The present invention relates to a dosing apparatus for dispensing molded cleaning agent bodies into a dishwashing container of a household dishwasher and a household dishwasher with such a dosing apparatus.
With commercially available household dishwashers it is necessary to feed in cleaning agents in powder or tablet form manually before the start of a dishwashing operation. Only with rinse aid is it usual to store it in liquid form in a reservoir inside the household dishwasher for a number of applications and dispense it automatically by way of a dosing apparatus. Many users find it a nuisance and inconvenient to dispense cleaning agents manually before every dishwashing operation. Attempts have therefore been made over quite a long period to develop what are known as automatic dosing systems for household dishwashers, with the aim of allowing cleaning agents to be stored in reservoirs for a number of applications and to be dispensed automatically by way of corresponding dosing apparatuses.
EP 1 159 913 A1 for example shows a dosing facility for dispending cleaning tablets from a reservoir intro the useful space of a dishwasher, in which an essentially steam-proof lock is arranged between reservoir and useful space. The reservoir here is configured to hold a loose supply of tablets and the lock has a transport facility, for example in the form of a cell wheel, to actively transport the tablets through. Tablets can only be fed from the transport container to the transport facility by gravity. However a conveying facility is preferably provided, which conveys the tablets actively (subject to external force) from the reservoir to the transport facility.
Against this background one object of the present invention is to provide an improved dosing apparatus.
A dosing apparatus for dispensing molded cleaning agent bodies into a dishwashing chamber of a household dishwasher is therefore proposed. The dosing apparatus comprises a reservoir for holding a supply of the molded cleaning agent bodies, a cell wheel for actively transporting the molded cleaning agent bodies from the reservoir into the dishwashing chamber and a feed facility for feeding the molded cleaning agent bodies to the cell wheel, the feed facility being designed to feed the molded cleaning agent bodies to the cell wheel parallel to an axis of rotation of the same.
Because the feed facility is provided, it is always also ensured that the molded cleaning agent bodies are fed to the cell wheel even if the fill level of the reservoir is low. There is also no need for a sloping surface in the reservoir to feed the molded cleaning agent bodies to the cell wheel parallel to the axis of rotation. This increases the volume available in the reservoir for holding the molded cleaning agent bodies.
The term “molded cleaning agent bodies” in the context of the invention refers to all molded bodies with a defined outer shape, which contain any ingredients that can be used for cleaning dishes. They include for example tablets, pellets, granules or capsules. The term is also not limited to molded bodies containing the actual cleaning agent. It also covers molded bodies holding dispensing agents for use in final rinse operations, for softening or conditioning water and the like.
The reservoir is in particular the region of the dosing apparatus that contains the store of molded cleaning agent bodies. It can be refillable or for example replaceable in the form of a cartridge. The reservoir is configured to hold a supply, in particular a loose supply, of molded cleaning agent bodies. This means that the molded cleaning agent bodies lie with random orientation in the reservoir and are not stored in a predefined geometric arrangement. The configuration of the reservoir for holding a supply of molded cleaning agent bodies allows simple and compact storage even of larger quantities of molded cleaning agent bodies. It is not necessary to store the tablets in a complex manner. Active transportation of the molded cleaning agent bodies from a delivery opening of the reservoir into the dishwashing chamber means that a desired quantity of molded cleaning agent bodies is reliably dosed in. Active transportation here means that the molded cleaning agent bodies are transported subject to external force. For example the cell wheel can be actively rotated with the aid of a drive unit, for example with the aid of an electric motor, for this purpose.
According to one embodiment the feed facility comprises a feed wheel that can be rotated about the axis of rotation and a guide element, along which the molded cleaning agent bodies are guided parallel to the axis of rotation during a rotational movement of the feed wheel.
The axis of rotation is preferably a common axis of rotation of the cell wheel and the feed wheel. The feed wheel preferably comprises a cylindrical feed segment and a fastening segment projecting from the feed segment, to which the cell wheel is connected. The guide element is preferably connected to the reservoir in a fixed manner. The feed element is configured for example as a strip-like part, which extends from a side wall of the reservoir in the direction of the feed wheel.
According to a further embodiment the dosing apparatus comprises a hollow space, in which the cell wheel is supported in a rotatable manner, the feed wheel being arranged outside the hollow space.
The dosing apparatus preferably comprises a housing, in which the hollow space is provided. The housing can be arranged within the reservoir. The cell wheel and feed wheel are supported on the housing in a rotatable manner, the cell wheel being arranged within the housing, in other words in the hollow space, and the feed wheel being arranged outside the housing. A side wall of the housing can be arranged between the cell wheel and the feed wheel.
According to a further embodiment the feed wheel is connected to the cell wheel in a rotationally fixed manner.
In other words the feed wheel cannot be rotated relative to the cell wheel.
According to a further embodiment the feed wheel is connected to the cell wheel with a form fit.
A form-fit connection results when at least two connecting parts engage in or behind one another. External ribs are preferably provided on the feed segment of the feed wheel, being designed to engage with a form fit in corresponding recesses or grooves in the cell wheel. The recesses are provided in particular on a drive cylinder of the cell wheel.
According to a further embodiment the feed wheel comprises a plurality of feed ribs.
The feed ribs are preferably arranged on the outside of the cylindrical feed segment pf the feed wheel. There can be any number of feed ribs.
According to a further embodiment the feed ribs are at an angle to the axis of rotation.
For example the feed ribs can be at an angle of 20 to 40°, preferably 25 to 30°, more preferably 30°, to the axis of rotation.
According to a further embodiment the feed ribs are spiral.
In other words the feed ribs can run around the feed segment in a helical or spiral manner.
According to a further embodiment the cell wheel comprises a plurality of separating walls, the number of feed ribs being greater than the number of separating walls.
The number of feed ribs is preferably a plurality of the number of separating walls.
A household dishwasher with such a dosing apparatus is also proposed.
For example the dosing apparatus can be provided on a door, on a side wall of a dishwashing container or on a receptacle for items to be washed in the household dishwasher.
Further possible implementations of the dosing apparatus and/or the household dishwasher include combinations of features or embodiments described above or in the following in relation to the exemplary embodiments even if these are not cited specifically. The person skilled in the art will also add individual aspects to improve or complete the respective basic form of the dosing apparatus and/or household dishwasher.
Further advantageous configurations and aspects of the dosing apparatus and/or household dishwasher are set out in the subclaims and the exemplary embodiments of the dosing apparatus and/or household dishwasher described in the following. The dosing apparatus and/or household dishwasher is/are described in more detail below based on preferred embodiments with reference to the accompanying figures.
Identical elements or those of identical function are shown with the same reference characters in the figures, unless otherwise specified.
The door 3 is shown in its opened position in
The household dishwasher 1 also has at least one holder 12 to 14 for items to be washed. Several, for example three, holders 12 to 14 for items to be washed can preferably be provided, it being possible for the holder 12 for items to be washed to be a lower holder for items to be washed or a lower rack, the holder 13 for items to be washed to be an upper holder for items to be washed or an upper rack and the holder 14 for items to be washed to be a flatware drawer. As also shown in
The household dishwasher 1 also comprises a dosing apparatus 15, which can be arranged on the inside of the door 3, in other words facing the dishwashing chamber 4. In particular the dosing apparatus 15 is provided on an inner face 16 of the door 3. Alternatively the dosing apparatus 15 can be provided on one of the side walls 10, 11 or on one of the holders 12 to 14 for items to be washed. In the example in
In
A delivery opening 23 is provided in the region of the base 19 of the reservoir 17. A hollow space 24 adjoins the delivery opening 23 in the direction of gravity g, a cell wheel 25 being held and supported in a rotatable manner therein. The cell wheel 25 has a drive cylinder 16, which is actively driven by a drive unit (not shown), for example in the form of an electric motor. The cell wheel 25 comprises a number of transport chambers 27, which are each configured to hold a predefined quantity of molded cleaning agent bodies 18. The transport chambers 27 are separated from one another by separating walls 28 projecting radially from the drive cylinder 26. Any number of separating walls 28 can be provided. The separating walls 28 are fastened to the drive cylinder 26, preferably being configured as a single piece with it. Both the reservoir 17 with its delivery opening 23 and an ejector chute 29 open at the periphery of the cell wheel 25.
During operation of the dosing apparatus 15 molded cleaning agent bodies 18 present in the reservoir 17 are first moved in the direction of the delivery opening 23 by gravity and thus fed to the cell wheel 25. During the rotational movement of the cell wheel 25 a quantity of molded cleaning agent bodies 18 limited by the capacity of the transport chambers 27 drops out of the reservoir 17 through the delivery opening 23 into an empty transport chamber 27. The molded cleaning agent bodies 18 are then ejected through the ejector chute 29 present diametrically on the opposite side of the periphery of the hollow space 24, where they drop into the dishwashing chamber 4 of the household dishwasher 1.
The guide element 34 is configured for example as a guide plate fastened to the side wall 21 of the reservoir 17. The hollow space 24, in which the cell wheel 25 is held, is enclosed by a housing 35, at the top of which the delivery opening 23 is provided. As also shown in
The feed wheel 33 is preferably cylindrical and, as shown in
The feed wheel 33 also comprises a plurality of feed ribs 39 provided on the feed segment 36, which are at an angle to the axis of rotation 32. For example the feed ribs 39 are at an angle α to the axis of rotation 32. The angle α is for example 20 to 40°, preferably 25 to 35°, more preferably 30°. The feed ribs 39 can also run in a spiral or helical manner around the feed segment 36. Inside the feed segment 26 is a hollow space 40, in which a coupling facility of the movable base 19 can be held. The fastening segment 37 extends into the hollow space 40. The number of feed ribs 39 is preferably greater than the number of separating walls 28 of the cell wheel 25.
The functionality of the dosing apparatus 15 is described below. During the rotational movement DB of the feed wheel 33 and cell wheel 25 about the axis of rotation 32 at least one molded cleaning agent body 18 is guided between two feed ribs 39, provision of the guide element 34 meaning that the molded cleaning agent body 18 is guided onto the cell wheel 25 parallel to the axis of rotation 32 in the movement direction BR.
Provision of the feed facility 31 means that, even if the fill level of molded cleaning agent bodies 18 in the reservoir 17 is low, it is always ensured that the molded cleaning agent bodies 18 are fed to the cell wheel 25. Provision of the feed wheel 33 also allows the cell wheel 25 to be configured in such a manner that it does not take up the full width of the reservoir 17. This means that there is no need to provide a sloping surface angled onto the cell wheel 25 in particular in the widthwise direction of the reservoir 17. This enlarges the volume of the reservoir 17 available for holding the molded cleaning agent bodies 18.
Although the present invention has been described based on exemplary embodiments, it can be modified in many different ways.
Number | Date | Country | Kind |
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10 2017 208 702.1 | May 2017 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2018/061656 | 5/7/2018 | WO | 00 |