EP3321432B1 - Raccord fileté d'évacuation - Google Patents
Raccord fileté d'évacuation Download PDFInfo
- Publication number
- EP3321432B1 EP3321432B1 EP16197880.4A EP16197880A EP3321432B1 EP 3321432 B1 EP3321432 B1 EP 3321432B1 EP 16197880 A EP16197880 A EP 16197880A EP 3321432 B1 EP3321432 B1 EP 3321432B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- section
- float
- float chamber
- snorkel
- drain 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
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 36
- 238000011010 flushing procedure Methods 0.000 claims description 34
- 238000007789 sealing Methods 0.000 claims description 13
- 230000007704 transition Effects 0.000 claims description 6
- 230000001960 triggered effect Effects 0.000 description 6
- 230000008901 benefit Effects 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 230000008569 process Effects 0.000 description 3
- 239000002699 waste material Substances 0.000 description 2
- 230000002411 adverse Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 230000002706 hydrostatic effect Effects 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000005457 optimization Methods 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 239000013589 supplement Substances 0.000 description 1
- 238000013022 venting Methods 0.000 description 1
- 238000003809 water extraction Methods 0.000 description 1
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03D—WATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
- E03D1/00—Water flushing devices with cisterns ; Setting up a range of flushing devices or water-closets; Combinations of several flushing devices
- E03D1/02—High-level flushing systems
- E03D1/14—Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves
- E03D1/142—Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves in cisterns with flushing valves
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03D—WATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
- E03D2201/00—Details and methods of use for water closets and urinals not otherwise provided for
- E03D2201/20—Noise reduction features
Definitions
- the present invention relates to a drain fitting according to the preamble of claim 1.
- Drain sets with the features according to the preamble of claim 1 are for example from the documents EP0522218A1 , FR2576620A1 and FR2658219A1 known. Furthermore, drain fittings for triggering flushes from a cistern are known from the prior art. In particular, drain fittings for the optional triggering of a full flush or partial flush have become known.
- the EP 0 722 020 such a flushing device.
- a weight body is arranged for partial flushing, which can optionally be connected to the valve body.
- a drain fitting for a cistern comprises a valve body with a sealing element cooperating with a valve seat and a float, the valve body with the sealing element moving from the valve seat along a central axis from a rest position to a flushing position and from the flushing position is movable into the rest position, and a float chamber with an opening through which the valve body extends and is movably mounted therein, the float being movable within the float chamber along the central axis and hydraulically cooperating with the float chamber.
- the float chamber comprises at least one control passage through which, as soon as a flushing water level surrounding the drain fitting has sunk to the level of the control passage, air from areas outside the float chamber can enter the float chamber, so that the pressure conditions between the float chamber and the areas outside the float chamber can be equalized
- the float can be moved from the flushing position to the rest position when the pressure conditions are equalized.
- the float chamber apart from the at least one control passage, is designed to be completely closed laterally with a side wall up to an end wall.
- the float chamber has a base section extending completely around the central axis and a snorkel section adjoining the base section. The cross section of the snorkel section seen transversely to the central axis is smaller than the cross section of the base section.
- the float has a lower portion from which a column section extends, the float extending with the column section into the snorkel section. The lower section extends and moves substantially into the base section.
- Extending the swimmer into the snorkel section has the advantage that, with the increased volume of the swimmer, the proportion of water that presses on the swimmer in the swimmer chamber can be reduced, so that the noise generated during the closing process can be reduced.
- the volume of the float chamber can be increased without the structural size of the drain fitting or its function being adversely affected. This has the advantage that, due to the increased volume, a simplified optimization of the Closing process is enabled.
- the float has a lower section below the column section, the lower section being essentially cylindrical, in particular circular cylindrical, and preferably filling or essentially filling the base section of the float chamber in the flushing position.
- the column section is preferably designed as a float.
- the column section, as well as the lower section, is particularly preferably designed essentially as a cavity filled with air.
- kel section is understood to mean a section which supplements the base section towards the top in the installed position.
- the snorkel section of the float chamber extends essentially concentrically to the base section.
- the snorkel section and the base section are preferably concentrically one above the other.
- the extent of the snorkel section seen transversely to the central axis is preferably smaller than the extent of the base section.
- concentric is understood to mean that the snorkel section and the base section extend around a common central axis. The two sections are designed to run around the central axis.
- the column section of the float extends substantially concentrically to the lower section.
- the column section and the lower section are preferably concentrically one above the other.
- the extension of the column section, seen transversely to the central axis, is preferably smaller than the extension of the lower section.
- concentric is understood to mean that the column section and the lower section extend around a common central axis.
- the two sections are designed to run around the central axis.
- the external shape of the float with the lower section and the column section and the internal shape of the float chamber with the base section and the snorkel section are such that the float can be moved in the float chamber.
- the two shapes are essentially designed to match one another, possibly with play to one another.
- the snorkel section lies within the maximum diameter of the base section.
- the diameter of the snorkel section is therefore smaller than that of the base section. The same can be said for the diameter ratio between the lower portion and the columnar portion.
- the snorkel section and the base section preferably extend completely around the central axis and preferably each have substantially constant diameters.
- the snorkel section and the base section are therefore essentially designed as cylinders, in particular with a circular base area.
- the diameter of the snorkel section is smaller than that of the base section.
- the column section and the lower section extend completely around the central axis and preferably each have substantially constant diameters.
- the column section and the lower section are therefore essentially designed as cylinders, in particular with a circular base area.
- the diameter of the column section is smaller than that of the lower section.
- the transition between the snorkel section and the base section is preferably conical.
- the reduction in diameter from the base section to the snorkel section is achieved via this transition.
- the height of the base section is preferably substantially smaller than the height of the snorkel section, the height of the base section preferably being between 5% and 20% of the height of the entire float chamber. In this way, a compact design of the drain fitting can be achieved.
- the height of the lower section is preferably substantially smaller than the height of the column section, the height of the lower section preferably being between 5% and 20% of the height of the entire float.
- the height of the entire float is made up of the height of the lower section and the height of the column section.
- the float chamber that is to say the snorkel section and the base section, apart from the at least one control passage, is designed to be completely closed laterally with a side wall up to an end wall.
- the float chamber is open at the bottom.
- the bearing opening, in which the valve body is movably supported, is preferably present in the end wall.
- a water reservoir is preferably provided above the float chamber, which opens into the float chamber with a passage, whereby water that is in the water reservoir can flow into the float chamber through the passage.
- the water reservoir is filled when the cistern is filled and is designed in such a way that it can only be emptied via the passage when the cistern is emptied.
- the water reservoir can also be referred to as a reservoir.
- the lower section of the float in the flushing position lies essentially completely in the float chamber. This means that the lower section is essentially completely moved into the float chamber when the flush is triggered.
- the sealing element of the valve body lies essentially completely in the float chamber in the flushing position. This will make that Sealing element protected from the water flowing by.
- the column section preferably fills the cross section of the snorkel section essentially completely or at least 55%, in particular at least 75%, when viewed in cross section transversely to the central axis. This means that the column section extends essentially completely or almost completely over a large part of the cross section of the snorkel section when viewed transversely to the central axis.
- the column section preferably fills the volume of the snorkel section essentially completely or to at least 55% or at least 90% when the swimmer is in the flushing position.
- “essentially completely” means that the column section and snorkel section are relative to one another in such a way that a residual amount of water is always present between the column section and snorkel section.
- the aforementioned designs have the advantage that the proportion of water which presses on the float when the float moves from the flushing position to the rest position can be kept small.
- the control passage is preferably designed to trigger a first flush with a first flush quantity.
- the drain fitting also includes a control unit for controlling a second flush volume. When a water level intended for the second flush volume is reached, the control unit provides a closing force on the valve body with a closing weight, the closing force being switchable to the valve body via a switching element from the control unit.
- the switching element When the control unit is raised, the switching element preferably automatically engages in a latching connection with the valve body.
- the height of the closing weight is adjustable over an adjustment range. This means that the closing weight can be moved over the setting range. At a higher position, less water is used during the rinsing process removed than in a lower position.
- the first flush is a full flush and the second flush is a partial flush.
- the closing weight is activated, a partial flush is triggered and when the control passage through the water level is reached, a full flush is triggered.
- the first flush is a partial flush and the second flush is a full flush. This means that when the closing weight is activated, a full flush is triggered and when the control passage through the water level is reached, a partial flush is triggered.
- a plurality of control passages are preferably arranged at different heights, the drain fitting further comprising at least one closure element with which one of the control passages can be released and the other of the control passages can be closed.
- the closure element is preferably a slide which is movably mounted on the outside of the drain fitting.
- At least one of the control passages is preferably arranged in the snorkel section, the other of the control passages, if any, being arranged in the snorkel section and / or in the base section.
- the height of the adjustment range of the closing weight preferably extends at least to below the uppermost control passage. In this way, the heights between the control unit and the control passage can be superimposed, which increases the flexibility of setting the water extraction.
- the control unit is preferably arranged outside the snorkel section and can move up and down next to the snorkel section.
- the snorkel section preferably comprises an opening for venting when it is filled the float chamber.
- a drain fitting 1 for a cistern is shown.
- the drain fitting 1 comprises a valve body 2 with a sealing element 4, which works together with a valve seat, and a float 5.
- the valve body 2 with the sealing element 4 is from the valve seat 3 along a central axis M from a rest position to a flushing position and from the flushing position to the Movable rest position. In the flushing layer, water can flow off through the gap between the valve seat 3 and the sealing element 4.
- the drain fitting 1 further comprises a float chamber 6.
- the float chamber 6 has an opening 28 through which the valve body 2 extends. Of the Valve body 2 is movably supported in opening 28.
- the float 5 can be moved essentially within the float chamber 6 along the central axis M and works hydraulically with the float chamber 6.
- the float chamber 6, apart from the at least one control passage 7, is designed to be completely closed laterally up to an end wall 19 with a side wall 34.
- the control passages 7 penetrate the side wall 34.
- the side wall 34 delimits the base section 9 and the snorkel section 10 to the outside.
- the opening 28 is located in the end wall 19.
- the float chamber 6 is open at the bottom.
- the float chamber 6 comprises at least one control passage 7 through which, as soon as a flushing water level S surrounding the drain fitting 1 has dropped to the level of the control passage 7, air from areas 8 outside the float chamber 6 can enter the float chamber 6 in such a way that the pressure conditions between Float chamber 6 and areas 8 outside the float chamber 6 can be compensated. With this compensation, the float 5 or the valve body 2 can be moved from the flushing position into the rest position.
- the float 5 extends with a column section 11 into the snorkel section 10. As a result, the volumes relevant for the lift and the lowering are optimally used and the movement of the valve body 2 can be optimized. Below the column section 11, the float has a lower section 29 which can be moved up and down in the base section 9.
- the inner shape of the float chamber 6 is based on Figures 2 and 3 explained in more detail.
- the float chamber 6 comprises a cylindrical, in particular circular-cylindrical, base section 9 extending completely around the center axis M and a snorkel section 10 adjoining the base section 9.
- the snorkel section 10 adjoins the base section 9. In the installed position, the base section 9 lies below the snorkel section 10 and the snorkel section 10 above the base section 9. It can also be said that the snorkel section 10 moves the float chamber 6 upwards from the base section 9 extended.
- the snorkel section 10 is delimited at the top by the end wall 19.
- the cross section of the snorkel section 10, seen transversely to the central axis M, is smaller than the cross section of the base section 9.
- the volume of the snorkel section 10 is preferably greater than that of the base section 9.
- the snorkel section 10 extends essentially concentrically to the base section 9. That is, the two cylinders or circular cylinders extend around the common central axis M.
- the snorkel section 10 has a constant diameter over its entire height H10.
- the base section 9 also has the same diameter over its entire height H9. In this context, the diameter is the inside diameter.
- the inside diameter of the base section 9 is larger than the inside diameter of the snorkel section 10.
- the transition 30 between the base section 9 and the snorkel section 10 is conical. This means that in the area of the transition 30 the diameter of the float chamber decreases from the larger diameter of the base section 9 to the smaller diameter of the snorkel section 10.
- the outer shape of the float 5 is based on the Figures 2 and 3 explained in more detail.
- the external shape of the float 5 is designed to match or essentially similar to the internal shape of the float chamber 6. This means that the inner shape is the same or similar to the outer shape. As mentioned herein, it is advantageous if there is play between the inner shape and the outer shape.
- the lower section 29 of the float 5 has a cylindrical, in particular circular cylindrical, external shape.
- the column section 11 of the float 5 has a cylindrical, in particular circular cylindrical, external shape.
- the outer diameter of the cylindrical outer shape in the area of the column section 11 and in the area of the lower section 29 is preferably constant.
- An overflow pipe 33 extends centrally through the float 5. That is, the The column section 11 and also the lower section 29 have the cross section of a cylinder ring on the inside.
- the transition from the lower section 29 to the column section 11 is designed here as a jump in diameter.
- the column section 11 extends essentially concentrically to the lower section 29. That is, the two cylinders or circular cylinders extend around the common central axis M.
- the column section 11 and the lower section 29 have a constant diameter, the diameter of the column section 11 being smaller is than the diameter of the lower section 29.
- the diameter in this context is the outer diameter.
- the outside diameter of the lower section 29 preferably corresponds essentially to the outside diameter of the sealing element 4.
- Both the lower section 29 and the column section 11 are each designed as a cavity in the embodiments shown, so that they are buoyant in the water.
- the cavity provided by the two sections can be filled with air.
- the cavity is open at the bottom. It can also be designed as a closed cavity.
- the column section 11 viewed in cross section transverse to the central axis M, essentially fills the cross section of the snorkel section 10.
- the degree of filling is preferably at least 70% when the column section 11 is in the flushing position with the float 5.
- the column section 11 can also fill the snorkel section 10 to at least 80% or essentially completely.
- the float 5 is in the rest position.
- the sealing element 4 lies on the valve seat 3.
- the float 5 is raised via an actuating section 22. Due to the interaction between the float 5 and the float chamber 6, the float 5 remains in its flushing position. The float 5 remains in its flushing position until the flushing water level S reaches that in the Figure 5 drawn level is lowered. When this level is reached, air can enter the float chamber 6 through the control passage 7 and the hydraulic equilibrium between float 5 and float chamber 6 is disturbed, whereby the float 5 lowers in the direction of the valve seat 3 from the flushing position to the rest position.
- the column section 11 is designed such that when the valve body 2 is in the flushing position, its upper end 26 is spaced apart from the end wall 19 of the snorkel section 10. Because of this distance, there is then a certain amount of residual water in the float chamber 6. However, the distance must not be too great, otherwise the closing noises increase.
- the formation of the snorkel section 10 and the column section 11 with the compared to the base section 9 or the lower section 29 has the advantage that parts of the control unit 12, in particular the closing weight 13, can extend downwards next to the snorkel section 10. This means that parts of the control unit 12 can move up and down next to the snorkel section 10.
- the snorkel section 10 has a height H10 as seen in the direction of the central axis M.
- the height H10 is greater than the height H9 of the base section 9.
- the height H9 of the base section 9 is significantly smaller than the height H10 of the snorkel section.
- the height H9 of the base section 9 is preferably between 5% and 20% of the height of the entire float chamber 5.
- control passage 7 is designed to trigger a first flush with a first flush quantity.
- the control unit 12 is designed to control a second flush volume.
- the first flush amount is preferably a full flush amount and the second flush amount is preferably a partial flush amount.
- control passages 7 are arranged.
- the control passages 7 are at different heights.
- a first control passage 7 lies in the area of the upper end of the snorkel section 10.
- Further control passages 7 are arranged in the snorkel section 10. That is to say, in the embodiment shown, the height of the control passages 7 is distributed over the snorkel section 10.
- additional control passages it is also possible for additional control passages to be arranged in the base section 9. The height of the control passages 7 would then be distributed over the base section 9 and the snorkel section 10.
- the drain fitting 1 further comprises at least one closure element 16 with which one of the control passages 7 can be released and the other of the control passages 7 can be closed. This means that an installer can use the closure element to define which of the control passages 7 is to be the active control passage. The other control passages 7 are then correspondingly closed.
- At least one of the control passages 7 is therefore arranged in the snorkel section 10.
- the other control passages 7 are arranged either in the snorkel section 10 or in the base section 9.
- the closing weight 13 can be adjusted via an adjustment range 15. That is, the closing weight 13 can be adjusted in height. This allows the corresponding amount of flushing water to be defined.
- the height of the adjustment area 15 preferably extends at least as far as below the uppermost control passage 7. This allows the amounts of flushing water to be superimposed.
- control unit 12 furthermore comprises a bearing rod 24, the closing weight 13 being mounted on the bearing rod so as to be adjustable relative to the bearing rod 24.
- the switching element 14 is activated via a correspondingly designed control surface 25, which is arranged here on the housing in the area of the water reservoir 31.
- the drain fitting here comprises a connecting element 26 on which the valve seat 3 is arranged, the connecting element 26 being connectable to a cistern.
- the connecting element 26 has several openings 27 through which the flushing water can then flow to the valve seat 3.
- the float chamber 6 there is an optional water reservoir 31, which opens into the float chamber 6 with a passage 32. Through the passage 32, water that is in the water reservoir 31 can flow into the float chamber 6.
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
- Public Health (AREA)
- Water Supply & Treatment (AREA)
- Float Valves (AREA)
- Self-Closing Valves And Venting Or Aerating Valves (AREA)
Claims (13)
- Raccord d'évacuation (1) pour réservoir de chasse d'eau, comprenant
un corps de soupape (2) avec un élément d'étanchéité (4) coopérant avec un siège de soupape (3) et un flotteur (5), le corps de soupape (2) étant déplaçable avec l'élément d'étanchéité (4) du siège de soupape (3) le long d'un axe central (M) d'une position de repos à une position de rinçage et de la position de rinçage à la position de repos, et
une chambre à flotteur (6) avec une ouverture (28) à travers laquelle s'étend le corps de soupape (2), le flotteur (5) étant déplaçable à l'intérieur de la chambre à flotteur (6) le long de l'axe central (M) et coopérant hydrauliquement avec la chambre à flotteur (6),
la chambre à flotteur (6) comprenant au moins un passage de commande (7) à travers duquel, dès qu'un niveau d'eau de rinçage (S) entourant le raccord d'évacuation (1) est tombé au niveau du passage de commande (7), de l'air provenant des zones (8) à l'extérieur de la chambre à flotteur (6) peut pénétrer dans la chambre à flotteur (6), de sorte que les conditions de pression entre la chambre à flotteur (6) et les zones (8) à l'extérieur de la chambre à flotteur (6) peuvent être égalisées, le flotteur (5) étant déplaçable de la position de rinçage à la position de repos avec le corps de soupape (2) lorsque les conditions de pression sont égalisées,
la chambre à flotteur (6), à l'exception de l'au moins un passage de commande (7), est réalisée latéralement avec une paroi latérale de manière complètement fermée jusqu'à une paroi frontale (19),
la chambre à flotteur (6) présentant une section de base (9) s'étendant complètement autour de l'axe central (M) et une section de tuba (10) attenante à la section de base (9), la section transversale de la section de tuba (10) étant plus petite, vue transversalement à l'axe central (M), que la section transversale de la section de base (9),
en ce que le flotteur présente une section inférieure (29), à partir de laquelle s'étend une section de colonne (11), le flotteur (5) s'étendant dans la section de tuba (10) avec la section de colonne (11). - Raccord d'évacuation (1) selon la revendication 1, caractérisé en ce que la section de tuba (10) s'étend essentiellement concentriquement à la section de base (9) et / ou en ce que la section de colonne (11) s'étend essentiellement concentriquement à la section inférieure (29).
- Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce que la section de tuba (10) et la section de base (9) s'étendent complètement autour de l'axe central (M) et ont de préférence chacun un diamètre sensiblement constant;
et / ou que la section de colonne (11) et la section inférieure (29) s'étendent complètement autour de l'axe central (M) et ont de préférence chacun un diamètre sensiblement constant. - Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce que la transition (30) entre la section de tuba (10) et la partie inférieure (9) est conique.
- Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisée en ce que la hauteur (H9) de la section de base (9), vue dans la direction de l'axe central (M), est sensiblement inférieure à la hauteur (H10) de la section de tuba (10), la hauteur (H9) de la section de base (9) étant de préférence comprise entre 5% et 20% de la hauteur (H) de l'entière chambre à flotteur (6)
et / ou que la hauteur (H29) de la section inférieure (29), vue dans la direction de l'axe central (M), est sensiblement inférieure à la hauteur (H11) de la section de colonne (11), la hauteur (H29) de la section inférieure (29) étant de préférence comprise entre 5% et 20% de la hauteur (H) de l'entier flotteur (5). - Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce qu'un réservoir d'eau (31) est présent au-dessus de la chambre à flotteur (6), qui s'ouvre par un passage (32) dans la chambre à flotteur (6), à travers duquel passage (32) de l'eau, qui se trouve dans le réservoir d'eau (31), peut s'écouler dans la chambre à flotteur (6).
- Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce que la section inférieure (29) du flotteur (5) dans la position de rinçage se trouve essentiellement complètement dans la chambre à flotteur (6) et / ou en ce que l'élément d'étanchéité (4) du corps de soupape dans la position de rinçage se trouve essentiellement complètement dans la chambre à flotteur (6).
- Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce que
la section de colonne (11), vue en section transversale transversalement à l'axe central (M), remplit la section transversale de la section de tuba (10) essentiellement complètement ou au moins à 55%, en particulier au moins à 75% et / ou que
la section de colonne (11) remplit essentiellement complètement le volume de la section de tuba (10) ou au moins à 55% ou au moins à 90%, lorsque le flotteur se trouve dans la position de rinçage. - Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce que le passage de commande (7) est conçu pour déclencher un premier rinçage avec une première quantité de rinçage et en ce que le raccord d'évacuation (1) comporte en outre une unité de commande (12) pour contrôler une deuxième quantité de rinçage, l'unité de commande (12) fournissant une force de fermeture (F) sur le corps de soupape (2) avec un poids de fermeture (13) lorsqu'un niveau d'eau prévu pour la deuxième quantité de rinçage est atteint, la force de fermeture (F) pouvant être transmise respectivement enclenchée à travers un élément de commutation (14) de l'unité de commande (12) au corps de soupape (2).
- Raccord d'évacuation (1) selon la revendication 9, caractérisé en ce que l'élément de commutation (14) s'engage automatiquement avec le corps de soupape (2) lorsque l'unité de commande (12) est soulevée et / ou en ce que la position en hauteur du poids de fermeture (13) peut être réglée via une plage de réglage (15).
- Raccord d'évacuation (1) selon l'une des revendications précédentes 9 à 10, caractérisé en ce que le premier rinçage est un rinçage complet et en ce que le deuxième rinçage est un rinçage partiel; ou que le premier rinçage est un rinçage partiel et que le second rinçage est un rinçage complet.
- Raccord d'évacuation (1) selon l'une des revendications précédentes, caractérisé en ce qu'une pluralité de passages de commande (7) sont disposés à différentes hauteurs, le raccord d'évacuation (1) comprenant en outre au moins un élément de fermeture (16) avec lequel l'un des passages de commande (7) peut être libéré et les autres des passages de commande (7) peuvent être fermés,
au moins un des passages de commande (7) étant de préférence disposé dans la section de tuba (10), et les autres des passages de commande (7) facultatifs sont disposés dans la section de tuba (10) et / ou dans la section de base (9). - Raccord d'évacuation (1) selon la revendication 10 et une des revendications 11 ou 12, caractérisé en ce que la plage de réglage (15) du poids de fermeture (13), en hauteur, s'étend au moins jusqu'en dessous du passage de commande supérieur (7).
Priority Applications (13)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL16197880T PL3321432T3 (pl) | 2016-11-09 | 2016-11-09 | Armatura odpływowa |
PT161978804T PT3321432T (pt) | 2016-11-09 | 2016-11-09 | Guarnição de descarga |
DK16197880.4T DK3321432T3 (da) | 2016-11-09 | 2016-11-09 | Afløbsfitting |
ES16197880T ES2865295T3 (es) | 2016-11-09 | 2016-11-09 | Adaptador de desagüe |
EP16197880.4A EP3321432B1 (fr) | 2016-11-09 | 2016-11-09 | Raccord fileté d'évacuation |
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 |
AU2017357537A AU2017357537B2 (en) | 2016-11-09 | 2017-11-07 | Drain fitting |
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 |
PL17801627T PL3538716T3 (pl) | 2016-11-09 | 2017-11-07 | Armatura spustowa |
DK17801627.5T DK3538716T3 (da) | 2016-11-09 | 2017-11-07 | Afløbsfitting |
Applications Claiming Priority (1)
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EP16197880.4A EP3321432B1 (fr) | 2016-11-09 | 2016-11-09 | Raccord fileté d'évacuation |
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EP3321432A1 EP3321432A1 (fr) | 2018-05-16 |
EP3321432B1 true EP3321432B1 (fr) | 2021-02-17 |
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EP16197880.4A Active EP3321432B1 (fr) | 2016-11-09 | 2016-11-09 | Raccord fileté d'évacuation |
Country Status (5)
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EP (1) | EP3321432B1 (fr) |
DK (1) | DK3321432T3 (fr) |
ES (1) | ES2865295T3 (fr) |
PL (1) | PL3321432T3 (fr) |
PT (1) | PT3321432T (fr) |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
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FR2576620B1 (fr) * | 1985-01-30 | 1987-04-24 | Ouradou Francis | Dispositif de chasse d'eau en particulier pour cuvette de toilette. |
FR2658219B1 (fr) * | 1990-02-15 | 1992-05-22 | Spmp Sa | Mecanisme de chasse a commande par bouton-poussoir et a action controlable. |
FR2658844B1 (fr) * | 1990-02-23 | 1994-01-21 | Matieres Plastiques Ste Phoceenn | Mecanisme de chasse a commande par bouton-poussoir et a flotteur submersible. |
DE29517363U1 (de) | 1995-01-16 | 1995-12-21 | Geberit Technik AG, Jona, St.Gallen | Spüleinrichtung in einem WC-Spülkasten |
DE202006018159U1 (de) * | 2006-11-03 | 2007-02-08 | Tece Gmbh & Co. Kg | Zweimengen-Ablaufventil mit einer durch Federkraft beaufschlagten Klinke |
DE102007001718B4 (de) | 2006-11-03 | 2022-09-08 | Tece Gmbh | Ablaufventil mit einstellbarer Vollspülmenge |
-
2016
- 2016-11-09 PL PL16197880T patent/PL3321432T3/pl unknown
- 2016-11-09 ES ES16197880T patent/ES2865295T3/es active Active
- 2016-11-09 EP EP16197880.4A patent/EP3321432B1/fr active Active
- 2016-11-09 PT PT161978804T patent/PT3321432T/pt unknown
- 2016-11-09 DK DK16197880.4T patent/DK3321432T3/da active
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Also Published As
Publication number | Publication date |
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PL3321432T3 (pl) | 2021-08-09 |
PT3321432T (pt) | 2021-05-18 |
EP3321432A1 (fr) | 2018-05-16 |
ES2865295T3 (es) | 2021-10-15 |
DK3321432T3 (da) | 2021-05-17 |
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