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EP3105381B1 - Robinet à bec pivotant - Google Patents

Robinet à bec pivotant Download PDF

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Publication number
EP3105381B1
EP3105381B1 EP15704462.9A EP15704462A EP3105381B1 EP 3105381 B1 EP3105381 B1 EP 3105381B1 EP 15704462 A EP15704462 A EP 15704462A EP 3105381 B1 EP3105381 B1 EP 3105381B1
Authority
EP
European Patent Office
Prior art keywords
insert
housing
adapter
water
fitting
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
EP15704462.9A
Other languages
German (de)
English (en)
Other versions
EP3105381A1 (fr
Inventor
Hans Dieter Keiter
Matthias SCHLÜTER
Martin Weiss
Michael Pehl
Günter Faust
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.)
Grohe AG
Original Assignee
Grohe 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 Grohe AG filed Critical Grohe AG
Publication of EP3105381A1 publication Critical patent/EP3105381A1/fr
Application granted granted Critical
Publication of EP3105381B1 publication Critical patent/EP3105381B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • E03C1/0404Constructional or functional features of the spout

Definitions

  • the invention relates to a valve with a swivel spout according to the preamble of claim 1.
  • a valve is in the document EP1686218A1 described.
  • the outer fitting housing can be pivot-mounted on a radially inner, swivel-proof housing insert.
  • a single-lever mixing cartridge is integrated in the housing insert, with the actuating lever of which the temperature and / or amount of outflowing mixed water can be adjusted.
  • a generic fitting with swivel spout is known.
  • An adapter is integrated in the housing insert for easy assembly of the cold and hot water pipes to the mixing cartridge.
  • the cold and hot water pipes are connected to the input side of the adapter.
  • On the output side of the adapter is in connection with the mixing cartridge.
  • the adapter has a flow passage, which connects the mixing cartridge in terms of flow technology to a mixed water line leading to the water outlet.
  • the mixed water flow passage in the adapter is an annular space running around the housing axis with a flow cross-section open to the outside, which is fluidically connected to a mixed water line leading to the water outlet.
  • the cold and hot water channels of the adapter extend in the axial direction through the mixed water annulus. This means that the cold and hot water channels on the adapter side are flushed with the outflowing mixed water.
  • the annular space is to be sealed in the axial direction at the top and bottom with an annular seal in each case against the inner wall of the fitting housing.
  • the two ring seals are positioned all around between the adapter outer circumference and the inner circumference of the valve body and are therefore designed with a correspondingly large sealing diameter. This results in comparatively large friction values between the rotating valve body and the pivot-resistant housing insert when pivoting, which may limit the ease of use.
  • the volatile seal can only be carried out with increased assembly costs and material.
  • the mixed water pipe is formed directly by the inner wall of the swivel spout.
  • the water is always in contact with the brass housing.
  • the valve body is cast together with the swivel spout in common, cost-intensive practice from brass or soldered together from two brass parts.
  • a faucet in particular a single-lever mixer, with a hood, a handle lever which is seated on the hood and rotatably mounted, and a water outlet and a mixer cartridge arranged in the hood, the mixer cartridge and the water outlet being connected via a single, integrally formed connecting element (3 0) are interconnected.
  • the object of the invention is to provide an inexpensive sanitary fitting in which the water path is separated from the metal of the fitting housing, as a result of which a less expensive zinc die casting can be used instead of brass.
  • another object is to simplify the assembly and manufacture of the valve body, specifically using an inexpensive one Zinc injection molding process.
  • a fitting with a swivel spout is to be provided, in which the effort for sealing is reduced in a simple manner.
  • the mixed water line adjoining the adapter-side mixed water flow passage in the flow direction is formed by a deflection insert and the water hose connected to it.
  • the fitting has at least one pivot bearing point at which the deflection insert is pivotably mounted, in particular coaxially to the housing axis.
  • a plastic guide is used to facilitate assembly for pre-centering the water hose before its liquid-tight insertion into an outlet-side channel section of the deflecting insert at a passage between the fitting housing and the swivel spout. Thanks to the swivel bearing, the deflection insert of the mixed water line can easily follow swivel operations of the valve body without being exposed to excessive mechanical permanent loads. The service life of the valve is thus considerably increased.
  • the housing axis is understood to be a pivot axis about which the valve housing can be rotated when the user actuates the pivot.
  • the housing axis is to be understood as a surface normal that passes through the valve through the center of gravity of a cross-sectional surface. In the case of a hollow cylindrical fitting housing, its central axis forms the housing axis.
  • One of the pivot bearing points of the deflection insert can preferably be formed directly on the pivot-fixed adapter. Another bearing point, however, can be formed on a separate housing insert from the adapter.
  • the deflection insert can be coupled in a liquid-tight manner to the adapter outlet opening with an inlet-side channel section and has an outlet-side channel section to which the water hose is connected.
  • the inlet-side channel section of the deflection insert can also form the above-mentioned adapter-side pivot bearing point in a dual function.
  • the inlet-side channel section is preferably coaxial to the housing axis in a liquid-tight plug connection with the mixed water socket of the adapter, the plug connection being designed to enable the pivoting movement of the deflection insert.
  • the deflection insert can have a bearing contour on its side axially opposite the inlet-side channel section, that is to say, for example, a bearing journal. This can be pivotally mounted with play in a corresponding counter-contour of a housing insert.
  • the deflection insert can be pivot-mounted axially parallel or coaxially to the housing axis:
  • An axis-parallel, i.e. eccentric, pivot bearing of the deflection insert with reference to the housing axis leads to compensating movements between the deflection insert and the fitting housing in the radial direction when the valve is actuated. This causes mechanical stress on the deflection insert.
  • a coaxial, that is to say central, mounting of the deflection insert is preferred, as a result of which such compensating movements are eliminated.
  • the mixed water flow passage on the adapter side can no longer be designed as an annular space which is open radially outwards and which has only a high volume assembly costs can be sealed, but rather as a mixed water channel that has an outlet opening that is open in the axial direction.
  • the downstream pivotably mounted line element of the mixed water line can be connected to the mixed water outlet opening of the adapter with a sealing diameter that is significantly smaller than in the prior art.
  • the adapter can have a mixed water connection which delimits the outlet opening which is open in the axial direction. Furthermore, the adapter can have a cold water channel and a hot water channel, which the cold and Connect hot water pipes to the valve element. The cold and hot water channels of the adapter can be limited by cold and hot water connections.
  • the cold and hot water nozzles can be arranged here parallel to the axis of the mixed water nozzle.
  • the hot and cold water nozzles can preferably be arranged eccentrically to the housing axis, while the mixed water nozzles are arranged centrally to the housing axis.
  • the warm, cold and mixed water nozzles protruding from a base body of the adapter are preferably arranged in a space-saving manner on an end face of the adapter facing the cold and hot water pipes.
  • a water hose can connect to the deflection insert in the direction of flow.
  • the water hose can be routed continuously from the deflection insert to the jet generator of the water outlet on the outlet side.
  • the mixed water flowing out of the mixing cartridge can be guided to the water outlet opening without contact with respect to an inner wall of the fitting housing.
  • the line element according to the invention can also have a driver, by means of which the line element can be coupled in motion with the fitting housing in the pivoting direction.
  • a driver by means of which the line element can be coupled in motion with the fitting housing in the pivoting direction.
  • the line element i.e. the deflection insert
  • the driver thus decouples the water line connected to the deflection insert from all movement forces or moments caused by the rotation of the valve body.
  • the adapter can be arranged together with the mixing cartridge in a housing insert. In the installed position, this is swivel-proof mounted inside the valve body.
  • the housing insert can be designed as a hollow cylinder, the hollow profile of which delimits an insert base on the base side and has an upwardly open end face through which the deflection insert, the adapter and the valve member can be inserted during assembly.
  • the housing insert thus forms a stable support base for the valve member, the adapter and the deflection insert.
  • the insert bottom of the housing insert can have connection connections for the line connection between the inlet connection piece of the adapter and the hot and cold water lines.
  • the countercontour interacting with the bearing contour (for example a bearing journal) of the deflection insert can be formed in the insert bottom of the housing insert in the insert bottom of the housing insert.
  • the housing insert can be provided with swivel stops which limit a swiveling movement of the valve housing around the housing axis.
  • the housing insert can have a radially outer circumferential groove in which a stop screw of the valve housing projects radially inwards.
  • the fitting housing 1 is a hollow profile part, for example made of zinc, with a cylindrical, upwardly open installation space which is delimited on the bottom side by a base plate 5.
  • a hollow cylindrical housing insert 7 is inserted in the assembly space, in the hollow profile of which a single-lever mixing cartridge 9 and an adapter 11 are arranged.
  • the hollow cylindrical assembly space of the valve body 1 is through a passage 13 ( Fig. 2 ) in connection with the water outlet 3.
  • the mixing cartridge 9 is fluidly coupled with the interposition of the adapter 11 with a hot water line 15, a cold water line 17 and a mixed water line 19 leading to the water outlet 3 of the sanitary fitting.
  • the mounting space of the fitting housing 1, which is open at the top, is in the Fig. 1 closed by a cap 21 through which a lever 23 of the mixing cartridge 9 projects upwards.
  • the unit consisting of the housing insert 7, the mixing cartridge 9 and the adapter 11 is in the Fig. 1 clamped against the bottom mounting plate 5 of the valve housing 1 by means of a central screw element 25 arranged on the top of the valve housing 1.
  • the inner housing insert 7 is an indicated tension screw 27 ( Fig. 1 or 2nd ) with only in the Fig. 1 indicated kitchen worktop 10 swivel-proof braced.
  • the hollow cylindrical fitting housing 1 is pivotally mounted on the outer circumference of the housing insert 7 about a housing axis A, with the interposition of bearing points 29 ( Fig. 2 ).
  • the hollow profile of the housing insert 7 is delimited on the base side by an insert base 31.
  • This has connection connections, not shown, into which connection pieces of the hot and cold water pipes 15, 17 inserted from below are inserted in a liquid-tight manner and by means of an insert part 37 ( Fig. 1 or 2nd ) are held captive.
  • warm and cold water sockets 39, 41 of the adapter 11 protrude into the connection connections of the insert base 31 in a liquid-tight manner.
  • the hot and cold water sockets 39, 41 of the adapter 11 are in turn coupled to the mixing cartridge 9 at their top-side outlets and each delimit a hot water channel 48 and a cold water channel 44.
  • the adapter 11 has a mixed water channel 45. Starting from the mixing cartridge 9, this is guided downwards along the housing axis A, the outlet opening 46 ( Fig. 8 ) limited by a mixed water nozzle 47 is. According to the Fig. 4 the mixed water spout 47 and the hot and cold water spouts 39, 41 are aligned axially parallel with respect to the housing axis A. In addition, the mixed water connector 47 is arranged coaxially to the housing axis A, while the two hot and cold water connectors 39, 41 are arranged eccentrically to it.
  • the adapter 11 has a stop contour 49. In the assembled position, this is in contact with corresponding rotary stops 51 ( Fig. 4 ), which are incorporated radially on the inside in the housing insert 7.
  • the adapter 7 according to the Fig. 8 upwardly open mold pockets 53, into which corresponding projections (not shown) of the mixing cartridge 9 project in a form-fitting manner.
  • Both the stop contour 49 and the shaped pockets 53 of the adapter 11 form a torque support, with which actuation forces are guided from the lever 23 via the mixing cartridge 9 to the fitting housing 1 and the technology provided in the fitting housing 1 is thus kept essentially free of forces.
  • the mixed water line 19 is connected in a technically simple manner to the centrally arranged mixed water nozzle 47, the sealing zone formed between the mixed water line 19 and the mixed water nozzle 47 having a sealing diameter which is substantially smaller than in the prior art and is therefore significantly cheaper in view of the required sealing effort .
  • the sealing diameter is according to the Fig. 1 essentially identical to the inside diameter of the mixed water nozzle 47.
  • the mixed water line 19 leading to the water outlet opening 18 is constructed in several parts, specifically with a deflection insert 55 and a flexible water hose 57 connected to it Fig. 6 and 7 an inlet-side flow channel 59 and an outlet-side flow channel 61, which are arranged approximately in a V-shape with respect to one another and on a lower fork 63 ( Fig. 7 ) converge.
  • the deflection insert 55 is in the Fig. 2 on an upper bearing 65 and a lower bearing 67 coaxially mounted to the housing axis A.
  • the upper bearing point 65 is embodied by a plug-in connection in which the inlet-side channel section 59 is inserted into the mixed water nozzle 47 of the adapter 11, specifically in a liquid-tight and pivotable manner.
  • the lower bearing point 67 is realized by a guide pin 74 formed on the deflection insert 55, which is inserted into a corresponding recess 69 in the insert base 31 of the housing insert 7.
  • the deflection insert 55 On the outlet-side channel section 61 of the deflection insert 55, according to FIG Fig. 1 or 2nd the water hose 57 is inserted, which the mixed water up to the water outlet opening 18 ( Fig. 1 ) leads.
  • the deflection insert 55 additionally has a driver 71.
  • the driver 71 protrudes according to the Fig. 4 in a housing groove 73, which is formed on the inside of the valve body 1.
  • a circumferential groove 75 ( Fig. 2 ) intended.
  • a stop screw 77 protrudes in the transverse direction and is held on the valve housing 1.
  • a preassembly unit When assembling the valve, a preassembly unit can first be provided, in which the deflection insert 55 with its lower guide pin 74 is first inserted into the recess 69 of the insert base 31 of the housing insert 7 in a process sequence. Then the adapter 7 with its mixed water nozzle 47 is placed in a liquid-tight manner on the upwardly projecting inlet-side channel section 59 of the deflection insert 55, specifically with the adapter 11 supported on a radially inner annular shoulder 79 ( Fig. 1 ) and with a free movement play between the lower end faces of the hot and cold water sockets 39, 41 of the adapter 11 in the connection connections, not shown, of the insert base 31 of the housing insert 7. Subsequently, the mixing cartridge 9 is inserted into the housing insert 7.
  • the pre-assembly unit thus formed is inserted into the assembly space of the valve housing 1, which is open at the top, and is inserted therein by means of the central clamping element 25 ( Fig. 1 ) screwed.
  • the water hose 57 is then introduced into the outlet-side channel section 61 via the water outlet opening 18.
  • the plastic guide 81 With the aid of the plastic guide 81, the water hose 57 is pre-centered during the insertion process before it is inserted into the outlet-side channel section 61 of the deflection insert 55 in a liquid-tight manner.
  • the hot and cold water connections 39, 41 (integrated in the adapter 11) 4 and 5 ) when the valve is swivel actuated, while the deflection insert 55 with the mixed water channel sections 59, 61 integrated therein follows the swivel movement of the valve housing 1.
  • the hot and cold water sockets 39, 41 of the adapter 11 can thus optionally act as limit stops which limit a pivoting angle of the deflection insert 55 and thus of the valve body 1.
  • the mixed water channel sections 59, 61 can be integrated in the deflection insert 55 in a further embodiment, not shown, but also cold and hot water channels.
  • the cold and hot water pipes 15, 17 would no longer be coupled to the swiveling cold and hot water sockets 39, 41 of the adapter 11, but rather to the cold and hot water channels in the pivotable deflection insert 55.
  • the cold and hot water sockets 39, 41 of the adapter 11 could therefore be omitted, so that the above-mentioned pivot angle limitation is also avoided.

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)
  • Multiple-Way Valves (AREA)
  • Valve Housings (AREA)
  • Domestic Plumbing Installations (AREA)

Claims (14)

  1. Robinet, pourvu d'un bec pivotant, pourvu d'un corps de robinet (1), logé de manière à pouvoir pivoter autour d'un axe du corps (A), dans lequel un organe formant vanne (9), notamment une cartouche mitigeuse, destinée à régler la température et/ou la quantité d'eau mitigée est placé de manière à ne pas pivoter, lequel organe formant vanne (9) est relié du côté de l'entrée avec des conduits d'eau chaude et froide (15, 17) et du côté de la sortie avec un conduit d'eau mitigée (19) tiré vers une sortie d'eau (3), un adaptateur (11) comportant au moins un passage d'écoulement (45), qui relie fluidiquement l'organe formant vanne (9) avec le conduit d'eau mitigée (19), le conduit d'eau mitigée (19) qui se raccorde dans la direction d'écoulement sur le passage d'écoulement d'eau mitigée (45) placé sur le côté de l'adapteur étant formé par au moins un insert de renvoi (55), et le robinet comportant au moins un point d'appui pivotant (65, 67) sur lequel l'insert de renvoi (55) est logé de manière à pouvoir pivoter, notamment de manière coaxiale par rapport à l'axe du corps (A), caractérisé en ce que pour un centrage préalable d'un flexible à eau (57) avant de l'introduire de manière étanche au liquide dans un tronçon de canalisation (61) placé du côté de la sortie de l'insert de renvoi (55), un guidage en matière plastique (81) est inséré sur un passage (13) entre le corps de robinet (1) et le bec pivotant (3) et en ce que le conduit d'eau mitigée (19) est conçu en plusieurs parties, à savoir avec l'insert de renvoi (55) et le flexible à eau (57) raccordé sur celui-ci.
  2. Robinet selon la revendication 1, caractérisé en ce que le conduit d'eau mitigée (19, 55, 57) est posé sous la forme d'un élément constitutif séparé à l'intérieur du corps de robinet (1) et/ou de la sortie d'eau (3).
  3. Robinet selon la revendication 2, caractérisé en ce qu'au moins un point d'appui pivotant (65) est conçu sur l'adaptateur (11), et/ou en ce qu'un point d'appui pivotant (67) est conçu sur un insert de corps (7) séparé de l'adaptateur (11).
  4. Robinet selon la revendication 1, 2 ou 3, caractérisé en ce que le passage d'écoulement (45) de l'adaptateur (11) reliant fluidiquement l'organe formant vanne (9) avec le conduit d'eau mitigée (19) est une canalisation d'eau mitigée, qui comporte un orifice de sortie (46) ouvert en direction axiale.
  5. Robinet selon l'une quelconque des revendications précédentes, caractérisé en ce que l'adaptateur (11) comporte une tubulure d'eau mitigée (47) qui délimite l'orifice de sortie (46) ouvert en direction axiale.
  6. Robinet selon l'une quelconque des revendications précédentes, caractérisé en ce que pour créer le point d'appui (65), un tronçon de canalisation (59) placé du côté de l'entrée de l'insert de renvoi (55) est en liaison par enfichage étanche au liquide avec l'orifice de sortie d'eau mitigée (46) de l'adaptateur (11), et en ce que la liaison par enfichage est conçue de telle sorte qu'un mouvement pivotant de l'insert de renvoi (55) soit rendu possible.
  7. Robinet selon l'une quelconque des revendications précédentes 3 à 6, dans la mesure où elle se rapporte à la revendication 3, caractérisé en ce que pour créer le point d'appui (67), l'insert de renvoi (55) comporte un contour d'appui (74), notamment un tourillon, et en ce que le contour d'appui (74) de l'insert de renvoi (55) coopère avec un contour antagoniste (69) conçu dans l'adaptateur (11) oudans l'insert de corps (7).
  8. Robinet selon l'une quelconque des revendications précédentes, caractérisé en ce que l'insert de renvoi (55) logé de manière à pouvoir pivoter comporte un entraîneur (71) au moyen duquel l'insert de renvoi (55) est accouplé en mouvement avec le corps de robinet (1) dans la direction de pivotement.
  9. Robinet selon l'une quelconque des revendications précédentes, caractérisé en ce que l'orifice de sortie (46) du passage d'écoulement d'eau mitigée (45) placé du côté de l'adaptateur est placé de manière centrale par rapport à l'axe du corps (A).
  10. Robinet selon l'une quelconque des revendications précédentes, caractérisé en ce que l'adaptateur (11) comporte une canalisation d'eau froide (44) et une canalisation d'eau chaude (48), qui relient fluidiquement les conduits d'eau froide et chaude (15, 17) avec l'organe formant vanne (9).
  11. Robinet selon la revendication 10, caractérisé en ce que la canalisation d'eau froide (44) et la canalisation d'eau chaude (48) de l'adaptateur (11) sont délimitées par des tubulures d'eau froide et chaude (39, 41), et en ce que notamment les tubulures d'eau froide et chaude (39, 41) sont placées de manière parallèle à l'axe de la tubulure d'eau mitigée (47), et/ou en ce que les tubulures d'eau froide et chaude (39, 41) sont placées de manière excentrique par rapport à l'axe du corps (A).
  12. Robinet selon l'une quelconque des revendications 3 à 11, dans la mesure où elle se rapporte à la revendication 3, caractérisé en ce que l'insert de corps (7) placé de manière à ne pas pivoter dans la position de montage est conçu en forme de cylindre creux, et en ce que le profilé creux de l'insert de corps (7) est délimité sur le côté du fond inférieur par un fond d'insertion (31), et en ce que dans le profilé creux de l'insert de corps (7) est placé l'organe formant vanne (9) et l'adaptateur (11).
  13. Robinet selon la revendication 12, caractérisé en ce que le fond d'insertion (31) de l'insert de corps (7) comporte des raccords de liaison destinés à relier les conduits entre les tubulures d'eau chaude et froide (39, 41) placées du côté de l'adaptateur et les conduits d'eau chaude et froide (15, 17), et/ou en ce que dans le fond d'insertion (31) de l'insert de corps (7) est conçu le contour antagoniste (69) coopérant avec le contour d'appui (74) de l'insert de renvoi (55) .
  14. Robinet selon la revendication 12 ou 13, caractérisé en ce que l'insert de corps (7) comporte des butées de pivotement (75) placées notamment sur la périphérie extérieure, qui délimitent un mouvement en pivotement du corps de robinet (1) autour de l'axe du corps (A).
EP15704462.9A 2014-02-10 2015-02-10 Robinet à bec pivotant Active EP3105381B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102014001606.4A DE102014001606A1 (de) 2014-02-10 2014-02-10 Armatur mit einem Schwenkauslauf
PCT/EP2015/000282 WO2015117767A1 (fr) 2014-02-10 2015-02-10 Robinet à bec pivotant

Publications (2)

Publication Number Publication Date
EP3105381A1 EP3105381A1 (fr) 2016-12-21
EP3105381B1 true EP3105381B1 (fr) 2020-08-05

Family

ID=52472276

Family Applications (1)

Application Number Title Priority Date Filing Date
EP15704462.9A Active EP3105381B1 (fr) 2014-02-10 2015-02-10 Robinet à bec pivotant

Country Status (4)

Country Link
EP (1) EP3105381B1 (fr)
CN (1) CN105980640B (fr)
DE (1) DE102014001606A1 (fr)
WO (1) WO2015117767A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4549672A1 (fr) * 2023-11-02 2025-05-07 Xiamen Lota International Co., Ltd. Structure de robinet pour lavabo

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Publication number Priority date Publication date Assignee Title
DE102015002259A1 (de) * 2015-02-25 2016-08-25 Grohe Ag Sanitärarmatur mit einer Arretierung für eine Fluidleitung
US10550946B2 (en) 2016-04-04 2020-02-04 Hamat Sanitary Fittings And Casting Ltd. Mixer water faucet
EP3228764B1 (fr) 2016-04-04 2020-02-12 Hamat Sanitary Fitting And Casting Robinet mélangeur

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CN87212594U (zh) * 1987-12-16 1988-11-16 邱真君 混合水龙头
DE4138938A1 (de) * 1991-11-27 1993-06-03 Grohe Armaturen Friedrich Wasserarmatur mit schwenkbarem auslaufrohr
DK173156B1 (da) * 1994-10-05 2000-02-14 Damixa As Etgrebsblandingsarmatur
DE29707764U1 (de) * 1997-04-29 1997-07-17 Reich KG Regel- und Sicherheitstechnik, 35713 Eschenburg Wasserhahn
DE10243305B4 (de) * 2002-09-13 2010-07-22 Hansgrohe Ag Schwenkauslauf für Sanitärarmaturen
DE10246861A1 (de) * 2002-10-08 2004-04-22 HDO Druckguss- und Oberflächentechnik GmbH Wasserauslaufarmatur für Waschbecken
DE502005007501D1 (de) * 2005-01-27 2009-07-30 Kwc Ag Sanitärarmatur mit schwenkbarem Wasserauslass
DE102007009409B4 (de) 2007-02-23 2010-10-14 Grohe Ag Armatur mit Schwenkauslauf
DE102007043309B4 (de) * 2007-09-12 2015-06-18 Grohe Ag Sanitärarmatur
CN201265662Y (zh) * 2008-04-28 2009-07-01 颜森林 一种硬密封水龙头
DE102011076829B4 (de) * 2011-05-31 2015-07-30 Hansgrohe Se Sanitärarmatur
DE202013002188U1 (de) * 2013-03-08 2014-06-11 Neoperl Gmbh Sanitäres Einbauteil, Innenschlauchanordnung für eine Sanitärarmatur und Sanitärarmatur

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4549672A1 (fr) * 2023-11-02 2025-05-07 Xiamen Lota International Co., Ltd. Structure de robinet pour lavabo

Also Published As

Publication number Publication date
WO2015117767A1 (fr) 2015-08-13
DE102014001606A1 (de) 2015-08-13
EP3105381A1 (fr) 2016-12-21
CN105980640A (zh) 2016-09-28
CN105980640B (zh) 2018-10-23

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