EP1441175B1 - Process and apparatus for the generation of steam for fabric care - Google Patents

Process and apparatus for the generation of steam for fabric care Download PDF

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Publication number
EP1441175B1
EP1441175B1 EP20030027669 EP03027669A EP1441175B1 EP 1441175 B1 EP1441175 B1 EP 1441175B1 EP 20030027669 EP20030027669 EP 20030027669 EP 03027669 A EP03027669 A EP 03027669A EP 1441175 B1 EP1441175 B1 EP 1441175B1
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Prior art keywords
control pulses
operating temperature
water
vaporiser
generating
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German (de)
French (fr)
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EP1441175A3 (en
EP1441175A2 (en
Inventor
Dietmar Berghänel
Nikolai Koustov
Hansjörg Lampe
Hans-Joachim Klug
Dieter Schmidt
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Electrolux Home Products Corp NV
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Electrolux Home Products Corp NV
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B1/00Methods of steam generation characterised by form of heating method
    • F22B1/28Methods of steam generation characterised by form of heating method in boilers heated electrically
    • F22B1/284Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22DPREHEATING, OR ACCUMULATING PREHEATED, FEED-WATER FOR STEAM GENERATION; FEED-WATER SUPPLY FOR STEAM GENERATION; CONTROLLING WATER LEVEL FOR STEAM GENERATION; AUXILIARY DEVICES FOR PROMOTING WATER CIRCULATION WITHIN STEAM BOILERS
    • F22D5/00Controlling water feed or water level; Automatic water feeding or water-level regulators
    • F22D5/26Automatic feed-control systems

Definitions

  • the invention relates to a method and a device for generating steam for laundry care.
  • an evaporator which operates according to the so-called boiler method and has a tank for liquid to be evaporated. There is provided a means for automatically supplying liquid into the tank. In order to keep the liquid to be evaporated at the lowest possible level and still have an uninterrupted flow Ensuring steam generation includes a level control which controls replenishment of liquid to be evaporated into the tank as a function of the temperature of the liquid in the tank.
  • the object of the invention is to eliminate the disadvantages of the prior art mentioned above, which occur in particular in steam generators, which operates on the water heater principle.
  • a method and a device are to be specified with which reliably droplet-free superheated steam can be produced for the treatment of laundry.
  • the evaporator is cyclically fed in each case so much water that, depending on the operating temperature of the water completely evaporated and thus a drip-free superheated steam can be made available.
  • the proposed method is not susceptible to interference. To control the amount of water supplied to the evaporator, no mechanical elements in contact with the water are needed.
  • the proposed method is universal. It can be easily adapted to the particular performance of an evaporator.
  • control pulses are generated at a constant frequency. This simplifies the technical implementation of the procedure. Furthermore, it is expedient that no control pulses are generated below a predetermined operating temperature. This always ensures the generation of a drip-free superheated steam.
  • the measurement signal is generated using a temperature-dependent resistor or a thermocouple.
  • a DC voltage increasing with increasing working temperature can be generated as the measuring signal.
  • Such a DC voltage can be implemented technically without great effort in the desired control pulses.
  • an electromagnetic valve can be opened or a pump can be controlled. For a particularly simple water supply is possible.
  • the ratio of the frequencies of the first and the second pulse sequence is about 20: 1.
  • the frequency of the first pulse sequence may advantageously be 10 Hz.
  • the first and second pulse trains may be formed by sawtooth pulses.
  • the sequence of control pulses is formed by rectangular pulses. This allows precise control of the water supply device.
  • a device for generating steam for laundry care is provided with an evaporator and an associated water supply device, a device for generating a measuring signal which corresponds to a working temperature prevailing in the evaporator, a device for generating a sequence of control pulses having a pulse width corresponding to the working temperature, a device for controlling the water supply device by means of the control pulses, so that the evaporator with increasing working temperature an increasing amount of water per unit time is supplied.
  • the proposed device consists of few parts. It is easy to produce, relatively robust and prone to interference.
  • the device for generating a measurement signal may expediently have a temperature-dependent resistor or a thermocouple. This makes it possible in a simple manner to provide a DC voltage corresponding to the working temperature.
  • the device for generating the control pulses expediently comprises a programmable logic control circuit.
  • the programmable logic control circuit is advantageously programmed so that rectangular pulses are generated as control pulses whose pulse width corresponds to the working temperature. Furthermore, it is expedient that the control pulses are generated at a constant frequency.
  • the control circuit may include means for adjusting the operating temperature range to be considered for the generation of control pulses.
  • the proposed control circuit is relatively easy to implement. It can be provided cheaply.
  • the water supply device expediently has an electromagnetic valve or an electric water pump.
  • electromechanical components are reliable and can be easily controlled by means of control pulses.
  • the evaporator, the water supply device and the stored-program control circuit are accommodated in the housing of a household laundry drier. It can be provided, preferably designed as a riser, steam supply line from the evaporator to a laundry room surrounded by a rotatable laundry drum.
  • a household tumble dryer is not only suitable for drying but also for treating laundry with superheated steam. It can thus be cleaned in particular odorous laundry without having to be washed separately.
  • Fig. 1 shows a block diagram of a device according to the invention for controlling an amount of water to be supplied to an evaporator.
  • the amount of water supplied per unit time is regulated as a function of the operating temperature of the evaporator.
  • thermocouple 1 For measuring the working temperature of a conventional (not shown here) evaporator, a thermocouple 1 is provided, which is connected to a first comparator 2. An AC voltage generator 3 is followed by a level regulator 4, which is connected on the output side to the other input of the first comparator 2. On the output side, the first comparator 2 is connected to an input of a second comparator 6 with the interposition of an integrator 5.
  • a clock generator 7 is connected to the other input of the second comparator 6 with the interposition of a differentiating element 8.
  • a switching device 9 e.g. a relay, an electromagnetic valve, a water pump or the like connected.
  • the function of the device is as follows:
  • the thermal voltage generated by the thermocouple 1 (see Fig. 2 lit. d) is supplied to the first comparator 2.
  • the AC voltage generator 3 generates an AC voltage of eg 10 Hz, which in the downstream level controller 4 in a sawtooth (see Fig. 2 lit. c) is also converted to a frequency of 10 Hz and then also the first comparator 2 is supplied.
  • the in Fig. 2 lit. e schematically indicated alternating voltage generated with a duty cycle that corresponds to the measured operating temperature.
  • the AC voltage is converted into a DC voltage, which is inversely proportional to the measured operating temperature (see Fig. 2 lit. f).
  • This DC voltage is compared in the second comparator 6 with the sawtooth voltage generated by the clock generator 7 and the downstream differentiator 8 lit. b ( Fig. 2 ).
  • the in Fig. 2 under lit. g shown control pulses output at the output of the second comparator 6.
  • the control pulses are rectangular pulses.

Description

Die Erfindung betrifft ein Verfahren und eine Vorrichtung zur Erzeugung von Wasserdampf für die Wäschepflege.The invention relates to a method and a device for generating steam for laundry care.

Nach dem Stand der Technik kommen Vorrichtungen zum Erzeugen von Wasserdampf z. B. in Espresso-Maschinen zum Einsatz. Dabei ist ein Verdampfer vorgesehen, dessen Arbeitstemperatur mit einem Thermostat geregelt wird. Dem Verdampfer wird entweder manuell oder automatisch Wasser zugeführt. Der erzeugte Heißdampf ist nicht tropfenfrei; er eignet sich nicht zur Behandlung von Wäsche.According to the prior art devices come to produce water vapor z. B. in espresso machines used. In this case, an evaporator is provided, whose working temperature is controlled by a thermostat. The evaporator is fed either manually or automatically water. The hot steam produced is not drip-free; it is not suitable for the treatment of laundry.

Des Weiteren ist es auch bekannt, die dem Verdampfer zugeführte Menge an Wasser mittels eines Schwimmerschalters zu regeln. Eine solche mechanische Regelung ist insbesondere bei Wasser mit einem hohem Kalkgehalt störanfällig. Es kann durch Kalkablagerungen zum Verklemmen des Schwimmers kommen. Außerdem kann auch mit einer solchen Regelung kein zur Behandlung von Wäsche geeigneter tropfenfreier Heißdampf erzeugt werden.Furthermore, it is also known to regulate the amount of water supplied to the evaporator by means of a float switch. Such a mechanical control is susceptible to failure, especially in the case of water with a high lime content. It can come through limescale to jamming of the float. In addition, even with such a control no suitable for the treatment of laundry drip-free superheated steam can be generated.

Aus der WO96/32607 A1 ist ein Verdampfer bekannt, der entsprechend dem so genannten Boilerverfahren arbeitet und einen Tank für zu verdampfende Flüssigkeit aufweist. Es ist eine Einrichtung zur automatischen Zufuhr von Flüssigkeit in den Tank vorgesehen. Um die zu verdampfende Flüssigkeit auf einem möglichst niedrigen Niveau zu halten und dennoch eine ununterbrochene Dampferzeugung zu gewährleisten, ist eine Niveausteuerung umfasst, die ein Nachfüllen von zu verdampfender Flüssigkeit in den Tank in Abhängigkeit von der Temperatur der im Tank befindlichen Flüssigkeit steuert.From the WO96 / 32607 A1 an evaporator is known which operates according to the so-called boiler method and has a tank for liquid to be evaporated. There is provided a means for automatically supplying liquid into the tank. In order to keep the liquid to be evaporated at the lowest possible level and still have an uninterrupted flow Ensuring steam generation includes a level control which controls replenishment of liquid to be evaporated into the tank as a function of the temperature of the liquid in the tank.

Aufgabe der Erfindung ist es, die eingangs erwähnten Nachteile nach dem Stand der Technik zu beseitigen, die insbesondere bei Dampferzeugern auftreten, die nach dem Durchlauferhitzerprinzip arbeitet. Es sollen insbesondere ein Verfahren und eine Vorrichtung angegeben werden, mit denen zuverlässig tropfenfreier Heißdampf zur Behandlung von Wäsche erzeugt werden kann.The object of the invention is to eliminate the disadvantages of the prior art mentioned above, which occur in particular in steam generators, which operates on the water heater principle. In particular, a method and a device are to be specified with which reliably droplet-free superheated steam can be produced for the treatment of laundry.

Diese Aufgabe wird durch die Merkmale der Ansprüche 1 und 12 gelöst. Zweckmäßige Ausgestaltungen ergeben sich aus den Merkmalen der Ansprüche 2 bis 11 und 13 bis 20.This object is solved by the features of claims 1 and 12. Advantageous embodiments result from the features of claims 2 to 11 and 13 to 20.

Nach Maßgabe der Erfindung ist ein Verfahren zur Erzeugung von Wasserdampf für die Wäschepflege mit folgenden Schritten vorgesehen:

  1. a) Erzeugen eines Messsignals, welches zu einer in einem Verdampfer herrschenden Arbeitstemperatur korrespondiert,
  2. b) Erzeugen einer Abfolge von Steuerimpulsen unter Verwendung des Messsignals, wobei eine Impulsbreite der Steuerimpulse zur Arbeitstemperatur korrespondiert, und
  3. c) Ansteuern einer Wasserzuführvorrichtung mittels der Steuerimpulse, so dass dem Verdampfer mit zunehmender Arbeitstemperatur eine zunehmende Menge an Wasser pro Zeiteinheit zugeführt wird.
According to the invention, a method for the production of steam for laundry care is provided with the following steps:
  1. a) generating a measurement signal which corresponds to a working temperature prevailing in an evaporator,
  2. b) generating a sequence of control pulses using the measurement signal, wherein a pulse width of the control pulses corresponds to the working temperature, and
  3. c) driving a Wasserzuführvorrichtung by means of the control pulses, so that the evaporator with increasing operating temperature, an increasing amount of water per unit time is supplied.

Mit dem vorgeschlagenen Verfahren wird dem Verdampfer taktweise jeweils so viel Wasser zugeführt, dass in Abhängigkeit von dessen Arbeitstemperatur das Wasser vollständig verdampft und damit ein tropfenfreier Heißdampf zur Verfügung gestellt werden kann. Das vorgeschlagene Verfahren ist unanfällig gegenüber Störungen. Zur Steuerung der Menge des dem Verdampfer zugeführten Wassers werden keine mit dem Wasser in Kontakt befindlichen mechanischen Elemente benötigt..Das vorgeschlagene Verfahren ist universell. Es lässt sich ohne großen Aufwand an die jeweilige Leistung eines Verdampfers anpassen.With the proposed method, the evaporator is cyclically fed in each case so much water that, depending on the operating temperature of the water completely evaporated and thus a drip-free superheated steam can be made available. The proposed method is not susceptible to interference. To control the amount of water supplied to the evaporator, no mechanical elements in contact with the water are needed. The proposed method is universal. It can be easily adapted to the particular performance of an evaporator.

Nach einer Ausgestaltung werden die Steuerimpulse mit konstanter Frequenz erzeugt. Das vereinfacht die technische Umsetzung des Verfahrens. Weiter ist es zweckmäßig, dass unterhalb einer vorgegebenen Arbeitstemperatur keine Steuerimpulse erzeugt werden. Das gewährleistet stets die Erzeugung eines tropfenfreien Heißdampfs.According to one embodiment, the control pulses are generated at a constant frequency. This simplifies the technical implementation of the procedure. Furthermore, it is expedient that no control pulses are generated below a predetermined operating temperature. This always ensures the generation of a drip-free superheated steam.

Weiter hat es sich als zweckmäßig erwiesen, dass das Messsignal unter Verwendung eines temperaturabhängigen Widerstands oder eines Thermoelements erzeugt wird. In diesem Fall kann als Messsignal eine mit zunehmender Arbeitstemperatur zunehmende Gleichspannung erzeugt werden. Eine solche Gleichspannung lässt sich technisch ohne großen Aufwand in die gewünschten Steuerimpulse umsetzen.Furthermore, it has proved to be expedient that the measurement signal is generated using a temperature-dependent resistor or a thermocouple. In this case, a DC voltage increasing with increasing working temperature can be generated as the measuring signal. Such a DC voltage can be implemented technically without great effort in the desired control pulses.

Zum Zuführen des Wassers zum Verdampfer kann ein elektromagnetisches Ventil geöffnet oder eine Pumpe angesteuert werden. Damit ist eine besonders einfache Wasserzuführung möglich.To supply the water to the evaporator, an electromagnetic valve can be opened or a pump can be controlled. For a particularly simple water supply is possible.

Zur Erzeugung der Steuerimpulse werden zweckmäßigerweise folgende Schritte durchgeführt:

  1. aa1) Erfassen des Messsignals und einer ersten vorgegebenen Impulsfolge mittels eines ersten Komparators,
  2. aa2) Umwandeln der erfassten Signale in eine Wechselspannung mit einem zur Arbeitstemperatur korrespondierenden Taktverhältnis,
  3. bb) Umwandeln der Wechselspannung mittels eines Integrators in eine zweite Gleichspannung, deren Größe umgekehrt proportional zur gemessenen Arbeitstemperatur ist,
  4. cc1) Erfassen der zweiten Gleichspannung und einer zweiten Impulsfolge mittels eines zweiten Komparators und
  5. cc2) Umwandeln der erfassten Signale in die Steuerimpulse.
To generate the control pulses, the following steps are expediently carried out:
  1. aa1) detecting the measurement signal and a first predetermined pulse train by means of a first comparator,
  2. aa2) converting the detected signals into an alternating voltage with a duty cycle corresponding to the operating temperature,
  3. bb) converting the AC voltage by means of an integrator into a second DC voltage whose magnitude is inversely proportional to the measured operating temperature,
  4. cc1) detecting the second DC voltage and a second pulse train by means of a second comparator and
  5. cc2) converting the detected signals into the control pulses.

Die vorgenannten Verfahrensschritte lassen sich ohne großen Aufwand mit einer herkömmlichen speicherprogrammierbaren Steuerung realisieren.The aforementioned method steps can be realized with little effort with a conventional programmable logic controller.

Es hat sich als zweckmäßig erwiesen, dass das Verhältnis der Frequenzen der ersten und der zweiten Impulsfolge etwa 20:1 ist. Dabei kann die Frequenz der ersten Impulsfolge vorteilhafter Weise 10 Hz sein. Die erste und die zweite Impulsfolge kann aus Sägezahnimpulsen gebildet sein. Zweckmäßigerweise ist die Abfolge der Steuerimpulse aus Rechteckimpulsen gebildet. Das ermöglicht eine präzise Ansteuerung der Wasserzuführvorrichtung.It has proven to be expedient that the ratio of the frequencies of the first and the second pulse sequence is about 20: 1. The frequency of the first pulse sequence may advantageously be 10 Hz. The first and second pulse trains may be formed by sawtooth pulses. Conveniently, the sequence of control pulses is formed by rectangular pulses. This allows precise control of the water supply device.

Nach weiterer Maßgabe der Erfindung ist eine Vorrichtung zur Erzeugung von Wasserdampf für die Wäschepflege vorgesehen mit
einem Verdampfer und einer damit verbundenen Wasserzuführvorrichtung,
einer Einrichtung zum Erzeugen eines Messsignals, welches zu einer im Verdampfer herrschenden Arbeitstemperatur korrespondiert,
einer Einrichtung zum Erzeugen einer Abfolge von Steuerimpulsen mit einer zur Arbeitstemperatur korrespondierenden Impulsbreite,
einer Einrichtung zum Ansteuern der Wasserzuführvorrichtung mittels der Steuerimpulse, so dass dem Verdampfer mit zunehmender Arbeitstemperatur eine zunehmende Menge an Wasser pro Zeiteinheit zugeführt wird.
According to another aspect of the invention, a device for generating steam for laundry care is provided with
an evaporator and an associated water supply device,
a device for generating a measuring signal which corresponds to a working temperature prevailing in the evaporator,
a device for generating a sequence of control pulses having a pulse width corresponding to the working temperature,
a device for controlling the water supply device by means of the control pulses, so that the evaporator with increasing working temperature an increasing amount of water per unit time is supplied.

Die vorgeschlagene Vorrichtung besteht aus wenigen Teilen. Sie ist einfach herzustellen, relativ robust und störunanfällig.The proposed device consists of few parts. It is easy to produce, relatively robust and prone to interference.

Die Einrichtung zum Erzeugen eines Messsignals kann zweckmäßigerweise einen temperaturabhängigen Widerstand oder ein Thermoelement aufweisen. Damit ist es auf einfache Weise möglich, eine zur Arbeitstemperatur korrespondierende Gleichspannung bereitzustellen. Die Einrichtung zur Erzeugung der Steuerimpulse umfasst zweckmäßigerweise eine speicherprogrammierbare Steuerschaltung. Die speicherprogrammierbare Steuerschaltung ist vorteilhafterweise so programmiert, dass als Steuerimpulse Rechteckimpulse erzeugt werden, deren Impulsbreite zur Arbeitstemperatur korrespondiert. Ferner ist es zweckmäßig, dass die Steuerimpulse mit konstanter Frequenz erzeugt werden. Die Steuerschaltung kann eine Einrichtung zum Einstellen des für die Erzeugung von Steuerimpulsen zu berücksichtigenden Arbeitstemperaturbereichs aufweisen. Die vorgeschlagene Steuerschaltung ist relativ einfach realisierbar. Sie kann preiswert zur Verfügung gestellt werden.The device for generating a measurement signal may expediently have a temperature-dependent resistor or a thermocouple. This makes it possible in a simple manner to provide a DC voltage corresponding to the working temperature. The device for generating the control pulses expediently comprises a programmable logic control circuit. The programmable logic control circuit is advantageously programmed so that rectangular pulses are generated as control pulses whose pulse width corresponds to the working temperature. Furthermore, it is expedient that the control pulses are generated at a constant frequency. The control circuit may include means for adjusting the operating temperature range to be considered for the generation of control pulses. The proposed control circuit is relatively easy to implement. It can be provided cheaply.

Die Wasserzuführvorrichtung weist zweckmäßigerweise ein elektromagnetisches Ventil oder eine elektrische Wasserpumpe auf. Derartige elektromechanische Bauelemente sind zuverlässig und können mittels Steuerimpulsen einfach angesteuert werden. Nach einem weiteren Ausgestaltungsmerkmal sind der Verdampfer, die Wasserzuführvorrichtung und die speicherprogrammierte Steuerschaltung im Gehäuse eines Haushaltswäschetrockners aufgenommen. Es kann eine, vorzugsweise als Steigleitung ausgebildete, Dampfversorgungsleitung vom Verdampfer zu einem von einer rotierbaren Wäschetrommel umgebenen Wäschebehandlungsraum vorgesehen sein. Ein solcher Haushaltswäschetrockner eignet sich nicht nur zum Trocknen sondern auch zum Behandeln von Wäsche mit Heißdampf. Es kann damit insbesondere geruchsbelastete Wäsche gereinigt werden, ohne dass sie gesondert gewaschen werden muss.The water supply device expediently has an electromagnetic valve or an electric water pump. Such electromechanical components are reliable and can be easily controlled by means of control pulses. According to a further embodiment feature, the evaporator, the water supply device and the stored-program control circuit are accommodated in the housing of a household laundry drier. It can be provided, preferably designed as a riser, steam supply line from the evaporator to a laundry room surrounded by a rotatable laundry drum. Such a household tumble dryer is not only suitable for drying but also for treating laundry with superheated steam. It can thus be cleaned in particular odorous laundry without having to be washed separately.

Nachfolgend wird anhand der Zeichnungen ein Ausführungsbeispiel der Erfindung näher erläutert. Es zeigen:

Fig. 1
ein Blockschaltbild einer Schaltung zur Dosierung von Wasser und
Fig. 2
die an den in Ziff. 1 gezeigten Messpunkten abfallenden Spannungen.
An exemplary embodiment of the invention will be explained in more detail with reference to the drawings. Show it:
Fig. 1
a block diagram of a circuit for metering water and
Fig. 2
the at the in Ziff. 1 dropping voltages shown.

Fig. 1 zeigt ein Blockschaltbild einer erfindungsgemäßen Vorrichtung zur Regelung einer einem Verdampfer zuzuführenden Menge an Wasser. Die pro Zeiteinheit zugeführte Menge an Wasser wird in Abhängigkeit der Arbeitstemperatur des Verdampfers geregelt. Fig. 1 shows a block diagram of a device according to the invention for controlling an amount of water to be supplied to an evaporator. The amount of water supplied per unit time is regulated as a function of the operating temperature of the evaporator.

Zur Messung der Arbeitstemperatur eines herkömmlichen (hier nicht gezeigten) Verdampfers ist ein Thermoelement 1 vorgesehen, welches mit einem ersten Komparator 2 verbunden ist. Einem Wechselspannungsgenerator 3 ist ein Pegelregler 4 nachgeschaltet, der ausgangsseitig mit dem anderen Eingang des ersten Komparators 2 verbunden ist. Ausgangsseitig ist der erste Komparator 2 unter Zwischenschaltung eines Integrators 5 mit einem Eingang eines zweiten Komparators 6 verbunden.For measuring the working temperature of a conventional (not shown here) evaporator, a thermocouple 1 is provided, which is connected to a first comparator 2. An AC voltage generator 3 is followed by a level regulator 4, which is connected on the output side to the other input of the first comparator 2. On the output side, the first comparator 2 is connected to an input of a second comparator 6 with the interposition of an integrator 5.

Ein Taktgenerator 7 ist unter Zwischenschaltung eines Differenzierglieds 8 mit dem anderen Eingang des zweiten Komparators 6 verbunden. Am Ausgang des zweiten Komparators 6 ist ein Schaltgerät 9, z.B. ein Relais, ein elektromagnetisches Ventil, eine Wasserpumpe oder dgl. angeschlossen.A clock generator 7 is connected to the other input of the second comparator 6 with the interposition of a differentiating element 8. At the output of the second comparator 6 is a switching device 9, e.g. a relay, an electromagnetic valve, a water pump or the like connected.

Die Funktion der Vorrichtung ist folgende:The function of the device is as follows:

Die mit dem Thermoelement 1 erzeugte Thermospannung (siehe Fig. 2 lit. d) wird dem ersten Komparator 2 zugeführt. Der Wechselspannungsgenerator 3 erzeugt eine Wechselspannung von z.B. 10 Hz, die im nachgeschalteten Pegelregler 4 in eine Sägezahnspannung (siehe Fig. 2 lit. c) einer Frequenz von ebenfalls 10 Hz umgewandelt und dann ebenfalls dem ersten Komparator 2 zugeführt wird. Mittels des ersten Komparators 2 wird die in Fig. 2 lit. e schematisch angedeutete Wechselspannung mit einem Taktverhältnis erzeugt, das zur gemessenen Arbeitstemperatur korrespondiert.The thermal voltage generated by the thermocouple 1 (see Fig. 2 lit. d) is supplied to the first comparator 2. The AC voltage generator 3 generates an AC voltage of eg 10 Hz, which in the downstream level controller 4 in a sawtooth (see Fig. 2 lit. c) is also converted to a frequency of 10 Hz and then also the first comparator 2 is supplied. By means of the first comparator 2, the in Fig. 2 lit. e schematically indicated alternating voltage generated with a duty cycle that corresponds to the measured operating temperature.

Mit dem Integrator 5 wird die Wechselspannung in eine Gleichspannung umgewandelt, die umgekehrt proportional zur gemessenen Arbeitstemperatur ist (siehe Fig. 2 lit. f). Diese Gleichspannung wird im zweiten Komparator 6 verglichen mit der vom Taktgenerator 7 und dem nachgeschalteten Differenzierglied 8 erzeugten Sägezahnspannung lit. b (Fig. 2). Im Ergebnis werden die in Fig. 2 unter lit. g dargestellten Steuerimpulse am Ausgang des zweiten Komparators 6 ausgegeben. Es handelt sich bei den Steuerimpulsen um Rechteckimpulse.With the integrator 5, the AC voltage is converted into a DC voltage, which is inversely proportional to the measured operating temperature (see Fig. 2 lit. f). This DC voltage is compared in the second comparator 6 with the sawtooth voltage generated by the clock generator 7 and the downstream differentiator 8 lit. b ( Fig. 2 ). As a result, the in Fig. 2 under lit. g shown control pulses output at the output of the second comparator 6. The control pulses are rectangular pulses.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
Thermoelementthermocouple
22
erster Komparatorfirst comparator
33
WechselspannungsgeneratorAC voltage generator
44
Pegelreglerlevel control
55
Integratorintegrator
66
zweiter Komparatorsecond comparator
77
Taktgeneratorclock generator
88th
DifferenziergliedDifferentiator
99
Schaltgerätswitchgear

Claims (20)

  1. Process for generating steam for laundry care having the following steps:
    a) generating a measurement signal (d) which corresponds to an operating temperature prevailing in a vaporiser,
    b) generating a sequence of control pulses (g) using the measurement signal (d), wherein a pulse width of the control pulses (g) corresponds to the operating temperature, and
    c) activating a water-supply device (9) by means of the control pulses (g), so that an increasing quantity of water per unit of time is supplied to the vaporiser with increasing operating temperature.
  2. Process according to claim 1, wherein the control pulses (g) are generated with constant frequency.
  3. Process according to one of the preceding claims, wherein control pulses (g) are generated only above a preset operating temperature.
  4. Process according to one of the preceding claims, wherein the measurement signal (d) is generated using a temperature-dependent resistor or a thermocouple.
  5. Claim according to one of the preceding claims, wherein a direct voltage increasing with increasing operating temperature is generated as the measurement signal.
  6. Process according to one of the preceding claims, wherein an electromagnetic valve (g) is opened or a pump is activated to supply the water to the vaporiser.
  7. Process according to one of the preceding claims, wherein the following steps are carried out to generate the control pulses (g):
    aa1) recording the measurement signal (d) and a first preset pulse sequence (c) by means of a first comparator,
    aa2) converting the recorded signals into an alternating voltage (e) with a clock ratio corresponding to the operating temperature,
    bb) converting the alternating voltage (e) by means of an integrator (5) into a second direct voltage (f), the size of which is inversely proportional to the measured operating temperature,
    cc1) recording the second direct voltage (f) and a second pulse sequence (b) by means of a second comparator (6) and
    cc2) converting the recorded signals into the control pulses (g).
  8. Process according to one of the preceding claims, wherein the ratio of the frequencies of the first (c) and of the second pulse sequence (b) is about 20:1.
  9. Process according to one of the preceding claims, wherein the frequency of the first pulse sequence (c) is 10 Hz.
  10. Process according to one of the preceding claims, wherein the first (c) and the second pulse sequence (b) are formed from saw-tooth pulses.
  11. Process according to one of the preceding claims, wherein the sequence of control pulses (g) is formed from rectangular pulses.
  12. Device for generating steam for laundry care having
    a vaporiser and a water-supply device (9) connected thereto,
    a device (1) for generating a measurment signal (d), which corresponds to an operating temperature prevailing in the vaporiser,
    a device for generating a sequence of control pulses (g) having a pulse width corresponding to the operating temperature,
    a device for activating the water-supply device (9) by means of the control pulses (g), so that an increasing quantity of water per unit of time is supplied to the vaporiser with increasing operating temperature.
  13. Device according to claim 12, wherein the device for generating a measurement signal (d) has a temperature-dependent resistor or a thermocouple.
  14. Device according to claim 12 or 13, wherein the device for generating the control pulses (g) comprises a stored-programmable control circuit.
  15. Device according to one of claims 12 to 14, wherein the stored-program control circuit is programmed so that rectangular pulses are generated as control pulses (g), the pulse width of which corresponds to the operating temperature.
  16. Device according to one of claims 12 to 15, wherein the stored-program control circuit is programmed so that control pulses (g) with constant frequency generated.
  17. Device according to one of claims 12 to 16, wherein the control circuit has a device for setting an operating temperature range to be taken into account for the generation of control pulses (g).
  18. Device according to one of claims 12 to 17, wherein the water-supply device (9) has an electromagnetic valve or an electric water pump.
  19. Device according to one of claims 12 to 18, wherein the vaporiser, the water-supply device (9) and the stored-program control circuit are accommodated in the housing of a household laundry drier.
  20. Device according to one of claims 12 to 19, wherein a steam-supply pipe preferably designed as a rising pipe, is provided from the vaporiser to a laundry treatment chamber surrounded by a rotatable laundry drum.
EP20030027669 2003-01-25 2003-12-03 Process and apparatus for the generation of steam for fabric care Expired - Lifetime EP1441175B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE2003102972 DE10302972B4 (en) 2003-01-25 2003-01-25 Method and device for generating steam for laundry care
DE10302972 2003-01-25

Publications (3)

Publication Number Publication Date
EP1441175A2 EP1441175A2 (en) 2004-07-28
EP1441175A3 EP1441175A3 (en) 2005-05-11
EP1441175B1 true EP1441175B1 (en) 2008-08-27

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Application Number Title Priority Date Filing Date
EP20030027669 Expired - Lifetime EP1441175B1 (en) 2003-01-25 2003-12-03 Process and apparatus for the generation of steam for fabric care

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EP (1) EP1441175B1 (en)
DE (2) DE10302972B4 (en)

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US7665332B2 (en) 2006-08-15 2010-02-23 Whirlpool Corporation Steam fabric treatment appliance with exhaust
US7681418B2 (en) 2006-08-15 2010-03-23 Whirlpool Corporation Water supply control for a steam generator of a fabric treatment appliance using a temperature sensor
US7690062B2 (en) 2007-08-31 2010-04-06 Whirlpool Corporation Method for cleaning a steam generator
US7707859B2 (en) 2006-08-15 2010-05-04 Whirlpool Corporation Water supply control for a steam generator of a fabric treatment appliance
US7765628B2 (en) 2006-06-09 2010-08-03 Whirlpool Corporation Steam washing machine operation method having a dual speed spin pre-wash
US7841219B2 (en) 2006-08-15 2010-11-30 Whirlpool Corporation Fabric treating appliance utilizing steam
US7861343B2 (en) 2007-08-31 2011-01-04 Whirlpool Corporation Method for operating a steam generator in a fabric treatment appliance
US7905119B2 (en) 2007-08-31 2011-03-15 Whirlpool Corporation Fabric treatment appliance with steam generator having a variable thermal output
US7918109B2 (en) 2007-08-31 2011-04-05 Whirlpool Corporation Fabric Treatment appliance with steam generator having a variable thermal output
US7941885B2 (en) 2006-06-09 2011-05-17 Whirlpool Corporation Steam washing machine operation method having dry spin pre-wash
US7966683B2 (en) 2007-08-31 2011-06-28 Whirlpool Corporation Method for operating a steam generator in a fabric treatment appliance
US8037565B2 (en) 2007-08-31 2011-10-18 Whirlpool Corporation Method for detecting abnormality in a fabric treatment appliance having a steam generator
EP2397755A1 (en) 2009-03-05 2011-12-21 Artweger GmbH & Co. KG Steam generator with continuous steaming and safe emptying
US8393183B2 (en) 2007-05-07 2013-03-12 Whirlpool Corporation Fabric treatment appliance control panel and associated steam operations
US8555675B2 (en) 2007-08-31 2013-10-15 Whirlpool Corporation Fabric treatment appliance with steam backflow device
US8555676B2 (en) 2007-08-31 2013-10-15 Whirlpool Corporation Fabric treatment appliance with steam backflow device

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ES2359845T3 (en) * 2006-07-31 2011-05-27 Electrolux Home Products Corporation N.V. PROCEDURE FOR CONTROLLING A STEAM UNIT OF AN APPLIANCES.
US7886392B2 (en) 2006-08-15 2011-02-15 Whirlpool Corporation Method of sanitizing a fabric load with steam in a fabric treatment appliance
US7753009B2 (en) 2006-10-19 2010-07-13 Whirlpool Corporation Washer with bio prevention cycle

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IT1281772B1 (en) * 1995-04-14 1998-03-03 Futura Steam Srl METHOD FOR CONTROL AND RESTORATION OF THE LIQUID LEVEL IN A STEAM GENERATOR, AND DEVICE THAT IMPLEMENTS THIS METHOD
FR2755706B1 (en) * 1996-11-13 1998-12-24 Seb Sa STEAM GENERATOR
CH695383A5 (en) * 2001-07-10 2006-04-28 V Zug Ag Dryer or washing machine with steamer.

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US7765628B2 (en) 2006-06-09 2010-08-03 Whirlpool Corporation Steam washing machine operation method having a dual speed spin pre-wash
US7941885B2 (en) 2006-06-09 2011-05-17 Whirlpool Corporation Steam washing machine operation method having dry spin pre-wash
US7665332B2 (en) 2006-08-15 2010-02-23 Whirlpool Corporation Steam fabric treatment appliance with exhaust
US7681418B2 (en) 2006-08-15 2010-03-23 Whirlpool Corporation Water supply control for a steam generator of a fabric treatment appliance using a temperature sensor
US7707859B2 (en) 2006-08-15 2010-05-04 Whirlpool Corporation Water supply control for a steam generator of a fabric treatment appliance
US7841219B2 (en) 2006-08-15 2010-11-30 Whirlpool Corporation Fabric treating appliance utilizing steam
US8393183B2 (en) 2007-05-07 2013-03-12 Whirlpool Corporation Fabric treatment appliance control panel and associated steam operations
US7918109B2 (en) 2007-08-31 2011-04-05 Whirlpool Corporation Fabric Treatment appliance with steam generator having a variable thermal output
US7905119B2 (en) 2007-08-31 2011-03-15 Whirlpool Corporation Fabric treatment appliance with steam generator having a variable thermal output
US7861343B2 (en) 2007-08-31 2011-01-04 Whirlpool Corporation Method for operating a steam generator in a fabric treatment appliance
US7966683B2 (en) 2007-08-31 2011-06-28 Whirlpool Corporation Method for operating a steam generator in a fabric treatment appliance
US8037565B2 (en) 2007-08-31 2011-10-18 Whirlpool Corporation Method for detecting abnormality in a fabric treatment appliance having a steam generator
US7690062B2 (en) 2007-08-31 2010-04-06 Whirlpool Corporation Method for cleaning a steam generator
US8555675B2 (en) 2007-08-31 2013-10-15 Whirlpool Corporation Fabric treatment appliance with steam backflow device
US8555676B2 (en) 2007-08-31 2013-10-15 Whirlpool Corporation Fabric treatment appliance with steam backflow device
EP2397755A1 (en) 2009-03-05 2011-12-21 Artweger GmbH & Co. KG Steam generator with continuous steaming and safe emptying

Also Published As

Publication number Publication date
EP1441175A3 (en) 2005-05-11
DE10302972A1 (en) 2004-08-12
DE10302972B4 (en) 2007-03-08
DE50310408D1 (en) 2008-10-09
EP1441175A2 (en) 2004-07-28

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