EP3388586B1 - Dispositif de rinçage de réservoir de chasse - Google Patents

Dispositif de rinçage de réservoir de chasse Download PDF

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Publication number
EP3388586B1
EP3388586B1 EP18166688.4A EP18166688A EP3388586B1 EP 3388586 B1 EP3388586 B1 EP 3388586B1 EP 18166688 A EP18166688 A EP 18166688A EP 3388586 B1 EP3388586 B1 EP 3388586B1
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EP
European Patent Office
Prior art keywords
valve body
axis
float
flush
slider
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
EP18166688.4A
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German (de)
English (en)
Other versions
EP3388586A1 (fr
Inventor
Rogerio De Almeida Martins Antunes
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.)
Oli Sistemas Sanitarios SA
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Oli Sistemas Sanitarios SA
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Publication date
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Priority to PL18166688T priority Critical patent/PL3388586T3/pl
Publication of EP3388586A1 publication Critical patent/EP3388586A1/fr
Application granted granted Critical
Publication of EP3388586B1 publication Critical patent/EP3388586B1/fr
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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
    • E03D1/02High-level flushing systems
    • E03D1/14Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves
    • 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
    • E03D1/02High-level flushing systems
    • E03D1/14Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves
    • E03D1/142Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves in cisterns with flushing valves
    • E03D1/144Cisterns discharging variable quantities of water also cisterns with bell siphons in combination with flushing valves in cisterns with flushing valves having a single flush outlet and an additional float for delaying the valve closure
    • 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
    • E03D1/35Flushing valves having buoyancy

Definitions

  • the present invention relates to a flushing device of a flush tank, in particular of the type having a dual flush (i.e. of the type alternatively permitting a full draining or a partial draining of the water contained in the flushing tank).
  • a known type of dual-flush flushing device comprises a support structure, which is fixable to a bottom wall of the flush tank and is provided with a drain hole delimited by a sealing seat, and a valve body (usually a tubular element also working as an overflow pipe), which is housed in the support structure in a sliding manner and is provided, at the bottom, which a shutter cooperating with the sealing seat so as to close the drain hole; the valve body is raised by means of suitable actuating organs, which are controlled by the user in order to alternatively activate the full or partial draining of the water from the flush tank.
  • it is known to vary the closing time of the shutter by engaging the valve body with one or more floats and/or with supplementary weights.
  • EP2385177A1 discloses a flushing device having a pair of movable floats, defining a full flush float and a partial flush float respectively and selectively connectable to the valve body for operating respective flush modes; the floats are provided with respective triggers rotatably hinged to respective floats and to the structure for axially fastening the valve body selectively to either one or the other of the floats and releasing the valve body from the floats.
  • the invention relates to a flushing device for a flush tank as defined in appended claim 1 and, for its preferred aspects, in the dependent claims.
  • the flushing device according to the invention is particularly simple and economic to be manufactured and ensures a simple, safe and reliable operation; furthermore, the valve assembly of the invention permits a simple, quick and accurate adjustment of the flushed water and is designed to offer both a full flush and a partial flush.
  • a flushing device 1 in particular a dual-flush flushing device, for a flush tank (which is known and not shown herein) comprises: a support structure 2, which extends along an axis A (vertical, in use); a valve body 3, which extends and slides along the axis A in the structure 2; an actuating mechanism 4, which is connected to the valve body 3; a pair of movable floats 5A, 5B, which define a full flush float and a partial flush float, respectively, and are selectively connectible to the valve body 3 so as to operate respective flushing modes (full flush and partial flush).
  • the structure 2 comprises, at respective axially opposite ends: a lower base body 7, in this case consisting of different pieces joined to each other, which is fixable to a bottom wall of the flush tank (for example through a threaded portion) and is provided with a drain hole 8, which is delimited by a sealing seat 9; and an upper head 10, which supports the actuating mechanism 4.
  • the structure 2 comprises a height adjustment device 11, which connects the base body 7 and the head 10 so as to change the distance between the base body 7 and the head 10 along the axis A, hence changing the height (measured along the axis A) of the structure 2 and of the device 1, as a whole, along the axis A.
  • the valve body 3 comprises a rod 13, possibly made up of different pieces joined to each other, which is housed in the structure 2 so as to slide along the axis A and has a bottom axial end 14, which is provided with a shutter 15 cooperating with the sealing seat 9 in order to close the drain hole 8, and a top axial end 16, which is provided with one or more coupling seats 17 engaged by the actuating mechanism 4 in order to raise the valve body 3.
  • the valve body 3 does not work as an overflow pipe, as it is not provided with a through inner duct going through the shutter 15.
  • the device 1 comprises an overflow pipe 18, which is arranged on the side relative to the structure 2 and is fitted into the base body 7 downstream of (namely, in use, under) the sealing seat 9 with the drain hole 8.
  • the valve body 3 can also be shaped like a pipe and, therefore, act as an overflow pipe.
  • the actuating mechanism 4 comprises: a button assembly 20, which is supported by the head 10; a slider 21 extending along the axis A; and at least one and preferably, as you can see in the drawings, a pair of levers 22A, 22B, which are hinged to the structure 2 and engage respective coupling seats 17 of the valve body 3.
  • the button assembly 20 comprises: a support plate 27, which is fixed to the structure 2 and is provided with a transverse guide 28 extending crosswise to the axis A; a slide 29, which is housed in the guide 28, slides along the guide 28 and is provided with a through seat 30, which is substantially parallel to the axis A; and a pair of pushing elements 31A, 31B, which are housed in the seat 30 and axially slide relative to the structure 2 with respective different axial travels.
  • the plate 27, for example, is supported by the head 10 and extends substantially perpendicular to the axis A.
  • the guide 28 is defined by a slot formed through the plate 27 and elongated crosswise to the axis A.
  • the slide 29 is housed in the guide 28, is axially coupled (parallel to the axis A) to the plate 27, for example by means of lateral teeth, and slides along the guide 28 (hence, crosswise to the axis A).
  • the seat 30 extends through the slide 29 parallel to the axis A and houses the pushing elements 31A, 31B.
  • the pushing elements 31A, 31B extend substantially parallel to the axis A and slide axially parallel to the axis A relative to the structure 2 with respective different axial travels.
  • the pushing elements 31A, 31B are coaxial, are located inside each other and extend along a common longitudinal axis B, which is parallel to the axis A.
  • the radially outer pushing element 31A is housed in the seat 30 and axially slides along the axis B in the seat 30 relative to the structure 2.
  • the pushing element 31A is coupled to the seat 30 by means of a joint 34, for example a spherical joint, which permits the oscillation of the pushing element 31A around the axis B.
  • the joint 34 is configured so as to permit the inclination of the pushing element 31A relative to the plate 27 and, hence, to the axis A (for example an inclination of approximately 10°, but also different, for example of 5-20°) and the rotation of the pushing element 31A around the axis A (preferably a complete 360° rotation).
  • the pushing element 31A has a rounded outer lateral surface 35, in particular shaped like a spherical cap portion, which cooperates with an inner lateral surface 36 of the seat 30, which for example is shaped like a spherical cap as well or has a cylindrical shape.
  • the lateral surface 35 of the pushing element 31A and the corresponding inner lateral surface 36 of the seat 30 have a central symmetry around the axis B (which means that they are surfaces of revolution around the axis B).
  • the pushing element 31A is hollow on the inside and houses the radially inner pushing element 31B, which is connected to the pushing element 31A by a connecting ring 37.
  • the pushing element 31B is connected in an angularly integral manner to the pushing element 31A by the ring 37, so that the pushing element 31B moves together with the pushing element 31A when the latter tilts and/or rotates.
  • the pushing element 31B axially slides along the axis B both relative to the structure 2 and relative to the pushing element 31A.
  • the ring 37 has a pair of opposite, substantially annular, axial shoulders 38, abutting against respective opposite edges 39, 40 of the pushing elements 31A, 31B and precisely against an edge 39 facing downwards of the pushing element 31A and an edge 40 facing upwards of the pushing element 31B.
  • the pushing elements 31A, 31B are connected to respective control buttons (which are known and not shown), which can be operated by a user, precisely a full flush button and a partial flush button.
  • the travel of the slider 21 determines the raising of the valve body 3 to two different heights, i.e. to a full flush position (when the slider 21 covers the long travel) and to a partial flush position (when the slider 21 covers the short travel).
  • the slider 21 has a top end flange 41 facing the button assembly 20 and, in particular, the pushing elements 31A, 31B and cooperating with the pushing elements 31A, 31B; and a stem 42, which extends along the axis A from the flange 41 and is coupled to a pushing member 44 acting upon the levers 22A, 22B.
  • the stem 42 is coupled to the pushing member 44 by means of a releasable and/or adjustable coupling 43, so as to adjust the position of the pushing member 44 along the stem 42.
  • the coupling 43 comprises a series of inclined notches 45, which radially project from the stem 42 and are axially spaced apart along the stem 42 so as to define thread interrupted by a pair of diametrically opposite longitudinal grooves; and a seat 46, which is made through the pushing member 44 and is provided with coupling teeth 47, which are shaped so as to selectively engage the notches 45.
  • the stem 42 is inserted in the seat 46 and rotates around the axis A so as to take on a free position, in which the stem 42 axially slides in the seat 46, and a locked position, in which the coupling teeth 47 engage the notches 45 inside the seat 46, thus axially locking the stem 42 in the seat 46.
  • the stem 42 which freely slides relative to the valve body 3, is partially inserted inside the valve body 3 (in particular, inside the rod 13 of the valve body 3), which, for this purpose, is hollow on the inside and/or has a longitudinal housing (parallel to the axis A) to house the stem 42.
  • the pushing member 44 which is integral to the slider 21, acts upon the levers 22A, 22B.
  • the levers 22A, 22B are arranged so as to be substantially transverse to the axis A.
  • each lever 22A, 22B is hinged to the structure 2 in a fulcrum 50 and extends between two opposite ends 51, 52 arranged on opposite sides of the fulcrum 50: the end 51 is coupled to the top axial end 16 of the valve body 3, thus engaging a coupling seat 17, whereas the end 52 cooperates with the slider 21 through the pushing member 44.
  • the ends 52 of the levers 22A, 22B are arranged at respective heights (measured parallel to the axis A) that are different from each other (as they are axially spaced apart from each other), and the pushing member 44 comes into contact with the ends 52 of the levers 22A, 22B with respective contact portions 53, which are also axially spaced apart from each other and are located at respective different heights (again, measured parallel to the axis A).
  • the coupling seats 17 as well, where the levers 22A, 22B come into contact with the valve body 3, are axially spaced apart from one another on the valve body 3, i.e. are located at respective different heights (again, measured parallel to the axis A) along the valve body 3.
  • the floats 5A, 5B are arranged, for example, in the base body 7 of the structure 2 on opposite sides on the valve body 3, diametrically opposite each other.
  • each one of the floats 5A, 5B comprises a rod 54, which extends along a longitudinal axis C parallel to the axis A; and a hollow float body 55A, 55B, which is coupled to the rod 54 by a slide 56.
  • each float body 55A, 55B is coupled to the rod 54 in a releasable and/or adjustable manner through an adjustment system 57, which allows the float body 55A, 55B to be fixed at a predetermined height along the rod 54 (i.e. in a predetermined position along the axis C).
  • the adjustment system 57 comprises a series of seats 58, which are obtained on the rod 54 and are spaced apart along the axis C, and a pair of flexible teeth 59, which are arranged on each float body 55A, 55B and are shaped so as to be selectively coupled to a seat 58.
  • the floats 5A, 5B slide parallel to the respective axes C and, therefore, also to the axis A and are guided by respective guides 61 formed on the structure 2.
  • the guides 61 are defined by respective longitudinal slits made in a lateral wall of the base body 7 and engaged by respective lateral projections 62 protruding from the floats 5A, 5B.
  • each float body 55A, 55B on the respective rod 54 is selected so as to adjust the quantity of water drained in each one of the two operating modes of the device 1, namely in the partial flush mode and in the full flush mode.
  • the float bodies 55A, 55B are arranged at different heights, measured parallel to the axis A: in particular, the float 5A, which is used to operate a full flush, has the float body 55A arranged at a lower height (measured along the axis A) than the float body 55B of the float 5B, which is used for the partial flush (i.e. the float body 55A is arranged closer to the drain hole 8 than the float body 55B).
  • the floats 5A, 5B are provided with respective triggers 63A, 63B, which selectively connect each float 5A, 5B to the valve body 3.
  • the triggers 63A, 63B are hinged in a rotary manner to respective floats 5A, 5B, in particular to respective top ends of the rods 54, by means of respective pins 64; and to the structure 2, by means of respective rotary joints 65 defining respective rotation fulcrums of the triggers 63A, 63B.
  • Each trigger 63A, 63B is substantially L-shaped and comprises a first lever arm 66 and a second lever arm 67, which project from the joint 65; the first arm 66 is hinged to a top end of a float 5A, 5B (precisely, of a bar 54); the second arm 67 is provided with a joint member 68, which cooperates with a corresponding abutment portion 69 of the valve body 3.
  • the joint member 68 has a top contact surface 70, for example shaped like a step, which is designed to cooperate with the respective abutment portion 69 on the valve body 3.
  • the valve body 3 has a pair of abutment portions 69, which are defined by respective projections radially protruding from an outer lateral surface of the valve body 3.
  • the abutment portions 69 are axially spaced apart from one another, which means that they are arranged at respective different heights (measured parallel to the axis A) on the valve body 3; and are angularly spaced apart from each other on the valve body 3, which means that they are laterally staggered relative to each other.
  • the abutment portions 69 are joined by a longitudinal rib, which is parallel to the axis A.
  • Each one of the abutment portions 69 has a corner 71, which is shaped so as to engage the contact surface 70 of the corresponding joint member 68.
  • the device 1 works as follows.
  • the valve body 3 When the flush tank is full of water, the water in the flush tank is at an initial level H above the floats 5A, 5B or at least above the float bodies 55A, 55B thereof, which are immersed in the water; the valve body 3 is in a closing position in which the shutter 15 closes the drain hole 8 and the abutment portions 69 of the valve body 3 are arranged under the joint members 68 of the triggers 63A, 63B; the floats 5A, 5B are locked (as they cannot move upwards) by the triggers 63A, 63B cooperating with each other and/or with one or respective retainers (not shown) arranged on the valve body 3.
  • the slider 21 covers the long travel and moves, through the pushing member 44, the lever 22A, thus raising the valve body 3 to a first predetermined height and opening the drain hole 8.
  • the valve body 3 is lifted to a full flush position in which both abutment portions 69 are above the joint members 68 of the triggers 63A, 63B and in which, in particular, the abutment portion 69 of the trigger 63A of the full flush float 5A engages the corresponding abutment portion 69 arranged lower (relative to the other abutment portion 69), keeping the float 5A axially locked.
  • the partial flush float 5B is free to move, consequently rotating its trigger 63B, which, though, does not engage the corresponding abutment portion 69.
  • valve body 3 remains raised, as it is axially constrained to the float 5A, and, therefore, the drain hole 8 stays open until the water reaches the float body 55A of the float 5A; at this point, the float 5A moves downwards and, by rotating the trigger 63A, disengages the joint member 68 from the abutment portion 69 and, hence, frees the valve body 3, which goes back to closing the drain hole 8.
  • the pushing element 31B When the user operates the partial flush by pressing the corresponding partial flush button, the pushing element 31B is pushed downwards and consequently moves the slider 21 along the short travel.
  • the slider 21 covers the short travel and moves, through the pushing member 44, the lever 22B, thus raising the valve body 3 to a second predetermined height, which is lower than the height corresponding to the full flush, and opening the drain hole 8.
  • the valve body 3 is lifted to a partial flush position in which only one of the abutment portions 69 is arranged above the joint members 68 of the triggers 63A, 63B and in which, in particular, the joint member 68 of the trigger 63B of the partial flush float 5B engages the corresponding abutment portion 69 arranged higher (relative to the other abutment portion 69), keeping the float 5B axially locked.
  • the full flush float 5A is free to move, as the joint member 68 of its trigger 63A is arranged above the corresponding abutment portion 69.
  • the valve body 3 remains raised, as it is axially constrained to the float 5B, and, therefore, the drain hole 8 stays open until the water, by flowing out of the flush tank through the drain hole 8, reaches the float body 55B of the float 5B (which, as already mentioned above, is arranged at a higher level, namely higher, than the other float 5A); at this point, the float 5B moves downwards and, by rotating the trigger 63B, disengages the joint member 68 from the abutment portion 69 and, hence, frees the valve body 3, which goes back to closing the drain hole 8.

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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)
  • Sanitary Device For Flush Toilet (AREA)
  • Lift Valve (AREA)

Claims (8)

  1. Dispositif de chasse (1) pour un réservoir de chasse, comprenant une structure de support (2) s'étendant le long d'un axe (A) et présentant un trou d'évacuation (8) délimité par un siège d'étanchéité (9) ; un corps de vanne (3) s'étendant et coulissant le long de l'axe (A) dans la structure (2) et présentant un obturateur (15) coopérant avec le siège d'étanchéité (9) pour ouvrir/fermer le trou d'évacuation (8) ; un mécanisme d'actionnement (4) relié au corps de vanne (3) pour soulever le corps de vanne (3) à deux hauteurs différentes, c'est-à-dire dans une position de chasse complète et dans une position de chasse partielle ; et une paire de flotteurs mobiles (5A, 5B), définissant un flotteur de chasse complète (5A) et un flotteur de chasse partielle (5B) respectivement et pouvant être reliés sélectivement au corps de vanne (3) pour l'actionnement de modes de chasse respectifs ; dans lequel les flotteurs (5A, 5B) sont dotés de déclencheurs respectifs (63A, 63B) articulés de manière rotative sur des flotteurs respectifs (5A, 5B) et sur la structure (2) ; les déclencheurs (63A, 63B) étant dotés d'organes de joint respectifs (68) coopérant avec des parties de butée respectives (69) du corps de vanne (3) pour fixer axialement le corps de vanne (3) sélectivement à l'un ou l'autre des flotteurs (5A, 5B) et détacher le corps de vanne (3) des flotteurs (5A, 5B) ; le mécanisme d'actionnement (4) comprenant : un coulisseau (21), relié à au moins un bouton de commande pouvant être actionné par un utilisateur et coulissant parallèlement à l'axe (A) le long de deux parcours prédéfinis de longueurs différentes, c'est-à-dire un parcours long et un parcours court ; au moins un levier (22A, 22B) articulé sur la structure (2) et actionné par le coulisseau (21) par le biais d'un organe de poussée (44) et venant en prise avec au moins une assise de couplage (17) sur le corps de vanne (3) ; caractérisé en ce que le coulisseau (21) présente une bride d'extrémité supérieure (41) coopérant avec un ou plusieurs éléments de poussée (31A, 31B) ; et une tige (42) s'étendant le long de l'axe (A) à partir de la bride (41) et agissant sur ledit au moins un levier (22A, 22B) par le biais de l'organe de poussée (44) ; l'organe de poussée (44) étant couplé à la tige (42) par un couplage (43) détachable et/ou réglable, de manière à régler la position de l'organe de poussée (44) le long de la tige (42).
  2. Dispositif selon la revendication 1, dans lequel les parties de butée (69) font saillie radialement à partir d'une surface latérale extérieure du corps de vanne (3) et sont espacées l'une de l'autre axialement et de manière angulaire sur le corps de vanne (3) par rapport à l'axe (A).
  3. Dispositif selon la revendication 1 ou 2, dans lequel chaque flotteur (5A, 5B) comprend une barre (54), s'étendant le long d'un axe longitudinal (C) parallèle à l'axe (A) ; et un corps de flotteur creux (55A, 55B), couplé à la barre (54) de manière détachable et/ou réglable par un système de réglage (57) qui permet au corps de flotteur (55A, 55B) d'être installé à une hauteur prédéfinie le long de la barre (54).
  4. Dispositif selon la revendication 3, dans lequel les corps de flotteur (55A, 55B) sont disposés à différentes hauteurs, mesurées parallèlement à l'axe (A).
  5. Dispositif selon l'une des revendications précédentes, dans lequel le coulisseau (21) est inséré partiellement à l'intérieur du corps de vanne (3), qui est intérieurement creux et/ou présente un logement longitudinal qui reçoit au moins une partie du coulisseau (21) .
  6. Dispositif selon l'une des revendications précédentes, dans lequel le mécanisme d'actionnement (4) comprend une paire de leviers (22A, 22B) articulés sur la structure (2) et actionnés par l'organe de poussée (44) du coulisseau (21) et venant en prise avec des assises de couplage respectives (17) sur le corps de vanne (3), les leviers (22A, 22B) étant en contact avec les assises de couplage respectives (17) à des hauteurs respectives, mesurées parallèlement à l'axe (A), différentes le long du corps de vanne (3).
  7. Dispositif selon la revendication 6, dans lequel les assises de couplage (17) sont espacées axialement l'une de l'autre sur le corps de vanne (3) et sont en prise avec des extrémités respectives (52) des leviers (22A, 22B) qui sont aussi espacées axialement l'une de l'autre.
  8. Dispositif selon l'une quelconque des revendications 6 et 7, dans lequel l'organe de poussée (44) vient en contact avec les extrémités (52) des leviers (22A, 22B) par des parties de contact respectives (53) qui sont aussi espacées axialement l'une de l'autre et positionnées à des hauteurs différentes respectives, mesurées parallèlement à l'axe (A).
EP18166688.4A 2017-04-10 2018-04-10 Dispositif de rinçage de réservoir de chasse Active EP3388586B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL18166688T PL3388586T3 (pl) 2017-04-10 2018-04-10 Urządzenie spłukujące dla zbiornika do spłukiwania

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
IT102017000039481A IT201700039481A1 (it) 2017-04-10 2017-04-10 Dispositivo di scarico per una cassetta di risciacquo

Publications (2)

Publication Number Publication Date
EP3388586A1 EP3388586A1 (fr) 2018-10-17
EP3388586B1 true EP3388586B1 (fr) 2020-09-23

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ID=59683936

Family Applications (1)

Application Number Title Priority Date Filing Date
EP18166688.4A Active EP3388586B1 (fr) 2017-04-10 2018-04-10 Dispositif de rinçage de réservoir de chasse

Country Status (7)

Country Link
EP (1) EP3388586B1 (fr)
AU (1) AU2018202516A1 (fr)
ES (1) ES2834124T3 (fr)
IL (1) IL258613A (fr)
IT (1) IT201700039481A1 (fr)
PL (1) PL3388586T3 (fr)
RU (1) RU2761877C2 (fr)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2279513C1 (ru) * 2005-04-11 2006-07-10 Валентин Павлович Румянцев Запорное устройство для сливного бачка унитаза
ITMI20052353A1 (it) * 2005-12-09 2007-06-10 Oliveira & Irmao Sa Gruppo valvola di scartico di una cassetta di risciacquo
IT1399516B1 (it) * 2010-04-23 2013-04-19 Oliveira & Irmao Sa Dispositivo di scarico per una cassetta di risciacquo
WO2016049659A1 (fr) * 2014-09-26 2016-03-31 Fluidmaster, Inc. Système de double chasse d'eau à régulation de volume constant de chasse d'eau

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
RU2761877C2 (ru) 2021-12-13
ES2834124T3 (es) 2021-06-16
EP3388586A1 (fr) 2018-10-17
IT201700039481A1 (it) 2018-10-10
RU2018112736A3 (fr) 2021-07-05
IL258613A (en) 2018-06-28
RU2018112736A (ru) 2019-10-11
PL3388586T3 (pl) 2021-03-08
AU2018202516A1 (en) 2018-10-25

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