EP3321435A1 - Système de garniture d'écoulement - Google Patents

Système de garniture d'écoulement Download PDF

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Publication number
EP3321435A1
EP3321435A1 EP16197878.8A EP16197878A EP3321435A1 EP 3321435 A1 EP3321435 A1 EP 3321435A1 EP 16197878 A EP16197878 A EP 16197878A EP 3321435 A1 EP3321435 A1 EP 3321435A1
Authority
EP
European Patent Office
Prior art keywords
throttle
receptacle
drain
opening
valve seat
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.)
Granted
Application number
EP16197878.8A
Other languages
German (de)
English (en)
Other versions
EP3321435B1 (fr
Inventor
Alfred Mahler
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
Priority to EP16197878.8A priority Critical patent/EP3321435B1/fr
Application filed by Geberit International AG filed Critical Geberit International AG
Priority to PCT/EP2017/078428 priority patent/WO2018087070A1/fr
Priority to EP17801627.5A priority patent/EP3538716B1/fr
Priority to CN201780069053.0A priority patent/CN109923267B/zh
Priority to ES17801627T priority patent/ES2856214T3/es
Priority to PT178016275T priority patent/PT3538716T/pt
Priority to DK17801627.5T priority patent/DK3538716T3/da
Priority to PL17801627T priority patent/PL3538716T3/pl
Priority to AU2017357537A priority patent/AU2017357537B2/en
Publication of EP3321435A1 publication Critical patent/EP3321435A1/fr
Application granted granted Critical
Publication of EP3321435B1 publication Critical patent/EP3321435B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D1/00Water flushing devices with cisterns ; Setting up a range of flushing devices or water-closets; Combinations of several flushing devices
    • E03D1/30Valves for high or low level cisterns; Their arrangement ; Flushing mechanisms in the cistern, optionally with provisions for a pre-or a post- flushing and for cutting off the flushing mechanism in case of leakage
    • E03D1/34Flushing valves for outlets; Arrangement of outlet valves

Definitions

  • the present invention relates to a drain assembly for a cistern according to the preamble of claim 1.
  • Some of the embodiments of the DE 20 2016 101 412 show throttle element inside the cistern.
  • the arrangement of the throttle elements inside the cistern is disadvantageous with respect to the installation of the drain set, because their outer dimensions are increased.
  • the arrangement of the throttle elements in the drain pipe is disadvantageous because this is very difficult to access.
  • Another disadvantage is in the latter arrangement according to the DE 20 2016 101 412 by the separate mounting of the throttle element in the pipe and by the lack of fine adjustment due to the formation of the throttling. With regard to the assembly, it is possible for example that this is forgotten and can only be controlled consuming.
  • the invention has for its object to provide a drain assembly with a throttle element, which overcomes the disadvantages of the prior art.
  • a drain fitting assembly for a cistern a valve body with a valve seat cooperating with a sealing member, wherein the valve body with the sealing element from the valve seat along a central axis of a rest position in the cleaning position and movable from the scavenge to the rest position is a valve housing in which the valve body is movably mounted, and a support unit having a throughflow opening, wherein said valve seat extends around the drain opening and wherein seen in installation position above the valve seat, the support unit has a bearing portion for supporting the valve housing.
  • the waste fitting arrangement further comprises an adjustable throttle element for adjustable throttling of the flushing water flow flowing through the outflow opening.
  • the mounting unit comprises in the drain opening a receptacle for the throttle element, wherein the receptacle is arranged in the installed position below the valve seat and wherein the throttle element is insertable into said receptacle.
  • the arrangement of the throttle element in the mounting unit or in the receptacle, which is arranged in the mounting unit, has the advantage that the size of the drain fitting, which is to be inserted into the cistern, is not increased by the throttle element. Rather, the throttle element is a part of the mounting unit.
  • the throttle element can be used if required throttling.
  • the plumber can basically remove the throttle element from the drain opening. This is particularly advantageous if the configuration is such that no throttling is needed.
  • the throttle element is arranged substantially completely inside the outflow opening. This means that the throttle element is completely in the inserted state in the interior of the drain opening and not or only slightly protrudes from the drain opening. As a result, a compact arrangement is created.
  • the throttle element is preferably formed separately from the mounting unit and can be inserted into the receptacle.
  • the receptacle is arranged on the side wall delimiting the outflow opening.
  • the receptacle is arranged substantially completely in the interior of the outflow opening, which has the advantage that the mounting unit as such is also very compact.
  • the discharge opening preferably has a circular-cylindrical cross-section and extends along a central axis.
  • the valve housing and the drain opening are such to each other that the respective center axes are collinear with each other.
  • the throttle element is inserted against the flow direction of the rinse water through the drain opening into the receptacle.
  • An insertion in the flow direction would also be conceivable.
  • the throttle element preferably extends from the side wall facing the outflow opening into the cross section of the outflow opening, the throttle element extending radially at most by 20% of the diameter of the outflow opening into the outflow opening. This means that a central area of 80% of the diameter remains free.
  • the arrangement of the throttle element only outside the central region, ie in the edge region of the discharge opening, has the advantage that the flow of the rinse water in the region of the throttle element is not negatively affected negatively. As a result, constant results of the flow can be achieved, which is great for setting Advantage is.
  • the throttle element is formed in two parts with a first throttle part and a second throttle part, wherein the first throttle member with the receptacle is firmly connected and wherein the second throttle member with the first throttle member along an adjustment adjustable, in particular pivotally, is in communication.
  • a fixed connection between the first throttle part and the receptacle is understood to mean that the connection is rotationally fixed and that the connection is separable.
  • the first throttle part is thus used in the recording and removable from the recording.
  • the two throttle parts in particular with respect to the shape and the material, identical or identical to each other.
  • This has the advantage that the production or storage is easier.
  • the throttle member comprises a ring portion, projecting from which throttle segments in the direction of the center of the ring portion.
  • the throttle segments preferably protrude at right angles to the side wall of the drain opening in the drain opening and unfold there the corresponding throttle effect.
  • the throttle segments are present only at the edge of the drain opening and protrude from the edge into the drain opening, in such a way that the throttle segments do not extend to the center, but preferably extend in the above range.
  • the throttle segments are then at regular intervals to each other.
  • all throttle elements are the same size.
  • the distance between two adjacent throttle segments is the same size as the throttle segment itself.
  • the distance between two adjacent throttle segments is the same size as the throttle segment itself.
  • the throttle segments of the second throttle part in the initial position are substantially covered by the throttle segments of the first throttle part. That is to say, in the direction of flow of the water, essentially the first throttle segments have a throttling effect and the second throttle segments are behind the first, without a significant throttle effect.
  • the throttle segments of the second throttle part can be moved with the second throttle part such that the degree of overlap decreases with increasing displacement, wherein the throttle effect of the throttle element increases overall. In other words, this means that the second throttle segments are advanced from behind the first throttle segments and thus also provide resistance to the water flowing therethrough.
  • the second throttle part is attached to the first throttle part via at least one latching tab.
  • the latching tab preferably acts on one of the throttle segments.
  • the at least one latching tab is preferably designed such that the second throttle part can be pivoted to the first throttle part. With respect to a longitudinal movement in the direction of the central axis of the discharge opening, the latching tab is preferably designed such that when adjusting the two throttle parts no longitudinal movement between the two throttle parts is possible.
  • the second throttle part is continuously adjustable to the first throttle part.
  • the second throttle part is adjustable in deterministic increments to the first throttle part. This means that the second throttle part can be adjusted stepwise to the first throttle part.
  • the two throttle parts comprise mutually acting stop elements, wherein the stop elements, the relative movement between the Limit both throttle parts.
  • the stop elements serve to limit the movement in a first pivoting direction and allow movement in a second pivoting direction.
  • the receptacle has a latching structure, with which the throttle element is rotatably connected to the receptacle. If the throttle element is formed in two parts, the first throttle member with the latching structure is rotatably connected.
  • the latching structure comprises a plurality of prongs, wherein the prongs are preferably arranged distributed uniformly around the circumference of the drain opening.
  • the throttle element preferably has a latching structure matching the latching structure of the receptacle. That is, the two locking structures interlock.
  • the throttle element has a locking structure of the receptacle identical or identically formed latching structure.
  • the latching structure preferably comprises at least one latching element or a latching cam.
  • a plurality of locking elements or a plurality of locking cams are advantageously, a plurality of locking elements or a plurality of locking cams.
  • the mounting unit has lateral inlet openings, which are arranged in the installed position above the valve seat and substantially below the bearing portion. About these inlet openings, the rinse water then passes to the drain opening.
  • the mounting unit has an outer side and in the installed position below the valve seat lying contact portion for installation in a cistern.
  • the contact portion is on the outside preferably circular cylindrical and preferably has a receiving groove for receiving a seal.
  • a cistern assembly includes a drain assembly as described above and a cistern having an outlet opening, wherein the holder unit extends into the outlet opening. In particular, the contact section projects into the outlet opening.
  • FIG. 1 a perspective view of a drain fitting assembly 1 for a cistern is shown.
  • the drain fitting assembly 1 is used for the controlled removal of rinse water from the cistern.
  • the waste fitting assembly 1 essentially comprises a valve body 2 with a sealing element 4, which cooperates with a valve seat 3, a valve housing 5, in which the valve body 2 is movably supported, and a holding unit 6 with a continuous discharge opening 7.
  • the holding unit 6 serves the connection of the valve housing 5 with the cistern and through the drain opening 7, the rinse water flows from the cistern.
  • the mounting unit protrudes into or through an opening in the cistern.
  • the cistern is not shown in the figures.
  • the valve body 2 is movable with the sealing element 4 from the valve seat 3 along a central axis M from a rest position into a scavenging position and from the scavenging position into the rest position.
  • the control elements bear the reference numeral 22.
  • the control elements 22 may be designed in various ways.
  • In the FIG. 1 is the valve body in the Spüllage in which water can drain through the drain opening 7.
  • the waste fitting arrangement 1 comprises a throttle element 10 which can be used if necessary for throttling the flushing water flow flowing out through the outflow opening 7.
  • the throttle element 10 is in the FIGS. 2 to 4 shown in more detail.
  • the mounting unit 6 comprises a receptacle 9 for the throttle element 10, wherein the receptacle 9 is arranged in the installed position of the drain fitting assembly 1 below the valve seat 3. That is, the throttle element for throttling the effluent water flowing out through the drain opening 7 is insertable into the receptacle 9 and in turn removable from the receptacle 9.
  • the receptacle 9 is arranged in the embodiment shown in the interior of the drain opening 7.
  • the receptacle 9 is arranged on the side wall 11 defining the outflow opening 7.
  • the throttle element 10 is thus inserted into the drain opening 7 and throttles in the drain opening 7 the rinse water flow.
  • the throttle element 10 is thus in communication with the mounting unit 6.
  • the receptacle 9 has here a cylindrical portion 25 and an end face 26.
  • the cylindrical portion 25 is provided by the side wall 11 and the end face 26 is oriented substantially at right angles to the side wall 11-
  • the throttle element 10 extends from the side wall 11 of the receptacle 9, which faces the drain opening 7, in the cross section of the drain opening 7 hineinerstreckt. That is, the throttle element 10 thus extends from the outer side wall 11 in the direction of the center of the drain opening 7.
  • the throttle element 10 extends radially at most up to 20% of the diameter of the discharge opening 7 into the discharge opening 7. That is, the throttle element 10 does not extend into the center, but rather is arranged in the edge region of the drain opening 7.
  • the throttling is thus effected by a change in cross section of the discharge opening 7 in the region of Throttling element 10, wherein the cross-sectional change is achieved by the throttle element 10 with respect to the cross section of the drain opening 7 from the outside.
  • the inner cross section of the drain opening 7 remains untouched by the throttle element and there is also the flow of the flushing water flow is not disturbed.
  • the throttle element 10 is formed in two parts.
  • the throttle element 10 comprises a first throttle part 12 and a second throttle part 13.
  • the first throttle part 12 is firmly connected to the receptacle 9 in connection. Under a fixed connection is understood in this context, a rotationally fixed connection. That is, the first throttle part 12 can be inserted into the receptacle 9 and is firmly connected in the receptacle 9 with the receptacle 9. When not using the throttle element 10, the first throttle member 12 can be separated from the receptacle 9.
  • the second throttle part 13 is connectable to the first throttle part 12.
  • the connection is such that the second throttle part 13 is adjustable with the first throttle part 12 along an adjustment movement.
  • the adjusting movement is preferably a pivoting movement.
  • the pivoting movement is indicated by the arrow V in the FIG. 3 shown.
  • the first throttle part 12 is inserted in the receptacle 9 and the second throttle part 13 is in communication with the first throttle part 12.
  • the second throttle part 13 is shown in its initial position. In the starting position, the second throttle part 13 has only a very small throttle effect.
  • the throttle effect is provided here essentially by the first throttle part 12. That is, seen in the flow direction of the flushing water flow, which in the FIG. 3 is shown with the arrow F, essentially the first throttle part 12 provides a resistance to the flushing water flow.
  • the throttle part 12, 13 comprises a ring section 14.
  • the ring section 14 in this case has an outer diameter which corresponds essentially to the inner diameter of the receptacle 9.
  • each three throttle segments 15 From the ring portion 14 are each three throttle segments 15 in the direction of the center of the ring portion 14 from.
  • the throttle segments 15 provide the actual resistance to the flushing water flow and throttle it.
  • the throttle segments 15 are not completely up to the center of the ring portion 15 from the ring portion 14, but extend to a maximum of 20% of the diameter of the drain opening 7 in the interior of the ring portion 14 a.
  • the throttle segments 15 of the second throttle part 12 are covered in the initial position substantially by the throttle segments 15 of the first throttle part 13. That is, in this illustrated embodiment, the throttle segments 15 of the first throttle part 13 provide the corresponding resistance.
  • the throttle segments 15 of the second throttle part 12 can thereby be moved with the second throttle part 12 such that the degree of overlap decreases with increasing displacement. In this case, the throttle effect of the throttle element 10 increases overall.
  • the maximum shift is in the FIG. 4 illustrated, in which case the throttle segments 15 of the first throttle member 12 and the throttle segments 15 of the second throttle member 13 preferably provide a drain opening 7 completely surrounding ring.
  • three throttle segments 15 are arranged distributed at regular intervals per throttle part 12, 13 to each other. Between each of the three Throttle segments 15 is a gap 27. Preferably, the angular coverage of gap 27 and throttle segment 15 is equal.
  • the second throttle part 13 is attached to the first throttle part 12 via at least one latching tab 16.
  • the latching tab 16 preferably acts on a throttle segment 15. In the embodiment shown per throttle segment 15 per a locking tab 16 is present. In this case, the locking tab 16 of the second throttle part 13 surrounds the throttle segment 15 of the first throttle part 12 accordingly.
  • the second throttle part 13 is adjustable in deterministic increments to the first throttle part 12.
  • the throttle segments 15 of the first throttle part 13 corresponding recesses 23, in which the latching tab 16 engages.
  • the stop elements 24 limit the relative movement between the two throttle parts 12, 13.
  • the two stop elements 24 provide a stop in the starting position, so that the second throttle member 13 is displaceable relative to the first throttle member in one direction only, namely in the direction of the pivoting movement ,
  • the latching structure 17 is arranged here in the region of the end face 26. With this latching structure 17, the throttle element 10 rotatably connected to the receptacle 9 can be connected.
  • the latching structure 17 comprises in the embodiment shown a plurality of prongs 18.
  • the prongs 18 are arranged uniformly distributed around the circumference of the discharge opening 7.
  • the throttle element 10 has a latching structure 19 which is suitable for the latching structure 17 of the receptacle.
  • the latching structure 19 also has a plurality of prongs 28, which engage in the prongs 18 of the latching structure 17.
  • the prongs 28 are arranged in the region of the annular section 14 of the throttle part 12, 13. However, only the prongs 28 of the first throttle part 12 engage in the prongs 18 of the latching structure 17.
  • the mounting unit 6 also has lateral inlet openings 20.
  • the inlet openings 20 are arranged in the installed position above the valve seat 3 and are arranged substantially below the bearing section 8, with which the valve housing 5 is connectable. Rinse water flows to the outlet opening 7 via the inlet openings 20.
  • the bearing section 8 is designed here essentially as a cylindrical receptacle and serves to receive a corresponding cylindrical section of the valve housing 5.
  • the holding unit 6 comprises a contact portion 21.
  • the contact portion 21 is used for installation of the holding unit 6 in a cistern.
  • the contact portion 21 is disposed below the valve seat.
  • cylindrical section 6 support unit 26 face 7 drain opening 27 gap 8th bearing section 28 Pink 9 admission M

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)
  • Sink And Installation For Waste Water (AREA)
  • Sliding Valves (AREA)
EP16197878.8A 2016-11-09 2016-11-09 Système de garniture d'écoulement Active EP3321435B1 (fr)

Priority Applications (9)

Application Number Priority Date Filing Date Title
EP16197878.8A EP3321435B1 (fr) 2016-11-09 2016-11-09 Système de garniture d'écoulement
EP17801627.5A EP3538716B1 (fr) 2016-11-09 2017-11-07 Raccord fileté d'évacuation
CN201780069053.0A CN109923267B (zh) 2016-11-09 2017-11-07 排水配件
ES17801627T ES2856214T3 (es) 2016-11-09 2017-11-07 Adaptador de desagüe
PCT/EP2017/078428 WO2018087070A1 (fr) 2016-11-09 2017-11-07 Garniture d'écoulement
PT178016275T PT3538716T (pt) 2016-11-09 2017-11-07 Guarnição de descarga
DK17801627.5T DK3538716T3 (da) 2016-11-09 2017-11-07 Afløbsfitting
PL17801627T PL3538716T3 (pl) 2016-11-09 2017-11-07 Armatura spustowa
AU2017357537A AU2017357537B2 (en) 2016-11-09 2017-11-07 Drain fitting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP16197878.8A EP3321435B1 (fr) 2016-11-09 2016-11-09 Système de garniture d'écoulement

Publications (2)

Publication Number Publication Date
EP3321435A1 true EP3321435A1 (fr) 2018-05-16
EP3321435B1 EP3321435B1 (fr) 2020-07-29

Family

ID=57256181

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16197878.8A Active EP3321435B1 (fr) 2016-11-09 2016-11-09 Système de garniture d'écoulement

Country Status (1)

Country Link
EP (1) EP3321435B1 (fr)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE8006070U1 (de) * 1979-12-18 1980-05-29 Geberit Ag, Jona, St. Gallen (Schweiz) Ablaufgarnitur fuer spuelkasten
EP0915211A2 (fr) * 1997-11-04 1999-05-12 DAL-Georg Rost & Söhne Sanitärarmaturen GmbH Arrangement d'évacuation pour réservoir de chasse
DE202016101412U1 (de) 2015-08-05 2016-03-30 Mepa-Pauli Und Menden Gmbh Spülkastenanordnung mit veränderbarem Spülstrom

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE8006070U1 (de) * 1979-12-18 1980-05-29 Geberit Ag, Jona, St. Gallen (Schweiz) Ablaufgarnitur fuer spuelkasten
EP0915211A2 (fr) * 1997-11-04 1999-05-12 DAL-Georg Rost & Söhne Sanitärarmaturen GmbH Arrangement d'évacuation pour réservoir de chasse
DE202016101412U1 (de) 2015-08-05 2016-03-30 Mepa-Pauli Und Menden Gmbh Spülkastenanordnung mit veränderbarem Spülstrom

Also Published As

Publication number Publication date
EP3321435B1 (fr) 2020-07-29

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