EP2508668B1 - Kondensatstufenerkennungssystem für Wäschetrockner und Wäschetrockner - Google Patents

Kondensatstufenerkennungssystem für Wäschetrockner und Wäschetrockner Download PDF

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Publication number
EP2508668B1
EP2508668B1 EP11161731.2A EP11161731A EP2508668B1 EP 2508668 B1 EP2508668 B1 EP 2508668B1 EP 11161731 A EP11161731 A EP 11161731A EP 2508668 B1 EP2508668 B1 EP 2508668B1
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EP
European Patent Office
Prior art keywords
switch
float
laundry dryer
collecting container
dryer appliance
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Application number
EP11161731.2A
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English (en)
French (fr)
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EP2508668A1 (de
Inventor
Aldo Fumagalli
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Candy SpA
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Candy SpA
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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
    • D06F58/00Domestic laundry dryers
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/24Condensing arrangements

Definitions

  • the present invention relates to a system for detecting the level of condensation collected in a laundry dryer appliance, wherein the laundry dryer appliance may be of the type comprising a housing with a front loading port, a laundry rack received in the housing and suitable for receiving the laundry to be dried, as well as a "closed" drying circuit, with a suction unit, a heat exchanger and a heating unit with electrical resistors, configured for conveying a flow of heated and dry air through the laundry rack.
  • the air flow caused by the suction unit is heated by the electrical resistors and conveyed into the rack, where crossing the wet laundry, it causes the evaporation of the water contained in the fabric.
  • the humid air is cooled, for example by a flow of cold water or by a flow of cool air.
  • the steam condensates and is collected in a condensation collecting container.
  • the dehumidified air is then sucked in again by the suction unit and made to circulate.
  • Laundry dryer appliances of the type mentioned above are known, provided with a drawer-like extractable condensation collecting container and a pressure switch level sensor in fluid communication with the inside of the collecting container, wherein the pressure switch sensor is configured for activating (for example for switching an electrical control circuit) upon reaching a threshold pressure value that corresponds to a threshold filling value of the condensation collecting container.
  • a contactless sensor for example a Reed switch that is activated by a magnet supported by a float arranged in the condensation collecting container.
  • the aim of the present invention therefore is to provide a system for detecting the condensation level in laundry dryer appliances, having such features as to obviate at least some of the disadvantages mentioned with reference to the prior art.
  • a particular aim of the present invention is to propose a laundry dryer appliance with a more accurate and repeatable system for detecting the condensation level.
  • a laundry dryer appliance comprising a housing with a loading port, a laundry rack received in the housing and suitable for receiving the laundry to be dried, a drying circuit with a heat exchanger, an extractable container for collecting the condensation and a sensor for detecting a threshold level of the condensation inside the collecting container, wherein the sensor comprises:
  • Appliance 1 comprises a housing 2 with a loading port 3, a laundry rack or space 4 received in housing 2 and suitable for receiving the laundry to be dried, a drying circuit 5 with a suction unit 6, a heat exchanger 7 and a heating unit 8, for example one or more electrical resistors, configured for conveying a heated and dry air flow 9 through the laundry rack or space 4.
  • Appliance 1 further comprises a container 10 for collecting the condensation and a sensor 11 for detecting a condensation threshold level inside the collecting container 10.
  • the collecting container 10 is received in an extractable manner in a special space 16 of housing 2 so as to allow the extraction and emptying of the collecting container 10 when the latter is totally filled with condensation.
  • Sensor 11 comprises a float 12 guided in vertical direction and arranged in fluid communication with the inside of the collecting container.
  • Float 12 carries a permanent magnet 13 which collaborates with a magnetically susceptible switch 14, in particular a Reed switch positioned and configured for being actuated by the permanent magnet 13 upon reaching the condensation threshold level.
  • float 12 with the permanent magnet 13 is arranged in a measurement space 15 outside the collecting container 10 and, when the collecting container 10 is inserted into space 16 of housing 2, the collecting container 10 is coupled in fluid communication with the measurement space 15.
  • the measurement space 15 may advantageously be formed in a zone of the housing not used or usable for other purposes.
  • the measurement space 15 is in fluid communication with a first connector 18 arranged at the container space 16 and provided with a first locking valve 17.
  • the collecting container 10 forms a corresponding second connector 19 provided with a second locking valve 20.
  • the first and second connectors 18, 19 are positioned and configured in such a way as to connect to one another and place the measurement space 15 and the collecting container 10 in fluid communication when the collecting container 10 is inserted in the container space 16, as well as separate from one another when the collecting container 10 is extracted from the container space 16.
  • the first and second locking valves 17, 20 are configured so as to open the passage through connectors 18, 19 when the latter are coupled and locking the liquid passage through each one of connectors 18, 19 when they are uncoupled.
  • the second connector 19 is closed and allows an easy handling without any risk of liquid spilling, which can be easily poured through an emptying opening 21 (separate from the second connector 19) closable by a threaded cap and having a relatively large opening section.
  • sensor 11 comprises a support structure 22 with a fixing plate 23 suitable for fixing sensor 11 in the measurement space 15, a switch seat 24 suitable for receiving, through snap-engagement, the magnetically susceptible switch 14, for example a Reed switch, and a guide 25 suitable for receiving float 12 in a sliding manner along a direction V which, in operating conditions of appliance 1 substantially corresponds to the vertical direction.
  • the switch seat 24 is formed integral with the fixing plate 23 and receives the Reed switch 14 directly, that is, without the interposition of a further adapter or housing. This ensures a perfect alignment of the Reed switch 14 with the support structure 22 and thus, with guide 25 and with float 12 with magnet 13.
  • the switch seat 24 comprises two side guides 26 having an L shaped section and protruding from a top surface 27 of the fixing plate 23 opposite guide 25, an abutment tooth 28 protruding from the top surface 27 and defining a position reference for switch 14 which is received and guided by the side guides 26, as well as an elastic tab 29 also protruding from the top surface 27 and positioned opposite the abutment tooth 28 with reference to the target position of switch 14, so as to allow the insertion of switch 14 into the switch seat 24 and prevent an extraction or accidental or undesired loss thereof ( Figures 2 and 3 ).
  • At least one of the side guides 26 may comprise a yielding appendix 30 that, when switch 14 is inserted in the switch seat 24, engages a corresponding shoulder 31 of switch 14 so as to bias switch 14 elastically in abutment against the abutment tooth 28 and thus ensure the correct positioning thereof.
  • the permanent magnet 13 is at least partly or entirely encapsulated in the plastic material of float 12.
  • the permanent magnet 13 is received by snap-wise coupling in a magnet seat 32 of float 12.
  • the same magnet 13 may exhibit a cylindrical or discoid or cylindrical pad shape and defines a magnetic axis M and two magnetic poles N, S of opposite sign respectively arranged at two opposite ends of magnet 13 along the magnetic axis M and wherein magnet 13 is oriented with the magnetic axis M thereof substantially perpendicular to the sliding axis V of float 12 and both magnetic poles N, S exhibit the same axial distance DV (with reference to the sliding axis) from switch 14 ( Figure 9 ).
  • This allows a precise positioning and orientation of the permanent magnetic field relative to the focal point of magnetic sensitivity of the Reed switch 14 and thus, a more accurate and repeatable detection of the reaching of the threshold level of the condensation collected in container 10.
  • float 12 comprises a closed hollow body 32 made starting from two or more pieces, for example a cover portion 33 and a base portion 34 shaped as a cup with closed bottom, both made of plastic and connected to one another by welding or gluing.
  • float 12 comprises a hollow body 35 open at the bottom, made in a single piece in the shape of a bell with a top dome that carries magnet 13, and a side wall preferably cylindrical formed integral with the top dome and delimiting a bottom opening 36 opposite the top dome.
  • Such open hollow body can be easily made by injection moulding and during the operation of the laundry dryer appliance, it is in any case closed at the bottom by the condensed water.
  • guide 25 may be formed integral with the fixing plate 23 and may comprise a substantially tubular longitudinally grooved wall for forming two flaps 37 that may be elastically spread apart to a certain extent that allows the snap-wise insertion of the float into the tubular wall.
  • flaps 37 may comprise one or more longitudinal grooves closed at the bottom and suitable for receiving corresponding side tabs 38 of float 12 with clearance so as to cause the vertical and guided sliding of the float relative to switch 14 and prevent an undesired exit thereof from guide 25.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Claims (10)

  1. Wäschetrocknergerät (1), umfassend ein Gehäuse (2), einen Wäscheraum (4), welcher in dem Gehäuse (2) angeordnet ist, einen Trocknungskreislauf (5) mit einem Wärmetauscher (7), einen entnehmbaren Behälter (10) zum Sammeln des Kondensats und einen Sensor (11) zum Erfassen eines Schwellenwertpegels von Kondensat innerhalb des Sammelbehälters (10), wobei der Sensor (11) einen magnetisch empfindlichen Schalter (14) und einen Auftriebskörper (12) umfasst, welcher in Fluidverbindung mit dem Inneren des Sammelbehälters (10) angeordnet ist und einen Magneten (13) trägt, welcher den Schalter (14) auf ein Erreichen des Kondensat-Schwellenwertpegels hin betätigt,
    wobei der Auftriebskörper (12) entlang einer Gleitachse (V) gleitend gehaltert ist und der Magnet (13) eine magnetische Achse (M) sowie zwei magnetische Pole (N, S) entgegengesetzten Vorzeichens definiert, welche entsprechend an zwei entgegengesetzten Enden des Magneten entlang der magnetischen Achse angeordnet sind, und wobei der Magnet mit der magnetischen Achse davon (M) im Wesentlichen senkrecht zu der Gleitachse (V) des Auftriebskörpers (14) ausgerichtet ist,
    dadurch gekennzeichnet, dass der Sensor (11) umfasst:
    - eine Befestigungsplatte (23), welche dazu geeignet ist, den Sensor (11) in dem Messraum (15) zu befestigen,
    - eine Schalteraufnahme (24), welche dazu geeignet ist, den Schalter (14) durch einen schnappartigen Eingriff aufzunehmen,
    - eine Führung (25), welche dazu geeignet ist, den Auftriebskörper (12) entlang einer Richtung (V) gleitend aufzunehmen, welche in Betriebsbedingungen des Geräts (1) im Wesentlichen der vertikalen Richtung entspricht,
    wobei die Schalteraufnahme (24) einstückig mit der Befestigungsplatte (23) und mit der Führung (25) ausgebildet ist und den Schalter (14) ohne die Zwischenschaltung weiterer Adapter direkt aufnimmt.
  2. Wäschetrocknergerät (1) nach Anspruch 1, wobei beide magnetischen Pole (S, N) in der Richtung der Gleitachse (V) den gleichen Abstand (DV) von dem Schalter (14) aufweisen.
  3. Wäschetrocknergerät (1) nach Anspruch 1 oder 2, wobei der Auftriebskörper (12) mit dem Permanentmagneten (13) in einem Messraum (15) außerhalb des Sammelbehälters (10) angeordnet ist und, wenn der Sammelbehälter (10) in einen Behälterraum (16) des Gehäuses (2) eingesetzt ist, der Sammelbehälter (10) in Fluidverbindung mit dem Messraum (15) gekoppelt ist.
  4. Wäschetrocknergerät (1) nach Anspruch 3, wobei der Messraum (15) einen ersten Verbinder (18) ausbildet, welcher mit einem ersten Sperrventil (17) bereitgestellt ist, und der Sammelbehälter (10) einen entsprechenden zweiten Verbinder (19) ausbildet, welcher mit einem zweiten Sperrventil (20) bereitgestellt ist und dazu eingerichtet ist, mit dem ersten Verbinder (18) gekoppelt zu sein, wenn der Sammelbehälter (10) in den Behälterraum (16) eingesetzt ist, und von dem ersten Verbinder (18) getrennt zu sein, wenn der Sammelbehälter (10) aus dem Behälterraum (16) entnommen ist,
    wobei das erste und das zweite Sperrventil (17, 20) dazu eingerichtet sind, einen Fluiddurchlass durch die Verbinder (18, 19) zu öffnen, wenn sie gekoppelt sind, und den Flüssigkeitsdurchlass durch jeden der Verbinder (18, 19) zu sperren, wenn sie entkoppelt sind.
  5. Wäschetrocknergerät (1) nach einem der vorhergehenden Ansprüche, wobei die Schalteraufnahme (24) dazu eingerichtet ist, den Schalter (14) durch eine Formkopplung aufzunehmen und den Schalter (14) mittels einer elastischen Vorspannung in einer Zielposition zu positionieren.
  6. Wäschetrocknergerät (1) nach einem der vorhergehenden Ansprüche, wobei die Schalteraufnahme (24) umfasst: zwei seitliche Führungen (26), welche einen L-förmigen Abschnitt aufweisen und entgegengesetzt der Führung (25) von einer oberen Fläche (27) der Befestigungsplatte (23) vorstehen, einen Anlagezahn (28), welcher von der oberen Fläche (27) vorsteht und eine Positionsreferenz für den Schalter (14) definiert, eine elastische Zunge (29), welche von der oberen Fläche (27) in einer in Bezug auf die Zielposition des Schalters (14) dem Anlagezahn (28) entgegengesetzten Position vorsteht, um das Einsetzen des Schalters (14) in die Schalteraufnahme (24) an der Seite der elastischen Zunge (29) in der Richtung des Anlagezahns (28) zu ermöglichen und ein versehentliches Entnehmen davon in der entgegengesetzten Richtung zu verhindern.
  7. Wäschetrocknergerät (1) nach Anspruch 6, wobei wenigstens eine der seitlichen Führungen (26) einen nachgiebigen Fortsatz (30) ausbildet, welcher, wenn der Schalter (14) in die Schalteraufnahme (24) eingesetzt ist, eine Schulter (31) des Schalters (14) elastisch in Eingriff nimmt, welche quer zu der Richtung eines Einsetzens davon in die Schalteraufnahme (24) vorsteht, um den Schalter (14) elastisch in eine Anlage gegen den Anlagezahn (28) vorzuspannen.
  8. Wäschetrocknergerät (1) nach einem der vorhergehenden Ansprüche, wobei der Auftriebskörper aus Kunststoff hergestellt ist und der Permanentmagnet (13) wenigstens teilweise in dem Kunststoff des Auftriebskörpers (12) eingekapselt ist.
  9. Wäschetrocknergerät (1) nach einem der vorhergehenden Ansprüche, wobei der Permanentmagnet (13) mittels schnappartigen Koppelns in einer Magnetaufnahme (32) des Auftriebskörpers (12) aufgenommen ist.
  10. Wäschetrocknergerät (1) nach einem der vorhergehenden Ansprüche, wobei der Auftriebskörper (12) einen an der Unterseite offenen, hohlen Körper (35) umfasst, welcher als eine Glocke mit einer oberen Kuppel, welche den Magneten (13) trägt, und einer Seitenwand geformt ist, welche einstückig mit der oberen Kuppel ausgebildet ist und eine der oberen Kuppel entgegengesetzte untere Öffnung (36) begrenzt.
EP11161731.2A 2011-04-08 2011-04-08 Kondensatstufenerkennungssystem für Wäschetrockner und Wäschetrockner Active EP2508668B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP11161731.2A EP2508668B1 (de) 2011-04-08 2011-04-08 Kondensatstufenerkennungssystem für Wäschetrockner und Wäschetrockner

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Application Number Priority Date Filing Date Title
EP11161731.2A EP2508668B1 (de) 2011-04-08 2011-04-08 Kondensatstufenerkennungssystem für Wäschetrockner und Wäschetrockner

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EP2508668A1 EP2508668A1 (de) 2012-10-10
EP2508668B1 true EP2508668B1 (de) 2019-06-05

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KR101980900B1 (ko) * 2012-07-13 2019-05-22 삼성전자주식회사 수위감지장치 및 이를 가지는 의류건조기
FR3006335B1 (fr) * 2013-06-03 2015-10-30 Fagorbrandt Appareil de sechage du linge comprenant un dispositif de determination du niveau d'eau
DE102014200768A1 (de) * 2014-01-17 2015-07-23 BSH Hausgeräte GmbH Vorrichtung und Verfahren zum Reinigen eines in einem Prozessluftkreislauf eines Trockners angeordneten Bauteils sowie Trockner mit einer solchen Vorrichtung
WO2016019988A1 (en) * 2014-08-06 2016-02-11 Arcelik Anonim Sirketi Laundry dryer having an improved condensate storage assembly
KR102369584B1 (ko) 2014-12-19 2022-03-03 엘지전자 주식회사 의류처리장치
US9671052B2 (en) 2015-10-27 2017-06-06 Whirlpool Corporation Collet securing device for joining two fluid lines and providing lateral support at the connection of the two fluid lines
US10557469B2 (en) 2016-03-22 2020-02-11 Whirlpool Corporation Multi-outlet fluid flow system for an appliance incorporating a bi-directional motor
US10633785B2 (en) * 2016-08-10 2020-04-28 Whirlpool Corporation Maintenance free dryer having multiple self-cleaning lint filters
US10655266B2 (en) 2016-11-30 2020-05-19 Whirlpool Corporation Lint processing fluid pump for a laundry appliance
US10662574B2 (en) 2017-02-27 2020-05-26 Whirlpool Corporation Self cleaning heater exchanger plate
DE102017104016A1 (de) 2017-02-27 2018-08-30 Miele & Cie. Kg Haushaltsgerät wie beispielsweise ein Wäschetrockner
US10619289B2 (en) 2017-02-27 2020-04-14 Whirlpool Corporation Self cleaning diverter valve
US10480117B2 (en) 2017-02-27 2019-11-19 Whirlpool Corporation Self cleaning sump cover
US10634412B2 (en) 2017-04-10 2020-04-28 Whirlpool Corporation Concealed upstream air tower guide vanes
US10697700B2 (en) 2018-01-17 2020-06-30 Whirlpool Corporation Refrigeration water dispensing system

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