EP2952624B1 - Procédé pour contrôler le fonctionnement d'un fer à vapeur - Google Patents

Procédé pour contrôler le fonctionnement d'un fer à vapeur Download PDF

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Publication number
EP2952624B1
EP2952624B1 EP14197640.7A EP14197640A EP2952624B1 EP 2952624 B1 EP2952624 B1 EP 2952624B1 EP 14197640 A EP14197640 A EP 14197640A EP 2952624 B1 EP2952624 B1 EP 2952624B1
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EP
European Patent Office
Prior art keywords
steam
time period
switch
controller
turned
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Active
Application number
EP14197640.7A
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German (de)
English (en)
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EP2952624A1 (fr
Inventor
Yibo Chen
Rui-feng CAI
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.)
Tsann Kuen Zhangzhou Enterprise Co Ltd
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Tsann Kuen Zhangzhou Enterprise Co Ltd
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Publication of EP2952624A1 publication Critical patent/EP2952624A1/fr
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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
    • D06F75/26Temperature control or indicating arrangements
    • 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

Definitions

  • This invention relates to a method for controlling operation of a steam iron, more particularly to a method for controlling amount of steam ejected by the steam iron.
  • a steam iron is usually controlled by a steam switch that enables and disables the steam iron to eject steam.
  • the steam iron continuously ejects steam as long as the steam switch is turned on, and the steam ejected from the steam iron may condense into water on a sole plate of the steam iron.
  • the amount of steam ejected by the steam iron is usually constant, which may make the cloth to be ironed too damp, and thus lengthen time for drying the cloth.
  • WO 01/55496 A2 describes an electric steam iron having an electrically heated soleplate, said soleplate having at least one steam vent, a controllable steam generator for supplying steam to the at least one steam vent, and control means for controlling the steam generator, wherein the steam iron further comprises a temperature sensor means for sensing the temperature of the soleplate, said temperature sensor means in use supplying a temperature dependent signal to the control means and the control means being adapted to activate the steam generator in accordance with a predetermined steam pattern comprising at least a first phase of a first predetermined duration, in which steam is supplied at a substantially constant peak steam rate, and at least a second phase, in which steam is supplied at a substantially constant lower steam rate, ; wherein at least said peak steam rate depends upon the temperature of the soleplate.
  • GB 2 456 303 A describes a steam iron which includes a control device adapted to give an initial steam event through a soleplate, followed by a subsequent steam event of reduced flow rate and/or reduced volume.
  • the iron includes a water tank along with the heatable soleplate.
  • the control device may separate initiation of the initial and subsequent steam events by a determinable time interval. The time interval may be determined by the output of a temperature sensor.
  • the steam events may be a steam burst.
  • the iron is also used in a method of steaming a steam iron on demand by providing an initial steam burst and a subsequent steam emission of reduced flow rate.
  • the steam iron includes a steam generating unit for generating and ejecting steam, a controller for controlling operation of the steam generating unit, and a switch for activating the steam generating unit to eject steam.
  • the method for controlling operation of a steam iron includes the steps of independent method claim 1 or independent method claim 12.
  • step S01 upon the switch 34 being turned on, the controller 33 starts timing a first time period, and enables the pump 32 to draw water to the sole plate 31 to eject a first amount of steam per unit time until the first time period has elapsed.
  • the first time period may vary from 5 to 7 seconds in different embodiments, and preferably, is 6 seconds.
  • the first amount of steam per unit time may be varied from 80g to 150g per minute in different embodiments, and preferably, is 90gperminute.
  • step S02 the controller 33 determines whether the first time period has elapsed. The flow goes to step S03-1 when it is determined that the first time period has elapsed, and goes to step S03-2 when otherwise.
  • step S03-1 the controller 33 determines whether the switch 34 is still turned on when the first time period has elapsed. The flow goes to step S04 when it is determined that the switch 34 is still turned on, and goes to step S05-1 when otherwise. Subsequently, in step S04, the controller 33 enables the pump 32 to draw water to the sole plate 31 to eject a second amount of steam per unit time when the switch 34 is turned on.
  • the second amount of steam per unit time may vary from 30g to 50g per minute in different embodiments, and preferably, is 40g per minute.
  • step S05-1 When the controller 33 determines that the switch 34 is turned off in step S03-1, the controller 33 starts timing a second time period in step S05-1.
  • the second time period is longer than the first time period and may vary from 11 seconds to 13 seconds in different embodiments, and preferably, is 12 seconds.
  • stepS06-1 the controller 33 determines whether the switch 34 is turned on again. The flow goes to step S07-1 when it is determined that the switch 34 is turned on, and step S06-1 is repeated when otherwise.
  • step S07-1 the controller 33 determines whether the second time period has elapsed when the switch 34 is turned on again. When the second time period has not elapsed, the flow goes to step S04. That is to say, the controller 33 enables the pump 32 to draw water to the soleplate 31 to eject the second amount of steam unit time when the switch 34 is turned on again within the second time period. Otherwise, when the controller 33 determines that the second time period has elapsed in step S07-1, the flow goes back to step S01 and the controller 33 re-starts timing the first time period.
  • step S03-2 the controller 33 determines whether the switch 34 is still turned on within the first time period. The flow goes back to step S01 when it is determined that the switch 34 is turned on, and goes to step S05-2 when otherwise. For example, assuming that the first time period is 6 seconds, the switch 34 is turned off when 2 seconds has elapsed, and is turned on again when 5 seconds has elapsed. The controller 33 enables the pump 32 to draw water to the sole plate 31 to output the first amount of steam per unit time for 1 second after the switch 34 is turned on again at the fifth second. Additionally, the controller 33 disables the steam generating unit to eject steam when the switch 34 is turned off.
  • step S05-2 the controller 33 starts timing the second time period when the switch 34 is turned off within the first time period. Subsequent to step S05-2, in step S06-2, the controller 33 determines whether the switch 34 is turned on again. The flow goes to step S07-2 when the switch 34 is turned on again, and step S06-2 is repeated when otherwise. In step S07-2, the controller 33 determines whether the first time period has elapsed when the switch 34 is turned on again. When the first time period has not elapsed, the flow goes back to step S01. Otherwise, the flow goes to step S08 when the first time period has elapsed.
  • step S08 the controller 33 determines whether the second time period has elapsed. When the second time period has not elapsed, the flow goes back to step S04. That is to say, the controller 33 enables the pump 32 to draw water to the sole plate 31 to eject the second amount of steam per unit time when the first time period has elapsed and the switch 34 is turned on again within the second time period. For example, assuming that the first time period is 6 seconds and the second time period is 12 seconds, the switch 34 is turned off when 3 seconds have elapsed, and is turned on again when 6 seconds have elapsed, which starts timing the second time period. As a result, the controller 33 enables the pump 32 to draw water to the sole plate 31 to eject the second amount of steam per unit time.
  • step S08 When it is determined in step S08 that the second time period has elapsed, the flow goes back to step S01, i.e. , the controller 33 enables the steam generating unit to eject the first amount of steam per unit time when the switch 34 is turned on again after the second time period has elapsed.
  • the method for controlling operation of the steam iron 3 enables the steam iron 3 to first eject a relatively large amount of steam, i.e. , the first amount of steam per unit time, to soften the cloth to be ironed. Then, the steam iron 3 ejects the second amount of steam per unit time that is less than the first amount of steam per unit time so as to prevent the cloth from being too damp when the switch 34 is still turned on after the first time period has elapsed.
  • steam ejected by the sole plate 31 in the first time period can evaporate properly while the sole plate 31 irons the cloth.

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

Claims (14)

  1. Procédé pour commander le fonctionnement d'un fer à vapeur, le fer à vapeur comportant une unité de génération de vapeur destinée à générer et à éjecter de la vapeur, un moyen de commande (33) destiné à commander le fonctionnement de l'unité de génération de vapeur, et un interrupteur (34) destiné à activer l'unité de génération de vapeur pour éjecter de la vapeur, le procédé comportant les étapes suivantes consistant à:
    a) lorsque l'interrupteur (34) est activé, commencer, par le moyen de commande (33), le chronométrage d'un premier laps de temps et permettre, par le moyen de commande (33), que l'unité de génération de vapeur éjecte une première quantité de vapeur par temps unitaire jusqu'à ce que soit écoulé le premier laps de temps; et
    b) après que le premier laps de temps est écoulé, permettre, par le moyen de commande (33), que l'unité de génération de vapeur éjecte une deuxième quantité de vapeur par temps unitaire lorsque l'interrupteur (34) est activé, la deuxième quantité de vapeur par temps unitaire étant inférieure à la première quantité de vapeur par temps unitaire;
    caractérisé par le fait que, à l'étape a), lorsque l'interrupteur (34) est désactivé au cours du premier laps de temps, le moyen de commande (33) permet que l'unité de génération de vapeur éjecte la première quantité de vapeur par temps unitaire lorsque l'interrupteur (34) est à nouveau activé au cours du premier laps de temps jusqu'à ce que le premier laps de temps soit écoulé.
  2. Procédé selon la revendication 1, dans lequel, à l'étape a), lorsque l'interrupteur (34) est désactivé au cours du premier laps de temps, le moyen de commande (33) commence le chronométrage d'un deuxième laps de temps, qui est plus long que le premier laps de temps, et permet que l'unité de génération de vapeur éjecte la deuxième quantité de vapeur par temps unitaire lorsque le premier laps de temps est écoulé et que l'interrupteur est à nouveau activé au cours du deuxième laps de temps.
  3. Procédé selon la revendication 2, dans lequel le moyen de commande (33) permet que l'unité de génération de vapeur éjecte la première quantité de vapeur par temps unitaire lorsque l'interrupteur (34) est à nouveau activé après que soit écoulé le deuxième laps de temps.
  4. Procédé selon la revendication 3, dans lequel, après l'étape a), les étapes consistant à:
    lorsque le commutateur (34) est désactivé après que soit écoulé le premier laps de temps, commencer, par le moyen de commande (33), le chronométrage d'un deuxième laps de temps, qui est plus long que le premier laps de temps; et
    permettre, par le moyen de commande (33), que l'unité de génération de vapeur éjecte la deuxième quantité de vapeur par temps unitaire lorsque l'interrupteur (34) est à nouveau activé au cours du deuxième laps de temps.
  5. Procédé selon la revendication 4, dans lequel, lorsque le commutateur (34) est à nouveau activé après que soit écoulé le deuxième laps de temps, le moyen de commande (33) répète l'étape a) et recommence le chronométrage du premier laps de temps.
  6. Procédé selon la revendication 5, dans lequel la première quantité de vapeur par temps unitaire varie de 80g à 150g par minute, et la deuxième quantité de vapeur par temps unitaire varie de 30g à 50g par minute.
  7. Procédé selon la revendication 6, dans lequel la première quantité de vapeur par temps unitaire est de 90g par minute, et la deuxième quantité de vapeur par temps unitaire est de 40g par minute.
  8. Procédé selon la revendication 7, dans lequel le premier laps de temps varie de 5 secondes à 7 secondes.
  9. Procédé selon la revendication 8, dans lequel le premier laps de temps est de 6 secondes.
  10. Procédé selon la revendication 5, dans lequel le deuxième laps de temps varie de 11 secondes à 13 secondes.
  11. Procédé selon la revendication 10, dans lequel le deuxième laps de temps est de 12 secondes.
  12. Procédé pour commander le fonctionnement d'un fer à vapeur, le fer à vapeur comportant une unité de génération de vapeur destinée à générer et à éjecter de la vapeur, un moyen de commande (33) destiné à commander le fonctionnement de l'unité de génération de vapeur, et un interrupteur (34) destiné à activer l'unité de génération de vapeur pour éjecter de la vapeur, le procédé étant caractérisé par les étapes suivantes consistant à:
    A) lorsque l'interrupteur (34) est activé, commencer, par le moyen de commande (33), le chronométrage d'un premier laps de temps et permettre, par le moyen de commande (33), que l'unité de génération de vapeur éjecte une première quantité de vapeur par temps unitaire jusqu'à ce que soit écoulé le premier laps de temps;
    B) lorsque le commutateur (34) est désactivé au cours du premier laps de temps, commencer, par le moyen de commande (33), le chronométrage d'un deuxième laps de temps, qui est plus long que le premier laps de temps; et
    C) lorsque le commutateur (34) est à nouveau activé après que soient écoulés tant le premier laps de temps que le deuxième laps de temps, répéter l'étape A) et recommencer, par le moyen de commande (33), le chronométrage du premier laps de temps.
  13. Procédé selon la revendication 12, dans lequel, à l'étape B), après que soit écoulé le premier laps de temps, permettre, par le moyen de commande (33), que l'unité de génération de vapeur éjecte une deuxième quantité de vapeur par temps unitaire lorsque l'interrupteur (34) est activé, la deuxième quantité de vapeur par temps unitaire étant inférieure à la première quantité de vapeur par temps unitaire.
  14. Procédé selon la revendication 13, dans lequel, à l'étape A), lorsque le commutateur (34) est désactivé au cours du premier laps de temps, le moyen de commande (33) permet que l'unité de génération de vapeur éjecte la première quantité de vapeur par temps unitaire lorsque le commutateur (34) est à nouveau activé au cours du premier laps de temps jusqu'à ce que soit écoulé le premier laps de temps.
EP14197640.7A 2014-06-03 2014-12-12 Procédé pour contrôler le fonctionnement d'un fer à vapeur Active EP2952624B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410242222.4A CN105442288B (zh) 2014-06-03 2014-06-03 蒸汽熨斗的蒸汽释出管控方法

Publications (2)

Publication Number Publication Date
EP2952624A1 EP2952624A1 (fr) 2015-12-09
EP2952624B1 true EP2952624B1 (fr) 2021-12-01

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EP14197640.7A Active EP2952624B1 (fr) 2014-06-03 2014-12-12 Procédé pour contrôler le fonctionnement d'un fer à vapeur

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3418441A1 (fr) 2017-06-20 2018-12-26 Koninklijke Philips N.V. Procédé et dispositif de dosage de l'eau dans une chambre à vapeur
FR3081888B1 (fr) 2018-05-31 2020-05-15 Seb S.A. Appareil de repassage equipe d'un organe de commande de vapeur
FR3081887B1 (fr) 2018-05-31 2020-05-15 Seb S.A. Appareil de repassage equipe d'un organe de commande de vapeur
CN112779748B (zh) * 2019-11-08 2022-06-28 漳州灿坤实业有限公司 即开式蒸汽熨烫装置

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SG83185A1 (en) * 2000-01-25 2001-09-18 Koninkl Philips Electronics Nv Steam iron
DE10225576B4 (de) * 2001-02-10 2007-05-16 Inter Control Koehler Hermann Thermisch gesteuerte Einrichtung zur Betätigung einer Ventilöffnung
CN2556837Y (zh) * 2002-03-01 2003-06-18 顺德市华傲电子有限公司 一种小家电控制器掉电保持电路
EP1702098B1 (fr) * 2003-12-16 2011-03-09 Koninklijke Philips Electronics N.V. Dispositif de repassage a vapeur
FR2891284B3 (fr) * 2005-09-29 2007-07-20 Koninkl Philips Electronics Nv Systeme d'entretien de vetements
FR2895421B1 (fr) * 2005-12-22 2008-06-06 Rowenta Werke Gmbh Fer a repasser comprenant une vanne commandee par un element thermiquement deformable
GB2456303A (en) * 2008-01-08 2009-07-15 Tunbow Electrical Ltd Steam iron with steam control

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EP2952624A1 (fr) 2015-12-09
CN105442288A (zh) 2016-03-30
CN105442288B (zh) 2018-11-09

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