EP4261357A1 - Dispositif pour un dispositif d'écoulement disposé dans le sol d'une pièce et procédé de montage du dispositif d'écoulement - Google Patents

Dispositif pour un dispositif d'écoulement disposé dans le sol d'une pièce et procédé de montage du dispositif d'écoulement Download PDF

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Publication number
EP4261357A1
EP4261357A1 EP23158148.9A EP23158148A EP4261357A1 EP 4261357 A1 EP4261357 A1 EP 4261357A1 EP 23158148 A EP23158148 A EP 23158148A EP 4261357 A1 EP4261357 A1 EP 4261357A1
Authority
EP
European Patent Office
Prior art keywords
contact section
section
floor
opening
layer
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.)
Pending
Application number
EP23158148.9A
Other languages
German (de)
English (en)
Inventor
Stefan Ulrich
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.)
Dallmer GmbH and Co KG
Original Assignee
Dallmer 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 Dallmer GmbH and Co KG filed Critical Dallmer GmbH and Co KG
Publication of EP4261357A1 publication Critical patent/EP4261357A1/fr
Pending legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
    • E03F5/0407Floor drains for indoor use
    • E03F5/0408Floor drains for indoor use specially adapted for showers
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
    • E03F5/0407Floor drains for indoor use
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
    • E03F2005/0412Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps with means for adjusting their position with respect to the surrounding surface
    • E03F2005/0413Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps with means for adjusting their position with respect to the surrounding surface for height adjustment
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
    • E03F5/041Accessories therefor
    • E03F5/0411Devices for temporarily blocking inflow into a gully

Definitions

  • the present invention relates to a device for a drain device arranged at least partially in the floor of a room, a drain device with such a device and a method for mounting such a drain device at least partially in the floor of a room.
  • a device and a drain device of the aforementioned type are from the EP 3 064 667 A1 known.
  • the device described therein comprises a sealing insert which has a flexible sealing film with an opening through which water can pass, and a connecting part which is connected to the sealing film.
  • the drain device comprises a drain body with a groove on its top side into which the connecting part projects from above.
  • the drain body has an opening around which the groove runs. The drain device is sealed both against the connecting part in the groove and in the opening of the drain body against a frame that holds an odor trap.
  • a further device for a drain device arranged in the floor of a room and a drain device with such a device are from the EP 3 366 852 A1 known.
  • the device described therein comprises an elongated frame in which a molding is provided which has an inclined upper surface. Water can flow over the inclined surface to an opening extending downward through the molding and the frame.
  • a subframe protrudes downward from the frame and rests on the top of a drain body. Tiles of a floor covering can rest on the outside of the frame.
  • a sealing insert is also required EP 3 064 667 A1 provided, the connecting part of which projects from above into a corresponding groove on the top of the drain body.
  • the drain device is sealed both against the connecting part in the groove and in the opening of the drain body against a frame that holds an odor trap. Furthermore, the molded part lies in the frame with play. In addition, the substructure frame is slidably positioned on the top of the drain body. A plurality of sealing levels are therefore provided.
  • floor coverings have been increasingly used in the sanitary sector, which are applied as a layer of a mortar-like mass to an appropriately prepared raw floor and, after the mass has hardened, are sanded and, if necessary, additionally polished. These floor coverings are particularly high-priced terrazzo floors. These floor coverings can be designed to be seamless. With these floor coverings, it should be avoided that wastewater gets under parts of the floor covering.
  • the devices for drainage devices known from the prior art cannot ensure a tight installation of a seamless floor covering.
  • the problem underlying the present invention is the creation of a device of the type mentioned at the outset and one Drainage device of the type mentioned at the outset, which can prevent an impairment of the appearance, in particular damage, of parts of the drainage device during the grinding of the hardened mass and/or an excessive reduction in the thickness of parts of the drainage device during the grinding of the hardened mass and/or have fewer sealing levels between individual parts of the device or the drainage device.
  • a method of the type mentioned is to be specified, with which an impairment of the appearance, in particular damage, to parts of the drainage device during the grinding of the hardened mass and / or an excessive reduction in the thickness of parts of the drainage device during the grinding of the hardened Mass can be prevented.
  • the device comprises an opening which, in the assembled state of the device, extends vertically through the device and is designed to transfer water draining from the floor into the drainage device, a contact section with a vertical contact surface in the assembled state of the device which runs at least partially around the opening and is designed to rest on the side facing away from the opening on a floor covering, the thickness of which is reduced after application, in particular by grinding, and a device for preventing damage to the top of the Investment section while reducing the thickness of the floor covering.
  • the device can ensure that damage to parts of the drainage device is prevented while the hardened mass is being sanded off.
  • the device for preventing damage to the top of the contact section is designed as a building protection cover, which in the assembled state rests on the top of the contact section at least in the area of the contact surface.
  • a construction protection cover can be easily integrated into the device and manufactured relatively inexpensively.
  • the device for preventing damage to the top of the contact section is part of the contact section, in particular the upper part of the contact section.
  • the device for preventing damage to the top of the contact section has a first layer and a second layer, wherein in the assembled state the first layer is arranged above the second layer, the first layer having a first color and the second layer has a second color, the first color being different from the second color.
  • the layers are arranged in particular in the area of the device or the building protection cover, which rests on the top of the contact section. Alternatively, the layers are formed on the contact section. As long as the first color is visible when sanding the hardened mass, you can continue sanding.
  • the sanding should be stopped, otherwise there is a risk that the top of the contact section will also be sanded, which would make it unsightly, or that the top of the contact section will be removed too much.
  • the device for preventing damage to the top of the contact section consists of an abradable material, in particular made of aluminum or plastic or of a composite material such as a mineral-organic composite material, or that the device for preventing damage to the top the contact section comprises an abradable material, in particular aluminum or plastic or a composite material such as a mineral-organic composite material.
  • the mineral-organic composite material can be, for example, the material sold by the DuPont company under the trade name Corian.
  • the device comprises an opening which, in the assembled state of the device, extends in the vertical direction through the device and is designed to transfer water draining from the floor into the drainage device, a contact section with a vertical contact surface in the assembled state of the device which runs at least partially around the opening and is designed to rest on the side facing away from the opening on a floor covering, the thickness of which is reduced after application, in particular by grinding, the contact section at least partially consisting of a sandable material and is designed to be reduced in thickness together with the floor covering, in particular by grinding.
  • the device can be integrated into the manufacturing process of the floor.
  • An upper section of the contact section can therefore be sanded off together with the layer of floor covering to be removed.
  • the top of the abutment section can be polished together with the top of the flooring.
  • the sandable one Material of the contact section can ensure that grinding and polishing results in an attractive appearance of the top of the contact section.
  • the vertical contact surface in the assembled state of the device has an extension in the vertical direction of between 7 mm and 12 mm, in particular between 8 mm and 11 mm, preferably between 9 mm and 10 mm.
  • the vertical extent of the contact surface thus corresponds to typical thicknesses of floor coverings that can be applied as a layer of a mortar-like mass, so that the device is optimally suitable for use with such floor coverings.
  • the device comprises a connecting section which, in the assembled state of the device, projects from above into a part of the drain device, the connecting section being designed to be on its outside against the part of the drain device into which it projects, with a to be sealed by a circumferential seal.
  • the contact section and the connecting section can be formed in one piece with one another. Due to the one-piece design of the contact section with the connecting section, there is no longer a sealing plane between the contact section and the connecting section.
  • the floor covering is sealed when the floor covering is applied by placing the floor covering as tightly as possible on the vertical contact surface.
  • the vertical contact surface runs completely, in particular without interruptions, around the opening.
  • a seal within the drain device is provided by the circumferential seal on the outside of the connecting section opposite the part of the drain device into which the connecting section projects.
  • the device comprises a support section which surrounds the contact section at the level of the underside of the contact surface and is set up so that the floor covering rests directly or indirectly on it, in particular wherein the support section is formed in one piece with the contact section and the connecting section .
  • the support section ensures that the floor covering is placed evenly in the area surrounding the device. With a one-piece connection of the support section with the contact section and the connection section, the number of sealing levels is further reduced.
  • the device is made of metal or includes metal, or that the device is made of plastic or includes plastic, or that the device consists of a composite material or includes a composite material.
  • the composite material can be, for example, a mineral-organic composite material, for example the material sold by the DuPont company under the trade name Corian.
  • At least the part of the device comprising the contact section and the connecting section can be milled from solid or produced by 3D printing or by deep drawing or injection molding. For example, when milling from solid metal part or 3D printing a metal part, a one-piece and tight connection of the individual sections of the device to one another is ensured.
  • milling a plastic part from solid material for small quantities can be cheaper than injection molding, in which the manufacturing costs for the tool are usually comparatively high.
  • the drain device comprises a drain body with an inlet opening into which water can enter, and with a drain opening through which water can flow away, as well as a device according to the invention, the opening of the device being designed to transfer water draining from the floor into the inlet opening of the drain body.
  • the method comprises the method steps of assembling the drain body, assembling the device at least partially above the drain body, applying a mortar-like mass which is used to form the floor covering, such that the mass surrounds the device and rests on the contact surface of the device from the outside , as well as grinding the mass until a color change or a change in material becomes visible in the area of the contact section.
  • the color change takes place from the first to the second color.
  • the color change signals that the first layer of the device has been sanded to prevent damage to the top of the contact section and that sanding of the second layer has now begun.
  • a protective cover is removed after sanding. If the protective cover serves as a device for preventing damage to the top of the abutment section, the top of the abutment section is thereby exposed. When the abutment section itself serves as a device for preventing damage to the top of the abutment section, removal of the protective cover does not expose the top of the abutment section.
  • a screed layer is applied to the raw floor, which at least partially surrounds the drain body, with the mortar-like mass being applied at least partially to the screed layer or to a composite seal arranged on the screed layer.
  • the device 1 shown in the figures comprises a comparatively flat part, on its upper side in the position of use has a contact section 2 with a vertical contact surface 3 when the device 1 is assembled (see Fig. 2 ).
  • the vertical contact surface 3 surrounds an opening 4, which extends from top to bottom through the device 1 extends through.
  • the opening 4 has an oval cross section and is elongated, so that the opening 4 is significantly more extensive in the longitudinal direction than in the transverse direction, for example four to eight times as extensive as in the transverse direction.
  • the opening 4 does not have an oval cross-section, but rather, for example, a rectangular cross-section.
  • the opening 4 is not elongated, but rather has, for example, a circular or square cross section.
  • a floor covering 12 can rest against the vertical contact surface 3 from the outside (see for example Fig. 7 ).
  • the contact surface 3 has an extension in the vertical direction of between 7 mm and 12 mm, in particular between 8 mm and 11 mm, preferably between 9 mm and 10 mm.
  • the part of the device 1 having the contact section 2 further comprises a support section 5 which surrounds the contact section 2 at the level of the underside of the contact surface 3.
  • the support section 5 thus extends from the contact surface 3 outwards away from the opening 4.
  • the floor covering 12 can rest directly or indirectly on the support section 5.
  • the support section 5 is formed in one piece with the contact section 2 in the illustrated embodiment.
  • the support section 5 can also be designed as a part that is separate from the contact section 2, in particular as a flat frame through which the opening 4 extends.
  • the part of the device 1 having the contact section 2 further comprises a connecting section 6, which in the assembled state of the device 1 is separated from the contact section 2 and if necessary, the support section 5 protrudes downwards (see Fig. 3 ).
  • the connecting section 6 has a circumferential groove 7 on its outside, in which a circumferential seal (not shown) can be arranged.
  • the contact section 2, the support section 5 and the connecting section 6 are formed in one piece with one another.
  • the support section 5 is a separate part.
  • the one-piece part of the device 1, in particular consisting of the contact section 2, the support section 5 and the connecting section 6, consists of metal, in particular stainless steel, or includes metal, in particular stainless steel.
  • At least the part of the device 1 comprising the contact section 2 and the connecting section 6, in particular the part of the device 1 comprising the contact section 3, the connecting section 6 and the support section 5, can be milled from solid or produced by 3D printing or by deep drawing be.
  • the device 1 further comprises a cover 9, which is designed to be inserted into the part of the device 1 having the contact section 2 in such a way that a slot 10, in particular, between the cover 9 and the contact section 2 a slot 10 running around the cover 9, for the water to flow into the opening 4 (see for example Fig. 7 ).
  • the cover 9 has, on its upper side when the device 1 is assembled, a receptacle 11 for a part 13 of the floor covering 12 (see Fig. 7 ).
  • Two support areas 14 for the cover 9 are provided between the insides of the vertical contact surface 3 and the front ends of the opening 4 in the longitudinal direction (see Fig. 2 ). In each of these support areas 14 there is a hole 15 for receiving a screw 16 (see Fig. 1 ), which is used to attach the device 1 to the drain body 18 of the drain device.
  • the device 1 further comprises an odor trap insert 17, which in the assembled state partially protrudes through the opening 4 into the drain body 18 of the drain device.
  • the part of the device 1 having the contact section 2 has two shoulders 19 at the front ends of the opening 4 in the longitudinal direction, which protrude into the opening 4 so that the odor trap insert 17 can rest on them (see Fig. 2 ).
  • the device 1 further comprises a construction protection cover 8 serving as a device for preventing damage to the top of the contact section 2.
  • a construction protection cover 8 serving as a device for preventing damage to the top of the contact section 2.
  • the construction protection cover 8 is applied from above to the part of the device 1 having the contact section 2 in such a way that the top of the System section 2 is covered by a circumferential and upward and outwardly projecting outer edge 21 of the building protection cover 8.
  • the outer edge 21 of the building protection cover 8 has two layers 22, 23 arranged one above the other (see Fig. 5 ).
  • the first, top layer 22 has a first color and the second, bottom layer 23 has a second color that is different from the first color.
  • the first color is purple and the second color is turquoise. It is certainly possible that other, different colors are provided as the first and/or second color.
  • the building protection cover 8 consists, at least in the area of the outer edge 21, of a sandable material, in particular aluminum or plastic or a composite material such as a mineral-organic composite material.
  • the mineral-organic composite material can be, for example, the material sold by the DuPont company under the trade name Corian.
  • the drain device shown includes, in addition to the device 1, the drain body 18 with an inlet opening 20 into which water can enter and with a drain opening through which water can flow away.
  • the drain opening can be part of a drain nozzle, which can be arranged on one of the end faces of the drain body 18 or a drain nozzle can also be arranged in the middle or on the other end face.
  • Corresponding receptacles 24 for a drain connection are provided on the drain body 18 (see Fig. 1 ).
  • the connecting section 6 of the device 1 projects from above into the inlet opening 20 of the drain body 18.
  • the connecting section 6 is sealed on its outside with a seal arranged in the groove 7 against the inner edge 25 of the inlet opening 20 of the drain body 18 (see Fig. 5 ).
  • the drainage device further comprises a sealing insert 26, which has a flexible sealing film 27 with an opening through which water can pass, and a connecting part 28 which is connected to the sealing film 27 (see Fig. 5 ).
  • the drain body 18 has a circumferential groove 29 on its upper side, into which the connecting part 28 projects from above when the drain device is assembled.
  • the drain body 18 is mounted on the unfinished floor of a room.
  • a screed layer is then applied to the raw floor, which at least partially surrounds the drainage body.
  • the sealing insert 26 with the flexible sealing film 27 is applied to the drainage body 18.
  • the device 1 is then mounted on the drain body 18.
  • Fig. 5 shows that a screw 16 is screwed into a corresponding receptacle 30 of the drain body 18 through the bore 15 or each of the bores 15.
  • the top of the support section 5 of the device 1 is essentially at the height of the sealing film 27 of the sealing insert 26.
  • a thin composite seal 31 can be applied to this sealing film 27 and possibly also to the support section 5.
  • a mortar-like mass which serves to form the floor covering 12, is at least partially applied to the screed layer or to the composite seal 31 arranged on the screed layer.
  • the mortar-like mass also contains pieces of rock that become visible after the floor covering 12 has been partially sanded down.
  • the mortar-like mass is applied in such a way that the mass surrounds the device 1 and rests on the contact surface 3 of the device 1 from the outside. After applying the mortar-like mass, wait until it has dried and hardened. The grinding process then begins.
  • the upper layer 32 is intended to illustrate the part of the hardened mortar-like mass that is sanded away.
  • the lower layer 33 is intended to illustrate the part of the hardened mortar-like mass that is not sanded off or remains after sanding, so that it ultimately forms the floor covering 12.
  • the first, top layer 22 of the circumferential edge 21 of the building protection cover 8 is also sanded down. It turns out that the first, upper layer 22 of the circumferential edge 21 of the building protection cover 8 has the same thickness as the layer 32 of the hardened mortar-like mass to be sanded down.
  • the first, upper layer 22 of the edge 21 of the building protection cover 8 is also sanded off at the same time. After removing this first, upper layer 22 of the peripheral edge 21 of the building protection cover 8, a visible color change takes place.
  • the first color for example violet
  • the first color for example violet
  • a violet, rectangular ring, for example is visible during this phase of grinding.
  • the second, lower layer 23 of the circumferential edge 21 and thus the second, for example turquoise color become visible.
  • the color change signals that the first layer 22 of the peripheral edge 21 has been sanded off and that the sanding of the second layer 23 has now begun. Therefore, when the second color becomes visible, the sanding must be stopped, otherwise there is a risk that the top of the contact section 2 will also be sanded, which would make it unsightly.
  • the remaining layer 33 of the hardened mortar-like mass, which now forms the top of the floor covering 12, can now be suitably polished to give it the desired appearance.
  • the top of the contact section 2 is offset slightly, for example approximately 1 mm, downwards relative to the top of the lower layer 33 or is embedded in the floor covering 12. This slight downward offset helps ensure that the top of the contact section 2 is not damaged when the hardened mortar-like mass is partially sanded off.
  • the building protection cover 8 is removed and replaced by the cover 9 (see Fig. 7 ).
  • a part 13 of the floor covering 12 can be inserted into the receptacle 11, which is designed, for example, as a terrazzo plate and is visually similar to the ground and polished floor covering 12.
  • Fig. 8 and Fig. 9 show another cover 34, which does not have a receptacle for a part of the floor covering 12, but is solid, for example made of stainless steel.
  • FIG. 10 and Fig. 11 a third embodiment of a drain device with a device 1 is shown.
  • This device 1 also has a building protection cover 8.
  • this construction protection cover 8 does not serve as a device for preventing damage to the top of the contact section 2.
  • the upper part of the contact section 2 itself is designed as a device for preventing damage to the top of the contact section 2.
  • the upper part 2a of the abutment section 2 has a first color, whereas the part 2b arranged under the upper part 2a has a second color which is different from the first color.
  • the device 1 of the third embodiment consists, at least in the area of the contact section 2, of a two-component plastic.
  • the upper part 2a of the contact section 2 consists of the first component and the part 2b of the contact section 2 arranged below the upper part 2a consists of the second component of the plastic .
  • the upper part 2a of the contact section 2 is also sanded down. It turns out that the upper part 2a of the contact section 2 has the same thickness as the layer 32 of the hardened mortar-like mass to be sanded off.
  • the upper part 2a of the contact section 2 is also abraded at the same time. After removing this upper part 2a of the contact section 2, a visible color change takes place.
  • the first color for example violet
  • a violet, rectangular ring, for example is visible during this phase of grinding.
  • the color change signals that the upper part 2a of the contact section 2 has been sanded and that the sanding of the part 2b arranged underneath has now begun.
  • sanding must be stopped when the second color becomes visible.
  • the remaining layer 33 of the hardened mortar-like mass, which now forms the top of the floor covering 12, and possibly the part 2b of the contact section 2 arranged under the upper part 2a can now be suitably polished in order to achieve the desired appearance.
  • the building protection cover 8 is removed and replaced by the cover 9.
  • the edge 21 of the building protection cover 8 does not protrude over the top of the contact section 2. Rather, the edge 21 lies against the contact section 2 on the side facing away from the floor covering 12.
  • the mortar-like mass extends after application over the top of the contact section 2 and over the edge 21 of the building protection cover 8. It also exists in the other embodiments according to Fig. 1 to Fig. 11 the possibility that the mortar-like mass extends over the top of the contact section 2 and over the edge 21 of the building protection cover 8 after application.
  • Annex section 2 consists of the in Fig. 12 and Fig. 13 illustrated embodiment at least in an upper section, in particular completely, made of an abradable material, in particular made of aluminum or plastic or of a composite material such as a mineral-organic composite material.
  • the mineral-organic composite material can be, for example, the material sold by the DuPont company under the trade name Corian.
  • the upper part 2a of the contact section 2 is also sanded down.
  • the upper part 2a and the section of the contact section 2 located below the upper part 2a do not differ from each other in terms of material or color.
  • the remaining layer 33 of the hardened mortar-like mass which now forms the top of the floor covering 12, becomes and the top of the abutment section 2 suitably polished to achieve the desired appearance.
  • the construction protection cover 8 can then be removed and replaced with the cover 9 (see Fig. 13 ). As in the first embodiment, this can be done according to Fig. 1 to 7 A part 13 of the floor covering 12 can be introduced into the receptacle 11, which is designed, for example, as a terrazzo plate and is visually similar to the ground and polished floor covering 12.
  • the outer edge 21 of the building protection cover 8 protrudes over the top of the contact section 2.
  • the building protection cover 8 consists, at least in the area of the outer edge 21, of a sandable material, in particular of aluminum or plastic or of a composite material such as a mineral-organic composite material .
  • the mineral-organic composite material can be, for example, the material sold by the DuPont company under the trade name Corian.
  • the outer edge 21, in contrast to the embodiment according to the Fig. 1 to Fig. 7 no two different layers with different colors. Rather, the entire part of the edge 21 arranged above the contact section 2 has the same color.
  • the layer 32 of the hardened mortar-like mass to be abraded is abraded, the part of the edge 21 of the building protection cover 8 located above the contact section 2 is also abraded. After removing this part of the edge 21 of the building protection cover 8, a visible change of material takes place. During the sanding of the layer 32 of the hardened mortar-like mass to be sanded and the part of the edge 21 located above the contact section 2, the material of the edge 21 of the building protection cover 8 is visible.
  • the top of the contact section 2 becomes visible.
  • the system section 2 is made of stainless steel, for example, there is a visible change in material from, for example, white or gray Corian to stainless steel.
  • the change of material signals that the part of the circumferential edge 21 of the building protection cover 8 located above the contact section 2 has been ground off and that the grinding of the contact section 2 has now begun. Therefore, when the material change becomes visible, the grinding must be stopped, because otherwise there is a risk that the vertical extent of the contact section 2 will be reduced too much by grinding, as a result of which the height of the contact section 2 would no longer be sufficient to accommodate the cover 9 .

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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)
  • Floor Finish (AREA)
  • Sink And Installation For Waste Water (AREA)
EP23158148.9A 2022-04-14 2023-02-23 Dispositif pour un dispositif d'écoulement disposé dans le sol d'une pièce et procédé de montage du dispositif d'écoulement Pending EP4261357A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102022109251.8A DE102022109251A1 (de) 2022-04-14 2022-04-14 Vorrichtung für eine im Boden eines Raumes angeordnete Ablaufvorrichtung sowie Verfahren zur Montage der Ablaufvorrichtung

Publications (1)

Publication Number Publication Date
EP4261357A1 true EP4261357A1 (fr) 2023-10-18

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP23158148.9A Pending EP4261357A1 (fr) 2022-04-14 2023-02-23 Dispositif pour un dispositif d'écoulement disposé dans le sol d'une pièce et procédé de montage du dispositif d'écoulement

Country Status (2)

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EP (1) EP4261357A1 (fr)
DE (2) DE102022109251A1 (fr)

Citations (7)

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Publication number Priority date Publication date Assignee Title
DE69610964T2 (de) * 1995-09-18 2001-06-28 Sjoebo Bruk Sjoebo Ab Übergangsvorrichtung für Bodenablauf
DE20319696U1 (de) * 2003-12-18 2004-03-04 Dallmer Gmbh & Co. Kg Bauschutzabdeckung für die Montage einer Ablaufeinrichtung
EP3031990A1 (fr) * 2014-12-11 2016-06-15 HL Hutterer & Lechner GmbH Siphon de sol
US9422707B2 (en) * 2012-01-23 2016-08-23 Oatey Co. Floor drain assembly and method
EP3064667A1 (fr) 2015-03-06 2016-09-07 Dallmer GmbH & Co. KG Joint d'etancheite d'un dispositif d'ecoulement
EP3366852A1 (fr) 2017-02-23 2018-08-29 Dallmer GmbH & Co. KG Dispositif pour un écoulement au sol disposé au sol d'une pièce
US20210355670A1 (en) * 2018-04-17 2021-11-18 Zurn Industries, Llc Cover assembly and methods

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT201518B (de) 1959-05-29 1959-01-10 Jakob Hofer Fußbodengully

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE69610964T2 (de) * 1995-09-18 2001-06-28 Sjoebo Bruk Sjoebo Ab Übergangsvorrichtung für Bodenablauf
DE20319696U1 (de) * 2003-12-18 2004-03-04 Dallmer Gmbh & Co. Kg Bauschutzabdeckung für die Montage einer Ablaufeinrichtung
US9422707B2 (en) * 2012-01-23 2016-08-23 Oatey Co. Floor drain assembly and method
EP3031990A1 (fr) * 2014-12-11 2016-06-15 HL Hutterer & Lechner GmbH Siphon de sol
EP3064667A1 (fr) 2015-03-06 2016-09-07 Dallmer GmbH & Co. KG Joint d'etancheite d'un dispositif d'ecoulement
EP3366852A1 (fr) 2017-02-23 2018-08-29 Dallmer GmbH & Co. KG Dispositif pour un écoulement au sol disposé au sol d'une pièce
US20210355670A1 (en) * 2018-04-17 2021-11-18 Zurn Industries, Llc Cover assembly and methods

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