EP3425138B1 - Dispositif de captage pour liquide de nettoyage de façade - Google Patents

Dispositif de captage pour liquide de nettoyage de façade Download PDF

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Publication number
EP3425138B1
EP3425138B1 EP18176399.6A EP18176399A EP3425138B1 EP 3425138 B1 EP3425138 B1 EP 3425138B1 EP 18176399 A EP18176399 A EP 18176399A EP 3425138 B1 EP3425138 B1 EP 3425138B1
Authority
EP
European Patent Office
Prior art keywords
collecting
mat
catching device
cleaning liquid
guide surface
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP18176399.6A
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German (de)
English (en)
Other versions
EP3425138A1 (fr
Inventor
Sebastian Hermes
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.)
Hermes Fassadenreinigung GmbH
Original Assignee
Hermes Fassadenreinigung GmbH
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 Hermes Fassadenreinigung GmbH filed Critical Hermes Fassadenreinigung GmbH
Publication of EP3425138A1 publication Critical patent/EP3425138A1/fr
Application granted granted Critical
Publication of EP3425138B1 publication Critical patent/EP3425138B1/fr
Active legal-status Critical Current
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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G23/00Working measures on existing buildings
    • E04G23/002Arrangements for cleaning building facades
    • E04G23/004Arrangements for cleaning building facades with arrangements for collecting waste water or cleaning products
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B17/00Methods preventing fouling
    • B08B17/02Preventing deposition of fouling or of dust
    • B08B17/025Prevention of fouling with liquids by means of devices for containing or collecting said liquids

Definitions

  • the invention relates to a collecting device for cleaning liquid obtained when cleaning facades and a system with such a collecting device.
  • a collecting device for cleaning fluid which arises during the cleaning of building facades. Foils are placed between the building wall and horizontal scaffolding poles to form a sump.
  • a collecting mat used by the applicant is known, one longitudinal edge of which is bent up and placed on the building facade, and the opposite longitudinal edge of which is bent up to form a guide surface by brackets which are applied externally. Furthermore, a flat suction mat is used in this device for suctioning off the resulting liquid. A description of this collecting mat can be found in the utility model AT 15 000 U2 , which is fully incorporated by reference into the present application.
  • the document DE 3440461 also discloses a catcher.
  • the collecting device for collecting cleaning liquid resulting from the cleaning of facades contains a collecting mat as an essential element.
  • One longitudinal edge of the collecting mat is bent or bendable for contact with a facade, while the other longitudinal edge is bent or bendable to form a guide surface for collected cleaning liquid.
  • the collecting mat thus forms a gutter that collects the cleaning fluid flowing down from the wall at the foot of a building wall.
  • the invention defines a collecting device with a traction means, which can exert an inward force (ie pointing towards the center of the mat) on the guide surface.
  • the second longitudinal edge of the collecting mat can thus be bent up to the guide surface by this tensile force.
  • the use of the traction means has various advantages. This eliminates the need for protruding elements (clips) and a strong kink load on the collecting mat.
  • the traction means can be constructed from corrosion-resistant materials, while clamps usually have to contain steel springs, which rust over time.
  • traction means are attached at suitable intervals along the longitudinal extent of the collecting mat in order to bend the guide surface evenly and reliably.
  • the traction means can comprise a flexible rope, a flexible band, a rod and / or a chain.
  • a traction device as an annular band or rope can wrap around the entire collecting mat and thus bend into a gutter without being firmly connected to the collecting mat at a certain point.
  • At least one end of the traction means is connected to the collecting mat or a point of the collecting mat (tensile-resistant).
  • This connection can be permanent, e.g. by gluing, by welding, by knots, by sewing or the like.
  • the connection can also be reversible, so that the traction means can be connected to the collecting mat in a simple manner (typically without a tool) or can be detached therefrom again.
  • relaxation can be ensured, so that the collecting mat takes on a flat shape and can be easily transported. Only when the detachable end of the traction device is connected to the point of the collecting mat provided for this purpose does the tractive force exert and thus the guide surface bend open.
  • the traction means is typically connected to the collecting mat (detachable or fixed) at both ends. One end is attached to the guide surface and the other end is attached to it, with a central part of the collecting mat.
  • both ends of the traction means are detachably connected to the collecting mat.
  • one end of the traction means is detachable and the other is permanently connected to the collecting mat.
  • both ends of the traction means can also be firmly connected to the collecting mat.
  • the collecting mat will then be permanently in a bent state of the guide surface.
  • such a traction means can also be variable in length, for example in the manner of a belt and / or with the formation of a loop, so that by setting a corresponding length the collecting mat can be changed between a more or less flat and a bent state.
  • the traction means can also consist of at least two parts which can be connected to one another, the non-free ends of these parts being firmly connected to the collecting mat. The free ends can then be connected to one another, for example by means of Velcro connectors, hooks and eyes, a knot or the like, so that the guide surface can be easily bent open by making this connection.
  • the releasable connection of one end of the traction means to the collecting mat can be produced, for example, by means of a Velcro fastener, corresponding complementary components of the Velcro fastener being arranged on the one hand at the associated end of the traction means and on the intended fastening point of the trapping mat on the other hand.
  • the traction means can be connected to the collecting mat via a button.
  • a button can be, for example, a push button of the type known from the prior art.
  • the button can also be formed by a (e.g. spherical, disc or rod-shaped) thickening at the end of the traction means, which has to be passed through an associated slot or hole in the collecting mat.
  • a button on the collecting mat and the slot or hole on the traction means can also be provided.
  • the collecting device is also optionally characterized in that the collecting mat has an abrasion-resistant surface at least in places.
  • the outer surface when in use can be resistant to abrasion or the entire surface of the collecting mat.
  • the entire collecting mat can be resistant to abrasion throughout.
  • Known collecting mats consist of a black rubber material, which in practice proves not to be resistant to fetching. Therefore, it can happen that after using the collecting mat on the surface or on a facade, soiling from abraded material occurs. These problems are avoided in that, as described above, the collecting mat has an abrasion-resistant surface, at least in places.
  • the surface of the collecting mat can consist in particular of or contain one of the following materials: styrene-butadiene rubber (SBR), chloroprene rubber (CR), nitrile rubber (NBR), and / or materials with at least as high abrasion resistance as the examples mentioned .
  • SBR styrene-butadiene rubber
  • CR chloroprene rubber
  • NBR nitrile rubber
  • the abrasion resistance can also be achieved by packing a conventional mat in a covering, e.g. a plastic bag.
  • the system described has the advantage that the hose for draining cleaning liquid is connected or fixed at a point above the guide surface.
  • the hose does not therefore burden the guide surface and does not press it down.
  • the suction chamber is preferably surrounded to the surroundings by a retaining device which prevents larger solid foreign objects from entering.
  • the retention device can in particular be in the form of a sieve or a filter.
  • the hole size of the sieve or filter should be selected according to the size of the foreign bodies to be retained. Typically, the hole size is less than about 10 mm, or less than about 5 mm, or less than about 1 mm, or less than about 500 ⁇ m, or less than about 400 ⁇ m, or less than about 300 ⁇ m , approx. 200 ⁇ m. Furthermore, the hole size is preferably larger than approximately 100 ⁇ m or as one of the numerical values mentioned above for preferred maximum hole sizes.
  • the retention device prevents problematic foreign bodies from getting into the suction chamber and thus into components of the suction element located behind it.
  • a restraint can additionally or alternatively at any point in Transition line may be provided, preferably at its connection to the suction chamber.
  • the suction chamber can preferably be formed in the volume between the legs of the suction element.
  • the suction element will usually have a compact shape such as that of a cuboid and / or circular cylinder, with three or more legs being distributed along the periphery of the underside of the suction element in order to support the body of the suction element at a predetermined distance from the ground. The distance between the base and the body of the suction element generated by the supporting legs then forms at least part of the suction chamber into which liquid to be pumped out can enter from the environment.
  • the liquid outlet of the suction element is preferably arranged at a distance above the suction chamber, this distance optionally being more than 10 cm, or more than 20 cm, or more than 30 cm, or more than 50 cm.
  • the fill level probe of the suction element can be set up to detect when a first fill level is exceeded. This can be used to control an assigned pump depending on the fill level.
  • the fill level probe is additionally set up to detect a second fill level which is lower than the first fill level.
  • a pump can then be switched on when the first fill level is exceeded and switched off again when the second fill level is undershot, which prevents the pump from running unintentionally.
  • the fill level probe is set up to detect a third fill level, which is preferably lower than the second fill level.
  • the third level can For example, correspond to a level at which a pump should not be switched on, even manually, if possible. The fact that the level falls below the third level can be displayed to the user, so that the user is warned before the pump is switched on, or the pump can even be actively switched off by a controller.
  • the collecting device and the suction element advantageously complement one another to form a system for collecting and subsequently discharging cleaning fluid.
  • the system described typically comprises at least one pump for pumping liquid out of the suction element.
  • This can optionally be integrated in the suction element or be located at an external location in the lines connected to the suction element.
  • the system can comprise a controller for controlling the pump as a function of the signal from the level probe.
  • the controller can be constructed in various ways, for example in the form of a mechanism. Typically, however, the controller will be implemented electrically or electronically using analog hardware and / or digital hardware with suitable control software.
  • the controller is preferably set up to switch the pump when a first predetermined fill level is exceeded switch on and switch off when the level falls below a second predetermined level, the second level being lower than the first level. In this way, it is possible to regulate the fill level in the vicinity of the suction element within a predetermined fill level interval. Switching off the pump when the level falls below a second level ensures that the pump does not run dry, which would lead to malfunctions.
  • a collecting device in accordance with the DE10 2017 115 151 are used, which was explained in more detail in the first part of the application.
  • Figure 1 is shown in a schematic side view or a cross section of a system for collecting facade cleaning liquid, which contains a collecting device 1 with a collecting mat 10 and a suction element 20.
  • the collecting mat 10 consists of a web or strip-shaped flexible material with a first longitudinal edge 11, a central strip 12, and one second longitudinal edge 13.
  • the collecting mat 10 is positioned such that the first longitudinal edge 11 is bent upwards and thus lies against the facade or the base of a wall W to be cleaned.
  • the transition between the wall and the longitudinal edge 11 can be sealed by a joint compound (not shown) which is released by the cleaning agent with a time delay during operation.
  • the outer longitudinal edge 13 of the collecting mat 10 In order to form a longitudinal channel for collecting cleaning liquid running down the wall W, the outer longitudinal edge 13 of the collecting mat 10 must also be bent upwards to form a guide surface. This bending is done by one or more traction means 15 which are distributed along the longitudinal direction and through which one inward (ie to the right in Figure 1 ) directed tensile force F can be exerted on the guide surface 13.
  • the traction means is a flexible band or rope 15, which on the one hand has a first end at a first coupling point 16 on the guide surface 13 and on the other hand has a second end at a second coupling point 17 on the first longitudinal edge 11 or - preferably - on the median strip 12 attached.
  • a rigid element such as a rod could also be used.
  • the traction means 15 can optionally be permanently connected to the collecting mat 10 with its two ends in coupling points 16 and 17.
  • the traction means in this case can be variable in length and / or consist of two parts which can be connected to one another (e.g. hooked).
  • the traction means 15 is preferably detachably connected to the collecting mat 10 at at least one end, for example at the coupling point 16 towards the guide surface 13.
  • FIG. 1 also shows as a second component of the system a suction element 20, via which the cleaning liquid collecting in the collecting mat 10 can be pumped out.
  • Suction element 20 may itself contain an active pump, or such a pump may be remote at the other end of the Suction hose 23 may be arranged.
  • the suction element 20 shown also has a suction body 21, which is located at the lowest point and provides for absorption of the cleaning liquid through openings there. This is then guided within the suction element 20 to a connecting piece 22 to which the hose 23 already mentioned is connected.
  • the connecting piece 22 is advantageously arranged at a vertical height above the upper edge of the guide surface 13, so that the hose 23 connected there does not touch the guide surface as far as possible or at least does not load and depress it with a high weight.
  • Figure 2 schematically shows a cross section through a first embodiment of a releasable coupling point 16a between the traction means 15 and the guide surface 13.
  • the traction means is formed by a rope 15, at the end of which there is a button or toggle 15a.
  • the guide surface 13 has a slot 13a (or a hole) through which the toggle 15a can be inserted by a user, the toggle 15a lying transversely on the back of the slot 13a and thus not simply sliding back again.
  • An inward force F can then be exerted on the guide surface 13 via the traction means 15 in order to bend it up as desired.
  • the toggle 15a can also be attached to the traction means 15 in a variable position, for example in the form of a clamp.
  • the traction means 15 can be pulled out more or less through the hole 13a as required and then fixed.
  • FIG 3 shows an alternative embodiment of a coupling point 16b, in which the complementary components 13b, 15b of a Velcro fastener are located at the end of the traction means 15 and at the upper outer edge of the guide surface 13.
  • the end of the traction device 15 can therefore be fixed in a simple manner to the Velcro 13b of the collecting mat.
  • FIGS 4 and 5 show a second embodiment of a system according to the invention, wherein the collecting device 1 with the Collection mat 10 is substantially similar to the first embodiment ( Figures 1 to 3 ) and is therefore not explained in more detail below.
  • the suction element 20 preferably has a compact, stable shape, such as the shape of a cuboid or block shown.
  • its body can be made in one piece from a waterproof material. In particular, it can be produced from a plastic block by milling.
  • a suction chamber 24 is thus formed between the legs 21. As from the sectional view of Figure 5 is recognizable, this typically extends a little further into the interior of the suction element. There, it generally narrows to a transition line 27, which leads to a liquid outlet 22 on the upper side of the suction element 20. As in the first embodiment, a hose 23 can be connected to this outlet, which in turn leads to an external pump P. As already explained, the liquid outlet 22 is located at a distance from the substrate above the edges of the collecting mat 10, so that the connected hose 23 does not rest on these edges and cannot press them down.
  • the suction chamber 24 is preferably surrounded by a sieve 25.
  • the screen 25 can extend as shown along the underside of the suction element 20 and a bit along the vertical height around its side walls. Such an arrangement of the screen has the advantage that it can be easily cleaned and / or removed. Additionally or alternatively, for example, could also be at the beginning or at the end a suitable restraint device can be provided for the internal transition line 27.
  • the hole size of the sieve 25 can be, for example, in a range of approximately 400 ⁇ m.
  • the sieve 25 can preferably consist of stainless steel or another corrosion-resistant material.
  • the suction element 20 is also equipped with a level probe 26, by means of which the liquid level in the suction chamber can be detected. Such detection can be carried out in any known manner, for example by means of an electrical conductivity measurement.
  • the fill level probe 26 can contain a single sensor, with which the exceeding of a single fill level can be detected.
  • the level probe 26 contains two or three (or more) individual sensors, which are arranged at different heights for the detection of different liquid levels. In the example shown, it is e.g. a three-point probe with which a first, highest level a, a second, middle level b, and a third, lowest level c can be detected.
  • the signals emitted by the level probe 26 indicate whether the fluid level is above the level of sensors c, b and / or a, so that a total of four fluid levels can be distinguished (from "lower than c" to "higher than a").
  • the signals emitted by the level probe 26 can be passed on to an external (alternatively also internal) controller R, which uses them to control the pump P.
  • the pump P can be switched on when an excess of the first, highest fill level a is detected, and can be switched off again when a subsequent drop below the second, medium fill level b is detected. This prevents the pump P from running dry.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Cleaning In General (AREA)

Claims (9)

  1. Dispositif de captage (1) pour recueillir le liquide de nettoyage se produisant lors du nettoyage de façades, avec une natte collectrice flexible (10), dont un bord longitudinal (11) est plié ou pliable vers le haut pour le contact avec une façade (W) et dont l'autre bord longitudinal est plié ou pliable vers le haut pour former une surface de guidage (13) pour le liquide de nettoyage,
    caractérisé en ce qu'il a un moyen de traction (15) par lequel une force de traction (F) dirigée vers l'intérieur peut être exercée sur la surface de guidage (13) afin de la plier, en formant un canal entre les bords longitudinaux (11, 13), une extrémité du moyen de traction étant connectée de manière amovible ou reliée fermement à la surface de guidage, et l'autre extrémité éloignée de celle-ci étant connectée de manière amovible ou reliée fermement à une partie centrale de la natte collectrice.
  2. Dispositif de captage (1) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que le moyen de traction (15) comprend une corde ou un ruban flexible.
  3. Dispositif de captage (1) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que le moyen de traction (15) est connecté à au moins une extrémité (16) de manière amovible à la natte collectrice (10).
  4. Dispositif de captage (1) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que le moyen de traction (15) est connecté à la natte collectrice (10) par une fermeture Velcro® (16b) et/ou par un bouton (15a).
  5. Dispositif de captage (1) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que le moyen de traction (15) est relié en permanence à au moins une extrémité (17) à la natte collectrice (10).
  6. Dispositif de captage (1) selon au moins l'une quelconque des revendications précédentes,
    caractérisé en ce que la natte collectrice (10) a une surface résistante à l'abrasion au moins par endroits.
  7. Dispositif de captage (1) selon la revendication 6,
    caractérisé en ce que la surface contient ou est constituée d'au moins un des matériaux suivants: caoutchouc styrène-butadiène (SBR), caoutchouc de chlorophrène (CR) ou caoutchouc nitrile (NBR).
  8. Installation pour recueillir le liquide de nettoyage se produisant lors du nettoyage de façades, contenante:
    - un dispositif de captage (1) pour recueillir le liquide de nettoyage se produisant lors du nettoyage de façades selon au moins l'une des revendications 1 à 7, avec une natte collectrice (10), dont un bord longitudinal (11) est plié ou pliable vers le haut pour le contact avec une façade (W) et dont l'autre bord longitudinal est plié ou pliable vers le haut pour former une surface de guidage (13) pour le liquide de nettoyage,
    - un élément d'aspiration (20) avec un corps d'aspiration (21) qui peut être placé sur la natte collectrice (10) et avec un manchon de raccordement (22) pour un tuyau (23), le manchon de raccordement (22) se trouvant au-dessus de la surface de guidage (13) en état de fonctionnement.
  9. Installation pour recueillir le liquide de nettoyage se produisant lors du nettoyage de façades, avec un dispositif de captage (1) selon au moins l'une des revendications 1 à 7 et avec un élément d'aspiration (20) contenant:
    - une chambre d'aspiration (24) au fond;
    - une sortie de liquide (22);
    - une conduite de transition (27) disposée entre la chambre d'aspiration (24) et la sortie du liquide (22);
    - une sonde de niveau (26) pour mesurer le niveau de liquide dans la chambre d'aspiration (24).
EP18176399.6A 2017-07-06 2018-06-07 Dispositif de captage pour liquide de nettoyage de façade Active EP3425138B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102017115151 2017-07-06

Publications (2)

Publication Number Publication Date
EP3425138A1 EP3425138A1 (fr) 2019-01-09
EP3425138B1 true EP3425138B1 (fr) 2020-08-05

Family

ID=62563037

Family Applications (1)

Application Number Title Priority Date Filing Date
EP18176399.6A Active EP3425138B1 (fr) 2017-07-06 2018-06-07 Dispositif de captage pour liquide de nettoyage de façade

Country Status (3)

Country Link
EP (1) EP3425138B1 (fr)
DE (3) DE102018113568A1 (fr)
DK (1) DK3425138T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110090827A (zh) * 2019-06-06 2019-08-06 扬州市嵘盛电缆材料有限公司 一种电缆辅料加工用吸屑除杂装置

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3440461C1 (de) * 1984-11-06 1986-01-16 Alfred Kärcher GmbH & Co, 7057 Winnenden Vorrichtung zum Auffangen von zur Gebäudereinigung verwendeten Reinigungschemikalien
EP0370525B1 (fr) * 1988-11-25 1992-07-15 HPS-Hildebrandt Gesellschaft für Kunststoffverarbeitung mbH & Co. KG Dispositif pour capter les eaux usées
DE4029757A1 (de) 1990-09-20 1992-03-26 Peter Wekemann Auffangvorrichtung fuer schmutzwasser
CA2805492A1 (fr) * 2012-02-10 2013-08-10 Sherry Harr Dispositifs de confinement et procedes pour contenir et eliminer des liquides
US9259769B1 (en) * 2015-04-18 2016-02-16 Timothy Kane Apparatus and method for collection and disposal of cleaning waste-water and debris from air conditioners
AT15000U3 (de) 2016-07-06 2017-09-15 Kantor Alfred Auffangrinne zum Reinigen von Gebäudefassaden

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
DE202018006701U1 (de) 2022-04-04
DE102018113568A1 (de) 2019-01-10
DE102018114951A1 (de) 2019-01-10
EP3425138A1 (fr) 2019-01-09
DK3425138T3 (da) 2020-11-09

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