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WO2008151966A1 - Dispositif de repassage à vapeur avec système anti-goutte - Google Patents

Dispositif de repassage à vapeur avec système anti-goutte Download PDF

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Publication number
WO2008151966A1
WO2008151966A1 PCT/EP2008/056829 EP2008056829W WO2008151966A1 WO 2008151966 A1 WO2008151966 A1 WO 2008151966A1 EP 2008056829 W EP2008056829 W EP 2008056829W WO 2008151966 A1 WO2008151966 A1 WO 2008151966A1
Authority
WO
WIPO (PCT)
Prior art keywords
steam
ironing
temperature setting
micropump
drip
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.)
Ceased
Application number
PCT/EP2008/056829
Other languages
German (de)
English (en)
Inventor
Carmelo Albandoz Ruiz De Ocenda
Jesus Maria Nogueira Moraza
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.)
BSH Hausgeraete GmbH
Original Assignee
BSH Bosch und Siemens Hausgeraete 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 Hausgeraete GmbH filed Critical BSH Bosch und Siemens Hausgeraete GmbH
Priority to AT08760413T priority Critical patent/ATE541080T1/de
Priority to ES08760413T priority patent/ES2377958T3/es
Priority to EP08760413A priority patent/EP2158351B1/fr
Publication of WO2008151966A1 publication Critical patent/WO2008151966A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F75/00Hand irons
    • D06F75/08Hand irons internally heated by electricity
    • D06F75/10Hand irons internally heated by electricity with means for supplying steam to the article being ironed
    • D06F75/14Hand irons internally heated by electricity with means for supplying steam to the article being ironed the steam being produced from water in a reservoir carried by the iron
    • D06F75/16Hand irons internally heated by electricity with means for supplying steam to the article being ironed the steam being produced from water in a reservoir carried by the iron the reservoir being heated to produce the steam
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F75/00Hand irons
    • D06F75/08Hand irons internally heated by electricity
    • D06F75/26Temperature control or indicating arrangements

Definitions

  • the present invention relates to a steam ironing apparatus, in particular a steam iron or a steam ironing station, according to the preamble of patent claim 1.
  • a steam generating system having a vaporization chamber communicating with the vapor outlets, and into which the vaporization liquid from the container is selectively introduced; a heating device for heating the soleplate and / or the evaporation chamber; an ironing temperature adjusting element; an operating element for selectively activating and deactivating the steam generating system; and an anti-dripping system for preventing unwanted entry of the evaporating liquid into the evaporating chamber and thereby preventing accidental leakage of (non-evaporated) evaporating liquid from the steam outlets.
  • Anti-dripping systems are usually used to prevent the entry of the evaporation liquid in the evaporation chamber, if this (for example, shortly after switching on in a heating phase of the soleplate or the evaporation chamber or even after switching off the steam ironing device or a ironing operation with an ironing temperature lower than a steam ironing temperature) has a temperature insufficient to vaporize evaporation liquid in the evaporation chamber.
  • evaporating liquid drops unintentionally escape from the steam outlet openings of the soleplate and fall on an ironing board or to be ironed or just ironed textiles and adversely affect the textiles or the previously achieved ironing results.
  • Conventional anti-drip systems are usually equipped with a bimetallic element, which controls the supply or the entry of the evaporation liquid into the evaporation chamber depending on the temperature in the evaporation chamber or the temperature of the soleplate. This control is carried out by means of a temperature-induced deformation of the bimetallic element, which is used to realize a circuit function.
  • the bimetallic element is coupled to a valve system which is actuated by the bimetallic element, thus opening or closing an evaporation liquid channel which opens into the vaporization chamber.
  • the bimetal element serves to To operate an electrical switch that closes or interrupts the electrical circuit of the micropump.
  • Cooling phase of the evaporation chamber or the soleplate react quite slowly. Particularly critical here is the cooling phase exposed.
  • a steam ironing device for example, which is equipped with a micropump, which is to take over an anti-drip function at the same time, it may happen that the micropump still injects evaporation liquid into the evaporation chamber during the cooling phase, even though it no longer has a sufficiently high temperature evaporate the injected liquid.
  • conventional antidripping systems can not always reliably prevent unwanted ingress of evaporation liquid into the evaporation chamber and thus unwanted dripping.
  • steam ironing apparatus provided with a micropump are also known which do not have an anti-drip system and consequently can not prevent the evaporation of evaporating liquid from the soleplate in certain conditions.
  • the invention has the object or the technical problem of providing a steam ironing device with an improved anti-drip system.
  • This steam ironing apparatus in particular a steam iron or a steam ironing station, comprises: a soleplate with steam outlet openings; a container for evaporation liquid, in particular water; a steam generating system having an evaporation chamber communicating with the steam outlets and into which the Vaporization liquid from the container is selectively introduced; a heating device for heating the soleplate and / or the evaporation chamber; an ironing temperature adjusting element; an operating element for selectively activating and deactivating the steam generating system (eg, a so-called "steam switch”); and an anti-dripping system for preventing unwanted entry of the evaporating liquid into the evaporating chamber and thereby preventing accidental leakage of (non-evaporated) evaporating liquid from the steam outlets.
  • the steam ironing device is characterized in that the anti-drip system is functionally coupled to the ironing temperature setting element and can be activated or deactivated via or through it.
  • the deactivation function can start from a different control element of the steam ironing device than the ironing temperature setting element, but the ironing temperature setting element must additionally assume a predetermined state, so that the anti-drip system is deactivated and evaporation liquid in the
  • an anti-drip system circuit of an electric anti-drip system for example, at least two predetermined switching conditions or states (of the control element AND of the ironing temperature setting element) must be fulfilled so that the anti-drip system is deactivated and evaporation liquid can enter the vaporization chamber "means in the context of the present invention, further, that even if in addition to the ironing temperature adjustment other controls the steam ironing device available are the ones to Deactivation of the anti-drip system are required (see previous paragraph), the activation function can already be triggered by a predetermined state or switching state of at least one of these elements (or more or all).
  • the inventors of the present steam ironing apparatus have recognized that in conventional anti-drip systems of the type described above, the function of the anti-drip system both in a heating phase and in particular in a cooling phase of the evaporation chamber or the soleplate directly from the properties and tolerances of the bimetallic element used and the local Temperature, which prevails at the mounting location of the bimetallic element, is influenced.
  • This local temperature in turn depends strongly on the temperature of the components located in the vicinity of the bimetallic element, e.g. the sole plate, which has a comparatively high heat storage capacity compared to the bimetallic element and heats or cools only comparatively slowly. The result is then the sluggish behavior and possible malfunction of conventional anti-drip systems.
  • the local temperature may be affected by accumulation of unevaporated evaporation liquid, which also affects the function of the conventional anti-drip systems.
  • a bimetal element assigned to the anti-drip system is completely dispensed with.
  • the anti-drip system is functionally coupled to the ironing temperature setting element and can be activated or deactivated via or through it.
  • the influence of the local temperature in the region of the mounting location of the anti-drip system and the associated technical disadvantages can be eliminated.
  • the anti-drip system is controlled by or via the ironing temperature setting element, the function of the anti-drip system can be targeted, precisely and without delays to a temperature determined by means of the ironing temperature control. Adjusting element preselected, concrete ironing temperature or adapt to it.
  • the entry of evaporation liquid into the evaporation chamber and the dripping out of non-evaporated evaporation liquid from the soleplate can be reliably prevented.
  • it is possible to preclude erroneous operation by a user if, for example, he operates the operating element for activating the steam generating system, although due to a preselected low ironing temperature, the temperature in the evaporating chamber is insufficient to evaporate the introduced evaporating liquid.
  • the anti-drip system is appropriately activated by or via the ironing temperature setting element and prevents the introduction of evaporation liquid into the evaporation chamber.
  • Figure 1 is a schematic cross-sectional view through a steam ironing device according to the invention, which is equipped with an anti-drip system.
  • FIG. 2 shows a schematic perspective view of a lower housing part of the steam ironing device according to the invention
  • Fig. 4 is a partially sectioned perspective view of an essential portion of the invention
  • Fig. 5 is a schematic block diagram of an essential part of
  • FIG. 6a to e are each a schematic plan view of the ironing temperature setting element of the steam ironing device according to the invention in different rotational positions and circuit states.
  • FIG. 1 shows a schematic cross-sectional view of a steam ironing device according to the invention, which in this example is designed as a steam iron 2.
  • the steam iron 2 has a first, lower housing part 2a, a soleplate 4 with steam outlet openings 6, a container 8 for evaporation liquid W, in particular water or water with an additive, and a steam generating system, with an evaporation chamber 10, which communicates with the steam outlet openings 6 and in which the evaporation liquid W is selectively introduced from the container 8.
  • An electric micropump P1 serves for the controlled introduction of the evaporation liquid W from the container 8 into the evaporation chamber 10.
  • a steam quantity (rotary) switch 12 which is functionally coupled to the micropump P1, for a steam iron operation, the desired amount of steam can be adjusted or regulated.
  • the steam iron 2 is equipped with a heater 14 for heating the soleplate 4 and / or the evaporation chamber 10.
  • a heater 14 for heating the soleplate 4 and / or the evaporation chamber 10.
  • the steam iron 2 has an ironing temperature setting element, which is designed in this case as a knob 16, which with a
  • Rotary axis 18 is coupled, which is connected to a thermostat 20 which controls the heating device 14.
  • a thermostat 20 which controls the heating device 14.
  • the knob 16 has a plurality of temperature setting ranges, which will be discussed in more detail below.
  • the steam iron 2 is equipped with a cleaning and descaling system.
  • the steam iron 2 has (at least) a first electrical switch S1 (here: an electrical micro-switch), which is assigned to the knob 16 and can be actuated by this directly or indirectly.
  • a first electrical switch S1 here: an electrical micro-switch
  • the knob 16 and the ironing temperature setting element may also have two or more switches.
  • an operating element 22 is provided for selectively activating and deactivating the steam generating system.
  • This operating element 22 is designed in the present case as a so-called steam switch. In principle, however, any other suitable for the purpose mentioned control element can apply.
  • the steam iron 2 has (at least) a second electrical switch S2, which is assigned to the steam switch 22 and can be actuated by it directly or indirectly.
  • the switch S2 is functionally coupled to the micropump P1.
  • the steam iron 2 has a steam button 24, which is coupled to a separate from the micropump P1, mechanical pump P2.
  • a "key” is understood to mean, in addition to a key as such, a switch, knob, etc.
  • the steam iron 2 is further equipped with an anti-dripping system for preventing unwanted entry of the evaporating liquid W into the evaporating chamber 10 and thus preventing accidental leakage of (non-evaporated) evaporating liquid W from the steam outlets 6.
  • the steam iron 2 has a central anti-drip control system Z.
  • the anti-drip system is at least functionally coupled to the rotary knob 16 (ironing temperature setting element) and can be activated or deactivated via or through it.
  • the knob 16 is coupled to the anti-drip control system Z.
  • the anti-drip system may thus be activated and deactivated via or through the first electrical switch S1 associated with the rotary knob 16, as will be described in more detail below.
  • the steam switch 22 and the steam quantity rotary switch 12 are coupled to the anti-drip control system Z.
  • the knob 16 and the steam switch 22 are functionally coupled to each other via the anti-drip control system Z and via the circuit of their switches S1 and S2 (see FIG. 3).
  • the micropump P1 forms the anti-drip system or a substantial part thereof.
  • the knob 16 and the steam switch 22 in this case constitute essential components of an anti-drip system circuit or a micropump circuit system.
  • the separate mechanical pump P2 may have its own anti-drip system.
  • the micropump P1 has at least one shut-off valve V, in particular an integral shut-off valve, which can be arranged, for example, at a pump inlet and / or outlet (evaporation liquid inlet and / or outlet), and a channel or outlet leading to the evaporation chamber 10 for the evaporation liquid W a) blocks if the micropump P1 is deactivated or should not be activated, and b) opens the channel if the micropump P1 is activated or may be activated. Therefore, the micropump P1 is functionally coupled to the rotary knob 16 and activated and deactivated in a manner to be described in more detail below, by way of or through this.
  • FIG. 2 shows a schematic perspective view of the first, lower housing part 2a of the steam iron 2 according to the invention.
  • this housing part 2a has a region 26 for attachment of the rotary knob 16 (see Fig. 1), with an opening 28 for the rotation axis 18 (see Fig. 1), a stop 30 for the knob 16 and a receptacle 32 for the switch S1.
  • Fig. 3 is a bottom perspective view of the knob 16 is shown.
  • the knob has a member 34 for producing a rotationally fixed connection to the axis of rotation 18 of the thermostat 20 (see Fig. 1), a stop 30 (see Fig. 2) associated stop member 36, a circular segment-shaped large switching element SE1 and a circular segment-shaped small switching element SE2.
  • Fig. 4 shows a partially sectioned perspective view of a substantial portion of the steam iron 2 according to the invention, with the arrangement of the knob 16 and the switch 32 located in the receptacle S1 on the first, lower housing part 2a. Furthermore, this figure shows the arrangement of the first, lower housing part 2a in relation to a second or further lower housing part 2b.
  • the switch S1 has a contact element 38 for opening and closing a circuit to which the switch S1 is connected.
  • the contact element 38 is in an unactuated normal position, ie the circuit is open.
  • the contact element 38 (and
  • the switch S1) can be actuated by the switching elements SE1 and SE2 when the knob 16 is rotated and the switching element SE1 and SE2 depresses the contact element 38, as will be explained in more detail below.
  • FIG. 5 shows a schematic block diagram of an essential part of the anti-drip system and its anti-drip system or the corresponding micropump circuit system of the steam iron 2 according to the invention.
  • the reference symbol U designates the electrical voltage applied to this circuit.
  • the second electrical switch S2 is functionally coupled to the first electrical switch S1. More specifically, in the present embodiment, the first switch S1 and the second switch S2 are connected in series.
  • the electric micropump P1 which constitutes the anti-drip system or a substantial part thereof, can be activated and deactivated via or via the first switch S1 and the second switch S2, as will be described in more detail below. Since the switch S1 the rotary knob 16 and the switch S2 is assigned to the steam switch 22, and the switches S1, S2 are actuated by these elements, the knob 16 and the steam switch 22 are thus functionally coupled together.
  • FIG. 6a to 6e each show a schematic plan view of the rotary knob 16 (ironing temperature setting element) of the steam iron 2 according to the invention in different rotational positions and circuit states.
  • the rotatability of the rotary knob 16 is indicated in Fig. 6a by a double arrow. From the drawings, furthermore, the position of the contact element 38 of the switch S1 in relation to the rotary knob 16 and its large switching element SE1 and its small switching element SE2 in dependence on the rotational position of the knob 16 is apparent.
  • This position of the contact element 38 of the located below the knob 16 switch S1 is in the illustration of FIG. 6a indicated by a drawn in the vicinity of the outer periphery of the knob 16 line.
  • the knob 16 has a plurality of temperature setting ranges. In the drawing, these areas and corresponding adjustment marks are shown with respect to a reference position (e.g., a zero position) of the knob 16.
  • the reference position is indicated in FIGS. 6a to 6e by a large arrowhead and the reference numeral 0.
  • the rotary knob 16 has a first temperature setting range TB1 for low ironing temperatures, in which the anti-drip system can be activated via or by the rotary knob 16. If the anti-drip system is activated, no evaporation liquid W can be introduced into the evaporation chamber 10.
  • low ironing temperature means that the temperature for generating steam is insufficient, and a setting position for the area TB1 is indicated on the rotary knob 16 by a setting mark in the form of a single dot.
  • Second temperature setting range TB2 Second temperature setting range TB2:
  • the knob 16 has a second temperature setting range TB2 for higher and higher ironing temperatures, ie Dampfbügeltemperaturen, which are sufficient for steam generation.
  • the anti-drip system can be deactivated via or by means of the rotary knob 16. If the anti-drip system is deactivated, evaporation liquid W can be introduced into the evaporation chamber 10.
  • Setting positions for the area TB2 are indicated on the knob 16 by two setting marks.
  • the setting mark for the higher ironing temperature is a mark in the form of two dots.
  • the setting mark for the high ironing temperature is a mark in the form of three dots.
  • the knob 16 has one of the function of the cleaning and descaling system of the iron associated cleaning and descaling position or a corresponding adjustment range R, in which / which the anti-drip system is deactivated via or by the knob 16.
  • evaporation liquid W can be introduced into the evaporation chamber 10.
  • a setting mark for the adjustment range R is indicated in this embodiment by a mark C in the form of a small arrowhead.
  • the anti-drip system circuit or the micropump circuit system of the steam iron 2 according to the invention have a plurality of different circuit states:
  • the micropump P1 is turned on and thus the anti-drip system is deactivated when both the steam switch 22 is actuated and the knob 16 is in the second temperature setting range TB2.
  • Second Circuit State In the at least one second circuit state, the micropump P1 is off and the anti-drip system is activated when K1) the steam switch 22 is inactive (switch S2 is open) or K2) the knob 16 is in the first temperature setting range TB1, or K3) both the steam switch 22 is inactive (switch S2 is open) and the knob 16 is in the first temperature setting range TB1.
  • the micropump P1 is turned on, thus deactivating the anti-drip system when the knob 16 is in the cleaning and descaling setting position C (or region R).
  • the anti-drip control system Z controls at least the first and second circuit state, in the present case, however, all said circuit states. See also the corresponding connections of the knob 16 with its switch S1 and the steam switch 22 with its switch S2 to the anti-drip control system Z (Fig. 1).
  • micropump P1 is functionally coupled to the steam switch 22 and, via or through it, as a function of a) the temperature setting range (TB1, TB2) of the rotary knob; and / or b) the cleaning and descaling adjustment position of the rotary knob 16 can be activated and deactivated.
  • the rotary knob 16 is turned into a position which sets a low ironing temperature which is insufficient for steam generation.
  • the rotary knob 16 is located relative to the reference position 0 thus in the first temperature setting range TBL
  • the switching elements SE1 and SE2 are in the position shown in this drawing relative to the switch S1 and its contact element 38 and do not actuate it.
  • the switch S1 is thus open.
  • the switch S2 is also open. Taking into account the series connection of the switches S1 and S2 outlined in FIG. 5, the micropump P1 can not be activated even if the steam switch 22 is pressed and the switch S2 is thereby closed, since the switch S1 remains open remains.
  • the anti-drip system formed by the micropump P1 is thus activated because the micropump P1 is deactivated or its shut-off valve V is closed and no evaporation liquid W can enter the evaporation chamber 10. This corresponds to the second circuit state explained above.
  • the rotary knob 16 is turned to a position which sets a higher ironing temperature, which is sufficient for steam generation.
  • the knob 16 is located relative to the reference position 0, ie in the second temperature setting range TB2.
  • the switching elements SE1 and SE2 are in the position shown in this drawing relative to the switch S1 and its contact element 38.
  • the large switching element SE1 presses on the contact element 38 (see also FIG. 4), whereby the switch S1 is closed.
  • the switch S2 is closed.
  • both switches S1 and S2 are then closed and the micropump P1 is activated.
  • the anti-drip system formed by the micropump is consequently deactivated because the pump P1 is activated or its shut-off valve V is opened. And evaporation liquid W can be injected into the evaporation chamber 10 by means of the micropump P1.
  • a steam ironing operation can be performed at said higher ironing temperature. This corresponds to the first circuit state explained above.
  • the rotary knob 16 is turned into a position which sets a high ironing temperature which is sufficient for generating steam.
  • the knob 16 is located relative to the reference position 0, ie in the second temperature setting range TB2.
  • the switching elements SE1 and SE2 are in the position shown in this drawing relative to the switch S1 and its contact element 38.
  • the large switching element SE1 continues to press on the contact element 38 (see also FIG. 4), whereby the switch S1 is closed. If now the steam switch 22 is actuated, the switch S2 is in turn closed.
  • both switches S1 and S2 are then closed and the micropump P1 is activated.
  • the anti-drip system formed by the micropump is consequently deactivated because the pump P1 is activated or its shut-off valve V is opened. And evaporation liquid W can be injected into the evaporation chamber 10 by means of the micropump P1. Thus, a steam ironing operation can be performed at said high ironing temperature.
  • the rotary knob 16 is rotated into the cleaning and descaling setting position C (region R).
  • the heater 14 is turned off in this knob position.
  • the vaporization chamber 10 is thus cold, i. the temperature is insufficient to produce steam.
  • the switching elements SE1 and SE2 are in the position shown in this drawing relative to the switch S1 and its contact element 38. In this case, the small switching element SE2 presses on the contact element 38, whereby the switch S1 is closed. If now the steam switch 22 is actuated, then the switch S2 is closed. Taking into account the series circuit outlined in FIG. 5, both switches S1 and S2 are then closed, and the micropump P1 is activated or its shut-off valve V is opened.
  • the anti-dripping system formed by the micropump P1 is consequently deactivated, and although the evaporation chamber 10 is cold, evaporation liquid W can be introduced into the evaporation chamber 10 by means of the micropump P1. This corresponds to the previously discussed third circuit state.
  • the knob 16 is set to a high temperature.
  • the previously introduced cold evaporation liquid W in the evaporation chamber 10 is heated quickly until it boils. Due to the rapid change in temperature, the boiling evaporation liquid W and the resulting steam any limescale deposits are broken in the evaporation chamber 10 and transported through the steam outlet openings 6 from the evaporation chamber 10 and the sole plate 4 or washed out.
  • the invention is not limited to the above embodiment, which is merely illustrative of the gist of the invention.
  • the steam ironing device according to the invention may rather also assume a different form of construction specifically described above.
  • the ironing temperature setting element may have additional temperature setting ranges in addition to the temperature setting ranges explained above. Also, an embodiment which omits the descaling setting position is possible.
  • the invention has been previously described in the context of a steam ironing apparatus using an electric micropump as an anti-drip system or an essential component thereof, it will be understood that the invention also includes embodiments in which the anti-drip system is mechanically formed, e.g. by means of a mechanical shut-off valve blocks or enables the supply of the evaporation liquid in the evaporation chamber.
  • a mechanical anti-drip system may also be coupled (e.g., purely mechanically) to the ironing temperature setting element and may be activatable and deactivatable through or through it.
  • the ironing temperature adjusting element 16 may also be assigned two or more switches.
  • the third circuit state described above can preferably also be independent of a temperature setting range of the knob 16.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Irons (AREA)

Abstract

L'invention concerne un dispositif de repassage (2) à vapeur, notamment un fer à repasser à vapeur ou un poste de repassage à vapeur comprenant: une semelle de fer (4) avec des orifices de sortie de vapeur (6) ; un conteneur (8) pour le liquide à évaporer (W), notamment de l'eau ; un système de génération de vapeur avec une chambre d'évaporation (10) qui est en liaison avec les orifices de sortie de vapeur (6) et dans laquelle le liquide à évaporer (W) peut être introduit de manière sélective depuis le contenant (8) ; un dispositif de chauffage (14) pour chauffer la semelle de fer (4) et/ou la chambre d'évaporation (10) ; un élément (16) d'ajustement de la température du fer ; un élément de commande (22) pour activer et désactiver de manière sélective le système de génération de vapeur (commutateur de vapeur) ; et un système anti-goutte (P1) pour empêcher l'entrée indésirable du liquide à évaporer (W) dans la chambre d'évaporation (10) et donc pour empêcher une sortie indésirable de liquide à évaporer (W) (non évaporé) par les orifices de sortie de vapeur (6). Le dispositif de repassage (2) à vapeur est caractérisé en ce que le système anti-goutte (P1) est accouplé fonctionnellement à l'élément (16) d'ajustement de la température du fer, et peut être activé et désactivé par l'intermédiaire de celui-ci ou par celui-ci.
PCT/EP2008/056829 2007-06-14 2008-06-03 Dispositif de repassage à vapeur avec système anti-goutte Ceased WO2008151966A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
AT08760413T ATE541080T1 (de) 2007-06-14 2008-06-03 Dampfbügelvorrichtung mit anti-tropf-system
ES08760413T ES2377958T3 (es) 2007-06-14 2008-06-03 Dispositivo de plancha de vapor con sistema anti-goteo
EP08760413A EP2158351B1 (fr) 2007-06-14 2008-06-03 Dispositif de repassage à vapeur avec système anti-goutte

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007028013 2007-06-14
DE102007028013.2 2007-06-14

Publications (1)

Publication Number Publication Date
WO2008151966A1 true WO2008151966A1 (fr) 2008-12-18

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Application Number Title Priority Date Filing Date
PCT/EP2008/056829 Ceased WO2008151966A1 (fr) 2007-06-14 2008-06-03 Dispositif de repassage à vapeur avec système anti-goutte

Country Status (4)

Country Link
EP (1) EP2158351B1 (fr)
AT (1) ATE541080T1 (fr)
ES (1) ES2377958T3 (fr)
WO (1) WO2008151966A1 (fr)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2012049585A2 (fr) 2010-10-13 2012-04-19 BSH Bosch und Siemens Hausgeräte GmbH Dispositif de repassage à vapeur
DE102010063081A1 (de) 2010-11-19 2012-05-24 BSH Bosch und Siemens Hausgeräte GmbH Bügeleisen und Bügeleisen-Set
ES2396373A1 (es) * 2010-06-15 2013-02-21 BSH Electrodomésticos España S.A. Plancha de vapor con sistema de limpieza y descalcificación automático.
CN105525500A (zh) * 2016-01-26 2016-04-27 卓力电器集团有限公司 一种手持式压力蒸汽熨斗

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02193698A (ja) * 1989-01-24 1990-07-31 Toshiba Corp アイロン
WO1996023099A1 (fr) * 1995-01-23 1996-08-01 Philips Electronics N.V. Fer a vapeur a refroidissement rapide
US5572810A (en) 1995-08-09 1996-11-12 Black & Decker Inc. Steam iron with rotatable temperature control
WO2001055496A2 (fr) * 2000-01-25 2001-08-02 Koninklijke Philips Electronics N.V. Fer a repasser a vapeur
US6393740B1 (en) 1999-09-01 2002-05-28 Hamilton Beach/Proctor-Silex, Inc. Temperature control and drip valve assembly for a steam iron

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02193698A (ja) * 1989-01-24 1990-07-31 Toshiba Corp アイロン
WO1996023099A1 (fr) * 1995-01-23 1996-08-01 Philips Electronics N.V. Fer a vapeur a refroidissement rapide
US5572810A (en) 1995-08-09 1996-11-12 Black & Decker Inc. Steam iron with rotatable temperature control
US6393740B1 (en) 1999-09-01 2002-05-28 Hamilton Beach/Proctor-Silex, Inc. Temperature control and drip valve assembly for a steam iron
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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2396373A1 (es) * 2010-06-15 2013-02-21 BSH Electrodomésticos España S.A. Plancha de vapor con sistema de limpieza y descalcificación automático.
WO2012049585A2 (fr) 2010-10-13 2012-04-19 BSH Bosch und Siemens Hausgeräte GmbH Dispositif de repassage à vapeur
DE102010063085A1 (de) 2010-10-13 2012-04-19 BSH Bosch und Siemens Hausgeräte GmbH Dampfbügelvorrichtung
DE102010063085B4 (de) * 2010-10-13 2012-08-30 BSH Bosch und Siemens Hausgeräte GmbH Dampfbügelvorrichtung
ES2403784R1 (es) * 2010-10-13 2013-05-30 Bsh Electrodomesticos Espana Dispositivo de planchado a vapor
WO2012049585A3 (fr) * 2010-10-13 2013-06-27 BSH Bosch und Siemens Hausgeräte GmbH Dispositif de repassage à vapeur
DE102010063081A1 (de) 2010-11-19 2012-05-24 BSH Bosch und Siemens Hausgeräte GmbH Bügeleisen und Bügeleisen-Set
ES2387204A1 (es) * 2010-11-19 2012-09-18 BSH Electrodomésticos España S.A. Plancha y conjunto de plancha
DE102010063081B4 (de) * 2010-11-19 2013-09-05 BSH Bosch und Siemens Hausgeräte GmbH Bügeleisen und Bügeleisen-Set
CN105525500A (zh) * 2016-01-26 2016-04-27 卓力电器集团有限公司 一种手持式压力蒸汽熨斗

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ES2377958T3 (es) 2012-04-03
EP2158351B1 (fr) 2012-01-11
ATE541080T1 (de) 2012-01-15

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