EP3130878B1 - Pulverisateur de matiere irritante - Google Patents

Pulverisateur de matiere irritante Download PDF

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Publication number
EP3130878B1
EP3130878B1 EP16183690.3A EP16183690A EP3130878B1 EP 3130878 B1 EP3130878 B1 EP 3130878B1 EP 16183690 A EP16183690 A EP 16183690A EP 3130878 B1 EP3130878 B1 EP 3130878B1
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EP
European Patent Office
Prior art keywords
irritant
valve
dispensing
spraying apparatus
control
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP16183690.3A
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German (de)
English (en)
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EP3130878A1 (fr
Inventor
Tobias Hoernecke
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Carl Hoernecke Chem Fabrik & Co KG GmbH
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Carl Hoernecke Chem Fabrik & Co KG GmbH
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/24Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with means, e.g. a container, for supplying liquid or other fluent material to a discharge device
    • B05B7/26Apparatus in which liquids or other fluent materials from different sources are brought together before entering the discharge device
    • B05B7/262Apparatus in which liquids or other fluent materials from different sources are brought together before entering the discharge device a liquid and a gas being brought together before entering the discharge device
    • B05B7/267Apparatus in which liquids or other fluent materials from different sources are brought together before entering the discharge device a liquid and a gas being brought together before entering the discharge device the liquid and the gas being both under pressure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/02Arrangements for controlling delivery; Arrangements for controlling the spray area for controlling time, or sequence, of delivery
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/50Arrangements for cleaning; Arrangements for preventing deposits, drying-out or blockage; Arrangements for detecting improper discharge caused by the presence of foreign matter
    • B05B15/55Arrangements for cleaning; Arrangements for preventing deposits, drying-out or blockage; Arrangements for detecting improper discharge caused by the presence of foreign matter using cleaning fluids
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/02Spray pistols; Apparatus for discharge
    • B05B7/12Spray pistols; Apparatus for discharge designed to control volume of flow, e.g. with adjustable passages
    • B05B7/1254Spray pistols; Apparatus for discharge designed to control volume of flow, e.g. with adjustable passages the controlling means being fluid actuated
    • B05B7/1263Spray pistols; Apparatus for discharge designed to control volume of flow, e.g. with adjustable passages the controlling means being fluid actuated pneumatically actuated
    • B05B7/1272Spray pistols; Apparatus for discharge designed to control volume of flow, e.g. with adjustable passages the controlling means being fluid actuated pneumatically actuated actuated by gas involved in spraying, i.e. exiting the nozzle, e.g. as a spraying or jet shaping gas
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H9/00Equipment for attack or defence by spreading flame, gas or smoke or leurres; Chemical warfare equipment
    • F41H9/10Hand-held or body-worn self-defence devices using repellant gases or chemicals

Definitions

  • the invention relates to an irritant spray device according to the preamble of claim 1.
  • Such irritant sprayers are used to spray irritants, for example irritant in the form of tear gas or natural or synthetic pepper, and are used by a user to defend themselves against an attacker by rendering them incapacitated for a short time.
  • the known irritant sprayers are in different sizes on the market, very small in the form of a spray can, but also relatively large, for example in such a way that a storage container in which the irritant is stored is carried like a backpack on the back and the user in it Hand only has a dispensing lance or a dispensing gun that has a flexible hose is connected to the reservoir.
  • the DE 37 06 963 A1 discloses a spray can for dispensing an irritant, in which incrustations that have formed on the outside of a nozzle can be pushed away by means of a cleaning needle.
  • the DE 20 2008 011 570 U1 describes a universal pressure sprayer for police and special forces.
  • the DE 38 36 051 A1 discloses a spray device for glue or paint with a compressed air supply for blowing the nozzle clean.
  • the EP 1 284 162 A1 describes a method and a device for cleaning a paint delivery line in a painting device.
  • the present invention has for its object to provide an irritant spray device which can be operated particularly reliably.
  • the invention proposes an irritant spray device with a dispensing device for dispensing an irritant, which has a cleaning device in the form of a rinsing device which, after the dispensing of the irritant has ended, cleans the dispensing device automatically, i.e. by itself and without the user having to do anything, by gas through for a period of time directs the dispensing device, it also being conceivable in principle that the cleaning process can also be triggered manually at the request of a user.
  • the delivery device for example a delivery nozzle, is blown through with a gas, whereby any residues of the irritant that may still be present are removed.
  • a liquid for example a liquid carrier with an irritant in the form of an irritant, for example in the form of natural or synthetic capsaicin (PAVA)
  • PAVA capsaicin
  • a color or an odorant, or simply water can also be used as an irritant. Both air and nitrogen, for example, are suitable as gases.
  • a first development of the irritant spray device according to the invention is characterized in that the period during which only the gas is passed through the dispensing device can be set.
  • An essential property of the rinsing device can thus be adapted to the specific requirements of an irritant spray device. For example, a different period of time should be selected when using a liquid irritant than when using a powdery irritant.
  • the period to be selected can also depend on the pressure of the gas which is passed through the dispensing device. At a high Pressure will suffice for a shorter period of time than at a relatively low pressure.
  • the period begin immediately with the end of the delivery of the irritant. There is therefore no time gap between the end of the delivery of the irritant and the start of the passage of gas through the delivery device. In this way, the passage of gas through the delivery device can also be terminated earlier, so that the irritant spray device is also available earlier for the next delivery of irritant.
  • the rinsing device comprises a pressure source for providing the gas, the pressure source being connected to the dispensing device via a first fluid line, a first shut-off valve being arranged in the first fluid line.
  • the irritant spray device comprises an irritant storage container which has an outlet which is connected via a second fluid line to the first fluid line at a point upstream from the first shut-off valve, a second shut-off valve being arranged in the second fluid line and wherein the post-rinsing device comprises a delay device that is configured such that when the delivery of the irritant ends, the first shut-off valve closes after the second shut-off valve. It is advantageous if the irritant storage container itself is under pressure and thus the irritant present in the second fluid line is also under pressure.
  • the two shut-off valves are opened, preferably simultaneously, so that the irritant is introduced via the second fluid line into the first fluid line, in which only gas flows up to this point. It is possible, for example, that a mixing chamber is present at this point of the merging of the irritant stream with the gas stream, which causes the irritant to be atomized in the gas stream.
  • a mixture of gas and irritant then flows via the first shut-off valve to the delivery device, where it emerges.
  • the delivery of irritant is ended by initially only closing the second shut-off valve due to the provided delay device. From this point in time, only gas then flows via the first shut-off valve to the dispensing device, where it carries along any residues of irritant that may still be present and escapes together with them. The first shut-off valve is then closed, which also stops the gas from escaping.
  • first shut-off valve and the second shut-off valve are controlled by a same control element via a respective control input by means of a same control signal, and that the delay device is configured such that a control signal causing the two shut-off valves to close - relative to the second shut-off valve - is delayed to the first shut-off valve.
  • control element comprises a control valve which connects the two control inputs to a pressure source in a first switching position and to a low-pressure area in a second switching position
  • delay device comprises a flow restrictor which fluidly intervenes the switching valve and the control input of the first shut-off valve is arranged.
  • a check valve is arranged parallel to the flow restrictor, which blocks towards the control valve. The effect of this is that the opening of the first shut-off valve takes place immediately when irritant is released and is not delayed.
  • the irritant spray device has a manual trigger by means of which release of the irritant can be triggered and ended by the dispensing device.
  • the irritant spray device has a switch-off device which stops the release of irritant after a time from actuation of the trigger, even if the trigger is still actuated. This prevents the panicked user from spraying an unnecessarily large amount of irritant without it having an effect. This in turn prevents the supply of irritant from being used up prematurely.
  • the time that is available to the user to spray the irritant to use is extended by this training. It goes without saying that the spraying process does not necessarily have to last until the time has elapsed, but can also be ended “manually” before the end of the time by the user releasing the trigger.
  • the “rinsing” provided according to the invention can always take place automatically, that is to say both when the spraying process is ended automatically and manually, and also when the spraying process is ended automatically or only when the spraying process is ended manually.
  • a valve which is connected manually to a trigger can be present in the dispensing device and closes the dispensing device in a gas-tight manner as soon as the user releases the trigger.
  • the irritant spray device 10 comprises a dispensing device in the form of a dispensing gun 12 and a storage and control section 14.
  • the dispensing gun 12 is connected to the storage and control section 14 via a plurality connected by pneumatic lines 16.
  • the storage and control section 14 is designed as a backpack-like knapsack which is carried on the back by the user.
  • the dispensing gun 12 includes a user-actuated trigger 15 for triggering the delivery of an irritant.
  • the storage and control section 14 essentially comprises the following components: first of all, a pressure source 18 should be mentioned, which can be, for example, a compressed air container.
  • the pressure source 18 is shown in the figure surrounded by a storage container 20 for storing an irritant. In fact, however, it is arranged on the outside of the irritant spray device 10, so that it can be exchanged as a whole in the manner of a cartridge.
  • a suitable irritant is, for example, a mixture which comprises, for example, a liquid carrier and contains the actual irritant, for example an irritant in the form of natural or synthetic capsaicin. Synthetic capsaicin is also known as "PAVA".
  • An atomized irritant jet emerging from the dispensing gun 12 carries in Figure 1 overall reference number 22.
  • a switch-off device 24 which stops the dispensing of irritant from the storage container 20 by the dispensing gun 12 after a time from the start of the dispensing even when the trigger 15 is actuated.
  • the irritant sprayer 10 also includes various valves, the function of which is described in more detail with reference to FIG Figure 2 will be explained.
  • a first control valve which is accommodated in the storage and control section 14, carries the reference numeral 26, a second control valve also present there, the reference numeral 28.
  • a first shut-off valve is accommodated in the area of the dispensing gun 12 and bears the reference number 30.
  • a second shut-off valve is in turn arranged in the storage and control section 14 and is designated by 32.
  • a pressure reducer 34 is arranged on the output side of the pressure source 18, and a mixing chamber 36 is integrated into the dispensing gun 12.
  • a pneumatic line 16 A leads from the pressure reducer 34 via a first additional pressure reducer 37 A to the mixing chamber 36.
  • an irritant line 16 B leads to the mixing chamber 36.
  • the second control valve 28 and the first shut-off valve 30 are connected to one another by a pneumatic line 16 C.
  • An output of a switching valve 38 which is mechanically coupled to the trigger 15, is connected by a pneumatic line 16 F to an input of the first control valve 26.
  • the manometer 39 is connected to the pressure source 18 via a pneumatic line 16 E.
  • a pneumatic line 16 D also leads to an inlet of the first control valve 26.
  • the trigger 15 is mechanically coupled to the switching valve 38.
  • This has two inputs, one of which is connected to the pressure reducer 34 via the second additional pressure reducer 37 B and the pneumatic line 16 H and the other to a low pressure region 40.
  • the low pressure area 40 can, for example, the outside environment his.
  • an outlet of the switching valve 38 is connected to the low pressure region 40.
  • the output of the switching valve 38 leads to the shutdown device 24, namely there on the one hand via the pneumatic line 16 F to a first input of the first control valve 26, and on the other hand via the pneumatic line 16 D and an adjustable first flow throttle 42 to a pressure accumulator 44, which again is connected to a control input of the first control valve 26.
  • the output of the first control valve 26 is connected to the switching valve 38. If the pressure at the control input exceeds a limit value, the first control valve 26 is controlled into its second position. In this, the output of the first control valve 26 is connected to a second input, which also leads to the low pressure region 40.
  • a non-return valve 46 is connected in parallel to the first flow restrictor 42 and blocks towards the pressure accumulator 44.
  • An output of the first control valve 26 leads to a first input of an OR gate 47, the output of which is connected to a control input of the second control valve 28.
  • a first input of the second control valve 28 is connected to the pressure reducer 34, a second input to the low pressure region 40. In the spring-loaded rest position of the second control valve 28, its output is connected to the unpressurized second input. If there is an increased pressure at the control input, the first input connected to the pressure reducer 34 is connected to the output.
  • the output of the second control valve 28 leads to an adjustable second flow throttle 48 and from there to a control input of the first shut-off valve 30. This is closed in the spring-loaded rest position and is opened when an increased pressure is present at its control input.
  • the outlet of the first shut-off valve 30 is connected to the dispensing gun 12.
  • a check valve 50 is arranged parallel to the second flow restrictor 48 and blocks towards the outlet of the second control valve 28.
  • the output of the second shut-off valve 28 also leads to a control input of the second shut-off valve 32.
  • the second shut-off valve 32 is closed in its spring-loaded rest position and is opened when an increased pressure is present at its control input.
  • the outlet of the second shut-off valve 32 also leads via the irritant line 16 B to the mixing chamber 36.
  • the inlet of the second shut-off valve 32 is connected to the storage container 20 in which the irritant is stored. This is in turn permanently connected to the pressure reducer 34 via the pneumatic line 16G.
  • a second input of the pneumatic OR element is also connected to the pressure reducer 34 via a manual valve 52.
  • the irritant sprayer 10 operates as follows: in the Figure 2 shown rest position, the trigger 15 is not actuated. The output of the switching valve 38 is thus connected to the low pressure region 40 and is therefore depressurized.
  • the first control valve 26 is in its rest position. In this is the output of the first control valve 26 with the Low pressure area 40 connected and thus depressurized, and thus the control input of the second control valve 28 is depressurized.
  • its outlet is connected to the unpressurized inlet (leading to the low-pressure region 40), so that the two control inlets of the first and second shut-off valves 30 and 32 are also depressurized. These are therefore closed.
  • the connection from the storage container 20 to the mixing chamber 36 is blocked, and the connection from the mixing chamber 36 to the dispensing gun 12 is blocked. So no irritant 22 is released.
  • the output of the switching valve 38 is connected to the second input, which is connected to the pressure source 18 via the pressure reducer 34 and the second additional pressure reducer 37 B.
  • the increased pressure set by the pressure reducer 34 is now present at the outlet of the switching valve 38.
  • this increased pressure is now also present at the control input of the second control valve 28, whereby its output is connected to its first input, that is to say also to the output of the pressure reducer 34.
  • the high pressure at the outlet of the second control valve 28 is now transmitted via the check valve 50 directly to the control inlet of the first shut-off valve 30 and - if necessary via a flow restrictor which is present but not shown there to compensate for differences in length of the pneumatic lines - also to the control inlet of the second shut-off valve 32 ,
  • the storage container 20 is fluidly connected to the mixing chamber 36.
  • the irritant 22 in the mixing chamber 36 can flow through the pneumatic line 16
  • a supplied compressed air is mixed, for example atomized and dispensed via the dispensing gun 12.
  • the outlet of the switching valve 38 is not only connected to the first inlet of the first control valve 26, but also to the pressure accumulator 44 of the shutdown device 24 via the flow restrictor 42.
  • the pressure accumulator 44 begins to fill, specifically with a filling speed predetermined by the first flow restrictor 42.
  • the pressure in the pressure accumulator 44 thus gradually increases. If the pressure in the pressure accumulator 44 and thus the pressure at the control input of the first control valve 26 reaches a limit value, the first control valve 26 switches and the output of the first control valve 26 is connected to the depressurized second input.
  • the pressure at the outlet of the first control valve 26 thus drops suddenly, and consequently also the pressure at the control inlet of the second control valve 28. This therefore switches to its spring-loaded rest position, in which its outlet is depressurized.
  • the two control inputs of the first and second shut-off valves 30 and 32 are also depressurized, as a result of which they close.
  • the second flow restrictor 48 Due to the second flow restrictor 48, however, the control input of the second shut-off valve 32 is first depressurized, and the control input of the first shut-off valve 30 is only depressurized in time thereafter. The second shut-off valve 32 thus closes in time before the first shut-off valve 30.
  • the second flow restrictor 48 can also be referred to as a "delay device”.
  • the introduction of irritant into the mixing chamber 36 is stopped first, whereas gas continues to flow from the pneumatic line 16 A into the mixing chamber 36 and from there through the still open first shut-off valve 30 to the dispensing gun 12. Remains of irritant that are still present between the mixing chamber 36 and a nozzle of the dispensing gun 12 are thus entrained by the gas stream and conveyed to the outside, ie this area is “rinsed” or cleaned. Only when the first shut-off valve 30 also closes does the gas flow end.
  • the second flow restrictor 48 is dimensioned or set such that the period during which only gas but no irritant flows through the dispensing device 12 is only very short, that is to say it is essentially a sudden flow pulse. It can also be seen that the period during which only gas flows through the delivery device 12 begins immediately with the end of the delivery of the irritant - namely the closing of the second shut-off valve 32.
  • the pressure source 18, the first shut-off valve 30, the second shut-off valve 32 and the second flow restrictor 48 belong to or form a rinsing device.
  • the rinsing device is generally designated by reference numeral 54.
  • dispensing of irritant by the dispensing gun 12 is ended, specifically because of the switch-off device 24 even if the user continues to hold the trigger 15.
  • the time from the start of delivery to the end is determined by the filling speed of the pressure accumulator 44, and thus ultimately by the setting of the first flow restrictor 42.
  • the pressure accumulator 44 and the first Flow restrictor 42 thus form a pneumatic timing element.
  • the output of the switching valve 38 is connected to the unpressurized low-pressure region 40.
  • the pressure accumulator 44 is now suddenly emptied via the check valve 46, as a result of which the control input of the first control valve 26 is depressurized. This therefore switches back to its rest position, in which its first input, which is connected to the switching valve 38, is connected to the output. If the user actuates the trigger 15 again, the delivery of irritant is started again immediately.
  • Irritant spray device 10 shown is one with a pneumatic control.
  • the shutdown device and / or the delay device work or work electronically.
  • An electronic counter counts the time from when the trigger is actuated and closes the electromagnetically actuated valve after a preset time. When the user releases the trigger, the counter is reset.
  • both the basic principle of the shutdown device described above and the basic principle of the rinsing device described above are not limited to use with an irritant sprayer which has a storage and control section which is designed as a separate knapsack-like backpack is. Rather, such a switch-off device and / or rinsing device is conceivable even with a relatively small mobile spray can as a system integrated into this.
  • the mixing chamber and the first shut-off valve can also be accommodated in the storage and control section.
  • the rinsing device described above can also be present in an irritant spray device which does not have a switch-off device.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Nozzles (AREA)

Claims (10)

  1. Appareil de pulvérisation de substance irritante (10) avec un dispositif d'émission (12) destiné à émettre une substance irritante (22) et un dispositif de nettoyage, caractérisé en ce que le dispositif de nettoyage est réalisé sous la forme d'un dispositif de rinçage (54) qui nettoie de manière automatique le dispositif d'émission après achèvement de l'émission de la substance irritante en faisant passer un gaz à travers le dispositif d'émission (12) pendant une certaine période.
  2. Appareil de pulvérisation de substance irritante (10) selon la revendication 1, caractérisé en ce que la période peut être ajustée.
  3. Appareil de pulvérisation de substance irritante (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que la période commence immédiatement à la fin de l'émission de la substance irritante.
  4. Appareil de pulvérisation de substance irritante (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que le dispositif de rinçage (54) comprend une source de pression (18) destinée à fournir le gaz, dans lequel la source de pression (18) est reliée au dispositif d'émission (12) par l'intermédiaire d'une première conduite de fluide (16A), dans lequel une première vanne d'arrêt (30) est agencée dans la première conduite de fluide (16A).
  5. Appareil de pulvérisation de substance irritante (10) selon la revendication 4, caractérisé en ce qu'il comprend un récipient de stockage de substance irritante (20) qui présente une sortie reliée par l'intermédiaire d'une seconde conduite de fluide (16B) à la première conduite de fluide (16A) au niveau d'un point (36) situé en amont de la première vanne d'arrêt (30), dans lequel une seconde vanne d'arrêt (32) est agencée dans la seconde conduite de fluide (16B), et dans lequel le dispositif de rinçage (54) comprend un dispositif de retard (48) qui est configuré de sorte que la première vanne d'arrêt (30) se ferme après la seconde vanne d'arrêt (32) lorsque s'achève l'émission de la substance irritante.
  6. Appareil de pulvérisation de substance irritante (10) selon la revendication 5, caractérisé en ce que la première vanne d'arrêt (30) et la seconde vanne d'arrêt (32) sont commandées au moyen d'un même signal de commande par l'intermédiaire d'une entrée de commande respective d'un même organe de commande (28), et en ce que le dispositif de retard (48) est configuré de sorte qu'un signal de commande provoquant une fermeture des deux vannes d'arrêt (30, 32) est transmis de manière retardée à la première vanne d'arrêt (30).
  7. Appareil de pulvérisation de substance irritante (10) selon la revendication 6, caractérisé en ce que l'organe de commande comprend une vanne de commande (28) qui relie les deux entrées de commande à une source de pression (18) dans une première position de commutation et à une région de basse pression (40) dans une seconde position de commutation, et en ce que le dispositif de retard comprend un limiteur de débit (48) qui est agencé de manière fluidique entre la vanne de commutation (28) et l'entrée de commande de la première vanne d'arrêt (30).
  8. Appareil de pulvérisation de substance irritante (10) selon la revendication 7, caractérisé en ce qu'un clapet anti-retour (50) se fermant en direction de la vanne de commande est agencé de manière fluidiquement parallèle au limiteur de débit (48).
  9. Appareil de pulvérisation de substance irritante (10) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'il présente un déclencheur (15) grâce auquel une émission de la substance irritante à travers le dispositif d'émission (12) peut être déclenchée et achevée.
  10. Appareil de pulvérisation de substance irritante (10) selon la revendication 9, caractérisé en ce qu'il comprend un dispositif de coupure (24) qui achève une émission de substance irritante après un certain temps à compter de l'actionnement du déclencheur (15) même si le déclencheur (15) est actionné plus longuement.
EP16183690.3A 2015-08-11 2016-08-11 Pulverisateur de matiere irritante Active EP3130878B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015215263.4A DE102015215263A1 (de) 2015-08-11 2015-08-11 Wirkstoff-Sprühgerät

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EP3130878A1 EP3130878A1 (fr) 2017-02-15
EP3130878B1 true EP3130878B1 (fr) 2019-12-18

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EP (1) EP3130878B1 (fr)
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DE202008011570U1 (de) * 2008-08-29 2008-12-24 Hne Technologie Ag Universelles Drucksprühgerät für Polizei- und Sondereinsatzkräfte mit integriertem Schlag- und Stichschutz

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