EP0801178B1 - Bonde de vidange avec tuyau de réglage téléscopique - Google Patents

Bonde de vidange avec tuyau de réglage téléscopique Download PDF

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Publication number
EP0801178B1
EP0801178B1 EP97104447A EP97104447A EP0801178B1 EP 0801178 B1 EP0801178 B1 EP 0801178B1 EP 97104447 A EP97104447 A EP 97104447A EP 97104447 A EP97104447 A EP 97104447A EP 0801178 B1 EP0801178 B1 EP 0801178B1
Authority
EP
European Patent Office
Prior art keywords
fitting according
groove
guide pin
drainage fitting
guide
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.)
Expired - Lifetime
Application number
EP97104447A
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German (de)
English (en)
Other versions
EP0801178A2 (fr
EP0801178A3 (fr
Inventor
Helmut Mols
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.)
Kludi GmbH and Co KG
Original Assignee
Kludi GmbH and Co KG
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 Kludi GmbH and Co KG filed Critical Kludi GmbH and Co KG
Publication of EP0801178A2 publication Critical patent/EP0801178A2/fr
Publication of EP0801178A3 publication Critical patent/EP0801178A3/fr
Application granted granted Critical
Publication of EP0801178B1 publication Critical patent/EP0801178B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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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
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/24Overflow devices for basins or baths

Definitions

  • the invention relates to a drain fitting for shower or shower trays a two-part drain housing, a fixed immersion pipe and one in it telescopically displaceable adjustment tube, which is in the area of the overflow opening carries a cover cap and on the outside with sealing elements and the end positions specified attacks is equipped.
  • an overflow device for sinks, sinks and the like are known in which inserted in the drain of the basin Drain valve body a vertical adjustment tube is slidably mounted.
  • Telescopic adjustment tube is possible in the sink or sink precisely specify different water levels.
  • the adjustment tube is over friction seals fixed in any position, due to the always existing Moisture and the friction that has occurred after certain idle times are accurate Setting can no longer be guaranteed.
  • This overflow device is for Bekken provided with an overflow channel.
  • a further drain fitting is known, which is an integrated one Has adjustment tube that can be moved telescopically.
  • the adjustment tube can from a normal position in which its outlet opening is so deep that the water can flow freely, be pulled to an upper position, which is defined by a stop.
  • the water then flows through the overflow opening of the adjustment tube, so that the water up to this height of the extracted adjustment tube can be stored in a defined manner.
  • Such a drain fitting is special can be used advantageously for shower trays or shower trays because it is a specific one Water level can be specified. However, this is for shower trays or shower trays then problematic if those with a particularly low height are used come because the adjustment tube can only be secured in two positions. There shower trays do not have a standardized depth or height is such an overflow device therefore not always suitable.
  • the invention is therefore based on the object of having a drain fitting easy-to-operate, "lockable” in several arbitrary positions Creating adjustment tube.
  • the adjusting tube rotatable relative to the dip tube and cover cap and together with the Dip tube has a helical or spiral guide.
  • the adjustment pipe can be compared to the immersion pipe practically any length, where then through the Self-holding the spiral guide the adjustment tube in the specified position remains that practically independent of the depth of the shower tray or shower tray a water level can be set. Then the water should again drain off completely, so the adjustment tube is simply exerted on the cover cap moved to the lower position without the risk of frequent Use or due to moisture when pulling out the adjustment tube again Inaccuracies can occur. No wear and tear can occur because of the Self-locking to fix the adjustment tube again and again in different positions is.
  • this embodiment practically seals or Sealing elements in the area of the outer wall of the adjusting tube can be dispensed with can, because the spiral guide prevents water from flowing out, or at least so far difficult that the water loss that occurs is irrelevant. It is but also the possibility to provide sealing elements in a simplified form, if these leaks should still be avoided. It is advantageous further that due to the rotatability of the adjustment tube also with respect to the cover cap this in the hand or on the foot unaffected by turning the adjustment tube remains. This makes handling easier, but at least makes it more pleasant.
  • the Guide as a spiral groove embedded in the adjustment tube and the Immersion tube associated guide pin is formed.
  • This tour can be easy are produced, especially since such an adjustment tube is made of plastic can, so that the groove can be realized in the manufacturing process.
  • the Guide pins are assigned to the dip tube during manufacture, so that here mentioned special guide is very easy to manufacture and is characterized by optimal effectiveness distinguished.
  • Uniform and safe guidance is particularly achieved when if several grooves and guide pins, preferably a second groove and a second Guide pins are provided.
  • the up and down movement can do even more be evened out and optimized, the production being simple here too, because a separate second processing of neither the adjustment tube nor the dip tube is required.
  • Deviating from the leadership described is training for this possible, in which it is embedded in the immersion tube in a spiral groove and guide pin assigned to the adjusting tube is formed.
  • This training too is characterized in that the corresponding additives for leadership be taken into account and manufactured during the manufacturing process of the individual parts can, so that a separate processing operation is omitted.
  • This also ensures that the adjustment tube can be stopped in practically any position can, so that any water levels can be achieved without it being separate Components or a subdivision of the adjustment tube or other solutions.
  • For practically all shower trays and tubs is only one version of such a drain fitting required, for safety an excessive extension of the adjustment tube can thereby be prevented that spreading or the like in the spiral groove. are used, which then serve as a modified lower stop. To this Overflow of low shower bases can be safely prevented because the Installer can easily attach this insert or additive.
  • a uniform "adjustment" of the adjustment tube is seen over the height thereby ensuring that the spiral groove has a constant slope having.
  • the precise setting of the Adjustment tube can be guaranteed, as mentioned several times in each any height.
  • the constant slope is easy to achieve. It’s also like that easily adjust the desired height. But it is also conceivable that the spiral groove has an increasing gradient to the overflow opening, because it can be assumed that relatively low settings are required more often are considered to be very high settings. Because of the lower one Slope can be easily implemented in a practical way a millimeter tenant adjustment become. In addition, the lower slope is due to the lower slope the automatic resetting of the adjustment tube is made even more difficult.
  • the individual parts are coordinated are, so that, for example, correspondingly suitable immersion tubes and adjusting tubes represent a unit with the respective drain housing. According to the invention this is not necessary, d. H. it can also be pipes with smaller or larger Diameters are used because the drain housing is in the lower housing part engaging, designed as a reducer cover part, which at the same time Immersion tube is formed with fixing nut. Even the mounting nut can be designed as a locking part, so that only the individual parts must be locked together in order to then have a complete drain fitting available to have.
  • the reducer which also serves as a cover part serves to change or replace if dip tubes and adjustment tubes other Diameter can be desired. This can be particularly the case with particularly large ones or particularly small shower trays or shower trays are required. All in all is further advantageous that the reducer simultaneously the dip tube and so that the adjustment tube is also effectively fixed and holds.
  • Another useful training is that in which the cap and that Adjustment tube are rotatably and releasably connected to each other via a locking piece.
  • a locking piece For example, there is the possibility of passing the adjustment tube from below push the dip tube through and implement the guidance. Then the Cover cap put on and at the same time an upper stop is created without that any separate parts must be attached to the adjustment tube.
  • the Locking piece simultaneously forms the "joint", via which the adjusting tube opposite the Cover cap can be rotated without it rotating. Because of the detachable Connection via the locking piece, the adjustment tube can be replaced if necessary, by simply removing the cover cap, so that the adjustment tube is then easy can be pushed out through the immersion tube.
  • the groove is the one at which it slants inwards has extending flanks or is formed in a V-shape and that Guide pin receives a corresponding shape. It is sufficient that due to the Form of groove and guide pin so much friction is generated that the adjusting tube remains in the intended position even when the user releases it. In particular where a precise setting is important, it is advantageous if the groove sloping outward flanks and the and the guide pin an adapted Have shape. This training is especially advantageous if only with a groove and a guide pin is worked because the frictional forces achieved in this way are larger than the open shape of the groove.
  • the required necessary friction between the groove and the guide pin can be targeted can also be adjusted in that the guide pin at the free end all around extending projection and in the middle an axial relief slot having.
  • the free end i.e. H. so the real thing Leading end of the guide pin with its projections, d. H. so that Outer edge pressed against the flanks of the groove, so that even when moisture is present or always with foam or even shower detergent in the water Locking in the desired position remains ensured.
  • the relief slot is wedge-shaped and points with the wedge tip from the free end and is trained up to the beginning of the projection, because then the desired spring action of the guide pin end is ensured.
  • Another design of the end of the guide pin is that in which the free End of the guide pin over several, preferably three protruding outwards Feather feet.
  • This design of the guide pin end ensures that at least always rub two of the spring feet on the flanks of the groove so that the desired one Locking is achieved, especially when the ends of the spring feet are rounded so that damage to the flanks of the groove does not occur can, but rather the advantageous conditional friction is generated.
  • the guide pin thus has the shape of a molar tooth, even with frequent use there is no fear of the spring feet breaking off.
  • a design of the guide pin advantageous, in which it is rotatable at the end and against the force of a spring in the guide pin slidably mounted guide ball having.
  • the guide ball is therefore always under a certain pressure the bottom of the groove, which ensures the desired locking in any position is ensured.
  • the spring or the guide ball excluded they can both be made of plastic, for example getting produced. Since the guide ball is still rotatable despite the spring, lies they always have a different surface on the bottom of the groove so that it becomes a hard bake or on the other hand, an unintentional sliding cannot occur.
  • the invention is characterized in that a drain fitting is created, which is easy to manufacture because it is used to guide the adjustment tube in the Dip tube required parts in the manufacture of these two components of the drain fitting can be realized at the same time.
  • a drain fitting is created, which is easy to manufacture because it is used to guide the adjustment tube in the Dip tube required parts in the manufacture of these two components of the drain fitting can be realized at the same time.
  • Through this targeted guidance of the adjustment tube it is possible to pull it out in any length and so different Realize water depths or water levels. It can vary depending Slope of the groove serving as a guide a self-locking can be realized, which ensures that the position specified by hand is maintained without any additives.
  • the groove / guide pin guide is not subject to wear and is practical also the necessary seal between the immersion tube and adjusting tube, so that on further additional components can be dispensed with entirely.
  • Another advantage is that the individual components of the drain fitting can be easily and securely connected and so that the exact fit of the dip tube and the adjustment tube is then guaranteed is.
  • Another advantage is that the special training and arrangement of immersion pipe and adjustment pipe as well as drain housing a simple and safe odor control can be realized. By skillful training of the groove and the guide pin is certain that a targeted and sufficient There is friction, which is locking in any desired position for the adjustment tube ensures.
  • the fitting 1 shown in Fig. 1 has a laterally attached further Water pipe, which is attached to the drain pipe 9.
  • the drain connector 9 itself is watertight via a union nut 10 and wedge seal 11 and pressure ring 12 connected to the drain body 2.
  • the drain housing 2 consists of a pot-like lower housing part 3 with the the odor barrier insert 13 and the lower housing part 3 to be connected Cover part 4.
  • This cover part 4 has a special shape in that it is realized here as a reducer 5, which gives the possibility through exchange, to use different immersion tubes 7 with different sized shower bases 8, if this is necessary.
  • a mounting nut 6 provided with the appropriate thread to after inserting the reducer 5 also effectively attach the dip tube 7.
  • An adjustment tube 15 is rotatably arranged in the dip tube 7, this adjustment tube 15 is also rotatably connected to a cover cap 16.
  • the connection between cover cap 16 and adjusting tube 15 is releasable, specifically via the locking piece 19, so that an upper stop can be dispensed with.
  • the lower stop 17 will be explained later, especially since he carries the simplified sealing element 18.
  • FIG. 2 shows an enlarged representation of the actual drain housing 2, in particular the guide 20 is explained here, which pulls out evenly of the adjustment tube 15 should secure.
  • the adjusting tube 15 two grooves 21, 23 arranged offset on the circumference and the Dip tube 7 assigned correspondingly arranged guide pins 22, 24.
  • the grooves 21, 23 are embedded in the outer wall 25, so that the Inserting the adjusting tube 15 into the immersion tube 7 is facilitated, as further below will be explained later.
  • the adjustment tube has 15 only over one stop, namely the lower stop 17. It will realized by an approach 26 by forming a groove 27 which is an O-ring 28 records. This O-ring 28 rubs on the inner wall 31 of the dip tube 7, see above that absolute tightness is guaranteed.
  • Fig. 2 also illustrates that the overflow opening 30 is a dirt trap 29 is assigned that the penetration of dirt, especially hair into the Adjustment tube 15 effectively prevented. This debris cannot enter the wastewater cycle get, but are separately disposed of easily.
  • Fig. 3 shows a further enlargement, which both the training of Guide 20 explains and in addition the connection of the individual parts of the drain housing 2 with each other.
  • the fastening nut 6 has a thread 34 which corresponds to the thread of the reducer 5 is formed so that after the insertion of the dip tube 7 and the adjusting tube 15 with the help of this fastening nut 6 fixing on the bottom of the shower base 8 is possible.
  • This floor of the shower tray 8 is when the fastening nut is tightened 6 pressed onto the reducer 5, with a flat seal 33 interposed is. So a tight connection in this area is simple and practical realize.
  • the reducer 5 has a further thread 37 on the outside, which with corresponds to the thread associated with the drain housing 2 or the housing part 3 is trained. As a result, the reducer 5 is effectively fixed and while pinching the further flat seal 32.
  • Fig. 4 shows a section through an adjusting tube 15 in the region of the guide pin 22, it becoming clear that a "right-angled" groove 21 is realized here. This means that the two flanks 40, 41 strike the groove base 42 at right angles, so that these flanks 40, 41 parallel to the outer wall 44 of the guide pin 22 run. A corresponding friction is sufficient to move the adjustment tube 15 in lock in any position.
  • a groove 21 is shown, in which the flanks 40, 41 from the bottom of the groove 42 run obliquely outwards.
  • this is exactly the opposite, d. H. here the flanks 40, 41 run the other way round, so that there is a narrower opening.
  • the guide pin 22, which is not shown here, receives an adapted shape, which can be seen, for example, from FIG. 9.
  • FIG. 11 Deviating from the above representations, a groove is shown in FIG has an arcuate groove base 43. Tapered accordingly the flanks 40, 41 also run. Such a groove 21 is particularly favorable to use with a guide pin according to FIG. 11.
  • the groove 21 is V-shaped, so that a groove base 42 in the sense does not exist. Rather, the two flanks 40, 41 run in the groove base 42 together.
  • a guide pin 22 is shown here for clarification, which has a free end 45 equipped with bevels.
  • the free end 45 of the guide pin 22, 24 has several spring feet 50, 51, 52 projecting obliquely outwards. These spring feet, in which it can be two, three or even four press because of their training against the flanks 40, 41 of the groove 21, 23, so that the necessary friction is always can be generated safely. In a sense, this also results in wedge tips 48 ', which are brought up to the shoulder 49'.
  • Fig. 11 finally shows an embodiment in which in the free end 45 of the guide pin 22, 24 a guide ball 53 is inserted. She is in a ball bearing 54 embedded, which in some respects is a "pushing out" of the guide ball 53 by the spring 55 allows, so that the guide ball 53 thus on the spring force is pressed into the groove base 43 or 42. Even so, the Friction are generated, which brings about the locking of the adjusting tube 15.

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Sink And Installation For Waste Water (AREA)
  • Domestic Plumbing Installations (AREA)
  • Joints Allowing Movement (AREA)
  • Centrifugal Separators (AREA)

Claims (18)

  1. Une armature d'écoulement pour des cuvettes de douche ou de baignoire-douche, dotée d'un corps (2) d'écoulement en deux éléments, d'un tube (7) plongeur dressé de façon fixe et, à l'intérieur de lui, d'un tube (15) de réglage, qui est guidé de manière à pouvoir coulisser de façon télescopique, qui porte une chape (16) à proximité d'une ouverture (30) de trop-plein de l'armature d'écoulement et qui est pourvu, à l'extérieur, d'éléments (18) d'étanchéité et de butées (17) déterminant les positions extrêmes,
    caractérisée en ce que le tube (15) de réglage est conçu avec possibilité de rotation par rapport au tube (7) plongeur et à la chape (16) et dispose, conjointement avec le tube (7) plongeur, d'un guidage (20) en forme de vis ou de spirale.
  2. Une armature d'écoulement conforme à la revendication n° 1,
    caractérisée en ce que le guidage (20) est conçu sous forme de rainure (21) disposée sous forme de spirale, taillée dans le tube (15) de réglage, et de goujon (22) de guidage, coordonné avec le tube (7) plongeur.
  3. Une armature d'écoulement conforme à la revendication n° 2,
    caractérisée en ce que plusieurs rainures (21, 23) et goujons (22, 24) de guidage sont prévus, de préférence une seconde rainure (23) et un second goujon (24) de guidage.
  4. Une armature d'écoulement conforme à la revendication n° 1,
    caractérisée en ce que le guidage (20) est conçu sous forme de rainure (21) disposée sous forme de spirale, taillée dans le tube (7) plongeur, et de goujon (22) de guidage, coordonné avec le tube (15) de réglage.
  5. Une armature d'écoulement conforme à la revendication n° 2 jusqu'à la revendication n° 4, caractérisée en ce que une bille, qui est guidée avec possibilité de rotation au niveau du tube (7) plongeur ou du tube (15) de réglage, sert de goujon (22, 24) de guidage.
  6. Une armature d'écoulement conforme à la revendication n° 1 jusqu'à la revendication n° 5, caractérisée en ce que l'élément (18) d'étanchéité sur la paroi (25) extérieure du tube (15) de réglage est conçu sous forme d'un joint (28) torique, qui est guidé dans un épaulement (26), lequel présente une rainure (27) et simultanément sert de butée (17) inférieure.
  7. Une armature d'écoulement conforme à la revendication n° 2 jusqu'à la revendication n° 5, caractérisée en ce que la rainure (21, 23) disposée sous forme de spirale présente un pas axial constant.
  8. Une armature d'écoulement conforme à la revendication n° 2 jusqu'à la revendication n° 5, caractérisée en ce que la rainure (21, 23) disposée sous forme de spirale présente un pas axial croissant dans le sens de l'ouverture (30) de trop-plein.
  9. Une armature d'écoulement conforme à la revendication n° 1,
    caractérisée en ce que un filtre (29) de rétention d'impuretés est coordonné avec l'ouverture (30) de trop-plein et la recouvre partiellement.
  10. Une armature d'écoulement conforme à la revendication n° 1,
    caractérisée en ce que le corps (2) d'écoulement présente une partie (4) couvercle, qui s'emboíte dans la partie (3) inférieure du corps et est conçue sous forme de raccord (5) de réduction, et qui également est conçue de façon à fixer simultanément le tube (7) plongeur à l'aide d'un boulon (6) de fixation.
  11. Une armature d'écoulement conforme à la revendication n° 1,
    caractérisée en ce que un élément (19) à encliqueter relie la chape (16) et le tube (15) de réglage l'un à l'autre, avec possibilité de rotation et de façon amovible.
  12. Une armature d'écoulement conforme à la revendication n° 1 jusqu'à la revendication n° 4 et à la revendication n° 7 jusqu'à la revendication n° 8, caractérisée en ce que la rainure (21, 23) présente des flancs (40, 41) et un fond (42) de rainure disposés perpendiculairement les uns par rapport aux autres ou un fond (42) de rainure arqué.
  13. Une armature d'écoulement conforme à la revendication n° 1 jusqu'à la revendication n° 4 et à la revendication n° 7 jusqu'à la revendication n° 8, caractérisée en ce que la rainure (21, 23) présente des flancs (40, 41) orientés en biseau vers l'intérieur ou est conçue de façon à former un V et que le goujon (22, 24) de guidage présente une forme correspondante.
  14. Une armature d'écoulement conforme à la revendication n° 1 jusqu'à la revendication n° 4 et à la revendication n° 7 jusqu'à la revendication n° 8, caractérisée en ce que la rainure (21, 23) présente des flancs (40, 41) orientés en biseau vers l'extérieur et le goujon (22, 24) de guidage présente une forme correspondante.
  15. Une armature d'écoulement conforme à la revendication n° 2 jusqu'à la revendication n° 14, caractérisée en ce que le goujon (22, 24) de guidage présente une protubérance (46) périphérique, faisant un tour complet, en son extrémité (45) libre, et une encoche (47) de détente, orientée dans la direction axiale, en son centre.
  16. Une armature d'écoulement conforme à la revendication n° 15,
    caractérisée en ce que l'encoche (47) de détente est conçue de façon cunéiforme et avec la pointe (48) du coin détournée de l'extrémité (45) libre et remontant jusqu'à la base (49) de la protubérance (46).
  17. Une armature d'écoulement conforme à la revendication n° 15 jusqu'à la revendication n° 16, caractérisée en ce que l'extrémité (45) libre du goujon (22, 24) de guidage dispose de plusieurs, de préférence au nombre de trois, jambes (50, 51, 52) élastiques, protubérantes vers l'extérieur.
  18. Une armature d'écoulement conforme à la revendication n° 2 jusqu'à la revendication n° 14, caractérisée en ce que le goujon (22, 24) de guidage en son extrémité présente une bille (53) de guidage, qui est guidée avec possibilité de rotation et de façon à pouvoir coulisser dans le goujon (22, 24) de guidage contre la force exercée par un ressort (55).
EP97104447A 1996-04-13 1997-03-15 Bonde de vidange avec tuyau de réglage téléscopique Expired - Lifetime EP0801178B1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE19614694 1996-04-13
DE19614694 1996-04-13
DE19623034A DE19623034A1 (de) 1996-04-13 1996-06-08 Ablaufarmatur mit Teleskopverstellrohr
DE19623034 1996-06-08

Publications (3)

Publication Number Publication Date
EP0801178A2 EP0801178A2 (fr) 1997-10-15
EP0801178A3 EP0801178A3 (fr) 1998-09-09
EP0801178B1 true EP0801178B1 (fr) 2002-12-04

Family

ID=26024729

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97104447A Expired - Lifetime EP0801178B1 (fr) 1996-04-13 1997-03-15 Bonde de vidange avec tuyau de réglage téléscopique

Country Status (5)

Country Link
EP (1) EP0801178B1 (fr)
CZ (1) CZ113097A3 (fr)
DE (2) DE19623034A1 (fr)
HU (1) HU218932B (fr)
PL (1) PL183205B1 (fr)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE20019994U1 (de) * 2000-11-21 2001-02-15 Scherer Norbert Becken- und Wannenablauf
DE10103648A1 (de) * 2001-01-27 2002-08-01 Hansgrohe Ag Ablaufsiphon für Waschbecken oder dergleichen
DE10103650A1 (de) * 2001-01-27 2002-08-01 Hansgrohe Ag Ablaufsiphon für Waschbecken oder dergleichen
DE10248016B3 (de) * 2002-10-15 2004-06-03 Rational Ag Stellorgan sowie dieses umfassender Ablöschkasten und Verfahren zur Regelung des Füllstands eines Flüssigkeitssammelbehälters
DE202004011361U1 (de) * 2004-07-20 2005-12-08 Viega Gmbh & Co. Kg Ablaufverbindung
DE102008018770A1 (de) * 2008-04-14 2009-10-22 Magma Glasdesign GbR (vertretungsberechtigter Gesellschafter: Rudolf Schwer, 83101 Rohrdorf) Glaswaschbecken mit selbst tragendem Siphon
DE202011102926U1 (de) * 2011-06-28 2012-10-10 Poresta Systems Gmbh Duschbodenelement

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DK117479B (da) * 1968-02-05 1970-04-27 K Holscher Håndvask med vandlås.
DE4206903A1 (de) * 1992-03-05 1993-09-23 Dallmer Gmbh & Co Ablaufarmatur fuer brausebecken oder spuelbecken
DE9214810U1 (fr) * 1992-03-05 1993-01-07 Dallmer Gmbh & Co, 5760 Arnsberg, De

Also Published As

Publication number Publication date
CZ113097A3 (en) 1997-12-17
EP0801178A2 (fr) 1997-10-15
HUP9701014A2 (hu) 1998-01-28
PL319400A1 (en) 1997-10-27
HU9701014D0 (en) 1997-07-28
PL183205B1 (pl) 2002-06-28
DE59708855D1 (de) 2003-01-16
HUP9701014A3 (en) 1998-08-28
DE19623034A1 (de) 1997-10-16
EP0801178A3 (fr) 1998-09-09
HU218932B (hu) 2001-01-29

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