EP4447769A1 - Cleaning station for active mop - Google Patents
Cleaning station for active mopInfo
- Publication number
- EP4447769A1 EP4447769A1 EP21840496.0A EP21840496A EP4447769A1 EP 4447769 A1 EP4447769 A1 EP 4447769A1 EP 21840496 A EP21840496 A EP 21840496A EP 4447769 A1 EP4447769 A1 EP 4447769A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- cleaning
- pad
- roller
- cleaning pad
- supporting surface
- 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.)
- Granted
Links
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/50—Auxiliary implements
- A47L13/58—Wringers for scouring pads, mops, or the like, combined with buckets
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/02—Floor surfacing or polishing machines
- A47L11/04—Floor surfacing or polishing machines hand-driven
- A47L11/08—Floor surfacing or polishing machines hand-driven with rotating tools
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/28—Floor-scrubbing machines, motor-driven
- A47L11/282—Floor-scrubbing machines, motor-driven having rotary tools
Definitions
- the invention relates to a cleaning station for an active mop.
- One kind of such floor cleaning devices comprises e.g., two discs rotatable about separate vertical axes.
- the discs are wetted with a cleaning liquid, such as water, and the floor cleaning device is operated by a user by moving the floor cleaning device with the discs in contact with the floor surface to be cleaned and with the discs rotating.
- the floor cleaning device may be a dedicated floor wet cleaning device comprising the discs as a permanently installed feature of the floor cleaning device.
- the floor cleaning device may be a multipurpose floor cleaning device including for instance a vacuum cleaning function and a floor wet cleaning function.
- Different cleaning tools are interfaced with a body portion including at least a handle portion and an electric power connection of the multipurpose floor cleaning device.
- One cleaning tool to interface with the body portion may be a vacuum cleaner nozzle.
- a different cleaning toll to interface with the body portion may be a housing including the rotatable discs.
- CN 111195111 A discloses a rotary dewatering and cleaning tool for an electric mop.
- the mop comprises an electric mop body and a mop bucket.
- the electric mop body comprises a mop rod and a mop head, a wiping object is arranged on the mop head.
- a washing component used for cleaning a wiping object and a supporting part used for supporting the electric mop body are arranged in the mop bucket.
- the electric mop body abuts against the supporting part and has a high position and a low position. When the electric mop is located at the low position, the wiping object makes contact with the washing component and is cleaned through rotation of the electric mop.
- the electric mop is located at the high position, the wiping object is away from the washing component and is spin-dried and dewatered through rotation of the electric mop.
- US 2020/397205 A1 discloses a cleaning assembly including a floor scrubber and a selfcleaning device matched with the floor scrubber.
- the floor scrubber includes a housing connected to a handle.
- a motor is arranged in the housing.
- a scrubbing disc is arranged below the housing and is driven by the motor to rotate.
- the self-cleaning device includes a barrel connected to a support member used for supporting the floor scrubber.
- a wiper member is arranged in the barrel. The scrubbing disc is either wetted outside the barrel or wetted by pumping water to the scrubbing disc in the barrel.
- the wiper member When the scrubbing disc is placed in the barrel to be dried, the wiper member abuts against the scrubbing disc and when the scrubbing disc rotates water and/or dirt on the scrubbing disc are/is wiped off by the wiper member.
- the wiper member comprises rollers.
- the rollers can rotate in only one direction. When the rollers rotate, water is supplied to clean the scrubbing disc.
- the ratchet mechanism can lock the rollers to prevent the rollers from rotating reversely.
- the scrubbing disc can be cleaned with water when rotating forward and can be dried when rotating reversely.
- Reducing the cleaning liquid content of a cleaning pad of an active mop is an important step in the cleaning of a cleaning pad before being put to use again for cleaning a floor surface.
- the cleaning pad In order to avoid large puddles of cleaning liquid on the floor surface, the cleaning pad has to have a suitable liquid content.
- a cleaning station for an active mop the cleaning station being configured for the active mop having at least one about a vertical axis rotatable cleaning pad.
- the cleaning station comprises: a container for holding a cleaning liquid, a cleaning pad supporting surface member arranged above a bottom of the container, the cleaning pad supporting surface member being configured to support the cleaning pad, and a roller arranged centrally in the cleaning pad supporting surface member and configured upon rotation to transport cleaning liquid from the container to the surface member.
- the roller is rotatable about a horizontal axis and configured to be rotated by the rotatable cleaning pad of the active mop.
- the cleaning station is configured to provide a pad cleaning setting and a pad liquid content reducing setting while the rotatable cleaning pad rotates in one direction.
- the roller In the pad cleaning setting, the roller is rotatable by the rotatable cleaning pad of the active mop and in the pad liquid content reducing setting, the roller is prevented from being rotated while the cleaning pad rotates.
- the roller is configured, upon rotation, to transport cleaning liquid from the container to the surface member and to be rotated by the rotatable cleaning pad of the active mop, since the cleaning station is configured to provide a pad cleaning setting and a pad liquid content reducing setting while the rotatable cleaning pad rotates in one direction, and since in the pad cleaning setting, the roller is rotatable by the rotatable cleaning pad of the active mop and in the pad liquid content reducing setting, the roller is prevented from being rotated while the cleaning pad rotates - an efficient cleaning station is provided.
- the cleaning station provides both cleaning of the cleaning pad of an active mop and reduction of the liquid content of the cleaning pad without requiring change of rotational direction.
- the cleaning station is provided for interaction with an active mop.
- the active mop is a handheld device configured for wet cleaning of a floor surface.
- the active mop comprises the at least one rotatable cleaning pad.
- the at least one cleaning pad comprises a floor engaging surface configured to engage with the floor surface to be cleaned.
- the floor engaging surface may extend generally in a substantially radial direction in relation to the vertical axis, about which the at least one cleaning pad is rotatable.
- the active mop may be a dedicated floor wet cleaning device. As such the active mop is only devised for wet cleaning of floor surfaces.
- the at least one rotatable cleaning pad is installed in the active mop in a manner that permits exchange of the rotatable cleaning pad as such or exchange of a portion thereof, such as a member comprising the floor engaging surface of the cleaning pad.
- the active mop is not devised for carrying other active cleaning tools than the at least one rotatable cleaning pad.
- the active mop may be implemented in a multipurpose floor cleaning device configured to alternate between floor wet cleaning function and one or more further cleaning functions.
- An active mop cleaning tool may be configured to interfaced with a body portion the multipurpose floor cleaning device.
- the active mop cleaning tool may comprise the at least one rotatable cleaning pad.
- the active mop may comprise e.g., two or more cleaning pads, each cleaning pad being rotatable about its respective vertical axis, the axes of the cleaning pads extending substantially in parallel with each other.
- the cleaning pad supporting surface member provides a surface, which is configured to support the cleaning pad, at least partially, in both the pad cleaning setting and the pad liquid content reducing setting.
- the cleaning pad is moist or wet but only to such a degree that large puddles of cleaning liquid on the floor surface are avoided.
- the actual liquid content of a cleaning pad may vary between different types of cleaning pads.
- a voluminous and porous cleaning pad may hold more cleaning liquid than a more compact cleaning pad.
- a user of the active mop may have to decide how long the cleaning pad is to be subjected to the pad cleaning setting to clean the cleaning pad and the pad liquid content reducing setting to provide a suitable liquid content in the cleaning pad for floor cleaning. User preferences may vary.
- the cleaning station may be configured for receiving two or more cleaning pads of an active mop.
- the cleaning station is provided for cleaning the at least one cleaning pad of an active mop.
- the cleaning station may also be used for wetting the at least one cleaning pad at the beginning of a floor cleaning process with the active mop.
- the roller arranged centrally in the cleaning pad supporting surface member transports cleaning liquid from the container to the cleaning pad supporting surface member while the roller is rotate about its horizontal axis by the cleaning pad of the active mop. Accordingly, during use of the cleaning station, a cleaning liquid, such as water or water with a detergent, is held in the container.
- the cleaning pad supporting surface member is provided above a liquid surface of the cleaning liquid in the container.
- the roller is arranged to extend from the cleaning pad supporting surface member to below the liquid surface level of the cleaning liquid. Thus, the cleaning liquid can be transported by the roller to the cleaning pad supporting surface member in the pad cleaning setting of the cleaning station.
- the at least one cleaning pad is to be cleaned at least to a certain degree, such that the cleaning pad is cleaner after having be cleaned during the pad cleaning setting than before.
- the roller rotates continuously in order to continuously or intermittently supply cleaning liquid from the container to a top of the cleaning pad supporting surface member and the cleaning pad by the rotating cleaning pad driving the roller to rotate about its axis.
- the roller In the pad liquid content reducing setting, the roller is prevented from being rotated. Accordingly, no liquid is supplied from the container to the cleaning pad supporting surface member. Thus, the amount of cleaning liquid in the cleaning pad is gradually decreased in the pad liquid content reducing setting.
- the at least one cleaning pad may be relieved of part of the cleaning liquid that has been supplied to the cleaning pad during the pad cleaning setting.
- the cleaning pad may be relieved of part of the cleaning liquid therein by pressing against at least part of the cleaning pad supporting surface member.
- the cleaning pad supporting surface member may be devised to improve such relieving of cleaning liquid.
- the cleaning pad supporting surface member may for instance comprise ridges and/or grooves to improve the relieving of cleaning liquid.
- liquid content as used herein with reference to the liquid content of a cleaning pad relates to the liquid volume contained in the cleaning pad or the amount of cleaning liquid contained in the cleaning pad. If measured, the liquid content may be expressed e.g., in liquid volume / cleaning pad volume.
- the container has an opening facing upwardly when the container is standing on a horizontal surface, such as e.g. a floor surface to be cleaned. During use of the cleaning station, the rotatable cleaning pad is lowered through the opening into the container to be supported by the cleaning pad supporting surface member.
- the cleaning pad supporting surface member may support the at least one cleaning pad by the cleaning pad abutting at least partially against the top of the cleaning pad supporting surface member.
- the cleaning pad supporting surface member may be provided below an upper rim of the container. Thus, while the cleaning pad is positioned on the cleaning pad supporting surface member, it is avoid that cleaning liquid spills out of the container as the cleaning pad rotates.
- the upper rim may extend around the opening of the container.
- At least part of the container may be filed with cleaning liquid to a level just below the cleaning pad supporting surface member.
- the roller may be at least partially submerged in the cleaning liquid.
- the roller may extend partially underneath the cleaning pad, such as in a radial direction of the cleaning pad from a periphery of the cleaning pad to maximum the rotational axis of the cleaning pad.
- the roller can be rotated about its horizontal axis by the rotating cleaning pad engaging with the roller.
- the preventing of the rotation of the roller during the pad liquid content reducing setting may be achieved in various ways in accordance with different embodiments of the invention.
- the cleaning station may be configured to provide engagement between the cleaning pad of the active mop and the cleaning pad supporting surface member, both during the pad cleaning setting and the pad liquid content reducing setting.
- the cleaning station may be configured to provide rubbing between the cleaning pad supporting surface member and the cleaning pad as it rotates.
- such rubbing engagement may contribute to the cleaning of the cleaning pad.
- the pad liquid content reducing setting such rubbing engagement may contribute to the reduction of liquid in the cleaning pad.
- the cleaning station may comprise a mechanism to provide the pad liquid content reducing setting, wherein the mechanism is configured to stop the roller while the cleaning pad of the active mop rotates. In this manner, the roller may be prevented from supplying cleaning liquid from the container to the cleaning pad supporting surface member during the pad liquid content reducing setting.
- the mechanism may also be configured to permit the roller to rotate during the pad cleaning setting.
- the mechanism may be configured to stop the roller upon a vertical motion of at least a portion of the active mop.
- the pad liquid content reducing setting may be initiated by a vertical motion of the active mop, such a vertical motion of the cleaning pad and/or a portion of the active mop close to the cleaning pad.
- an upwardly directed vertical motion of the cleaning pad may stop the roller thus, initiating the pad liquid content reducing setting. Conversely, a downwardly directed vertical motion of the cleaning pad, releases the roller and initiates the pad cleaning setting.
- the mechanism may comprise a lifting member for lifting a side portion of the active mop from the cleaning pad supporting surface member to disengage the cleaning pad of the active mop from the roller.
- the pad liquid content reducing setting may be initiated by a vertical motion of the active mop.
- the lifting member may for instance engage with the side portion of the active mop and be biased in an upwardly direction.
- a user may push the active mop downwardly against the lifting member in order to engage the cleaning pad with the roller and to initiate the pad cleaning setting.
- the pad liquid content reducing setting is initiated by the lifting member lifting the side portion of the active mop until the cleaning pad no longer engages with the roller.
- the mechanism may comprise a blocking member configured to engage with the roller to prevent the roller from rotating. In this manner, the vertical motion of the active mop may cause the mechanism to block the roller in order to initiate the pad liquid content reducing setting.
- a downwardly directed vertical motion of a portion of the active mop may cause the blocking member of the mechanism to release the roller thus, initiating the pad cleaning setting.
- the blocking member may block the roller and initiate the pad liquid content reducing setting.
- the cleaning pad supporting surface member may comprise at least one protrusion configured to engage with the cleaning pad.
- the cleaning pad supporting surface member may comprise at least one protrusion configured to engage with the cleaning pad.
- the rubbing engagement between the cleaning pad supporting surface member and the at least one protrusion with the cleaning pad may contribute to a more thorough cleaning of the cleaning pad.
- the rubbing engagement between the cleaning pad supporting surface member and the at least one protrusion with the cleaning pad may contribute to more efficient reduction of liquid in the cleaning pad.
- cleaning liquid is transported by the roller from the container to the cleaning pad supporting surface member and the cleaning pad in order to clean the cleaning pad, more cleaning liquid than what is being soaked up by the cleaning pad may be transported to the cleaning pad supporting surface member.
- the cleaning liquid is thus, returned to the container via the through openings. Further, during the pad liquid content reducing setting, cleaning liquid is pressed out of the cleaning pad. Such cleaning liquid is also returned to the container via the through openings.
- the cleaning station may be configured for the active mop having at least two rotatable cleaning pads.
- the cleaning pad supporting surface member may be configured to support the at least two cleaning pads, and the roller may be arranged to extend substantially between centres of two cleaning pads of the active mop.
- a cleaning station for an active mop comprising two cleaning pads may be provided.
- only one roller may be required to supply cleaning liquid to the at least two cleaning pads.
- the two cleaning pads of the active mop are counterrotating cleaning pads.
- the rotation of each of the two cleaning pads will contribute to rotating the roller.
- Fig. 1 schematically illustrates a cleanings station according to embodiments and an active mop
- Figs. 2a and 2b illustrate a cleaning station according to embodiments
- FIGs. 3a and 3b schematically illustrate embodiments of a cleaning pad supporting surface member
- Figs. 4a - 4d schematically illustrate embodiments of mechanisms of a cleaning station.
- Fig. 1 schematically illustrates a cleanings station 2 according to embodiments and an active mop 4.
- the cleaning station 2 may be a cleaning station as discussed herein e.g., with reference to Figs. 2 - 4d below.
- the active mop 4 comprises at least one about a vertical axis rotatable cleaning pad 6.
- the active mop 4 comprises two counterrotating cleaning pads 6, as indicated by two arrows.
- the at least one cleaning pad 6 is rotatable about a vertical axis when the active mop 4 is arranged in a use position.
- the respective vertical axes of the two cleaning pads 6 are arranged in parallel.
- the at least one cleaning pad 6 comprises a floor engaging surface 8 configured to engage with a floor surface 10 to be cleaned.
- the floor engaging surface 8 extends generally in a substantially radial direction in relation to the vertical axis.
- the at least one cleaning pad 6 comprises one or more porous materials configured to soak up cleaning liquid.
- porous materials are a micro fibre material, a synthetic orreusable sponge, a textile material, a nonwoven material, etc.
- the cleaning pads 6 are rotated by one or more electric motors arranged in a housing 12 at an end portion of the active mop 4.
- a handle 14 is connected to the housing 12 and configured for grasping by a user of the active mop 4.
- the one or more electric motors may be supplied with electrical energy by a rechargeable battery or from power mains via an electric power cord.
- the active mop 4 is configured for cleaning a floor surface 10. A user of the active mop 4 will manually move the active mop 4 along the floor surface 10 to be cleaned with the at least one cleaning pad 6 engaging with the floor surface 10.
- the cleaning station 2 is configured for cleaning the at least one cleaning pad 6 in a pad cleaning setting and for reducing the liquid content of the at least one cleaning pad 6 in a pad liquid content reducing setting.
- Figs. 2a and 2b illustrate a cleaning station 2 according to embodiments for an active mop.
- Fig. 2a shows a perspective view of the cleaning station 2
- Fig. 2b shows an exploded view of the cleaning station 2.
- the cleaning station 2 comprises a container 20 for holding a cleaning liquid, a cleaning pad supporting surface member 22, and a roller 24 arranged centrally in the cleaning pad supporting surface member 22. During use of the cleaning station 2, the cleaning liquid is transferred by the roller 24 from the container 20 to the cleaning pad supporting surface member 22.
- the roller 24 is rotatable about a horizontal axis 26.
- the roller 24 is configured to be rotated about the horizontal axis 26 by the rotatable cleaning pad of the active mop.
- the roller 24 is configured to be rotated by two counterrotating cleaning pads.
- the roller 24 is configured upon rotation to transport cleaning liquid from the container 20 to the cleaning pad supporting surface member 22.
- the roller 24 extends through the cleaning pad supporting surface member 22 into the container 20, with the rotational axis 26 arranged such that one portion of the roller 24 is arranged at, or slightly above, a top or an upper surface 51 of the cleaning pad supporting surface member 22 and one portion of roller 24 is arranged below the cleaning pad supporting surface member 22.
- An outer surface of the roller 24 may be formed to enhance entraining cleaning liquid from the container 20 to the cleaning pad supporting surface member 22.
- the outer surface of the roller 24 may include protrusions 28 and/or grooves 30 that act as liquid transporting members, dragging the cleaning liquid from the container 20 onto the cleaning pad supporting surface member 22.
- a size of the roller 24 may depend on a size of the cleaning pads 6. Mentioned purely as an example, one cleaning pad 6 may have a diameter within a range of 10 - 20 cm.
- the roller 24 may have a length along the rotational axis 26 within a range of 10 - 20 cm.
- the roller may have a diameter within a range of 5 - 15 cm.
- the protrusions 28 may be provided with a partition within a range of 5 - 20 mm.
- the cleaning station 2 may comprise one roller 24 only.
- the roller 24 may be of an open construction to admit cleaning liquid into an inside of the roller 24. In this manner, the cleaning liquid in the container 20 is not displaced by the roller 24. Accordingly, a maximum amount of cleaning liquid may be contained in the container 20 and no lifting force from the cleaning liquid acts on the roller 24, ensuring secure positioning of the roller 24 and/or the cleaning pad supporting surface member 22 in the container 20.
- the open construction of the roller 24 includes a hollow cylinder 32 provided with a number of through holes 34.
- the roller 24 comprises two end wall members 36, one at each axial end of the cylinder 32.
- the end wall members 36 are provided with centrally arranged protrusions 38, which are journaled in respective seats 40 in the cleaning pad supporting surface member 22.
- the cleaning pad supporting surface member 22 is configured to support a cleaning pad of the active mop.
- the cleaning pad supporting surface member 22 is configured to support two cleaning pads 6 of the active mop, one cleaning pad 6 on each side of a centre of the roller 24.
- the cleaning pads 6 are indicated with broken line circles and their rotational directions are indicated with arrows.
- the cleaning station 2 is configured for the active mop to have two rotatable cleaning pads and the cleaning pad supporting surface member 22 is configured to support the two cleaning pads.
- the roller 24 is arranged to extend substantially between centres of two cleaning pads 6 of the active mop. Thus, the roller 24 is rotatable by two counterrotating cleaning pads 6 of the active mop.
- the cleaning pad supporting surface member 22 is arranged above a bottom of the container 20.
- the cleaning pad supporting surface member 22 is arranged above a surface level of the cleaning liquid in the container 20. Accordingly, suitably, during use of the cleaning station 2, the container 20 is only filled with cleaning liquid to a level just below the cleaning pad supporting surface member 22.
- the container 20 comprises an inner container 20’ and an outer container 20”.
- the roller 24 extends into the inner container 20’. In this manner, two compartments are provided on the cleaning station 2.
- the two containers 20’, 20” may be arranged for containing two liquids, such as unused cleaning liquid and used cleaning liquid. Thus, cleaning of the cleaning pads 6 may be performed with clean cleaning liquid since the cleaning liquid is not contaminated with cleaning liquid that has been used for cleaning the cleaning pads 6.
- the inner container 20’ may be arranged radially inside the outer container 20” as shown in Fig. 2b. Alternatively, the inner container may be arranged centrally below the roller between two outer containers arranged outside the inner container seen along the rotational axis of the roller.
- the container 20 may comprise only one container.
- used cleaning liquid is mixed with clean cleaning liquid.
- cleaning some floor surfaces such as e.g. floor surfaces that are soiled to a lesser degree, this may be a viable option.
- the roller 24 extends to a bottom of the inner container 20’. In this manner, it may be ensured during use of the cleaning station 2 that substantially all cleaning liquid within the inner container 20’ may be transported to the cleaning pad supporting surface member 22.
- the roller 24 may extend to a bottom of the one container 20.
- the cleaning station 2 is configured to provide a pad cleaning setting and a pad liquid content reducing setting. These two settings are provided with the rotatable cleaning pad rotating in one direction.
- the roller 24 In the pad cleaning setting, the roller 24 is rotatable by the rotatable cleaning pad 6 of the active mop and in the pad liquid content reducing setting, the roller 24 is prevented from being rotated while the cleaning pad 6 rotates.
- the cleaning pad 6 engages with the cleaning pad supporting surface member 22 and the roller 24.
- the latter is rotated by the cleaning pad 6 and thus, cleaning liquid is transported by the roller 24 from the container 20, such as the inner container 20’, to the cleaning pad supporting surface member 22 where the cleaning liquid is soaked up by the cleaning pad and optionally squeezed out again - comparable to a manual rinsing of the cleaning pad.
- the cleaning station 2 comprises a mechanism 60 to provide the pad liquid content reducing setting.
- the mechanism 60 is configured to stop the roller 24 while the cleaning pad 6 of the active mop rotates.
- the mechanism 60 is activated by a user of the cleaning station 2. For instance, the user may activate the mechanism 60 with the active mop.
- the mechanism 60 may also enable the pad cleaning setting. That is, the mechanism 60 may have two positions, one enabling the pad liquid content reducing setting and the other enabling the pad cleaning setting.
- the mechanism 60 is only partially shown in Figs. 2a and 2b, see further below with reference to Figs. 4a - 4d.
- the cleaning station 2 is configured to provide engagement between the cleaning pad 6 and the cleaning pad supporting surface member 22, both during the pad cleaning setting and the pad liquid content reducing setting. Such engagement is beneficial in both settings for cleaning the cleaning pad as well as reducing liquid content therein.
- the container 20 may comprise a foldable handle 42 configured for a user to carry the cleaning station 2.
- the container 20 may comprise a plug 44 for emptying cleaning liquid from the container 20.
- the cleaning liquid may be used cleaning liquid which has been collected while cleaning the cleaning pads.
- the pug 44 may suitably be arranged at a lower end of the container 20.
- the cleaning station 2 may comprise a positioning member 46 for positioning the active mop laterally on the cleaning pad supporting surface member 22. In this manner, it may be ensured that the active mop and its cleaning pads 6may be correctly positioned in relation to the cleaning pad supporting surface member 22.
- the positioning member 46 may include a recess and/or a protrusion configured to mate with a corresponding protrusion and/or recess of the active mop.
- the protrusion of the active mop may for instance be a wheel configured to support the active mop against the floor surface to be cleaned.
- the positioning member 46 comprises a recess configured for receiving a wheel of the active mop.
- the cleaning station 2 may be provided with other kinds of positionings members and/(or further positioning members e.g., positioning members interacting with the cleaning pads of the active mop.
- FIGs. 3a and 3b schematically illustrate embodiments of a cleaning pad supporting surface member 22.
- Fig. 3a shows a perspective view of the cleaning pad supporting surface member 22.
- Fig. 3b shows a cross section along line B-B in Fig. 3a including a cross section through a portion of a container 20.
- the cleaning pad supporting surface member 22 may be a cleaning pad supporting surface member 22 comprised in one of the cleaning stations 2 discussed above with reference to Figs. 1 - 2b.
- the cleaning pad supporting surface member 22 comprises at least one protrusion 48 configured to engage with the cleaning pad of the active mop.
- the at least one protrusion 48 may at least partially penetrate into the soft cleaning pad as it is rotated in engagement with the cleaning pad supporting surface member 22.
- the at least one protrusion 48 extends in the form of at least one ridge along the cleaning pad supporting surface member 22.
- the at least one ridge provides an engagement with the cleaning pad along a line corresponding to an extension of the at least one ridge. Such an engagement along a line may squeeze cleaning liquid out of the cleaning pad in an efficient manner.
- the at least one ridge may guide cleaning liquid towards a desired portion of the cleaning pad supporting surface member 22, such as towards through openings 50 of the cleaning pad supporting surface member 22.
- the cleaning pad supporting surface member 22 comprises through openings 50 fluidly connecting a top 51 of the cleaning pad supporting surface member 20 with the container 2. Cleaning liquid on the top 51 of the cleaning pad supporting surface member 22 may thus, flow through the through openings 50 back into the container 20. Clean cleaning liquid may be provided in an inner container 20’ and transported with the roller (not shown) to the top 51 of the cleaning pad supporting surface member 22 for being soaked up by the cleaning pads and squeezed out of the cleaning pads.
- the through openings 50 may communicate with an outer container 20”.
- used/dirty cleaning liquid squeezed out of the cleaning pad may be directed to the outer container 20” for later disposal of the used cleaning liquid.
- tube portions 52 may extend from the through openings 50 into the container 20. In this manner, the risk of cleaning liquid spilling from the container 20 via the through openings 50 may be reduced e.g., when a user carries the cleaning station.
- the top 51 of the cleaning pad supporting surface member 22 may be inclined towards the through openings 50. In this manner, cleaning liquid on the top 51 of the cleaning pad supporting surface member 22 may be guided towards the through openings 50.
- a risk of the cleaning liquid from the top 51 of the cleaning pad supporting surface member 22 flowing back into the inner container 20’ may thus be reduced.
- the at least one protrusion 48 may extend farther from the cleaning pad supporting surface member 22 at a peripheral portion of the cleaning pad supporting surface member 22 than at a more central portion thereof. In this manner, the protrusion 48 may penetrate deeper into the cleaning pad at a periphery of the cleaning pad than at a central portion thereof. Thus, more cleaning liquid may be squeezed out of the cleaning pad at its periphery than at its central portion.
- a substantially even distribution of cleaning liquid may be achieved within the cleaning pad. Namely, due to the rotation of the cleaning pad, cleaning liquid is transferred by the centrifugal force towards the periphery of the cleaning pad. The farther extension of the protrusion from the cleaning pad supporting surface member 22 at the peripheral portion thus, presses out the cleaning liquid to contribute to the equalisation of the distribution of cleaning liquid within the cleaning pad.
- Figs. 4a - 4d schematically illustrate embodiments of mechanisms of a cleaning station.
- the cleaning station may be a cleaning station 2 as discussed above with reference to Figs. 1 - 3b.
- the cleaning station comprises a mechanism 60 configured to provide the pad liquid content reducing setting.
- the mechanism 60 is configured to stop the roller 24 while the cleaning pad 6 of the active mop rotates.
- the roller 24 may be actively stopped by the mechanism 60, as in the embodiments of Figs. 4a and 4b.
- the mechanism 60 may passively stop the roller 24 by disengaging the rotating cleaning pad 6 form the roller 24, as in the embodiments of Figs. 4c and 4d.
- the mechanism 60 may permit the roller 24 to rotate during the pad cleaning setting.
- the mechanism 60 is configured to stop the roller 24 upon a vertical motion of at least a portion of the active mop.
- the pad liquid content reducing setting may be initiated by a vertical motion of the active mop, such a vertical motion of a portion of a housing 12 of the active mop.
- the housing 12 may house the cleaning pad 6 of the active mop as discussed above with reference to Fig. 1.
- the mechanism 60 may be actuated by, or via, the active mop.
- the mechanism 60 may be actuated directly by a user of the cleaning station and the active mop e.g., the mechanism may be actuated by a foot of the user.
- an upwardly directed vertical motion of a portion of the active mop stops the roller 24 and initiates the pad liquid content reducing setting.
- the mechanism 60 comprises a blocking member 62 configured to engage with the roller 24 to prevent the roller 24 from rotating in the pad liquid content reducing setting.
- the mechanism 60 may comprise a linkage including the blocking member 62 and e.g., an actuating member 64 and a linkage member 66.
- the blocking member 62 is guided to be slidable along a horizontal direction.
- the actuating member 64 is biased in an upward direction by a biasing member 68 e.g., in the form of a spring.
- the actuating member 64 is actuatable in the vertical direction and the linkage member 66 is pivotably connected at its ends to the ends of the actuating member 64 and the blocking member 62, respectively.
- the blocking member 62 has been released from the roller 24 by the actuating member 64 having been pushed downwardly against the force provided by the biasing member 68 thus, initiating the pad cleaning setting of the cleaning station, in which the rotation of the cleaning pad 6 rotates the roller 24.
- the actuating member 64 has been biased upwardly by the biasing member 68 and the blocking member 62 has been moved via the linkage member 64 to block the roller 24, preventing it from being rotated by the rotating cleaning pad 6.
- the cleaning station is in the pad liquid content reducing setting with the rotating cleaning pad 6 engaging with the cleaning pad supporting surface member 22.
- the cleaning pad 6 may also engage with the blocked roller 24 in the pad liquid content reducing setting.
- the blocking member 62 is disengaged from roller 24 by a downwardly directed vertical movement of a portion of the active mop.
- the blocking member may be disengaged from roller by an upwardly directed vertical movement of a portion of the active mop.
- the mechanism 60 comprises a lifting member 70 for lifting a side portion of the active mop from the cleaning pad supporting surface member 22 to disengage the cleaning pad 6 of the active mop from the roller 24.
- the mechanism 60 may comprise the lifting member 70 and a biasing member 72 e.g., in the form of a spring.
- the lifting member 70 is biased in an upwardly direction by the biasing member 72.
- the lifting member 70 has been pressed downwardly against the force of the biasing member 72 thus, initiating the pad cleaning setting of the cleaning station, in which the rotation of the cleaning pad 6 rotates the roller 24.
- the lifting member 70 has been biased upwardly by the biasing member 68 and the cleaning pad 6 has been lifted from the roller 24 preventing it from being rotated by the rotating cleaning pad 6. In this manner the cleaning station is in the pad liquid content reducing setting with the rotating cleaning pad 6 engaging with a portion of the cleaning pad supporting surface member 22 opposite to the mechanism 60.
Landscapes
- Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
Abstract
Description
Claims
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/EP2021/085997 WO2023110092A1 (en) | 2021-12-15 | 2021-12-15 | Cleaning station for active mop |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP4447769A1 true EP4447769A1 (en) | 2024-10-23 |
| EP4447769B1 EP4447769B1 (en) | 2026-02-11 |
Family
ID=79316951
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21840496.0A Active EP4447769B1 (en) | 2021-12-15 | 2021-12-15 | Cleaning station for active mop |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4447769B1 (en) |
| CN (1) | CN118401157A (en) |
| WO (1) | WO2023110092A1 (en) |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019056997A1 (en) * | 2017-09-22 | 2019-03-28 | 嘉兴捷顺旅游制品有限公司 | Mop cleaning system |
| AU2020100731A4 (en) | 2019-06-19 | 2020-06-18 | Zhejiang Jiaxing Jesun Digital Technology Co., Ltd. | Floor scrubber and self-cleaning device matched with same |
| EP4079208B1 (en) * | 2019-12-27 | 2025-06-04 | Fort Plastic & Metalwork (jiaxing) Co., Ltd | Cleaning device for floor mopping machine |
| CN111195111A (en) | 2020-03-17 | 2020-05-26 | 河北洁仕宝日用塑料制品有限公司 | Rotary dewatering cleaning tool for electric mop |
-
2021
- 2021-12-15 EP EP21840496.0A patent/EP4447769B1/en active Active
- 2021-12-15 WO PCT/EP2021/085997 patent/WO2023110092A1/en not_active Ceased
- 2021-12-15 CN CN202180105063.1A patent/CN118401157A/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| CN118401157A (en) | 2024-07-26 |
| WO2023110092A1 (en) | 2023-06-22 |
| EP4447769B1 (en) | 2026-02-11 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| RU2352240C2 (en) | Uncovered floor cleaner | |
| US7870638B2 (en) | Bare floor cleaner with agitator lift | |
| US9609994B2 (en) | Cleaning apparatus for cleaning mop material and method of cleaning mop material | |
| US7171720B2 (en) | Device for expelling liquid from a wiping element | |
| US20120137464A1 (en) | Mopping Machine | |
| KR20100122464A (en) | Upright steam mop sweeper | |
| CN107320020A (en) | A kind of floor cleaning machine | |
| CN213155704U (en) | A cleaning device for mopping equipment | |
| CN212630681U (en) | cleaning supplies | |
| CN118843412A (en) | Floor cleaning apparatus with dirty fluid tank | |
| EP4447769B1 (en) | Cleaning station for active mop | |
| AU2014215927B2 (en) | Cleaning apparatus for cleaning mop material and method of cleaning mop material | |
| CN211749389U (en) | Cleaning tool without basket | |
| CN118266809A (en) | Cleaning device, cleaning method and cleaning system | |
| WO2021121380A1 (en) | Cleaning plate, cleaning dock and charging dock for floor wiper | |
| CN223068468U (en) | Surface cleaning assembly and wet cleaning equipment | |
| KR200401003Y1 (en) | Movable handy cleaner | |
| CN120732308A (en) | Sweeping robot and sweeping robot assembly | |
| GB2521824A (en) | Rolling dry mop | |
| WO2025045593A1 (en) | Applying an intermediate body in a wet cleaning nozzle comprising two rotatable brushes | |
| CN121910291A (en) | Roller assembly and self-moving cleaning device |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: UNKNOWN |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE |
|
| PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE |
|
| 17P | Request for examination filed |
Effective date: 20240715 |
|
| AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| DAV | Request for validation of the european patent (deleted) | ||
| DAX | Request for extension of the european patent (deleted) | ||
| GRAP | Despatch of communication of intention to grant a patent |
Free format text: ORIGINAL CODE: EPIDOSNIGR1 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: GRANT OF PATENT IS INTENDED |
|
| INTG | Intention to grant announced |
Effective date: 20250721 |
|
| P01 | Opt-out of the competence of the unified patent court (upc) registered |
Free format text: CASE NUMBER: UPC_APP_6892_4447769/2025 Effective date: 20250911 |
|
| GRAS | Grant fee paid |
Free format text: ORIGINAL CODE: EPIDOSNIGR3 |
|
| GRAA | (expected) grant |
Free format text: ORIGINAL CODE: 0009210 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE PATENT HAS BEEN GRANTED |
|
| AK | Designated contracting states |
Kind code of ref document: B1 Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| REG | Reference to a national code |
Ref country code: CH Ref legal event code: F10 Free format text: ST27 STATUS EVENT CODE: U-0-0-F10-F00 (AS PROVIDED BY THE NATIONAL OFFICE) Effective date: 20260211 Ref country code: GB Ref legal event code: FG4D |
|
| REG | Reference to a national code |
Ref country code: DE Ref legal event code: R096 Ref document number: 602021047859 Country of ref document: DE |
|
| REG | Reference to a national code |
Ref country code: IE Ref legal event code: FG4D |