NL2024044B1 - Dosage system and method for preparing a cleaning mixture - Google Patents

Dosage system and method for preparing a cleaning mixture Download PDF

Info

Publication number
NL2024044B1
NL2024044B1 NL2024044A NL2024044A NL2024044B1 NL 2024044 B1 NL2024044 B1 NL 2024044B1 NL 2024044 A NL2024044 A NL 2024044A NL 2024044 A NL2024044 A NL 2024044A NL 2024044 B1 NL2024044 B1 NL 2024044B1
Authority
NL
Netherlands
Prior art keywords
pod
cleaning
piercing means
holder
concentrate
Prior art date
Application number
NL2024044A
Other languages
Dutch (nl)
Inventor
Peter William Van De Ven Frank
Original Assignee
Future Cleaning Tech B V
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 Future Cleaning Tech B V filed Critical Future Cleaning Tech B V
Priority to NL2024044A priority Critical patent/NL2024044B1/en
Priority to DE202020102386.1U priority patent/DE202020102386U1/en
Priority to US17/769,437 priority patent/US20230095949A1/en
Priority to EP20793831.7A priority patent/EP4044891A1/en
Priority to PCT/NL2020/050636 priority patent/WO2021075964A1/en
Application granted granted Critical
Publication of NL2024044B1 publication Critical patent/NL2024044B1/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/40Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
    • A47L11/408Means for supplying cleaning or surface treating agents
    • A47L11/4083Liquid supply reservoirs; Preparation of the agents, e.g. mixing devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D51/00Closures not otherwise provided for
    • B65D51/24Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes
    • B65D51/28Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials
    • B65D51/2807Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials the closure presenting means for placing the additional articles or materials in contact with the main contents by acting on a part of the closure without removing the closure, e.g. by pushing down, pulling up, rotating or turning a part of the closure, or upon initial opening of the container
    • B65D51/2814Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials the closure presenting means for placing the additional articles or materials in contact with the main contents by acting on a part of the closure without removing the closure, e.g. by pushing down, pulling up, rotating or turning a part of the closure, or upon initial opening of the container the additional article or materials being released by piercing, cutting or tearing an element enclosing it
    • B65D51/2821Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials the closure presenting means for placing the additional articles or materials in contact with the main contents by acting on a part of the closure without removing the closure, e.g. by pushing down, pulling up, rotating or turning a part of the closure, or upon initial opening of the container the additional article or materials being released by piercing, cutting or tearing an element enclosing it said element being a blister, a capsule or like sealed container

Abstract

A dosage system (10) for delivering a predetermined amount and type of cleaning concentrate (C) to a solvent (S) inside (20V) a fluid tank (20). A pod holder (1 1) is configured to form an inner volume (1 1v) for holding a pod (30) containing the cleaning concentrate (C). A connector (12) is configured to form a fluid connection (12V) between the inner volume (1 1V) of the pod holder (11) and the inside (20V) of the fluid tank (20). A piercing means (13t, 13b) is configured to pierce the pod (30) held by the pod holder (1 1). A push mechanism (14) is configured to push the piercing means (13t, 13b) into the inner volume (1 IV) of the pod holder (1 1) for piercing the pod (30) to release the cleaning concentrate (C) from the pod (30) via the fluid connection (12V) of the connector (12) into the inside (20V) of the fluid tank (20).

Description

Title: DOSAGE SYSTEM AND METHOD FOR PREPARING A
CLEANING MIXTURE
TECHNICAL FIELD AND BACKGROUND The present disclosure relates to cleaning, more specifically to systems and methods for the preparation of predetermined cleaning mixtures. In the cleaning industry there is a need to provide various types cleaning mixtures which may depend on the type of surface to be cleaned.
For example, different types of surfaces and environments may require different chemicals and/or different concentrations. While it may be possible to supply for each situation a factory-prepared optimal cleaning mixture, this may increase costs of transport and storage. For example, large tanks of cleaning mixtures would have to be supplied. So it is preferable that the user, e.g. cleaning personnel, can prepare their own cleaning mixture. For example, the user can fill a tank with water from the tap, and add an amount of cleaning concentrate to the water. Typically, this preparation may involve the user pouring an amount of the concentrate from a bottle into the tank. However, it may be difficult for the user to control the exact amount of cleaning concentrate. This may also be the case for different types of dispensers. One solution may be to first pour the concentrate in a measuring cup. However, this is still prone to mistakes. Furthermore the chemicals in the cleaning concentrate may be dangerous to handle in concentrated form.
Accordingly, there is a need for improved preparation of cleaning mixtures.
SUMMARY Some aspects as described herein can be embodied as a dosage system for delivering a predetermined amount and type of cleaning concentrate to a solvent inside a fluid tank. A pod holder is configured to form an inner volume for holding a pod containing the cleaning concentrate.
A connector is configured to form a fluid connection between the inner volume of the pod holder and the inside of the fluid tank.
A piercing means is configured to pierce the pod held by the pod holder.
A push mechanism is configured to pushing the piercing means into the inner volume of the pod holder for piercing the pod.
In this way the cleaning concentrate is released from the pod via the fluid connection of the connector into the inside of the fluid tank for mixing with the solvent and forming a cleaning mixture.
Other or further aspects can be embodied as an assembly of the dosage system connected to the fluid connection, or a wet cleaning machine comprising such assembly.
Some aspects as described herein can be embodied as a method for delivering a predetermined amount and type of cleaning concentrate to a solvent inside a fluid tank.
A dosage system as described herein can be connected via its connector to the fluid tank with the solvent.
The pod holder can be filled with a pod comprising the predetermined amount and type of cleaning concentrate.
The push mechanism can be pushed to pierce the pod with the piercing means.
Some aspects as described herein can be embodied as a method of cleaning a target surface.
Such method may e.g. include determining a type of the target surface and selecting a specific pod from a plurality of different pod types.
For example, each different pod type comprises a predetermined different amount and/or type of cleaning concentrate optimized for cleaning a different type of surface.
Accordingly a type of the selected pod can be optimized for cleaning the target surface.
The selected type of pod can be used in the methods described herein for delivering the predetermined amount and/or type of cleaning concentrate a solvent inside a fluid tank of a wet cleaning machine to form a cleaning mixture.
For example, the wet cleaning machine can be used to deliver the cleaning mixture onto the target surface for cleaning the target surface.
Advantageously the present systems and methods may be used to select and accurately prepare various cleaning mixtures alleviating issues of erroneous dosing or human contact with the cleaning concentrate. It is noted that for washing machines, there exist pods with cleaning agents, wherein the pod material dissolve during use. However, the inventors find that the materials of these pods are typically unsuitable for use in a wet cleaning machine where the water is not so hot, and the partly dissolved pods can lead to clogging of the machine. By using a piercing means to pierce the pod and release the cleaning concentrate, the container of can remain in the pod holder. By allowing the pod holder to open, e.g. via a hinge mechanism, the pod can be easily placed and removed from its inner volume. By providing the dosage system with a detachable connector, it can be easily taken off the fluid tank to throw away the pod container.
BRIEF DESCRIPTION OF DRAWINGS These and other features, aspects, and advantages of the apparatus, systems and methods of the present disclosure will become better understood from the following description, appended claims, and accompanying drawing wherein: FIG 1 illustrates a perspective view of an assembly with a dosage system connected to a fluid tank; FIG 2 illustrates a cross-section view of the dosage system; FIGs 3A and 3B illustrate cut-away and perspective views of advantageous features in the dosage system; FIGs 4A and 4B illustrate side views of respective top and bottom piercing means; FIGs 5A and 5B illustrate methods of operating the dosage system.
DESCRIPTION OF EMBODIMENTS Terminology used for describing particular embodiments is not intended to be limiting of the invention. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. The term "and/or" includes any and all combinations of one or more of the associated listed items. It will be understood that the terms "comprises" and/or "comprising" specify the presence of stated features but do not preclude the presence or addition of one or more other features. It will be further understood that when a particular step of a method is referred to as subsequent to another step, it can directly follow said other step or one or more intermediate steps may be carried out before carrying out the particular step, unless specified otherwise. Likewise it will be understood that when a connection between structures or components is described, this connection may be established directly or through intermediate structures or components unless specified otherwise.
The invention is described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown. In the drawings, the absolute and relative sizes of systems, components, layers, and regions may be exaggerated for clarity. Embodiments may be described with reference to schematic and/or cross- section illustrations of possibly idealized embodiments and intermediate structures of the invention. In the description and drawings, like numbers refer to like elements throughout. Relative terms as well as derivatives thereof should be construed to refer to the orientation as then described or as shown in the drawing under discussion. These relative terms are for convenience of description and do not require that the system be constructed or operated in a particular orientation unless stated otherwise.
FIG 1 illustrates a perspective view of an assembly 100 with a dosage system 10 connected to a fluid tank 20.
In a preferred embodiment, as described herein, the dosage system 10 is configured to deliver a predetermined amount and type of 5 cleaning concentrate into the fluid tank 20. Most preferably, the cleaning concentrate 1s contained in a pod (not shown here), which can be placed inside the dosage system 10. In one embodiment, the fluid tank 20 is filled with a solvent, such as water, and the cleaning concentrate can be added to the solvent to form a cleaning mixture. Also other solvents and mixtures for cleaning can be envisaged, e.g. alcohol.
Typically, the fluid tank 20 is configured to hold a predetermined amount of liquid, e.g. water. In one embodiment, the amount of water is determined by a (near) maximum volume contents of the fluid tank 20. In another or further embodiment, a specific filling level can be used. For example, the tank comprises an indicator for filling up to a specific level, e.g. at least seventy, eighty, or ninety percent full, before adding the cleaning concentrate. It will be appreciated that variations in the much larger amount of solvent may generally be less critical than variations in the much smaller amount of cleaning concentrate. Preferably, when the predetermined amount and type of cleaning concentrate delivered by the dosage system 10 is mixed with the predetermined amount of solvent in the fluid tank 20, a predetermined optimized cleaning mixture is formed. For example, the cleaning mixture has a predetermined concentration optimized for cleaning a specific type of surface or environment.
In some embodiments, the dosage system 10 connected to the fluid tank 20 is configured to prevent fluid from leaking from the fluid tank 20. For example, the dosage system 10 comprises a screw, snap, or other connection for fixedly connecting to the fluid tank 20. Also other types of connections can be envisaged. In one embodiment, the dosage system 10 comprises a funnel structure (not shown) for delivering a dose of cleaning concentrate into the fluid tank 20. For example, the funnel structure is configured to fit at least partly into the fluid opening of the fluid tank 20 to deliver the cleaning concentrate. In some embodiments, the funnel structure can be used in addition to, or alternatively to, a connection structure.
In some embodiments, the same opening of the fluid tank 20 is used for both filling the tank with the solvent, and for connecting the dosage system 10. This can have the advantage of providing a system that is backward compatible with existing tanks. For example, the dosage system can have the same, or similar connector as a cap which is normally used 10 to close the fluid tank 20. In a preferred embodiment, e.g. as shown, the dosage system 10 is configured to connect as a cap onto a fluid opening of the fluid tank 20. In other or further embodiments, the fluid tank 20 is specifically adapted to the dosage system 10. For example, the fluid tank 20 comprises atleast two openings, e.g. including an opening for connecting the dosage system 10, and another opening for filling the tank with water. It can also be envisaged that the dosage system 10 is permanently connected to the fluid tank 20, e.g. integrated into the tank design. In some embodiments (not shown), at least one filling opening is provided on a (long) side of an elongate fluid tank. This opening on the side, instead of the top, may be more easy to fill when there is otherwise insufficient space under a water tap. Typically, the fluid tank 20 can also have at least one further opening for extracting the cleaning mixture from the fluid tank 20. For example, the opening for extracting the cleaning mixture may comprise a valve that is opened when the fluid tank is connected to a cleaning device. In some embodiments, the fluid tank 20 forms a separable or integrated part of a (wet) cleaning machine (not shown). Accordingly, some aspects of the present disclosure can be embodied as a wet cleaning machine comprising the assembly 100. For example, the wet cleaning machine is configured to retrieve a cleaning mixture from the fluid tank 20 and deliver the cleaning mixture onto a target surface to be cleaned. Generally, the wet cleaning machine may also comprises other or further components such as one or more of at least one pump to deliver and/or retrieve fluids to and from the target surface, a dirty water container for holding any retrieved fluid, one or more brushes to brush the target surface, a motor to actuate, e.g. rotate, the brushes, a squeegee to mop up the fluid, wheels to move the machine, et cetera. In one embodiment, the cleaning mixture is used by a floor treatment device for cleaning surfaces such as floors.
FIG 2 illustrates a cross-section view of a the dosage system 10.
In a preferred embodiment, the dosage system 10 is configured to deliver a predetermined amount and type of cleaning concentrate C to a solvent S inside 20v a fluid tank 20. In some embodiments, the dosage system 10 comprises a pod holder 11 configured to form an inner volume 11v for holding a pod 30 containing the cleaning concentrate C. In other or further embodiments, the dosage system 10 comprises a connector 12 configured to form a fluid connection 12v between the inner volume 11V of the pod holder 11 and the inside 20v of the fluid tank 20. In other or further embodiments, the dosage system 10 comprises a piercing means 13t,13b for piercing the pod 30 held by the pod holder 11. In other or further embodiments, the dosage system 10 comprises a push mechanism 14 for pushing the piercing means 13t,13b into the inner volume 11v of the pod holder 11. In this way the pod 30 can be pierced and/or cut open to release the cleaning concentrate C from the pod 30 via the fluid connection 12v of the connector 12 into the inside 20v of the fluid tank 20.
In some embodiments, the pod holder 11 comprises interconnected sections 11t,11b capable of opening the inner volume 11v for receiving the pod 30, and closing the inner volume 11v for keeping the pod 30 inside. In one embodiment, e.g. as shown, the pod holder 11 comprises at least a top section 11t and a bottom section 11b. Also other or further sections can be envisaged. Preferably, the interconnected sections 11t,11b of the pod holder 11 are configured to hermetically seal together when the pod holder 11 is closed. For example, the interconnected sections 11t,11b may seal together to prevent the cleaning concentrate C flowing between the sections and/or to exclusively allow the cleaning concentrate C to leave the inner volume 11v via the fluid connection 12v of the connector 12. In one embodiment, a first section 11t of the pod holder is interconnected to a second section 11b of the pod holder by a hinge mechanism 11h there between. In another or further embodiment, interconnected sections 11t,11b of the pod holder 11 comprise respective interlocking parts 11s configured to form a snap connection between the interconnected sections 11t,11b. Preferably, the interlocking parts are provided in addition to (e.g. on an opposite side with respect to) the hinge mechanism 11h, as shown. Alternatively, it can be envisaged to exclusively use a snap connection to interconnect the sections 11t,11b, e.g. wherein the dosage system 10 snaps apart in two or more sections. Also other or further types of interconnections between the sections 11t,11b can be envisaged, e.g. including a locking mechanism (not shown).
In a preferred embodiment, wherein the connector 12 is configured to fixedly connect the dosage system 10 to the fluid tank 20. For example, the connector 12 comprises a screw thread for screwing the dosage system 10 onto the fluid tank 20 acting as a substitute cap. Also other or further types of reversible or permanent connections can be envisaged such as a (releasable) snap connection between the connector 12 of the dosage system 10 and a connector of the fluid tank 20. It can also be envisaged to fluidly connect the dosage system to the fluid tank without fixation, e.g. wherein the connector comprises a funnel which can be inserted into a fluid supply connection of the fluid tank 20.
In some embodiments, the piercing means 13t,13b comprise at least one pin and/or knife to cut into or along a surface of the pod 30. For example, at least one piercing means 13b is disposed at a bottom part of the dosage system 10, i.e. at a side of the connector 12. In a preferred embodiment, the piercing means 13t,13b comprise at least two knifes configured to pierce the pod 30 from different sides. For example, the piercing means 13t,13b are configured to pierce the pod 30 from the top an bottom sides. This may help increase a flow of the cleaning concentrate C from the pod 30, e.g. by preventing vacuum formation inside the pod. For example, the cleaning concentrate C can be relatively viscous. Additionally, or alternatively, a relatively flat knife shape can have the advantage that it may cut a relatively large portion of the pod while being less prone to get stuck when the knife is retrieved.
In one embodiment, the piercing means 13t,13b comprise at least a bottom piercing means 13b. In another or further embodiment, the pod holder 11 comprises a bottom platform 11p for placement of the pod 30 thereon. For example, the bottom platform 11p comprises an opening through which the bottom piercing means 13b can penetrate into the pod 30. Preferably, the piercing means 13t,13b further comprises a top piercing means 13t.
In some embodiments, the bottom platform 11p is moveable over a maximum first range Z11p while the top piercing means 13t is moveable over a maximum second range Z14. Preferably, the maximum second range Z14 is larger than the maximum first range Z11p. Accordingly after pushing the bottom platform 11p via the pod 30 over its maximum first range Z11p, the top piercing means 13t can move further over its maximum second range Z14 to pierce the pod 30 from the top. In one embodiment, an edge of the bottom piercing means 13b can be sharper than that of the top piercing means 13t. In this way the bottom piercing means 13b may pierce the pod 30 first while the top piercing means 13t at least initially pushes the pod before piercing. Alternatively, or additionally, it can also be envisaged that the pod itself is structurally weaker at the side of the bottom piercing means 13b than at the side of the top piercing means 13t.
In some embodiments, the pod holder 11 comprises a top abutment surface 11a. For example, wherein the top abutment surface 11a comprises an opening through which the top piercing means 13t can push the pod 30 towards and into the bottom piercing means 13b. Preferably, the pod holder 11 is configured to hold the pod 30 between the bottom platform 11p and the top abutment surface 11a. Advantageously, retraction of the piercing means 13t,13b from the inner volume 11v of the interconnected sections 11t,11b through a respective opening in the bottom platform 11p and/or top abutment surface 11a may help to easily separate the pod 30 from the piercing means 13t,13b.
In a preferred embodiment, the push mechanism 14 comprises a push button, e.g. on top of the dosage system 10. For example, the push button can be manually actuated (pressed down) by a user to push one or more piercing means 13t,13b into the pod 30. In some embodiments, the dosage system 10 comprises a top resilient element 15t biased to restore a position of the push mechanism 14 (e.g. from a depressed position after pushing down on the button) and pull the top piercing means 13t from the pod 30. In other or further embodiments, the dosage system 10 comprises a bottom resilient element 15t biased to restore a position of the bottom platform 11p and pull the bottom piercing means 13b from the pod 30. For example, the resilient elements comprise one or more spring elements, as shown, or other elements, e.g. resilient rubber (not shown).
FIGs 3A and 3B illustrate cut-away and perspective views of advantageous features in the dosage system 10. In some embodiments, the bottom platform 11p comprises an open grate structure 11g with passageways for passing the cleaning concentrate there through.
Alternatively, or additionally, the concentrate may also pass through the opening 110 in the bottom platform 11p, e.g. after the bottom piercing means have retracted. In a preferred embodiment, the dosage system 10 comprises a funnel structure 16 between the pod holder 11 and the connector 12, wherein the funnel structure 16 is configure to direct a stream of the cleaning concentrate C towards a center 12c of the fluid connection 12v. For example, the funnel structure 16 comprises one or more funnel surfaces sloped towards and around the center 12c. Advantageously, this may help to guide the cleaning concentrate C clean through an opening of the fluid tank 20, e.g. minimally sticking to the tank opening.
FIGs 4A and 4B illustrate side views of respective top and bottom piercing means 13t,13b. In a preferred embodiment, e.g. as shown, the piercing means 13t,13b comprise a respective (flat top) chisel edge 13e.
Advantageously, the chisel edge may provide a relatively large opening while the piercing means can still be easily retracted. Most preferably, the chisel edge 13e is asymmetric forming a sharp protrusion at one side of the chisel edge 13e (not clearly visible here). For example, this may resemble a knife point.
FIGs 5A and 5B illustrate methods of operating the dosage system 10.
Some aspects of the present disclosure can be embodied as a method for delivering a predetermined amount and type of cleaning concentrate C to a solvent S inside 20v a fluid tank 20. One embodiment comprises connecting “Sc” the dosage system 10, e.g. as described herein or otherwise via its connector 12 to the fluid tank 20 with the solvent S. Another or further embodiment comprises filling “Sf” the pod holder 11 with a pod 30 comprising the predetermined amount and type of cleaning concentrate C. Another or further embodiment comprises pushing “Sp” the push mechanism 14 to pierce the pod 30 with the piercing means 13t,13b and release the cleaning concentrate C from the pod 30 via the fluid connection 12v of the connector 12 into the inside 20v of the fluid tank 20 for mixing with the solvent and forming a cleaning mixture. In some embodiments, the pod holder 11 is opened “So” before the filling “Sf” to place the pod 30 inside. Alternatively, the pod holder 11 may be permanently open, e.g. with a slot from the top or side to insert a pod 30. In a preferred embodiment, the fluid tank 20 is used by a wet cleaning machine. For example, the cleaning mixture is used by the wet cleaning machine to clean a target surface.
In some embodiments, the pod holder comprises a top section 11t connected to a bottom section 11b via a hinge 11h. For example, the hinge rotates in a rotation plane Pr around a rotation vector R transvers to the rotation plane. In one embodiment, the piercing means 13t,13b comprise a top piercing means 13t with a chisel edge 13e oriented in a first knife direction Xc‚Xo parallel to the rotation plane Pr. In another or further embodiment, the piercing means 13t,13b comprise a bottom piercing means 13b with a chisel edge 13e oriented in a second knife direction Y parallel to the rotation vector R, transverse to the first knife direction Xc‚Xo0. Advantageously, the mventors find that a such configuration of transversely oriented chisel edges may allow easy retraction of the piercing means 13t,13b. In particular by having the top edge in plane with the rotation, the top section can be easily removed without inadvertently lifting the pod 30 from holder.
Some aspects of the present disclosure can be embodied as a method of cleaning a target surface. One embodiment comprises determining a type of the target surface. Another or further embodiment comprises selecting a specific pod from a plurality of different pod types. For example, each different pod type comprises a predetermined different amount and/or type of cleaning concentrate C optimized for cleaning a different type of surface. Accordingly a type of the pod can be selected so that it is optimized for cleaning the target surface.
Some embodiments comprise using the selected type of pod in the methods described herein for delivering the predetermined amount and/or type of cleaning concentrate C a solvent S inside 20v a fluid tank 20 of a wet cleaning machine to form a cleaning mixture.
Other or further embodiments comprise using the wet cleaning machine to deliver the cleaning mixture onto the target surface for cleaning the target surface.
Some aspects of the present disclosure can be embodied as a pod 30 with cleaning concentrate C for use in the dosage system 10 or method according to any of the preceding claims.
In a preferred embodiment, the cleaning concentrate comprises one or more cleaning agents including at least one of a soap, a detergent, and/or a disinfectant.
For example, cleaning agents are may generally comprise substances (e.g. liquids, powders, sprays, or granules) suitable for removing dirt, including dust, stains, bad smells, and clutter on surfaces.
As described herein, preferably a liquid cleaning concentrate is used.
Purposes of cleaning agents may include improving health, beauty, removing offensive odor, and avoiding the spread of dirt and contaminants to oneself and others.
In some embodiments, the pod 30 comprises a body of plastic or other pierceable material to safely contain the cleaning concentrate C therein until it 1s released.
In one embodiment, e.g. as shown herein, the pod is shaped as a cup.
For example, the cup comprises a foil covering a cup shaped body.
In some embodiments, the cup has a rim which can be useful in centering the body of the cup over the piercing means.
Of course also other shapes and materials can be envisaged.
For example, the pod, e.g. capsule or other container, may have any shape including a cube, cylinder, disc, frustoconical, et cetera For example, the pod may comprises a bio- degradable material.
In a preferred embodiment, the pod has a transparent or translucent window (not shown) to view a color of the cleaning concentrate
C, wherein the color is determined in accordance a color coding standard such as HACCP for different types of pods.
This may have the advantage of positively identifying the desired cleaning concentrate irrespective e.g. of the packing material.
Furthermore, when using an at least partially transparent or translucent fluid tank 20 it can be easily observed by a user when the cleaning concentrate is released into and/or sufficiently mixed through the solvent.
Alternatively, or additionally, the color of packing material can be adapted according to a color coding scheme.
As an example of such a coding system, e.g. red may indicate high risk areas/restroom cleaning (toilets, urinals); green may indicate food processing/servicing general food and bar use; blue may indicate general lower risk areas excluding food areas; yellow may indicate washbasins, sinks, cabinets and other washroom surfaces; et cetera.
For the purpose of clarity and a concise description, features are described herein as part of the same or separate embodiments, however, it will be appreciated that the scope of the invention may include embodiments having combinations of all or some of the features described.
For example, while embodiments were shown for a specific dosage system, pod, and container, also alternative systems may be envisaged by those skilled in the art having the benefit of the present disclosure for achieving a similar function and result.
E.g. constructional elements may be combined or split up into one or more alternative components.
The various elements of the embodiments as discussed and shown offer certain advantages, such as delivering a precise dose of cleaning concentrate to a fluid tank with a solvent.
Of course, it is to be appreciated that any one of the above embodiments or processes may be combined with one or more other embodiments or processes to provide even further improvements in finding and matching designs and advantages.
It is appreciated that this disclosure offers particular advantages in combination with a fluid tank of a wet cleaning machine, and in general can be applied for any application in the cleaning industry to prepare a predetermined cleaning mixture.
In interpreting the appended claims, it should be understood that the word "comprising" does not exclude the presence of other elements or acts than those listed in a given claim; the word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements; any reference signs in the claims do not limit their scope; several "means" may be represented by the same or different item(s) or implemented structure or function; any of the disclosed devices or portions thereof may be combined together or separated into further portions unless specifically stated otherwise.
Where one claim refers to another claim, this may indicate synergetic advantage achieved by the combination of their respective features.
But the mere fact that certain measures are recited in mutually different claims does not indicate that a combination of these measures cannot also be used to advantage.
The present embodiments may thus include all working combinations of the claims wherein each claim can in principle refer to any preceding claim unless clearly excluded by context.

Claims (15)

CONCLUSIESCONCLUSIONS 1. Een doseringssysteem (10) voor het leveren van een vooraf bepaalde hoeveelheid en type reinigingsconcentraat (C) aan een oplosmiddel (S) in een binnenkant (20v) van een vloeistoftank (20), waarbij het doseringssysteem (10) omvat — een podhouder (11) geconfigureerd om een binnenvolume (11v) te vormen voor het houden van een pod (30) die het reinigingsconcentraat (C) bevat; — een connector (12) geconfigureerd om een vloeistofverbinding (12v) te vormen tussen het binnenvolume (11v) van de podhouder (11) en de binnenkant (20v) van de vloeistoftank (20); — doorsteekmiddelen (13t,13b) voor het doorsteken van de pod (30) gehouden door de podhouder (11); en — een duwmechanisme (14) voor het duwen van de doorsteekmiddelen (13t,13b) in het binnenvolume (11v) van de podhouder (11) voor het doorsteken van de pod (30) om het reinigingsconcentraat (C) vrij te geven van de pod (30) via de vloeistofverbinding (12v) van de connector (12) in de binnenkant (20v) van de vloeistoftank (20).A dosing system (10) for supplying a predetermined amount and type of cleaning concentrate (C) to a solvent (S) in an interior (20v) of a liquid tank (20), the dosing system (10) comprising - a pod holder (11) configured to form an inner volume (11v) for holding a pod (30) containing the cleaning concentrate (C); - a connector (12) configured to form a fluid connection (12v) between the inner volume (11v) of the pod holder (11) and the interior (20v) of the fluid tank (20); - piercing means (13t,13b) for piercing the pod (30) held by the pod holder (11); and - a pushing mechanism (14) for pushing the piercing means (13t,13b) into the inner volume (11v) of the pod holder (11) for piercing the pod (30) to release the cleaning concentrate (C) from the pod (30) through the fluid connection (12v) of the connector (12) in the interior (20v) of the fluid tank (20). 2. Het systeem volgens conclusie 1, waarbij de doorsteekmiddelen (13t,13b) ten minste een onderste doorsteekmiddel (13b) omvatten; waarbij de podhouder (11) een bodemplatform (11p) omvat voor het daarop plaatsen van de pod (30); waarbij het bodemplatform (11p) een opening omvat waardoor het onderste doorsteekmiddel (13b) in de pod (30) kan penetreren; waarbij de doorsteekmiddelen (13t,13b) verder een bovenste doorsteekmiddel (13t) omvatten; waarbij het bodemplatform (11p) beweegbaar is over een maximaal eerste bereik (Z11p); waarbij het bovenste doorsteekmiddel (13t) beweegbaar is over een maximaal tweede bereik (214); waarbij het maximale tweede bereik (Z14) groter is dan het maximale eerste bereik (Z11p); waarbij na het duwen van het bodemplatform (11p) via de pod (30) over zijn maximale eerste bereik (Z11p), het bovenste doorsteekmiddel (13t) verder beweegt over zijn grotere maximale tweede bereik (Z14) om ook de pod (30) te doorsteken vanaf de bovenkant.The system of claim 1, wherein the piercing means (13t,13b) comprises at least one lower piercing means (13b); the pod holder (11) comprising a bottom platform (11p) for placing the pod (30) thereon; the bottom platform (11p) including an opening through which the bottom piercing means (13b) can penetrate into the pod (30); the piercing means (13t,13b) further comprising an upper piercing means (13t); the bottom platform (11p) being movable over a maximum first range (Z11p); wherein the upper piercing means (13t) is movable over a maximum second range (214); wherein the maximum second range (Z14) is greater than the maximum first range (Z11p); wherein after pushing the bottom platform (11p) through the pod (30) over its maximum first range (Z11p), the top piercing means (13t) moves further through its greater maximum second range (Z14) to also reach the pod (30). pierce from the top. 3. Het systeem volgens een der voorgaande conclusies, waarbij het bodemplatform (11p) een open roosterstructuur (11g) omvat met doorgangen voor het daardoorheen leiden van het reinigingsconcentraat (C), waarbij het doseringssysteem (10) een trechterstructuur (16) omvat tussen de open roosterstructuur en de connector (12), waarbij de trechterstructuur (16) is geconfigureerd om een stroom van het reinigingsconcentraat (C) naar een midden (12c) van de vloeistofverbinding (12v)te richten.The system according to any one of the preceding claims, wherein the bottom platform (11p) comprises an open grid structure (11g) with passageways for passing the cleaning concentrate (C) therethrough, the dosing system (10) comprising a funnel structure (16) between the open grid structure and the connector (12), the funnel structure (16) being configured to direct a flow of the cleaning concentrate (C) toward a center (12c) of the fluid communication (12v). 4. Het systeem volgens een der voorgaande conclusies, waarbij de doorsteekmiddelen (13t,13b) elk een respectieve asymmetrische beitelrand met platte bovenkant (13e) omvatten.The system of any preceding claim, wherein the piercing means (13t,13b) each comprises a respective asymmetric flat top chisel edge (13e). 5. Het systeem volgens een van de voorgaande conclusies, waarbij de podhouder (11) onderling verbonden secties (11t, 11b) omvat die in staat zijn om het binnenvolume (11v) te openen voor het ontvangen van de pod (30), en het sluiten van het binnenvolume (11v) om de pod (30) binnen te houden, waarbij de onderling verbonden secties (11t, 11b) van de podhouder (11) zijn geconfigureerd om samen een dichte verbinding te vormen wanneer de podhouder (11) is gesloten, waardoor wordt voorkomen dat het remigingsconcentraat (C) daar tussenuit lekt.The system of any preceding claim, wherein the pod holder (11) comprises interconnected sections (11t, 11b) capable of opening the inner volume (11v) to receive the pod (30), and closing the inner volume (11v) to contain the pod (30) wherein the interconnecting sections (11t, 11b) of the pod holder (11) are configured to form a tight connection together when the pod holder (11) is closed , thus preventing the remigration concentrate (C) from leaking out. 6. Het systeem volgens een der voorgaande conclusies, waarbij een eerste gedeelte (11t) van de podhouder is verbonden met een tweede gedeelte (11b) van de podhouder via een scharniermechanisme (11h) daartussen, waarbij de onderling verbonden gedeelten (11t,11b) van de podhouder (11) respectieve in elkaar grijpende delen (11s) omvatten die zijn geconfigureerd om een klikverbinding te vormen tussen de onderling verbonden gedeelten (11t,11b).The system of any preceding claim, wherein a first portion (11t) of the pod holder is connected to a second portion (11b) of the pod holder via a hinge mechanism (11h) therebetween, the interconnected portions (11t,11b) of the pod holder (11) include respective interlocking portions (11s) configured to form a snap connection between the interconnected portions (11t,11b). 7. Het systeem volgens een der voorgaande conclusies, waarbij de podhouder een bovenste gedeelte (11t) omvat verbonden met een onderste gedeelte (11b) via een scharnier (11h), waarbij het scharnier roteert in een rotatievlak (Pr) rond een rotatievector (R) dwars op het rotatievlak, waarbij de doorsteekmiddelen (13t,13b) een bovenste doorsteekmiddel (13t) omvatten met een beitelrand (13e) georiënteerd in een eerste mesrichting (Xc, Xo) evenwijdig aan het rotatievlak (Pr), waarbij de doorsteekmiddelen (13t,13b) een onderste doorsteekmiddel (13b) omvatten met een beitelrand (13e) georiënteerd in een tweede mesrichting (Y) evenwijdig aan de rotatievector (R), dwars op de eerste mesrichting (Xc,Xo).The system of any preceding claim, wherein the pod holder comprises an upper portion (11t) connected to a lower portion (11b) via a hinge (11h), the hinge rotating in a plane of rotation (Pr) about a rotation vector (R). transverse to the plane of rotation, the piercing means (13t,13b) comprising an upper piercing means (13t) with a chisel edge (13e) oriented in a first knife direction (Xc, Xo) parallel to the plane of rotation (Pr), the piercing means (13t 13b) include a lower piercing means (13b) having a chisel edge (13e) oriented in a second knife direction (Y) parallel to the rotation vector (R), transverse to the first knife direction (Xc,Xo). 8. Het systeem volgens een der voorgaande conclusies, waarbij de podhouder (11) een bovenste aanligvlak (114) omvat; waarbij het bovenste aanligoppervlak (11a) een opening omvat waardoor een bovenste doorsteekmiddel (13t) de pod (30) naar en op het onderste doorsteekmiddel (13b) kan duwen, waarbij de podhouder (11) is geconfigureerd om de pod (30) tussen het bodemplatform (11p) en het bovenste aanligoppervlak (11a) te houden.The system of any preceding claim, wherein the pod holder (11) includes an upper abutment surface (114); wherein the upper abutment surface (11a) includes an opening through which an upper piercing means (13t) can push the pod (30) towards and onto the lower piercing means (13b), the pod holder (11) being configured to place the pod (30) between the bottom platform (11p) and the top abutment surface (11a). 9. Het systeem volgens een der voorgaande conclusies, waarbij het doseringssysteem (10) een veerkrachtig bovenelement (15t) omvat, voorgespannen om een positie van het duwmechanisme (14) te herstellen en het bovenste doorsteekmiddel (13t) uit de pod (30) te trekken; waarbij het doseringssysteem (10) een veerkrachtig bodemelement (15t) omvat, voorgespannen om een positie van het bodemplatform (11p) te herstellen en het onderste doorsteekmiddel (13b) uit de pod (30) te trekken.The system of any preceding claim, wherein the dosing system (10) comprises a resilient top member (15t) biased to restore a position of the pusher mechanism (14) and release the top piercing means (13t) from the pod (30). Pull; the dispensing system (10) comprising a resilient bottom member (15t) biased to restore a position of the bottom platform (11p) and draw the lower piercing means (13b) out of the pod (30). 10. Het systeem volgens een der voorgaande conclusies, waarbij de connector (12) is geconfigureerd om een omkeerbare vaste verbinding tussen het doseersysteem (10) en de vloeistoftank (20) te vormen, zoals een schroefdraad voor het vastschroeven van het doseersysteem (10) op de vloeistoftank (20) die als een vervangende dop fungeert.The system of any preceding claim, wherein the connector (12) is configured to form a reversible fixed connection between the metering system (10) and the liquid tank (20), such as a screw thread for screwing on the metering system (10). on the fluid tank (20) which acts as a replacement cap. 11. Samenstel (100) omvattende het doseringssysteem (10) volgens een der voorgaande conclusies verbonden met een vloeistoftank (20), waarbij het doseringssysteem (10) is geconfigureerd om te worden verbonden als een dop op een vloeistofopening van de vloeistoftank (20).An assembly (100) comprising the dosing system (10) according to any preceding claim connected to a liquid tank (20), the dosing system (10) being configured to be connected as a cap to a liquid port of the liquid tank (20). 12. Een natte reinigingsmachine omvattende het samenstel (100) volgens conclusie 11, waarbij de natte reinigingsmachine is geconfigureerd om een reinigingsmengsel uit de vloeistoftank (20) te halen en het reinigingsmengsel af te geven op een schoon te maken doeloppervlak.A wet cleaning machine comprising the assembly (100) of claim 11, wherein the wet cleaning machine is configured to draw a cleaning mixture from the liquid tank (20) and dispense the cleaning mixture to a target surface to be cleaned. 13. Een werkwijze voor het leveren van een vooraf bepaalde hoeveelheid en type reinigingsconcentraat (C) aan een oplosmiddel (S) in een binnenkant (20v) van een vloeistoftank (20), waarbij de werkwijze omvat — verbinden (Sc) van het doseringssysteem (10) volgens een der conclusies 1-10 aan de vloeistoftank (20) met het oplosmiddel (S); — vullen (Sf) van de podhouder (11) met een pod (30) omvattende de vooraf bepaalde hoeveelheid en type reinigingsconcentraat (C); en — duwen (Sp) van het duwmechanisme (14) om de pod (30) met de doorsteekmiddelen (13t,13b) te doorsteken en het reinigingsconcentraat (C) uit de pod (30) vrij te geven via de vloeistofverbinding (12v) van de connector (12) in de binnenkant (20v) van de vloeistoftank (20) voor het mengen met het oplosmiddel en het vormen van een reinigingsmengsel.A method of supplying a predetermined amount and type of cleaning concentrate (C) to a solvent (S) in an interior (20v) of a liquid tank (20), the method comprising connecting (Sc) the dosing system ( 10) according to any one of claims 1-10 to the liquid tank (20) containing the solvent (S); - filling (Sf) the pod holder (11) with a pod (30) comprising the predetermined amount and type of cleaning concentrate (C); and — pushing (Sp) the pushing mechanism (14) to pierce the pod (30) with the piercing means (13t,13b) and releasing the cleaning concentrate (C) from the pod (30) through the fluid connection (12v) of the connector (12) in the interior (20v) of the fluid tank (20) for mixing with the solvent and forming a cleaning mixture. 14. Een werkwijze voor het reinigen van een doeloppervlak omvattende — het bepalen van een type van het doeloppervlak; — selecteren van een specifieke pod uit een aantal verschillende podtypen, waarbij elk verschillend podtype een vooraf bepaalde verschillende hoeveelheid en/of type reinigingsconcentraat (C) omvat, geoptimaliseerd voor het reinigen van een ander type oppervlak, waarbij een type van de geselecteerde pod is geoptimaliseerd voor het reinigen van het doeloppervlak; — gebruiken van het geselecteerde type pod in de werkwijze van conclusie 13 voor het leveren van de vooraf bepaalde hoeveelheid en/of type reinigingsconcentraat (C) aan een oplosmiddel (S) in een binnenkant (20v)14. A method of cleaning a target surface comprising — determining a type of the target surface; — selecting a specific pod from a number of different pod types, each different pod type comprising a predetermined different amount and/or type of cleaning concentrate (C), optimized for cleaning a different type of surface, one type of the selected pod being optimized for cleaning the target surface; - using the selected type of pod in the method of claim 13 for supplying the predetermined amount and/or type of cleaning concentrate (C) to a solvent (S) in an interior (20v) van een vloeistoftank (20) van een natte reinigingsmachine om een reinigingsmengsel te vormen; en — met behulp van de natte reinigingsmachine om het reinigingsmengsel op het doeloppervlak af te geven voor het reinigen van het doeloppervlak.of a liquid tank (20) of a wet cleaning machine to form a cleaning mixture; and — using the wet cleaning machine to deliver the cleaning mixture to the target surface for cleaning the target surface. 15. Een pod (30) met reinigingsconcentraat (C) voor gebruik in het doseringssysteem (10), samenstel (100), natte reinigingsmachine of werkwijze volgens een der voorgaande conclusies, waarbij het reinigingsconcentraat (C) een of meer reinigingsmiddelen omvat, waaronder ten minste een zeep, een wasmiddel en/of een desinfectiemiddel voor het reinigen van een doeloppervlak, waarbij de pod (30) een lichaam van doorsteekbaar materiaal omvat om het reinigingsconcentraat (C) daarin te bevatten totdat het wordt vrijgegeven, waarbij de pod een transparant of doorschijnend venster heeft om een kleur van het reinigingsconcentraat (C) te zien, waarbij de kleur wordt bepaald in overeenstemming met een kleurcoderingsstandaard zoals HACCP voor verschillende soorten pods.A pod (30) of cleaning concentrate (C) for use in the dosing system (10), assembly (100), wet cleaning machine or method according to any one of the preceding claims, wherein the cleaning concentrate (C) comprises one or more cleaning agents, including at least one at least one soap, detergent and/or disinfectant for cleaning a target surface, the pod (30) comprising a body of pierceable material to contain the cleaning concentrate (C) therein until released, the pod being a transparent or has a translucent window to see a color of the cleaning concentrate (C), where the color is determined in accordance with a color coding standard such as HACCP for different types of pods.
NL2024044A 2019-10-18 2019-10-18 Dosage system and method for preparing a cleaning mixture NL2024044B1 (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
NL2024044A NL2024044B1 (en) 2019-10-18 2019-10-18 Dosage system and method for preparing a cleaning mixture
DE202020102386.1U DE202020102386U1 (en) 2019-10-18 2020-04-29 Dosing system for the production of a cleaning mixture
US17/769,437 US20230095949A1 (en) 2019-10-18 2020-10-16 Dosage system and method for preparing a cleaning mixture
EP20793831.7A EP4044891A1 (en) 2019-10-18 2020-10-16 Dosage system and method for preparing a cleaning mixture
PCT/NL2020/050636 WO2021075964A1 (en) 2019-10-18 2020-10-16 Dosage system and method for preparing a cleaning mixture

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
NL2024044A NL2024044B1 (en) 2019-10-18 2019-10-18 Dosage system and method for preparing a cleaning mixture

Publications (1)

Publication Number Publication Date
NL2024044B1 true NL2024044B1 (en) 2021-06-22

Family

ID=69375940

Family Applications (1)

Application Number Title Priority Date Filing Date
NL2024044A NL2024044B1 (en) 2019-10-18 2019-10-18 Dosage system and method for preparing a cleaning mixture

Country Status (2)

Country Link
DE (1) DE202020102386U1 (en)
NL (1) NL2024044B1 (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2949303A1 (en) * 2009-09-03 2011-03-04 Oreal Unit i.e. sturdy housing/capsule, for packing, mixing and distribution of two products i.e. cosmetic/care products, has locking unit released from another locking unit by spacing of wings at time of wing's support on internal side
WO2016097473A1 (en) * 2014-12-19 2016-06-23 Limonade Oy A cap and a method for making a soft drink

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2949303A1 (en) * 2009-09-03 2011-03-04 Oreal Unit i.e. sturdy housing/capsule, for packing, mixing and distribution of two products i.e. cosmetic/care products, has locking unit released from another locking unit by spacing of wings at time of wing's support on internal side
WO2016097473A1 (en) * 2014-12-19 2016-06-23 Limonade Oy A cap and a method for making a soft drink

Also Published As

Publication number Publication date
DE202020102386U1 (en) 2020-09-10

Similar Documents

Publication Publication Date Title
CA3067839C (en) Refillable dispensers having reservoirs and refill containers configured for fluid and air transfer therebetween
RU2708273C2 (en) Container with cleaning agent and device for dispensing liquid food products with built-in cleaning system for container insertion
JP6126205B2 (en) Raw material capsules for beverage preparation
US20140319245A1 (en) Recharge insert for cleaning, sanitizing or disinfectant fluid spray system
JP4198914B2 (en) A reclosable device for connecting a storage container to a dispensing device
US8657162B2 (en) Recharge insert for cleaning, sanitizing or disinfectant fluid spray system
TW201201749A (en) Cartridge for extracting a beverage from a particulate substance contained therein by means of water under pressure
CA2260408A1 (en) Dispenser for dispensing concentrated liquid soap to industrial cleaning apparatuses
KR101481959B1 (en) Cosmetic vessel having mixed two-type materials for residue improving
US11696591B2 (en) Dispensing system for transferring chemical into a strainer basket assembly
JP2018506347A (en) Connector and beverage dispenser for refilling containers
NL2024044B1 (en) Dosage system and method for preparing a cleaning mixture
KR102244718B1 (en) Beverage production apparatus
CA2439058C (en) Household cleaning tool
US20230095949A1 (en) Dosage system and method for preparing a cleaning mixture
US9327955B2 (en) Funnel for facilitating emptying of a liquid-filled container
NZ281165A (en) Refillable dispenser has a head through which a product can be dispensed with the aid of a withdrawal device, a container above the head to hold a collapsible container of desired product and a piercer device
WO2015170992A1 (en) Spray can with interchangeable capsule
US11794217B2 (en) Cleaning apparatuses and devices for applying cleaning fluid to substrates
US20080092926A1 (en) Cleaning apparatus with disposable elements and methods of cleaning
NL1016813C1 (en) Consumer-safe fitting assembly for connecting a reservoir to a dispensing device.
MXPA02005460A (en) A consumer safe fitment for connecting a reservoir to a dispensing appliance.
US20140251994A1 (en) Device for providing treatment to a fountain drink dispenser
AU2004284019B2 (en) A dispensing unit for controlled discharge of metered volume
WO2005039998A1 (en) A dispensing unit for controlled discharge of metered volume