EP3572578B1 - Bügeleisen, das mit einer mit v-förmigen rippen versehenen verdampfungskammer ausgestattet ist - Google Patents

Bügeleisen, das mit einer mit v-förmigen rippen versehenen verdampfungskammer ausgestattet ist Download PDF

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Publication number
EP3572578B1
EP3572578B1 EP19173799.8A EP19173799A EP3572578B1 EP 3572578 B1 EP3572578 B1 EP 3572578B1 EP 19173799 A EP19173799 A EP 19173799A EP 3572578 B1 EP3572578 B1 EP 3572578B1
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EP
European Patent Office
Prior art keywords
iron
bottom wall
steam
vaporization chamber
steam chamber
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.)
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Application number
EP19173799.8A
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English (en)
French (fr)
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EP3572578A1 (de
Inventor
Xavier Chartoire
Jean-Claude GUERY
Gérald LATOUT
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.)
SEB SA
Original Assignee
SEB SA
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Publication date
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Publication of EP3572578A1 publication Critical patent/EP3572578A1/de
Application granted granted Critical
Publication of EP3572578B1 publication Critical patent/EP3572578B1/de
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    • 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
    • D06F75/12Hand irons internally heated by electricity with means for supplying steam to the article being ironed the steam being produced from water supplied to the iron from an external source
    • 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
    • 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
    • D06F75/20Arrangements for discharging the steam to the article being ironed
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F79/00Accessories for hand irons
    • D06F79/02Stands or supports neither attached to, nor forming part of, the iron or ironing board
    • 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

Definitions

  • the present invention relates to the field of ironing devices, and in particular ironing devices comprising irons equipped with vaporization chambers.
  • the water which is introduced into the vaporization chamber at a water injection port accumulates below this water injection port and forms a insulating layer of water on the bottom wall which impairs the vaporization of the water introduced into the vaporization chamber.
  • the present invention aims to remedy all or part of these drawbacks.
  • the technical problem underlying the invention consists in particular of providing an iron making it possible to increase the flow rate of water supply to the vaporization chamber, while avoiding the projection of water droplets on the laundry to be ironed. .
  • the present invention relates to an iron comprising a heating body comprising a vaporization chamber having a bottom wall on which water is intended to flow to produce steam, the heating body comprising a resistance electric heater extending to the periphery of the bottom wall, characterized in that the bottom wall has a domed shape and comprises at least one V-shaped rib configured to channel the water flowing over the bottom wall towards the electric heating element.
  • Such a configuration of the bottom wall of the vaporization chamber makes it possible to direct the water entering the vaporization chamber towards the hottest surfaces of the vaporization chamber, and therefore to promote rapid vaporization of the water entering the vaporization chamber. the vaporization chamber.
  • the configuration of the bottom wall of the vaporization chamber makes it possible to supply the vaporization chamber with a large flow of water, while avoiding the projection of water droplets on the laundry to be ironed.
  • the iron according to the present invention therefore exhibits improved ironing efficiency.
  • the iron may further exhibit one or more of the following characteristics, taken alone or in combination.
  • the bottom wall comprises a plurality of V-shaped ribs arranged in parallel and configured to channel the water flowing on the bottom wall in the direction of the electric heating resistance.
  • the vaporization chamber comprises a first lateral portion and a second lateral portion which is opposite to the first lateral portion
  • the at least one V-shaped rib comprises a first rib portion and a second rib portion which are inclined relative to each other, the first and second rib portions being configured to channel the water flowing over the bottom wall in the direction of the first and second side portions respectively of the vaporization chamber.
  • the first and second rib portions are inclined relative to each other by an angle of inclination greater than 45 °, and for example greater than 90 °.
  • the electric heating resistance has a generally U-shaped shape.
  • the electric heating resistance comprises a first branch extending close to the first lateral portion of the vaporization chamber, and a second branch extending near the second lateral portion of the vaporization chamber.
  • the first rib portion of the at least one V-shaped rib is configured to channel the water flowing over the bottom wall towards the first branch of the resistance electric heater
  • the second rib portion of the at least one V-shaped rib is configured to channel the water flowing over the bottom wall towards the second branch of the electric heater resistance
  • the bottom wall has a convex shape in a transverse direction which extends transversely to the longitudinal direction of the iron.
  • the bottom wall is convex from a first side edge of the bottom wall and up to a second side edge of the bottom wall.
  • At least one V-shaped rib is disposed near a rear end of the bottom wall.
  • the at least one V-shaped rib defines a point oriented towards a front end of the bottom wall.
  • the at least one V-shaped rib has a first and a second end portion, the first and second end portions being further from the front end of the bottom wall than the bottom wall. tip defined by at least one V-shaped rib.
  • the point defined by the at least one V-shaped rib is located substantially in a median longitudinal plane of the iron.
  • the bottom wall is further inclined towards the rear of the vaporization chamber, such that a front part of the bottom wall is raised relative to a rear part of the vaporization chamber. the back wall.
  • the heating body comprises a liquid injection opening opening into a front part of the vaporization chamber, and for example near the front end of the bottom wall.
  • the bottom wall has an apex located substantially below the liquid injection opening.
  • the bottom wall comprises projecting studs.
  • the projecting studs are arranged in V on the back wall.
  • the bottom wall comprises a plurality of subsets of protruding studs, the protruding studs of each subassembly being arranged in a V on the bottom wall.
  • each projecting stud has a height substantially identical to or less than the height of the at least one V-shaped rib.
  • each protruding stud has a generally pyramidal shape.
  • the bottom wall comprises at least two V-shaped ribs arranged parallel and projecting studs arranged between the two V-shaped ribs.
  • the heating body comprises a foundry at least partially delimiting the vaporization chamber.
  • the electric heating resistance is integrated in the foundry.
  • the heating body comprises a closure plate which rests on the foundry, the vaporization chamber being delimited by the foundry and the closure plate.
  • the steam distribution circuit comprises two lateral distribution channels extending on either side of the vaporization chamber and meeting in a front part of the foundry, and at least a through orifice made on the foundry, at least one through orifice opening out on the one hand into at least one of the lateral distribution channels and on the other hand onto a lower face of the foundry.
  • the steam distribution circuit comprises a scale recovery cavity comprising an evacuation orifice closed by a removable plug which is accessible from outside the iron.
  • the iron comprises a scale collecting container which is placed in the scale collecting cavity.
  • the scale recovery container is removable.
  • the scale recovery container is configured to collect scale particles coming from the vaporization chamber, and for example falling by gravity from the vaporization chamber.
  • the scale recovery container is integral with the removable stopper.
  • the scale recovery cavity is arranged at the rear of the vaporization chamber.
  • the discharge orifice is arranged at the rear of the iron.
  • the scale recovery cavity is connected to the vaporization chamber by a connecting opening opening into the rear end of the vaporization chamber.
  • the vaporization chamber comprises two barrier portions extending on either side of the connecting opening and close to the connecting opening, the barrier portions being configured. to limit the introduction of scale particles into the lateral distribution channels.
  • the present invention further relates to an ironing apparatus comprising an iron according to any preceding claim, an iron water tank and a supply circuit fluidly connected to the water tank and configured to supply water to the vaporization chamber.
  • the supply circuit comprises a water conveying duct fluidly connecting the water reservoir to the vaporization chamber.
  • the ironing appliance comprises a base on which the iron is placed during inactive ironing phases.
  • the base encloses the water tank.
  • the supply circuit comprises a supply pump configured to supply the vaporization chamber with water coming from the water tank.
  • the feed pump is integrated in the base.
  • the ironing apparatus comprises a support accessory configured to hold the iron in a predetermined inclined position.
  • the support accessory is configured to hold the iron in a predetermined inclined position in which the ironing sole of the iron is inclined at an angle between 30 ° and 60 °. ° relative to the horizontal, and for example of the order of 45 °.
  • the support accessory comprises a platform adapted to receive the ironing sole of the iron, and a foot pivotally mounted on the platform.
  • the platform comprises an upper surface defining a location on which the iron is able to rest.
  • the upper surface of the platform comprises support pads against which the ironing sole of the iron is intended to rest.
  • the foot is able to occupy a folded position in which the foot is arranged in the plane of the platform. or substantially in the plane of the platform, and an unfolded position in which one end of the platform is raised by the foot.
  • the platform is configured to rest stably on the foot in the unfolded position, forming an angle of between 30 ° and 60 ° with respect to the horizontal.
  • the platform comprises a stop member against which the foot is intended to bear when the foot is in the unfolded position, the stop member being configured to limit the pivoting travel of the foot. the opposite of the platform.
  • the platform has a lower surface opposite the upper surface of the platform, the foot being configured to extend along the lower surface of the platform when the foot is in the folded position. .
  • the base comprises a storage cavity in which the support accessory is removably mounted.
  • the storage cavity is provided on the underside of the base.
  • the platform comprises means for locking the foot configured to lock the foot in the folded position.
  • the means for locking the foot comprise a locking member provided on the platform and movable between a locking position in which the locking member cooperates with the foot so as to keep the foot in the folded position and a position release in which the locking member releases the foot and allows pivoting of the foot in the unfolded position.
  • the locking member may for example be elastically deformable between the respective locking and release positions.
  • the locking member may for example be formed by a locking finger or a locking tab.
  • the base comprises accessory locking means configured to lock the support accessory in the storage cavity.
  • the accessory locking means comprise a locking element provided on the base and movable between a locking position in which the locking element cooperates with the platform so as to maintain the platform in the storage cavity and a release position in which the locking element releases the platform and allows the platform to be withdrawn from the storage cavity.
  • the locking element may for example be elastically deformable between the respective locking and release positions.
  • the accessory locking means may also include a retaining housing provided on the base and configured to receive a retaining member, such as a retaining finger or a retaining tab, provided on the support accessory, and by example on the platform.
  • a retaining member such as a retaining finger or a retaining tab
  • the retaining housing is located opposite the locking element.
  • the figures 1 to 13 show an ironing device 2 which comprises an iron 3 and a base 4 on which the iron 3 can be placed during inactive ironing phases.
  • the ironing appliance 2 further comprises a water tank 5 integrated in the base 4 and which may for example be removable, and a supply circuit fluidly connected to the water tank 5.
  • the supply circuit comprises in particular a water delivery pipe 6 fluidly connecting the water tank 5 to the iron 3, and a feed pump (not visible in the figures) integrated in the base 4 and configured to feed the iron 3 in water from water tank 5.
  • the iron 3 comprises a housing 7 comprising a gripping portion 8 at its upper end, and an ironing sole 9 provided with a substantially flat ironing surface 11 and a plurality of steam outlet orifices 12 opening into the ironing surface 11.
  • the iron 3 also includes a heating body 13 integrated into the lower part of the housing 7, and thermally and mechanically linked to the ironing sole 9.
  • the heating body 13 comprises a foundry 14, for example made of aluminum, and an electric heating resistor 15 bent in a U and integrated in the foundry 14.
  • the heating body 13 also includes a closure plate 16 (visible on the figure 3 ) which rests on the foundry 14, and a vaporization chamber 17, of the instant vaporization type, delimited by the foundry 14 and the closure plate 16.
  • the foundry 14 more particularly comprises a partition 18 going up to the closure plate 16 and laterally delimiting the vaporization chamber 17.
  • the vaporization chamber 17 is at least partly, and for example substantially entirely, coated internally with an anti-heating coating.
  • the vaporization chamber 17 comprises a bottom wall 19 over which water is intended to flow in order to produce steam.
  • the electric heating resistance 15 extends to the periphery of the bottom wall 19, and more particularly comprises a first branch extending close to a first lateral portion 17.1 of the vaporization chamber 17, and a second branch extending near a second lateral portion 17.2 of the vaporization chamber 17 which is opposite to the first lateral portion 17.1.
  • the bottom wall 19 has a convex shape in a transverse direction D1 which extends transversely to the longitudinal direction D2 of the iron 3.
  • the bottom wall 19 is convex from a first lateral edge 21.1 of the wall. bottom 19 and up to a second side edge 21.2 of the bottom wall 19.
  • the bottom wall 19 comprises a first wall portion 19.1 inclined towards the first side edge 21.1 of the bottom wall 19, a second wall portion 19.2 inclined in the direction of the second side edge 21.2 of the bottom wall 19, and a longitudinal ridge 19.3 connecting the first and second wall portions 19.1, 19.2.
  • the longitudinal ridge 19.3 may for example extend in the median longitudinal plane of the iron 3, and have a rounded cross section.
  • the bottom wall 19 is further inclined towards the rear of the vaporization chamber 17, so that a front part 22 of the bottom wall 19 is raised relative to a rear part 23 of the bottom wall 19.
  • the bottom wall 19 also comprises a plurality of V-shaped ribs 24, for example three, arranged in parallel and each configured to channel the water flowing on the bottom wall 19 in the direction of the electric heating resistance 15, and more particularly in the direction of the first and second lateral edges 21.1, 21.2 of the bottom wall 19.
  • V-shaped ribs 24 are arranged near a rear end of the bottom wall 19, and they each define a point oriented towards a front end of the bottom wall 19.
  • the point defined by each V-shaped rib 24 is located substantially in the median longitudinal plane of the iron 3.
  • Each V-shaped rib 24 comprises a first rib portion 24.1 and a second rib portion 24.2 which are inclined with respect to each other by an angle of inclination greater than 45 °, and for example greater than 90 °, and the first and second rib portions 24.1, 24.2 of each V-shaped rib 24 are configured to channel the water flowing over the bottom wall 19 in the direction of the first and second side portions 17.1, 17.2 respectively. of the vaporization chamber 17, and therefore in the direction respectively of the first and second branches of the electric heating resistance 15.
  • the bottom wall 19 also comprises a plurality of projecting studs 25, for example of generally pyramidal shape, making it possible to increase the heat exchange surface of the vaporization chamber 17.
  • the bottom wall 19 comprises a plurality of subassemblies of projecting studs 25, the projecting studs of each subassembly being arranged in a V on the bottom wall 19.
  • each projecting stud 25 has a height substantially identical to or less than the height of each V-shaped rib 24.
  • the wall bottom 19 comprises projecting studs 25 arranged between each pair of adjacent V-shaped ribs.
  • the heating body 13 further comprises a liquid injection opening 26 fluidly connected to the feed pump and opening into a front part of the vaporization chamber 17, and for example near the front end of the wall of the heater. bottom 19.
  • the feed pump is thus configured to feed the vaporization chamber 17 with water coming from the water tank 5.
  • the liquid injection opening 26 is made on the closure plate 16, and opens into the vaporization chamber 17 near the front end of the bottom wall 19, and therefore the electrical resistance. heating 15.
  • the bottom wall 19 has an apex located substantially below the liquid injection opening 26.
  • the ironing apparatus 2 further comprises a steam distribution circuit 27 defined by the foundry 14 and the closure part 16, and fluidly connecting the vaporization chamber 17 to the steam outlet orifices 12, and this so that the vapor generated in the vaporization chamber 17 can flow to the vapor outlet orifices 12.
  • the vapor distribution circuit 27 is at least partially coated on the inside with an anti-calefaction coating.
  • the steam distribution circuit 27 comprises in particular two lateral distribution channels 28 extending on either side of the vaporization chamber 17 and joining at the front end of the heating body 13.
  • Each lateral distribution channel 28 is fluidly connected to the vaporization chamber 17 by a respective side passage opening 29 located at the rear of the vaporization chamber 17.
  • Each side passage opening 29 is advantageously defined in part by a respective barrier wall 30 extending through starting from the bottom wall 19.
  • the barrier walls 30 may for example be substantially parallel to one another, and extend in a longitudinal direction.
  • the steam distribution circuit 27 further comprises one or more through orifices 31 formed on the foundry 14 and each opening on the one hand in at least one of the lateral distribution channels 28 and on the other hand on a lower face of the foundry 14, at the level of steam distribution cavities (not visible in the figures) arranged opposite the steam outlet openings 12 of the ironing sole 9.
  • the steam distribution circuit 27 also includes a scale recovery cavity 32 comprising an evacuation orifice 33 closed by a removable plug 34 (visible on the figure 2 ) which is accessible from the outside of the iron 3.
  • a removable plug 34 visible on the figure 2
  • the discharge orifice 33 opens into a rear surface of the housing 7 of the iron 3.
  • the scale recovery cavity 32 is arranged at the rear of the vaporization chamber 17, and is connected to the vaporization chamber 17 by a connecting opening 35 opening into the rear end of the vaporization chamber 17.
  • the two barrier walls 30 extend on either side of the connection opening 35 and close to the connection opening 35, and are configured to limit the introduction of scale particles into the channels distribution side 28.
  • the scale recovery cavity 32 is advantageously located in a part of the housing 7 which is cantilevered behind the ironing sole 9 when the iron 3 rests on the ironing sole 9.
  • the iron 3 further comprises a scale collecting container 36 which is mounted, for example removably, in the scale collecting cavity 32.
  • the scale collecting container 36 is configured to collect scale particles from it. of the vaporization chamber 17, and falling by gravity from the vaporization chamber 17 when the ironing sole 9 is inclined relative to the horizontal, and for example when the iron 3 rests on the base 4.
  • the scale recovery container 36 is integral with the removable cap 34.
  • the ironing appliance 2 also comprises a support accessory 37 removably mounted in a storage cavity 38 formed on a lower face of the base 4.
  • the support accessory 37 configured to hold the iron 3 in a predetermined inclined position in which the ironing sole 9 of the iron 3 is inclined at an angle of between 30 ° and 60 ° with respect to the horizontal, and for example of the order of 45 °.
  • Such a support accessory 37 allows the iron 3 to be tilted significantly during an automatic cleaning operation of the iron 3 and therefore to promote detachment of the scale particles from the walls of the vaporization chamber 17 and the recovery. of these particles in the scale collecting container 36 which is disposed in the scale collecting cavity 32.
  • the support accessory 37 ensures efficient automatic cleaning of the iron 3. Further, since the support accessory 37 is stored in a storage cavity 38 provided on the base 4, a user can easily access the support accessory 37 when he wishes to perform an automatic cleaning operation of the iron 3, and easily store it and quickly at the end of the automatic cleaning operation.
  • the support accessory 37 more particularly comprises a platform 39 adapted to receive the ironing sole 9 of the iron 3, and a foot 40 pivotally mounted on the platform 39 and able to occupy a folded position in which the foot 40 is placed. substantially in the plane of the platform 39, and an unfolded position in which one end of the platform 39 is raised by the foot 40.
  • a configuration of the foot 40 makes it possible to greatly limit the size of the support accessory 37 when the foot 40 is in the folded position, and therefore to allow its assembly in a storage cavity 38 of small dimensions which does not affect the compactness of the base 4.
  • the platform 39 is advantageously configured to rest stably on the foot 40 in the unfolded position, forming an angle of between 30 ° and 60 ° with respect to the horizontal.
  • the platform 39 comprises an upper surface defining a location E on which the iron 3 is able to rest, and comprising support pads 41 against which the sole is intended to bear.
  • ironing 9 iron ironing 3.
  • the platform 39 is advantageously provided with a lower support part 42 extending transversely to the upper surface of the platform 39, and configured to cooperate with a rear part of the ironing sole 9.
  • the platform 39 also comprises a stop member 43 against which the foot 40 is intended to come into abutment when the latter is in the unfolded position.
  • the stop member 43 is thus configured to limit the pivoting travel of the foot 40 away from the platform 39.
  • the stop member 43 projects from the lower surface of the platform 39.
  • the platform 39 further includes foot locking means configured to lock the foot 40 in the folded position. Such means for locking the foot in particular allow easy mounting of the support accessory 37 in the storage cavity 38, and furthermore to prevent any unwanted unfolding of the foot 40.
  • the locking means of the foot comprise a locking member 44, such as a locking finger or a locking tab, provided on the platform 39 and movable between a locking position in which the locking member 44 cooperates with the foot 40 so as to maintain the foot 40 in the folded position and a release position in which the locking member 44 releases the foot 40 and allows pivoting of the foot 40 towards the unfolded position.
  • the locking member 44 protrudes from the lower surface of the platform 39, and is elastically deformable between the respective locking and release positions.
  • the base 4 also comprises accessory locking means configured to lock the support accessory 37 in the storage cavity 38.
  • accessory locking means configured to lock the support accessory 37 in the storage cavity 38.
  • the accessory locking means comprise a locking element 45, such as a locking finger or a locking tab, provided on the base 4 and movable between a locking position.
  • the locking element 45 cooperates with the platform 39 so as to maintain the platform 39 in the storage cavity 38 and a release position in which the locking element 45 releases the platform 39 and allows a withdrawal from the platform 39 out of the storage cavity 38.
  • the locking element 45 may for example be elastically deformable between the respective locking and release positions.
  • the accessory locking means also comprise a retaining housing 46 provided on the base 4 and configured to receive a retaining member 47, such as a retaining finger or a retaining tab, provided on the support accessory 37 , and for example on the platform 39.
  • a retaining member 47 such as a retaining finger or a retaining tab
  • the retaining housing 46 is located opposite the locking element 45.
  • the figures 14 and 15 show an iron 3 according to an alternative embodiment of the invention which differs from that shown in the figures 1 to 13 essentially in that the upper ends of the barrier walls 30 are located near the closure plate 16, and therefore define lateral passage openings 29 of small dimensions.
  • Such a configuration of the barrier walls 30 makes it possible to further limit the introduction of scale particles into the lateral distribution channels 28.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Irons (AREA)

Claims (14)

  1. Bügeleisen (3), umfassend einen Heizkörper (13), der eine Verdampfungskammer (17) umfasst, die eine Bodenwand (19) aufweist, auf der Wasser dazu vorgesehen ist abzulaufen, um Dampf zu erzeugen, wobei der Heizkörper (13) einen heizenden elektrischen Widerstand (15) umfasst, der sich am Umfang der Bodenwand (19) erstreckt,
    dadurch gekennzeichnet, dass die Bodenwand (19) eine gewölbte Form aufweist und mindestens eine V-förmige Rippe (24) umfasst, die konfiguriert ist, um das Wasser, das auf der Bodenwand (19) abläuft, in Richtung des heizenden elektrischen Widerstands (15) zu kanalisieren.
  2. Bügeleisen (3) nach Anspruch 1, wobei die Verdampfungskammer (17) einen ersten seitlichen Abschnitt (17.1) und einen zweiten seitlichen Abschnitt (17.2), der dem ersten seitlichen Abschnitt (17.1) gegenüberliegt, umfasst, und die mindestens eine V-förmige Rippe (24) einen ersten Rippenabschnitt (24.1) und einen zweiten Rippenabschnitt (24.2), die in Bezug aufeinander geneigt sind, umfasst, wobei der erste und zweite Rippenabschnitt (24.1, 24.2) konfiguriert sind, um das Wasser, das auf der Bodenwand (19) abläuft, jeweils in Richtung des ersten und zweiten seitlichen Abschnitts (17.1, 17.2) der Verdampfungskammer (17) zu kanalisieren.
  3. Bügeleisen (3) nach Anspruch 1 oder 2, wobei die Bodenwand (19) eine gewölbte Form in einer Querrichtung (D1), die sich quer zur Längsrichtung (D2) des Bügeleisens (3) erstreckt, aufweist.
  4. Bügeleisen (3) nach einem der Ansprüche 1 bis 3, wobei die mindestens eine V-förmige Rippe (24) nahe einem hinteren Ende der Bodenwand (19) angeordnet ist.
  5. Bügeleisen (3) nach einem der Ansprüche 1 bis 4, wobei die mindestens eine V-förmige Rippe (24) eine Spitze definiert, die in Richtung eines vorderen Endes der Bodenwand (19) ausgerichtet ist.
  6. Bügeleisen (3) nach einem der Ansprüche 1 bis 5, wobei die Bodenwand (19) weiter derart zur Hinterseite der Verdampfungskammer (17) geneigt ist, dass ein vorderer Teil (22) der Bodenwand (19) in Bezug auf einen hinteren Teil (23) der Bodenwand (19) angehoben ist.
  7. Bügeleisen (3) nach einem der Ansprüche 1 bis 6, wobei der Heizkörper (13) eine Flüssigkeitseinspritzöffnung (26) aufweist, die in einen vorderen Teil der Verdampfungskammer (17) mündet.
  8. Bügeleisen (3) nach Anspruch 7, wobei die Bodenwand (19) einen Scheitel aufweist, der im Wesentlichen unter der Flüssigkeitseinspritzöffnung (26) liegt.
  9. Bügeleisen (3) nach einem der Ansprüche 1 bis 8, wobei die Bodenwand (19) vorragende Stifte (25) umfasst.
  10. Bügeleisen (3) nach Anspruch 9, wobei die vorragenden Stifte (25) als V auf der Bodenwand (19) angeordnet sind.
  11. Bügeleisen (3) nach einem der Ansprüche 9 oder 10, wobei die Bodenwand (19) mindestens eine zweite V-förmige Rippe (24) umfasst, parallel zur mindestens einen V-förmigen Rippe angeordnet, wobei gewisse der vorragenden Stifte (25) zwischen den zwei V-förmigen Rippen angeordnet sind.
  12. Bügeleisen (3) nach einem der Ansprüche 1 bis 11, das weiter umfasst:
    - eine Bügelsohle (9), die eine Bügelfläche (11) und mindestens eine Dampfaustrittsöffnung (12), die in die Bügelfläche (11) mündet, umfasst und
    - einen Dampfverteilungskreis (27), der die Verdampfungskammer (17) mit der mindestens einen Dampfaustrittsöffnung (12) verbindet und in dem der von der Verdampfungskammer (17) erzeugte Dampf dazu vorgesehen ist abzulaufen.
  13. Bügeleisen (3) nach Anspruch 12, wobei der Dampfverteilungskreis (27) einen Kesselsteinrückgewinnungshohlraum (32) umfasst, der eine Auslassöffnung (33) umfasst, die von einem abnehmbaren Verschluss (34), der von der Außenseite des Bügeleisens (3) zugänglich ist, verschlossen wird.
  14. Bügeleinrichtung (2), umfassend ein Bügeleisen (3) nach einem der vorstehenden Ansprüche, einen Wasserbehälter (5) und einen Versorgungskreis, der fluidisch mit dem Wasserbehälter (5) verbunden ist und konfiguriert ist, um die Verdampfungskammer (17) mit Wasser zu versorgen.
EP19173799.8A 2018-05-25 2019-05-10 Bügeleisen, das mit einer mit v-förmigen rippen versehenen verdampfungskammer ausgestattet ist Active EP3572578B1 (de)

Applications Claiming Priority (1)

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FR1854447A FR3081477B1 (fr) 2018-05-25 2018-05-25 Fer a repasser equipe d'une chambre de vaporisation pourvue de nervures en forme de v

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EP3572578B1 true EP3572578B1 (de) 2020-12-30

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CN213061454U (zh) * 2020-06-23 2021-04-27 漳州灿坤实业有限公司 一种熨斗的电热盘结构和熨斗

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Publication number Priority date Publication date Assignee Title
CH387584A (de) * 1961-01-20 1965-02-15 Jura Elektroapparate Fab Dampfbügeleisen
FR2412640A1 (fr) * 1977-12-21 1979-07-20 Seb Sa Fer a repasser electrique a vapeur
DE4414221A1 (de) * 1994-04-23 1995-10-26 Braun Ag Dampfbügeleisen
CN102168364B (zh) * 2011-04-18 2013-02-06 松下·万宝(广州)电熨斗有限公司 一种蒸汽电熨斗
FR2979924B1 (fr) * 2011-09-09 2013-10-11 Seb Sa Appareil electromenager comportant un circuit de distribution de vapeur
FR3010420B1 (fr) * 2013-09-10 2015-09-25 Seb Sa Appareil electromenager de repassage comportant un filtre destine a retenir des particules de tartre transportees par la vapeur
CN204589678U (zh) * 2015-02-09 2015-08-26 傑腾工业股份有限公司 蒸汽熨斗装置

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EP3572578A1 (de) 2019-11-27
CN110528250A (zh) 2019-12-03
FR3081477A1 (fr) 2019-11-29
FR3081477B1 (fr) 2020-04-24
CN210420658U (zh) 2020-04-28

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