EP2781665B1 - Abflussvorrichtung, Kupplungsteil, Endteil, Kit und Verfahren zu ihrer Platzierung - Google Patents

Abflussvorrichtung, Kupplungsteil, Endteil, Kit und Verfahren zu ihrer Platzierung Download PDF

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Publication number
EP2781665B1
EP2781665B1 EP14160737.4A EP14160737A EP2781665B1 EP 2781665 B1 EP2781665 B1 EP 2781665B1 EP 14160737 A EP14160737 A EP 14160737A EP 2781665 B1 EP2781665 B1 EP 2781665B1
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Prior art keywords
drainage
drainage channel
coupling part
longitudinal end
assembly
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EP14160737.4A
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English (en)
French (fr)
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EP2781665A1 (de
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Geert Leclercq
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Yucon Solutions bvba
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Yucon Solutions bvba
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F3/00Sewer pipe-line systems
    • E03F3/04Pipes or fittings specially adapted to sewers
    • E03F3/046Open sewage channels

Definitions

  • the present invention relates to an improved device of a drainage assembly. In a second aspect, the present invention relates to an improved method for the placement of a drainage assembly.
  • Such drainage assembly is generally known and used for example for the drainage of terraces, paths or plazas.
  • the drainage channels are usually of a standard dimension, so that it is necessary to connect multiple drainage channels with each other in order to guarantee the draining of the entire surface to be drained.
  • the known drainage channels are welded or glued together by means of coupling parts.
  • Known drainage assemblies often comprise two separate parts, namely an upright part and a drainage channel, which need to be glued together, welded and/or sealed.
  • the drainage channel consists of e.g. polyester concrete, plastic or concrete and the upright part typically of e.g. galvanized steel, stainless steel or aluminum.
  • a disadvantage of the known assembly is that the welding together, gluing or sealing of the various drainage channels and/or upright parts needs to be done with due care and needs to be done in order to avoid leaks. Such care requires, of course, the necessary time and is therefore labor intensive and expensive.
  • Document FR 2.791.714 discloses a drainage assembly according to the preamble of claim 1 and a method for placing a drainage assembly according to the preamble of claim 15.
  • the invention aims to realize a drainage assembly that allows an easier mounting.
  • the invention in a first aspect, relates to a drainage assembly according to claim 1.
  • the assembly comprises at least a first and a second drainage channel and a first coupling part, said drainage channels each are provided with a first and a second longitudinal end and wherein the first coupling part is provided in order to be arranged on the second longitudinal end of the first drainage channel and the first longitudinal end of the second drainage channel, in order to connect the first and second drainage channel with each other, wherein the first coupling part is shiftable over said first and second longitudinal end according to the longitudinal direction of both drainage channels and that the first coupling part obstructs a transverse movement of said first and second longitudinal end of the respective second and first drainage channel.
  • the drainage channels are suitable to be shifted together and to be aligned. This provides a simple alignment and positioning of both drainage channels and hence allows for a faster mounting and/or optionally dismounting of the drainage assembly.
  • the invention relates to a drainage assembly wherein the first and the second drainage channel are provided with an upright part and wherein the drainage assembly comprises a second coupling part, which is suitable for arrangement to the upright part of the second longitudinal end of the first drainage channel and to the upright part of the first longitudinal end of the second drainage channel, wherein this connects by clamping to said upright parts in order to fix the upright parts of the first and second drainage channel, preferably in line with each other.
  • the second coupling part By arranging the second coupling part to the upright parts of both drainage channels, these are coupled by the second coupling part, and fixed by the clamping of the second coupling part. This offers the advantage of an extra firm coupling between both drainage channels. This also provides a more sustainable and simple mounting of the drainage assembly.
  • the invention relates to a method for the placement of a drainage assembly according to claim 15. This offers the advantage of a simple and faster mounting of a drainage assembly.
  • the invention in a first aspect, relates to a drainage assembly according to claim 1.
  • the assembly comprises at least a first and a second drainage channel and a first coupling part, said drainage channels each are provided with a first and a second longitudinal end and wherein the first coupling part is provided to be arranged on the second longitudinal end of the first drainage channel and the first longitudinal end of the second drainage channel, in order to connect the first and second drainage channel with each other, wherein the first coupling part is shiftable over said first and second longitudinal end along the longitudinal direction of both drainage channels and that the first coupling part obstructs a transverse movement of said first and second longitudinal end of the respective second and first drainage channel.
  • the drainage channels are suitable to be shifted together and to be aligned. This provides a simple alignment and positioning of both drainage channels and allows for a shorter placement time.
  • the drainage assembly comprises drainage channels of different length. It is to be understood that with the present invention, it is also meant: a drainage assembly having multiple connected drainage channels, wherein each individual drainage channel corresponds to a drainage channel as described in the present invention. Hence, it is possible to construct an arbitrary length for a drainage assembly.
  • the invention relates to a drainage assembly wherein the first and the second drainage channel are provided with an upright part and wherein the drainage assembly comprises a second coupling part, which is suitable for arranging to the upright part of the second longitudinal end of the first drainage channel and to the upright part of the first longitudinal end of the second drainage channel, wherein it connects by clamping to said upright parts in order to fix the upright parts of the first and second drainage channel, preferably in line with each other.
  • the second coupling part By arranging the second coupling part to the upright parts of both drainage channels, they are coupled by the second coupling part, and fixed by the clamping of the second coupling part. This offers the advantage of an extra firm coupling between both drainage channels. This also provides a more sustainable and simple mounting of the drainage assembly. Furthermore, it also provides an extra alignment between both drainage channels.
  • elastic sealant is applied to the second longitudinal end of the first drainage channels and/or to the first longitudinal end of the second drainage channels in order to obtain a watertight seal between the first and second drainage channel.
  • elastic sealant in the present invention, is meant a viscous material suitable for bonding and sealing, said material having an elastic behavior.
  • elastic sealants are e.g. MS polymer sealant, silicone or polyurethane.
  • the elastic sealant will provide bonding of the drainage channels and/or a watertight seal, so that no leakage can/will occur.
  • the first coupling part and/or the second coupling part are made out of plastic, preferably high density polyethylene or PVC, more preferably plastic with a hardness which lies between 40 and 45 Shore D.
  • Plastic is a material that is particularly well suited for injection molding, as a result of which the manufacturing of the coupling parts is easy to realize. This leads to an economically more advantageous drainage placement as a more sustainable assembly.
  • the drainage channels are made out of aluminum, preferably anodized aluminum.
  • Anodized aluminum is resistant to oxidation and therefore provides a more sustainable drainage assembly.
  • the drainage channel and the first coupling part comprise a supporting base. Said supporting base provides stability when placing the drainage assembly.
  • the supporting base of the first coupling part is shiftable over the supporting base of the drainage channel.
  • an inspection hatch is provided at one or two ends of the combination of drainage channels.
  • the term “inspection hatch” in the present invention is meant a ground cover which is suitable to provide access to the drainage of the assembly from the terrain surface.
  • it comprises a bottom part, which is provided to connect a drainage channel thereon, an outer cover and an inner cover.
  • Said inner cover is suitable to be filled with terrain material such as tiles, pavers, turf,...
  • the drainage assembly further comprises an end part provided to be arranged on a longitudinal end in order to seal said longitudinal end, said longitudinal end is made out of plastic having such a resilience that it is shiftable over said first and second longitudinal end and when positioned on said first and second longitudinal end, it connects thereto by clamping in order to obtain a watertight seal between the drainage channel and the end part.
  • the invention relates to a coupling part as part of a drainage assembly.
  • An inspection hatch can be part of a drainage assembly.
  • a drain pipe is arranged on an outer wall of the inspection hatch.
  • drainage channels are suitable to be connected to the sewer system via such a drain pipe in order to drain the water collected by the drainage channels to the sewer system.
  • An end part can be part of a drainage assembly.
  • the invention relates to a kit of one or more drainage assemblies.
  • the invention relates to a method for the placement of a drainage assembly according to claim 15.
  • a drainage assembly is provided with a grouting strip, which is removed after placement of the assembly.
  • receiving strip in the present invention is meant a strip for the protection of the interior of the drainage assembly, which is preferably made out of plastic.
  • the drainage assembly (1) shown in Figure 1 comprises a first (2a) and a second (2b) drainage channel. It is to be understood that the invention is not limited to a drainage assembly having only two drainage channels and that also more than two drainage channels may be provided. For reasons of clarity, the description will, however, be limited to a drainage assembly having only two drainage channels.
  • the drainage channel comprises an upright part (3) and a base part (4).
  • the base part is provided with a supporting base (5).
  • the latter displays the profile of a shoe sole, thereby on the one hand allowing a stable placement on a substrate and on the other hand the outermost edge of said profile allows for the anchoring of the drainage channel, either by means of clamping, such as for example, applied to rails, or by the pouring of concrete.
  • the presence of the upright part (3) offers space to arrange tiling or paving in the distance created thereto, so that only a narrow gutter, formed by the upper edge of the upright part, is visible.
  • the water is then able to end up in the drainage channel via an upper edge of the upright part, where it then is able to flow to the base part in order to be further drained there.
  • the drainage channel is made out of extruded aluminum so that not only a sustainable product is obtained but also that the water can flow unhindered into the drainage channel. After all, by extrusion, smooth inner and outer walls are obtainable in an economic and efficient manner.
  • the drainage channel is provided with a first (10) and a second (11) longitudinal end against which a first coupling part (6) or an end part (7, 8) is to be arranged.
  • the first coupling part is arranged to connect two successive (2a, 2b) drainage channels with each other.
  • the end part is arranged at the beginning and the end of the drainage channel, whereby at the beginning of a fully closed end part (7) is arranged, while at the end, preferably an end part (8) provided with a drain pipe (9) is arranged.
  • the latter is then suitable to be connected to the sewer system in order to drain the water collected by the drainage channels to the sewer system.
  • Figure 2 shows an example of a first coupling part as part of a drainage assembly according to the invention.
  • the first coupling part and the end part have a contour that corresponds to that of the drainage channel in order to connect to the drainage channel. Therefore, the first coupling part and the end part also show a first (13) and a second (22) upright part and an upright base part (14), as well as a support base (15).
  • First coupling part and end part are of such dimensions that they are able to shift over the drainage channel.
  • the first coupling part (6) comprises an inner edge (19) from which a rib (16) extends.
  • the rib preferably extends over the entire inner circumference of the inner edge and is arranged in the middle of the inner edge.
  • the rib is thus situated between the longitudinal ends of the drainage channels and thus contributes to a watertight connection between the two drainage channels.
  • the rib is preferably made out of the same material as the first coupling part which is preferably obtained by means of injection molding.
  • the rib extends further above an upper edge of the first coupling part and thus exhibits two protrusions (17). As shown in Figure 1 , said protrusions (17) are to be located exactly between the longitudinal ends of the upright parts of the drainage channels.
  • the first coupling part shows an upper edge that is slightly lower than the upper edge of the upright part (3) of the drainage channel so that it does not constitute an obstacle for a paving or tiling.
  • the first coupling part is made out of plastic with such a resilience that it is shiftable over the first and second longitudinal end when mounting the first coupling part between two consecutive drainage channels. Then, when the first coupling part is positioned on the first and second longitudinal end of two consecutive drainage channels, the plastic material ensures, because of its resilience, that the first coupling part connects by clamping to the first and second longitudinal end, thereby obtaining a watertight seal between the consecutive first and second drainage channels.
  • the first coupling part is preferably made out of high density polyethylene (HDPE) with a hardness which lies between 40 and 45 Shore D.
  • the plastic material further shows a melting point situated around 137°C.
  • the spectrum of the material out of which the first coupling part is made was determined by using infra-red.
  • Figure 5 illustrates the according measured spectrum.
  • the drainage assembly comprises another end part (7, 8) provided to be arranged in each case on a longitudinal end of the drainage channel in order to obtain a watertight seal.
  • End part (8) differs from the end part (7) in that it further comprises the drain pipe (9).
  • the end parts are made out of the same material as the first coupling part and displays a profile that corresponds to that of the drainage channel. This also allows the end parts to be arranged on the drainage channel by clamping to thus achieve a watertight seal.
  • Both the first coupling part as well as the end part are preferably provided with a protrusion (20), respectively (21), which is located at the height of an upper edge of the upright part of the drainage channel.
  • the drainage assembly (1) shown in Figure 6 comprises a first (2a) and a second (2b) drainage channel, analogous to Figure 1 .
  • the drainage channel comprises an upright part (3) and a base part (4), which is provided with a support base (5), analogous to the base part of Figure 1 .
  • the drainage channel is made out of extruded aluminum so that not only a sustainable product is obtained but also that the water can flow unhindered into the drainage channel.
  • the drainage channel is provided with a first (10) and a second (11) longitudinal end to which a first coupling part (30), a second coupling part (40) and an end part (7, 8) are arranged.
  • the first coupling part (30) is arranged to align and fix two consecutive drainage channels (2a, 2b) by means of elastic sealant, which is applied between the edges of the longitudinal ends (10,11) of the drainage channels (2a, 2b) and between the two coupling parts and the channels (2a, 2b).
  • the end parts (7) and (8) correspond to the end parts of respectively Figures 3 and 4 .
  • FIG 7 shows a perspective view of the first coupling part (30) as part of the drainage assembly according to the invention of Figure 6 .
  • the first coupling part has a contour that corresponds to the base part (5) of both drainage channels (2a, 2b).
  • the first coupling part is of such dimensions that it is shiftable over the drainage channel.
  • Said coupling part (30) relates to a flat plate or ground surface (31), which is provided on two opposite sides of an overhanging structure (32), which induces a slot (33) between the overhanging structure (32) and the ground surface (31).
  • elastic sealant is applied in said slots (33) in order to fix both drainage channels to each other and to achieve a watertight assembly (1).
  • Figure 8 shows a perspective view of an alternative preferred embodiment of a first coupling part (30) as part of the drainage assembly according to the invention.
  • the first coupling part (30) has a construction analogous to the coupling part of Figure 7 .
  • the coupling part (30) is different in the sense that the overhanging structures (32) are not provided over the entire width of the coupling part (30).
  • the overhanging structures (32) are provided from the one edge (34) of the ground surface (31), but do not continue up to the opposite edge (35).
  • the first coupling part (30) is, at the (34) side shifted, clamped and/or glued over the base part (5) of the first drainage channel (2a).
  • the second drainage channel (2b) can be shifted into the slots (33) on the opposite (and still free) side (35).
  • the second drainage channel (2b) can now be shifted at an angle different from 0° with respect to the ground surface, to ultimately be positioned in the extension of the first drainage channel (2a).
  • Figure 9 shows a perspective view of a second coupling part as part of the drainage assembly according to the invention of Figure 6 .
  • This relates to a rectangular block (40), wherein the lateral width substantially corresponds to the width between the parallel plates of the upright parts (3) of the drainage assembly (1).
  • said second coupling part can be clamped in both drainage channels (2a,2b) and, in that manner, couple and fix both channels.
  • some surfaces are curved.
  • 11.9 mm can then be selected with a tolerance of -0.05 mm and +0.10 mm.
  • FIG. 10 shows a perspective view of a drainage assembly (1) according to the invention in the mounted state, said assembly comprising a first and second coupling part (30,40) and an inspection hatch (50).
  • the drainage assembly (1) is at one end provided with an inspection hatch (50).
  • This relates to a ground cover which is suitable to provide access to the drainage of the assembly from the tiles or paving.
  • This bottom part comprises a base part (5) analogous to the drainage channels (2a, 2b) and is provided with an open and a closed side-part (54).
  • the upper part of said inspection hatch (50) comprises an inner cover (56) which rests within an outer cover (55).
  • Said inner cover (56) is suitable to be filled with terrain material, such as for example tiles, pavers, turf,...
  • a drain pipe (9) is arranged. The latter can be connected to the sewer system in order to drain the water collected by the drainage channels to the sewer system.
  • FIG 11 shows a cross-sectional view of a drainage channel (2) according to the invention.
  • Said channel (2) is analogous to that of preceding figures.
  • a pH-sleeve 60
  • This consists preferentially of plastic and is of such dimensions that, in cross-section, it is substantially equal to the cross-section of the interior of the channel, so that said pH-sleeve clamps little when arranging into the channel.
  • Said pH-sleeve protects the inner wall of the drainage channel (2) and thus provides a more sustainable drainage assembly (1).
  • aluminum drainage channels (2) are anodized to prevent oxidation.
  • the aluminum is provided with an oxide layer.
  • the oxide layer thickness obtained on the inner wall is typically smaller than at the outer wall. In other words, the inner wall of a drainage channel is less protected and thus less sustainable than the outer wall, thus more prone to oxidation and hence of inferior quality.
  • An aluminum drainage channel (2) provided with such a pH-sleeve is suitable to be applied in chlorine -rich environments, such as, for example, a swimming pool. This offers the advantage that a more economical and more sustainable drainage assembly can be achieved.
  • Said pH-sleeve is preferably, after manufacturing of the drainage channel, shifted into the channel.
  • the removal of the drainage slits (61), for example by a milling process, occurs preferably at the drainage channel where the pH-sleeve is shifted into. This enhances the construction and solidity of the pH-sleeve.

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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)
  • Bridges Or Land Bridges (AREA)
  • Sink And Installation For Waste Water (AREA)

Claims (15)

  1. Abflussvorrichtung (1) umfassend mindestens einen ersten und einen zweiten Abflusskanal (2a, 2b) und ein erstes Kopplungsteil (6, 30), wobei die Abflusskanäle (2a, 2b) jeweils mit einem ersten und einem zweiten Längsende (10, 11) versehen sind und wobei das erste Kupplungsteil (6, 30) vorgesehen ist, um an dem zweiten Längsende (11) des ersten Abflusskanals (2a) und dem ersten Längsende (10) des zweiten Abflusskanals (2b) angeordnet zu sein, um der erste und zweite Abflusskanal (2a, 2b) miteinander zu verbinden, und wobei das erste Kupplungsteil (6, 30) über das erste und zweite Längsende (10, 11) entlang der Längsrichtung der beiden Abflusskanäle (2a, 2b) verschiebbar ist und dass das erste Kopplungsteil (6,30) eine Querbewegung des ersten und zweiten Längsendes (10,11) des jeweiligen zweiten und ersten Abflusskanals (2b, 2a) behindert, dadurch gekennzeichnet, dass der Abflusskanal (2a, 2b) und das erste Kupplungsteil (6, 30) einen Trägerbasis umfassen Sockel und dass die Trägerbasis des ersten Kupplungsteils (6, 30) über die Trägerbasis (5) des Abflusskanals (2a, 2b) verschiebbar ist, und wobei die Trägerbasis des Abflusskanals (2a, 2b) und die Trägerbasis des ersten Kupplungsteils (6, 30) beide seitliche horizontal vorstehenden Leisten entlang der Längsrichtung der Abflusskanäle (2a, 2b) umfassen, wobei die vorstehenden Leisten der Trägerbasis des ersten Kupplungsteils (6, 30) über die vorstehenden Leisten der Tragbasis des Abflusskanals (2a, 2b) verschiebbar sind.
  2. Abflussvorrichtung (1) nach Anspruch 1, dadurch gekennzeichnet, dass die Trägerbasis des ersten Kupplungsteils (6, 30) eine ebene Platte oder Bodenfläche (31) umfasst, welche von einer überhängenden Struktur (32) auf zwei gegenüberliegenden Seiten versehen ist, wobei sich die überhängenden Strukturen (32) in dem gleichen Halbraum der zwei Halbräume, die durch die planare Fortsetzung der ebenen Platte oder Bodenfläche (31) voneinander getrennt sind, befinden.
  3. Abflussvorrichtung (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der erste und der zweite Abflusskanal (2a, 2b) mit einem aufrechten Teil (3) versehen sind und dass die Abflussvorrichtung ein zweites Kopplungsteil (40) umfasst, das geeignet ist, um an dem aufrechten Teil (3) des zweiten Längsendes (11) des ersten Abflusskanals (2a) und an dem aufrechten Teil (3) des ersten Längsendes (10) des zweiten Abflusskanals (2b) angeordnet zu werden, wobei es sich durch Festklemmen mit diesen aufrechten Teilen (3) verbindet, um die aufrechten Teile (3) des ersten und zweiten Abflusskanals (2a, 2b) zu fixieren, vorzugsweise in einer Linie miteinander und wenn sie auf dem ersten und zweiten Längsende (10, 11) positioniert sind, durch Festklemmen damit verbindet, um das aufrechte Teil (3) des ersten und zweiten Abflusskanals (2a, 2b), vorzugsweise in einer Linie miteinander, zu fixieren.
  4. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass an dem zweiten Längsende (11) des ersten Abflusskanals (2a) und/oder an dem ersten Längsende (10) des zweiten Abflusskanals (2b) elastischen Dichtstoff aufgebracht ist, um eine wasserdichte Abdichtung zwischen dem ersten und zweiten Abflusskanal (2a, 2b) zu erhalten.
  5. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass das erste Kupplungsteil (6, 30) und/oder das zweite Kupplungsteil (40) aus Kunststoff besteht, vorzugsweise Polyethylen hoher Dichte oder PVC, besonders bevorzugt Kunststoff mit einer Härte, die zwischen 40 und 45 Shore D liegt.
  6. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die Abflusskanäle (2a, 2b) aus Aluminium, vorzugsweise eloxiertem Aluminium, bestehen.
  7. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass an einem oder zwei Enden der Kombination von Abflusskanälen (2a, 2b) eine Inspektionsluke (50) vorgesehen ist, gegebenenfalls wobei eine Abflussleitung (9) an einer Außenwand der Inspektionsluke (50) angeordnet ist.
  8. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass sie ferner ein Endteil (7, 8) umfasst, vorgesehen um an einem Längsende (10, 11) angeordnet zu werden, um dieses Längsende (10, 11) abzudichten, wobei das Endteil (7, 8) aus Kunststoff hergestellt ist mit einer solchen Widerstandsfähigkeit, dass es über das erste und zweite Längsende (10, 11) verschiebbar ist und wenn es auf dem ersten und zweiten Längsende (10, 11) positioniert ist, durch Festklemmen damit verbindet, um eine wasserdichte Abdichtung zwischen dem Abflusskanal (2a, 2b) und dem Endteil (7, 8) zu erhalten, und wobei das Endteil (7) eine Trägerbasis umfasst, die über die Trägerbasis (5) des Abflusskanals (2a, 2b) verschiebbar ist.
  9. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass das erste Kupplungsteil (6, 30), welches an dem ersten und zweiten Längsende (10, 11) positioniert ist, durch Festklemmen damit verbindet, um das erste und zweite Längsende (10, 11), vorzugsweise in einer Linie miteinander, zu fixieren.
  10. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass das erste Kupplungsteil (6, 30) eine Innenkante umfasst, von der eine Rippe (16) herausragt, die derart angeordnet ist, dass sie sich auf Kupplung des ersten und der zweiten Abflusskanals (2a, 2b) zwischen den Längsenden (10, 11) befindet.
  11. Abflussvorrichtung (1) nach Anspruch 10, dadurch gekennzeichnet, dass die Rippe (16) sich weiter über eine Oberkante des ersten Kupplungsteils (6, 5, 30) erstreckt.
  12. Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, dass ein oder mehrere Abflusskanäle (2a, 2b) eine pH-Hülle umfassen, wobei die pH-Hülle die Innenwand der Abflusskanäle (2a, 2b) bedeckt.
  13. Abflussvorrichtung (1) nach einem der vorhergehenden Ansprüche 1 bis 12, wobei der Abflusskanal eine Inspektionsluke (50) umfasst, durch welche Inspektionsluke (50) Zugang zu einem Innenraum des Abflusskanals geschaffen wird.
  14. Kit einer oder mehreren Abflussvorrichtungen (1) nach einem der vorhergehenden Ansprüche 1 bis 13.
  15. Verfahren zum Platzieren einer Abflussvorrichtung (1) nach einem der Ansprüche 1 bis 13, umfassend die folgenden Schritte:
    a. optionales Aufbringen eines elastischen Dichtstoffes auf das zweite Längsende (11) des ersten Abflusskanals (2a) und/oder auf das erste Längsende (10) des zweiten Abflusskanals (2b);
    b. optionales Aufbringen eines elastischen Dichtstoffes auf das erste Kupplungsteil (6, 30);
    c. Verschieben des ersten Kupplungsteils (6, 30) über das zweite Längsende (11) des ersten Abflusskanals (2a) und an das erste Längsende (10) des zweiten Abflusskanals (2b), um die Abflusskanäle (2a, 2b) aufeinander zu zu verschieben und um sie zu koppeln;
    d. optionales Anordnen des zweiten Kupplungsteils (40) zwischen den beiden Abflusskanälen (2a, 2b).
    dadurch gekennzeichnet, dass das Verfahren folgenden Schritt umfasst:
    e. Verschieben der Trägerbasis des ersten Kupplungsteils (6, 30) jeweils über das zweite Längsende (11) der Trägerbasis (5) des ersten Abflusskanals (2a) und über das erste Längsende (10) der Trägerbasis (5) des zweiten Abflusskanals (2b), und dabei die seitlichen horizontal vorstehenden Leisten der Trägerbasis des ersten Kupplungsteils (6, 30) über die seitlichen horizontal vorstehenden Leisten der Trägerbasis des Abflusskanals (2a, 2b) verschiebend.
EP14160737.4A 2013-03-19 2014-03-19 Abflussvorrichtung, Kupplungsteil, Endteil, Kit und Verfahren zu ihrer Platzierung Active EP2781665B1 (de)

Applications Claiming Priority (1)

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BE201300178A BE1020885A5 (nl) 2013-03-19 2013-03-19 Afwateringssamenstel, koppelstuk, eindstuk, kit en werkwijze voor het plaatsen hiervan.

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EP2781665A1 EP2781665A1 (de) 2014-09-24
EP2781665B1 true EP2781665B1 (de) 2018-02-21

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CN109281375B (zh) * 2018-10-09 2023-11-24 安徽海米新材料有限公司 一种基于hdpe成品排水沟的四通连接件

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FR2791714B1 (fr) * 1999-03-31 2001-04-20 Nicoll Raccords Plastiques Procede de raccordement d'elements de caniveau extrude annele a double paroi et pieces de jonction
ITVR20030050U1 (it) * 2003-10-15 2005-04-16 Dakota Metal Plastic Works Llc Canalina componibile provvista di mezzi che consentono l'aggancio e lo sgancio rapido di ulteriori componenti che la completano
DE102005020753A1 (de) * 2005-05-02 2006-11-09 Mea Meisinger Ag Entwässerungsrinne aus Rinnenelementen
GB2448664A (en) * 2007-04-25 2008-10-29 Iain Bomphray Slot drain
BE1020104A3 (nl) * 2010-11-10 2013-05-07 Vroe D V S Metaal De Afwateringssamenstel.

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