EP3626905B1 - Système de nettoyage de toit en verre - Google Patents

Système de nettoyage de toit en verre Download PDF

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Publication number
EP3626905B1
EP3626905B1 EP19197960.8A EP19197960A EP3626905B1 EP 3626905 B1 EP3626905 B1 EP 3626905B1 EP 19197960 A EP19197960 A EP 19197960A EP 3626905 B1 EP3626905 B1 EP 3626905B1
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EP
European Patent Office
Prior art keywords
cleaning
profile
cleaning system
glass roof
nozzles
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Application number
EP19197960.8A
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German (de)
English (en)
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EP3626905A1 (fr
Inventor
Wolfram Beck
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Individual
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Individual
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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D15/00Apparatus or tools for roof working
    • E04D15/006Apparatus or tools for roof working for cleaning the roof
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L1/00Cleaning windows
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/38Machines, specially adapted for cleaning walls, ceilings, roofs, or the like
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/40Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
    • A47L11/408Means for supplying cleaning or surface treating agents
    • A47L11/4088Supply pumps; Spraying devices; Supply conduits
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B5/00Cleaning by methods involving the use of air flow or gas flow
    • B08B5/02Cleaning by the force of jets, e.g. blowing-out cavities
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/02Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant
    • E04D3/06Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor

Definitions

  • the invention relates to an automated glass roof cleaning system, in particular a conservatory glass roof cleaning system, with several cleaning nozzles.
  • the invention relates to a winter garden, summer garden or patio canopy glass roof with several uprights, several side support profiles and / or central support profiles, at least one wall connection profile, at least one eaves support profile, several glass panels and an automated glass roof cleaning system.
  • the invention relates to a method for cleaning a glass roof, in particular a conservatory glass roof, with an automated glass roof cleaning system, in particular conservatory glass roof cleaning system, with a plurality of cleaning nozzles.
  • Flat glass roofs get dirty very quickly. This applies in particular to winter gardens on private, industrial or public buildings, which mostly have flat roofs with a not too steep slope. Such flat roofs are quickly contaminated by leaves, dust and pollen. In particular, linden trees, for example, release a sticky sap that covers the glass roof like an oil film. If it is not cleaned regularly, every winter garden roof will soon have a green film of dirt that impairs the view.
  • the pressurized cleaning medium is supplied to the cleaning nozzles via a flexible supply line from a stationary device in which the cleaning medium is pressurized.
  • the pressure of the cleaning medium is preferably adjustable, depending on the degree of soiling of the building surface to be cleaned Further cleaning systems are also off US 2007/205308 A1 , CN 205476131 U and DE 202006005830 U1 known.
  • From the DE 10 2006 059 961 A1 is a permanently installed automatic cleaning system for horizontal outer window surfaces, in particular those of winter gardens and skylights, known, with an automatic system for each window strip, the cleaning elements consist of a fixed Besenteil, a fixed sponge and a rubber lip, which are moved individually and through a Carry-along system can be brought into working position one after the other.
  • a four-part, rotatable cleaning unit with the three cleaning elements and an empty space for moving back the rubber lip and the broom (to remove leaves or snow), which should only move downwards in the working position, can be used.
  • These cleaning elements are housed in a protective box on the upper window frame or on the house wall.
  • the lateral guide rails which are doubled in the case of adjacent panes, are located along the window stiles, so that the system can be formed over several tracks. Using a motor-driven push or pull system (e.g. push chain), these guide rails enable the cleaning elements to move up and down on the glass pane.
  • a motor-driven push or pull system e.g. push chain
  • a window cleaning device for cleaning the winter garden glazing is arranged in the area of the drop profile, which can in particular comprise a stripping device acting on the upper side of the winter garden glazing as well as nozzles for dispensing water.
  • the nozzles of the windshield cleaning device can advantageously be supplied with water via a pump, elastic lines which can be rolled up in the region of the roller tube can be provided for the water supply to the nozzles.
  • the pump can be activated as a function of the movement of the drop profile or can be switched on or off manually.
  • the stripping device can be lowered onto the surface of the winter garden glazing or can be lifted off from it, with this movement can be controlled manually or by means of an electronic control device.
  • the lowering and raising can be electronically controlled after a number of activations of the conservatory awning.
  • the present invention is based on the object of creating an automated cleaning system for glass roofs, in particular conservatory glass roofs, which replaces laborious and time-consuming manual cleaning and which also requires the least technical effort and no moving parts, and which is also easy as a result mounted and can be offered accordingly inexpensive, and is subsequently less prone to failure and maintenance-intensive.
  • a system which, with its subtle construction, is not perceived as being visually disruptive, and which can also be easily and quickly retrofitted to existing winter gardens.
  • the glass roof cleaning system has a modular structure that includes individual cleaning system modules, each cleaning system module each comprising an attachment profile, a line including brackets, several cleaning nozzles and a cover profile.
  • This modular structure of the glass roof cleaning system makes it possible to use the individual cleaning system modules via the attachment profile and the associated differently designed adapter profiles for a wide variety of conservatory variants with a wide variety of support profiles, and also to retrofit existing conservatory systems.
  • liquid such as water or a cleaning agent-water mixture can simply be applied to the glass surfaces, which flows off according to the angle of inclination of these. This also results in the additional effect of cooling the glass roof and thus the space below.
  • At least one cleaning nozzle is attached via at least one pivotable mounting bracket.
  • the cleaning nozzle and thus the spray direction can easily be adjusted using the mounting bracket.
  • the mounting clamp can be arranged, for example, on side support profiles, pipelines or similar profiles. In particular if the lines are designed as low-pressure lines, assembly using mounting clamps is advantageous.
  • attachment profile and the cover profile are detachably connected to one another via a snap-in connection, and / or the cleaning nozzles via the pivotable ones Mounting clamps are changeable.
  • high-pressure lines are understood to mean lines which carry liquids with increased pressure, that is to say above the usual pressure ratios of private water households.
  • the usual water pressure in households is between 1 and 6 bar, sometimes up to 10 bar.
  • the overpressure is usually provided by a compressor, which can be a fixed component of the cleaning system or which can only be connected shortly before commissioning. This enables, for example, the use of compressors from high-pressure cleaners that can otherwise also be used individually, thus reducing the costs for the cleaning system.
  • High-pressure lines can be made of stainless steel parts welded together or other pressure-resistant materials.
  • low-pressure lines mean lines which can lead water directly from private water lines, i.e. can withstand the pressure ratios of up to 10 bar that are customary there.
  • Low pressure lines are typically made of plastic.
  • the cleaning nozzles In order to reduce the maintenance effort even further, it can be advantageous to design the cleaning nozzles as self-cleaning high-pressure spray nozzles which can be blown out by applying compressed air.
  • a regulating or control device is arranged by means of which the time and quantity of compressed air, water-compressed air mixture, water and / or cleaning agent can be controlled.
  • This has the advantage over predetermined switching programs (e.g. 1. Pre-cleaning, for example to blow away leaves and dust with compressed air or a water-compressed air mixture; 2. Cleaning with cleaning agent to remove stronger and dried-on dirt; 3. Post-cleaning with pure water to remove the cleaning agent rinse; 4. dry by blowing compressed air in to avoid water stains) to achieve a complete and thorough cleaning of the outer glass roof surfaces.
  • sensors are arranged in the attachment profile of the individual cleaning system modules.
  • the simple structure of the automated glass roof cleaning system according to the invention can be advantageously mounted or integrated, particularly in a winter garden, summer garden or terrace roofing glass roof with several uprights, several side support profiles or central support profiles, at least one wall connection profile, at least one eaves support profile and with several glass panels.
  • the cleaning system modules are arranged on one or more side support profiles, on one or more central support profiles, along a wall connection profile and along an eaves support profile. This has the advantage that the entire outside glass surface of the winter garden is optimally cleaned.
  • the attachment profile of the respective cleaning system modules is detachably connected to one another with an adapter profile, in particular via a latching connection, and if the profile cross-section of the adapter profile for existing conservatory support profile system variants, in particular the Weinor profile system and / or the TS aluminum Profile system, is adapted, and if in turn the adapter profile is detachably connected, in particular screwed, to the side support profile or central support profile.
  • This makes it possible in an advantageous manner that the attachment profile and the associated differently configured adapter profiles for the most varied of winter garden variants Can be used with a wide variety of support profiles (such as the Weinor profile system and the TS aluminum profile system) and can therefore also be retrofitted to existing winter garden systems.
  • attachment profile - the cleaning system modules for the side and center supports - into the side support profile or center support profile. so that the attachment profile and the side support profile or center support profile is in one piece and preferably consists of an aluminum profile, in particular an extruded aluminum profile.
  • One embodiment of the invention provides that shading profile rail adapters are arranged on at least two cleaning system modules for the side and center supports of the glass roof, and that the shading profile rail adapters are mounted laterally on the attachment profiles and cover profiles, and that the shading profile rail adapters are connected to the cleaning system modules via stabilizers braced, in particular screwed, are.
  • stabilizers advantageously increases the rigidity and thus the strength of the cleaning system modules in order to dissipate the forces introduced via the shading structure (such as the weight of the shading body or wind forces) into the respective support profile. In this way, a stable mounting level for the shading rails can be created in a cost-effective and visually appealing manner.
  • a simple way of controlling the cleaning process is achieved when the individual cleaning system modules are controlled jointly via the regulating or control device in order to control the time and quantity of compressed air, water-compressed air mixture, water and / or cleaning agent.
  • the regulating or control device carries out a pre-cleaning of the glass roof, and for this purpose compressed air or a water-compressed air mixture is introduced into the high-pressure lines of the cleaning system modules in order to remove leaves, dust and Blow or wash away loose contaminants through the cleaning nozzles.
  • the glass roof is then optionally cleaned, and for this purpose detergent or a detergent-water mixture is introduced into the high-pressure lines in order to wash away heavier soiling through the cleaning nozzles via high-pressure pulses or continuous high pressure.
  • the glass roof can be cleaned and dried, as well as water and water in the high-pressure pipes then introduce compressed air so that the glass roof is washed and dried in order to avoid the formation of water stains, especially from the sun's rays.
  • a cleaning method is particularly advantageous in which it is provided that a pre-cleaning is carried out first and for this purpose compressed air is introduced into the lines of the cleaning system modules, then cleaning is carried out and, for this purpose, cleaning agents and / or a cleaning agent are introduced into the lines of the cleaning system modules -Water mixture is introduced and, after cleaning, post-cleaning and / or drying is carried out and for this purpose compressed air is introduced into the lines of the cleaning system modules.
  • a detergent-water mixture is first introduced into the lines during cleaning, then a rinse aid-water mixture is introduced and, after the introduction of the rinse aid-water mixture, a final cleaning agent-water mixture is introduced, with a cleaning agent with lotus as the final cleaning agent. Effect is used.
  • Rinse aid means additives to the water that improve the drying of the glass surface. Usually these are and nonionic surfactants or organic acids such as citric acid.
  • Cleaning agents with a lotus effect are understood to mean cleaning agents which cause a lotus effect on the glass treated with them. What is meant here is that the treated glass surface can only be wetted with difficulty and that water that hits it can run off more easily, forming drops. The thus hydrophobic surface becomes soiled more slowly.
  • the cleaning process of the glass roof by the regulating or control device in addition to the possibility of manual (e.g. via a remote control) or a programmed circuit diagram, automatically via the measurement of the contamination by sensors (not shown in the figures) , in particular light sensors arranged in the attachment profiles, is set in motion in order to automatically initiate any necessary cleaning, and thus the glass roof surface of the winter garden is always in a visually appealing condition.
  • the lines are designed as high-pressure lines.
  • the lines are designed as low-pressure lines.
  • the spray axis of the cleaning nozzle and a central axis of a side support profile and / or central support profile spans an angle ⁇ , and that this angle ⁇ has a value between 40 ° and 70 °, in particular between 40 ° and 45 °, and that this is preferably adjustable via a pivotable mounting bracket.
  • a regulating and / or control device is arranged by means of which the time and quantity of compressed air, water-compressed air mixture, water and / or cleaning agent can be controlled.
  • sensors are arranged in the attachment profile of the individual cleaning system modules.
  • the profile cross-section of the adapter profile is adapted to existing winter garden carrier profile system variants, in particular the Weinor profile system and / or the TS aluminum profile system, and with the side carrier profile and / or central carrier profile different carrier profile system variants releasably connected, in particular screwed, is.
  • a pre-cleaning is carried out first and for this purpose compressed air is introduced into the lines of the cleaning system modules, then cleaning is carried out and for this purpose cleaning agent and / or a cleaning agent-water mixture is introduced into the lines of the cleaning system modules and after Cleaning, post-cleaning and / or drying is carried out and for this purpose compressed air is introduced into the lines of the cleaning system modules.
  • a detergent-water mixture is introduced into the lines during cleaning, then a rinse aid-water mixture is introduced and, after the introduction of the rinse aid-water mixture, a final detergent-water mixture is introduced, the final cleaning agent being a detergent with a lotus effect is used.
  • a cleaning process of the glass roof is started by the regulating or control device manually, in particular via a remote control, via a programmed circuit diagram and / or automatically via the measurement of the contamination by sensors, in particular light sensors arranged in the attachment profiles.
  • the in Fig. 1 The winter garden shown schematically has an automated glass roof cleaning system according to the invention, which has several different cleaning system modules 1, 2, 3 and 4, one arranged in a post 5 as high-pressure supply lines (including a universal connection adapter for common high-pressure cleaning devices and compressed air compressors) ) and a regulating or control device (which, however, is not shown in the figures).
  • high-pressure supply lines including a universal connection adapter for common high-pressure cleaning devices and compressed air compressors
  • a regulating or control device which, however, is not shown in the figures.
  • the individual cleaning system modules 1, 2, 3 and 4 differ in their respective structural design, which is in the FIGS. 3 to 11 will be shown.
  • the cleaning system module 1 is arranged on one or more side supports, the cleaning system module 2 on one or more central supports, the cleaning system module 3 on the wall connection and the cleaning system module 4 on the eaves, and via adapter profiles 9 (see Fig. 3 , 5 , 7th , 9 , 10 , 11 and 12th ) attached to the support profiles, or in an integral design as a single piece (see Fig. 4 , 6th and 8th ) made with the support profiles.
  • the embodiment shown is designed as a high-pressure system which leads pressurized water through a compressor.
  • cleaning nozzles 15 it is particularly useful to arrange cleaning nozzles 15 along the side supports and central supports and thus to ensure complete cleaning of the glass surfaces. It is particularly advantageous if those cleaning nozzles 15 which spray one of the glass surfaces are combined as a group and each group can be switched on and off independently of the others. This enables sequential cleaning of the glass surfaces one after the other. This has the advantage that the entire water pressure can be used for only one glass surface and the cleaning can be carried out optimally.
  • Fig. 2 the automated glass roof cleaning system according to the invention is arranged on or on a patio roof, the modular structure of the glass roof cleaning system being the same as that in Fig. 1 shown winter garden is.
  • the Fig. 3 shows in a first embodiment a side support - with a side support profile 7 - with the automated glass roof cleaning system according to the invention.
  • the cleaning system module 1 comprises an attachment profile 10, a press-down line including brackets, several adjustable cleaning nozzles 15 including pivotable mounting clamps 14 and a cover profile 11.
  • the attachment profile 10 and the cover profile 11 are releasably connected to one another via a snap-in connection, with this now inside Closed profile a high pressure line including brackets and several adjustable cleaning nozzles 15 including the pivotable mounting clamps 14 are arranged.
  • attachment profile 10 of the cleaning system module 1 and the adapter profile 9 are detachably connected to one another via a snap-in connection, and the adapter profile 9 is pushed onto the side support profile 7 (a Weinor profile system in the present exemplary embodiment) and screwed.
  • the spray axis of the cleaning nozzle 15 is adjustable via the pivoting mounting bracket 14, the angle ⁇ between the spray axis and the central axis of the side support profile 7 being set or set up to a value between 40 ° and 70 °, in particular between 40 ° and 45 °.
  • Fig. 4 a second embodiment of a side support with the automated glass roof cleaning system according to the invention is shown, which represents a further reduction in the number of components and thus a simplification with regard to the assembly effort.
  • the attachment profile 10 of the cleaning system module 1 is integrated into the side support profile 7, so that the attachment profile 10 and the side support profile 7 are now integral and consist of an aluminum profile, in particular an extruded aluminum profile.
  • the Fig. 5 shows in a first embodiment a central support - with a central support profile 8 - with the automated glass roof cleaning system according to the invention.
  • the cleaning system module 2 has largely the same structure as the cleaning system module 1 according to the first exemplary embodiment of a side support Fig. 3 . The only difference is the arrangement of the cleaning nozzles 15, which can be made on two sides along the cleaning system module 2.
  • a second embodiment of a central beam with the automated glass roof cleaning system according to the invention is shown, the sole difference being for the embodiment of a side support Fig. 4 consists in that the cleaning nozzles 15 are arranged on two sides along the cleaning system module 2.
  • the Fig. 7 shows in a third embodiment a central support with the automated glass roof cleaning system according to the invention.
  • a shading profile rail adapter 17 is arranged on the cleaning system module 2, and is mounted on the side of the attachment profile 10 and cover profile 11, and is screwed together with the attachment profile 10 and the adapter profile 9.
  • the shading profile rail adapter 17 is additionally screwed to the attachment profile via stabilizers 16 through the cleaning system module 2, and is thereby braced with it.
  • Fig. 8 shows a fourth embodiment of a central support with the automated glass roof cleaning system according to the invention
  • the sole difference to the embodiment of a central support according to Fig. 7 consists in that the attachment profile 10 of the cleaning system module 2 is integrated into the central support profile 8, whereby the attachment profile 10 and the central support profile 8 are integral and consist of an aluminum profile, in particular an extruded aluminum profile.
  • the Fig. 9 shows in a fifth embodiment a central support with the automated glass roof cleaning system according to the invention, with a central support profile 8 of the TS aluminum profile system being shown instead of a central support profile 8 of the Weinor profile system.
  • the arrangement and assembly conditions of the shading profile rail adapter 17 change only slightly as a result.
  • Fig. 10 shows a wall connection with the automated glass roof cleaning system according to the invention.
  • the cleaning system module 3 for the wall connection has the same structure as the cleaning system module 2 for the side supports (see Fig. 3 ), but with a different adapter profile 9 (see Fig. 12 , universally applicable adapter profile 9) is used.
  • the Fig. 11 shows an eaves with the automated glass roof cleaning system according to the invention, the cleaning system module 4 for the eaves almost identical to the cleaning system module 3 for the wall connection (see FIG Fig. 10 ) is.
  • FIG. 12 three possible profile cross-sections of an adapter profile 9 for conservatory support profile system variants customary on the market (such as the Weinor profile system and the TS aluminum profile system) are shown, which with the attachment profile 10 for the automated glass roof cleaning system according to the invention are connected, these only for the side supports in a first embodiment (see Fig. 5 ), the middle girders in a third version (see Fig. 7 ), the central beam in a fifth version (see Fig. 9 ), the side supports in a first version (see Fig. 3 ), the wall connection (see Fig. 10 ) and the eaves (see Fig. 11 ) Find use.
  • an adapter profile 9 for conservatory support profile system variants customary on the market such as the Weinor profile system and the TS aluminum profile system
  • a regulating or control device (which, however, is not shown in the figures) can be arranged by means of which the time and quantity of compressed air, water-compressed air mixture, water and / or cleaning agent can be controlled.
  • the attachment profile 10 of the individual cleaning system modules 1, 2, 3 and 4 preferably has sensors (which, however, are not shown in the figures), in particular light sensors, in order to provide the regulating or control device with information - such as the degree of soiling (in particular by leaves). - to deliver, by means of which the cleaning process can be optimized.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Cleaning By Liquid Or Steam (AREA)
  • Cleaning In General (AREA)

Claims (15)

  1. Système de nettoyage automatisé de toit en verre, notamment système de nettoyage de toit en verre de jardin d'hiver, comprenant plusieurs buses de nettoyage (15),
    système de nettoyage de toit en verre caractérisé en ce qu'il est réalisé en construction modulaire avec des modules de système de nettoyage (1, 2, 3, 4), distincts, chaque module de système de nettoyage (1, 2, 3, 4) comprenant un profilé rapporté (10), des supports (13) avec une conduite, plusieurs buses de nettoyage (15) et un profilé de couverture (11).
  2. Système de nettoyage automatisé de toit en verre selon la revendication 1,
    caractérisé en ce que
    les supports (13) avec des conduites et les buses de nettoyage (15) sont à l'intérieur du profilé rapporté (10) et du profilé de couverture (11).
  3. Système de nettoyage automatisé de voit en verre selon la revendication 1 ou 2,
    caractérisé en ce que
    le profilé rapporté (10) et le profilé de couverture (11) sont reliés l'un à l'autre de manière amovible par une liaison par enclipsage.
  4. Système de nettoyage automatisé de voit en verre selon l'une des revendications 1 à 3,
    caractérisé en ce que
    au moins une buse de nettoyage (15) est fixée par au moins un collier de montage (14) pivotant
  5. Système de nettoyage automatisé de voit en verre selon la revendication 4,
    caractérisé en ce que
    les buses de nettoyage (15) peuvent être remplacées par les colliers pivotants (14).
  6. Système de nettoyage automatisé de toit en verre selon l'une des revendications 1 à 5,
    caractérisé en ce que
    les buses de nettoyage (15) sont des buses de pulvérisation à haute pression, autonettoyantes, qui se nettoient par soufflage avec l'air comprimé.
  7. Toit en verre de jardin d'hiver, véranda ou terrasse, comportant plusieurs poteaux (5), plusieurs profilés latéraux de support (7) et/ou des profilés de support intermédiaires (8), au moins un profilé de raccordement à la paroi (18), au moins un profilé de support de gouttière (19), plusieurs panneaux de verre (6) et un système de nettoyage automatisé de toit en verre selon l'une des revendications 1 à 6.
  8. Toit en verre de jardin d'hiver, de véranda ou de terrasse selon la revendication 7,
    caractérisé en ce que
    les modules de système de nettoyage (1, 2, 3, 4) sont prévus sur un ou plusieurs profilés de support latéraux (7) et/ou à un ou plusieurs profilés de support intermédiaires (8) et/ou le long d'un profilé de raccordement de mur (18) et/ou le long d'un profilé de support de gouttière (19).
  9. Toit en verre de jardin d'hiver, de véranda ou de terrasse selon la revendication 7 ou 8,
    caractérisé en ce que
    le profilé rapporté (10) des modules de nettoyage (1, 2, 3, 4) respectifs est relié de manière amovible à un profilé adaptateur (9) notamment par une liaison par enclipsage et le profilé adaptateur (9) est lui-même relié au profilé de support latéral (7) et/ou au profilé de support intermédiaire (8) de manière amovible, notamment par vissage.
  10. Toit en verre de jardin d'hiver, de véranda ou de terrasse selon l'une des revendications 7 à 9,
    caractérisé en ce que
    le profilé rapporté (10) - des modules du système de nettoyage (1, 2) pour les profilés latéraux et intermédiaires - sont intégrés dans le profilé de support latéral (7) et/ou le profilé de support intermédiaire (8) de façon que le profilé rapporté (10) et le profilé de support latéral (7) et/ou le profilé de support intermédiaire (8) soit en une seule pièce et de préférence en un profilé en aluminium notamment en un profilé en aluminium extrudé à la presse.
  11. Toit en verre de jardin d'hiver, véranda ou terrasse selon l'une des revendications 7 à 9,
    caractérisé en ce que
    des adaptateurs de rail profilé d'ombrage (17) sont prévus sur au moins deux modules de système de nettoyage (1, 2) pour les supports latéraux et intermédiaires, et
    les adaptateurs de rail profilé d'ombrage (17) sont montés latéralement sur les profilés rapportés (10) et les profilés de couverture (11), et
    les adaptateurs de rail profilé d'ombrage (17) sont tendus par des stabilisateurs (16) sur les modules de système de nettoyage (1, 2) notamment par vissage.
  12. Procédé de nettoyage d'un toit en vitre notamment d'un toit de jardin d'hiver avec un système de nettoyage automatisé de toit en verre selon l'une des revendications 1 à 6,
    caractérisé en ce que
    les différents modules de système de nettoyage (1, 2, 3, 4) sont commandés en commun par l'installation de régulation ou de commande.
  13. Procédé selon la revendication 12,
    caractérisé en ce que
    l'installation de régulation ou de commande effectue un pré-nettoyage du toit en verre et alimente pour cela les conduites (13) des modules du système de nettoyage (1, 2, 3, 4) avec de l'air comprimé et/ou avec un mélange d'eau et d'air comprimé, et
    on évacue les feuilles, la poussière et/ou les débris de saleté avec les buses de nettoyage (15) en soufflant et/ou en rinçant.
  14. Procédé selon l'une des revendications 12 à 13,
    caractérisé en ce que
    l'installation de régulation et de commande effectue le nettoyage du toit en verre et pour cela alimente les conduites (13) des modules du système de nettoyage (1, 2, 3, 4) avec un agent nettoyant et/ou un mélange d'eau et d'agent nettoyant et on évacue les saletés les plus tenaces par les buses de nettoyage (15) avec des impulsions à haute pression et/ou en appliquant en permanence la haute pression pour rincer.
  15. Procédé selon l'une des revendications 13 à 14,
    caractérisé en ce que
    l'installation de régulation ou de commande effectue un nettoyage de finition et/ou un séchage du toit en verre et pour cela on alimente les conduites (13) des modules (1, 2, 3, 4) du système de nettoyage avec de l'eau et/ou de l'air comprimé et on rince le toit en verre avec les buses de nettoyage (15) alimentées en eau et/ou en air comprimé et/ou on sèche le toit en verre.
EP19197960.8A 2018-09-18 2019-09-18 Système de nettoyage de toit en verre Active EP3626905B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ATA50796/2018A AT521470B1 (de) 2018-09-18 2018-09-18 Glasdach-Reinigungssystem

Publications (2)

Publication Number Publication Date
EP3626905A1 EP3626905A1 (fr) 2020-03-25
EP3626905B1 true EP3626905B1 (fr) 2021-05-19

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AT (1) AT521470B1 (fr)

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CN114351956B (zh) * 2021-12-24 2024-02-27 北京京鹏环球科技股份有限公司 一种连栋玻璃温室屋顶清洗系统
EP4733508A1 (fr) 2024-10-25 2026-04-29 BEG-Projekte GmbH Dispositif de nettoyage pour façades en verre

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DE2913087A1 (de) * 1979-04-02 1980-10-16 Ries Walter Vorrichtung zum reinigen oder reinhalten von flaechen
FR2641992B1 (fr) * 1989-01-23 1991-05-03 Robotisation Automatisme Techn Dispositif pour nettoyer une surface plane ou quasi plane
DE19847239A1 (de) * 1998-10-14 2000-04-20 Bogner Hans Joachim Reinigungsvorrichtung für Gebäudeflächen
FR2806014B1 (fr) * 2000-03-08 2002-09-20 Saint Gobain Vitrage Substrat a revetement photocatalytique et/ou hydrophile
DE20203181U1 (de) * 2002-02-28 2002-07-04 Taler, Slawomir, 58708 Menden Fensterreinigungsgerät mit Teleskop-Wischerarm
DE102006059961A1 (de) 2005-12-31 2007-07-05 Lydia Krenzer Festinstallierte automatische Reinigungsanlage für waagrechte und geneigte Fensteraußenflächen, insbesondere denen von Wintergärten und Dachfenstern
DE102006003212B4 (de) * 2006-01-24 2007-11-22 Erhardt Markisenbau Gmbh Überdachung
JP3130982U (ja) * 2006-02-28 2007-04-19 誠二 西田 雪おろし器
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DE202007006491U1 (de) * 2007-02-09 2007-08-02 Schneeweis, Herbert Waschanlage
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AT521470B1 (de) 2020-02-15
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