EP3653801B1 - Siphon d'urinal - Google Patents

Siphon d'urinal Download PDF

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Publication number
EP3653801B1
EP3653801B1 EP19209799.6A EP19209799A EP3653801B1 EP 3653801 B1 EP3653801 B1 EP 3653801B1 EP 19209799 A EP19209799 A EP 19209799A EP 3653801 B1 EP3653801 B1 EP 3653801B1
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EP
European Patent Office
Prior art keywords
piece
sub
shell
tube
outlet
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Active
Application number
EP19209799.6A
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German (de)
English (en)
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EP3653801C0 (fr
EP3653801A1 (fr
Inventor
Angela Haas
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Individual
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Individual
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Publication of EP3653801A1 publication Critical patent/EP3653801A1/fr
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Publication of EP3653801C0 publication Critical patent/EP3653801C0/fr
Publication of EP3653801B1 publication Critical patent/EP3653801B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D13/00Urinals ; Means for connecting the urinal to the flushing pipe and the wastepipe; Splashing shields for urinals
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/28Odour seals
    • E03C1/284Odour seals having U-shaped trap
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D11/00Other component parts of water-closets, e.g. noise-reducing means in the flushing system, flushing pipes mounted in the bowl, seals for the bowl outlet, devices preventing overflow of the bowl contents; devices forming a water seal in the bowl after flushing, devices eliminating obstructions in the bowl outlet or preventing backflow of water and excrements from the waterpipe
    • E03D11/18Siphons
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D13/00Urinals ; Means for connecting the urinal to the flushing pipe and the wastepipe; Splashing shields for urinals
    • E03D13/005Accessories specially adapted for urinals

Definitions

  • the invention relates to a urinal siphon.
  • siphons are often integrated into the body of the corresponding toilet body.
  • siphons are also known which are interposed between the toilet body and the wastewater pipe and only act as an odor trap together with the toilet body's drain pipe.
  • the invention is based on the object of specifying an improved siphon.
  • the urinal siphon according to the invention has a tubular inlet piece (e.g. a sleeve) for connecting the urinal siphon to a drain line of a urinal and a tubular outlet piece (or also: “drain piece”) for connecting the urinal siphon to a sewer line.
  • the urinal siphon has a spiral-like, tubular intermediate piece which is interposed between the inlet piece and the outlet piece and which has at least two, preferably winding, sections each angled at 180 degrees.
  • the urinal siphon has a displacement sleeve, by means of which the outlet piece is fastened to the inlet piece or the intermediate piece so as to be displaceable relative to the inlet piece by an extension length.
  • At least the intermediate piece is originally formed from plastic.
  • the intermediate piece is formed in the area of the angled sections by a first and a second pipe part shell, which are placed one on top of the other transversely to a pipe axis of the intermediate piece, the two pipe part shells being connected to one another in a media-tight manner by means of plastic laser beam welding.
  • the intermediate piece is preferably injection molded.
  • a polyethylene optionally a crosslinked or crosslinkable polyethylene or a polypropylene is used.
  • the displacement sleeve is in particular a comparatively elongated sleeve, the tube length of which, into which a corresponding counterpart can be inserted, has a length of at least the extension length.
  • the length of the sliding sleeve is equal to the extension length plus a sealing length, which should enable a minimum overlap with the counterpart for sufficient sealing.
  • the intermediate piece Due to the turns covering a total of 360 degrees (i.e. the at least two angled sections), an odor trap is possible through the urinal siphon itself.
  • the intermediate piece can hardly be manufactured without lost shaping means, for example melting cores or the like. Therefore, the intermediate piece is partially cut open along the pipe axis direction and thus divided into two pipe shells.
  • plastic laser beam welding of these two pipe sections a high level of process reliability can be achieved compared to adhesive connections.
  • melt discharge from the welding zone is minimal, so that an inner surface of the intermediate piece can also be kept almost smooth. This reduces the risk that waste water will stick to unevenness in the inner surface and lead to the pipe being blocked in the long term.
  • friction-based processes are less suitable for forming the connection in the case of polyethylene or polypropylene.
  • the intermediate piece can be designed as a “real” spiral, i.e. h can be a curve with a constantly increasing radius (especially around the inlet section or the outlet section).
  • the (at least two) angled sections mentioned above are spaced apart from one another by a straight (tube) section.
  • the displacement sleeve is formed in one piece, in particular monolithically (i.e. made from the same material and in one production step without a connection point), with the first pipe part shell of the intermediate piece.
  • the displacement sleeve is preferably also arranged parallel to the section described above and spaced apart from the two angled sections.
  • the displacement sleeve is formed by a one-piece, tubularly closed section of the first pipe part shell.
  • the sliding sleeve is through a one-piece tube, which represents part of the first tube shell, is formed.
  • the second pipe part shell covers the displacement sleeve at the transition to the section adjacent to it with a constantly decreasing or obliquely cut end section.
  • the second pipe part shell gradually runs out in the area of overlap with the displacement sleeve (preferably towards the circumference of the displacement sleeve).
  • the second partial pipe shell gradually runs out from the side of its contact surface to the first partial pipe shell or to the displacement sleeve.
  • the protruding end section of the second tubular shell is delimited at the edge by a laser weld seam, by means of which the first and second tubular shells are connected to one another in a circumferential manner. Due to the shape of the end section, this laser weld seam is made at the transition between the displacement sleeve and the adjacent section with a continuous transition or at least at an obtuse angle to the tube axis of the intermediate piece. This is advantageous for process control during laser beam welding (particularly for guiding the laser beam focus). In addition, a joining pressure can be applied all around the entire contact surface between the first and second pipe shells.
  • the outlet piece and the inlet piece are aligned at least with an outlet-side and an inlet-side section, in particular with their associated pipe axes (in particular running in these sections) parallel to one another and perpendicular to the pipe axis of the intermediate piece.
  • the outlet and inlet side pipe axes of the outlet piece or the inlet piece are additionally arranged on a common vertical when installed as intended, so that the drain line of the urinal and the wastewater line can also be arranged aligned one above the other.
  • the outlet piece has a one-piece, tubularly closed insertion section for insertion into the displacement sleeve on.
  • the insertion section carries at least two sealing elements on the free end for sealing against the displacement sleeve.
  • the outlet piece has a coupling section which is connected to the insertion section via an angle section.
  • the angle section is also wound in the same plane as the sections of the intermediate piece, in particular also in the same direction, so that in the intended assembly state a Continuation of the spiral-like intermediate piece results (and the terminal sections of the inlet and outlet pieces are arranged on a vertical in the intended installation state).
  • the inlet piece and the outlet piece are preferably aligned oppositely with their connection openings.
  • the outlet piece is also originally formed from plastic, preferably injection molded.
  • at least the angle section - in particular analogous to the angled subsections of the intermediate piece - is formed from a first subshell and a second subshell placed along the tube axis of the angle section on the first subshell and connected to it by laser beam welding.
  • the connecting edge of the first and second partial shells runs at least largely along a mold parting plane of an injection molding tool, so that the first and second partial shells can be easily injection molded.
  • the two partial shells are laser-welded together, with the laser weld seam connecting the partial shells all around at the transition between the insertion section and the adjacent angle section with a continuous transition or at least at an obtuse angle to the pipe axis.
  • the second partial shell like the second partial tubular shell, is provided with an end section that is cut obliquely.
  • the first or the second partial tube shell of the intermediate piece and/or the first or the second partial shell of the outlet piece are expediently formed from a laser beam-transparent plastic (for the laser wavelength selected for laser beam welding of the plastic).
  • the respective counterpart is expediently made of an absorbent plastic (for the selected laser wavelength).
  • an absorbent plastic for the selected laser wavelength.
  • a black-colored polyethylene or polypropylene filled with soot is selected as the absorbent plastic
  • a particularly unfilled polyethylene or polypropylene is selected as the laser-transparent plastic.
  • the laser beam-transparent plastic is preferably at least translucent (i.e. in particular translucent) in the visible spectral range, and optionally also transparent. This means that when installed as intended, it is also possible to visually check for contamination or blockages.
  • a web hereinafter referred to as a pressure rib, is arranged on the outside of the first or second partial tube shell of the intermediate piece and/or on the first or second partial shell of the outlet piece.
  • This web forms a pressing surface for the laser beam welding process.
  • the corresponding pipe sub-shell and/or sub-shell can be pressed onto the other pipe sub-shell or sub-shell by means of the web and the joining pressure required for laser beam welding can be applied.
  • this pressure rib can also serve as a spacer and/or a linear contact surface for the urinal siphon against a wall during installation.
  • the respective laser weld seam between the first and the second partial tube shell of the intermediate piece and/or between the first and the second partial shell of the outlet piece is designed to be concealed in a groove.
  • any melt discharge that may occur can be collected in this groove, so that an irregular surface can be avoided, particularly in the interior of the intermediate piece or the outlet piece.
  • a urinal siphon 1 is shown in various perspective and plan views, each as an exploded view.
  • the urinal siphon 1 comprises a tubular inlet piece, which specifically forms a connecting sleeve 2 for connecting the urinal siphon 1 to a drain line of a urinal.
  • the urinal siphon 1 includes the Furthermore, a tubular outlet piece 4, which is used to connect the urinal siphon 1 to a wastewater pipe, in particular of a building.
  • the urinal siphon 1 includes a tubular intermediate piece 6 which extends in a spiral manner between the inlet piece (ie the connecting sleeve 2) and the outlet piece 4.
  • the intermediate piece 6 has at least two sections 8, each angled at 180 degrees. Through these sections 8, which are spirally wound through a total of 360 degrees, an effective odor trap can be achieved using the urinal siphon 1 alone, since a kind of "knee" can be below a liquid level in any orientation of the intermediate piece 6.
  • the intermediate piece 6 is aligned with its pipe axis 10 in a plane arranged perpendicular to the pipe axis 12 of the connecting sleeve 2.
  • the pipe axis 12 of the connecting sleeve 2 is aligned horizontally when the urinal siphon 1 is installed as intended and the plane of the pipe axis 10 of the intermediate piece 6 is thus arranged in a (at least approximately) vertical plane in sanitary installations due to usual tolerances.
  • the urinal siphon 1 has a sliding sleeve 14.
  • the displacement sleeve 14 is formed by a section of the intermediate piece 6 which is formed in one piece and closed in a tubular shape - which adjoins one of the angled sections 8 of the intermediate piece 6.
  • An insertion section 16 of the outlet piece 4 can be inserted variably by an extension length L into this displacement sleeve 14.
  • the maximum extension length L is shorter than the total length of the insertion section 16, so that a sufficiently long sealing section 18, which carries two sealing rings 19, always remains in the displacement sleeve 14 and thus enables a sufficient sealing effect.
  • the outlet piece 4 includes a coupling section 20 on the outlet side, the pipe axis 22 of which is aligned parallel to the pipe axis 12 of the connecting sleeve 2 and thus also perpendicular to a pipe axis 24 of the insertion section 16.
  • the insertion section 16 and the coupling section 20 are connected to one another via an angle section 26 in one piece, specifically monolithically (i.e. made of the same material and without connecting seams in preferably a shaping, in particular injection molding, step).
  • the pipe axis 28 of the angle section 26 is also arranged in the plane of the pipe axis 10 of the intermediate piece 6 when the urinal siphon 1 is installed as intended.
  • the angle section 26 is also shaped in such a way, specifically bent in continuation of the turns of the intermediate piece 6, that the pipe axis 12 of the connecting sleeve 2 and the pipe axis 22 of the coupling section 20 lie on the same vertical when the urinal siphon 1 is installed as intended.
  • the connecting sleeve 2, the intermediate piece 6 and the displacement sleeve 14 form a common, integral component of the urinal siphon 1, which is at least partially monolithically molded, specifically injection molded, in an injection molding process made of plastic, specifically a polyethylene, preferably a cross-linked polyethylene.
  • plastic specifically a polyethylene, preferably a cross-linked polyethylene.
  • the angled sections 8 of the intermediate piece 6 cover a total of at least 360 degrees, a one-piece injection molding production of the entire component without "lost" shaping means (for example meltable cores) is not possible. Therefore, the intermediate piece 6 is formed over its two angled sections 8 by a first pipe section shell 30 and a second pipe section shell 32, which are placed one on top of the other at least in regions along the pipe axis 10 of the section sections 8.
  • the tube shells 30 and 32 each essentially form a half-shell of the intermediate piece 6. This allows a comparatively simple mold separation in the plane of the tube axis 10 of the intermediate piece 6 to
  • One of the two pipe sub-shells 30 and 32 also has a circumferential (edge) web which, when the intermediate piece 6 is in the intended assembled state, lies in a complementary groove which is formed on the corresponding other pipe sub-shell 32 or 30 (not shown in more detail). .
  • This web is connected with its free edge to the groove base of the groove surrounding it
  • Plastic laser beam welding connected media-tight.
  • Plastic laser beam welding has the advantage that there is little or no melt discharge from the welding zone compared to other welding processes, which can easily be collected in the groove.
  • An inner surface of the intermediate piece 6 can thus be kept as smooth as possible, so that accumulations of sludge and/or microbiological growth on uneven areas of the inner surface are advantageously prevented or at least the risk of this is reduced.
  • plastic laser beam welding also has the advantage of greater process reliability in terms of the quality and tightness of the connection.
  • the second pipe part shell 32 Since the displacement sleeve 14 - in order to ensure the tightness of the plug connection with the outlet piece 4 - is formed by a circumferentially closed section of the intermediate piece 6, the second pipe part shell 32 has a constantly decreasing, specifically obliquely cut end section 34. With this end section 34, the second pipe part shell 32 covers the sliding sleeve 14 on the outside to a decreasing part. This makes it possible to prevent a sudden bend, in particular a 90-degree bend, in a laser weld seam 35 at the transition between the displacement sleeve 14 and the section 8 of the intermediate piece 6 adjacent to it.
  • a contact pressure (or joining pressure), which is applied during laser beam welding between the two pipe shells 30 and 32, can also be applied to the contact surface between the end section 34 and the sliding sleeve 14.
  • a 90 degree deflection of the laser beam focus at the transition to the displacement sleeve 14 can also be omitted, so that the process control of the plastic laser beam welding process can be kept comparatively simple.
  • a web 36 which forms a pressure rib, is also applied to the outside of the second tubular shell 32.
  • This web 36 provides a pressure surface for applying the joining pressure between the first and the second Partial pipe shell 30 or 32.
  • this web 36 can also act as a spacer between the intermediate piece 6 and an installation surface.
  • the angle section 26 of the outlet piece 4 is also formed by a first partial shell 40 and a second partial shell 42, which are connected by means of plastic laser beam welding analogously to the first and second partial tube shells 30 and 32 of the intermediate piece 6.
  • a corresponding obliquely cut end section 44 of the second partial shell 42 rests on the outside of the insertion section 16, so that a laser weld seam 46 connecting the two partial shells 40 and 42 also runs obliquely to one side of the insertion section 16.
  • the second partial shell 42 has, analogous to the second tube partial shell 32, a web 48 on the outside, which serves as a pressure rib for applying the joining pressure during plastic laser beam welding. This is in Fig. 4 shown in more detail.
  • the first pipe sub-shell 30 and the first sub-shell 40 are each formed by black-colored polyethylene.
  • the second partial tube shell 32 and the second partial shell 42 are formed from laser beam-transparent polyethylene, which is at least translucent in the visible spectral range. The translucency in the visible spectral range makes it possible to visually inspect the urinal siphon 1 for blockages.
  • the urinal siphon 1 also has a limiting device 50.
  • This is formed by a link 52 and a link pin 54, which is in a guide connection with the link 52 when the urinal siphon 1 is installed as intended.
  • the link pin 54 lies in the link 52, which is essentially formed by an elongated slot delimited by an edge.
  • the link 52 is dimensioned such that when the maximum extension length L is reached, the link pin 54 rests at the end of the link 52. In this position, the sealing section 18 of the insertion section 16 remains in the displacement sleeve 14.
  • the link 52 is aligned parallel to the displacement sleeve 14.
  • the limiting device can be “activated”. In their active state (shown in the Figures 6 to 9 ), the link pin 54 engages in the link 52. In an inactive state (not shown in detail), the link 52, on the other hand, is moved to (or removed from) the outlet piece 4 in such a way that the link pin 54 can no longer engage in the link 52.
  • the backdrop 52 is connected to a union ring 56, which is pushed over the coupling section 20 of the outlet piece 4.
  • the component formed by the link 52 and the union ring 56 is therefore manufactured separately from the outlet piece 4, preferably injection molded. This simplifies the injection molding production of the entire urinal siphon 1.
  • the displacement sleeve 14 and/or the intermediate piece 6 can be connected in one piece to the outlet piece 4.
  • the connecting sleeve 2 possibly together with the intermediate piece 6) could be inserted into the displacement sleeve 14.

Landscapes

  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Sanitary Device For Flush Toilet (AREA)

Claims (7)

  1. Siphon d'urinoir (1), comprenant
    - une pièce d'entrée tubulaire (2) destinée à raccorder le siphon d'urinoir (1) à une conduite d'évacuation d'un urinoir,
    - un pièce de sortie tubulaire (4) destinée à raccorder le siphon d'urinoir (1) à une conduite d'eaux usées,
    - une pièce intermédiaire tubulaire (6), en forme de spirale, qui est montée entre la pièce d'entrée (2) et la pièce de sortie (4) et qui comporte au moins deux portions (8) qui sont chacune coudée à 180 degrés, et
    - un manchon de coulissement (14) qui permet de fixer la pièce de sortie (4) à la pièce d'entrée (2) ou à la pièce intermédiaire (6) de manière coulissante d'une longueur d'extension (L) par rapport à la pièce d'entrée (2),
    la pièce intermédiaire (6) étant formée à l'origine à partir d'une matière synthétique, la pièce intermédiaire (6) étant formée dans la zone des portions coudées (8) par une première et une deuxième partie de coque de tube (30, 32) qui sont placées l'une sur l'autre transversalement à un axe de tube (10) de la pièce intermédiaire (6), et les deux parties de coque de tube (30, 32) étant reliées l'une à l'autre de manière étanche aux milieux par soudage laser de matière synthétique, le manchon de coulissement (14) étant conçue d'une seule pièce, notamment monolithique, avec la première partie de coque de tube (30) de la pièce intermédiaire (6),
    le manchon de coulissement (14) étant formé par une portion, fermée d'une seule pièce en forme de tube, de la première partie de coque de tube (30), et la deuxième partie de coque de tube (32) recouvrant le manchon de coulissement (14) au niveau de la transition vers la portion coudée (8) adjacente au manchon de coulissement (14), avec une portion d'extrémité (34) constamment décroissante ou coupée en oblique,
    et
    un cordon de soudure laser (35), qui relie circonférentiellement les première et deuxième partie de coque de tube (30, 32), délimitant la portion d'extrémité (34) au niveau du bord de sorte que le cordon de soudure laser (35) soit placé avec une transition continue ou au moins selon un angle obtus par rapport à l'axe de tube de sorte que le cordon de soudure laser s'étende obliquement au bord de la portion d'extrémité et qu'une courbure brusque du cordon de soudure laser (35) soit évitée à la transition entre le manchon de coulissement (14) et la portion coudée adjacente (8) de la pièce intermédiaire (6) .
  2. Siphon d'urinoir (1) selon la revendication 1,
    au moins dans un état de montage approprié, la pièce de sortie (4) et la pièce d'entrée (2) étant orientées de manière à ce que au moins une portion côté sortie et une portion côté entrée aient des axes de tube associés (12, 22) qui sont parallèles l'un à l'autre et perpendiculaires à l'axe de tube (10) de la pièce intermédiaire (6).
  3. Siphon d'urinoir (1) selon la revendication 1 ou 2,
    la pièce de sortie (4) comporte une portion d'insertion (16), fermée d'une seule pièce en forme de tube, afin d'être insérée dans le manchon de coulissement (14), en particulier la portion d'insertion (16) portant à l'extrémité libre au moins deux éléments d'étanchéité (19) destinés à assurer l'étanchéité par rapport au manchon de coulissement (14), et une portion d'accouplement côté sortie (20) de la pièce de sortie (4) étant reliée à la portion d'insertion (16) par le biais d'une portion d'angle (26) .
  4. Siphon d'urinoir (1) selon la revendication 3,
    la pièce de sortie (4) étant formée à l'origine à partir d'une matière synthétique, au moins la portion d'angle (26) étant formée d'une première partie de coque (40) et d'une deuxième partie de coque (42) qui est reliée à celle-ci par soudage par faisceau laser et qui est placée sur la première partie de coque (40) le long de l'axe de tube (28) de la portion d'angle (26) et un cordon de soudure laser (46), qui relie circonférentiellement la première et la deuxième partie de coque (40, 42), étant placé au niveau de la transition entre la portion d'insertion (16) et la portion d'angle adjacente (26) avec une transition continue ou suivant au moins un angle obtus par rapport à l'axe de tube (28).
  5. Siphon d'urinoir (1) selon la revendication 4,
    la première ou la deuxième partie de coque de tube (30, 32) de la pièce intermédiaire (6) et/ou la première ou la deuxième partie de coque (40, 42) de la pièce de sortie (4) étant formées à partir d'une matière synthétique transparente au faisceau laser et au moins translucide dans le domaine spectral visible.
  6. Siphon d'urinoir (1) selon la revendication 4 ou 5,
    la première ou la deuxième partie de coque de tube (30, 32) de la pièce intermédiaire (6) et/ou la première ou la deuxième partie de coque (40, 42) de la pièce de sortie (4) comportent du côté extérieur une nervure de pression (36, 48) qui forme une surface de pression destinée au processus de soudage par faisceau laser.
  7. Siphon d'urinoir (1) selon l'une des revendications 4 à 6,
    le cordon de soudure laser (35) situé entre la première et la deuxième partie de coque de tube (30, 32) de la pièce intermédiaire (6) et/ou le cordon de soudure laser (46) situé entre la première et la deuxième partie de coque (40,42) de la pièce de sortie (4) étant conçus pour être dissimulés dans une rainure.
EP19209799.6A 2018-11-19 2019-11-18 Siphon d'urinal Active EP3653801B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102018219814.4A DE102018219814A1 (de) 2018-11-19 2018-11-19 Urinalsiphon

Publications (3)

Publication Number Publication Date
EP3653801A1 EP3653801A1 (fr) 2020-05-20
EP3653801C0 EP3653801C0 (fr) 2024-01-03
EP3653801B1 true EP3653801B1 (fr) 2024-01-03

Family

ID=68610035

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19209799.6A Active EP3653801B1 (fr) 2018-11-19 2019-11-18 Siphon d'urinal

Country Status (4)

Country Link
EP (1) EP3653801B1 (fr)
DE (1) DE102018219814A1 (fr)
HU (1) HUE065940T2 (fr)
PL (1) PL3653801T3 (fr)

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2447695C3 (de) * 1974-10-07 1978-10-12 Fa. Franz Viegener Ii, 5952 Attendorn Absaugvorrichtung mit Geruchverschluß für Urinale
CH657404A5 (en) * 1982-12-07 1986-08-29 Geberit Ag Automatic flushing device for a urinal
DE29910426U1 (de) * 1999-06-15 1999-08-05 Franz Viegener II GmbH & Co. KG, 57439 Attendorn Geruchverschluß für Haushaltsgeräte
DE20105412U1 (de) * 2000-06-30 2001-06-28 Geberit Technik AG, Jona, St. Gallen Absaugesiphon für eine Spüleinrichtung
ATE310130T1 (de) * 2002-10-30 2005-12-15 Geberit Technik Ag Absaugesiphon für eine abflussinstallation
WO2008129957A1 (fr) * 2007-04-18 2008-10-30 Inax Corporation Raccord de tuyau d'évacuation
DE202010002565U1 (de) * 2010-02-19 2010-05-27 Sanitärtechnik Eisenberg GmbH Absaugsiphon
DE102010032569B8 (de) * 2010-07-28 2016-03-31 Andreas Bock Höhenverstellbarer (variabler) Urinalsifon

Also Published As

Publication number Publication date
PL3653801T3 (pl) 2024-05-13
EP3653801C0 (fr) 2024-01-03
HUE065940T2 (hu) 2024-06-28
EP3653801A1 (fr) 2020-05-20
DE102018219814A1 (de) 2020-05-20

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