EP2554755B1 - Système d'écoulement d'eau au sol - Google Patents

Système d'écoulement d'eau au sol Download PDF

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Publication number
EP2554755B1
EP2554755B1 EP11176440.3A EP11176440A EP2554755B1 EP 2554755 B1 EP2554755 B1 EP 2554755B1 EP 11176440 A EP11176440 A EP 11176440A EP 2554755 B1 EP2554755 B1 EP 2554755B1
Authority
EP
European Patent Office
Prior art keywords
floor
fastening
adapter plate
drainage system
flange
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.)
Not-in-force
Application number
EP11176440.3A
Other languages
German (de)
English (en)
Other versions
EP2554755A1 (fr
Inventor
Thomas Kiffmeyer
Patrick Schnyder
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
Original Assignee
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.)
Filing date
Publication date
Application filed by Geberit International AG filed Critical Geberit International AG
Priority to ES11176440.3T priority Critical patent/ES2456700T3/es
Priority to EP11176440.3A priority patent/EP2554755B1/fr
Priority to PL11176440T priority patent/PL2554755T3/pl
Publication of EP2554755A1 publication Critical patent/EP2554755A1/fr
Application granted granted Critical
Publication of EP2554755B1 publication Critical patent/EP2554755B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
    • 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
    • E03C1/22Outlet devices mounted in basins, baths, or sinks

Definitions

  • the present invention relates to a floor drain system according to the preamble of claim 1.
  • Floor drainage systems for sanitary installations are known in the art. Such floor drain systems are used for the removal of water, for example from a shower tray or a shower surface.
  • Such floor drain systems have the advantage that the floor surface on which the user can stand is executed without interruption, ie as a completely continuous surface. This is advantageous for the user, because tripping over protruding elements can be prevented. Furthermore, a gap must be provided between the drainage system installed in the wall and the floor surface, which may also include the transition to corresponding tiles.
  • the main advantage of such systems is that a floor-level surface can be formed without joints or drainage holes in the surface.
  • CH-B-698 575 shows a floor drain system according to the preamble of claim 1.
  • the present invention seeks to provide a floor drain system, which overcomes the disadvantages of the prior art.
  • the floor drain system should be easier to assemble and to be as stress-free as possible during operation.
  • the tub member is preferably made of steel enamel or acrylic.
  • the attachment of the tub element on the mounting frame has the advantage that a floor drain system is available, which is very easy to install.
  • stresses between the mounting frame and the tub element can be largely avoided via the connection between the mounting frame and tub element.
  • the fastening element has the shape of a material-locking connection, in particular the shape of an adhesive or a sealant.
  • a fastener solves the problem of simple design of the overall construction and thus has the advantage that the fixed connection between the drain element and the tub element at the same time provides a sealing solution.
  • the fastening element can also have the shape of a mechanical connection which engages directly or indirectly in the mounting frame.
  • the said mechanical fastening element has, in particular, the shape of a screw which projects through an opening arranged in the tub element and engages in a thread which is directly or indirectly in connection with the mounting frame.
  • the fastening element is designed such that forces can be absorbed in a substantially perpendicular direction to the force of gravity.
  • This has the advantage that a good connection to the mounting frame is made possible while other forces in the direction of gravity, such as by supports or a direct support of the tub element on a floor can be compensated.
  • the at least one fastening element is preferably connected directly to the mounting frame.
  • the at least one fastening element is indirectly connected via at least one further element, such as an adapter plate and / or a panel to the mounting frame.
  • the tub element comprises at least one mounting flange formed on the tub element, wherein the tub element is connected to the mounting frame via this mounting flange.
  • the mounting flange has the advantage that this particular is easy to manufacture and also also allows easy installation.
  • two mounting flanges spaced apart from each other are formed on the tub element, wherein the mounting flanges limit a flow passage through which the bottom water of the drain unit can be fed.
  • the mounting flanges protrude upwards with respect to the standing surface the direction of gravity.
  • the mounting flanges each have at least one optional opening, which serve to carry out the fastening element.
  • another flange protrudes downwardly in the direction of gravity with respect to the standing surface, said flange preferably extending laterally across the flow passage.
  • the mounting flanges and the further flange form a receiving surface for a sealing element or the fastening element.
  • the mechanical fastening element has the shape of a mechanical connection, in particular the shape of a screw.
  • the mechanical fastening element preferably projects through an opening in the fastening flange and engages in a thread that is directly or indirectly connected to the mounting frame.
  • the adapter plate has threads for receiving the fastener in the shape of the screw, the threads preferably being provided by threaded nuts associated with the adapter plate.
  • said sealing element is arranged between the adapter plate and the flange.
  • a further sealing element is arranged between the adapter plate and the panels.
  • the sealing element for example, a be on the corresponding surface sprayed silicone sealant or a solid seal, such as a rubber seal.
  • the adapter plate and / or the tub element have spacer elements which provide a defined gap between the adapter plate and the tub element, in which said seal can be arranged.
  • FIGS. 1 and 2 an embodiment of a floor drain system 1 according to the present invention is shown.
  • FIG. 1 are all elements of the floor drain system in the assembled state and in the FIG. 2 an exploded view is shown, in which the individual components are recognizable.
  • the floor drainage system 1 for a sanitary installation essentially comprises a mounting frame 2, a drainage unit 3 with a drainage channel 4, which is accessible via a drainage opening 27, and a tubing element 5 with a standing surface 6.
  • the standing surface 6 opens into or onto the drainage opening 27 , So that bottom water, which rests on the standing surface 6, the flow channel 4 can be fed and carried away over this.
  • the standing surface 6 is arranged to the drain opening 27, that the Standing surface 6 is flush with a lower edge 18 of the drain opening 27.
  • the standing surface opens via this lower edge 18 in the drain opening.
  • the sanitary installation is a shower, with the tub member 5 then providing a shower tray.
  • tray element used herein includes any element on which a user can stand, that is, a trough with peripheral side edges, or a trough in the shape of a metal sheet without circumferential side edges.
  • the user of the shower stands on the standing surface 6 of the tub element 5.
  • the shower water is as bottom water on this floor space 6 and is led away over the area from the shower to drain unit 2.
  • the standing surface 6 with respect to the direction of gravity to the drain unit 2 towards preferably inclined, ie with a slope arranged.
  • the mounting frame 1 is substantially perpendicular in a room and is arranged behind a wall, not shown here or provides with an optional panels 14 at the same time the wall itself.
  • the panels 14 can be additionally covered with tiles.
  • the trough element 5 extends at an angle to the mounting frame 1 and is located substantially at the level of a lower edge 18 of the drainage channel 4.
  • the mounting frame 1 is formed here as a frame with two vertically extending supports 28 and a horizontally extending support 29. In the lower region, the drainage unit 4 is arranged between the two vertically extending supports 28.
  • the floor drain system comprises at least one fastening element 7 for fastening the tub element 5 to the mounting frame 2. Consequently, the tub element 5 is fixedly connected to the mounting frame 2 by the at least one fastening element 7.
  • This connection has the advantage that a firm connection between the mounting frame 2 and the tub element 5 can be provided, which ensures that the mounting frame 2 and the tub element 5 can be reproducibly aligned with each other and thus a simple assembly is provided. Next movements and thus stresses between the tub element 5 and mounting frame 2 can be avoided.
  • the fastening element 7 is preferably designed such that these forces in the Run substantially perpendicular to the direction of gravity S, picking up.
  • the fastening element 7 thus essentially serves to connect the tub element 5 to the mounting frame.
  • the tub member 5 itself preferably rests on supports, not shown, on the floor, whereby the weight of the user standing on the tub member 5 is supported by these supports.
  • the tub element 5 can also rest directly on the floor.
  • the at least one fastening element 7 can communicate directly with the mounting frame 2.
  • the fastening element 7 can also be connected to the mounting frame 2 via at least one further element, such as, for example, an adapter plate 12 and / or a panel 14.
  • at least one further element such as, for example, an adapter plate 12 and / or a panel 14.
  • the fastening element 7 may be formed mechanically and / or cohesively.
  • the fastening element 7 is a screw which provides a mechanical connection between the tub element and the mounting frame 2.
  • the fastening element 7 may also be an adhesive or a sealant.
  • the tub member 5 preferably comprises at least one mounting flange 8 integrally formed on the tub element 5.
  • the mounting flange 8 serves to fasten the tub element 5 to the mounting frame 2. Consequently, the tub element 5 is connected to the mounting frame 2 via this flange 8.
  • the mounting flange 8 preferably protrudes upwards with respect to the standing surface 6 against the direction of gravity S. This allows good accessibility of the fastening flange 8 in order to mount the tub element 5.
  • two mounting flanges 8 are spaced apart from each other and define a flow passage 19 through which the bottom water can reach the drainage channel 4.
  • an optional further flange 9 is arranged here between the two fastening flanges 8, which flange extends in the other direction, that is to say from the standing surface in the direction of the force of gravity S.
  • the further flange 9 extends here from a mounting flange 8 to the other Mounting flange 8 and has a greater length than the flow passage 19, so that the ends of the further flange 9 come to lie in the region of the mounting flanges 8.
  • the further flange 9 not only has the effect as Abstützflansch but can also accommodate a sealing element, as will be explained below.
  • the further flange 9 can, as it is in the FIG. 3 can be seen welded to the mounting flanges, the further flange 9 then also has a flow passage 19 corresponding recess must have.
  • the fastening element 7 preferably has the shape of a screw 7, which projects through the openings 10 in the mounting flanges 8 and engages in a standing with the mounting frame 2 in conjunction thread 11.
  • This thread 11 can either lie directly on the mounting frame 2 or be arranged on said other element.
  • the fastening element 7 may also have the shape of an adhesive.
  • the further element for the indirect connection between the tub element 5 and the mounting frame 2 preferably has the shape of an adapter plate 12, which is arranged between the mounting frame 2 and the tub element 5.
  • the adapter plate 12 is connected via at least one connecting element 13, such as a screw and / or an adhesive or sealant with the mounting frame 2 in connection and the tub member 5 stands with the adapter plate 12 in connection. Consequently, the adapter plate 12 is fastened to the mounting frame 2 via the connecting element 13, and the tub element 5 is fastened to the mounting frame 2 via the fastening element 7.
  • the adapter plate 12 can then be mounted to the mounting frame 2 and then the tub element 5 can be connected to the adapter plate 12. This is the indirect connection.
  • the adapter plate 12 comprises for the mechanical connection between the tub element 5 and mounting frame 2, the thread 11.
  • these are threaded nuts 11, which are in communication with the adapter plate 12.
  • the adapter plate 12 further comprises openings 31 through which the connecting elements 13 can be passed.
  • the connecting elements 13 are screws which are then threaded, which are arranged on the mounting frame 2, intervention.
  • the adapter plate 12 further comprises a flow opening 21, which has substantially the same cross-section as the flow passage 19. Further, the adapter plate 12 may include a bending portion 30, which gives the adapter plate 12 an additional stability.
  • a panel 14 may be arranged between the adapter plate 12 and mounting frame 2.
  • the panels 14 have a multiplicity of openings 15 through which the connecting elements 13 can protrude through, so that they can be connected to the mounting frame 12.
  • the panels 14 also include a flow opening 22, through which the water can be fed to the drainage channel 4. So now that the adapter plate 12 and panels 14 are arranged, the bottom water flows through the flow passage 19 and the two flow openings 21, 22 to the outlet channel 4 of the drain unit. 3
  • All cross-sections through which the bottom water flows are preferably designed as rectangular cross-sections, which has the advantage that a lower edge 18 can be provided, through which the bottom water can flow.
  • the lower edge 18 of all elements traversed by the bottom water is substantially at the level of the standing surface 6. Consequently, the lower edge 18 of the drain unit 3 is at the level of the standing surface 6.
  • a sealing element 16 is preferably arranged between the adapter plate 12 and the tub member 5.
  • the sealing element 16 extends on the mounting flanges 8 along the direction S and then over the further flange 9. Consequently, a continuous sealing line, which extends below the flow passage 19.
  • the sealing element 20 is substantially identical to the sealing element 16 and also forms a continuous sealing line, which extends below the flow passage 19 and the flow opening 21.
  • both sealing elements 16, 20 it is advantageous that these are around the Flow passage 19 and extend to the flow opening 21 in the adapter plate 12, so that no water between the adapter plate 12 and tub element 5 or panels 14 can pass.
  • spacer holding elements 17 are arranged, which creates a fixed distance between the corresponding elements between which the gasket has been arranged.
  • spacer elements 17 may be provided, for example, by corrugations or by the attachment of corresponding strips on the adapter plate.
  • the sealing elements 16, 20 are preferably made of a flexible sealant. Particularly preferred is an elastomeric sealant or a silicone sealant is used, which is applied with a spray gun. This sealant also has an adhesive effect between the individual elements. Consequently, there is thus a mechanical connection via the fastening elements 7 and integral connection via the silicone gasket 16, 20. The mechanical connection serves to take over the forces described above and the silicone compound essentially provides a sealing connection. Alternatively, a rubber seal can be used.
  • only the sealing element 16 can serve as a fastening element 7, wherein then no mechanical fastening element between the tub element 5 and mounting frame or adapter plate must be present.
  • the sealing element 16 may be formed in this case, for example, as a silicone gasket and provides an adhesive connection between the tub element 5 and adapter plate 12 or between the tub element 5 and mounting frame 2 ready.
  • the tub member 5 is preferably made of steel enamel or acrylic, while the adapter plate 12 is preferably made of a steel.
  • the mounting frame 2 is also made of steel.
  • the panels 14 may be made of plasterboard.
  • the panel 14 comprises a front surface 23 which faces the tub member 5 and a rear surface 24 which rests on the mounting frame 2.
  • the front Surface 23 in this case has a recess 25 in which the adapter plate 12, the mounting flange 8 and the flange 9 are embedded.
  • the recess 25 has a depth which substantially corresponds to the thickness of the elements arranged therein, so that the surface 26 of the mounting flange 8, which faces the standing surface 6, comes to lie flush with the front surface 23.
  • the front surface 23 and the surface 26 are tileable with tiles.
  • the tiles may then extend over the mounting flanges 8 and the panels 14.
  • the fixed connection of the tub element 5 to the mounting frame 2, to which in turn also the panels 14 is firmly applied, the advantage that movements between the tub element 5 and mounting frame 2 or panels 14 are prevented, which prevents buildup of tension.

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

Claims (12)

  1. Système d'écoulement au sol (1) pour une installation sanitaire, en particulier une douche, comprenant un châssis de montage (2), une unité d'écoulement (3) en liaison avec le châssis de montage (2), laquelle présente un canal d'écoulement (4), qui est accessible par le biais d'une ouverture d'écoulement (27) et un élément de bac (5) avec une zone pour se tenir debout (6), la zone pour se tenir debout débouchant au niveau de ou dans l'ouverture d'écoulement (27), de telle sorte que de l'eau sur le sol se trouvant sur la zone pour se tenir debout (6) puisse être acheminée jusqu'au canal d'écoulement (4),
    le système d'écoulement au sol (1) comprenant au moins un élément de fixation (7) pour la fixation de l'élément de bac (5) sur le châssis de montage (2), une plaque d'adaptation (12) étant disposée de manière à relier indirectement l'élément de bac (5) et le châssis de montage (2), la plaque d'adaptation (12) étant en liaison fixe par le biais d'éléments de connexion (13) au châssis de montage (2) et l'au moins un élément de fixation (7) reliant l'élément de bac (5) à la plaque d'adaptation (12), caractérisé en ce
    qu'entre la plaque d'adaptation (12) et le châssis de montage (2) est disposé un panneau (14) avec au moins une ouverture (15) et une ouverture de passage (22) pour fournir un trajet pour l'eau sur le sol, les éléments de connexion (13) pénétrant à travers des ouvertures (15) dans ce panneau (14) et des parties de l'unité d'écoulement (3) pénétrant dans l'ouverture de passage (22) dans le panneau (14).
  2. Système d'écoulement au sol selon la revendication 1, caractérisé en ce que l'élément de fixation (7) présente la forme d'une connexion par liaison de matière, en particulier la forme d'un adhésif ou d'un agent d'étanchéité (16, 20).
  3. Système d'écoulement au sol selon la revendication 1 ou 2, caractérisé en ce que l'élément de fixation (7) présente la forme d'une connexion mécanique, qui vient en prise directement ou indirectement dans le châssis de montage (2), ledit élément de fixation (7) présentant notamment la forme d'une vis, qui pénètre à travers une ouverture (10) disposée dans l'élément de bac (5) et qui vient en prise dans un filetage (11) en liaison directe ou indirecte avec le châssis de montage (2).
  4. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément de fixation (7) reçoit des forces dans la direction (R) essentiellement perpendiculaire à la force de pesanteur.
  5. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément de bac (5) comprend au moins une bride de fixation (8) façonnée sur l'élément de bac (5), l'élément de bac (5) étant en liaison avec le châssis de montage (2) par le biais de cette bride de fixation (8).
  6. Système d'écoulement au sol selon la revendication 5, caractérisé en ce que deux brides de fixation (8) disposées à distance l'une de l'autre sont façonnées sur l'élément de bac (5), les brides de fixation (8) limitant un trajet de passage (19) à travers lequel l'eau sur le sol peut être acheminée à l'unité d'écoulement (3).
  7. Système d'écoulement au sol selon la revendication 5 ou 6, caractérisé en ce que les brides de fixation (8) pénètrent par rapport à la zone pour se tenir debout (6) vers le haut à l'encontre de la direction de la force de pesanteur (S) et/ou en ce que les brides de fixation (8) disposent chacune d'au moins une ouverture (10) lesquelles ouvertures servent au passage de l'élément de fixation (7).
  8. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce qu'une bride supplémentaire (9) pénètre vers le bas dans la direction de la force de pesanteur (S) par rapport à la zone pour se tenir debout, cette bride (9) s'étendant de préférence latéralement par-dessus le trajet de passage (19) et s'étendant essentiellement parallèlement à la bride de fixation (8).
  9. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce que la plaque d'adaptation (12) dispose de filetages (11) pour recevoir l'élément de fixation (7), les filetages (11) étant fournis de préférence par des écrous filetés (11) en liaison avec la plaque d'adaptation.
  10. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce qu'entre la plaque d'adaptation (12) et la bride (8, 9) est disposé un élément d'étanchéité (16) et/ou en ce qu'entre la plaque d'adaptation (12) et le panneau (14) est disposé un élément d'étanchéité supplémentaire (20).
  11. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce que la plaque d'adaptation (12) et/ou l'élément de bac (5) disposent d'éléments d'espacement (17), lesquels fournissent une fente définie entre la plaque d'adaptation (12) et l'élément de bac (5), dans laquelle fente peut être disposé ledit joint d'étanchéité (16).
  12. Système d'écoulement au sol selon l'une quelconque des revendications précédentes, caractérisé en ce que la zone pour se tenir debout (6) est disposée de manière inclinée vers le canal d'écoulement (4) par rapport à la direction de la force de pesanteur (S), de telle sorte que de l'eau sur le sol sur la zone pour se tenir debout (6) puisse être acheminée au canal d'écoulement (4) et donc que l'eau sur le sol puisse être évacuée de l'élément de bac (5).
EP11176440.3A 2011-08-03 2011-08-03 Système d'écoulement d'eau au sol Not-in-force EP2554755B1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
ES11176440.3T ES2456700T3 (es) 2011-08-03 2011-08-03 Sistema de drenaje de piso
EP11176440.3A EP2554755B1 (fr) 2011-08-03 2011-08-03 Système d'écoulement d'eau au sol
PL11176440T PL2554755T3 (pl) 2011-08-03 2011-08-03 System drenażu dennego

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP11176440.3A EP2554755B1 (fr) 2011-08-03 2011-08-03 Système d'écoulement d'eau au sol

Publications (2)

Publication Number Publication Date
EP2554755A1 EP2554755A1 (fr) 2013-02-06
EP2554755B1 true EP2554755B1 (fr) 2014-03-19

Family

ID=45476715

Family Applications (1)

Application Number Title Priority Date Filing Date
EP11176440.3A Not-in-force EP2554755B1 (fr) 2011-08-03 2011-08-03 Système d'écoulement d'eau au sol

Country Status (3)

Country Link
EP (1) EP2554755B1 (fr)
ES (1) ES2456700T3 (fr)
PL (1) PL2554755T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DK2818601T3 (da) * 2013-06-26 2018-01-29 Geberit Int Ag Indstilleligt indløb til et gulvafløb

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1556044A (en) * 1975-06-20 1979-11-21 Dolphin Showers Ltd Bases for showers
CH698575B1 (de) * 2006-07-05 2009-09-15 Schaco Ag Ablaufvorrichtung für eine Flüssigkeit.
DE202009017854U1 (de) 2009-03-09 2010-06-17 Mepa - Pauli Und Menden Gmbh Duschrinnenanordnung für Wandeinbau
CH702378B1 (de) * 2009-12-01 2013-11-29 Rivaplan Ag Untergestell-Montagesatz für das Erstellen einer Sanitäreinrichtung, Sanitäreinrichtung und Verfahren zum Erstellen einer Sanitäreinrichtung.

Also Published As

Publication number Publication date
ES2456700T3 (es) 2014-04-23
EP2554755A1 (fr) 2013-02-06
PL2554755T3 (pl) 2014-08-29

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