EP3173514B1 - Appareil de dosage - Google Patents

Appareil de dosage Download PDF

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Publication number
EP3173514B1
EP3173514B1 EP16199541.0A EP16199541A EP3173514B1 EP 3173514 B1 EP3173514 B1 EP 3173514B1 EP 16199541 A EP16199541 A EP 16199541A EP 3173514 B1 EP3173514 B1 EP 3173514B1
Authority
EP
European Patent Office
Prior art keywords
metering
dosing
unit
housing
detergent
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP16199541.0A
Other languages
German (de)
English (en)
Other versions
EP3173514A1 (fr
Inventor
Dirk Wegener
Georg Spiessl
Florian Winderl
Johann Kleber
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.)
Miele und Cie KG
Original Assignee
Miele und Cie KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Miele und Cie KG filed Critical Miele und Cie KG
Publication of EP3173514A1 publication Critical patent/EP3173514A1/fr
Application granted granted Critical
Publication of EP3173514B1 publication Critical patent/EP3173514B1/fr
Active legal-status Critical Current
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/44Devices for adding cleaning agents; Devices for dispensing cleaning agents, rinsing aids or deodorants
    • A47L15/4463Multi-dose dispensing arrangements

Definitions

  • the invention relates to a metering device for the metered introduction of a pourable cleaning agent into a treatment room of a program-controlled cleaning device, in particular a dishwasher, with a supply of the detergent serving reservoir and a particular motor rotatably mounted support body which receives the reservoir interchangeable, as well as with a metering unit, which provides a metering chamber which opens into a metering opening, wherein the storage container has a storage chamber connected fluidically to the metering chamber in the metering case.
  • Cleaning devices of the type in question typically have a washing container, which provides a treatment room, also called flushing.
  • This treatment space is accessible to the user via a feed opening, which can be closed in a fluid-tight manner by means of a pivotally mounted flushing door.
  • the washing container serves to receive items to be cleaned, which in the case of a dishwashing machine can be, for example, dishes, cutlery pieces and / or the like.
  • the cleaning device For loading of items to be cleaned with rinsing liquid, the so-called rinsing liquor, the cleaning device has a spray device inside the rinsing container.
  • This spraying device generally provides rotatably mounted spray arms, with typically two or three such spray arms being provided.
  • the dishes to be cleaned are washed with rinsing liquor by means of rotating spray arms.
  • process chemicals are used, which are supplied to the washing compartment during a cleaning process, typically as an addition to the wash liquor.
  • process chemicals are For example, to detergent that are added to the washing compartment of the cleaning device programmatically at a specific time of the program flow.
  • a cleaning device When using a pourable detergent in powder form, a detergent dosing must be carried out by hand on the user's side before each start of a cleaning program.
  • a cleaning device has for this purpose typically inside the door on a reservoir, which is to be equipped with a manually determined amount of detergent. During a program sequence, this reservoir opens at a certain time of the wash program and the stockpiled detergent from the reservoir can be washed out by the rinsing liquor located in the washing compartment of the cleaning device.
  • Dosing devices of the type described above have proven themselves in everyday practical use. Nevertheless, there is a need for improvement, especially with regard to increased operational safety and simplified handling. It is therefore the object of the invention to further develop a dosing device of the type mentioned in that, due to the design, increased operational reliability is achieved with improved handling at the same time.
  • a metering device of the initially mentioned type that is characterized in that the metering unit is interchangeable arranged on the support body.
  • the metering unit is designed as part of the storage container.
  • the reservoir thus provides on the one hand the pantry and on the other hand the metering chamber ready.
  • this type of embodiment has proven itself, but it is whether the complicated structure of the reservoir comparatively expensive to manufacture.
  • the dosing unit is arranged on the support body. Dosing unit and reservoir are therefore formed separately from each other and the reservoir is only the pantry, but no longer the dosing ready.
  • This embodiment has the advantage that the reservoir is kept comparatively simple in construction and thus is less expensive to manufacture.
  • the arrangement of the dosing unit not on the reservoir but on the support body can sometimes cause difficulties if liquid enters the dosing unintentionally. If necessary, it may then lead to a clumping of detergent in the dosing unit, which in the worst case can lead to a blockage of the dosing provided by the dosing unit and / or the dosing.
  • the problem of detergent clumping can also occur when the metering unit is designed as part of the reservoir, but in this case, when changing the reservoir and the integrally formed therewith metering chamber is exchanged, so that any clumping mitentêt in a dosing unit in a reservoir change become.
  • the dosing unit is replaceably arranged on the support body. Should it therefore as a result of an unwanted ingress of moisture to a Clumping and / or encrustation of detergent come within the metering unit, it can be removed from the carrier body side and replaced with a new, unpolluted dosing unit or cleaned and reused. In any case, it is ensured on the basis of the constructive embodiment according to the invention that a simultaneous operation is made possible by the user while at the same time being easy to handle. In this case, due to the inventive design of the synergistic effect that on the one hand comparatively inexpensive to produce reservoir can be used and on the other hand to maintain the reliability of the dosing unit replaced if necessary, and / or can be cleaned.
  • the metering unit has a housing which provides a metering chamber and a metering channel opening into the metering opening.
  • the dosing unit has a housing, preferably made of plastic.
  • This housing provides a volume space, which is divided into two volumes, namely the dosing chamber on the one hand and the dosing on the other.
  • the dosing chamber and the dosing are separated from each other in a conventional manner by means of a barrier.
  • the housing has, according to a further feature of the invention, a housing body and a housing cover detachably arranged thereon.
  • housing cover When removed housing cover is possible in direct access from above both the dosing and the dosing, which simplifies a user-side cleaning of the dosing. So it is allowed in the case of cleaning, to remove the dosing unit in a first step the support body, and then disassemble the dosing in a second step by the housing cover is removed from the housing, which then unimpeded access to the dosing, thus the dosing and allows the dosing. Any caught in the dosing detergent residues, clumping and / or encrustations can be removed without residue, which reuse dosing unit is possible, which is also environmentally environmentally advantageous.
  • the housing body and the housing cover are according to a further feature of Invention formed locked together. On the one hand, this allows simple handling during the removal of the housing cover, but on the other hand it also ensures that the housing cover does not unintentionally detach from the housing body, in particular when the dosing unit is separated from the support body in the event of replacement.
  • the support body has a latching tongue cooperating with the housing.
  • the housing that is, the metering unit is arranged securely on the support body.
  • the latching tongue is formed elastically pivotable, so that the user side a simple expansion of the dosing unit is allowed by the fact that the latching tongue is resiliently pivoted from a closed position to an open position.
  • the spring-elastically pivotable locking tongue allows easy insertion of the dosing into the support body, because it is only necessary to press the dosing against the latching tongue, which pivots as a result of this force and resiliently engages behind a provided by the housing of the dosing unit retaining cam.
  • the metering unit has a detergent inlet on the storage container side, which cooperates with a detergent outlet provided by the storage container, wherein the detergent outlet has a closure unit which can be transferred from a closed position to an open position and vice versa.
  • the reservoir has achesffenauslass.
  • cleaning agent is dispensed via this detergent outlet and passes via the detergent inlet of the dosing unit into the dosing space provided by the dosing unit.
  • the detergent outlet of the storage container is equipped with a closure unit. This can be transferred from a closed position to an open position and vice versa. In the closed position, the detergent outlet is closed, so that a release of detergent is prevented. Only when a closure unit is in the open position, the detergent outlet is opened, which allows a release of detergent.
  • the closure unit of the reservoir cooperates with an actuating means provided by the metering unit.
  • the actuating means serves to transfer the closure unit of the reservoir from a closed position to an open position or vice versa.
  • This actuating means is formed as part of the metering unit, so that an opening of the cleaning agent outlet of the reservoir is only possible if the reservoir is used as intended in the support body and fluidly connected to the metering chamber.
  • the metering chamber and the reservoir, according to a further feature of the invention corresponding to each other locking means formed on. This ensures that, in the intended use case, the detergent inlet of the metering unit and the detergent outlet of the storage container are directly associated with one another, so that the intended transfer of detergent from the storage container into the metering unit is ensured.
  • the dosing device has a replaceably arranged reservoir, which serves to store detergent in an amount that is sufficient for a plurality of rinsing programs.
  • the reservoir is rotatably mounted about an axis of rotation, wherein in the proper metering program controlled rotation of the reservoir is effected.
  • a motor-driven drive device is provided, by means of which in the case of operation, a rotational movement of the reservoir is made.
  • the motor-driven drive device acts together with a support body which receives the reservoir replaceable.
  • the reservoir has a watersffenauslass. Over this portion of detergent is dispensed in the operating case. In this case, such a detergent discharge takes place as a result of a rotational movement of the reservoir. Per 360 ° revolution of the reservoir, an always equal portion of detergent is supplied to the detergent outlet, and discharged from there with the interposition of a channel system in the washing compartment of the cleaning device.
  • a metering unit which has a metering chamber which opens into a metering opening.
  • the reservoir provides a storage chamber which is fluidly connected to the metering chamber in dosing.
  • the storage chamber is therefore the storage of the detergent and the dosing concerned in the case of use, the portionwise detergent dosage.
  • the dosing chamber is divided into two fluidically interconnected sub-areas, namely a dosing on the one hand and a dosing on the other hand, which are separated from each other by means of a barrier.
  • the barrier delimits the dosing space in such a way that upon a twisting movement of the storage container, first of all the dosing space is filled with a quantity of cleaning agent predetermined by the size of the dosing space. In a further twisting movement, the amount of cleaning agent metered into the dosing space is conducted past the barrier into the dosing channel in the direction of the dosing opening, without additional cleaning agent flowing from the storage chamber into the dosing space.
  • the cleaning agent thus passes from the storage chamber into the metering chamber of the metering chamber, wherein the size of the metering determines the amount of portioned detergent.
  • the portioned detergent leaves the dosing and passes through the dosing to the dosing, which can no longer flow detergent from the storage chamber into the dosing of the dosing due to the continued rotation of the reservoir.
  • the invention is characterized overall by a structural design of the dosing unit, according to which it is interchangeably arranged on the support body, which allows easy removability and also offers a dismantling in combination with the housing construction according to the invention.
  • this can be removed from the support body by a simple operation of the latching tongue and then disassembled by removing the housing cover.
  • adhered detergent can be easily solved by mechanical cleaning or by rinsing with water.
  • FIG. 11 can be seen in a purely schematic representation of a cleaning device in the embodiment of a dishwasher 100.
  • the dishwasher 100 has, in a manner known per se, a housing 101 which receives a washing container 102.
  • the washing container 102 in turn provides a
  • Treatment room - also called the washroom 103 - ready for receiving dishes to be cleaned.
  • the washing container 102 has a feed opening 104.
  • the latter can be closed in a fluid-tight manner by means of a flushing door 1, wherein the washing compartment door 1 is rotatably pivotable about a horizontally extending pivot axis.
  • the dishwasher 100 When used as intended, the dishes to be cleaned are treated with rinsing liquor, for which purpose the dishwasher 100 has a spraying device 105.
  • the sprayer 105 includes an upper spray arm 106 and a lower spray arm 107.
  • FIG. 1 lets the Spülraumt 1 recognize in a plan view, namely the interior view according to the direction I after FIG. 11 ,
  • the Spülraumt 1 has on the inside a known from the prior art combination device 3, on the one hand on a Klar Hughesstoffbevorratung 4 and on the other hand has a reservoir 5, the user side each wash program manually replenished with detergent.
  • the dishwashing machine 100 also has a metering device 6, which, like the combination device 3, is accessible via the inside 2 of the dishwashing door 1.
  • a metering device 6 which, like the combination device 3, is accessible via the inside 2 of the dishwashing door 1.
  • the metering device 6 has a storage container which accommodates pourable cleaning agent in powder form.
  • cleaning agent passes from the reservoir into the washing compartment 103 of the dishwasher 100, for which purpose a metering outlet 8 is provided on the inside 2 of the washing compartment door 1.
  • This Dosierauslass 8 is equipped with a cover or a pivotally mounted cover 9.
  • FIG. 2 can be seen in a schematic perspective view of the metering device 6 according to the invention, the sake of clarity because of the shutter 7 is not is shown.
  • the metering device 6 has a housing 10 which receives a support body 12 and a motor-transmission arrangement, not shown.
  • the supporting body 12 can be rotated by a motor, specifically around the axis of rotation 13 defined by the axle extension 13.
  • the dosing device 6 has a better overview in the figures, only in FIG. 3b Reservoir 200 shown, which provides a storage chamber 201, which is the harboring of detergent in an amount that is sufficient for several rinse programs. For each wash program, a portioned amount of detergent is taken from the storage container 200 and fed to the wash chamber 103.
  • the metering device 6 has for this purpose via a discharge channel 11 which is fluidly connected via a not-shown channel system to the metering 8.
  • the storage container 200 can be used interchangeably in the carrier body 12 of the metering device 6 on the user side.
  • the support body 12 receives the reservoir 200 against rotation, so that in a motor-driven rotational movement of the support body 12 and the stored therefrom reservoir 200 also twisted, namely about the axis of rotation 13 defined by the axis extension.
  • the metering device 6 furthermore has a metering unit 14. In the metering case, it serves to remove cleaning agent in portions from a storage container used in the support body 12 and to supply it to the discharge channel 11.
  • the metering unit 14 has a housing 20 which has a housing body 21 and a housing cover 22 detachably arranged thereon.
  • the volume space provided by the housing 20 is formed in two parts and has a first portion, the so-called metering space 31 and a second portion, the so-called metering 30.
  • the metering channel 30 opens into a metering opening 19.
  • the metering chamber 31 and the metering channel 30 are in fluid communication and form the metering chamber 29, wherein the fluidic connection is narrowed by means of a Dosierbarriere 32, so that a total labyrinth-shaped metering chamber 29 is formed.
  • the storage chamber 201 provided by a storage container 200 on the one hand and the dosing chamber 29 of the dosing unit 14 are in fluid communication, for which purpose a detergent outlet 202 provided by the storage container 200 is connected to the detergent inlet 23 of the dosing unit 14.
  • reservoir 200 When used in the support body 12 reservoir 200 results in the intended use case a dosing as follows.
  • the reservoir 200 is rotated by means of the motor-driven support body 12 about the axis of rotation defined by the axis 13, namely by 360 °.
  • stored detergent in the storage chamber 201 of the storage container 200 is conveyed through the detergent outlet 202 of the storage container 200 and the detergent inlet 23 of the metering unit 14 into the metering chamber 29 of the metering unit 14.
  • due to the Dosableriere 32 only a filling of the metering chamber 31, thus only a partial filling of the metering chamber 29.
  • the Dosierbarriere 32 ensures in any case that the metering channel 30 remains free of detergent first. In this case, the volume provided by the dosing chamber 31 determines the amount of portioned cleaning agent.
  • the detergent outlet 202 of the storage container 200 moves to a position corresponding to the detergent outlet 202 above the level of the detergent stored by the storage chamber 201, so that further afterflow of detergent from the storage chamber 201 into the metering space 31 does not take place any further ,
  • the cleaning agent previously metered into the metering chamber 31 can flow past the metering barrier 32 into the metering channel 30.
  • the metering opening 19 is located opposite the discharge channel 11, so that cleaning agent conveyed into the metering channel 30 can now enter the discharge channel 11 and thus into the treatment space 103.
  • the metering unit 14 is interchangeable according to the invention arranged on the support body 12, as can be seen in particular from a synopsis of FIGS. 3 to 6 results.
  • FIGS. 3a, 3b and 4 let recognize the support body 12 with inserted dosing unit 14.
  • the dosing unit 14 is supported by a housing edge 18 provided by the housing 20 on an abutment 17 provided by the support body 12.
  • the housing is held by means of a latching tongue 15 which engages behind a housing 16 provided by the housing 20 with its housing-side end portion.
  • the metering unit 14 is arranged securely on the support body 12.
  • the latching tongue 15 is to be pivoted resiliently, with respect to the plane of the drawing FIG. 5 clockwise.
  • An attached to the support body 12 arrow symbolism gives the user a corresponding assistance.
  • the latching tongue 15 has been pressed in with sufficient spring elasticity, it snaps past the cam 16 of the housing 20, so that the dosing unit 14 is released in this respect.
  • the metering unit 14 can now with respect to the drawing plane to FIG. 5 be pivoted clockwise, and that in an interaction of abutment 17 and housing edge 18 resulting axis of rotation.
  • FIG. 6 shows the support body 12 with the metering unit 14 removed.
  • the metering unit 14 is to be introduced from above into the support body 12, wherein the housing edge 18 is to bring behind the abutment 17. Then takes place pivoting of the metering unit 14 counterclockwise until the cam 16 runs onto the latching tongue 15. The dosing unit 14 is to be further pivoted, that is opposite to the latching tongue 15 caused spring force until it is pivoted so far that the cam 16 can slide past the latching tongue 15. The latching tongue 15 snaps spring-loaded back into its starting position, in which the cam 16 engages behind the latching tongue 15, as in FIG. 4 shown.
  • the replaceable arrangement of the dosing unit 14 provides the advantage that a user-side cleaning of the dosing unit 14 is permitted. Also, a replacement of a dirty metering unit 14 against an unpolluted metering unit 14 is of course possible.
  • An advantage of the interchangeable arrangement of the dosing unit 14 is further that dosing units 14 can be provided with different volume divisions of dosing 30 and dosing 31, for example, to account for different detergent compositions.
  • a housing 20 is provided in the manner already described, which has a removable housing cover 22, as shown in particular the illustration FIG. 9 lets recognize.
  • the housing cover 22 When the housing cover 22 is removed, the user side allows direct access from above to both the metering channel 30 and the metering chamber 31.
  • the metering unit 14 reservoir side has two slots 28, which are juxtaposed with the pipe socket 24. These slots 28 are used in the intended use case of receiving arranged on the reservoir locking pins. It is thus ensured an exactly opposite orientation of reservoir-side detergent outlet 202 and metering unit-side detergent inlet 23.
  • the metering unit 14 is equipped with an actuating means 25 that has an annular body 26 and a handle 27 arranged thereon.
  • the annular body 26 surrounds the pipe socket 24, so that a rotational movement of the actuating means 25 to the pipe socket 24 around is possible.
  • the actuating means 25 serves to transfer a closure unit closing off the cleaning agent outlet 202 of the storage container 200 from a closed position to an open position.
  • the reservoir 200 can thus at closed placesstoffsmittelauslass 202 are inserted into the support body 12.

Landscapes

  • Washing And Drying Of Tableware (AREA)

Claims (9)

  1. Appareil de dosage (6) pour l'introduction dosée d'un détergent, pouvant être déversé, dans un espace de traitement (103) d'un appareil de nettoyage commandé par programme, en particulier d'un lave-vaisselle (100), avec un réservoir de stockage servant à recevoir le détergent, et avec un corps de support (12) supporté de façon rotative, en particulier de façon motorisée, qui loge de façon remplaçable le réservoir de stockage (200), ainsi qu'avec une unité de dosage (14) qui fournit une chambre de dosage (29) débouchant dans une ouverture de dosage (19), dans lequel le réservoir de stockage (200) présente une chambre de stockage (200) raccordée fluidiquement à la chambre de dosage (29) en cas de dosage, caractérisé en ce que l'unité de dosage (14) est disposée de façon remplaçable sur le corps de support (12).
  2. Appareil de dosage selon la revendication 1, caractérisé en ce que l'unité de dosage (14) présente un boîtier (20), qui fournit un espace de dosage (31) et un conduit de dosage (30) débouchant dans l'ouverture de dosage (19).
  3. Appareil de dosage selon la revendication 2, caractérisé en ce que le boîtier (20) présente un corps de boîtier (21) et un couvercle de boîtier (22) qui est disposé sur ledit corps de boîtier de façon amovible.
  4. Appareil de dosage selon la revendication 3, caractérisé en ce que le corps de boîtier (21) et le couvercle de boîtier (22) sont constitués de façon à pouvoir être encliquetés l'un avec l'autre.
  5. Appareil de dosage selon l'une des revendications précédentes 2 à 4, caractérisé en ce que le corps de support (12) présente une languette d'encliquetage (15) coopérant avec le boîtier (20).
  6. Appareil de dosage selon la revendication 5, caractérisé en ce que la languette d'encliquetage (15) est constituée de façon à pouvoir pivoter avec une élasticité de ressort.
  7. Appareil de dosage selon l'une des revendications précédentes, caractérisé en ce que l'unité de dosage (14) présente, côté réservoir de stockage, une entrée de détergent (23) qui coopère avec une sortie de détergent (202) fournie par le réservoir de stockage, dans lequel la sortie de détergent (202) présente une unité d'obturation pouvant être transférée d'une position d'obturation vers une position d'ouverture et inversement.
  8. Appareil de dosage selon la revendication 7, caractérisé en ce que l'unité d'obturation coopère avec un moyen d'actionnement (25) fourni par l'unité de dosage (14).
  9. Appareil de dosage selon l'une des revendications précédentes, caractérisé en ce que l'unité de dosage (14) et le réservoir de stockage (200) présentent des moyens de blocage constitués de façon à se correspondre.
EP16199541.0A 2015-11-25 2016-11-18 Appareil de dosage Active EP3173514B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015120419.3A DE102015120419A1 (de) 2015-11-25 2015-11-25 Dosiergerät

Publications (2)

Publication Number Publication Date
EP3173514A1 EP3173514A1 (fr) 2017-05-31
EP3173514B1 true EP3173514B1 (fr) 2017-11-29

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Application Number Title Priority Date Filing Date
EP16199541.0A Active EP3173514B1 (fr) 2015-11-25 2016-11-18 Appareil de dosage

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EP (1) EP3173514B1 (fr)
DE (1) DE102015120419A1 (fr)

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013104391A1 (de) 2013-04-30 2014-10-30 Miele & Cie. Kg Dosiergerät

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
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Publication number Publication date
EP3173514A1 (fr) 2017-05-31
DE102015120419A1 (de) 2017-06-01

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