EP2126230B1 - Chasse d'eau à déclenchement de la distribution d'agent actif au moyen d'un capteur dirigé vers l'eau de chasse - Google Patents

Chasse d'eau à déclenchement de la distribution d'agent actif au moyen d'un capteur dirigé vers l'eau de chasse Download PDF

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Publication number
EP2126230B1
EP2126230B1 EP08735931.1A EP08735931A EP2126230B1 EP 2126230 B1 EP2126230 B1 EP 2126230B1 EP 08735931 A EP08735931 A EP 08735931A EP 2126230 B1 EP2126230 B1 EP 2126230B1
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EP
European Patent Office
Prior art keywords
toilet
preparation
sensor
toilet bowl
container
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
EP08735931.1A
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German (de)
English (en)
Other versions
EP2126230A1 (fr
Inventor
Matthias LÜKEN
Frank Pessel
Hans-Georg MÜHLHAUSEN
Ralph Butter-Jentsch
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.)
Henkel AG and Co KGaA
Original Assignee
Henkel AG and Co KGaA
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Publication date
Application filed by Henkel AG and Co KGaA filed Critical Henkel AG and Co KGaA
Priority to PL08735931T priority Critical patent/PL2126230T3/pl
Publication of EP2126230A1 publication Critical patent/EP2126230A1/fr
Application granted granted Critical
Publication of EP2126230B1 publication Critical patent/EP2126230B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D9/00Sanitary or other accessories for lavatories ; Devices for cleaning or disinfecting the toilet room or the toilet bowl; Devices for eliminating smells
    • E03D9/02Devices adding a disinfecting, deodorising, or cleaning agent to the water while flushing
    • E03D9/03Devices adding a disinfecting, deodorising, or cleaning agent to the water while flushing consisting of a separate container with an outlet through which the agent is introduced into the flushing water, e.g. by suction ; Devices for agents in direct contact with flushing water
    • E03D9/032Devices connected to or dispensing into the bowl
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/08Arrangements for controlling delivery; Arrangements for controlling the spray area responsive to condition of liquid or other fluent material to be discharged, of ambient medium or of target ; responsive to condition of spray devices or of supply means, e.g. pipes, pumps or their drive means
    • B05B12/12Arrangements for controlling delivery; Arrangements for controlling the spray area responsive to condition of liquid or other fluent material to be discharged, of ambient medium or of target ; responsive to condition of spray devices or of supply means, e.g. pipes, pumps or their drive means responsive to conditions of ambient medium or target, e.g. humidity, temperature position or movement of the target relative to the spray apparatus
    • B05B12/122Arrangements for controlling delivery; Arrangements for controlling the spray area responsive to condition of liquid or other fluent material to be discharged, of ambient medium or of target ; responsive to condition of spray devices or of supply means, e.g. pipes, pumps or their drive means responsive to conditions of ambient medium or target, e.g. humidity, temperature position or movement of the target relative to the spray apparatus responsive to presence or shape of target
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/14Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet
    • B05B12/1409Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet the selection means being part of the discharge apparatus, e.g. part of the spray gun
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B9/00Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour
    • B05B9/03Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material
    • B05B9/04Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump
    • B05B9/08Apparatus to be carried on or by a person, e.g. of knapsack type
    • B05B9/0805Apparatus to be carried on or by a person, e.g. of knapsack type comprising a pressurised or compressible container for liquid or other fluent material
    • B05B9/0811Apparatus to be carried on or by a person, e.g. of knapsack type comprising a pressurised or compressible container for liquid or other fluent material comprising air supplying means actuated by the operator to pressurise or compress the container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B9/00Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour
    • B05B9/03Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material
    • B05B9/04Spraying apparatus for discharge of liquids or other fluent material, without essentially mixing with gas or vapour characterised by means for supplying liquid or other fluent material with pressurised or compressible container; with pump
    • B05B9/08Apparatus to be carried on or by a person, e.g. of knapsack type
    • B05B9/085Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump
    • B05B9/0855Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump the pump being motor-driven
    • B05B9/0861Apparatus to be carried on or by a person, e.g. of knapsack type with a liquid pump the pump being motor-driven the motor being electric
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/14Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet
    • B05B12/1418Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet for supplying several liquids or other fluent materials in selected proportions to a single spray outlet

Definitions

  • the invention relates to a toilet freshener with an electromechanically induced release of preparations in or on a toilet bowl, wherein the toilet freshener comprises at least one sensor which allows the detection of a flushing operation without intervention in the flushing water flow in a toilet bowl.
  • the dosage of flowable substances is of increasing importance, which is primarily due to the exact and needs-controlled dosage of the corresponding active ingredients, thereby protecting the environment through resource conservation and prevention of overdoses and overdoses, on the other hand, the efficiency of the drugs so dosed is optimized.
  • toilet flushing are single or multi-chamber containers that are hung in the toilet bowl so that when flushing the toilet bowl with water, a release of active ingredient from the toilet bowl into the toilet bowl.
  • Such devices are made, for example EP0828902 or DE10113036 known.
  • a major disadvantage of these toilet flushers is that the dosage depends essentially on the particular local flow conditions in the toilet bowl during the flushing process.
  • the flow conditions may vary greatly depending on the type of toilet and the positioning of the toilet bowl in or on the toilet bowl. So it may happen, for example, that in some types of toilet no drug release from the toilet rinse takes place because the toilet bowl is not or not sufficiently covered with water during flushing and thus the dosing of the toilet rinser is not triggered.
  • the release of the active ingredients from such toilet flushers is usually carried out by the penetration of rinse water through openings in the toilet bowl, the drug substances are dissolved and discharged at the outlet of the rinse water through corresponding outlet openings from the toilet rinse and washed away.
  • the toilet rinser in the toilet this is flowed through the often very different flow conditions of the rinse water outlet from the edge of the toilet different degrees, which can be realized only a diffuse release of the active ingredients.
  • the flushing water flow is influenced by the introduction of a toilet flushing device, as shown at the beginning. Due to the changed flow conditions, it can lead to a significantly changed Ab Democratic the toilet. Frequently, the flushing water flow is influenced in such a way that spray water is sprayed upwards from the toilet bowl, so that flushing water can escape from the toilet bowl or come into contact with the user when using the toilet, which is regularly perceived as unpleasant.
  • a targeted flow guidance in the toilets attempts to further reduce the amounts of flushing water used with constant or improved flushing behavior, so that intervention in the flushing water flow in toilets optimized in this way has an even greater influence on the flushing behavior.
  • the object of the invention is therefore to provide an easily installable device which dispenses active substances during the rinsing process into a toilet bowl without influencing the flow conditions during the rinsing process in the toilet bowl.
  • a sensor unit detects a triggering of the flushing water flow without intervention in the flushing water flow and generates a sensor signal which is sent to the control unit, which converts the sensor signal into a control signal for dispensing at least one preparation.
  • the sensor unit operates without contact with regard to the flushing water flow.
  • the toilet freshener according to the invention consists of various components, which in turn can be combined to form assemblies.
  • the components of the toilet flusher comprise at least a pump, a dispensing element, a control unit, a sensor unit, a power source, a container, a fastening means and a preparation.
  • the components pump, control unit, sensor unit and energy source are combined to form the module "dosing unit”.
  • the components and assemblies are described below.
  • the dosing device consists of a splash-proof housing that the penetration of splashing water, as it may occur in a toilet bowl when using the toilet-rinser according to the invention, in the interior of the dosing prevented.
  • the dosing device is arranged on the outer edge of the toilet bowl, which on the one hand protection against splash water and on the other hand a convenient operation of the dosing device is made possible. Furthermore, the dosing device does not protrude into the interior of the toilet, whereby the usable external cross-sectional area of the toilet bowl is not reduced by the arrangement on the outside edge.
  • the preparations to be dosed may have a pH between 2 and 12, depending on the intended use, all components of the toilet rinser that come into contact with the preparations should have a corresponding acid and / or alkali resistance. Furthermore, these components should be largely chemically inert by a suitable choice of material, for example against nonionic surfactants, enzymes and / or fragrances It is particularly advantageous to shed the electrical components of the WC flusher according to the invention, such as the energy source, the control unit, the sensor unit separately or together with each other in such a way that the metering device is substantially waterproof, the metering device is thus functional even when fully enclosed with liquid , As potting materials, for example, multicomponent epoxy, and acrylate potting compounds such as methacrylate esters, urethane-metha and cyanoacrylates or two-component materials can be used with polyurethanes, silicones, epoxy resins.
  • potting materials for example, multicomponent epoxy, and acrylate potting compounds such as methacrylate est
  • a significant advantage of the invention is to be seen in the separation of the toilet rinser in a dosing and in a coupled with the dispenser container, whereby the toilet freshener can be used flexibly for a variety of applications and adapted in a simple manner.
  • a pump in the sense of this application is a fluid energy machine for moving or conveying in particular small quantities of a fluid by converting a mechanical drive power into a flow rate.
  • fluids are liquids and gases, as well as mixtures thereof and solids.
  • the pump can be selected from the group of positive displacement pumps, oscillatory pumps, diaphragm pumps, piston pumps, rotary pumps, dynamic pumps, centrifugal pumps, electrohydrodynamic pumps, electroosmotic pumps, magnetohydrodynamic pumps, surface acoustic wave pumps, capillary force pumps, electrowetting pumps , thermocapillary pumps.
  • the pump is connected either directly or through the intermediary of the control unit to the power source.
  • the pump, the sensor and the control unit are advantageously configured in such a way that a defined release amount of active ingredient preparation is dispensed into the toilet bowl irrespective of the arrangement of the toilet rinser in or on the toilet bowl and / or of the amount of flushing water acting on the toilet bowl ,
  • the pump also makes it possible for at least two distinct, defined delivery quantities of at least one active substance preparation to be releasable.
  • a significant advantage of this particularly advantageous embodiment of the invention is the need-based dosage of active ingredients in the toilet bowl, which can be a resource gentler and more effective use of active ingredients can be effected.
  • the pump is configured such that it is suitable for releasing an active compound preparation having a viscosity ⁇ 5000 mPas.
  • the delivery rate of a micropump is usually between 50 nl and 100 ml per minute, preferably between 250 nl and 30 ml per minute, more preferably between 500 nl and 5 ml per minute.
  • the micropump preferably has a construction volume of less than 5 cm 3 , particularly preferably less than 3 cm 3 , particularly preferably less than 2 cm 3 .
  • the specific delivery rate of a micropump formed from the ratio of delivery rate to the construction volume of a micropump, is usually less than 500 [1 / min].
  • the specific delivery rate is preferably between 1 and 300, more preferably between 1.5 and 200, particularly preferably between 2 and 150, with very particular preference between 2.5 and 100.
  • Diaphragm pumps usually consist of an inlet and an outlet valve in or out of a pumping chamber, which is partially formed of a pumping membrane and an actuator.
  • the actuator causes a compression of the pumping chamber by mechanically acting on the pump diaphragm with the inlet valve closed, whereby the fluid in the pumping chamber is conveyed out of the pumping chamber via the opened outlet valve.
  • the outlet valve is closed and the decompression of the pumping chamber is effected by the actuator, whereby the fluid is sucked into the pumping chamber via the opened inlet valve.
  • the conveying direction of the micropump can be influenced or reversed.
  • the actuator of the diaphragm pump can be selected, for example, from the group of electromotive, piezoceramic, bimetallic, memometallic, pneumatic, peristaltic, electrostatic, electromagnetic, thermal drive units.
  • the valves can be designed as active or passive valves.
  • the passive valves may in particular be flapper valves, diaphragm valves or no-moving parts valves.
  • the pressure-side delivery of the preparation from the dosing device can be dropwise, jet-like or spray-like, diffuse or by evaporation.
  • the fluid is pumped into the container under pressure.
  • the container has a pressure compensation valve that releases the product flow from the container when a defined pressure in the container is exceeded.
  • the delivery elements are any type of devices which are suitable for delivering an active substance to the environment of the dosing device.
  • the dispensing element has two nozzles for dispensing active ingredients into the toilet or on the inside toilet bowl surfaces.
  • the dispensing element may have the same or different spray cone shapes when dispensing the preparations. For example, it is conceivable that one delivery element generates a jet with a rather punctiform application surface, while another delivery element generates a flat application field. Of course, various combinations of different spray cone shapes are conceivable.
  • the dispensing element can be movably arranged on the toilet freshener so that the user can align the spray cone that can be generated by the dispensing element with a desired application field.
  • the dispensing element may have upper means which allow adjustment of the spray cone shape.
  • the delivery member may further provide means for electrostatically charging drug droplets, thereby improving wetting, adherence and / or distribution of the agent on a surface and / or in the air.
  • the delivery member may be configured such that one or more agents are delivered in different directions from each other.
  • Dispensing direction A Dispensing direction B Fragrance release in the toilet bowl Fragrance delivery to the environment Detergent dispensed into the toilet bowl Discharge of detergent under the edge of the toilet / During rinsing or outside the rinsing process Detergent dispensed into the toilet bowl Fragrance delivery to the environment
  • dispensing element movably on the bracket of the toilet rinser. In this way, the dispensing element and the spray cone of the preparation can be targeted by the user to wet a defined application field in or on the toilet with preparation.
  • the dispensing element or elements are advantageously configured in such a way that a defined dispensing quantity of at least one active substance preparation is directed and defined into the interior of a toilet bowl independently of the positioning of the toilet freshener on the toilet bowl.
  • Advantages of such a design are u.a. the more specific exposure of toilet bowl surfaces with one or more active agents, whereby different surfaces can be treated with different active ingredients.
  • the pan may be wetted with an adherence reducing agent, while an active agent for reducing limescale is applied to the funnel-shaped walls extending from the pan to the rim of the toilet.
  • control unit generates a control signal for release of active ingredient preparation when a rinse water release takes place and a control signal for ending the drug release when the flow through the toilet bowl with rinse water is completed.
  • the first delivery amount and at least the second delivery amount are from the same or different active compound preparations.
  • the first delivery quantity and at least the second delivery quantity are released at mutually different points in time.
  • a control unit in the sense of this application is a device which is suitable for influencing the transport of material, energy and / or information.
  • the control unit For this purpose, it influences converters with the aid of information which it processes in the sense of the control target.
  • the transducers can be pumps and / or valves, for example.
  • the toilet freshener in a preferred embodiment of the invention does not use mechanical control elements for product release, the toilet freshener can be miniaturized so that it can also be used in applications where the size of the toilet freshener is critical.
  • control unit may be a programmable microprocessor.
  • a plurality of dosing programs are stored on the microprocessor, which can be selected and executed in accordance with the container coupled to the toilet freshener.
  • the dosing programs are manually retrievable by the user.
  • the control unit is also preferably arranged on the outside of the toilet bowl, from where it can be operated by the user in a simple way, especially when the user sits on the toilet.
  • control unit may comprise a dosing program for introducing at least two mutually different active compound preparations into a toilet bowl or into the environment of the toilet bowl, at least two different active substance preparations being released on at least two successive times t 1 and t 2 be introduced, wherein at least one active ingredient preparation is introduced into the interior of a toilet bowl.
  • An essential advantage of such a dosing program is, inter alia, an optimized cleaning performance by the most precise control of possible chemical reactions by a corresponding time delayed release of the corresponding preparation or preparations, of which some, but not exhaustive examples are listed in the table below.
  • t 1 t 2 advantage Cleaner in toilet bowl during the flushing process Perfume in toilet bowl after rinse Optimized perfume development, as perfume is released after the rinse in the toilet bowl and so is not washed away with the rinse water. Perfume is not "decomposed" by detergent preparation. Fragrance in toilet bowl immediately before use Cleaner in toilet bowl during the flushing process Optimized perfume development, as fragrance is released before the rinse in the toilet bowl and so is not washed away with the rinse water.
  • Another advantage is the fact that a controlled release of one or more different fragrances can be realized, which at least diminish habituation of the sense of smell.
  • a known from the prior art method of clocking and the pulse-like delivery of perfume can be used.
  • a Habituation can also be reduced by a delivery of successive, different from each other fragrances.
  • the control unit may in particular be designed in such a way that it is possible to set parameters in the dosing programs.
  • sensor thresholds may be adjustable during pre-configuration of the toilet bowl or by the user during use to, for example, trigger drug release to cause a certain sensor threshold.
  • the setting of one or more parameters can be realized by a correspondingly configured input device on the toilet freshener. As a result, the control of the toilet rinser can be further optimized and adapted to a particular application.
  • the dispensing element and at least the first preparation are configured such that a foam is formed when the preparation is released into the environment.
  • the pump, the dispensing element and at least the first preparation are configured such that a foam is formed when the preparation is released into the environment.
  • Foaming has several potential advantages.
  • a foam can include and minimize bad odors particularly well through its pore and cell structure.
  • the foam can also be applied as a so-called "anti-caking" coating on the surface of the toilet bowl in order to reduce buildup of metabolic waste products on these surfaces.
  • the dispensing element is designed as a foam spray head and the preparation has a viscosity of less than 3,000 mPas, so that a stable, well-adhering and fine-pored foam can be formed from this.
  • the sensor unit is designed as an ultrasonic sensor or infrared sensor.
  • the sensor is configured in such a way that the detection of a flushing process is realized without intervention in the Spülwasserdrömung in a toilet bowl.
  • Ultrasonic sensors or infra red sensors can be used for this purpose.
  • a metering process to which a defined amount of a preparation is dispensed takes less than 20 seconds, preferably less than 10 seconds, particularly preferably less than 5 seconds.
  • the energy source provides electrical energy.
  • the energy source may be, for example, a battery, a power supply, solar cells or the like.
  • the energy source is a mechanical energy source, such as a dynamo, which converts a mechanical or fluidic energy into electrical energy. This can then be stored in suitable memory elements such as a capacitor or accumulator.
  • a container is understood to mean a packaging material which is suitable for wrapping or holding together preparations and which can be coupled to the dispensing device for dispensing the preparation.
  • Particularly preferred is an arrangement in which two containers are provided, which, more preferably, are separated from each other and each containing a drug fluid. But there may also be several reservoirs for multiple drug fluids. The reservoirs are separated from each other to prevent premature mixing of the drug fluids. They may be physically separate or formed as separate compartments in a contiguous body.
  • the volume ratio formed from the overall volume of the metering device and the filling volume of the container ⁇ 1, more preferably ⁇ 0.1, particularly preferably ⁇ 0.05. This ensures that, for a given total construction volume of metering device and container, the overwhelming portion of the construction volume is taken up by the container and the preparation contained therein.
  • the container usually has a filling volume of ⁇ 5,000 ml, in particular ⁇ 1,000 ml, preferably ⁇ 500 ml, more preferably ⁇ 250 ml, very particularly preferably ⁇ 50 ml.
  • the invention is particularly suitable for dimensionally stable containers such as cups, cans, cartridges, cartridges, bottles, canisters, cans, boxes, drums or tubes, but can also be used for flexible containers such as bags or sacks, in particular if they are in accordance with the bag. be used in-bottle principle.
  • a container can also comprise a plurality of chambers which can be filled with different compositions from each other. It is also conceivable that a plurality of containers to a unit, for example, a cartridge is arranged.
  • the container has an RFID tag that contains at least information about the contents of the container and that can be read by the sensor unit.
  • This information can be used to select a dosing program stored in the control unit. In this way it can be ensured that an optimal dosing program is always used for a particular preparation. It can also be provided that in the absence of an RFID label or an RFID label with a false or faulty identifier, no dosage is done by the dosing and instead an optical or acoustic signal is generated that the user to the present Error indicates.
  • the containers may also have structural elements which cooperate with corresponding elements of the metering device according to the key-lock principle, so that, for example, only containers of a particular type can be coupled to the metering device. Furthermore, it is possible by this configuration that information about the coupled to the dispenser container to the Control unit are transmitted, whereby a matched to the contents of the corresponding container control of the dosing device can be done.
  • the container may be under pressure. This is particularly advantageous if the preparation is to be sprayed or dispensed without the need for an intermediate pump.
  • the delivery of the preparation may be controlled, for example, by a control valve operatively connected to the control unit.
  • This embodiment has the further advantage that no energy has to be provided for the transport of the preparation from the energy source, with which the energy source can either be made smaller or have a longer life expectancy.
  • the toilet bowl further comprises a fastener formed as a bracket to fix the toilet bowl on the outer edge of the toilet bowl.
  • compositions containing at least one substance from the group of detergents and / or fragrances are compositions containing at least one substance from the group of detergents and / or fragrances.
  • the preparations comprise substances for the modification of surfaces, in particular of ceramic surfaces.
  • scent phases in particular perfumed scent phases.
  • scent phases usually comprise at least one perfume, preferably perfume oil, at least one surfactant or an emulsifier and water and optionally further ingredients such as preservatives, thickeners, complexing agents, dyes, other surfactants or emulsifiers, stabilizers, lime solubilizer etc.
  • bleaching phases in particular chlorine-containing bleaching phases, preferably bleaching phases based on hypochlorite, the bleaching phases usually being further apart from the actual bleaching agent and water Ingredients such as thickeners, surfactants or emulsifiers, neutralizing agents, dyes, perfumes, etc. may contain.
  • lime-dissolving active substance phases preferably acidic lime-dissolving active substance phases.
  • Such lime-solubilizing active ingredient phases may contain, in addition to the actual lime solubilizer - preferably this is an organic or inorganic acid - and water optionally further ingredients such as surfactants or emulsifiers, thickeners, fragrances, preservatives, etc.
  • foam boosters Such highly concentrated surfactant phases may also contain other conventional ingredients in addition to the surfactants.
  • foam boosters are particularly advantageous for pretreatment of the toilet bowl with a foam carpet to prevent or reduce, for example, adherence of metabolic waste products on the toilet surface and / or to cause encapsulation of bad odors.
  • preparations having an antibacterial and / or fungicidal and / or antiviral active phase, wherein the active phase, in addition to the antibacterial and / or fungicidal and / or antiviral active and water, optionally further ingredients, such as surfactants or emulsifiers, thickeners, fragrances , Preservatives, etc. may contain.
  • the preparations are enzyme-containing active substance phases.
  • enzyme-containing active substance phases may optionally contain further ingredients such as surfactants or emulsifiers, thickeners, fragrances, preservatives, etc.
  • the preparations used according to the invention are absorbent, in particular odor-absorbing, active-substance phases. These may, in addition to the absorbent, in particular odor absorbent, and water optionally further ingredients such as surfactants or emulsifiers, thickeners, fragrances, preservatives, etc. included.
  • the toilet freshener according to the invention offers the possibility of using combinations of different preparations in the storage containers, wherein according to a preferred embodiment one of the storage containers contains a fragrance phase, in particular as defined above.
  • preparation combinations to be used are perfumed fragrance phase combined with chlorine bleach (together not storage-stable), perfumed fragrance phase with highly concentrated surfactant phase (foam booster), fragrance phase with lime-dissolving, acidic active phase, fragrance phase with antibacterial active ingredient phase, different acid systems, fragrance phase combined with enzyme-containing active substance phase, perfumed Acid phase combined with water-coloring phase, fragrance phase with odor-absorbing phase, perfumed acid phase with active oxygen, perfumed acid phase with active substance phase, thickened with polyacrylate etc.
  • viscous to gelatinous active fluids having viscosities in the range of a few thousand mPas, in particular from 200 to 5000 mPas, preferably 500 to 3500 mPas (measured with RotoVisko LVTV II, spindle 31, 5 rpm, 20 ° C).
  • the preparations have a viscosity of less than 2000 mPas, in particular less than 1000 mPas (measured with RotoVisko LVTV II, spindle 31, 5 rpm, 20 ° C.).
  • Viscosity to aqueous preparations are particularly suitable if the preparation is to be sprayed in or on the toilet bowl.
  • active compound preparations can be effected in conjunction with the toilet freshener invention a much faster and more accurate dosage and dispensed with the use of Verdickurtgssystemen.
  • active ingredient systems can be used which can be prepared only with low viscosities, e.g. based on chlorine, HCl, ect ..
  • the preparation may be under pressure according to another embodiment of the invention. This is particularly advantageous if the preparation is to be sprayed or dispensed without the need for an intermediate pump.
  • the delivery of the preparation may be controlled, for example, by a control valve operatively connected to the control unit.
  • This embodiment has the further advantage that no energy has to be provided for the transport of the preparation from the energy source, with which the energy source can either be made smaller or have a longer life expectancy.
  • Fig. 1 shows the efindungsdorfe toilet dishwasher 1, which consists of the dosing device 2 and a connected to the dosing device 2, a preparation 10 contained container 9.
  • the dosing device 2 comprises an energy source 3, a control unit 4, a sensor unit 5 and a pump 6, these components preferably being integrated in a housing.
  • the pump 6 is connected via the control unit 4 to the power source 3.
  • the control unit 4 in turn is connected to the sensor unit 5, which passes the control signals for controlling the pump 6 to the control unit 4.
  • the pump 6 has a pressure line 7 and a suction line 8, wherein the suction line 8 is connected to the container 10 containing the preparation 10.
  • the pump 6 thus promotes the flowable preparation 10 via the suction line 8 from the container 9 into the pressure line 7 from where the preparation 10 is delivered to the environment of the toilet flusher 1.
  • the pressure line 7 may in particular be such, e.g. by choosing a suitable diameter, be configured to counteract gelling of the dispensed preparation.
  • the container 9 may have a pressure compensation valve 11, which causes a pressure equalization between the environment and the interior of the container 9 when the pump 6 pumping preparation 10 out of the container 9.
  • the pump 6 can be controlled by the control unit 4 such that the conveying direction of the pump 6 is reversed and in the pump 6 and the lines 7 and 8 still located preparation in the container 9 are returned.
  • This backwashing can be particularly advantageous if the preparation 10, for example, for thickening and thus for bonding the lines 7 or 8 tends.
  • Fig. 2 shows a further embodiment of the Fig. 1 known metering device, in which the container 9 is connected on the pressure side with the pump 6.
  • the pump 6 builds up a pressure in the container 9, by pumping ambient air into the container 9, so that the preparation is displaced from the container 9.
  • a valve 11 may be provided that releases the preparation 10 from the container 9 only when a defined pressure in the container 9 is reached. This can be particularly advantageous if no dropwise metering, but a defined spray or spray similar dosage should be made.
  • a check valve 11a may be arranged between the pump 6 and the container 9 in the pressure line 7, which prevents the pressure built up in the container 9 from escaping through the pressure line 7 when the pump 6 stops.
  • Figure 3 shows that off Fig.1 known metering device 2, in which a two-chamber container, which is formed from the container 9 and 13, is connected to the suction line 8 of the pump 6.
  • the containers 9 and 13 each contain mutually different compositions 10 and 14.
  • the containers 9 and 13 may each have pressure equalizing valves 11,12.
  • the bottom-side discharge openings of the containers 9 and 13 are connected to the suction line 8 and the pump 6 such that the preparations 10 and 14 are pumped in defined proportions to each other through the suction line 8.
  • the incompatibility of two preparations may be due to an exothermic reaction, thickening, flocculation, pH change, color change or the like, for example.
  • a third container may be provided which contains a flushing fluid that cleans the lines 7, 8 and the pump 6 of at least one of the preparations 10, 14.
  • a flushing fluid that cleans the lines 7, 8 and the pump 6 of at least one of the preparations 10, 14.
  • air can be provided for flushing the lines 7,8 and the pump 6 and air.
  • Figure 4 shows a training of Figure 3 known toilet flusher 1.
  • the leading to the bottom-side discharge openings of the containers 9 and 13 pressure lines 8 in this case each have a passive valve 15 and 16, which allow a defined setting of the Dasierverhaltnisse the preparations 10 and 14 from the containers 9 and 13.
  • the valves 15 and 16 may also be designed as temperature-sensitive bimetallic valves which open or close upon reaching a defined temperature.
  • the valves 15 and 16 can be selected from bimetal valves which are different from one another, so that, for example, when a defined temperature is reached, only one preparation can be delivered by the pump 6 from one of the containers 9 or 13.
  • control unit 4 by processing the signals from the sensor unit 5 alone controls the pump 6.
  • the basic control algorithm 20 is in Fig. 6 reproduced in the form of a flowchart.
  • the control algorithm 20 is activated as soon as the dosing device 2 is switched on.
  • the control unit 4 receives the signals of the sensor unit 5.
  • the received sensor signal is compared with a threshold value stored in the control unit 4.
  • step 24 it is checked by means of a selection condition whether the sensor signal and the threshold value are in a defined relationship to one another. If the condition is met, the pump 6 is subsequently activated by the process step 25. If the condition is not fulfilled, further sensor signals according to process step 22 are received and evaluated by the control unit.
  • the pump 6 remains in an activated state until a sensor signal is present that causes a switch-off of the micropump when compared with a threshold value stored in the control unit 4. According to this procedure, preparation is pumped out of the containers as long as the sensor signal moves between two predefined threshold values for switching on or off the pump 6.
  • valves 15 and 16 as components to be actively controlled by the control unit 4.
  • the mixing ratio of the two preparations 10 and 14 can be influenced so active and time-varying.
  • each of the containers 9 and 13 is coupled to a pump 6 and 19 to be controlled individually by the control unit 4.
  • the corresponding control algorithm is in Fig. 8 played.
  • Fig. 9 shows the off Fig. 1 known metering device, in which on the container 9, an RFID label 42 is arranged, which is suitable to identify the size and the content 10 of the container 9.
  • the sensor unit 5 comprises an RFID receiving unit which can read the information of the RFID label 42 arranged on the container 9. This information is passed as a control signal to the control unit 4 in order to effect a dosage of the preparation 10 which is coordinated with the contents of the container 9.
  • the control signals caused by the RFID tag 42 can be used to select a metering program stored in the control unit.
  • RFID tag 42 As an alternative to the RFID tag 42, those skilled in the art may also provide other means for automatically identifying the container 9 and its contents 10 through the metering device.
  • an additional dispenser 43 may be provided on the durck constitutionalen opening of the pressure line 7.
  • This dispensing device 43 effects a distribution of the preparation which deviates from the dropwise delivery into the surroundings of the dosing device 1.
  • This may be, for example, a jet-like or spray-like delivery of the preparation or a delivery based on evaporation or diffusion.
  • the dispensing device 43 can be designed, for example, as a nozzle, atomizer, distributor plate or porous surface.
  • the dispensing device can be designed such that it counteracts gelling of the released preparations.
  • Figure 10 shows that off Fig. 1 known toilet freshener with a detachable from the dosing device 2 container 9.
  • the container 9 has at its lower, bottom end a nozzle 47 which is inserted into the receptacle 48 provided on the dosing device 1.
  • the nozzle 47 may be closed by a closure means, so that first, in the unused state of the container 9, a leakage of preparation 10 from the container 9 is prevented, which, however, by inserting the container 9 in the metering device 2 and the nozzle 47 in the receptacle 48 is destroyed, so that a release of the preparation 10 from the container 9 by the dosing device 2 can be carried out in the environment.
  • the toilet flusher in its assembled state is the Fig. 11 refer to.
  • the control unit 4 is further coupled to an acoustic transducer 46, which converts a voltage or current of the control unit into an audible acoustic signal.
  • the Control unit 4 may comprise a memory for a plurality of acoustic signals and / or music and / or voice recordings, which are manually and sensor-triggered retrieved and executed, that is, be slid to the acoustic transducer 46.
  • a lighting means 44 is connected to the control unit 2, which is switched on or off in accordance with a predefined operating state of the dosing unit 2.
  • the light source can be designed, for example, as an LED or LCD display.
  • the dosing device 2 can be switched on or off. Furthermore, it is conceivable that various programs stored in the control unit 4 are accessed and executed via the actuating element 45.
  • a further embodiment of the toilet-rinser according to the invention is shown, in which the energy source 3 is integrated in the form of a battery in the container 9.
  • the battery 3 is electrically conductively connected via a correspondingly configured coupling with the dosing device 2.
  • the capacity of the battery 3 is advantageously designed so that it feeds the dosing device 2 over the period of use until the complete emptying of the preparation 10 from the container 9 with energy.
  • Fig. 13 shows that off Fig. 5 principle known construction of the toilet flusher according to the invention in a more detailed schematic sketch.
  • the chamber 9 is divided by the wall 49 into two chambers in which a first preparation 10 and a second preparation 14 are stored.
  • Each of the chambers communicates with the environment by means of a respective pressure compensation valve 11 or 12 and has at its bottom end in each case a connection piece 47a or 47b.
  • FIG. 15 Another, alternative embodiment of the e-flush toilet flushing is in Fig. 15 displayed.
  • the containers 9 and 13 are firmly connected to the dosing device 2 and can not by a in the Fig. 15 refilled opening to be refilled.
  • Fig. 16 shows a disposed at the distal end of the bracket 52 discharge element 43 with an integrated sensor 5 and two nozzles 56 and 57.
  • the sensor 5 is designed in this embodiment as an infrared sensor or ultrasonic sensor.
  • the nozzles 56 and 57 may be configured to produce the same or different spray cones 54a, 54b, which works well in FIGS Fig. 17 is recognizable. As in Fig. 18 As shown, the spray cones 54a and 54b may be directed to the same application field inside a toilet bowl 55. From the Fig. 19 and 20 It can also be seen, however, that it is also possible to direct the two spray cones in different directions.
  • the discharge element 43 is fixed by a hook on the inside at the bottom of the toilet bowl 55.
  • the delivery element 43 is arranged displaceably on the bracket 52, which is indicated by the arrow in FIG Fig. 19 is symbolized.
  • the toilet freshener 1 is fixed to the outside edge of the toilet bowl 55 by the fixing means 50 which is formed as a suction button.
  • the dispensing member 43 has a first nozzle 56 and a second nozzle 57 spaced apart and disposed in the dispensing member 43 such that their respective spray cones 54a and 54b are non-intersecting in different directions. That is how it is Spray cone 54a of the first nozzle 56 into the interior of the toilet bowl 55, while the spray cone 54b of the second nozzle 57 is directed to the edge of the toilet bowl. It is also possible, as shown in Fig. 24, that a spray cone 54b is directed under the rim of the toilet bowl 55.
  • the spray cones 54a and 54b may be formed of the same or different compositions.
  • a sensor unit 5 protrudes in the form of a capacitive sensor under the edge of the toilet 55, so that the sensor 5 is acted upon in the Spippowasserbetuschist of water.
  • the sensor 5 is formed in such a way that it does not have a significant influence on the flushing water guide in the toilet bowl 55.
  • a further embodiment of the container 9 and 13 and the dosing device 2 shows the Fig. 21 ,
  • the receptacle of the containers 9 and 13 in the metering device can be closed by a flap 58 which is arranged pivotably on the metering device 2.
  • the two containers 9 and 13 can be removed or used separately in the opened state of the flap 58 of the receptacle of the metering device 2.
  • Fig. 21 shows in a further embodiment of the invention, a toilet freshener 1 with two individually replaceable containers 9 and 13 and a viewing flap 58 in the closed and open position.
  • the viewing flap 58 is articulated on the rear wall of the toilet rinser in such a manner that the viewing flap 58 preferably completely covers the containers 9 and 13 used in the toilet freshener 1.
  • the viewing flap 58 can be equipped with closure means which allow a child-proof closure of the viewing flap 58 with the toilet freshener and thus prevent inadvertent access to the containers 9 and 13.
  • the lighting means 44 and the actuating element 45 are arranged, which are not covered in the closed state of the viewing flap 58, but are freely accessible.

Landscapes

  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Water Supply & Treatment (AREA)
  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)
  • Sanitary Device For Flush Toilet (AREA)

Claims (6)

  1. Appareil de rinçage de toilette (1) pour l'introduction d'au moins une préparation d'agent actif dans une cuvette de toilettes, comprenant
    - un appareil de dosage (2),
    - une source d'énergie (3),
    - une unité de commande (4),
    - une unité de détection (5),
    - une pompe (6),
    - un élément de distribution (43) ainsi
    - qu'au moins un premier réservoir (9) qui contient une première préparation (10) et qui peut être couplé à l'appareil de dosage (2),
    la source d'énergie (3), l'unité de commande (4), l'unité de détection (5) et la pompe (6) étant intégrées à l'appareil de dosage (2), et
    l'unité de détection (5) détectant un déclenchement du flux d'eau de chasse et générant un signal de détection qui est dirigé vers l'unité de commande (4), laquelle transforme le signal de détection en un signal de commande pour la distribution de l'au moins une préparation lorsque le signal de détection a dépassé une valeur seuil définie et mémorisée dans l'unité de commande (4) et la source d'énergie (3), l'unité de commande (4) ainsi qu'au moins le premier réservoir (9) coopèrant de telle sorte qu'en présence du signal de commande qui représente le déclenchement du flux d'eau de chasse, au moins la première préparation (10) est distribuée depuis le premier réservoir (9) dans la cuvette de toilettes (55) au moyen de la pompe (6) et de l'élément de distribution (43),
    caractérisée en ce que
    la chasse d'eau (1) présente pour l'agencement sur le bord extérieur d'une cuvette de toilettes un moyen de fixation réalisé sous la forme d'un étrier (52) pour la fixation de l'appareil de rinçage de toilettes sur la cuvette de toilettes,
    la détection du flux d'eau de chasse par l'unité de commande s'effectuant sans intervention dans l'écoulement de chasse d'eau,
    l'élément de distribution (43) présentant deux buses (56, 57) et l'unité de détection (5), étant disposé à l'extrémité distale de l'étrier (52) et l'étrier (52) étant relié à l'appareil de dosage (2) positionné sur le bord extérieur de la cuvette de toilettes, et
    l'unité de détection (5) étant réalisée sous la forme d'un capteur à ultrasons ou d'un capteur à infrarouge, le capteur à ultrasons ou le capteur à infrarouge étant orienté vers l'intérieur de la cuvette de toilettes (55).
  2. Appareil de rinçage de toilette selon la revendication 1, caractérisée en ce que la valeur seuil du signal de détection, à laquelle l'unité de commande (4) génère un signal de commande, est réglable.
  3. Appareil de rinçage de toilette selon l'une des revendications précédentes, caractérisée en ce que l'unité de commande (4) est un microcontrôleur programmable.
  4. Appareil de rinçage de toilette selon la revendication 3, caractérisée en ce que sur le microcontrôleur soit mémorisée une pluralité de programmes de dosage sélectionnables.
  5. Appareil de rinçage de toilette selon l'une des revendications précédentes, caractérisée en ce que la pompe (6) et/ou l'élément de distribution (43) et au moins la première préparation (10) sont configurés de telle sorte que de la mousse est formée lors de la libération de la préparation (10) dans la cuvette de toilettes (55).
  6. Appareil de rinçage de toilette selon l'une des revendications précédentes, caractérisée en ce que l'élément de distribution est disposé de manière déplaçable sur l'appareil de rinçage de toilette de telle sorte que l'utilisateur puisse orienter le cône de pulvérisation pouvant être généré par l'élément de distribution vers un champ d'application souhaité.
EP08735931.1A 2007-08-24 2008-04-08 Chasse d'eau à déclenchement de la distribution d'agent actif au moyen d'un capteur dirigé vers l'eau de chasse Active EP2126230B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL08735931T PL2126230T3 (pl) 2007-08-24 2008-04-08 Odświeżacz do WC z wyzwalaniem dozowania substancji czynnej aktywowanym przez czujnik skierowany na wodę płuczącą

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007040324A DE102007040324A1 (de) 2007-08-24 2007-08-24 WC-Spüler mit spülwasserunabhängiger Wirkstoffabgabe
PCT/EP2008/054202 WO2009027117A1 (fr) 2007-08-24 2008-04-08 Chasse d'eau à déclenchement de la distribution d'agent actif au moyen d'un capteur dirigé vers l'eau de chasse

Publications (2)

Publication Number Publication Date
EP2126230A1 EP2126230A1 (fr) 2009-12-02
EP2126230B1 true EP2126230B1 (fr) 2013-05-22

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Country Status (6)

Country Link
US (1) US20100205727A1 (fr)
EP (1) EP2126230B1 (fr)
DE (3) DE202007018951U1 (fr)
PL (1) PL2126230T3 (fr)
RU (1) RU2473746C2 (fr)
WO (1) WO2009027117A1 (fr)

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CN105612294B (zh) 2013-07-15 2019-05-17 As知识产权控股有限公司 自清洗马桶组件和系统
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Also Published As

Publication number Publication date
DE202007018951U1 (de) 2009-11-26
RU2473746C2 (ru) 2013-01-27
WO2009027117A1 (fr) 2009-03-05
EP2126230A1 (fr) 2009-12-02
DE102007063688B4 (de) 2015-10-29
PL2126230T3 (pl) 2013-10-31
DE102007063688A1 (de) 2009-08-27
RU2010110911A (ru) 2011-09-27
US20100205727A1 (en) 2010-08-19
DE102007040324A1 (de) 2009-02-26

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