WO2013178530A1 - Appareil ménager à circulation d'eau, pourvu d'un générateur de gaz de traitement et d'un dispositif d'introduction de liquide - Google Patents

Appareil ménager à circulation d'eau, pourvu d'un générateur de gaz de traitement et d'un dispositif d'introduction de liquide Download PDF

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Publication number
WO2013178530A1
WO2013178530A1 PCT/EP2013/060640 EP2013060640W WO2013178530A1 WO 2013178530 A1 WO2013178530 A1 WO 2013178530A1 EP 2013060640 W EP2013060640 W EP 2013060640W WO 2013178530 A1 WO2013178530 A1 WO 2013178530A1
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WO
WIPO (PCT)
Prior art keywords
water
supply device
water supply
treatment
tank
Prior art date
Application number
PCT/EP2013/060640
Other languages
German (de)
English (en)
Inventor
Edwin Bolduan
Hans Eglmeier
Andre Sabalat
Ingo Schulze
Original Assignee
BSH Bosch und Siemens Hausgeräte 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 BSH Bosch und Siemens Hausgeräte GmbH filed Critical BSH Bosch und Siemens Hausgeräte GmbH
Priority to PL13724286T priority Critical patent/PL2855754T3/pl
Priority to CN201380028370.XA priority patent/CN104350197B/zh
Priority to EP13724286.3A priority patent/EP2855754B1/fr
Priority to RU2014149151A priority patent/RU2611281C2/ru
Publication of WO2013178530A1 publication Critical patent/WO2013178530A1/fr

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Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents
    • D06F39/028Arrangements for selectively supplying water to detergent compartments
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/088Liquid supply arrangements

Definitions

  • the invention relates to a water-conducting household appliance, in particular a laundry treatment appliance for washing laundry. Specifically, the invention relates to the field of washing machines and washer-dryers.
  • a water-conducting household appliance with a housing, a dispenser, which is inserted into the housing, and a treatment area is known.
  • a gas flow of gases from the treatment area on the dispenser tray out of the housing is made possible.
  • the Ein Hughesschale has a filter device over which the gas flow is guided.
  • the filter device has an ozone filter to prevent the escape of ozone from the housing.
  • a water-conducting household appliance with a water supply device is known.
  • a water supply device is provided with which a vapor barrier is created for the treatment area.
  • the water supply device has, among other things, at the discharge-side end a lower baffle rib, which has a slot, and above the discharge-side end, an upper arc portion, on which an upper baffle rib is provided with a slot.
  • the water-conducting domestic appliance known from DE 20 201 1 104 270 U1 has the disadvantage that the design and production of the water supply device is comparatively complicated.
  • An object of the invention is to provide a water-conducting household appliance, which has an improved structure. Specifically, it is an object of the invention to provide a water-conducting domestic appliance in which a treatment with a treatment gas is enabled, wherein an exit of treatment gas from a Ein réelle Scheme and at the same time wetting laundry and the like, which is located in the treatment container, are prevented.
  • a water-conducting domestic appliance in particular a laundry treatment appliance for washing laundry, with a treatment container and a treatment agent container, wherein a liquid treatment agent contained in the treatment agent container is at least indirectly feasible in the treatment container, wherein a Ein Hughesan angel with a first water supply device and at least one second Water supply device is provided, via the first water supply device and a first inlet water to the treatment tank can be guided, via the second water supply device and a second inlet water to at least a second Ein Albanyö réelle the treatment tank can be guided and wherein the first and second water supply device filled with the treatment agent are.
  • the first inlet can lead the water into the treatment tank via a first flushing opening.
  • the first inlet can be configured as a sleeve inlet.
  • the first Einticianö réelle be a sleeve opening.
  • the second inlet may be a flushing channel.
  • a treatment gas generator is provided.
  • the treatment gas generator and the Ein Verizonan angel can during a treatment of laundry or the like with the treatment gas are advantageously formed by each of the water supply means a vapor barrier.
  • a throttled overflow channel is provided between an inlet area for the first water supply device and an inlet area for the second water supply device and that the throttled overflow channel, the first water supply device and the second water supply device of the Ein Stamman angel are arranged to each other so that when feeding water in An excess of the supplied water via the overflow channel into the second water supply device is feasible for the inlet region for the first water supply device when the first water supply device is filled.
  • the first water supply device can thereby be reliably filled with water first, so that it forms a vapor barrier. Further, the excess of the supplied water also enters the second water supply means to fill it with water.
  • a vapor barrier is formed by the water held at the second water supply device.
  • the first water supply device and the second water supply device In this filling of the first water supply device and the second water supply device, undesired wetting of, for example, already dehumidified laundry by the water can be prevented. While the total amount of water supplied may be small but, for example, greater than that required to fill the first water supply means and the second water supply means, the portion of the water which is passed over the second water supply means and the cuff feed can not wet the laundry when drainage is allowed on an inner wall of the treatment tank.
  • a laundry drum is arranged, in which the laundry is dehumidified, for example by centrifuging.
  • the laundry is dehumidified, for example by centrifuging.
  • there is a certain distance between an inner wall of the treatment container and the drum By correspondingly slow running of the water this runs down in the region of the gap between the inner wall of the treatment tank and the drum.
  • the water does not get into the drum and splashing the laundry with water is prevented.
  • the adhesion force between the water and the inner wall of the treatment tank is sufficient to prevent the volume flow of the water from dissolving away from the inner wall.
  • an undesirable spattering of the laundry with water can be prevented.
  • the Einticianö Anlagen the treatment vessel at the same time also be arranged so that injected at a correspondingly large volume flow, the supplied water directly to the laundry.
  • the large volume flow can be achieved by passing water with a high volume flow directly into the inlet area for the second water supply device.
  • a nebulizer device is provided with a water tank, which serves for nebulizing water provided in the water tank, and that the treatment gas generated by the treatment gas generator can be guided into the treatment tank together with a water nebulized by the nebulizer device.
  • the treatment gas generator can generate ozone, which is guided by means of a fan through the nebulizer device.
  • the ozone mixes with the atomized water.
  • the mixture of ozone and the atomized water is then fed into the treatment tank.
  • the water tank of the nebulizer device is connected to the flushing arrangement so that water can be conveyed out of the water tank into an inlet region for the first water supply device.
  • the first water supply device and the second water supply device can be filled with respective amounts of water, which are sufficient to form vapor barriers.
  • a complete filling of the water tank of the nebulizer device can just absorb the amount of water required for this purpose.
  • the water tank of the nebulizer device can thus effectively serve as a measuring container.
  • multiple fillings of the water tank of the nebulizer device may be required for this purpose be.
  • the nebulizer device After refilling the water tank, the nebulizer device is then ready for operation, since the water in the water tank of the nebulizer device can then be nebulized, for example, via an ultrasonic nebuliser. It is also advantageous in this case that the water tank of the nebulizer device is connected via a valve with the Ein Honeyanaku.
  • the valve can be configured here as an outlet valve. The valve can be controlled by a controller according to a program sequence. However, it is also possible that the water tank of the nebulizer device is connected via a siphon with the Ein Hughesan angel.
  • the water tank of the siphon by a correspondingly high filling of the water tank of the siphon can be set in motion to guide the contents of the water tank in the inlet region for the first water supply device.
  • the water tank is only filled to a lower level.
  • a buffer storage volume is designed, which serves to receive an excess volume of water from the water tank of the nebulizer, which does not emptying of the water tank from the first Water supply device and the second water supply device can be added.
  • a tank volume of the water tank is equal to the receiving volumes of the first water supply device and the second water supply device.
  • the buffer volume may also be equal to the volumes of the first water supply device and the second water supply device.
  • the first water supply device and the second water supply device are already filled, if the water is led out of the water tank into the inlet region for the first water supply device, then an undesirably high increase in the water level in the treatment container is prevented, in which the water already forms part of the laundry achieved and thus wet.
  • a Ein Swiftschale is provided with a pre-treatment chamber and a main treatment chamber, that in a rinsing of the Pre-treatment chamber of Ein réelleschale water is fed into the inlet region for the first water supply device and that when flushing the main treatment chamber water is fed into the inlet region for the second water supply device.
  • the cuff purge it is possible, for example, for the cuff purge to be specifically used for a pretreatment, while for the main treatment substantially a supply via the dispensing opening of the treatment container takes place.
  • Fig. 1 is a water-conducting household appliance in a partial, schematic sectional view according to a first embodiment
  • FIG. 2 shows a nebulizing device of the water-conducting domestic appliance illustrated in FIG. 1 in an excerptional, schematic sectional view corresponding to a second exemplary embodiment.
  • Fig. 1 shows a water-conducting household appliance 1 in a partial, schematic sectional view according to a first embodiment.
  • the water-conducting domestic appliance 1 can in particular be designed as a laundry treatment appliance and serve for washing and optionally for drying laundry.
  • the water-conducting household appliance 1 can be configured as a washing machine or washer-dryer.
  • the water-conducting household appliance 1 of the invention is suitable in accordance with adapted modification, however, also for other applications.
  • the water-conducting domestic appliance 1 comprises a treatment tank 2, a treatment gas generator 3, a nebulizer device 4 and a dispensing arrangement 5.
  • the treatment tank 2 is designed in this embodiment as a suds container 2.
  • the treatment gas generator 3 can serve for example for the production of ozone.
  • the nebulizer device 4 has a water tank 6, which for Taking a certain amount of water 7 serves.
  • An ultrasonic atomizer 8 of the nebulizer device 4 is used in this embodiment for the production of fine water droplets that form a mist 9 of water over the water tank 6.
  • a fan 10 generates an air flow through the treatment gas generator 3, so that the ozone from the treatment gas generator 3 is passed through the nebuliser 4. In this case, the air flow takes the mist 9 with it, and the mixture of the mist 9 and the ozone is guided out of the nebulizer device 4 at an outlet 1 1 of the nebulizer device 4.
  • the output 1 1 of the nebulizer device 4 is connected via a connection 12 to the treatment tank 2.
  • the ozone-containing mist 9 can be guided into the treatment tank 2.
  • the fan 10 can suck in the air from the treatment tank 2.
  • the fan 10 is connected in this embodiment via a connection 13 with the treatment tank 2.
  • the ozone-containing mist 9 can be performed by the fan 10 in recirculation mode in a treatment area in the interior of the treatment container 2.
  • ozone-containing air can be conducted without mist in recirculation mode in the treatment tank 2.
  • the mist 9 can be performed without ozone or with a more or less concentrated concentration of ozone in the treatment tank 2.
  • treatment gas from the treatment gas generator 3 via the nebulizer 4 can be guided indirectly into the treatment tank 2.
  • the treatment gas from the treatment gas generator 3 can also be conducted directly into the treatment vessel 2.
  • the flushing arrangement 5 has a first water supply device 15 and a second water supply device 16. Water can be conducted to at least one sleeve opening 18 of a sleeve 19 connected to the treatment container 2 via the first water supply device 15 and a sleeve inlet 17.
  • the sleeve 19 is shown schematically and in part in this embodiment.
  • the sleeve 19 is connected on the one hand with the treatment tank 2 and on the other hand with a housing, not shown, of the water-conducting household appliance 1, in order to ensure a seal in this regard.
  • the sleeve 19 may be provided in particular in the region of a door, not shown, can be placed on the laundry or the like in a drum 20 within the treatment container 2.
  • the drum 20 can hereby be rotated in accordance with the program sequence.
  • the intermediate space 21 prevents contact of the optionally rotating drum 20 with an inner wall 22 of the stationary, but possibly swinging, treatment container 2.
  • water can be led to at least one dispensing opening 24 of the treatment container 2.
  • the supplied water can also reach the interior of the drum 20 in order to wet the laundry located there.
  • the water passes through the gap 21 outside the drum 20 in a Abpumpstrang 25.
  • the Abpumpstrang 25 designed as a drain pump 26 pump 26 is arranged, via the water, alkali, rinse water or the like to an output 27 of water-conducting household appliance 1 can be promoted.
  • a pumping operation can optionally be made possible back into the treatment tank 2 here.
  • the pumping line 25 is connected to the treatment tank 2 in a lower region 28 of the treatment tank 2.
  • the water-conducting domestic appliance 1 has an induction bowl 30 with a pre-treatment chamber 31 and a main treatment chamber 32.
  • a pre-treatment chamber 31 and the main treatment chamber 32 for example, detergents or other treatment agents may be charged. The detergents can then be rinsed out individually.
  • fresh water can be conducted into the pretreatment chamber 31 via a fresh water line 33, while fresh water can be passed into the main treatment chamber 32 via a fresh water line 34.
  • the water From the pretreatment chamber 31, the water enters an inlet region 35 For the first water supply device 15.
  • the main treatment chamber 32 the water enters an inlet region 36 for the second water supply device 16.
  • a throttled overflow channel 37 is provided between the inlet region 35 for the first water supply device 15 and the inlet region 36 for the second water supply device 16.
  • the throttled overflow channel 37, the first water supply device 15 and the second water supply device 16 of the Ein Hamptonan angel 5 are arranged to each other so that when supplying water into the inlet region 35 for the first water supply device 15, an excess of the supplied water via the throttled overflow channel 37 into the second water supply device 16 is feasible when the first water supply device 15 is filled.
  • the water supply devices 15, 16 can be filled at the same time.
  • the water supply devices 15, 16 remain automatically filled after a water inlet.
  • An inlet stream may in this case be for example 10 l / min. This results in a clear excess of water, which is used for the weeping of the laundry in the treatment tank 2.
  • the part of the pumping line 25 is filled with water in front of the pump 26.
  • the so-called pump sump is filled with water.
  • vapor barriers are formed both in the sleeve inlet 17 and in the flushing channel 23 and in the pumping line 25.
  • vapor barriers prevent emissions from the treatment tank 2. Specifically, the vapor barriers can prevent the escape of ozone-containing air or ozone-containing mist from the water-conducting household appliance 1. However, this must be ensured that they are sufficiently filled in ozone mode.
  • the water tank 6 of the nebulizer device 4 should be able to be emptied in a defined manner. When emptying the water tank 6, however, no wetting of the laundry in the drum 20 should be caused with water to avoid stains in drying programs. A goal is therefore to allow a defined emptying of the water tank 6 and to allow a defined and targeted filling of the water supply means 15, 16, without the laundry or other textiles are wetted in the drum 20.
  • the water supply devices 15, 16 are sufficiently filled with water and thus form reliable vapor barriers. In this case, it is advantageously possible to dispense with a sensor system or the like which detects a sufficient level.
  • the water supply devices 15, 16 are therefore preferably filled with a certain overflow. The amount of water supplied then ensures minimum levels in the water delivery devices 15, 16. If the water supply devices 15, 16 are already completely or partially filled, the supplied amounts of water are guided in the overflow via the dispensing channel 23 into the treatment tank 2.
  • At least one treatment method may advantageously be provided in which dry or dehumidified laundry is treated with ozone.
  • the supply of water is done for this purpose with a sufficiently low flow rate.
  • the water When water is supplied to the inlet region 35 for the first water supply device 15, the water preferably goes into the cuff purging.
  • the sleeve opening 18 is preferably directed to the laundry in the drum 20, so that at a comparatively high volume flow wetting of the laundry takes place. Also, water that flows at high volume flow through the dispensing passage 23, enters the interior of the drum 20. In contrast, at a low volume flow of, for example, 1 l / min due to the adhesion between the water and the inner wall 22 of the treatment vessel 2, the water drain the inner wall 22.
  • a level 40 of the nebulizer device 4, on which an outlet 41 of the nebulizer device 4 is provided, is defined below a bottom 42 of the water tank 6.
  • a water level of the water 7 in the water tank 6 may be between an upper limit 43 and a lower limit 44.
  • a water supply to fill the water tank 6 may be set accordingly.
  • a level (activation level) 45 is predetermined in this embodiment in which a siphon 46 of the nebulizer device 4 is activated.
  • a level 47 for the mist outlet to the output 1 1 of the nebuliser 4 is still set above the level 45 for the siphon 46.
  • the siphon 46 is activated and the water from the water tank 6 flows through the spout 41 of Nebulizer device 4 to a filler neck 48 of the Ein Hamptonantechnisch 5.
  • the filler neck 48 may in this case be connected via a suitable connecting line 49 to the outlet 41 of the nebulizer device 4.
  • the water level in the water tank 6 may have a value of, for example, 40 mm above the floor 42 for generating mist. This water level can be ensured by a level control, which is realized for example by a two-step control with a hysteresis of, for example, 6 mm.
  • the upper limit value 43 may, for example, be 43 mm above the ground 42, while the lower limit value 44 is 37 mm above the ground.
  • the water level then plays between 37 mm and 43 mm.
  • the water inlet into the water tank 6 can be taken over by a valve with respect to conventional inlet valves strongly throttled volume flow, the volume flow, for example, 0.8 l / min, while the usual volume flow in water-bearing household appliance can be 10 l / min for the water supply.
  • the level 47 may be, for example, 60 mm above the bottom 42 of the water tank 6.
  • the activation level 45 for the siphon 46 may be, for example, about 50 mm above the floor 42.
  • the siphon 46 In normal operation, the siphon 46 is not activated and the water level moves below the activation level 45. To activate the siphon 46, the signal of the two-step control is ignored and the water tank 6 is filled at least to the activation level 45 of the siphon 46. As a result, the siphon 46 is activated and the water tank 6 empties via the lifting line of the siphon 46.
  • the volume flow through the siphon 46 is greater than the volume flow of the water inlet, so that even with the valve still open for the water supply no water above the level 47 and thus can get to the output 1 1.
  • a preferred volume flow which is predetermined by the siphon 46, for example, about 1 l / min.
  • the siphon 46 first leads the water into the inlet area 35 for the first water supply device 15, which is associated with the cuff purging.
  • the throttled overflow channel 37 effectively forms an overflow for the filled first water supply device 15, which leads into the second water supply device 16.
  • the throttled overflow channel 37 may in this case be configured by a constriction.
  • completely filled water supply device 16 passes an optionally further from the water tank 6 nachf jobder over the dispensing passage 23 and the dispensing opening 24 in the tub 2, but this is done only with the predetermined low flow of, for example, 1 l / min. Due to the low volume flow and its exclusive leadership on the water supply device 16, the scavenge passage 23 and the Ein Albanyö réelle 24 a non-wetting of the laundry is guaranteed. In this case, by utilizing the effect of adhesion of the water to the inner wall 22 of the tub 2, it is possible to keep the laundry wettable.
  • the first water supply device 15, the second water supply device 16 and the pumping line 25 before the drain pump 26 can be filled with sufficient amounts of water without the laundry is significantly wetted.
  • a transition to the fog operation requires refilling the water tank 6 by activating the level control.
  • a buffer storage volume 50 is designed, which is shown schematically in FIG.
  • This buffer storage volume 50 serves to receive an excess volume of water from the water tank 6 of the nebuliser 4, which can not be taken up by the first water supply device 15 and the second water supply device 16 when the water tank 6 is emptied. This is the case, for example, when emptying the water tank 6 via the flushing arrangement 5, the two water supply devices 15, 16 are already filled with water.
  • the buffer volume 50 thus a buffer volume is formed, which prevents the laundry is wetted.
  • an Abpumpön be activated by activating the drain pump 26 before emptying the water tank 6.
  • the filling of the water supply devices 15, 16 is preferably carried out by activating the siphon 46 once.
  • the emptied volume of the water tank 6 preferably corresponds to the total volume of the two water supply devices 15, 16.
  • a slight excess may be provided.
  • the water-conducting domestic appliance 1 may also be useful to perform the lifting cycle several times in succession and the water-conducting domestic appliance 1 to a preferably in the vicinity of an integer value of a safe filling of the water supply devices 15, 16 required number.
  • the amount of water fed into the water supply devices 15, 16 can be increased by a valve for the water tank 6 that is still open during the emptying process and controlled by a time control at approximately known volume flow.
  • a sensor it is possible for a sensor to detect the water level in the water tank 6 and to supply a single signal upon reaching the typical level for the nebulization.
  • the filling of the water tank 6 up to the level 45 for activating the siphon 46 can then also run only time-controlled.
  • the volume flow through the siphon 46 during emptying is greater than the valve volume flow for filling, so that no water passes through the outlet 1 1 in the treatment tank 2.
  • an overflow for the water tank 6 may be provided below the level 47, which preferably leads into the Ein Honeyantechnische 5.
  • the volume flow through the siphon 46 may be designed to be smaller than the valve volume flow, so that the total amount of water fed into the water supply devices 15, 16 can be checked with the water level sensor located in the water tank 6. In this case, multiple replenishment of water from the water tank 6 is possible.
  • the current filling and emptying times can be determined and advantageously used in an extrapolation.
  • connection line 49 from the outlet 41 of the nebuliser device 4 can also open directly into a rising part 41 of the first water supply device 15.
  • the water from the water tank 6 can be guided directly into the rising part 51 of the first water supply device 15.
  • the height can be reduced.
  • the treatment gas generator 3 can also be operated when the water tank 6 is not filled, for example for disinfecting the nebulizer device 4, since the ozone remains within the volume delimited by the first water supply device 15.
  • a filling of the water supply devices 15, 16 and the Abpumpstrangs 25 can be ensured in front of the drain pump 26, without this the laundry is significantly wetted.
  • This type of filling is thus particularly suitable for care programs without primary use of water, such as a refreshing, deodorizing, wrinkling with the use of ozone, which can be done with or without mist, respectively.
  • a defined emptying of the water tank 6 can in this case essentially in the intermediate storage volume 50, in particular a pump sump, take place. In this case, there is the option of pumping out via the drain pump 26. All required steps can be realized statically hydraulically without moving parts. Furthermore, the required sensors and actuators can be limited to a minimum.
  • FIG. 2 shows a nebulizing device 4 of the water-conducting domestic appliance 1 shown in FIG. 1 in accordance with a second exemplary embodiment.
  • the siphon 46 is omitted.
  • a valve 55 in particular an outlet valve 55, is provided in the connecting line 49.
  • the valve 55 may be controlled by, for example, a controller according to the program flow.
  • the valve 55 allows a targeted emptying of the water tank 6.
  • the valve 55 allows blocking of the connecting line 49.
  • a preferred water level can be maintained via a level control between the upper limit 43 and the lower limit 44.
  • the treatment gas generator 3 can also be operated when the water tank 6 is not filled. For example, this can be used to disinfect the nebuliser 4 with ozone. Because the ozone can not get into the Ein Albanyan angel 5 when the valve 55 is closed.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)
  • Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)

Abstract

Appareil ménager (1) à circulation d'eau, en particulier sous forme d'appareil de traitement de linge pour le lavage de linge, qui comporte une cuve de traitement (2) et un récipient pour agent de traitement (4), un agent de traitement (7) liquide contenu dans le récipient pour agent de traitement (4) pouvant être introduit au moins indirectement dans la cuve de traitement (2). Selon l'invention, un dispositif d'introduction de liquide (5) est pourvu d'un premier dispositif de retenue d'eau (15) et d'au moins un deuxième dispositif de retenue d'eau (16), de l'eau pouvant être acheminée dans la cuve de traitement (2) par l'intermédiaire du premier dispositif de retenue d'eau (15) et d'une première conduite d'arrivée (17), et de l'eau pouvant être acheminée dans la cuve de traitement (2) par un deuxième orifice d'entrée (24), par l'intermédiaire du deuxième dispositif de retenue d'eau (16) et d'une deuxième conduite d'arrivée (23). En outre, les premier et deuxième dispositifs de retenue d'eau (15, 16) peuvent être remplis d'un agent de traitement.
PCT/EP2013/060640 2012-05-31 2013-05-23 Appareil ménager à circulation d'eau, pourvu d'un générateur de gaz de traitement et d'un dispositif d'introduction de liquide WO2013178530A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
PL13724286T PL2855754T3 (pl) 2012-05-31 2013-05-23 Prowadzące wodę urządzenie gospodarstwa domowego z generatorem gazu do obróbki i z układem spłukiwania
CN201380028370.XA CN104350197B (zh) 2012-05-31 2013-05-23 具有处理气发生器和冲入组件的引导水的家用器具
EP13724286.3A EP2855754B1 (fr) 2012-05-31 2013-05-23 Appareil ménager à circulation d'eau, pourvu d'un générateur de gaz de traitement et d'un dispositif d'introduction de liquide
RU2014149151A RU2611281C2 (ru) 2012-05-31 2013-05-23 Водопотребляющий бытовой прибор с генератором газа для обработки и подводящим узлом

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102012209211A DE102012209211A1 (de) 2012-05-31 2012-05-31 Wasserführendes Haushaltsgerät mit einem Behandlungsgasgenerator und einer Einspülanordnung
DE102012209211.0 2012-05-31

Publications (1)

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WO2013178530A1 true WO2013178530A1 (fr) 2013-12-05

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PCT/EP2013/060640 WO2013178530A1 (fr) 2012-05-31 2013-05-23 Appareil ménager à circulation d'eau, pourvu d'un générateur de gaz de traitement et d'un dispositif d'introduction de liquide

Country Status (6)

Country Link
EP (1) EP2855754B1 (fr)
CN (1) CN104350197B (fr)
DE (1) DE102012209211A1 (fr)
PL (1) PL2855754T3 (fr)
RU (1) RU2611281C2 (fr)
WO (1) WO2013178530A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20220213637A1 (en) * 2018-12-19 2022-07-07 Qingdao Haier Drum Washing Machine Co., Ltd. Laundry treating apparatus

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102014220355B3 (de) * 2014-10-08 2016-01-21 BSH Hausgeräte GmbH Wäschepflegegerät mit einer Ozonerzeugungseinrichtung
DE102014224722B3 (de) 2014-12-03 2016-06-09 BSH Hausgeräte GmbH Wäschepflegegerät mit einer Programmauswahleinrichtung
DE102014224728B3 (de) * 2014-12-03 2016-06-09 BSH Hausgeräte GmbH Wäschepflegegerät mit einer Desodorierungseinrichtung
CN109423839A (zh) * 2017-08-22 2019-03-05 无锡小天鹅股份有限公司 雾化投放装置及其投放方法、衣物处理装置
CN111411487A (zh) * 2018-12-19 2020-07-14 青岛海尔滚筒洗衣机有限公司 用于衣物处理设备的控制方法及衣物处理设备
DE102020214963A1 (de) 2020-11-27 2022-06-02 BSH Hausgeräte GmbH Haushaltsgerät zum behandeln von behandlungsgut, umfassend einen wassertank
DE102020214962A1 (de) 2020-11-27 2022-06-02 BSH Hausgeräte GmbH Haushaltsgerät zum behandeln von behandlungsgut, umfassend einen nebelerzeuger
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RU2014149151A (ru) 2016-07-20
DE102012209211A1 (de) 2013-12-05
PL2855754T3 (pl) 2016-08-31
CN104350197A (zh) 2015-02-11
CN104350197B (zh) 2016-08-24
RU2611281C2 (ru) 2017-02-21
EP2855754A1 (fr) 2015-04-08

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