EP1817466B1 - Evacuation d'eau d'installation sanitaire - Google Patents

Evacuation d'eau d'installation sanitaire Download PDF

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Publication number
EP1817466B1
EP1817466B1 EP06723189A EP06723189A EP1817466B1 EP 1817466 B1 EP1817466 B1 EP 1817466B1 EP 06723189 A EP06723189 A EP 06723189A EP 06723189 A EP06723189 A EP 06723189A EP 1817466 B1 EP1817466 B1 EP 1817466B1
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EP
European Patent Office
Prior art keywords
water outlet
socket
sleeve
outlet according
joint sleeve
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
EP06723189A
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German (de)
English (en)
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EP1817466A2 (fr
Inventor
Wolf-Dieter Lacher
Oliver Denzler
Alexander Stein
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Neoperl GmbH
Original Assignee
Neoperl GmbH
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Publication date
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Application filed by Neoperl GmbH filed Critical Neoperl GmbH
Priority to EP10012650.7A priority Critical patent/EP2287409B1/fr
Priority to PL06723189T priority patent/PL1817466T3/pl
Publication of EP1817466A2 publication Critical patent/EP1817466A2/fr
Application granted granted Critical
Publication of EP1817466B1 publication Critical patent/EP1817466B1/fr
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Classifications

    • 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
    • E03C1/02Plumbing installations for fresh water
    • E03C1/08Jet regulators or jet guides, e.g. anti-splash devices
    • 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
    • E03C1/02Plumbing installations for fresh water
    • E03C1/08Jet regulators or jet guides, e.g. anti-splash devices
    • E03C2001/082Outlets connected by an universal joint

Definitions

  • the invention relates to a sanitary water outlet, which has a flow guidance downstream, which flow guide has at least one perforated plate or a grid structure with a number of outlet holes or outlet openings, wherein the water outlet comprises a spherical-shaped joint sleeve which is arranged adjustable or pivotable in a complementary shaped joint socket and wherein the flow guide is provided in the sleeve interior of the joint sleeve.
  • a jet regulator is usually provided, which is attached to the water outlet fitting by means of an outlet nozzle and should form a homogeneous, pearly-soft water jet.
  • the downstream have a flow straightener, which is intended to align the individual beams generated in the jet controller approximately coaxially to each other and is designed for example as a perforated plate or as a grid or lamellar structure.
  • the joint sleeve In order to use the jet regulator in the joint sleeve, the joint sleeve is rotated in the socket of the water outlet so that the imaginary as the inflow side sleeve end of the joint sleeve forms the downstream side of the water outlet; If the jet regulator is inserted into the joint sleeve, the joint sleeve is rotated again by 180 degrees, so that the inflow side of the joint sleeve and the jet regulator detachably inserted therein are intended to face the water inlet.
  • the disadvantage is that the integrated socket in the water outlet a specially designed outlet fitting requires.
  • a sanitary outlet fitting with a fitting outlet which carries at its free downstream end portion a bearing surface for a ball joint ball.
  • the bearing surface has a transverse guide slot into which a guide pin projecting axially in the ball is secured against rotation, so that the ball joint ball can only be pivoted in one plane.
  • the ball is held on the bearing surface by means of a handle, which is rotatably mounted on the downstream end region of the valve outlet.
  • the ball-and-socket ball is pivotally mounted relative to this during rotation of the handle by means of a provided between the handle and the outlet end control slot control pin guide in such a way that the outlet direction of the guided through the hollow ball joint ball water flow can be changed if necessary by turning the handle.
  • a sanitary outlet fitting with a water outlet is already known, at its front outlet end a pivotable about a pivot joint mounted jet regulator is releasably attached.
  • the jet regulator is for this purpose in a retaining ring used, which has on its outer circumference a spherical layer-shaped outer contour and which is pivotally mounted in a socket on the inner circumference of an outer ring, which outer ring with an outer peripheral side provided external thread in an internal thread in the water outlet can be screwed.
  • the socket is provided at the downstream Stirnend Scheme the water outlet in a, on a sanitary water outlet fitting downstream mountable screw-in or in a jet regulator housing, that the flow guide configured as a perforated plate or as a grid structure has a number of outlet holes or outlet openings bounded by flow guide walls, and in that the pivoting movement of the hinge sleeve in the socket is limited by a pivoting stop formed by the downstream side of an upstream sanitary fitting.
  • the water outlet according to the invention has a joint sleeve, which is arranged to be adjustable or pivotable in a joint socket.
  • a flow guide is provided which has at least one perforated plate and / or a grid or lamellar structure.
  • This at least one perforated plate or lattice structure has a number of outlet holes or outlet openings, which are delimited by flow guide walls. Due to the spherical layer shape of the joint sleeve this can be configured with a comparatively small longitudinal extent.
  • such a flow guide is capable of deflecting the water even in a relatively short axial longitudinal extent of the flow guide in the direction of the axial position of the flow guide walls. It can be dispensed with space-consuming and possibly aesthetically disturbing ball joints.
  • the joint socket is provided at the downstream end region of the water outlet in a screw-in sleeve which can be mounted downstream on a sanitary water outlet fitting or in a jet regulator housing.
  • the joint sleeve always covers the clear cross-section of the complementarily shaped socket, and thus the water flowing through completely through the flow guide, the invention provides that the pivoting movement of the joint sleeve is limited in the joint socket by a pivot stop, by the downstream side of an upstream sanitary fixture is formed.
  • outlet holes or outlet openings of at least one perforated plate of the flow guide have a circular or polygonal clear outlet cross section.
  • the flow guide walls of these circular or polygonal discharge holes or outlet openings can be arranged comparatively close to each other and therefore able to divert the water jet practically over its entire beam cross section well.
  • a particularly advantageous embodiment according to the invention provides that the outlet holes or outlet openings of at least one perforated plate are hexagonal or honeycomb-like and are arranged like a honeycomb to each other.
  • a front screen can be upstream in order to avoid clogging of the flow guide by the possibly entrained in the water dirt particles.
  • a particularly simple and advantageous embodiment according to the invention provides that the pivot stop by the outflow side of a designed as a sanitary fitting Attachment screen, Strahlformsiebes or Strahlzerlegers is formed.
  • the socket has at least one locking means which cooperates with at least one counter-locking means and that the latching and counter-locking means in their Detent position preferably define a zero pivot position of the joint sleeve.
  • the socket has a circumferential locking groove which cooperates at least with a latching projection on the outer circumference of the joint sleeve.
  • This latching projection can rotate, for example, on the outer circumference of the joint sleeve.
  • a preferred embodiment according to the invention provides that on the outer circumference of the joint sleeve an even number of locking projections is provided, and that the locking projections are provided in pairs on opposite sides of a running through the joint sleeve center line.
  • the zero position of the joint sleeve can be found in a simple manner when the latching projections engage in the locking groove.
  • the latching resistance can be easily overcome during pivoting of the joint sleeve, wherein the remaining during pivoting in the locking groove latching projections advantageously form a rotary or pivot axis.
  • the restoring force is a spring coil or a diaphragm spring, which preferably acts on the joint sleeve on its inflow-side flow side.
  • the perforated plate or lattice structure of the flow guide is preceded by at least one insertion or installation part which exerts a restoring force on the joint sleeve.
  • Such an insertion or installation part which is designed as a jet forming screen, can further improve the beam quality. Does this insertion or fitting additionally or instead a restoring force on the joint sleeve, the running or friction properties are improved when adjusting the pivotal position of the joint sleeve, without a special return spring would be required.
  • the joint sleeve is held in the complementarily shaped socket particularly safe and good when the spherical layer shape of the joint sleeve extends through a central plane of the ball.
  • Joint sleeve is movably held.
  • FIGS. 1 to 20 various embodiments of a sanitary water spout 1 are shown.
  • the water outlets 1 shown here have a spherical-layer-shaped joint sleeve 2, which is arranged in a joint socket 3 so as to be adjustable in the manner of a ball joint or pivotable.
  • a flow guide 4 is provided which has a perforated plate 5 with a number of, bounded by flow guide walls 6 outlet holes or outlet openings 7.
  • this can be configured with a comparatively small longitudinal extent. It has surprisingly been found that such a flow guide is capable of redirecting the water even with a comparatively short axial longitudinal extent of the flow guide in the direction of the axial position of the flow guide walls. It can be dispensed with space-consuming and possibly aesthetically disturbing ball joints.
  • the outlet holes in the Figures 1 and 2 and 5 to 20 shown flow guides 4 have a polygonal and in particular a hexagonal clear opening cross-section and are arranged honeycomb-like to each other. As FIG. 3 shows, the outlet openings can also be configured by radial and concentric circumferential flow guide walls 6 circular segment. Out FIG. 4 It is clear that the outlet openings can also have a circular or - as here - quadrangular clear opening cross-section.
  • Screw-in sleeve or Einschraubrosette 8 may be provided. This screw-8 is screwed into the water outlet 1 a sanitary water outlet fitting such that the screw-8 is completely submerged in the water outlet.
  • FIG. 5 an outlet nozzle 9 is shown, which also carries an external thread 14 for screwing into the internal thread of a water outlet fitting.
  • a jet regulator housing 31 can be used, in the sleeve interior of a jet breaker insert 30 is inserted.
  • the jet regulator housing 31 has the joint socket 3 downstream, in which the joint sleeve 2 is held adjustable or pivotable.
  • the socket 3 has at least one locking means 17 which cooperates with at least one counter-locking means 18 on the outer circumference of the joint sleeve 2.
  • latching and counter-latching means 17, 18 in their latching position, for example, a zero-pivot position of the joint sleeve fixed.
  • the socket 3 here to a circumferential locking groove 17 has, can on the outer circumference of the joint sleeve 2 of the FIG. 15 be shown in detail, annular circumferential locking projection 18 may be provided.
  • FIG. 11 It can be seen, but it is possible that on the outer circumference of the joint sleeve 2 an even number of locking projections 18 is provided, which are respectively provided in pairs on opposite sides of a running through the hinge sleeve center line.
  • jet regulator housing 31 has a joint socket 3, which has three spaced locking grooves 17.
  • these locking grooves 17 the at least one, on the ball center plane of the joint sleeve arranged latching projection 18 engage.
  • the mutually spaced locking grooves 17 set the zero pivot position and the both sides outer pivotal positions of the joint sleeve 2.
  • the joint sleeve 2 can also be held or loaded in the joint socket 3 by means of a restoring force arranged on its inflow side.
  • this restoring force by a spring coil 19 (see. FIG. 14 ) or by a perforated plate 5 upstream insertion or mounting part 20 (see. FIG. 13 ), which at the same time can also be designed as a jet forming screen in order to additionally improve the beam quality.
  • a central extension 21 is provided on the inflow side upstream beam splitter insert or the like jet regulator component, which surrounds the spring coil 19 or the spring 20 acts on the insertion or mounting part.
  • This restoring force presses the joint sleeve 2 down into the Kalottensitz formed by the joint socket 3, whereby the running or friction properties are improved when adjusting the pivot position.
  • manual Umstellkraft it is possible to indemnify the joint sleeve 2 such that the frictional resistance during adjustment is minimal. Without the restoring force provided here, there is the risk that the joint sleeve 2 is pressed against the upper inner circumference of the joint socket 3, as a result of which the joint sleeve 2 can tilt slightly and make further adjustment difficult.
  • the restoring force acting on the joint sleeve 2 increases their friction in the joint socket 3, whereby the joint sleeve 2 additionally secured in the set position and an automatic reset is avoided, for example by the flowing water.
  • a bias of joint sleeve 2 and socket 3 at the same time increases the sealing effect in the movement surface against disturbing water outlet. It is understood that the restoring force can also be achieved by other resilient elements and constructions.
  • used insertion or mounting part 20 has the advantage that it additionally improves the beam quality of the water flowing through the flow guide 4.
  • the joint sleeve may have a thickness of 1 to 15 mm.
  • the ball-like, all-round adjustability of the joint sleeve 2 also allows the water jet always to be aligned so that it tends as little as possible for spraying when hitting a sink.
  • FIG. 15 the jet regulator housing 31 of a jet regulator 10 which can be inserted into an outlet mouthpiece is shown, which has the joint socket 3 at its downstream housing end region, in which the joint sleeve 2 is mounted rotatably and pivotably.
  • the joint sleeve 2 is pivotable only in one plane. This is by two, at its free end portion semicircular spacers 40 between Joint sleeve 3 and the overlying insertion or mounting part 20 accomplished, which is designed here as a disc or plate-shaped and provided with flow-through member 20. On the sectional view in FIG. 15 only one of the two spacers 40 can be seen.
  • the VerFDsteg 42 thus also serves as an indicator that indicates to the user in which axis or in which plane which is designed as a swash plate joint sleeve 2 can move.
  • the VerFsteg 42 not only allows to pivot the joint sleeve 2 in the intended plane, but the rotatable in the joint socket 3 rotatably held in the circumferential joint sleeve 2 can also be rotated on Vercardsteg 42 when the user wants to change the pivoting direction of the joint sleeve 2.
  • FIG. 15 shows the sealing of the joint sleeve 2 relative to the joint socket 3.
  • the penetration of these two components 2, 3 shown here does not occur in reality, but it shows the undeformed degree of joint sleeve 2 and socket 3.
  • the illustrated penetration occurs in reality to elastic and plastic deformations, which allow a permanent seal.
  • jet regulator housing 31 has a joint sleeve 2, which has a similar, one-sided mobility as the joint sleeve 2 in FIG. 15 Has.
  • the two, here in alignment spacers 40 show at its free end a polygonal-shaped outer contour, which rolls on pivoting of the joint sleeve 2 about the axis perpendicular to the plane on the overlying disc or plate-shaped member 41 or the like structure.
  • the polygonal-shaped outer contour is characterized by additional locking projections 41 or the like elevations. These locking projections 41 allow “intermediate locking positions", so that the user is signaled by various resistors when rolling this traverse that the adjustment takes place in stages.
  • the joint sleeve 2 has a central spacer 49, which is supported on the overlying insertion or mounting part 20.
  • the insertion or installation part 20 arranged upstream on the inflow side has a spacer 50, which likewise protrudes in the form of a pin or web, so that the spacers 49, 50 act on one another at their free front ends.
  • the upstream or downstream installation or insertion part 20 exerts a restoring force on the joint sleeve 2, which restoring force presses the joint sleeve 2 into the joint socket 3.
  • FIG. 17 shows a likewise designed as a pivoting jet regulator jet regulator 10 in an all-round pivoting embodiment.
  • the enlarged detail in FIG. 17 again shows the intersection of the two corresponding and sealing components 2, 3.
  • This overlap is a theoretical representation.
  • In practical operation here is a biased fitting of the joint sleeve 2 to the socket 3, which ensures a high density. Because of the tightness of the measure of this Anschmiegung for the adjustment torque or for the adjustment of importance, since this adjustment should be on the one hand over all pivotal positions of the joint sleeve 2 equally easy or stiff. On the other hand, this fitting also ensures that the joint sleeve 2 as little as possible adjusted over the product life.
  • FIG. 18 also shows a pivotable in only one plane joint sleeve 2.
  • the adjustment of the joint sleeve 2 of in FIG. 18 shown pivot beam controller 10 is carried out as in the above embodiments in FIGS. 15 to 17 with the flow-side Vercardsteg 42.
  • the difference from the previous FIGS. 15 to 17 is that the pivot axis of the joint sleeve 2 is formed by two longitudinal grooves 45 on the inner periphery of the jet regulator housing 31 and its socket 3, in which the joint sleeve 2 is mounted with pivot pin 46.
  • the joint sleeve 2 can be rotated on the downstream and outwardly projecting twisted web 42 or the housing lower part 47 of the jet regulator housing 31, which carries the joint sleeve 2 and the jet-forming perforated plate in receiving joint socket 3, is about the longitudinal axis of the jet regulator 10 is rotated.
  • FIG. 18 becomes clear that the zero position of the joint sleeve in shape a circumferential in the housing lower part 47 groove 48 can be realized.
  • the joint sleeve 2 is in neutral orientation, then engages the upper free end of the elastically shaped inflow-side peripheral edge of the joint sleeve 2 in the slight undercut of the circumferential groove 48 a.
  • FIG. 19 shows the embodiment of a jet regulator, in which the joint sleeve 2 is movable on all sides and at the end of the end end an adjustment pin or VerFsteg 42 is provided so that an adjustment of the joint sleeve 2 by the user by gripping and pivoting on this Vercardsteg 42 can take place.
  • a twisting bar 42 shows that it is a pivoting jet regulator 10 with an adjustable joint sleeve 2 on the outlet side, which is normally unaware to the layman, since he does not know this property so far.
  • the direction of this VerFsteges 42 shown in Figure 24 then also the direction of the exiting water jet, so that with the help of this VerFsteges also pre-settings, without this being controlled by means of the water jet, can be performed.
  • FIG. 20 a further embodiment is shown, in which the joint sleeve 2 does not run in a hollow dome-shaped socket 3, but in which the dome-shaped joint sleeve 2 is arranged in an inner cone-shaped socket.
  • the material of the socket 3 or preferably the material of the joint sleeve 2 consists of a water-absorbing and thus swellable material .
  • these components will always be wet or wet, so that in relation to the mounting case, a biasing particular of the elastically pronounced sealing edge on the inflow-side peripheral edge region of the joint sleeve 2 occurs.
  • This leads to a constant bias voltage over the entire product life and at the same time easy installation. Depending on the dimensional design and the size of the swelling, this may even lead to a desired fixation and blocking of the joint sleeve 2 in the joint socket 3 during operation.

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Health & Medical Sciences (AREA)
  • Domestic Plumbing Installations (AREA)
  • Nozzles (AREA)
  • Joints Allowing Movement (AREA)
  • Filtration Of Liquid (AREA)
  • Sanitary Device For Flush Toilet (AREA)
  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)
  • Air-Flow Control Members (AREA)
  • Massaging Devices (AREA)
  • Taps Or Cocks (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)
  • Sink And Installation For Waste Water (AREA)
  • Confectionery (AREA)

Claims (20)

  1. Evacuation d'eau sanitaire (1) équipée d'un système (4) de guidage d'écoulement, côté décharge, ledit système (4) de guidage de l'écoulement présentant au moins un disque perforé (5) ou une structure en treillis comportant un certain nombre de trous de sortie ou d'orifices de sortie (7), ladite évacuation d'eau (1) étant dotée d'une douille articulée (2) en forme de zone sphérique logée, avec faculté de réglage ou de pivotement, dans une cuvette d'articulation (3) de forme complémentaire, et ledit système (4) de guidage de l'écoulement étant prévu dans l'espace interne de ladite douille articulée (2), caractérisée par le fait que la cuvette d'articulation (3) est prévue sur la région extrême frontale située côté décharge de ladite évacuation d'eau, dans une douille (8) encastrable par vissage et pouvant être montée, côté décharge, sur une robinetterie de distribution d'eau sanitaire, ou bien dans un carter (31) régulateur de jets ; par le fait que le système (4) de guidage de l'écoulement, se présentant comme un disque perforé (5) ou comme une structure en treillis, comprend un certain nombre de trous de sortie ou d'orifices de sortie (7) périphériquement délimités par des parois de guidage de l'écoulement ; et par le fait que le mouvement pivotant de la douille articulée (2), dans la cuvette d'articulation (3), est limité par une butée de pivotement matérialisée par le côté décharge d'une pièce intégrée sanitaire, implantée en amont.
  2. Evacuation d'eau selon la revendication 1, caractérisée par le fait que les trous de sortie ou orifices de sortie (7) d'au moins un disque perforé (5) sont respectivement pourvus d'une configuration hexagonale, ou en nid d'abeilles, et sont mutuellement disposés à la manière d'alvéoles.
  3. Evacuation d'eau selon la revendication 1 ou 2, caractérisée par le fait que la butée de pivotement est matérialisée par le côté décharge d'un embout de tamisage (11), d'un crible (20) formateur de jets ou d'un brise-jets (30), réalisé sous la forme d'une pièce intégrée sanitaire.
  4. Evacuation d'eau selon l'une des revendications 1 à 3, caractérisée par le fait que la cuvette d'articulation offre au moins un moyen d'encliquetage (17), qui coopère avec au moins un moyen d'encliquetage complémentaire (18) de la douille articulée (2).
  5. Evacuation d'eau selon l'une des revendications 1 à 4, caractérisée par le fait que les moyens (17, 18) d'encliquetage et d'encliquetage complémentaire définissent, dans leur position crantée, une position de pivotement zéro de la douille articulée (2).
  6. Evacuation d'eau selon l'une des revendications 1 à 5, caractérisée par le fait que la douille articulée (2) est sollicitée, ou retenue dans la cuvette d'articulation, sous l'effet d'une force de rappel agissant sur son côté afflux.
  7. Evacuation d'eau selon l'une des revendications 1 à 6, caractérisée par le fait que la force de rappel se présente comme une spirale élastique (19) ou comme un ressort à membrane.
  8. Evacuation d'eau selon l'une des revendications 1 à 7, caractérisée par le fait qu'au moins une pièce (20), insérable ou intégrée, est placée en amont du disque perforé et/ou d'une structure du système de guidage de l'écoulement constituée, respectivement, d'un treillis ou de lamelles.
  9. Evacuation d'eau selon l'une des revendications 1 à 8, caractérisée par le fait qu'au moins une pièce (20), insérable ou intégrée, est conçue comme un crible formateur de jets et/ou applique une force de rappel à la douille articulée.
  10. Evacuation d'eau selon l'une des revendications 1 à 9, caractérisée par le fait que la configuration en zone sphérique de la douille articulée (2) passe par le plan médian d'une sphère.
  11. Evacuation d'eau selon l'une des revendications 1 à 10, caractérisée par le fait que la douille articulée (2) et/ou la cuvette d'articulation (3) comporte(nt), dans la région périphérique, au moins une zone encaissée (12) remplissant la fonction d'un orifice de passage d'air.
  12. Evacuation d'eau selon l'une des revendications 1 à 11, caractérisée par le fait qu'au moins un organe d'espacement (40), prévu sur le côté afflux de la douille articulée (2), est en applique contre une pièce structurelle (41) placée en amont côté afflux, le profil de surface dudit organe, pointant vers ladite pièce structurelle (41), établissant fermement l'axe de pivotement de ladite douille articulée (2) apte à pivoter dans la cuvette d'articulation (3).
  13. Evacuation d'eau selon l'une des revendications 1 à 12, caractérisée par le fait que l'axe de pivotement de la douille articulée (2) est formé d'au moins deux organes d'espacement (40) distants l'un de l'autre du côté afflux de ladite douille articulée (2), ou de son disque perforé.
  14. Evacuation d'eau selon l'une des revendications 1 à 13, caractérisée par le fait que la douille articulée (2) est montée, dans la cuvette d'articulation (3), avec faculté de rotation dans le sens périphérique.
  15. Evacuation d'eau selon l'une des revendications 1 à 14, caractérisée par le fait qu'une membrure tournante (42), ou une pièce similaire de maniement, fait saillie au-delà du côté décharge de la douille articulée (2).
  16. Evacuation d'eau selon l'une des revendications 1 à 15, caractérisée par le fait que la douille articulée (2) porte de manière étanche contre le pourtour intérieur de la cuvette d'articulation (3), avec précontrainte, au moins dans sa région marginale périphérique située côté afflux.
  17. Evacuation d'eau selon l'une des revendications 1 à 16, caractérisée par le fait que l'axe de pivotement de la douille articulée (2), dans la cuvette d'articulation (3), est fermement établi par deux tenons de pivotement (46) qui font saillie sur des côtés opposés de ladite cuvette d'articulation (3) ou de ladite douille articulée (2), lesdits tenons (46) pénétrant, de manière rotative, dans des rainures longitudinales (45) de l'autre pièce structurelle (2, 3) respective.
  18. Evacuation d'eau selon l'une des revendications 1 à 17, caractérisée par le fait que la douille articulée (2), et/ou la cuvette d'articulation (3), est (sont) constituée(s) d'un matériau apte au gonflement ; et par le fait qu'à l'état gonflé, ladite douille articulée (2) est montée ou bloquée intimement à demeure dans ladite cuvette d'articulation (3).
  19. Evacuation d'eau selon l'une des revendications 1 à 18, caractérisée par le fait que la cuvette d'articulation, ou la région partielle (47) du carter (31) régulateur de jets portant ladite cuvette d'articulation (3), est montée à rotation dans ladite évacuation d'eau.
  20. Evacuation d'eau selon l'une des revendications 1 à 19, caractérisée par le fait que la douille articulée (2) est montée, de façon mobile, dans une cuvette d'articulation (3) en forme de calotte creuse ou de cône creux.
EP06723189A 2005-03-04 2006-03-03 Evacuation d'eau d'installation sanitaire Active EP1817466B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP10012650.7A EP2287409B1 (fr) 2005-03-04 2006-03-03 Sortie d'eau sanitaire dotée d'un guidage d'écoulement pivotant
PL06723189T PL1817466T3 (pl) 2005-03-04 2006-03-03 Wylewka do armatury sanitarnej wyposażona w odchylną kierownicę strumienia wody

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102005010550A DE102005010550B4 (de) 2005-03-04 2005-03-04 Sanitärer Wasserauslauf
PCT/EP2006/001944 WO2006092316A2 (fr) 2005-03-04 2006-03-03 Evacuation d'eau d'installation sanitaire

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP10012650.7A Division EP2287409B1 (fr) 2005-03-04 2006-03-03 Sortie d'eau sanitaire dotée d'un guidage d'écoulement pivotant
EP10012650.7 Division-Into 2010-10-01

Publications (2)

Publication Number Publication Date
EP1817466A2 EP1817466A2 (fr) 2007-08-15
EP1817466B1 true EP1817466B1 (fr) 2011-09-07

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EP06723189A Active EP1817466B1 (fr) 2005-03-04 2006-03-03 Evacuation d'eau d'installation sanitaire
EP10012650.7A Active EP2287409B1 (fr) 2005-03-04 2006-03-03 Sortie d'eau sanitaire dotée d'un guidage d'écoulement pivotant

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EP10012650.7A Active EP2287409B1 (fr) 2005-03-04 2006-03-03 Sortie d'eau sanitaire dotée d'un guidage d'écoulement pivotant

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US (2) US8205810B2 (fr)
EP (2) EP1817466B1 (fr)
JP (1) JP4873657B2 (fr)
CN (2) CN104452900B (fr)
AT (1) ATE523638T1 (fr)
AU (1) AU2006220023B8 (fr)
BR (1) BRPI0608462B1 (fr)
DE (1) DE102005010550B4 (fr)
ES (1) ES2372970T3 (fr)
MX (1) MX2007010521A (fr)
PL (1) PL1817466T3 (fr)
PT (1) PT1817466E (fr)
RU (1) RU2401361C2 (fr)
WO (1) WO2006092316A2 (fr)
ZA (1) ZA200706283B (fr)

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Also Published As

Publication number Publication date
CN101287878B (zh) 2015-11-25
BRPI0608462B1 (pt) 2017-05-30
CN104452900A (zh) 2015-03-25
US20080210777A1 (en) 2008-09-04
DE102005010550B4 (de) 2007-03-22
EP2287409A2 (fr) 2011-02-23
US8205810B2 (en) 2012-06-26
DE102005010550A1 (de) 2006-10-05
AU2006220023B8 (en) 2011-06-16
ZA200706283B (en) 2008-07-30
CN101287878A (zh) 2008-10-15
AU2006220023A1 (en) 2006-09-08
WO2006092316A3 (fr) 2006-11-30
ATE523638T1 (de) 2011-09-15
RU2401361C2 (ru) 2010-10-10
AU2006220023B2 (en) 2011-05-12
PL1817466T3 (pl) 2012-02-29
MX2007010521A (es) 2008-02-15
RU2007131963A (ru) 2009-04-10
EP1817466A2 (fr) 2007-08-15
JP4873657B2 (ja) 2012-02-08
JP2008531885A (ja) 2008-08-14
PT1817466E (pt) 2011-12-16
US8528840B2 (en) 2013-09-10
US20120228409A1 (en) 2012-09-13
BRPI0608462A2 (pt) 2010-01-05
EP2287409B1 (fr) 2016-04-20
CN104452900B (zh) 2016-11-23
ES2372970T3 (es) 2012-01-30
WO2006092316A2 (fr) 2006-09-08
EP2287409A3 (fr) 2012-07-04

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