then to close if the container (12) is engaged with a complementary socket (19).
  • the container is sealed and tampering with the container in an attempt to access to the contents of the container will be evident or will render the container transparent.
  • the design of the spigot (13) and socket (19) are not shown in detail and the design of such components will be within the ability of competent design engineers.
  • the container (12) and pumping unit (15) have engageable data interfaces (14,11) for the transmission and reception of data signals.
  • the signals are short range RF signals and are transmitted wirelessly. It will be appreciated that a wide variety of signal transmissions may also be used.
  • the container (12) has a signal generator incorporated in the interface (14), which transmits an encoded signal containing a unique identifier for the container (12). Such signal generators are relatively simple and inexpensive and are used in applications such as remote control devices for household equipment.
  • the pumping unit (15) has a receiver and decryption device incorporated in the interface (11).
  • the decryption device On receipt of an encoded signal from a container (12) interfaced with the pumping unit (15), the decryption device decrypts the encoded signal and obtains the unique identifier of the container (12).
  • the pumping unit (12) has a data storage device (20) and only if the unique identifier matches an identifier held in a memory (20) of the pumping unit (15) will it enable discharging of the contents of the container (12) and operation of the pumping unit (15) to produce an explosive.
  • the identification of the container (12) by the pumping unit in this manner is optional and in simplified systems, the pumping unit (15) may not have a memory device, but merely its own unique identifier, as described below.
  • the pumping unit may be operable to save the similar information as set out below in respect of the container, in relation to each event in which the container (12) is engaged with the pumping unit (15), ie the date of the event and time of the event, which may be provided by a system clock of the processor of the container (12) or a clock on the pumping unit (15) and the unique identifier of the container (12).
  • the number of operating cycles of the pumping unit (15) performed while engaged with the container (12) and the date and time of performance of those cycles during any event are recorded and stored.
  • modern pumping units (15) that are used for the pumping of explosives gels are capable of pumping the two components of the explosives gel to good levels of accuracy, both in terms of the relative masses or volumes of the two components with respect to one another and in terms of the total amounts of the combined components pumped in any one pumping cycle.
  • individual pumps are set to pump a predetermined mass or volume of explosive into a blast hole with each pumping cycle. For this reason, a knowledge of the identity of the pump (15) used and the number of times it has been activated will give a good idea of the actual amount of explosives gels consumed and used for blasting purposes.
  • Typical power supplies currently used are air pressure (compressed air), water pressure, or electrical devices and these sources of power may be interrupted.
  • any other functional aspect of the pumping unit (15) that would effectively prevent the pumping unit from creating limited amounts of a potentially explosive material may be disabled when the liquid container (12) is removed.
  • the liquid container (12) is designed to discourage unauthorized access to the liquid/gel contents of the container (12), or at least to make it technically difficult to gain unauthorized access to the contents of the container (12). This is achieved by manufacturing the container (12) as a sealed unit in respect of which tampering will be evident and ensuring that it is difficult to remove the contents of the container without the container (12) being connected to the pumping unit (15).
  • each of the removable liquid containers (12) has a unique identification number indelibly imprinted thereon and which is visible to the naked eye.
  • Other non-visible identifications may be used, such as indicia that are visible only under ultra-violet light. This number may or may not be the same as the unique identifier (RFID) embedded in the removable container (12).
  • RFID unique identifier
  • the container (12) has a data storage device (22) embedded therein and operably connected to the data interface (14) and to a processor (not shown).
  • the data storage device (22) is operable to store data relating to each event in which a container (12) is engaged with the pumping unit (15), such data including: the date of the event and time of the event, which may be provided by a system clock of the processor of the container (12) or a clock on the pumping unit (15) and the unique identifier of the pumping unit (15).
  • the number of operating cycles of the pumping unit (15) performed while engaged with the container during any event and the date and time of performance of those cycles during any event are recorded and stored.
  • This information is readily accessible and may be in the form of the number of times that the pumping unit (15) is activated and/or the number of pumping strokes performed by the pumping unit (15). This information will give a reliable indication of the amount of explosives actually pumped by that pumping unit (15) while coupled to the particular container (12).
  • An additional aspect the system using the liquid container key (12) comprises means to refill the container (12), comprising a refilling machine (21). Refilling may be performed manually or automatically. However, automated refilling has certain security advantages.
  • a refilling machine (21) is shown in Figure 4 and is operable to fill a container (12) with a preselected amount of liquid. In order to accurately audit the actual amount of liquid used, the refilling machine (21) is operable to measure the amount of liquid present in the container (12) before refilling it to achieve the preselected total amount. Alternatively, the container (12) may be filled to the predetermined total capacity required and the amount of the content needed to achieve this capacity recorded. This will allow the amount of liquid in the container (12) discharged since its last refilling to be calculated.
  • the net amount of liquid used from the container (12) can then be reconciled against the actual amount used in explosions on the mine.
  • the reconciliation process may be made even more robust by arranging for the refilling machine (21) to automatically detect the tank identification number by means of the RF-based identification system.
  • the refilling machine (21) is provided with its own communications interface (26), which is operably connected to a data storage device (27) of the refilling machine (21). Under the control of a processor (not shown) the refilling machine (21) is operable to download the unique identification number of the container (12).
  • the refilling machine (21) may be disenabled from operation if the unique identification number of the container (12) does not match an identification number stored on in the memory (27) of the refilling machine (21).
  • the closure of the container (12) will also not operate unless the spigot (13) of the container (12) engages with a socket (19) of the refilling machine (21).
  • the refilling machine is programmed to interrogate the memory (22) of the container (12) and to download information, which may include, in respect of each event on which the container (12) is engaged with the refilling machine (21), the date of the event and time of the event, which may be provide by a system clock (not shown) of the container (12) or the refilling machine (21), the unique identifier of the container, and the amount of contents remaining in the container (12) or the amount of contents required to fill the container (12) to capacity.
  • the refilling machine (21) may download information saved on the data storage means (22) of the container (12) relating to previous events in which it was engaged with the pumping unit (15).
  • the refilling unit may delete data from the data storage device (22) of the container (12) once that data has been downloaded to the data storage device (27) of the refilling machine (21).
  • the processor and data storage device (27) of the refilling machine (21) may be accessed by a data management system (not shown), as indicated at (28), which may accumulate and process all of the data saved to the data storage device (27) of the refilling machine (21).
  • the refilling machine (21) may be operable to check the integrity of each and every liquid container (12) before it is refilled. This may be achieved by means of an automated pressure test. If implemented, a responsible person may be notified whenever the security of the liquid inside the liquid container (12) has been compromised. Typically the security of the liquid inside the container could be compromised by a hole in the container (12) or any other damage to the components of the container (12). In addition, the refilling machine (21) is inactivated if the integrity of the container (12) is compromised and it will not charge the container (12) with content.
  • the refilling machine (21) is designed for automated filling of containers (12) without any human intervention or human contact with the liquid that is being loaded into the liquid container key (12).
  • a refilling machine (21) will significantly improve security and the chances of the liquid activator landing in the wrong hands.
  • the refilling machine (21) should be centrally located in a secure and well-controlled and audited environment, indicated at (24).

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Burglar Alarm Systems (AREA)

Claims (17)

  1. Système de sécurité destiné à améliorer la sécurité de la manutention et de l'utilisation d'explosifs pouvant être pompés, en particulier de type liquide ou sous forme de gel, le système incluant
    un récipient (12) ayant un orifice d'accès fermable pour charger ou décharger le contenu du récipient dans ou depuis le récipient ; et
    un moyen de chargement et/ou de déchargement (21, 15) pour charger ou décharger le contenu du récipient (12), dans lequel
    le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15) comportent des dispositifs de sécurité (13, 19), où le fonctionnement du moyen de chargement et/ou de déchargement (21, 15) n'est activé que s'il est en prise avec un récipient (12) ayant un dispositif de sécurité (13, 19) correspondant à celui du moyen de chargement ou de déchargement (21, 15) et est désactivé dans le cas contraire ; et
    dans lequel les dispositifs de sécurité (13, 19) du récipient (12) et du moyen de chargement et/ou de déchargement (21, 15) comportent un moyen de communication de signal électronique (14, 11, 21) sur le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15), les moyens de communication (16, 11, 21) du récipient (12) et du moyen de chargement et/ou de déchargement (21, 15) pouvant être actionnés pour la communication de signaux entre eux.
  2. Système de sécurité selon la revendication 1, dans lequel le contenu du récipient (12) n'est accessible que par l'intermédiaire de l'orifice d'accès du récipient (12), le récipient (12) étant hermétiquement fermé dans le cas contraire et dans lequel, l'orifice d'accès fermable du récipient (12) n'est activé pour s'ouvrir que s'il est en prise avec un moyen de chargement ou de déchargement (21, 15) ayant un dispositif de sécurité correspondant à celui du récipient (12).
  3. Système de sécurité selon la revendication 1 ou la revendication 2, dans lequel les dispositifs de sécurité (13, 19) du récipient (12) et du moyen de chargement et/ou de déchargement (21, 15) comportent des dispositifs de couplage complémentaires (13, 19) sur le récipient et le moyen de chargement et/ou de déchargement, dont un premier est situé sur le récipient (12) au niveau de son orifice et dont un second est situé sur le moyen de chargement et/ou de déchargement (21, 15), les dispositifs de couplage (13, 19), lorsqu'ils sont couplés, pouvant être actionnés pour permettre l'écoulement d'un contenu entre le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15), dans lequel
    le dispositif de couplage (13) du récipient (12) comporte un moyen d'égalisation de pression pour égaliser la pression dans le récipient (12) avec la pression ambiante lorsque le récipient (12) est vidé ou rempli.
  4. Système de sécurité selon la revendication 2, dans lequel le moyen d'égalisation de pression comprend une ouverture commandée par une soupape pouvant être actionnée pour permettre l'écoulement d'air mais limiter l'écoulement du contenu liquide du récipient (12).
  5. Système de sécurité selon la revendication 1, dans lequel le récipient (12) et pliable ou contient une vessie pliable.
  6. Système de sécurité selon l'une quelconque des revendications 1 à 5, dans lequel le dispositif de sécurité (13) du récipient (12) comporte un identifiant unique sous forme d'un code numérique communiqué par le moyen de communication de signal (14) à chaque fois que le récipient (12) vient en prise avec le moyen de chargement (21).
  7. Système de sécurité selon l'une quelconque des revendications précédentes, dans lequel le dispositif de sécurité (19) du moyen de déchargement (15) comporte un identifiant unique sous forme d'un code numérique communiqué par le moyen de communication de signal (14) à chaque fois que le récipient (12) vient en prise avec le moyen de déchargement (15).
  8. Système de sécurité selon la revendication 7, dans lequel le récipient (12) comporte un moyen de mémorisation de données (22) et le récipient (12) peut être actionné pour sauvegarder au moins l'une des informations concernant chaque événement pendant lequel un récipient est en prise avec le moyen de déchargement (15), choisies dans une liste comprenant :
    la date de l'événement ;
    l'heure de événement ;
    l'identifiant unique du moyen de déchargement (15) ;
    le nombre de cycles de fonctionnement du moyen de déchargement (15) exécutés lorsqu'il est en prise avec le récipient (12) ; et
    la date et l'heure d'exécution de chacun des cycles de fonctionnement.
  9. Système de sécurité selon la revendication 7, dans lequel le moyen de déchargement (15) comporte un moyen de mémorisation de données (20) et le moyen de déchargement (15) peut être actionné pour sauvegarder au moins l'une des informations concernant chaque événement pendant lequel le récipient (12) est en prise avec le moyen de déchargement (15), choisies dans une liste comprenant :
    la date de événement ;
    l'heure de l'événement ;
    l'identifiant unique du récipient (12) ;
    le nombre de cycles de fonctionnement du moyen de déchargement (15) exécutés lorsqu'il est en prise avec le récipient (12) ; et
    la date et l'heure d'exécution de chacun des cycles de fonctionnement.
  10. Système de sécurité selon la revendication 6, dans lequel le moyen de chargement (21) comporte un moyen de mémorisation de données (27) et le moyen de chargement (21) peut être actionné pour sauvegarder au moins l'une des informations concernant chaque événement pendant lequel le récipient (12) est en prise avec le moyen de chargement (21), choisies dans une liste comprenant :
    la date de événement ;
    l'heure de événement ;
    l'identifiant unique du récipient (12) ;
    l'importance du contenu restant dans le récipient (12) ;
    l'importance du contenu chargé dans le récipient (12) ; et
    l'état d'intégrité du récipient (12).
  11. Système de sécurité selon la revendication 10, dans lequel le moyen de chargement (21) peut être actionné pour télécharger et sauvegarder les informations sauvegardées dans le moyen de mémorisation de données (22) du récipient (12) concernant les événements antérieurs pendant lesquels il était en prise avec le moyen de déchargement (15).
  12. Système de sécurité selon la revendication 9, dans lequel le moyen de déchargement (15) n'est activé que si l'identifiant unique du récipient (12) correspond à un identifiant sauvegardé dans le moyen de mémorisation de données (20) du moyen de déchargement (15).
  13. Système de sécurité selon la revendication 10, dans lequel le moyen de chargement n'est activé que si l'identifiant unique du récipient correspond à un identifiant sauvegardé dans le moyen de mémorisation de données du moyen de chargement.
  14. Système de sécurité selon la revendication 11, dans lequel le moyen de chargement (21) est relié fonctionnellement à un système informatique de traitement de données, le moyen de mémorisation de données (27) du moyen de chargement (21) étant accessible par celui-ci.
  15. Système de sécurité selon l'une quelconque des revendications précédentes, comprenant un système pour distribuer un gel explosif pouvant être pompé en deux parties pour charger des trous de mine dans l'industrie minière ou d'autre industries et dans lequel
    le récipient (12) comprend un récipient pour au moins l'un des constituants du gel explosif ;
    le moyen de chargement (21) comprend un poste de remplissage pour remplir les récipients avec au moins un constituant du gel explosif ; et
    le moyen de déchargement (15) comprend une pompe de gel explosif pour charger les trous de mine avec le gel explosif.
  16. Système de sécurité selon la revendication 15, dans lequel le poste de remplissage peut être actionné pour vérifier l'intégrité du récipient (12) et sa fermeture lorsque le récipient (12) est en prise avec le moyen de chargement (21) et pour interrompre le remplissage du récipient (12) si l'intégrité du récipient (12) est compromise et/ou pour enregistrer le fait que l'intégrité du récipient (12) a été compromise.
  17. Procédé permettant d'améliorer la sécurité de la manutention et de l'utilisation d'explosifs pouvant être pompés, en particulier de type liquide ou sous forme de gel, le procédé incluant
    la fourniture d'un récipient (12) ayant un orifice d'accès fermable pour charger ou décharger le contenu du récipient (12) dans ou depuis le récipient (12) ; et
    la fourniture d'un moyen de chargement et/ou de déchargement (21, 15) pour charger ou décharger le contenu du récipient (12), dans lequel le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15) comportent des dispositifs de sécurité (13, 19) incluant un moyen de communication de signal électronique (14, 11, 21) sur le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15), pouvant être actionnés pour la communication de signaux entre eux ; le procédé comportant en outre
    l'activation du fonctionnement du moyen de chargement et/ou de déchargement (21, 15) uniquement s'il est en prise avec un récipient (12) ayant un dispositif de sécurité (13) correspondant à celui du moyen de chargement ou de déchargement (19) et la désactivation du moyen de chargement et/ou de déchargement (21, 15) dans le cas contraire ; et
    si le fonctionnement du moyen de chargement et/ou de déchargement (21, 15) est ainsi activé, la communication d'un signal de données entre le récipient (12) et le moyen de chargement et/ou de déchargement (21, 15).
EP09801252.9A 2008-12-19 2009-12-21 Systeme de securite et methode associee destinee a etre utilisee avec des explosifs pompables Not-in-force EP2379979B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ZA200810719 2008-12-19
PCT/IB2009/007834 WO2010070442A1 (fr) 2008-12-19 2009-12-21 Cle liquide destinee a etre utilisee avec des explosifs pompables

Publications (2)

Publication Number Publication Date
EP2379979A1 EP2379979A1 (fr) 2011-10-26
EP2379979B1 true EP2379979B1 (fr) 2013-08-21

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ID=42072915

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Application Number Title Priority Date Filing Date
EP09801252.9A Not-in-force EP2379979B1 (fr) 2008-12-19 2009-12-21 Systeme de securite et methode associee destinee a etre utilisee avec des explosifs pompables

Country Status (4)

Country Link
EP (1) EP2379979B1 (fr)
AU (1) AU2009329274A1 (fr)
WO (1) WO2010070442A1 (fr)
ZA (1) ZA201104139B (fr)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE787505A (fr) * 1971-08-16 1973-02-12 Ici Australia Ltd Procede et appareil pour debiter des explosifs
DE19950884A1 (de) * 1999-10-22 2001-04-26 Wella Ag Kombinationsverpackung
FR2810639B1 (fr) * 2000-06-21 2002-09-06 Oreal Ensemble pour le melange extemporane de deux produits
FR2818964B1 (fr) * 2001-01-04 2003-02-21 Oreal Ensemble pour le melange extemporane de deux produits
US7926682B2 (en) * 2006-09-19 2011-04-19 Nelson Steven D Apparatus for reconstituting and applying liquids and method of using same

Also Published As

Publication number Publication date
WO2010070442A1 (fr) 2010-06-24
AU2009329274A1 (en) 2011-08-11
ZA201104139B (en) 2012-02-29
EP2379979A1 (fr) 2011-10-26

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