EP3363956B1 - Dispositif de rincage automatique - Google Patents

Dispositif de rincage automatique Download PDF

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Publication number
EP3363956B1
EP3363956B1 EP17156677.1A EP17156677A EP3363956B1 EP 3363956 B1 EP3363956 B1 EP 3363956B1 EP 17156677 A EP17156677 A EP 17156677A EP 3363956 B1 EP3363956 B1 EP 3363956B1
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EP
European Patent Office
Prior art keywords
pipe
housing
flushing device
unit
connector
Prior art date
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Active
Application number
EP17156677.1A
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German (de)
English (en)
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EP3363956A1 (fr
Inventor
Beat Aebi
Markus LÜTHY
Martin Alder
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Geberit International AG
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Geberit International AG
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.)
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Publication date
Application filed by Geberit International AG filed Critical Geberit International AG
Priority to EP17156677.1A priority Critical patent/EP3363956B1/fr
Priority to DK17156677.1T priority patent/DK3363956T3/da
Publication of EP3363956A1 publication Critical patent/EP3363956A1/fr
Application granted granted Critical
Publication of EP3363956B1 publication Critical patent/EP3363956B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B7/00Water main or service pipe systems
    • E03B7/07Arrangement of devices, e.g. filters, flow controls, measuring devices, siphons or valves, in the pipe systems
    • E03B7/08Arrangement of draining devices, e.g. manual shut-off valves

Definitions

  • the present invention relates to a device for automatically rinsing water pipes according to the preamble of claim 1.
  • water pipes are not used for a longer period of time, for example for several days or weeks, the water can be contaminated due to physical, chemical and biological processes.
  • the multiplication of Pseudomonas or other bacteria in the drinking water of pipe systems is known.
  • the problem of contamination is particularly in buildings that are not used for a long time. During this time, the water in the pipes stagnates. This can be the case, for example, in schools, universities, hotels, barracks, stadiums and the like.
  • Contamination of the water through stagnation can be avoided by regularly rinsing the water supply system with a so-called hygiene flush.
  • the taps of the pipe system can be opened and closed periodically by one person. Since this is comparatively time-consuming and corresponding personnel are required, devices have also been proposed with which line systems can be automatically flushed by means of a control.
  • the DE 20 2014 008946 U1 discloses a device with a siphon, in which a bell element is inserted unsecured.
  • the present invention has for its object a device for to specify automatic rinsing, which is characterized by a simple mechanical structure.
  • the device should be designed to be assembled and cleaned as simply as possible with respect to a drainage housing.
  • the individual parts of the device should be secured against one another as simply as possible.
  • a flushing device for automatically flushing water pipes comprises a valve unit and a drain housing unit with an odor trap that can be connected to the valve unit.
  • the valve unit comprises an inlet connector for connection to the water line, an outlet connector, a valve arranged between the inlet connector and the outlet connector and a valve control.
  • the valve can be used to open or close the water channel between the inlet nozzle and outlet nozzle.
  • the outlet port protrudes into the drain housing unit and releases water into the drain housing unit.
  • the drain housing unit has an upper housing part and a lower housing part, the odor trap being integrated on the upper housing part and / or on the lower housing part.
  • the direct integration of the odor trap on the lower housing part and / or on the lower housing part has the advantage that the drain housing unit can be made more compact.
  • the lower housing part has a pipe socket, the odor trap being at least partially integrated in the pipe socket.
  • the water to be discharged flows from the outlet connection via the drain housing unit into the pipe connection.
  • the integration of the odor trap into the pipe socket has the advantage that the available interior of the drain housing unit can be optimally used, which minimizes the size of the drain housing unit.
  • the pipe socket is particularly preferably designed to be shortenable to the desired length.
  • the odor trap is provided by an inner pipe leading to the outlet of the pipe socket with a pipe inlet and a bell element.
  • the bell element extends over the inner tube and provides a passage gap between the inner tube and the bell element and one in relation to the tube inlet in the installed position lower entrance ready. Water is led from the inlet through the passage gap to the pipe inlet. The water builds up in the passage gap, which provides the odor trap.
  • the bell element is preferably separable from the inner tube. This means that the bell element can be removed from the inner tube during a cleaning process, so that the odor trap can be cleaned.
  • the bell element comprises an upwardly projecting stop element which, in the installed position, bears against a stop surface on the upper part of the housing, so that the bell element lies firmly in relation to the drain housing unit in the installed position. In this way, an unintentional displacement of the bell element can be avoided, no separate securing means for mechanically securing the bell element having to be provided.
  • the inner pipe is preferably arranged completely in the pipe socket, the pipe socket, viewed in the installed position, extending below the inner pipe with an inner diameter which corresponds to at least an inner diameter of the inner pipe or is larger than an inner diameter of the inner pipe.
  • the inner pipe is preferably enclosed by the pipe socket in such a way that an annular gap results between the pipe socket and the inner pipe, into which the bell element then projects.
  • the lower housing part and the upper housing part are preferably connected to one another via a groove and comb connection.
  • the two housing parts can be easily connected to one another or separated from one another. This has a great advantage in assembly and cleaning work because the interior is easily accessible.
  • the lower housing part and the upper housing part are preferably connected to one another via a latching connection.
  • the snap-in connection can also be combined with the tongue and groove connection.
  • the snap connection is then part of the groove and ridge connection.
  • the lower housing part and / or the upper housing part preferably have a rear surface, the two rear surfaces preferably lying in a common plane in the installed position.
  • both housing parts each have a rear surface, two surfaces then being provided, by means of which the installer can fasten the flushing device to a wall.
  • the rear surface is preferably designed as flat surfaces so that, for example, a double-sided adhesive tape can be used.
  • the lower housing part and / or the upper housing part preferably comprise fastening points for fastening the drain housing unit to a wall.
  • fastening points for fastening the drain housing unit to a wall.
  • a screw or other fastening means can be connected to a wall via these fastening points.
  • the drain housing unit preferably comprises a snap-in receptacle, in particular on the upper part of the housing, in which the valve unit can be snapped in place.
  • the snap-in receptacle is particularly preferably arranged on the upper housing part.
  • the drain housing unit preferably comprises an inlet opening, the outlet connector extending through the inlet opening into the drain housing unit.
  • the inlet opening is preferably arranged on the upper housing part.
  • the outlet connector preferably ends in the interior of the drain housing unit, so that water can be released from the outlet connector into the interior of the drain housing unit.
  • the drain housing unit preferably comprises a catch basin with an overflow edge.
  • the catch basin and the overflow edge are preferably provided by the lower housing part.
  • the outlet port of the valve unit is in the Collection basin directed. In the installed position, the outlet nozzle is higher than the overflow edge.
  • the pipe socket preferably connects to the collecting basin.
  • the pipe socket extends from the collecting basin as seen from below the collecting basin and water can flow into the pipe socket from the collecting basin.
  • the overflow edge is preferably covered by the upper housing part, an intermediate space being provided between the upper housing part and the overflow edge, through which water can be led away from the drain housing unit.
  • the overflow edge is thus protected by the upper housing part.
  • the valve control is preferably integrated in a control unit.
  • the valve can be controlled with the control unit.
  • An indentation is provided for the control unit on the drain housing unit, in particular on the upper housing part.
  • FIG. 1 is a perspective view of a flushing device 1 for automatic Flushing water pipes shown.
  • the flushing device 1 comprises a valve unit 2 and a drain housing unit 7.
  • the valve unit 2 is in use connected to the end of a water pipe, so that the water pipe can be emptied in a controlled manner. This means that the valve unit 2 essentially serves to control the water outflow from the water line connected to the flushing device 1.
  • the drain housing unit 7 essentially serves to discharge the water into a waste water line and essentially provides the fluidic link between the waste water line and the valve unit 2. Furthermore, the drain housing unit 7 is preferably used for the mechanical mounting of the valve unit 2.
  • the valve unit 2 comprises an inlet connection 3 for connection to the water line, an outlet connection 4, a valve arranged between the inlet connection 3 and the outlet connection 4 and a valve control 6.
  • the inlet connection 3 is firmly connected to the end of a water line. The water then flows from the inlet nozzle 3 to the outlet nozzle 4 when the valve 5 is open. When the valve is closed, the connection between inlet connector 3 and outlet connector 4 is blocked and no water can be drained from the water pipe.
  • the drain housing unit 7 is connected to the valve unit 2 and comprises an odor trap 8.
  • the drain housing unit 7 can be connected to a sewage network.
  • the odor trap 8 prevents odors from the sewage network from penetrating into the room in which the drain housing unit 7 is mounted.
  • the outlet connector 4 projects into the drain housing unit 7 and releases the water into the drain housing unit 7. The water then leaves the drain housing unit 7 after passing the odor trap 8 of the drain housing unit 7.
  • the drain housing unit 7 comprises an upper housing part 9 and a lower housing part 10.
  • Upper housing part 9 and lower housing part 10 are preferably formed separately from one another and can be connected to each other. In the state of use, the two housing parts 9, 10 are in contact with one another.
  • the odor trap 8 is integrated on the lower housing part 10.
  • an integration on the upper housing part 9 would also be conceivable.
  • the integration on one of the housing parts 9, 10 or on the drain housing unit 7 has the advantage that the drain housing unit 7 can be made compact and is easy to manufacture.
  • the lower housing part 10 has a pipe socket 11.
  • the water can be led away from the drain housing unit 7 via the pipe socket 11.
  • the pipe socket 11 can be connected, for example, to a sewage pipe.
  • the pipe socket 11 is designed such that the odor trap 8 is at least partially integrated in the pipe socket 11. As a result, the compactness of the drain housing unit 7 can be increased further.
  • the pipe socket 11 is preferably designed such that it can be shortened to the desired length. This means that the pipe socket 11 is cut to length.
  • the pipe socket 11 in the embodiment shown has a pipe socket extension 31 which can be shortened by means of a saw or a cutting tool.
  • the odor trap 8 is arranged with respect to the pipe socket attachment 31 such that it does not extend into the pipe socket attachment 31. Thus, the shortening of the pipe socket extension 31 is harmless with regard to the function of the odor trap 8.
  • the odor trap 8 is provided by a pipe 12 leading to the outlet 17 of the pipe socket 11 with a pipe inlet 13 and a bell element 14.
  • the bell element 14 can be put over the inner tube 12.
  • the inner tube 12 extends from a partition wall 32 which extends into the pipe socket 11.
  • the inner ear 12 extends from said partition wall 32 in the installed position upwards and ends opposite the partition wall 32 with said pipe inlet 13.
  • Between the bell element 14, which extends over the The water can reach the pipe inlet 13 of the inner pipe 12 via this passage gap 15 between the inner pipe 12 and the bell element 14, so that it can then flow through the inner pipe 12.
  • An inlet 16 is provided in the lower region, that is to say in the vicinity of the partition wall 32. The water can be led from the inlet 16 to the passage gap 15.
  • the entrance 16 is delimited by the partition wall 32 and the lower end of the bell element 14.
  • the bell element 14 is a separate part with respect to the inner tube 12 and also with respect to the two housing parts 9, 10 and can simply be put over the inner tube 12 by hand. This makes it easy to clean the odor trap 8.
  • the bell element 14 further comprises a stop element 18 which projects upwards in the installed position.
  • the stop element 18 which projects upwards is in contact with the upper housing part 9 with a stop surface 19. This ensures that the bell part 14 cannot detach from the inner tube 12 in the installed position and is therefore fixed to the drain housing unit 7. In this respect, the bell element 14 is held securely on the inner tube 12 via this contact between the stop element 18 and the stop surface 19.
  • the bell element 14 comprises a peripheral side wall 35 which is closed on one side with an end wall 36.
  • a support 13 is arranged on the inside, with which the bell element 14 stands on the inner tube 12, so that water can flow into the tube inlet 13 between the end wall 36 and the end of the inner tube 12.
  • the inner pipe 12 lies completely within the pipe socket 11. That is, the inner pipe 12 does not extend out of the pipe socket 11.
  • the pipe socket 11 extends, seen in the installed position, below the inner pipe 12 with an inner diameter D11, which inner diameter D11 corresponds at least to the outer diameter D12 of the inner pipe 12 or which, as in the embodiment shown, is larger than the inner diameter D12 of the inner pipe 12.
  • In the shown embodiment defines the inner diameter D11 essentially through the pipe socket attachment 31.
  • the inner pipe 12 is enclosed by the pipe socket 11 such that an annular gap results between the pipe socket 11 and the inner pipe 12, into which the bell element 14 protrudes.
  • the lower housing part 10 and the upper housing part 9 are in contact with one another via a tongue and groove connection 20, 21.
  • the lower housing part 10 can be inserted into the upper housing part 10 in the direction of arrow P.
  • the groove and comb connection 20, 21 preferably further comprises a latching connection with which the lower housing part 9 and the upper housing part 10 can be locked together.
  • the latching connection can also be used on its own, without a tongue and groove connection 20, 21.
  • the lower housing part 10 and the upper housing part 9 each comprise a rear surface 22 Figure 2 it is shown that the two rear surfaces 22, seen in the installed position, are preferably in a common plane E.
  • the drain housing unit 7 can thus be connected to a flat wall, in which case both the rear surface 22 of the housing part 10 and the rear surface 22 of the housing upper part 9 are in flat contact with the wall.
  • an adhesive tape can lie between the drain housing unit 7 and the wall over the two rear surfaces 22, so that the drain housing unit 7 can be glued to the wall.
  • the lower housing part 10 and also the upper housing part 9 comprise various fastening points 23 in the embodiments shown.
  • the fastening housing unit 7 can be used to screw the drain housing unit 7 to a wall, for example with a screw or another fastening means.
  • the drain housing unit 7 comprises, as in FIG Figure 3 shown, a latching receptacle 24.
  • the latching receptacle 24 is arranged on the upper housing part 9 and the valve unit 2 can be connected to the valve unit 2 via the latching receptacle 24.
  • the catch receptacle 24 comprises a receptacle frame 33 in which the valve unit 2 can be snapped into place.
  • various locking means 34 are arranged in the area of the receiving space 33, which engage in a locking connection with the valve unit 2.
  • the upper housing part 9 comprises an inlet opening 25 below the receiving space 33.
  • the inlet opening 25 penetrates the wall of the upper housing part 9, so that access to the interior of the drain housing unit can be created.
  • the outlet port 4 extends through the inlet opening 25 into the drain housing unit 7. This stretching can be done in the sectional drawing according to the Figure 2 be recognized well.
  • the drain housing unit 7 also includes a collecting basin 26 with an overflow edge 27.
  • the outlet connection 4 of the valve unit 2 is directed into the collecting basin 26.
  • the outlet connection 4 releases water into the collecting basin 26, from where it can then be supplied to the pipe connection 11 via the odor trap.
  • the overflow edge 27 provides an overflow from the catch basin 26, so that if the odor trap 8 becomes blocked, the water can run out of the drain housing 7.
  • the outlet port 4 is seen higher in the installed position than the overflow edge 27. In the Figure 2 this is indicated with the reference symbol X. This ensures that no water can flow back towards the outlet nozzle 4 if the pipe closure 8 is clogged.
  • the pipe socket 11 connects to the collecting basin 26.
  • the collecting basin 26 is part of the lower housing part 10 and the upper housing part 9 essentially covers the collecting basin 26.
  • the upper housing part 9 covers the overflow edge 27, an intermediate space 28 being provided between the upper housing part 9 and the overflow edge 27, through which space water can be led away from the drain housing unit.
  • the catch basin 26 is, as in the Figure 3 shown, preferably surrounded by side walls 37.
  • the side walls 37 are covered by the housing upper part 9 when the the two housing parts are connected.
  • the valve unit further comprises a valve control 6.
  • the valve control 6 serves to control the valve 5 between the inlet connection 3 and the outlet connection 4 accordingly.
  • An indentation 29 is provided on the drain housing unit 7, here on the upper housing part 9, which provides space for the valve control 6.
  • Drain housing unit 30th Annular gap 8th Odor trap 31 Pipe socket approach 9 Upper part of the housing 32 partition wall 10th Lower part of the housing 33 Recording room 11 Pipe socket 34 Locking means 12th Inner tube 35 Side wall 13 Pipe entry / stop surface 36 Front wall 14 Bell element 37 side walls 15 Passage gap E level 16 entry 17th Outlet 18th Stop element 19th Stop surface 20th Groove 21 Comb 22 Back surface 23 Attachment points

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Sink And Installation For Waste Water (AREA)

Claims (15)

  1. Dispositif de rinçage (1) pour le rinçage automatique de canalisations d'eau comprenant
    une unité de soupape (2) avec une tubulure d'entrée (3) pour le raccordement à la canalisation d'eau, une tubulure de sortie (4), une soupape (5) disposée entre la tubulure d'entrée (3) et la tubulure de sortie (4) et une commande de soupape (6) et
    une unité de boîtier d'écoulement (7) pouvant être connectée à l'unité de soupape (2), avec un coupe-odeur (8),
    la tubulure de sortie (4) pénétrant dans l'unité de boîtier d'écoulement (7) et délivrant l'eau dans l'unité de boîtier d'écoulement (7),
    l'unité de boîtier d'écoulement (7) présentant une partie supérieure de boîtier (9) et une partie inférieure de boîtier (10), la partie inférieure de boîtier (10) présentant un raccord de tuyau (11), le coupe-odeur (8) étant intégré au niveau de la partie inférieure de boîtier (10) et au moins en partie dans le raccord de tuyau (11), et
    le coupe-odeur (8) étant fourni par un tuyau intérieur (12) conduisant à la sortie (17) du raccord de tuyau (11), avec une entrée de tuyau (13) et un élément en cloche (14), lequel élément en cloche (14) s'étend sur le tuyau intérieur (12) et fournit un interstice de passage (15) entre le tuyau intérieur (12) et l'élément en cloche (14) ainsi qu'une entrée (16) située à un endroit plus bas, par rapport à l'entrée de tuyau (13) dans la position d'installation, de l'eau provenant de l'entrée (16) étant guidée à travers l'interstice de passage (15) jusqu'à l'entrée de tuyau (13), l'élément en cloche (14) comprenant une paroi latérale périphérique (35) qui est fermée d'un côté avec une paroi frontale (36), un appui (13) étant disposé du côté intérieur dans la région de la paroi frontale, avec lequel l'élément en cloche (14) repose sur le tuyau intérieur (12) de telle sorte que l'eau puisse circuler entre la paroi frontale (36) et l'extrémité du tuyau intérieur (12) dans l'entrée de tuyau (13), caractérisé en ce que
    l'élément en cloche (14) comprend un élément de butée (18) saillant vers le haut, qui, dans la position d'installation, s'applique contre une surface de butée (19) au niveau de la partie supérieure de boîtier (9) de telle sorte que l'élément en cloche (14), dans la position d'installation, soit appliqué fixement par rapport à l'unité de boîtier d'écoulement (7).
  2. Dispositif de rinçage (1) selon la revendication 1, caractérisé en ce que l'élément en cloche (14) peut être séparé du tuyau intérieur (12).
  3. Dispositif de rinçage selon l'une quelconque des revendications précédentes, caractérisé en ce que le tuyau intérieur (12) est disposé complètement dans le raccord de tuyau (11), le raccord de tuyau (11), vu dans la position d'installation, s'étendant en dessous du tuyau intérieur (12) avec un diamètre intérieur (D11), lequel diamètre intérieur (D11) correspond au moins à un diamètre intérieur (D12) du tuyau intérieur (12) ou est supérieur à un diamètre intérieur (D12) du tuyau intérieur (12).
  4. Dispositif de rinçage selon l'une quelconque des revendications précédentes, caractérisé en ce que le tuyau intérieur (12) est entouré par le raccord de tuyau (11) de telle sorte qu'entre le raccord de tuyau (11) et le tuyau intérieur (12) soit formé un interstice annulaire (30) dans lequel pénètre l'élément en cloche (14).
  5. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la partie inférieure de boîtier (10) et la partie supérieure de boîtier (9) sont en liaison l'une avec l'autre par le biais d'une liaison à rainure et languette (20, 21) et/ou en ce que la partie inférieure de boîtier (10) et la partie supérieure de boîtier (9) sont en liaison l'une avec l'autre par le biais d'une connexion par encliquetage.
  6. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la partie inférieure de boîtier (10) ou la partie supérieure de boîtier (9) présente une surface arrière (22), les deux surfaces arrière, dans la position d'installation, étant de préférence situées dans un plan commun (E).
  7. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes 1 à 5, caractérisé en ce que la partie inférieure de boîtier (10) et la partie supérieure de boîtier (9) présentent une surface arrière (22), les deux surfaces arrière (22), dans la position d'installation, étant de préférence situées dans un plan commun (E).
  8. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la partie inférieure de boîtier (10) et/ou la partie supérieure de boîtier (9) comprennent des zones de fixation (23) pour la fixation de l'unité de boîtier d'écoulement (7) à une paroi.
  9. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de boîtier d'écoulement (7) comprend, notamment au niveau de la partie supérieure de boîtier (9), un logement d'encliquetage (24) dans lequel l'unité de soupape (2) peut être fixée par encliquetage.
  10. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de boîtier d'écoulement (7) présente une ouverture d'entrée (25), la tubulure de sortie (4) s'étendant à travers l'ouverture d'entrée (25) à l'intérieur de l'unité de boîtier d'écoulement (7).
  11. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de boîtier d'écoulement (7) comprend un bassin de réception (26) avec un rebord de trop-plein (27), la tubulure de sortie (4) de l'unité de soupape (2) étant orientée dans le bassin de réception (26), et la tubulure de sortie (4), vue dans la position d'installation, étant située plus haut que le rebord de trop-plein (27).
  12. Dispositif de rinçage (1) selon la revendication 11, caractérisé en ce que le raccord de tuyau (11) est raccordé au bassin de réception (26).
  13. Dispositif de rinçage (1) selon la revendication 11 ou 12, caractérisé en ce que le bassin de réception (26) fait partie de la partie inférieure de boîtier (10) .
  14. Dispositif de rinçage (1) selon l'une quelconque des revendications 11 à 13, caractérisé en ce que le rebord de trop-plein (27) est recouvert par la partie supérieure de boîtier (9), un espace intermédiaire (28) étant prévu entre la partie supérieure de boîtier (9) et le rebord de trop-plein (27), à travers lequel de l'eau peut être évacuée hors de l'unité de boîtier d'écoulement (7).
  15. Dispositif de rinçage (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que la commande de soupape est intégrée dans une unité de commande, un renfoncement (29) étant prévu pour l'unité de commande (6) au niveau de l'unité de boîtier d'écoulement (7), en particulier au niveau de la partie supérieure de boîtier (9).
EP17156677.1A 2017-02-17 2017-02-17 Dispositif de rincage automatique Active EP3363956B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP17156677.1A EP3363956B1 (fr) 2017-02-17 2017-02-17 Dispositif de rincage automatique
DK17156677.1T DK3363956T3 (da) 2017-02-17 2017-02-17 Indretning til automatisk skylning

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP17156677.1A EP3363956B1 (fr) 2017-02-17 2017-02-17 Dispositif de rincage automatique

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EP3363956A1 EP3363956A1 (fr) 2018-08-22
EP3363956B1 true EP3363956B1 (fr) 2020-05-06

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Publication number Priority date Publication date Assignee Title
EP3835495B1 (fr) 2019-12-09 2023-06-21 Rico Andres Dispositif de rinçage, système et procédé de mise en oeuvre d'un rinçage d'hygiène

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KR100918146B1 (ko) * 2009-05-01 2009-09-17 박희범 배수체
GB2478124A (en) * 2010-02-24 2011-08-31 City Water & Environmental Consultants Ltd Water Sanitary Management System
DE102011013955B4 (de) * 2011-03-14 2018-12-27 Viega Technology Gmbh & Co. Kg Verfahren zum selbsttätigen Spülen
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DK3363956T3 (da) 2020-07-20
EP3363956A1 (fr) 2018-08-22

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