EP4121591B1 - Glättungsgerät mit einem geneigten glättungskopf - Google Patents

Glättungsgerät mit einem geneigten glättungskopf Download PDF

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Publication number
EP4121591B1
EP4121591B1 EP21708032.4A EP21708032A EP4121591B1 EP 4121591 B1 EP4121591 B1 EP 4121591B1 EP 21708032 A EP21708032 A EP 21708032A EP 4121591 B1 EP4121591 B1 EP 4121591B1
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EP
European Patent Office
Prior art keywords
smoothing
steam
suction
treatment surface
steaming
Prior art date
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Active
Application number
EP21708032.4A
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English (en)
French (fr)
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EP4121591C0 (de
EP4121591A1 (de
Inventor
Stéphanie Compard
Dominique Gelus
Valentin JAVELLE
Morane MANGEANT
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SEB SA
Original Assignee
SEB SA
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Publication date
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Publication of EP4121591A1 publication Critical patent/EP4121591A1/de
Application granted granted Critical
Publication of EP4121591C0 publication Critical patent/EP4121591C0/de
Publication of EP4121591B1 publication Critical patent/EP4121591B1/de
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    • D—TEXTILES; PAPER
    • D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F73/00—Apparatus for smoothing or removing creases from garments or other textile articles by formers, cores, stretchers, or internal frames, with the application of heat or steam 
    • D—TEXTILES; PAPER
    • D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F87/00—Apparatus for moistening or otherwise conditioning the article to be ironed or pressed

Definitions

  • the present invention relates to a steaming apparatus configured to steam clothes or linens, and in particular to a steam steaming apparatus.
  • the document CA2279702 discloses a steam ironing apparatus comprising a base intended to rest stably on a horizontal support, and a ironing head supported by the base, the ironing head comprising a treatment surface on which a garment to be ironed is intended to be placed, the treatment surface comprising at least one steam emission zone provided with steam outlet holes.
  • the steaming device described in the document CA2279702 is configured such that a wrinkle removal of a garment to be wrinkled is accomplished by manually applying the garment to be wrinkled to the treatment surface while the wrinkle removal apparatus rests on the base and sliding the garment to be wrinkled across the treatment surface.
  • CN106835657B B discloses a steaming apparatus having the characteristics of the preamble of claim 1.
  • Such a configuration of the steaming apparatus makes it possible to steam a garment without a user having to handle and move the steaming head relative to the garment to be steamed, which greatly facilitates the steaming operation, particularly for users who have difficulty handling a portable steaming head.
  • the steaming device described in the document CA2279702 has several types of steaming heads of different shapes, the ergonomics of using such a steaming device are unsatisfactory due in particular to the horizontal orientation of the steaming heads when they are assembled on the base.
  • the present invention aims to remedy all or part of these drawbacks.
  • the technical problem underlying the invention consists in particular in providing a steaming device which is of simple and economical structure, while presenting increased ergonomics of use.
  • the present invention relates to a steaming appliance comprising a base intended to rest stably on a horizontal support, such as a table, and a steaming head supported by the base, the steaming head comprising a treatment surface on which a garment to be steamed is intended to be placed, the treatment surface comprising at least one steam emission zone provided with at least one steam outlet hole, the steaming appliance being configured such that a steaming of a garment to be steamed is carried out by manually applying the garment to be steamed to the treatment surface while the steaming appliance rests on the base and by sliding the garment to be steamed on said treatment surface, characterized in that the steaming head is arranged prominently on the base and is inclined towards a front face of the steaming appliance.
  • Such a configuration of the steaming head and in particular the fact that it is arranged prominently on the base, makes it possible to thread a shoulder of a shirt to be steamed around the steaming head, and therefore to facilitate a shirt steaming operation.
  • the fact that the steaming head is inclined towards a front face of the steaming appliance makes it possible to bring the treatment surface closer to a user placed in front of the steaming appliance and to orient the treatment surface towards the user, which greatly facilitates the movement of a garment to be steamed on the treatment surface, and therefore the steaming of such a garment.
  • Such an orientation of the treatment surface also makes it possible to avoid a user having to bend his wrists too much to move a garment to be steamed on the treatment surface.
  • the configuration of the steaming head of the steaming appliance according to the present invention gives this steaming appliance significantly increased user-friendliness compared to that of the steaming appliances of the prior art.
  • the steaming appliance may further have one or more of the following characteristics, taken alone or in combination.
  • the steaming apparatus is configured such that the steaming of a garment to be steamed is carried out by sliding the garment to be steamed on the treatment surface in a back and forth movement.
  • the steaming head extends substantially in an extension plane which is inclined at an angle of between 5° and 45° relative to a horizontal plane, advantageously between 10° and 30° and preferably of the order of 20°, when the base rests on a horizontal support.
  • the treatment surface is substantially flat, that is to say flat or slightly curved.
  • the center of gravity of the steaming head and the center of gravity of the base are substantially aligned along a vertical axis when the base rests on a horizontal support.
  • Such a configuration of the steaming apparatus ensures great stability for the latter, in particular during steaming operations.
  • the steaming head and the treatment surface each have a substantially triangular-shaped outline.
  • a vertex of each of the substantially triangular contours of the steaming head and the treatment surface is oriented towards a rear face of the steaming apparatus.
  • the treatment surface comprises a heating plate, for example metallic, defining at least partially, and for example entirely, the at least one steam emission zone, at least one steam outlet hole of the at least one steam emission zone being provided in said heating plate.
  • a heating plate for example metallic, defining at least partially, and for example entirely, the at least one steam emission zone, at least one steam outlet hole of the at least one steam emission zone being provided in said heating plate.
  • the at least one steam emission zone is provided with several steam outlet holes.
  • the heating plate is arranged in a middle part of the treatment surface.
  • Such a configuration of the treatment surface makes it possible to limit the risks of burns to a user when handling the garment to be steamed.
  • the heating plate is centered relative to a median plane, also called the median anteroposterior plane, of the treatment surface, and for example relative to a median plane of the steaming head.
  • a median plane also called the median anteroposterior plane
  • the heating plate is spaced from a peripheral edge of the steaming head.
  • each of the first and second steam outlet holes is provided in the heating plate.
  • the first and second steam outlet holes extend substantially in the median plane of the treatment surface.
  • the first steam outlet hole is a first steam outlet slot
  • the second steam outlet hole is a second steam outlet slot.
  • the first and second steam outlet slots extend substantially parallel to each other.
  • the first and second steam outlet slots may for example be substantially aligned with each other.
  • each of the first and second steam outlet slots has a length of between 7 and 15 cm, and for example between 8 and 12 cm, and advantageously of the order of 10 cm, and has a width of between 1 and 10 mm and preferably of the order of 3 mm.
  • the expression “front” relates to a front part of the steaming appliance which is located close to the user when the latter uses the steaming appliance
  • the expression “rear” relates to a rear portion of the steamer that is located away from the user when the user is using the steamer.
  • the steaming appliance comprises a water tank and a supply circuit fluidically connected to the water tank and configured to supply water to the at least one steam generator.
  • the water tank is arranged in the base.
  • the supply circuit comprises a supply pump, preferably electric, configured to supply the at least one steam generator with water from the water tank.
  • the at least one steam generator is arranged in the base. According to an alternative embodiment, the at least one steam generator could however be arranged in the steaming head.
  • the steaming apparatus comprises a first steam generator configured to supply steam to the first steam distribution circuit and a second steam generator configured to supply steam to the second steam distribution circuit.
  • the first and second steam generators are formed by a heating body comprising the first and second instantaneous vaporization chambers.
  • the heating body comprises a first water injection opening opening into the first instantaneous vaporization chamber, and a second water injection opening opening into the second instantaneous vaporization chamber.
  • the heating body comprises at least one electrical heating resistor.
  • the steaming head comprises a heating element on which the heating plate rests, the first steam distribution circuit comprising a first steam flow channel which is delimited by the heating element and the heating plate and which is fluidically connected to the first steam generator, and advantageously to the first instantaneous vaporization chamber, the second steam distribution circuit comprising a second steam flow channel which is delimited by the heating element and the heating plate and which is fluidically connected to the second steam generator, and advantageously to the second instantaneous vaporization chamber.
  • the first and second steam flow channels ensure vaporization of any water drops present in the steam flows flowing in the first and second steam flow channels, and further prevent the projection of water drops onto the garment to be steamed.
  • the first steam distribution circuit comprises a first steam conduit, for example flexible, fluidly connected to the first instantaneous vaporization chamber
  • the second steam distribution circuit comprises a second steam conduit, for example flexible, fluidly connected to the second instantaneous vaporization chamber.
  • the first vapor flow channel is fluidly connected to the first vapor conduit
  • the second vapor flow channel is fluidly connected to the second vapor conduit
  • the at least one steam emission zone comprises at least a first steam emission zone comprising the first steam outlet hole, and a second steam emission zone comprising the second steam outlet hole, each of the first and second steam emission zones having a width, measured in an anteroposterior direction, of between 7 and 15 cm, and for example between 8 and 12 cm, and advantageously of the order of 10 cm.
  • the width of each of the first and second steam emission zones corresponds substantially to the maximum width of a sleeve of a garment to be steamed.
  • the treatment surface further comprises at least one suction zone provided with several suction orifices.
  • Such a configuration of the treatment surface, and in particular, the presence of suction orifices, makes it possible on the one hand to press and hold the garment to be steamed against the treatment surface and on the other hand to stretch the garment to be steamed.
  • the specific configuration of the treatment surface of the steaming apparatus according to the present invention therefore facilitates the steaming of a garment to be steamed, since the user only has to handle and move the garment relative to the cleaning head, while improving the quality of such steaming.
  • the presence of suction orifices makes it possible to prevent the steam coming out of the at least one steam outlet hole from escaping towards the user, and from threatening the physical integrity of the user when the garment is not applied against the steam outlet holes.
  • the specific configuration of the treatment surface of the steaming appliance according to the present invention gives the latter increased safety of use.
  • suction holes ensures that air passes through the garment to be steamed during its steaming, which induces on the one hand a cooling of the garment to be steamed which promotes the condensation of steam on the latter and thus improves the quality of the steaming carried out, and on the other hand a drying of the garment to be steamed which allows a user to be able to wear the steamed garment immediately after the steaming operation.
  • the steaming apparatus simultaneously ensures an emission of steam through a garment to be steamed and an aspiration of air through the latter during a steaming operation, the quality of the steaming of this garment is significantly increased compared to that obtained with steaming apparatuses of the prior art.
  • the steaming apparatus comprises a first suction circuit and a second suction circuit which is distinct from the first suction circuit, the suction orifices comprising at least one suction orifice which is fluidically connected to the first suction circuit and at least one suction orifice which is fluidically connected to the second suction circuit.
  • the suction ports comprise a first set of suction ports which are fluidically connected to the first suction circuit and a second set of suction ports which are fluidically connected to the second suction circuit.
  • the suction ports of the first set of suction ports are arranged in a front half of the treatment surface, and the suction ports of the second set suction ports are arranged in a rear half of the treatment surface.
  • the steaming appliance comprises first vacuum means configured to vacuum the first suction circuit, and second vacuum means which are distinct from the first vacuum means and which are configured to vacuum the second suction circuit.
  • the first means for creating a vacuum comprise a first motor-driven fan and the second means for creating a vacuum comprise a second motor-driven fan.
  • the first depression means comprise a first fan and the second depression means comprise a second fan, the first and second fans being driven in rotation by the same motor.
  • the first and second suction circuits respectively comprise a first exhaust outlet and a second exhaust outlet which are arranged on a rear face of the steaming appliance.
  • the suction orifices comprise at least two suction orifices which are arranged on either side of the at least one steam emission zone.
  • Such a configuration of the at least one suction zone makes it possible to prevent the steam from burning the user's hands when handling the garment to be steamed.
  • the first set of suction ports comprises a first subset of suction ports and a second subset of suction ports which are arranged on either side of the at least one vapor emission zone
  • the second set of suction ports comprises a third subset of suction ports suction and a fourth subset of suction ports which are arranged on either side of the at least one vapor emission zone.
  • the first and second subsets of suction ports are arranged on either side of the heating plate, and the third and fourth subsets of suction ports are arranged on either side of the heating plate.
  • the first set of suction ports comprises a plurality of suction ports located near and along the heating plate, and for example along a first lateral edge of the heating plate
  • the second set of suction ports comprises a plurality of suction ports located near and along the heating plate, and for example along a second lateral edge of the heating plate.
  • the first set of suction ports comprises a first series of suction ports arranged in the heating plate in the vicinity of, and for example along, the first steam outlet hole
  • the second set of suction ports comprises a second series of suction ports arranged in the heating plate in the vicinity of, and for example along, the second steam outlet hole.
  • the suction ports of the first series of suction ports are substantially aligned, and the suction ports of the second series of suction ports are substantially aligned.
  • the first and second series of suction orifices are arranged on either side of the median plane of the treatment surface.
  • the distance between the first steam outlet hole and each suction port of the first series of suction ports is less than 2 cm, and advantageously less than 1 cm and for example of the order of 3 mm
  • the distance between the second steam outlet hole and each suction port of the second series of suction ports is less than 2 cm, and advantageously less than 1 cm and for example of the order of 3 mm.
  • at least some, and advantageously all, of the suction ports of the first series of suction ports are inclined towards the first steam outlet hole.
  • at least some, and advantageously all, of the suction ports of the second series of suction ports are inclined towards the second steam outlet hole.
  • the first suction circuit comprises a pair of first suction chambers which are provided in the steaming head, and a pair of first suction ducts which are fluidically connected to the first vacuum means and which each open into a respective first suction chamber
  • the second suction circuit comprises a pair of second suction chambers which are provided in the steaming head, and a pair of second suction ducts which are fluidically connected to the second vacuum means and which each open into a respective second suction chamber.
  • the first suction chambers are arranged on either side of the heating plate, and the second suction chambers are arranged on either side of the heating plate.
  • the first suction chambers are arranged in a front part of the steaming head and the second suction chambers are arranged in a rear part of the steaming head.
  • the suction ports of the first subset of suction ports are fluidly connected to one of the first suction chambers
  • the suction ports of the second subset of suction ports are fluidly connected to the other of the first suction chambers
  • the suction ports of the third subset of suction ports are fluidly connected to one of the second suction chambers
  • the suction ports of the fourth subset of suction ports are fluidly connected to the other of the second suction chambers.
  • the suction ports of the first series of suction ports are fluidically connected to one of the first suction chambers, and the suction ports of the second series of suction ports are fluidically connected to one of the second suction chambers.
  • the at least one suction zone comprises a first suction zone and a second suction zone which are arranged on either side of the at least one steam emission zone.
  • the sum of the passage sections of the suction orifices corresponds substantially to the sum of the passage sections of the first and second suction conduits.
  • the steaming head has a maximum width of between 10 and 35 cm, and advantageously of the order of 20 cm.
  • the base has a maximum width of between 15 and 40 cm, and advantageously of the order of 30 cm.
  • the base has a substantially square-shaped outline.
  • the steaming appliance has a height of between 20 and 40 cm, the treatment surface being advantageously more than 20 cm from the support surface of a horizontal support when the base rests on said horizontal support.
  • the base comprises handles located in the vicinity of a lower surface of the base.
  • the steaming appliance comprises at least one condensate recovery device.
  • the at least one condensate recovery device is configured to reinject the recovered condensates into the water tank supplying the at least one steam generator.
  • the first suction circuit comprises a first condensate recovery device configured to recover condensates formed in the first suction circuit, advantageously formed upstream of the first condensate recovery device and for example in the first suction ducts and/or the first suction chambers
  • the second suction circuit comprises a second condensate recovery device configured to recover condensates formed in the second suction circuit, advantageously formed upstream of the second condensate recovery device and for example in the second suction ducts and/or the second suction chambers.
  • the first suction circuit comprises a first connecting conduit connecting the first suction conduits to a first condensate recovery chamber of the first condensate recovery device, and a second connecting conduit connecting the first condensate recovery chamber to the first vacuum means
  • the second suction circuit comprises a third connecting conduit connecting the second suction conduits to a second condensate recovery chamber of the second condensate recovery device, and a fourth connecting conduit connecting the second condensate recovery chamber to the second vacuum means.
  • the invention also relates to a method of steaming a garment using the apparatus as previously described, in which the steaming of the garment is carried out by manually applying the garment to be steamed on the treatment surface while the steaming apparatus rests stably on the base and by sliding the garment to be steamed on said treatment surface.
  • the steaming appliance 2 comprises a base 3 which is intended to rest stably on a horizontal support, and a steaming head 4 which is supported by the base 3 and which comprises a treatment surface 5 on which a garment to be steamed is intended to be placed while the steaming appliance 2 rests on the base 3.
  • the steaming apparatus 2 is configured such that steaming of a garment to be steamed is carried out by manually applying the garment to be steamed to the treatment surface 5 and sliding the garment to be steamed over the treatment surface 5, for example in a back and forth movement.
  • the base 3 has a substantially square-shaped contour
  • the steaming head 4 and the treatment surface 5 each have a substantially triangular-shaped contour.
  • a vertex of each of the substantially triangular contours of the steaming head 4 and the treatment surface 5 is oriented towards a rear face of the steaming appliance 2.
  • the treatment surface 5 may be substantially flat or curved.
  • the steaming head 4 is arranged prominently on the base 3.
  • the base 3 comprises a base body 6 on which the steaming head 4 rests, and the base body 6 converges towards the steaming head 4 such that the steaming head 4 projects laterally relative to the base body 6.
  • Such a configuration of the steaming head 4 makes it possible to easily slip a shoulder of a shirt to be steamed around the steaming head 4.
  • the steaming device 2 may for example have a height of between 20 and 40 cm, and the treatment surface 5 may advantageously be more than 20 cm from the support surface of a horizontal support when the base 3 rests on the horizontal support.
  • the steaming head 4 may for example have a maximum width of between 10 and 35 cm, and advantageously of the order of 20 cm, and the base 3 may for example have a maximum width of between 15 and 40 cm, and advantageously of the order of 30 cm.
  • the center of gravity of the steaming head 4 and the center of gravity of the base 3 are substantially aligned along a vertical axis when the base 3 rests on a horizontal support.
  • the steaming head 4 is inclined towards a front face of the steaming appliance 2, and extends substantially in an extension plane Pe (see figure 3 ) which is inclined at an angle of between 5° and 45° relative to a horizontal plane, and preferably of the order of 20°, when the base 3 rests on a horizontal support.
  • the or each normal to the treatment surface 5 is oriented upwards or is inclined at an angle of between 0° and 45° relative to a vertical axis, and preferably of the order of 20°, in the direction of a front face of the steaming appliance 2.
  • the treatment surface 5 comprises at least one steam emission zone provided with at least one steam outlet hole.
  • the treatment surface 5 comprises a first steam emission zone 7.1 comprising a first steam outlet hole 8.1, and a second steam emission zone 7.2 comprising a second steam outlet hole 8.2.
  • the first steam outlet hole 8.1 is arranged in a front half of the treatment surface 5
  • the second steam outlet hole 8.2 is arranged in a rear half of the treatment surface 5.
  • the first steam outlet hole 8.1 is a first steam outlet slot
  • the second steam outlet hole 8.2 is a second steam outlet slot.
  • the first and second steam outlet slots are aligned with each other and extend in the median plane of the treatment surface 5, and also in the median plane of the steaming head 4.
  • Each of the first and second steam outlet slots may have a length of between 7 and 15 cm, and for example between 8 and 12 cm, and advantageously of the order of 10 cm.
  • the length of each of the first and second steam outlet slots corresponds substantially to the maximum width of a sleeve of a garment to be steamed.
  • the treatment surface 5 comprises a heating plate 9 which defines the first and second steam emission zones 7.1, 7.2, and which may for example be metallic.
  • the first and second steam outlet holes 8.1, 8.2 are advantageously provided in the heating plate 9.
  • the heating plate 9 is arranged in a median portion of the treatment surface 5, and is spaced from a peripheral edge of the steaming head 4.
  • the heating plate 9 is centered relative to the median plane P of the treatment surface 5.
  • the steaming device 2 is advantageously configured such that, under conditions of use, the treatment surface 5 has a temperature greater than 110°C at the heating plate 9, in order to avoid the formation of condensates on the treatment surface 5.
  • the steaming head 4 advantageously comprises a heating element 10 on which the heating plate 9 rests.
  • the heating element 10 is more particularly configured to heat the heating plate 9.
  • the heating element 10 can advantageously integrate a resistive heating element 10.1.
  • the steaming device 2 further comprises a first steam distribution circuit 11 which is fluidically connected to the first steam outlet hole 8.1. and which is configured to supply steam to the first steam outlet hole 8.1, and a second steam distribution circuit 12 which is fluidically connected to the second steam outlet hole 8.2 and which is configured to supply steam to the second steam outlet hole 8.2, the second steam distribution circuit 12 being distinct from the first steam distribution circuit 11.
  • the steaming appliance 2 also comprises at least one steam generator which is configured to independently supply the first and second steam distribution circuits 11, 12.
  • the steaming appliance 2 comprises a first steam generator 13 which is configured to supply steam to the first steam distribution circuit 11 and a second steam generator 14 which is configured to supply steam to the second steam distribution circuit 12.
  • the first and second steam generators 13, 14 are arranged in the base 3.
  • the first and second steam generators 13, 14 could be arranged in the steaming head 4.
  • the steaming appliance 2 further comprises a water tank 15, for example arranged in the base 3, and a supply circuit 16 which is fluidically connected to the water tank 15 and which is configured to supply the first and second steam generators 13, 14 with water.
  • the supply circuit 16 comprises a supply pump 17 configured to supply the first and second steam generators 13, 14 with water coming from the water tank 15.
  • the first and second steam generators 13, 14 respectively comprise a first instantaneous vaporization chamber 13.1 and a second instantaneous vaporization chamber 14.1 which are each configured to be supplied with water from the water tank 15, and which are respectively configured to supply steam to the first and second steam distribution circuits 11, 12.
  • the first and second steam generators 13, 14 are formed by a heating body 18 comprising the first and second instantaneous vaporization chambers 13.1, 14.1.
  • the heating body 18 comprises a first water injection opening 19 opening into the first instantaneous vaporization chamber 13.1, and a second water injection opening 21 opening into the second instantaneous vaporization chamber 14.1.
  • the first and second water injection openings 19, 21 are connected to the supply circuit 16.
  • the heating body 18 further comprises an electric heating resistor 22.
  • the heating body 18 also comprises a first steam discharge opening 23 fluidly connected to the first instantaneous vaporization chamber 13.1, and a second steam discharge opening 24 fluidly connected to the second instantaneous vaporization chamber 14.1.
  • the heating body 18 comprises a casting 25 in which the electric heating resistor 22 is integrated, and a closing plate 26 which rests on the casting 25.
  • the casting 25 and the closing plate 26 delimit the first and second instantaneous vaporization chambers 13.1, 14.1.
  • the first steam distribution circuit 11 comprises a first steam flow channel 27 which is delimited by the heating element 10 and the heating plate 9, and a first steam conduit (not visible in the figures), for example flexible and with an internal diameter of the order of 5 mm, which fluidically connects the first steam flow channel 27 to the first instantaneous vaporization chamber 13.1.
  • the first steam conduit is more particularly configured to connect the first steam discharge opening 23 to a first steam injection opening 28 provided on the heating element 10 and opening into the first steam flow channel 27.
  • the first steam flow channel 27 comprises a first steam flow portion 27.1 comprising a plurality of baffles and a second steam flow portion 27.2 which is substantially rectilinear and which is located opposite the first steam outlet hole 8.1.
  • the first steam injection opening 28 opens more particularly into an upstream portion of the first steam flow channel 27.
  • the second steam distribution circuit 12 comprises a second steam flow channel 29 which is delimited by the heating element 10 and the heating plate 9, and a second steam conduit (not visible in the figures), for example flexible and with an internal diameter of the order of 5 mm, which fluidically connects the second steam flow channel 29 to the second instantaneous vaporization chamber 14.1.
  • the second steam conduit is more particularly configured to connect the second steam discharge opening 24 to a second steam injection opening 31 provided on the heating element 10 and opening into the second steam flow channel 29.
  • the second steam flow channel 29 comprises a first steam flow portion 29.1 comprising a plurality of baffles and a second steam flow portion 29.2 which is substantially rectilinear and which is located opposite the second steam outlet hole 8.2.
  • the second steam injection opening 31 opens more particularly into an upstream portion of the second steam flow channel 29.
  • the treatment surface 5 further comprises at least one suction zone provided with at least one suction orifice.
  • the treatment surface 5 comprises a first suction zone 32 and a second suction zone 33 which are arranged on either side of the median plane P of the treatment surface 5, and more precisely on either side of the two steam emission zones 7.1, 7.2, and which are each provided with several suction orifices.
  • the steaming apparatus 2 comprises a first suction circuit 34 which is fluidically connected to a first set 35 of suction orifices provided on the treatment surface 5, and a second suction circuit 36 which is distinct from the first suction circuit 34 and which is fluidically connected to a second set 37 of suction orifices provided on the treatment surface 5.
  • the suction orifices of the first set 35 of suction orifices are arranged in a front half of the treatment surface 5, and the suction orifices of the second set 37 of suction orifices are arranged in a rear half of the treatment surface 5.
  • the separation between the first and second sets 35, 37 is shown diagrammatically in the figure 2 by the separation axis S.
  • the steaming appliance 2 also comprises first vacuum means configured to vacuum the first suction circuit 34, and second vacuum means which are distinct from the first vacuum means and which are configured to vacuum the second suction circuit 36.
  • first vacuum means comprise a first motor-driven fan 38 which is arranged in the base 3
  • second vacuum means comprise a second motor-driven fan 39 which is also arranged in the base 3.
  • the first suction circuit 34 comprises a pair of first suction chambers 41.1, 41.2 which are provided in the steaming head 4 and which are arranged on either side of the heating plate 9, and a pair of first suction ducts 42.1, 42.2 which are fluidically connected to the first vacuum means and which open respectively into the first suction chambers 41.1, 41.2
  • the second suction circuit 36 comprises a pair of second suction chambers 43.1, 43.2 which are provided in the steaming head 4 and which are arranged on either side of the heating plate 9, and a pair of second suction ducts 44.1, 44.2 which are fluidically connected to the first vacuum means and which open respectively into the first suction chambers 41.1, 41.2. fluidly connected to the second vacuum means and which open respectively into the second suction chambers 43.1, 43.2.
  • the first suction chambers 41.1, 41.2 are arranged in a front part of the steaming head 4, and the second suction chambers 43.1, 43.2 are arranged in a rear part of the steaming head 4.
  • the treatment surface 5 comprises (see figure 4 ) two side plates 45.1, 45.2, advantageously made of plastic, remaining cold and non-dangerous, which are arranged on either side of the heating plate 9, each of the side plates 45.1, 45.2 partially delimiting one of the first suction chambers 41.1, 41.2 and one of the second suction chambers 43.1, 43.2.
  • the first and second suction circuits 34, 36 respectively comprise a first exhaust outlet 46 and a second exhaust outlet 47 which are arranged on a rear face of the steaming appliance 2, and more particularly on a rear face of the base body 6.
  • the first set 35 of suction ports comprises a first subset 48 of suction ports and a second subset 49 of suction ports which are arranged on either side of the first steam emission zone 7.1, and more precisely on either side of the heating plate 9
  • the second set 37 of suction ports comprises a third subset 51 of suction ports and a fourth subset 52 of suction ports which are arranged on either side of the second steam emission zone 7.2, and more precisely on either side of the heating plate 9.
  • the suction ports of the first subset 48 and of the third subset 51 are formed in the side plate 45.1
  • the suction ports of the second subset 49 and of the fourth subassembly 52 are provided in the side plate 45.2.
  • suction ports of the first subassembly 48 open into the first suction chamber 41.1 and the suction ports of the second subassembly 49 open into the first suction chamber 41.2, while the suction ports of the third subassembly 51 open into the second suction chamber 43.1, and the suction ports of the fourth subassembly 52 open into the second suction chamber 43.2.
  • the second subassembly 49 comprises a plurality of suction ports located near and along the heating plate 9, and advantageously along a first lateral edge 9.1 of the heating plate 9, and the third subassembly 51 comprises a plurality of suction ports located near and along the heating plate 9, and advantageously along a second lateral edge 9.2 of the heating plate 9.
  • the first set 35 further comprises a first series 53 of suction ports provided in the heating plate 9 in the vicinity of and along the first steam outlet hole 8.1
  • the second set 37 of suction ports comprises a second series 54 of suction ports provided in the heating plate 9 in the vicinity of and along the second steam outlet hole 8.2.
  • the suction ports of the first series 53 are substantially aligned
  • the suction ports of the second series 54 are also substantially aligned.
  • the first and second series 53, 54 are arranged on either side of the median plane P of the treatment surface 5.
  • the distance between the first steam outlet hole 8.1 and each suction port of the first series 53 is advantageously less than 1 cm and for example of the order of 3 mm, and the distance between the second steam outlet hole 8.2 and each suction port of the second series 54 is also advantageously less than 1 cm and for example of the order of 3 mm.
  • the suction ports of the first series 53 are fluidically connected to the first suction chamber 41.1, while the suction ports of the second series 54 are fluidically connected to the second suction chamber 43.2.
  • the first suction circuit 34 comprises a plurality of first connecting channels 55 provided on the heating element 10 and each configured to fluidically connect a respective suction port of the first series 53 with the first suction chamber 41.1, and a plurality of second connecting channels 56 provided on the heating element 10 and each configured to fluidically connect a respective suction port of the second series 54 with the second suction chamber 43.2.
  • the sum of the passage sections of all the suction orifices provided on the treatment surface 5 corresponds substantially to the sum of the passage sections of the first and second suction ducts 42.1, 42.2, 44.1, 44.2, and substantially to the sum of the passage sections of the first and second suction chambers 41.1, 41.2, 43.1, 43.2.
  • the first suction circuit 34 further comprises a first condensate recovery device 57 configured to recover condensates formed in the first suction circuit 34, and for example in the first suction ducts 42.1, 42.2 and/or the first suction chambers 41.1, 41.2
  • the second suction circuit 36 further comprises a second condensate recovery device 58 configured to recover condensates formed in the second suction circuit 36, and for example in the second suction ducts 44.1, 44.2 and/or the second suction chambers 43.1, 43.2.
  • each of the first and second condensate recovery devices 57, 58 is configured to reinject the recovered condensates into the water tank 15 configured to supply water to the first and second steam generators 13, 14.
  • the first condensate recovery device 57 comprises a first condensate recovery chamber 59 provided with a first condensate discharge opening 61 opening into the water tank 15
  • the second condensate recovery device 58 comprises a second condensate recovery chamber (not visible in the figures) provided with a second condensate discharge opening (not visible in the figures) opening into the water tank 15.
  • the first and/or second condensate recovery devices may advantageously comprise a filter, preferably removable, to prevent the hole from becoming clogged and the water in the tank from becoming contaminated by tissue fibrils.
  • the first suction circuit 34 comprises a first connecting conduit 62 connecting the first suction conduits 42.1, 42.2 to the first condensate recovery chamber 59, and a second connecting conduit 63 connecting the first condensate recovery chamber 59 to the first vacuum means
  • the second suction circuit 36 comprises a third connecting conduit 64 connecting the second suction conduits 44.1, 44.2 to the second condensate recovery chamber, and a fourth connecting conduit 65 connecting the second condensate recovery chamber to the second vacuum means.
  • the steaming appliance 2 further comprises a control unit 66 which is configured in particular to control the operation of the first and second steam generators 13, 14, the first and second motor fans 38, 39, the heating element 10 and the feed pump 17.
  • the control of the operation of the first and second motor fans 38, 39 could be carried out by pressing a suction control button provided on the base 3.
  • the treatment surface 5 could comprise one or more presence sensors configured to automatically detect the presence of a garment to be steamed on the treatment surface 5, and the control unit 66 could be configured to control the operation of the first and second steam generators 13, 14 and the first and second motor-driven fans 38, 39 as a function of the detection of the presence of a garment on the treatment surface 5.
  • the steaming appliance 2 could include user presence detection, for example for an eco-energy mode, to activate the steam and the suction only in the presence of the user.
  • the latter could comprise a steam control pedal intended to be actuated by the foot of a user when the latter wishes to spray steam through the first and second steam outlet holes 8.1, 8.2.
  • first and second steam generators 13, 14 could be formed by two heating bodies distinct from each other.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)
  • Irons (AREA)
  • Commercial Cooking Devices (AREA)

Claims (10)

  1. Glättungseinrichtung (2), umfassend einen Sockel (3), der dazu bestimmt ist, stabil auf einem horizontalen Träger zu ruhen, und einen von dem Sockel (3) getragenen Glättungskopf (4), wobei der Glättungskopf (4) eine Behandlungsoberfläche (5) umfasst, auf der ein zu glättendes Kleidungsstück bestimmt ist, angeordnet zu werden, wobei die Behandlungsoberfläche (5) mindestens einen Dampfemissionsbereich umfasst, der mit mindestens einem Dampfaustrittsloch (8.1, 8.2) versehen ist, wobei die Glättungseinrichtung (2) derart konfiguriert ist, dass eine Glättung eines zu glättenden Kleidungsstücks durchgeführt wird, indem das zu glättende Kleidungsstück von Hand auf die Behandlungsoberfläche (5) aufgebracht wird, wenn die Glättungseinrichtung (2) auf dem Sockel (3) ruht, und das zu glättende Kleidungsstück auf die Behandlungsoberfläche (5) geschoben wird, wobei der Glättungskopf (4) auf hervorstehende Weise auf dem Sockel (3) angeordnet ist und in Richtung einer vorderen Fläche der Glättungseinrichtung (2) geneigt ist, wobei der Sockel (3) einen Sockelkörper (6) umfasst, auf dem der Glättungskopf (4) ruht, wobei die Behandlungsoberfläche (5) weiter einen mit mehreren Aspirationsöffnungen versehenen Aspirationsbereich (32, 33) umfasst, dadurch gekennzeichnet, dass der Sockelkörper (6) in Richtung des Glättungskopfes (4) konvergiert und der Glättungskopf (4) bezogen auf den Sockelkörper (6) seitlich herausragt, und wobei, wenn der Sockel (3) auf einem horizontalen Träger ruht, die oder jede Normale zu der Behandlungsoberfläche (5) nach oben orientiert ist oder um einen Winkel zwischen 0° und 45° bezogen auf eine vertikale Achse in Richtung der vorderen Fläche der Glättungseinrichtung (2) geneigt ist, und dadurch, dass die Aspirationsöffnungen mindestens zwei Aspirationsöffnungen umfassen, die beiderseits des mindestens einen Dampfemissionsbereichs angeordnet sind.
  2. Glättungseinrichtung (2) nach Anspruch 1, wobei der Glättungskopf sich im Wesentlichen in einer Erstreckungsebene erstreckt, die bezogen auf eine horizontale Ebene um einen Winkel zwischen 5° und 45° und vorteilhafterweise zwischen 10° und 30° geneigt ist, wenn der Sockel (3) auf einem horizontalen Träger ruht.
  3. Glättungseinrichtung (2) nach einem der Ansprüche 1 bis 2, wobei die Behandlungsoberfläche (5) im Wesentlichen eben ist.
  4. Glättungseinrichtung (2) nach einem der Ansprüche 1 bis 3, wobei der Schwerpunkt des Glättungskopfes (4) und der Schwerpunkt des Sockels (3) entlang einer vertikalen Achse ausgerichtet sind, wenn der Sockel (3) auf einem horizontalen Träger ruht.
  5. Glättungseinrichtung (2) nach einem der Ansprüche 1 bis 4, wobei der Glättungskopf (4) und die Behandlungsoberfläche (5) jeweils eine im Wesentlichen dreieckige Kontur aufweisen.
  6. Glättungseinrichtung (2) nach Anspruch 5, wobei ein Scheitelpunkt von jeder der im Wesentlichen dreieckigen Konturen des Glättungskopfes (4) und der Behandlungsoberfläche (5) zu einer hinteren Fläche der Glättungseinrichtung orientiert ist.
  7. Glättungseinrichtung (2) nach einem der Ansprüche 1 bis 6, wobei die Behandlungsoberfläche (5) eine Heizplatte (9) umfasst, die zumindest teilweise den mindestens einen Dampfemissionsbereich definiert, wobei mindestens ein Dampfaustrittsloch des mindestens einen Dampfemissionsbereichs in der Heizplatte (9) ausgebildet ist.
  8. Glättungseinrichtung (2) nach Anspruch 7, wobei die Heizplatte (9) in einem mittleren Teil der Behandlungsoberfläche (5) angeordnet ist.
  9. Glättungseinrichtung (2) nach einem der Ansprüche 1 bis 8, wobei die Glättungseinrichtung mindestens eine Kondensate-Rückgewinnungsvorrichtung (57, 58) umfasst.
  10. Verfahren zur Glättung eines Kleidungsstücks mithilfe der Einrichtung nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Glättung des Kleidungsstücks durchgeführt wird, indem das zu glättende Kleidungsstück von Hand auf die Behandlungsoberfläche (5) aufgebracht wird, während die Glättungseinrichtung (2) stabil auf dem Sockel (3) ruht und indem das zu glättende Kleidungsstück auf der Behandlungsoberfläche (5) geschoben wird.
EP21708032.4A 2020-03-19 2021-03-02 Glättungsgerät mit einem geneigten glättungskopf Active EP4121591B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR2002716A FR3108341B1 (fr) 2020-03-19 2020-03-19 Appareil de défroissage à vapeur muni d’une tête de défroissage inclinée
PCT/EP2021/055224 WO2021185571A1 (fr) 2020-03-19 2021-03-02 Appareil de defroissage a vapeur muni d'une tete de defroissage inclinee

Publications (3)

Publication Number Publication Date
EP4121591A1 EP4121591A1 (de) 2023-01-25
EP4121591C0 EP4121591C0 (de) 2024-12-04
EP4121591B1 true EP4121591B1 (de) 2024-12-04

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EP21708032.4A Active EP4121591B1 (de) 2020-03-19 2021-03-02 Glättungsgerät mit einem geneigten glättungskopf

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EP (1) EP4121591B1 (de)
CN (1) CN115315554B (de)
FR (1) FR3108341B1 (de)
WO (1) WO2021185571A1 (de)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2284313A (en) * 1941-04-11 1942-05-26 Albert J Weber Steam puff iron
US3733723A (en) * 1971-09-07 1973-05-22 Matsushita Electric Industrial Co Ltd Steamer
CA2279702C (en) 1999-08-05 2004-10-12 James Yoshiki Imada Garment steamer
CN104831510B (zh) * 2015-05-19 2017-06-30 宁波凯波集团有限公司 蒸汽喷射强度可调的手持蒸汽刷
CN106480693B (zh) * 2016-11-21 2018-10-02 宁波凯波集团有限公司 一种超大蒸汽量的蒸汽发生器及多功能蒸汽刷
CN106835657B (zh) * 2016-12-20 2019-01-29 广州视源电子科技股份有限公司 一种熨烫方法及熨烫装置
FR3072100B1 (fr) * 2017-10-05 2020-07-31 Seb Sa Appareil de defroissage equipe d'une chambre de vaporisation munie d'un orifice de nettoyage

Also Published As

Publication number Publication date
CN115315554B (zh) 2025-05-06
EP4121591C0 (de) 2024-12-04
EP4121591A1 (de) 2023-01-25
WO2021185571A1 (fr) 2021-09-23
CN115315554A (zh) 2022-11-08
FR3108341B1 (fr) 2022-04-29
FR3108341A1 (fr) 2021-09-24

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