WO2019200855A1 - 一种拖把头清洗部及清洗桶 - Google Patents

一种拖把头清洗部及清洗桶 Download PDF

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Publication number
WO2019200855A1
WO2019200855A1 PCT/CN2018/110460 CN2018110460W WO2019200855A1 WO 2019200855 A1 WO2019200855 A1 WO 2019200855A1 CN 2018110460 W CN2018110460 W CN 2018110460W WO 2019200855 A1 WO2019200855 A1 WO 2019200855A1
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WO
WIPO (PCT)
Prior art keywords
cleaning
water
port
mop head
contact surface
Prior art date
Application number
PCT/CN2018/110460
Other languages
English (en)
French (fr)
Inventor
程志敏
Original Assignee
程志敏
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 程志敏 filed Critical 程志敏
Publication of WO2019200855A1 publication Critical patent/WO2019200855A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L13/00Implements for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L13/10Scrubbing; Scouring; Cleaning; Polishing
    • A47L13/50Auxiliary implements
    • A47L13/58Wringers for scouring pads, mops, or the like, combined with buckets
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L13/00Implements for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L13/10Scrubbing; Scouring; Cleaning; Polishing
    • A47L13/50Auxiliary implements
    • A47L13/58Wringers for scouring pads, mops, or the like, combined with buckets
    • A47L13/59Wringers for scouring pads, mops, or the like, combined with buckets with movable squeezing members
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L13/00Implements for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L13/10Scrubbing; Scouring; Cleaning; Polishing
    • A47L13/50Auxiliary implements
    • A47L13/58Wringers for scouring pads, mops, or the like, combined with buckets
    • A47L13/60Wringers for scouring pads, mops, or the like, combined with buckets with squeezing rollers

Definitions

  • the invention belongs to the technical field of cleaning equipment, and relates to a mop head cleaning part, which is used for cleaning a mop head by making a motive head in a cleaning movement.
  • the mop head is a flat mop head or a cotton mop head.
  • Head, the elastic member of the present invention refers to any resilient mechanical structure including a spring, a torsion spring, and the movable connection includes a rotational connection, a movement, and a combination of the two.
  • Mop is a common cleaning tool.
  • One of the more popular types of mops in recent years is the flat mop.
  • the mop head of this mop is a flat plate.
  • the flat plate is provided with a layer of wipe. When used, the flatbed is pressed against the wipe to drag on the floor. Ground, because the force is more uniform, the ground that is dragged by the flat mop is relatively clean.
  • the common flat mop cleaning device usually includes a mop bucket, and the structure of the cleaning flat wiper is set in the mop bucket, but the cleaning is performed.
  • the water of the wipe needs to be added to the place where the wipe is cleaned before it can be cleaned. The whole process is cumbersome.
  • the technical problem to be solved by the present invention is that the existing flat mop cleaning bucket needs to add fresh water in advance to clean the flat mop cleaning portion, and then the cleaning object can be cleaned.
  • the whole process is cumbersome, and a mop head cleaning portion is provided for the problem.
  • the mop head cleaning portion of the present invention is a main component for cleaning the mop head, and the mop head cleaning portion includes a cleaning port for the shuttle head to shuttle back and forth, and a water purging port for purging water to the mop head, characterized in that the cleaning The port includes a cleaning port body and a cleaning member connected to the cleaning port body and cleaning the mop head, and the cleaning portion further includes a water purifying switch for closing or opening the water purifying port or a water pressing mechanism communicating with the water purifying port,
  • the water purification switch is provided with a valve and a first active end, the water pressure mechanism is provided with a first active end, and the mop is provided with a second active end opposite to the first active end, when the mop head is inserted into the cleaning port,
  • the second active end is directly or indirectly connected to the first active end or the first active end receives the sensing signal of the second active end.
  • the present invention provides a first active end on a water purifying switch that closes or opens the water purifying port or a water pressure mechanism that communicates with the water purifying port, and a second acting end opposite to the first acting end is disposed on the mop,
  • the first working end and the second working end interact when the mop head is inserted into the cleaning port to control the working state of the water purifying switch or the water pressing mechanism.
  • the water purifying switch and the water pressing mechanism have three working states, and the open state a closed state and a partial working state between the two, the partial working state being used to adjust the clean water flow rate of the water purification port.
  • the first working end and the second working end act to make the water purifying switch or the water pressing mechanism freely switch between the open state, the closed state and the partial working state, and the person skilled in the art can thereby
  • a well-designed cleaning procedure for the mop head wipes ensures a cleaning effect on the mop head wipes.
  • the first active end and the second active end interact with each other directly or indirectly through the second active end, and the second active end is connected to the first active end. Applying a force to the first working end to change the position of the first working end.
  • the first working end is a control circuit triggering end that controls the water purifying switch or the water pressure mechanism switch, and is changed by power In the working state of the water purifying switch or the water pressing mechanism, in some embodiments of the present invention, the first working end is a force receiving end of the water purifying switch or the water pressing mechanism, and the mechanical water force is used to change the water purifying switch or the water pressing mechanism.
  • Working status is a control circuit triggering end that controls the water purifying switch or the water pressure mechanism switch, and is changed by power In the working state of the water purifying switch or the water pressing mechanism.
  • the second working end when the mop head is inserted into the cleaning port, the second working end is not directly connected to the first working end, but is connected to the first working end through the transmission structure by means of the transmission structure, and the transmission structure is used. It does not affect the interaction between the first active end and the second active end when the mop head is inserted into the cleaning port.
  • the first active end can receive the sensing signal of the second active end, and the first active end and the second active end can be inserted into the mop head even if the first active end and the second active end are separated from each other. An interaction occurs when the port is cleaned.
  • the sensing signal may be various transmission signals known in the prior art, such as an optical signal, a wireless signal, an ultrasonic signal, etc., and the first active end changes after accessing the second active end signal. The working state of the water purification switch or the water pressure mechanism.
  • the first active end is provided with a first contact surface
  • the second active end is provided with a second contact surface directly or indirectly against the first contact surface
  • the mop head is inserted into the cleaning After the mouth, the second contact surface always faces the first contact surface or the second contact surface is deep against the first contact surface at a portion of the mop head inserted into the cleaning port.
  • the first contact surface and/or the second contact surface are rugged.
  • At least one of the first contact surface and the second contact surface is a rolling surface.
  • the first active end is disposed on the cleaning member.
  • the cleaning portion is not provided with a mop head cleaning chamber connected to the cleaning port; or the cleaning portion is provided with a cleaning chamber connected to the cleaning port, and the cleaning chamber is provided with a mop head cleaning Thereafter, a stagnant zone of sewage is formed which is not in contact with the mop head inserted into the washing port.
  • the water pressure mechanism is a pressure water pump or a pressurized water chamber, and the water pressure chamber is provided with a reciprocating pressurized water piston, and the first working end is disposed on the water pressure piston.
  • the pressurized water chamber communicates with the water purification port through a one-way passage.
  • the pressurized water chamber is further provided with an elastic returning member connected to the water pressure piston, and the second working end is provided to abut the first active end and the water pressure piston is biased toward the elastic returning member. The resisting surface of the direction movement.
  • the cleaning member is connected to the cleaning port body through a support portion, the support portion is an elastic body and is rotatably connected to the cleaning member, and the cleaning member has two opposite cleaning mouth bodies when the mop head is cleaned. Degree of freedom; or;
  • the cleaning member is connected to the cleaning port body through a supporting portion, the supporting portion is provided with a force receiving end, the mop is provided with a force applying end against the force receiving end, and the cleaning port body is provided with the cleaning member moving into the cleaning port.
  • the cleaning member is selected from one of a blade, a brush, and a roller.
  • the cleaning member is detachably coupled to the support section.
  • the force receiving end of the support section extends into the cleaning port.
  • the cleaning portion further includes a water purification zone that communicates with the water purification port and contains purified water.
  • the water purification zone is provided with a water outlet hole, a sealing plug for plugging the water outlet hole, and a movable cavity for the sealing plug to move, and the movable cavity is provided with the sealing plug facing the water outlet hole.
  • the elastic returning member is provided with an interface through the water outlet hole and opening the sealing plug, and the movable cavity is provided with an opening for communicating the water purification zone with the water outlet hole.
  • the water purification zone is disposed above the water purification port.
  • the cleaning portion further includes a flow guiding member that communicates with the water purification port, and the flow guiding member is provided with a nozzle that is aligned with the cleaning port.
  • the cleaning portion further includes a dewatering port for inserting the mop head into the dewatering.
  • the invention also provides a mop head cleaning bucket, comprising a barrel body and a cleaning portion disposed on the barrel body, wherein the barrel body is provided with a mop head abutting member and a sewage retention zone for temporarily retaining the sewage after cleaning the mop head.
  • the abutting member prevents the mop head from entering the sewage retention zone during the process of inserting the mop head into the cleaning port.
  • FIG. 1 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 1;
  • FIG. 2 is a schematic structural view of the water purifying switch of the second embodiment during the cleaning process of the mop head;
  • Figure 3 is a schematic view showing the structure of the valve in the second embodiment
  • Embodiment 4 is a schematic cross-sectional structural view of the cleaning portion of Embodiment 4.
  • Figure 5 is a schematic cross-sectional view showing the cleaning portion of the fifth embodiment
  • Figure 6 is a schematic cross-sectional view showing the cleaning portion of the embodiment 6;
  • Figure 7 is a top plan view showing the cleaning portion of the seventh embodiment
  • Figure 8 is a perspective view showing the structure of the cleaning unit of the eighth embodiment.
  • Figure 9 is a schematic cross-sectional view showing the cleaning portion of the ninth embodiment.
  • Figure 10 is a schematic structural view showing the connection between the water purification zone and the water purification port in Embodiment 13;
  • Figure 11 is a schematic cross-sectional view showing the cleaning portion of the embodiment 14;
  • Figure 12 is a schematic cross-sectional view showing the cleaning portion of the fifteenth embodiment.
  • the present invention provides a mop head cleaning unit.
  • the mop head cleaning unit of the present invention is disposed on a conventional mop cleaning device such as a washing tub, and the mop head cleaning unit can be combined with the cleaning device.
  • a conventional mop cleaning device such as a washing tub
  • the mop head cleaning unit can be combined with the cleaning device.
  • the mop head cleaning portion of the present invention can also be used alone and functions as a cleaning mop head.
  • the mop head cleaning portion includes a cleaning port for shuttlely cleaning the mop head and a water purging port for purging water to the mop head, and the cleaning method is applicable to the flat mop and the cotton mop, so the present invention is not specifically described unless otherwise specified.
  • the mop head refers to a flat mop head or a cotton mop head.
  • the cleaning portion includes a water purifying switch that closes or opens the water purifying port to control the water purifying water to spray water to the mop head wiper when the mop head is inserted into the washing port, and the water purifying switch
  • the water purifying switch There are three working states: a fully open state, a fully closed state, and a partial working state between the two, the partial working state can be used to adjust the clean water flow rate of the water purification port, and the water water switch can be freely operated in three kinds of work. Switching in the state, prior to the present invention, the switching of the working state of the water purifying switch is by manual control.
  • the water purifying switch is manually turned on, and the cleaning is completed, after the mop head is pulled out from the cleaning port, Then manually turn off the water purification switch.
  • the switch opening of the water purification port is not completely synchronized with the cleaning of the mop head, and the amount of purified water is increased.
  • the water purifying switch is provided with a valve and a first working end, and the valve is used for controlling the opening degree of the water purifying port, and the mop is provided with the first acting end Corresponding second working end, when the mop head is inserted into the cleaning port, the second working end is directly or indirectly connected to the first working end, and the second working end is connected with the first working end to apply force to the first acting end, so that a position change occurs in the first working end.
  • the first working end is a control circuit triggering end of the control water purifying switch, and the opening degree of the valve is changed by electric power (for example, an electromagnet or the like), in the present invention.
  • the first active end controls the force receiving end of the water purifying switch, and after the first working end is forced, it is transmitted to the valve, thereby changing the opening degree of the valve.
  • the second working end is connected to the first working end through the transmission structure, so as not to prevent the second working end from being biased by the transmission structure to the first acting end, so that the first acting end and the first working end The two acting ends.
  • the first active end can receive the sensing signal of the second active end, and the sensing signal can be processed by the signal processing component to control the opening and closing of the valve.
  • the signal processing component is well known to those skilled in the art.
  • the sensing signal may be various transmission signals known in the art, such as an optical signal, a wireless signal, an ultrasonic signal, etc., and the mop head is When the cleaning port is inserted, the first working end can receive the sensing signal of the second working end, thereby controlling the opening degree of the valve to the water purifying port.
  • the water purification switch is replaced with a water pressure mechanism, and the water pressure mechanism is provided with a first action end, and the water pressure mechanism may not supply water to the water purification port.
  • the mouth water supply can therefore have the same technical effect as the water purification switch.
  • the water pressure mechanism also has three working states: a fully open state, a fully closed state, and a partial working state between the two working states.
  • the water pressure mechanism can be used to adjust the water flow rate of the water purification port.
  • the water pressure mechanism can be freely switched in three working states.
  • the first working end is a control circuit triggering end for controlling the water pressure mechanism.
  • the electric power (such as an electromagnet or the like) controls the working state of the water pressing mechanism.
  • the first working end is a force receiving end of the control water pressing mechanism, and the first working end is subjected to a force, and then is transmitted to the pressurized water.
  • the mechanism changes the working state of the water pressure mechanism.
  • the second working end is connected to the first working end through the transmission structure, so that the second working end does not hinder the second working end through the transmission structure A first end of the action of a force acting end and a second end acting effect occurs.
  • the first active end can receive the sensing signal of the second active end, and the sensing signal can be processed by the signal processing component to control the working state of the water pressing mechanism.
  • the signal processing is well known to those skilled in the art.
  • the sensing signals may be various known transmission signals, such as optical signals, wireless signals, ultrasonic signals, etc., mops.
  • the first active end can receive the sensing signal of the second working end, thereby controlling the working state of the water pressing mechanism.
  • the water pressure mechanism is a pressure water pump.
  • the water pressure mechanism is a pressurized water chamber, and the pressurized water chamber is provided with a reciprocating pressurized water piston.
  • the first active end is disposed on the water pressure piston.
  • the second working end is connected through the first working end, thereby pushing the water pressure piston to reciprocate in the water pressure chamber, to the net Water supply to the nozzle.
  • the pressurized water chamber communicates with the water purification port through a unidirectional passage.
  • the pressurized water chamber is further provided with an elastic returning member connected to the water pressure piston, and the second working end is provided to abut the first working end and move the water pressure piston toward the elastic returning member.
  • the resisting surface when the mop head is inserted into the cleaning port for cleaning, the second acting end only needs to abut the pressing water piston through the abutting surface, and the elastic returning member can automatically reset the pressurized water piston when the mop head is pulled out to the cleaning port. Therefore, it is more labor-saving to clean the mop head.
  • the first active end is provided with a first contact surface
  • the second active end is provided with a second contact surface directly or indirectly against the first contact surface.
  • the second contact surface always abuts the first contact surface so that the water purging nozzle can always spray water onto the mop head wiper.
  • the second contact surface is against the first contact surface within a portion of the depth of the mop head inserted into the cleaning port, so that the water purging mouth intermittently moves to the mop.
  • the head wipes are sprayed with water for cleaning.
  • the direct contact between the first contact surface and the second contact surface means that the first contact surface directly touches the second contact surface, and the second touch surface faces the first contact surface, and the first action is performed.
  • the indirect contact between the contact surface and the second contact surface means that the first contact surface touches the second contact surface by the transmission structure, and the urging action of the second contact surface facing the first contact surface is completed.
  • the first contact surface and/or the second contact surface are rugged, and the depth of the second contact surface facing the first contact surface may be along with the depth of the mop head after being inserted into the cleaning.
  • the change can automatically control the working state of the water purifying switch or the water pressing mechanism to adjust the water spray size of the water purging device to the mop head wiper.
  • At least one of the first contact surface and the second contact surface is a rolling surface, and after the mop head is inserted into the cleaning port for cleaning, the first contact surface and the second contact surface are relatively slid, rolling
  • the setting of the surface can greatly reduce the frictional force of the relative sliding of the first contact surface and the second contact surface, so that the cleaning of the mop head is more labor-saving.
  • the water purification port directly sprays the mop head wiper inserted into the cleaning port, and the structure is the simplest.
  • the cleaning portion further includes a flow guiding member that communicates with the water purification port, and the flow guiding member is provided with a nozzle that is aligned with the cleaning port, and the purified water enters the flow guiding member through the water purification port.
  • the clean water is sprayed smoothly onto the mop head wiper, so that the problem that the water purging mouth cannot be aligned with the mop head wiper can be effectively solved.
  • the cleaning port includes a cleaning port body and a cleaning member connected to the cleaning port body and cleaning the mop head. After the mop head is inserted into the cleaning port, the cleaning device wipes the mop head wiper. The cleaning member is cleaned by inserting the mop head into the cleaning port against the wiping object. Therefore, in some embodiments of the present invention, the first acting end is disposed on the cleaning member to enable the cleaning.
  • the structure of the department is much simpler.
  • the cleaning portion does not have a mop head cleaning chamber connected to the cleaning port, and the sewage generated by the mop head cleaning through the cleaning port will automatically fall by gravity without being accumulated in the cleaning chamber and The mop head in the cleaning is in contact to prevent secondary contamination of the mop head wipe during cleaning.
  • the cleaning portion is provided with a cleaning chamber connected to the cleaning port, but a retention zone for accommodating the sewage after the mop head is cleaned is added to the cleaning chamber, and the retention zone and the mop head inserted into the cleaning port are provided. No contact, so as to prevent secondary pollution of the wiper head cleaning in the sewage.
  • the cleaning port includes a cleaning port body and a cleaning member connected to the cleaning port body and cleaning the mop head, and the cleaning member is connected to the cleaning port body through the support portion, the support segment
  • the elastic body is rotatably connected with the cleaning member, and the cleaning member has two degrees of freedom with respect to the cleaning port body when the mop head is cleaned, and the cleaning member can be driven by the mop head wiper while the mop head is inserted into the cleaning port.
  • connection with the cleaning member rotates, and at the same time, the wiping object abuts against the cleaning member, so that the cleaning member moves in the opposite direction of the elastic force of the supporting portion, so that the cleaning of the cleaning member on the mop head wiper is smoother and the cleaning effect is more uniform.
  • the cleaning port includes a cleaning port body and a cleaning member connected to the cleaning port body and cleaning the mop head, and the cleaning member is connected to the cleaning port body through the support portion, the support segment a force receiving end is provided, and after the mop head is inserted into the cleaning port, the force applying end is pressed against the force receiving end to urge the cleaning member to move along the track on the cleaning port body, so that the cleaning member protrudes into the cleaning port to clean the mop head wiper, and When the mop head is pulled out from the cleaning port, the cleaning member can be automatically retracted to prevent the cleaning member from being exposed when the mop head is not cleaned.
  • the force receiving end of the support section extends into the cleaning port, and when the mop head is inserted into the cleaning port, the mop head abuts against the force receiving end, and the cleaning member is caused to protrude, thereby cleaning the wipe.
  • the cleaning member is a blade, a brush or a roller.
  • the cleaning member When the cleaning member is a blade, the wipe can be wiped and cleaned, and when the cleaning member is a brush, the labor can be saved. Removing the bulky dirt adhering to the wipe, and when the cleaning member is a roller, the wipe can be squeezed and cleaned.
  • the cleaning member is a brush and a roller.
  • the cleaning member In combination with the wheel, in some embodiments of the present invention, the cleaning member is a combination of a blade and a roller, so that the cleaning member can have various cleaning functions.
  • the cleaning member is detachably coupled to the support section, and various existing detachable connections can be applied to the embodiment, most commonly the cleaning member and the support section are mutually
  • the card is connected, when the cleaning member needs to be replaced, the cleaning member is pulled out from the support section, and then other cleaning components are selected for installation.
  • the cleaning components are installed on the cleaning portion, and usually It is difficult to remove from the cleaning portion. Therefore, once the cleaning member is damaged, the entire cleaning portion is scrapped. This part of the embodiment of the present invention realizes a simple replacement of the mop cleaning consumable cleaning member, thereby greatly extending the cleaning portion. Service life.
  • the cleaning portion further includes a water purification zone that communicates with the water purification port and accommodates the purified water.
  • the pressurized water chamber or the water pump can inject the purified water into the net first. In the water zone, water is then supplied to the water purification port by the water purification zone.
  • the pressure water chamber or the pressure water pump can directly supply water to the water purification port, and the water purification zone is only a backup water source of the water purification port.
  • the water purification zone is located above the water purification port, and the water in the water purification zone can automatically send the purified water to the water purification port as long as the valve in the water purification switch is opened. There is no need to provide additional power for the delivery of purified water.
  • the water purification zone may be separately proposed to facilitate water collection.
  • the water purification zone is provided with a water outlet hole, a sealing plug for plugging the water outlet hole, and a seal.
  • a movable movable cavity wherein the movable cavity is provided with an elastic returning member that abuts the sealing plug toward the water outlet hole, and the water purification opening is provided with an interface that passes through the water outlet hole and opens the sealing plug, and the movable cavity is provided There is an opening that connects the clean water zone to the water outlet.
  • the elastic returning member When the water purification area is lifted away from the water storage, the elastic returning member abuts the sealing plug in the direction of the water outlet hole to block the water outlet hole, preventing the water injected into the water purification zone from leaking out of the water outlet hole, and when the water purification zone is re-cleaned with the water purification port
  • the interface opens the sealing plug, and the purified water in the water purification zone flows to the water purification port through the opening of the movable cavity and the interface.
  • the cleaning portion further includes a dewatering port for inserting the mop head into the dehydration.
  • a dewatering port for inserting the mop head into the dehydration.
  • the mop head can be inserted into the dehydration port for dehydration, and those skilled in the art can use this part.
  • a known dehydration structure is attached to the dewatering port in the embodiment to cause the dehydration port to function as a dehydration function.
  • Some embodiments of the present invention relate to a mop head cleaning bucket using the cleaning portion of the present invention, the cleaning tub and the cleaning portion being of a unitary structure or a split structure, when the washing tub and the washing portion are separated structures,
  • the cleaning bucket is provided with a mounting position for the cleaning part, and the cleaning part is detachably mounted on the cleaning bucket.
  • the cleaning bucket further includes a barrel body, and the barrel body is provided with a mop head to resist And the stagnation zone of the sewage after the mop head is temporarily stagnation, the resisting member prevents the mop head from entering the stagnation zone of the sewage during the cleaning process of inserting the mop head into the cleaning port, so that the mop head does not at all during the cleaning process
  • the generated sewage is in contact, so that the secondary pollution during the cleaning process of the mop head can be eliminated.
  • a mop head cleaning bucket for cleaning the flat mop head 5, comprising a barrel body 6 and a cleaning portion 8 fixed to the barrel body 6, the cleaning portion 8 including a cleaning port 9 for shuttle head cleaning to and from the mop head
  • the water purging port that sprays the water to the mop head 5 includes a washing port body 9 fixed to the washing portion 8, and a blade 11 that is connected to the washing port body 9 and cleans the mop head 5.
  • the washing portion 8 is further provided with a dewatering port 10, so that the mop head 5 can be inserted into the dewatering port 10 to be dehydrated after washing.
  • the dehydration work can also be completed by the cleaning port.
  • the water purification port is not sprayed to the cleaning port.
  • the cleaning port is converted into a dehydration port.
  • the cleaning unit is used. Only the cleaning port is included, and the cleaning and dehydration process of the flat mop head 5 is completed in the cleaning port.
  • a cleaning water transportation path between the water purification port and the cleaning port is provided on the cleaning portion 8, and the path includes the transportation pipe 2 and the deflector 4, and one end of the transportation pipe 2 is a water purification port and is provided with The opening 3, the baffle 4 receives the clean water in the opening 3, and finally sprays the purified water into the cleaning port and sprinkles on the wiper head 5 wiper.
  • the blade 11 is on the mop. The first 5 wipes are repeatedly washed to convert the purified water into sewage, and the generated sewage naturally falls along the blade 11.
  • the cleaning portion 8 is not provided with a cleaning chamber for cleaning the mop head 5.
  • the sewage generated when the mop head 5 is cleaned can be automatically separated from the mop head 5 by gravity without causing secondary contamination of the mop head 5.
  • the cleaning chamber is also provided.
  • the cleaning chamber is a larger barrel 6 , and the bottom of the barrel 6 is provided with a resisting table 7 to prevent the mop head 5 from continuing to deep into the cleaning port when the cleaning port is cleaned.
  • a sewage retention zone for accommodating the sewage generated when the mop head 5 is cleaned, and the sewage cannot be in contact with the mop head 5 due to the barrier of the resisting table 7, thereby preventing the sewage from being subjected to the cleaning of the mop head 5 Secondary pollution.
  • the embodiment is a modification of the embodiment 1, that is, a water purification switch for opening or closing the water purification port is added to the cleaning portion, the water purification switch includes a valve 15, and the valve 15 is a closed end 14 at one end near the transportation pipe 2.
  • the first port is connected to the spring 16 and the other end is connected to the spring 16.
  • the valve 15 further includes an L-shaped abutting block.
  • the first contact surface 13 is disposed at the end of the L-shaped resisting block, and the two sides of the mop head 5 are disposed. When the mop head 5 is inserted into the cleaning port to clean, the second contact surface 12 of the first contact surface 13 is pressed.
  • the entire valve 15 is pushed to move in the compression direction of the spring 16.
  • the closed end 14 is separated from the water purification port.
  • the water purification port is opened, and the purified water can enter the transportation pipe 2 through the water purification port.
  • the second contact surface 12 is no longer the same.
  • the spring 16 moves the valve 15 to reset so that the closed end 14 reinserts the water purification port.
  • the mop head 5 can always be ensured to be continuously supplied by the clean water without cleaning during the cleaning of the cleaning port.
  • the second contact surface 12 is uneven, such that the depth at which the second contact surface 12 abuts against the first contact surface 13 may be different from the position at which the first contact surface 13 is resisted by the second contact surface 12.
  • the degree of opening of the water purification port can be automatically controlled to adjust the water spray size of the water purification port.
  • a special example is when the partial portion of the second contact surface 12 is opposite to the first contact surface 13, the closed end 14 completely opening the water purification port, when the other part of the second contact surface 12 is located at the first contact surface 13, the closed end 14 completely closes the water purification port, and the person skilled in the art can thereby change the second contact surface 12
  • the shape is a flat mop head designed to clean the program.
  • the embodiment of the present invention improves the valve of the second embodiment.
  • the improved valve 17 is provided with a first contact surface 20, a closed end 19 provided with a silicone sealing ring, and a spring 18.
  • the first contact surface 20 is a roller surface. The rolling contact with the second contact surface 12 greatly reduces the force required for the mop head 5 to shuttle back and forth at the cleaning port.
  • the blade and the valve are two independent structures, and the cleaning part shown in this embodiment includes the water purifying switch and the blade 24 which close or open the water purifying port 25.
  • the water purification zone 22 the blade 24 is a valve in the water purification switch, the blade 24 is connected to the spring 23 at one end and the first contact surface 26 at the other end.
  • no water purification transportation path is provided, and the mop is provided.
  • the head abuts the first contact surface 26 of the blade 24, moving the entire blade 24 in the direction in which the spring 23 is compressed, thereby opening the water purification port 25, and spraying the water on the portion where the blade 24 wipes the wiper head wiper. Therefore, it is possible to make the structure of the cleaning portion simpler and more efficient without separately providing a valve.
  • This embodiment is basically the same as the embodiment 4 except that the structure of the blade 27 includes a first contact surface 32, a supporting end connected to the torsion spring 28, and a closed end 30.
  • the second contact surface on the mop head ie, the wiper surface
  • the blade 27 rotates against the torsion spring 28 along the support end, thereby closing the end 30, the water purification port 29 is opened, and the purified water from the water purification zone 31 to the water purification port 29 is directly sprayed on the mop head wiper along the blade 27, and the wiper is scraped and cleaned, so that the valve can be omitted.
  • the structure of the cleaning portion is made simpler and more effective.
  • the blade 27 follows the mop head to rotate upward, and finally the closed end 30 closes the water purging port 29. Therefore, in the present embodiment, the mop head When inserting downward into the cleaning port, the water purging nozzle sprays water onto the mop head, and when the mop head moves in the direction of pulling out, the water purifying nozzle no longer sprays water onto the mop head.
  • This embodiment is basically the same as the embodiment 5 except that the support end and the closed end 35 are disposed in the blade 33, wherein the support end is located at one end of the blade 33 and connected to the torsion spring 34, and the closed end 35 is located on the blade. The middle of 33.
  • the cleaning part in the embodiment 1 is improved, which comprises a cleaning port 36 for the shuttle head to shuttle back and forth, and a dewatering port 37 for dehydrating the mop head.
  • the cleaning port 36 is jacketed with an intermediate sleeve 38 for cleaning.
  • a water purifying switch for opening or closing the water purifying port is added to the portion, the purifying water switch comprises a valve, the valve is closed at the end 40 near the transport tube 41, and the other end is connected with the spring 39.
  • the valve further includes a first The abutting block of the contact surface 42, when the mop head is inserted into the cleaning port, the second contact surface disposed on the mop head can abut the cleaning port and expand it to abut the transmission surface 43 disposed on the intermediate sleeve 38. Then, the driving surface 43 drives the end of the intermediate sleeve 38 against the first contact surface, and finally opens the water purification port.
  • the utility model relates to a mop head cleaning part, which comprises a cleaning port for inserting a flat mop head, a water purification area 49, a water pump 47, and a cleaning blade 44 for scraping and cleaning the wiper of the flat mop head, the water pump 47 is connected to the water purification zone 49 through the inlet pipe 48, and the purified water is discharged through the outlet pipe 46.
  • the end of the outlet pipe 46 is a water purification port that sprays the purified water toward the mop head, and the water pump can be opened when the flat mop head is inserted into the cleaning port for cleaning. 47. Therefore, the water purging water is sprayed to the mop head for cleaning, and the sewage obtained after the mop head cleaning flows into the stagnant zone 50 at the bottom of the cleaning chamber without contacting the mop head during the cleaning process to prevent secondary pollution.
  • This embodiment is basically the same as the embodiment 8, except that it includes a pressurized water chamber 55.
  • the pressurized water chamber 55 is provided with a water pressure piston 56 and a return spring 58.
  • One end of the pressurized water chamber 55 passes through the water inlet pipe 59 and the water purification area.
  • the inlet pipe 59 is a one-way pipe leading from the water purification zone 54 to the pressurized water chamber 55.
  • the outlet pipe 53 is a one-way pipe leading from the pressurized water chamber 55 to the water purification port 60. To prevent backwater from flowing backwards.
  • the mop is engaged with the water pressure piston 56 during cleaning, and the solution can ensure the normal operation of the water pressure chamber 55 after the spring 58 is omitted.
  • This embodiment is basically the same as the embodiment 9. The difference is that the water purification zone 54 is not provided in the embodiment. Therefore, the pressurized water chamber 55 can only obtain purified water from the external clean water source. Since there is no purified water in this embodiment.
  • the storage structure if it is necessary to spray water to the mop head, that is, the mop head is inserted into the cleaning port, the water pressure chamber 55 can work normally (ie, water is supplied to the water purging port 60), and when the mop head is pulled out from the washing port, It is necessary to spray water to the mop head, at which time the pressurized water chamber 55 is in an idle state.
  • the embodiment is basically the same as the embodiment 8.
  • the difference is that the sensing control mechanism is added in the embodiment, and the mechanism includes a sensing end, a control unit connecting the sensing end and the water pump, and the mop head is inducted after being inserted into the cleaning port.
  • the pump is activated to start the pump, and when the mop head is pulled out from the cleaning port, the mop head cannot be sensed by the sensing end, and the pump naturally stops working.
  • Any signal that can be used for sensing can be applied to the present embodiment, such as infrared rays or the like.
  • the cleaning unit in the first embodiment further includes a water purification zone 1 which communicates with the transportation pipe 2 through the water purification port, and the water purification zone 1 is located above the water purification port. Therefore, the purified water can automatically flow into the water purification port from the water purification zone 1 without additionally applying force to the purified water.
  • This embodiment is a modification of the embodiment 1.
  • the solution mainly improves the water purification zone.
  • the water purification zone bottom plate 57 is provided with a water outlet hole 56.
  • the water purification zone is provided with an active cavity 60 on the water outlet hole 56.
  • a sealing plug 52 is disposed in the movable cavity 60.
  • the sealing plug 52 is connected to the top of the movable cavity 60 through a spring 53.
  • the spring 53 abuts the sealing plug 52 toward the water outlet hole 56, so that the sealing plug 52 can seal the water hole in a natural state.
  • the water purification port is provided with an interface 58 passing through the water outlet hole 56 and opening the sealing plug 52.
  • the interface 58 is provided with a first communication port 61, and the movable cavity 60 is provided with a second communication port 59.
  • the purified water in the water purification zone can deliver the purified water to the water purification port through the second communication port 59 and the first communication port 61, and is sealed when the interface 58 is pulled out from the water outlet hole 56.
  • the plug 52 can automatically seal the water outlet hole 56 under the action of the spring 53, thereby, when the amount of water in the water purification zone is insufficient, the water purification zone can be taken out to the outside to add water without the need to move the entire cleaning section to the outside water.
  • the cleaning portion of the present invention can use any type of doctor blade to wipe and wipe the mop head wiper.
  • a wiper cleaning mechanism is provided.
  • the mechanism includes a blade 63 and a support section for supporting the blade 63.
  • the support section has elasticity, specifically including a first support section 65 and a second support section 66 connecting the first support section 65 and the blade 63, and the blade 63 can be wound around the second support section 66.
  • the support section 65 rotates while the first support section 66 and the second support section 65 provide the blade 63 with an elastic force opposite to the pressed force when the blade 63 is pressed, thereby causing the blade 63 has a degree of freedom compared with the ordinary blade, so that the blade 63 wipes the wiper head wiper more smoothly, the scraping force is more uniform, and the excessive rotation of the blade 63 during the cleaning process can be set on the cleaning part.
  • the block 67 is blocked.
  • This embodiment provides another wiper cleaning mechanism that includes a wiper blade 69 and a support section that supports the wiper blade 69 on the cleaning section, the support section including the first active segment 72 and the first activity segment
  • the segment 72 is rotatably coupled to the second movable segment 73.
  • the second movable segment 73 is coupled to the blade 68 by a rotating node 70, and the cleaning portion is provided with a track for the movement of the rotating node 70, the first activity One end of the segment 72 extends into the cleaning port 68. After the mop head is inserted into the cleaning port 68, the mop head can abut the first movable segment 72, so that the first movable segment 72 can drive the second movable segment 73 and finally rotate.
  • the node 70 causes the blade 69 to extend into the cleaning port 68 along the track, and wipes the mop head wiper.
  • the excessive rotation of the blade 69 during the cleaning process can be blocked by the stopper 71 disposed on the cleaning portion.
  • the first movable segment 72 loses the resistance of the mop head and is automatically reset, so that the blade can be automatically retracted.

Landscapes

  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)

Abstract

一种拖把头清洗部及清洗桶,清洗部包括供拖把头来回穿梭清洗的清洗口以及向拖把头喷净水的净水口,直接用净水清洗拖把头,从而可确保拖把头的清洗效果。

Description

一种拖把头清洗部及清洗桶 技术领域
本发明属于清洁设备技术领域,涉及一种拖把头清洗部,所述清洗部通过使拖把头在清洗口内做活塞式运动完成对拖把头的清洗,所述拖把头为平板拖把头或胶棉拖把头,本发明所述的弹性件指包括弹簧、扭簧在内的任何具有弹性的机械结构,所述活动连接包括转动连接、移动以及两者的结合。
背景技术
拖把是常见的清洁工具,近年来比较流行的一类拖把是平板拖把,该类拖把的拖把头是一个平板,平板上设有一层擦拭物,使用时,利用平板压住擦拭物在地板上拖地,由于受力较为均匀,因此经平板拖把拖过的地较为干净。
平板拖把虽然具有良好的拖地效果,但擦拭物比较容易脏,往往需要经常清洗,目前比较常见的平板拖把清洗装置通常包括一个拖把桶,在拖把桶内设置清洗平板擦拭物的结构,但清洗擦拭物的清水需要事先加到清洗擦拭物的地方,然后才能清洗擦拭物,整个过程比较繁琐。
发明内容
本发明所要解决的技术问题在于现有平板拖把清洗桶需要事先在清洗平板拖把清洗处添加清水,然后才能清洗擦拭物,整个过程比较繁琐,并针对该问题提供一种拖把头清洗部。
本发明所述拖把头清洗部为清洗拖把头的主要部件,所述拖把头清洗部包括供拖把头来回穿梭清洗的清洗口以及向拖把头喷净水的净水口,其特征在于所述清洗口包括清洗口本体以及与清洗口本体连接并对拖把头进行清洗的清洗件,所述清洗部还包括关闭或者打开净水口的净水开关或与净水口连通的压水机构,所述净水开关设有阀门以及第一作用端,所述压水机构设有第一作用端,所述拖把上设有与第一作用端相对的第二作用端,当拖把头插入清洗口时,第二作用端直接或者间接与第一作用端连接或者第一作用端接收第二作用端的感应信号。
本发明在关闭或者打开净水口的净水开关或者与净水口连通的压水机构上设置了第一作用端,在拖把上设置了与第一作用端相对的第二作用端,所述第一作用端与第二作用端在拖把头插入清洗口时发生相互作用,控制净水开关或压水机构的工作状态,一般的,净水开关以及压水机构存在三种工作状态,开启状态、关闭状态以及介于两者之间的部分工作状态,所述部分工作状态可用于调整净水口的净水流速。
当拖把头插入清洗口时,第一作用端与第二作用端发生作用,使得净水开关或者压水机构在开启状态、关闭状态以及部分工作状态之间自由切换,本领域技术人员由此可设计合理的针对拖把头擦拭物的清洗程序,确保对拖把头擦拭物的清洗效果。
在本发明的部分实施例中,第一作用端与第二作用端是通过第二作用端直接或者间接与第一作用端连接的方式发生相互作用的,第二作用端与第一作用 端连接后向第一作用端施力,使得第一作用端发生位置变化,在本发明的部分实施例中,第一作用端为控制净水开关或压水机构开关的控制电路触发端,借助电力改变净水开关或压水机构的工作状态,在本发明的部分实施例中,第一作用端为控制净水开关或压水机构的受力端,借助机械力改变净水开关或压水机构的工作状态。在本发明的部分实施例中,当拖把头插入清洗口时,第二作用端不是直接与第一作用端连接,而是借助传动结构,通过传动结构最终与第一作用端连接,使用传动结构并不影响第一作用端与第二作用端在拖把头插入清洗口时发生相互作用。
在本发明的部分实施例中,第一作用端可接收第二作用端的感应信号,即便第一作用端与第二作用端相互分离依然可使第一作用端与第二作用端在拖把头插入清洗口时发生相互作用,所述感应信号可以是现有已知的各种传输信号,例如光信号、无线信号、超声波信号等等,第一作用端在接入第二作用端信号后,改变净水开关或压水机构的工作状态。
在本发明的部分实施例中,所述第一作用端设有第一触面,所述第二作用端设有直接或者间接抵住第一触面的第二触面,在拖把头插入清洗口后,所述第二触面始终抵住第一触面或者所述第二触面在拖把头插入清洗口的部分深度抵住第一触面。
在本发明的部分实施例中,所述第一触面和/或第二触面凹凸不平。
在本发明的部分实施例中,所述第一触面与第二触面至少有一个面为滚动面。
在本发明的部分实施例中,所述第一作用端设置在所述清洗件上。
在本发明的部分实施例中,所述清洗部不设置与清洗口连接的拖把头清洗腔;或者;所述清洗部设置与清洗口连接的清洗腔,所述清洗腔设有容纳拖把头清洗后形成污水的滞留区,所述滞留区与插入清洗口的拖把头不接触。
在本发明的部分实施例中,所述压水机构为压水泵或压水腔,所述压水腔内设往复运动的压水活塞,所述第一作用端设置在压水活塞上。
在本发明的部分实施例中,所述压水腔通过单向通道与净水口连通。
在本发明的部分实施例中,所述压水腔还设有与压水活塞连接的弹性复位件,所述第二作用端设有抵住第一作用端并使压水活塞向弹性复位件方向运动的抵挡面。
在本发明的部分实施例中,所述清洗件通过支撑段与清洗口本体连接,所述支撑段为弹性体并与清洗件转动连接,清洗件在拖把头清洗时相对清洗口本体具有两个自由度;或者;
所述清洗件通过支撑段与清洗口本体连接,所述支撑段设有受力端,所述拖把设有抵住受力端的施力端,所述清洗口本体设有供清洗件活动伸入清洗口的轨道,当拖把头插入清洗口时,所述施力端抵住受力端并推动清洗件伸入清洗口清洗拖把头。
在本发明的部分实施例中,所述清洗件选自刮片、刷片、辊轮中的一种。
在本发明的部分实施例中,所述清洗件与支撑段可拆卸式连接。
在本发明的部分实施例中,当支撑段设有受力端时,所述支撑段受力端伸 入清洗口内。
在本发明的部分实施例中,所述清洗部还包括连通净水口并容纳净水的净水区。
在本发明的部分实施例中,所述净水区设有出水孔、塞住出水孔的密封塞以及供密封塞活动的活动腔,所述活动腔内设有将密封塞向出水孔方向抵的弹性复位件,所述净水口设有穿过出水孔并顶开密封塞的接口,所述活动腔设有将净水区与出水孔连通的开口。
在本发明的部分实施例中,所述净水区设置在净水口的上方。
在本发明的部分实施例中,所述清洗部还包括连通净水口的导流件,所述导流件设有对准清洗口内的喷口。
在本发明的部分实施例中,所述清洗部还包括供拖把头插入脱水的脱水口。
本发明还提供了一种拖把头清洗桶,包括桶体以及设置在桶体上的清洗部,所述桶体设有拖把头抵挡件及暂时留滞拖把头清洗后污水的污水留滞区,所述抵挡件在拖把头插入清洗口清洗的过程中阻止拖把头进入污水留滞区。
附图说明
图1是实施例1所述一种平板拖把清洗桶的结构示意图;
图2是实施例2所述净水开关在拖把头清洗过程中的结构示意图;
图3是对实施例2中阀门改进后的结构示意图;
图4是实施例4所述清洗部的截面结构示意图;
图5是实施例5所述清洗部的截面结构示意图;
图6是实施例6所述清洗部的截面结构示意图;
图7是实施例7所述清洗部的俯视结构示意图;
图8是实施例8所述清洗部的立体结构示意图;
图9是实施例9所述清洗部的截面结构示意图;
图10是实施例13中所述净水区与净水口连接处的结构示意图;
图11是实施例14中清洗部的截面结构示意图;
图12是实施例15中清洗部的截面结构示意图。
具体实施方式
本具体实施方式是对发明内容部分的详细说明。
如发明内容部分所述,本发明提供了一种拖把头清洗部,通常本发明所述拖把头清洗部设置在清洗桶等常规拖把清洗装置上,所述拖把头清洗部可以与所述清洗装置为一体结构或分体结构,本领域技术人员可基于整体清洗装置制备的难易程度而酌情选择,当然,本发明所述拖把头清洗部也可单独使用,并发挥清洗拖把头的功能。
所述拖把头清洗部包括供拖把头来回穿梭清洗的清洗口以及向拖把头喷净水的净水口,该清洗方式可适用于平板拖把以及胶棉拖把,因此如没有进行特殊说明,本发明所述拖把头指的是平板拖把头或胶棉拖把头。在本发明的部分实施例中,所述清洗部包括关闭或者打开净水口的净水开关,以控制净水口在 拖把头插入清洗口时,向拖把头擦拭物喷净水,净水开关有三种工作状态:完全开启状态、完全关闭状态以及介于两者之间的部分工作状态,所述部分工作状态可用于调整净水口的净水流速,净水开关可自由的在三种工作状态中切换,在本发明之前,净水开关工作状态的切换都是依靠人工控制,例如在拖把头插入清洗口时,手动打开净水开关,而清洗完毕,待拖把头从清洗口抽出后,再手动关闭净水开关,该种方案中,净水口的开关闭合并不与拖把头清洗完全同步,而增加了净水的使用量。
本发明的部分实施例对现有净水开关做了改进,所述净水开关设有阀门以及第一作用端,阀门用于控制净水口的开启程度,拖把上设有与第一作用端相对应的第二作用端,当拖把头插入清洗口时,第二作用端直接或者间接与第一作用端连接,第二作用端与第一作用端连接后向第一作用端施力,使得第一作用端发生位置变化,在本发明的部分实施例中,第一作用端为控制净水开关的控制电路触发端,借助电力(例如电磁铁等)改变阀门的开启程度,在本发明的部分实施例中,第一作用端为控制净水开关的受力端,第一作用端受力后,传导至阀门,从而改变阀门的开启程度。在本发明的部分实施例中,第二作用端通过传动结构与第一作用端连接,这样并不妨碍第二作用端可以通过传动结构向第一作用端施力而使第一作用端与第二作用端发生作用。在本发明的部分实施例中,所述第一作用端可接收第二作用端的感应信号,将感应信号通过信号处理部件处理,就可以控制阀门的开合,本领域技术人员熟知信号处理部件,因此,这部分实施例的技术方案很容易实施,并得到预期的效果,所述感应信号可以是现有已知的各种传输信号,例如光信号、无线信号、超声波信号等等,拖把头在插入清洗口时,所述第一作用端就可以接收第二作用端的感应信号,从而控制阀门的对净水口的开启程度。
在本发明的部分实施例中,将净水开关替换成了压水机构,所述压水机构设有第一作用端,压水机构除了向净水口供水之外,也可以不向净水口供水,因此能起到与净水开关类似的技术效果,压水机构也存在三种工作状态:完全开启状态、完全关闭状态以及介于两者之间的部分工作状态,所述部分工作状态可用于调整净水口的净水流速,压水机构可自由的在三种工作状态中切换,在本发明的部分实施例中,第一作用端为控制压水机构的控制电路触发端,借助电力(如电磁铁等)控制压水机构的工作状态,在本发明的部分实施例中,第一作用端为控制压水机构的受力端,第一作用端受力后,传导至压水机构,改变压水机构的工作状态,在本发明的部分实施例中,第二作用端通过传动结构与第一作用端连接,这样并不妨碍第二作用端可以通过传动结构向第一作用端施力而使第一作用端与第二作用端发生作用。在本发明的部分实施例中,所述第一作用端可接收第二作用端的感应信号,将感应信号通过信号处理部件处理,就可以控制压水机构的工作状态,本领域技术人员熟知信号处理部件,因此,这部分实施例的技术方案很容易实施,并得到预期的效果,所述感应信号可以是现有已知的各种传输信号,例如光信号、无线信号、超声波信号等等,拖把头在插入清洗口时,所述第一作用端就可以接收第二作用端的感应信号,从而控制压水机构的工作状态。
在本发明的部分实施例中,所述压水机构为压水泵,在本发明的部分实施例中,所述压水机构为压水腔,所述压水腔内设往复运动的压水活塞,所述第一作用端设置在压水活塞上,当拖把头插入清洗口时,所述第二作用端通过第一作用端连接,进而推动压水活塞在压水腔中往复运动,向净水口供水。为防止压水腔向净水口供水的过程中发生净水倒流,在本发明的部分实施例中,所述压水腔通过单向通道与净水口连通。
在本发明的部分实施例中,所述压水腔还设有与压水活塞连接的弹性复位件,第二作用端设有抵住第一作用端并使压水活塞向弹性复位件方向运动的抵挡面,当拖把头插入清洗口清洗,第二作用端只需要通过抵挡面抵住压水活塞,在拖把头向清洗口拔出方向运动时,弹性复位件可自动将压水活塞复位,从而清洗拖把头变的更为省力。
在本发明的部分实施例中,第一作用端设有第一触面,第二作用端设有直接或者间接抵住第一触面的第二触面。在本发明的部分实施例中,当拖把头插入清洗口后,第二触面始终抵住第一触面,使得净水口能始终向拖把头擦拭物喷水。在本发明的部分实施例中,当拖把头插入清洗口后,第二触面在拖把头插入清洗口的部分深度范围内抵住第一触面,使得净水口时断时续的向拖把头擦拭物喷水清洗。在这部分实施例中,第一触面与第二触面直接相抵是指第一触面直接与第二触面碰触,完成第二触面向第一触面的施力动作,而第一触面与第二触面间接相抵是指第一触面借助传动结构与第二触面碰触,完成第二触面向第一触面的施力动作。
在本发明的部分实施例中,所述第一触面和/或第二触面是凹凸不平的,第二触面向第一触面抵住的深度会随着拖把头插入清洗后的深度而改变,从而可自动控制净水开关或压水机构的工作状态,以调节净水口向拖把头擦拭物的喷水大小。在本发明的部分实施例中,所述第一触面与第二触面至少有一个面为滚动面,拖把头插入清洗口清洗后,第一触面与第二触面会发生相对滑动,滚动面的设置可极大的减少第一触面及第二触面相对滑动的摩擦力,使拖把头的清洗更为省力。
在本发明的部分实施例中,所述净水口直接向插入清洗口的拖把头擦拭物喷水,该结构最为简单。在本发明的部分实施例中,所述清洗部还包括连通净水口的导流件,所述导流件设有对准清洗口的喷口,净水通过净水口进入导流件后将净水顺利喷向拖把头擦拭物,从而可有效的解决净水口无法对准拖把头擦拭物的问题。
在本发明的部分实施例中,所述清洗口包括清洗口本体以及与清洗口本体连接并对拖把头进行清洗的清洗件,拖把头插入清洗口后,由清洗件对拖把头擦拭物清洗,所述清洗件通过在拖把头插入清洗口后,抵住擦拭物的方式进行清洗,因此在本发明的部分实施例中,所述第一作用端设置在所述清洗件上,使所述清洗部的结构更加简单。
在本发明的部分实施例中,所述清洗部不设置与清洗口连接的拖把头清洗腔,拖把头经清洗口清洗产生的污水将通过重力自动下落,而不会囤积在清洗腔中并与清洗中的拖把头接触,防止清洗中的拖把头擦拭物二次污染。在本发 明的部分实施例中,所述清洗部设置与清洗口连接的清洗腔,但在清洗腔中增设容纳拖把头清洗后形成污水的滞留区,所述滞留区与插入清洗口的拖把头不接触,从而也可杜绝污水对清洗中的拖把头擦拭物的二次污染。
在本发明的部分实施例中,所述清洗口包括清洗口本体以及与清洗口本体连接并对拖把头进行清洗的清洗件,所述清洗件通过支撑段与清洗口本体连接,所述支撑段为弹性体并与清洗件转动连接,清洗件在拖把头清洗时相对清洗口本体具有两个自由度,在拖把头插入清洗口时,所述清洗件可被拖把头擦拭物带动而绕支撑段与清洗件的连接处转动,同时擦拭物抵住清洗件,使清洗件沿着支撑段弹力反方向运动,使得清洗件对拖把头擦拭物的清洗更加顺畅,清洗效果更加均匀。
在本发明的部分实施例中,所述清洗口包括清洗口本体以及与清洗口本体连接并对拖把头进行清洗的清洗件,所述清洗件通过支撑段与清洗口本体连接,所述支撑段设有受力端,拖把头插入清洗口后,通过施力端抵住受力端,促使清洗件沿着清洗口本体上的轨道运动,使所述清洗件伸入清洗口清洗拖把头擦拭物,而在拖把头从清洗口拔出时,清洗件可自动回缩,避免在拖把头不清洗时,所述清洗件裸露在外。在本发明的部分实施例中,所述支撑段受力端伸入清洗口内,拖把头插入清洗口时,拖把头抵住受力端,并促使清洗件伸出,从而对擦拭物清洗。
在本发明的部分实施例中,所述清洗件为刮片、刷片或者辊轮,当清洗件为刮片时,可对擦拭物进行刮擦清洗,当清洗件为刷片时,可省力的去除粘附在擦拭物上体积较大的脏物,当清洗件为辊轮时,可对擦拭物进行挤压清洗,在本发明的部分实施例中,所述清洗件为刷片与辊轮的组合,在本发明的部分实施例中,所述清洗件为刮片与辊轮的组合,从而可使清洗件具备多种清洗功能。
在本发明的部分实施例中,所述清洗件与支撑段可拆卸式连接,各种现有的可拆卸式连接均可以应用到这部分实施例中,最为常见是将清洗件与支撑段相互卡接,在需要更换清洗件时,将清洗件从支撑段上拔出,然后选用其他清洗件安装上就可以,实际上,在本发明之前,清洗件均安装在清洗部上,且通常很难从清洗部上取下,因而,一旦清洗件损坏,整个清洗部就报废了,本发明的这部分实施例实现了拖把清洗易耗品清洗件的简单替换,从而可大大的延长清洗部的使用寿命。
尽管可以采用仅在拖把头插入清洗口时推动压水活塞压水,但压水腔的使用还是加大了拖把头在清洗口做来回穿梭清洗的难度,较未设置压水腔之前更为费力,因此在本发明的部分实施例中,所述清洗部还包括连通净水口并容纳净水的净水区,在这部分实施例中,压水腔或者压水泵可以将净水先注入净水区中,然后再由净水区向净水口供水,当然也可以是压水腔或者压水泵直接向净水口供水,而净水区仅是净水口的一个备用净水源。
在本发明的部分实施例中,所述净水区位于净水口的上方,只要开启净水开关中的阀门,净水区中的净水就可以自动将净水送至净水口中,而无需为净水的输送提供额外的动力。
在本发明的部分实施例中,所述净水区可以单独提出,以便于接水,在这部分实施例中,所述净水区设有出水孔、塞住出水孔的密封塞以及供密封塞活动的活动腔,所述活动腔内设有将密封塞向出水孔方向抵的弹性复位件,所述净水口设有穿过出水孔并顶开密封塞的接口,所述活动腔设有将净水区与出水孔连通的开口。净水区提离蓄水时,所述弹性复位件将密封塞向出水孔方向抵以便塞住出水孔,防止向净水区注入的水从出水孔漏出,当净水区重新与净水口连通时,接口顶开密封塞,净水区中的净水经活动腔开口及接口流至净水口。
在本发明的部分实施例中,所述清洗部还包括供拖把头插入脱水的脱水口,在清洗部清洗完拖把头后,可将拖把头插入脱水口脱水,本领域技术人员可在这部分实施例中的脱水口上安装已知的脱水结构,使脱水口发挥脱水功能。
本发明的部分实施例则涉及使用本发明所述清洗部的拖把头清洗桶,所述清洗桶与清洗部为一体结构或者分体结构,当清洗桶与清洗部为分体结构时,所述清洗桶设有供清洗部安装的安装位,清洗部以可拆卸式的方式安装在清洗桶上,除了清洗部之外,所述清洗桶还包括桶体,所述桶体设有拖把头抵挡件及暂时留滞拖把头清洗后污水的污水留滞区,所述抵挡件在拖把头插入清洗口清洗的过程中阻止拖把头进入污水留滞区,使得拖把头在清洗过程中根本不会与产生的污水接触,从而可杜绝拖把头清洗过程中的二次污染。
实施例1
一种拖把头清洗桶,其用于平板拖把头5的清洗,包括桶体6以及固定在桶体6上的清洗部8,所述清洗部8包括供拖把头来回穿梭清洗的清洗口9以及向拖把头5喷净水的净水口,清洗口包括固定在清洗部8上的清洗口本体9以及与清洗口本体9连接并对拖把头5进行清洗的刮片11。
在本实施例中,所述清洗部8还设置了脱水口10,这样拖把头5在清洗后可插入脱水口10脱水。当然,脱水的工作也可以由清洗口完成,例如控制净水口不向清洗口喷水,这时,清洗口就转变为脱水口,作为本实施例的一种改进技术方案,所述清洗部仅包括清洗口,平板拖把头5的清洗脱水过程均在清洗口中完成。
本实施例中,在清洗部8上设置了位于净水口及清洗口之间的净水运输路径,该路径包括运输管2以及导流板4,运输管2一端为净水口并设有开口3,导流板4接纳开口3中净水,并最终将净水喷至清洗口内并洒在拖把头5擦拭物上,随着拖把头5在清洗口内来回穿梭运动,刮片11对拖把头5擦拭物进行反复清洗,使净水转化为污水,产生的污水沿着刮片11自然下落。
所述清洗部8不设置供拖把头5清洗的清洗腔,拖把头5清洗时产生的污水可通过重力自动与拖把头5分离,而不会造成二次污染拖把头5,当然,本领域技术人员也可以设置清洗腔,例如在本实施例中,所述清洗腔为更为庞大的桶体6,桶体6底部设置抵挡台7,防止拖把头5在清洗口清洗时继续深入清洗口内,抵挡台7下方为污水滞留区,用于容纳拖把头5清洗时产生的污水,所述污水因抵挡台7的阻隔,无法与拖把头5接触,从而可防止污水在拖把头5清洗时受到二次污染。
实施例2
本实施例是实施例1的改进方案,即在清洗部上增设打开或者关闭净水口的净水开关,所述净水开关包括阀门15,阀门15在靠近运输管2的一端为封闭端14,用于密封塞住净水口,另一端与弹簧16连接,所述阀门15还包括L形抵挡块,在L形抵挡块的末端设置第一触面13,拖把头5的两侧设置了在拖把头5插入清洗口清洗时,抵住第一触面13的第二触面12,第二触面12抵住第一触面13以后,会推动整个阀门15向弹簧16压缩方向运动,使得封闭端14与净水口分离,此时净水口打开,净水可通过净水口进入运输管2中,而当拖把头5清洗口拔离时,第二触面12不再与第一触面13相抵,弹簧16可将阀门15移动复位,使得封闭端14重新塞住净水口。
对于本实施例而言,只要拖把头5插入清洗口使第二触面12抵住第一触面13,则可始终确保拖把头5在清洗口清洗时由净水不间断的持续供应,但作为对本实施例的一种改进,第二触面12凹凸不平,这样第二触面12向第一触面13抵挡的深度会随着第一触面13在第二触面12抵挡的部位不同而不同,从而可以自动控制净水口的打开程度,以调节净水口的喷水大小,一个特殊的例子是,当第二触面12的部分部位与第一触面13相抵时,封闭端14完全打开净水口,当第二触面12的另一部分部位于第一触面13相抵时,封闭端14完全关闭净水口,本领域技术人员由此可通过改变第二触面12的形状为平板拖把头设计清洗程序。
实施例3
本实施例对实施例2中的阀门做了改进,改进后的阀门17设有第一触面20、设有硅胶密封圈的封闭端19以及弹簧18,第一触面20为滚轮面,可与第二触面12滚动接触,从而可极大的减少拖把头5在清洗口来回穿梭清洗所需的力量。
实施例4
实施例1-3所展示的清洗部,其刮片与阀门为两个独立的结构,而本实施例所展示的清洗部,其包括关闭或者打开净水口25的净水开关、刮片24以及净水区22,所述刮片24为净水开关中的阀门,所述刮片24一端与弹簧23连接,另一端为第一触面26,本实施例没有设置净水运输路径,拖把头抵住刮片24中的第一触面26,使整个刮片24向弹簧23压缩的方向运动,从而打开净水口25,并在刮片24对拖把头擦拭物清洗的部位喷水,从而可以不用另外设置阀门,使清洗部的结构更加简单有效。
实施例5
本实施例与实施例4基本相同,不同点在于刮片的结构,所述刮片27包括第一触面32、与扭簧28连接的支撑端以及封闭端30,拖把头插入清洗口后,拖把头上的第二触面(即擦拭物面)抵住第一触面32,随着拖把头向清洗口进一步插入,所述刮片27沿支撑端克服扭簧28转动,从而使封闭端30打开净水 口29,从净水区31至净水口29的净水沿着刮片27直接喷在拖把头擦拭物上,同时对擦拭物进行刮擦清洗,从而可以不用另外设置阀门,使清洗部的结构更加简单有效,在拖把头像拔出清洗口方向运动时,刮片27跟随拖把头向上转动,最终使封闭端30关闭净水口29,因此,在本实施例中,拖把头向清洗口中向下插入时,净水口向拖把头喷水,而在拖把头向拔出方向运动时,净水口不再向拖把头喷水。
实施例6
本实施例与实施例5基本相同,不同点在于刮片33中支撑端与封闭端35的位置设置,其中支撑端位于刮片33一端,并与扭簧34连接,封闭端35则位于刮片33的中部。
实施例7
本实施例对实施例1中的清洗部做了改进,其包括供拖把头来回穿梭清洗的清洗口36以及供拖把头脱水的脱水口37,所述清洗口36外套接有中间套38,清洗部上增设打开或者关闭净水口的净水开关,所述净水开关包括阀门,阀门在靠近运输管41的一端为封闭端40,另一端与弹簧39连接,所述阀门还包括设有第一触面42的抵挡块,当拖把头插入清洗口时,设置在拖把头上的第二触面可抵住清洗口,并使其膨胀,从而抵住设置在中间套38上的传动面43,再由传动面43带动中间套38末端抵住第一触面,最终打开净水口。
实施例8
一种拖把头清洗部,其包括供平板拖把头插入的清洗口、净水区49、水泵47,清洗口内设有刮片44,用于对平板拖把头的擦拭物进行刮擦清洗,水泵47通过进水管48连通净水区49,并通过出水管46将净水排出,出水管46末端为朝向拖把头喷射净水的净水口,当平板拖把头插入清洗口清洗时,可打开水泵47,从而是净水口向拖把头喷净水清洗,拖把头清洗后所得到的污水流入清洗腔底部的滞留区50内而不与清洗过程中的拖把头接触,以防止二次污染。
实施例9
本实施例与实施例8基本相同,其不同点在于其包括压水腔55,压水腔55内设有压水活塞56以及复位弹簧58,压水腔55一端通过进水管59与净水区54连通,另一端为出水管53,出水管53末端为向拖把头喷水的净水口60,拖把头插入清洗口,使刮片52刮洗拖把头,随着插入深度的加大,拖把头底部可抵住压水活塞56并推动压水活塞56向下压,从而使净水从净水区54经压水腔55及净水口60喷入拖把头的擦拭物上,作为一种优选,所述进水管59为从净水区54通向压水腔55的单向管道,作为一种优选,所述出水管53为从压水腔55通向净水口60的单向管道,防止净水倒流。
作为本实施例的一种改进技术,所述拖把在清洗时与压水活塞56卡接,该方案可在省去弹簧58后,依然确保压水腔55的正常工作。
实施例10
本实施例与实施例9基本相同,其不同点在于所述本实施例不设置净水区54,因而,压水腔55只能从外界净水源获取净水,由于本实施例没有净水储藏结构,如果需要向拖把头喷净水,也即拖把头插入清洗口内,压水腔55可正常工作(即向净水口60送水),而在拖把头从清洗口拔出时,并不需要向拖把头喷净水,此时,压水腔55则处于闲置状态。
实施例11
本实施例与实施例8基本相同,其不同点在于本实施例增设了感应控制机构,该机构包括感应端、连接感应端与水泵的控制单元,所述拖把头在插入清洗口后被感应端所感应,从而可开动水泵工作,而当拖把头从清洗口拔出时,拖把头无法被感应端所感应,水泵自然停止工作。任何可用于感应的信号均可应用到本实施例中,例如红外线等等。
实施例12
本实施例是实施例1的进一步说明,实施例1中的清洗部还增设了净水区1,该净水区1通过净水口与运输管2连通,净水区1位于净水口上方,使得净水可自动从净水区1流入净水口中,而不需要额外向净水施力。
实施例13
本实施例是实施例1的改进方案,该方案主要对净水区做了改进,所述净水区底板57上设有出水孔56,所述净水区在出水孔56上设置活动腔60,活动腔60内设有密封塞52,密封塞52通过弹簧53与活动腔60顶部连接,弹簧53将密封塞52向出水孔56方向抵,使得在自然状态下,密封塞52可密封出水孔56,所述净水口设有穿过出水孔56并顶开密封塞52的接口58,所述接口58上设有第一连通口61,活动腔60上设有第二连通口59,当接口58顶开密封塞52后,净水区中的净水可通过第二连通口59及第一连通口61向净水口输送净水,而当接口58从出水孔56拔出时,密封塞52在弹簧53作用下可自动封住出水孔56,由此,在净水区内水量不足时,可提走净水区到外界加水,而不需要将整个清洗部搬到外界加水。
实施例14
本发明所述清洗部可使用任何形式的刮片对拖把头擦拭物进行刮擦清洗,本实施例则提供一种刮擦清洗机构,该机构包括刮片63以及支撑刮片63的支撑段,所述支撑段具有弹性,具体包括第一支撑分段65以及连接第一支撑分段65及刮片63的第二支撑分段66,刮片63可随着第二支撑分段66绕第一支撑分段65转动,同时第一支撑分段66及第二支撑分段65在刮片63受到挤压时可向刮片63提供与所受挤压力相反的弹力,从而使得所述刮片63相较于普通刮片多了一个自由度,使刮片63对拖把头擦拭物的刮擦更加顺畅、刮擦力更加 均匀,刮片63在清洗过程中的过度转动可由设置在清洗部上的挡块67挡住。
实施例15
本实施例提供了另一种刮擦清洗机构,该机构包括刮片69以及将刮片69支撑在清洗部上的支撑段,所述支撑段包括第一活动分段72以及与第一活动分段72转动连接的第二活动分段73,所述第二活动分段73与刮片68通过转动节点70连接,所述清洗部上设有供转动节点70运动的轨道,所述第一活动分段72一端伸入清洗口68,拖把头插入清洗口68后,拖把头可抵住第一活动分段72,从而第一活动分段72可带动第二活动分段73,并最终通过转动节点70使刮片69沿着轨道伸入到清洗口68内,对拖把头擦拭物进行刮擦清洗,刮片69在清洗过程中的过度转动可由设置在清洗部上的挡块71挡住,在拖把头从清洗口68拔出后,第一活动分段72失去拖把头的抵挡而自动复位,从而刮片可自动缩回。

Claims (18)

  1. 一种拖把头清洗部,包括供拖把头来回穿梭清洗的清洗口以及向拖把头喷净水的净水口,其特征在于所述清洗口包括清洗口本体以及与清洗口本体连接并对拖把头进行清洗的清洗件,所述清洗部还包括关闭或者打开净水口的净水开关或与净水口连通的压水机构,所述净水开关设有阀门以及第一作用端,所述压水机构设有第一作用端,所述拖把上设有与第一作用端相对的第二作用端,当拖把头插入清洗口时,第二作用端直接或者间接与第一作用端连接或者第一作用端接收第二作用端的感应信号。
  2. 根据权利要求1所述的清洗部,其特征在于所述第一作用端设有第一触面,所述第二作用端设有直接或者间接抵住第一触面的第二触面,在拖把头插入清洗口后,所述第二触面始终抵住第一触面或者所述第二触面在拖把头插入清洗口的部分深度抵住第一触面。
  3. 根据权利要求2所述的清洗部,其特征在于所述第一触面和/或第二触面凹凸不平。
  4. 根据权利要求2所述的清洗部,其特征在于所述第一触面与第二触面至少有一个面为滚动面。
  5. 根据权利要求1所述的清洗部,其特征在于所述第一作用端设置在所述清洗件上。
  6. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述清洗部不设置与清洗口连接的拖把头清洗腔;或者;所述清洗部设置与清洗口连接的清洗腔,所述清洗腔设有容纳拖把头清洗后形成污水的滞留区,所述滞留区与插入清洗口的拖把头不接触。
  7. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述压水机构为压水泵或压水腔,所述压水腔内设往复运动的压水活塞,所述第一作用端设置在压水活塞上。
  8. 根据权利要求7所述的清洗部,其特征在于所述压水腔通过单向通道与净水口连通。
  9. 根据权利要求7所述的清洗部,其特征在于所述压水腔还设有与压水活塞连接的弹性复位件,所述第二作用端设有抵住第一作用端并使压水活塞向弹性复位件方向运动的抵挡面。
  10. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述清洗件通过支撑段与清洗口本体连接,所述支撑段为弹性体并与清洗件转动连接,清洗件在拖把头清洗时相对清洗口本体具有两个自由度;或者;
    所述清洗件通过支撑段与清洗口本体连接,所述支撑段设有受力端,所述拖把设有抵住受力端的施力端,所述清洗口本体设有供清洗件活动伸入清洗口的轨道,当拖把头插入清洗口时,所述施力端抵住受力端并推动清洗件伸入清洗口清洗拖把头。
  11. 根据权利要求10所述的清洗部,其特征在于所述清洗件选自刮片、刷片、辊轮中的一种。
  12. 根据权利要求10所述的清洗部,其特征在于所述清洗件与支撑段可拆卸式连接。
  13. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述清洗部还包括连通净水口并容纳净水的净水区。
  14. 根据权利要求13所述的清洗部,其特征在于所述净水区设有出水孔、塞住出水孔的密封塞以及供密封塞活动的活动腔,所述活动腔内设有将密封塞向出水孔方向抵的弹性复位件,所述净水口设有穿过出水孔并顶开密封塞的接口,所述活动腔设有将净水区与出水孔连通的开口。
  15. 根据权利要求13所述的清洗部,其特征在于所述净水区设置在净水口的上方。
  16. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述清洗部还包括连通净水口的导流件,所述导流件设有对准清洗口内的喷口。
  17. 根据权利要求1或2或3或4或5所述的清洗部,其特征在于所述清洗部还包括供拖把头插入脱水的脱水口。
  18. 一种拖把头清洗桶,包括桶体以及设置在桶体上的权利要求1或2或3或4或5所述的清洗部,所述桶体设有拖把头抵挡件及暂时留滞拖把头清洗后污水的污水留滞区,所述抵挡件在拖把头插入清洗口清洗的过程中阻止拖把头进入污水留滞区。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111150345A (zh) * 2020-03-14 2020-05-15 宁波艾拉芙日用品有限公司 一种拖把清洁桶

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110384446B (zh) * 2018-04-18 2022-04-19 永康市清唯工贸有限公司 一种拖把头清洗座及清洗桶

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2680191Y (zh) * 2004-01-13 2005-02-23 胡拥 平板式拖把清洗机
EP1772094A1 (de) * 2000-12-27 2007-04-11 BSH Bosch und Siemens Hausgeräte GmbH Vorrichtung zum Befeuchten und Entfeuchten eines Feuchtwischers
JP2012148039A (ja) * 2011-01-17 2012-08-09 Wing:Kk モップ洗浄装置
US9226640B1 (en) * 2015-08-14 2016-01-05 Kai Wulff Mop trolley with a central mop sprayer and mop rest
TWM524689U (zh) * 2015-09-18 2016-07-01 陳建安 清洗裝置
CN107334434A (zh) * 2017-08-14 2017-11-10 陈世广 一种清洁工具
CN107456179A (zh) * 2016-06-04 2017-12-12 慈溪市博生塑料制品有限公司 可竖立的挤压平板拖把清洁工具
CN107837053A (zh) * 2017-12-01 2018-03-27 程志敏 一种平板拖把清洗桶
CN107898408A (zh) * 2017-12-01 2018-04-13 程志敏 一种平板拖把清洁桶

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201453170U (zh) * 2009-06-25 2010-05-12 朱革萍 一种拖把与桶的组合装置
DE102016110432A1 (de) * 2016-06-06 2017-12-07 Karl Göttler Behälter
CN107049189B (zh) * 2017-05-12 2023-01-10 宁波德润堂智能科技有限公司 一种节水拖把桶
CN110384446B (zh) * 2018-04-18 2022-04-19 永康市清唯工贸有限公司 一种拖把头清洗座及清洗桶

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1772094A1 (de) * 2000-12-27 2007-04-11 BSH Bosch und Siemens Hausgeräte GmbH Vorrichtung zum Befeuchten und Entfeuchten eines Feuchtwischers
CN2680191Y (zh) * 2004-01-13 2005-02-23 胡拥 平板式拖把清洗机
JP2012148039A (ja) * 2011-01-17 2012-08-09 Wing:Kk モップ洗浄装置
US9226640B1 (en) * 2015-08-14 2016-01-05 Kai Wulff Mop trolley with a central mop sprayer and mop rest
TWM524689U (zh) * 2015-09-18 2016-07-01 陳建安 清洗裝置
CN107456179A (zh) * 2016-06-04 2017-12-12 慈溪市博生塑料制品有限公司 可竖立的挤压平板拖把清洁工具
CN107334434A (zh) * 2017-08-14 2017-11-10 陈世广 一种清洁工具
CN107837053A (zh) * 2017-12-01 2018-03-27 程志敏 一种平板拖把清洗桶
CN107898408A (zh) * 2017-12-01 2018-04-13 程志敏 一种平板拖把清洁桶

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111150345A (zh) * 2020-03-14 2020-05-15 宁波艾拉芙日用品有限公司 一种拖把清洁桶

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