CN115153376B - Cleaning tool for squeezing flat mop - Google Patents

Cleaning tool for squeezing flat mop Download PDF

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Publication number
CN115153376B
CN115153376B CN202210413471.XA CN202210413471A CN115153376B CN 115153376 B CN115153376 B CN 115153376B CN 202210413471 A CN202210413471 A CN 202210413471A CN 115153376 B CN115153376 B CN 115153376B
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CN
China
Prior art keywords
flat mop
mop
cleaning
extrusion
squeezing
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CN202210413471.XA
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Chinese (zh)
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CN115153376A (en
Inventor
黄智勇
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Cixi Bosheng Plastic Co Ltd
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Cixi Bosheng Plastic Co Ltd
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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
    • A47L13/20Mops
    • A47L13/24Frames for mops; Mop heads
    • A47L13/254Plate frames
    • A47L13/258Plate frames of adjustable or foldable type
    • 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

Abstract

The flat mop cleaning tool comprises a mop bucket and a flat mop, wherein the flat mop comprises a mop rod and a flat mop head movably connected to the mop rod, a wiper is arranged on the flat mop head, and the mop bucket is provided with an independent cleaning area and an independent water squeezing area; the mop barrel is provided with a smoothing-out extrusion device, and the flat mop head is rotated to a state capable of being cleaned and extruded when the flat mop head is cleaned and extruded; the flat mop head is moved and extruded between the cleaning area and the stroking extrusion device during cleaning so as to move, extrude and clean the wiping object, and is moved and extruded between the water extrusion area and the stroking extrusion device during water extrusion so as to move, extrude and squeeze the wiping object.

Description

Cleaning tool for squeezing flat mop
The application relates to a divisional application, the application date of the original application is 2017, 04 and 06, the application number is 201710222065.4, and the application creates a novel squeezing flat mop cleaning tool.
Technical Field
The present application relates to a flat mop cleaning implement.
Background
In the prior art, there are three types of squeezing type dehydration of flat mop, it sets up the squeezing device of stepping on the mop bucket, this squeezing device of stepping on includes setting up the wringing basket in the mop bucket, articulated on mop bucket upper portion and with the footboard that wringing basket is relative, footboard and wringing basket enclose into a wringing space, need take off the mop on the mop board of flat mop at first when the dehydration, place the mop in the wringing space, then the pedal makes the wringing space shrink reach the purpose of squeezing the water on the mop. The dehydration mode in the form needs to design a pedal extrusion device with a complex structure, and has high cost; when squeezing water, the mop needs to be detached firstly, and the foot needs to be lifted for trampling operation, so that the operation is troublesome.
The second mode is centrifugal spin-drying, which adopts a hand-press rotary mop rod, when in dehydration, two ends of a mop plate of the flat mop are required to be bent and then placed in a dehydration area of a mop barrel, and the mop rod is pressed down, so that the mop plate of the flat mop is subjected to centrifugal spin-drying. The dehydration mode of the form needs to design the mop plate of the flat mop into a bendable structure, the structure is complex, and the mop plate needs to be matched with the hand-press rotary mop rod, so that the cost is high.
The third mode is hand-pushing extrusion type dehydration, such as the Chinese patent patents ZL200720192814.5, ZL201320019718.6 and ZL201420624020.1, which comprise mop rods and flat mop plates movably connected to the mop rods, wherein a wringing mechanism is arranged on the mop rods, and the wringing and cleaning of the wiping objects on the flat mop plates are realized through the relative extrusion movement between the wringing mechanism and the flat mop plates. It also has the disadvantage that: when the squeezing operation is carried out, the mop rod is held by one hand to be positioned, the squeezing mechanism is held by one hand, the relative squeezing movement between the squeezing mechanism and the flat mop plate is realized through the single-hand push-pull squeezing mechanism, the operation is very laborious, and the operability is not strong.
Disclosure of Invention
In order to overcome the above-described deficiencies of the prior flat mop cleaning tools, the present application provides a flat mop cleaning tool that is more labor-efficient to operate.
The technical scheme for solving the technical problems is as follows: a cleaning tool for squeezing a flat mop comprises a mop bucket and a flat mop, wherein the flat mop comprises a mop rod and a flat mop head movably connected with the mop rod, the flat mop head is provided with a wiping article,
the mop bucket is provided with an independent cleaning area and an independent water squeezing area; the mop barrel is provided with a smoothing-out extrusion device, and the flat mop head is rotated to a state capable of being cleaned and extruded when the flat mop head is cleaned and extruded;
the flat mop head is moved and extruded between the cleaning area and the stroking extrusion device during cleaning so as to move, extrude and clean the wiping object, and is moved and extruded between the water extrusion area and the stroking extrusion device during water extrusion so as to move, extrude and squeeze the wiping object.
Further, the mouth-stroking extrusion device comprises an extrusion frame, wherein the extrusion frame is provided with an extrusion mouth for the flat mop to pass through, and an extruder for extruding the wiping objects on the flat mop head is arranged in the extrusion mouth.
Further, the extruder is an extrusion strip or an extrusion sheet.
Further, the mop barrel is provided with a water squeezing device and a cleaning squeezing device.
Further, the said stroking extrusion device has one, the stroking extrusion device can change between the said wringing area and cleaning area.
Further, a sliding guide rail is arranged on the mop bucket, and the stroking extrusion device can slide to the water squeezing area or the cleaning area along the sliding guide rail.
Further, the mop bucket is also hinged with a turnover handle, the mouth-stroking extrusion device is rotatably arranged on the turnover handle, and the turnover handle can be turned over to the water squeezing area or the cleaning area.
The application has the beneficial effects that: the mop barrel is provided with the mouth-stroking extrusion device, when in use, the mop rod can be held by both hands, the relative extrusion movement between the flat mop head and the mouth-stroking extrusion device is realized for squeezing and cleaning, the operation is more labor-saving and convenient, the wiping objects can be squeezed to be drier during squeezing, and the mop barrel matched with the flat mop is provided, so that the squeezing and cleaning can be conveniently carried out at any time and any place; the mop is not provided with other wringing mechanisms, so that the mop has a simpler structure and is more convenient to use. The squeezing area and/or the cleaning area are/is provided with a buffer mechanism for buffering the pressed flat mop head, so that hard collision can not be formed when the flat mop is pressed down.
Drawings
Fig. 1 is a schematic view of a flat mop.
Fig. 2 is a schematic structural view of a jaw extrusion device.
Fig. 3 is a schematic view of another jaw extrusion device.
Fig. 4 is a schematic view of another jaw extrusion device.
Fig. 5 is a schematic view of a structure of a squeezer.
Fig. 6 is a schematic view of another extruder.
Fig. 7 is a schematic view of another jaw extrusion device.
FIG. 8 is a schematic view of the structure of the cleaning tool with the wringing zone and the cleaning zone separated by a partition.
Fig. 9 is a schematic view of a cleaning tool having a spring rebound device.
FIG. 10 is a schematic structural view of a cleaning tool having an alternative spring back arrangement.
FIG. 11 is a schematic structural view of a cleaning tool having an alternative spring back arrangement.
FIG. 12 is a schematic view of a cleaning tool having a sliding jaw compression device.
FIG. 13 is a schematic view of a cleaning tool having a sliding jaw compression device.
Fig. 14 is a schematic view of an alternative mouthpiece extrusion device installation.
FIG. 15 is a view showing a state in which a jaw squeezing device is located in a wringing zone.
Fig. 16 is a schematic view of a jaw extruder in state transition.
FIG. 17 is a view showing a state in which a jaw crimping device is located in a cleaning zone.
Fig. 18 is a schematic view of a flat mop using magnets in a wringing and cleaning state.
Fig. 19 is a schematic view of a flat mop using a magnet in a mopping state.
Fig. 20 is a schematic view of a flat mop using velcro fasteners in a wringing and cleaning state.
Fig. 21 is a schematic view of a flat mop using velcro fasteners in a mopping state.
Fig. 22 is a schematic view of a flat mop positioned using a snap-on mop pole in a squeeze and rinse condition.
Fig. 23 is a schematic view of a flat mop positioned using a snap-on mop pole device in a mopping position.
Fig. 24 is a schematic view of a flat mop positioned using a snap-fit device on the flat mop head in a squeeze and rinse state.
Fig. 25 is a schematic view of a flat mop positioned using a snap-fit device on the flat mop head in a mopping position.
Fig. 26 is a schematic view of a flat mop positioned using a resilient top in a wringing and cleaning state.
Fig. 27 is a schematic view of a flat mop positioned using a resilient top in a mopping position.
Fig. 28 is a schematic view of the internal structure of fig. 27.
Fig. 29 is a schematic view of the internal structure of fig. 26.
Fig. 30 is a schematic view of a flat mop positioned using another resilient top member in a wringing and cleaning state.
Fig. 31 is a schematic view of a flat mop positioned using another resilient top member in a mopping position.
Fig. 32 is a schematic view of the internal structure of fig. 31.
Fig. 33 is a schematic view of the internal structure of fig. 30.
Fig. 34 is a schematic view of the structure of the mop bucket with an elastic pad or block therein.
Detailed Description
The application is described in further detail below with reference to the drawings and the detailed description.
Referring to fig. 1-8, a novel squeezing flat mop cleaning tool comprises a mop bucket 1 and a flat mop 2, wherein the flat mop 2 comprises a mop rod 3 and a flat mop head 4 movably connected to the mop rod 3, the flat mop head 4 is provided with a wiping object, and the wiping object can be arranged on the front surface or the back surface or both the front surface and the back surface of the flat mop head 4.
The mop bucket 1 has a separate wringing zone 5 and a separate cleaning zone 6. The mop barrel 1 is provided with a stroking extrusion device 7, and the flat mop head 4 is rotated to a state capable of being cleaned and extruded during cleaning and extruding water, and the state is usually embodied in the following form: the flat mop head 4 is rotated to be parallel to the mop rod 3 (but may be rotated to be non-parallel), so that the flat mop can be inserted into the jaw pressing device 7 for operation. The term "pinching-out press" refers to a press having a pinching-out opening, so that the flat mop can be inserted into the pinching-out opening to move, thereby achieving the effect of pressing the wiper. The flat mop head 4 and the mop rod 3 can keep the flat mop head 4 in a cleaning and water squeezing state through a positioning device; the flat mop head 4 is separated from the control of the positioning device when mopping, so that the flat mop head rotates to a mopping state.
The flat mop head 4 moves and extrudes between the cleaning area and the stroking extrusion device 7 during cleaning so as to extrude and clean the wiping object, and the flat mop head 4 moves and extrudes between the water extrusion area and the stroking extrusion device 7 during water extrusion so as to extrude and extrude water to the wiping object. During squeezing and cleaning, the flat mop head 4 and the mouth-stroking extrusion device 7 are preferably in relative vertical movement, namely, the flat mop head 4 moves vertically upwards and downwards along the axial direction of the flat mop head 4 during moving, so that the flat mop head 4 and the mouth-stroking extrusion device 7 relatively move, and the wiping object on the flat mop head 4 and the mouth-stroking extrusion device 7 move, squeeze and clean or move and squeeze water, and the mop rod 3 can be held by both hands to press downwards during cleaning or squeezing, so that the operation is very convenient and labor-saving.
In this embodiment, the partition 8 is disposed in the mop bucket 1, so that an independent squeezing area 5 and an independent cleaning area 6 are separated in the mop bucket 1, and a water drain valve can be disposed in the cleaning area 6 and/or the squeezing area 5, so that water can be conveniently drained through the water drain valve. As shown in fig. 8, the cleaning area 6 is provided with a stroking extrusion device 7, the wringing area 5 is provided with a stroking extrusion device 7, the stroking extrusion device of the cleaning area and the stroking extrusion device of the wringing area can be separated or connected into a whole, the stroking extrusion device 7 of the cleaning area 6 is used for squeezing and cleaning the wiping object, and the stroking extrusion device 7 of the wringing area 5 is used for squeezing and squeezing the wiping object. Of course, as shown in fig. 7, a plurality of the straightening extrusion devices 7 may be disposed in the cleaning area and the wringing area, and the straightening extrusion devices 7 may be aligned in a row to increase the cleaning and wringing effects.
The flat mop cleaning tool described above divides the mop bucket into the independent wringing area 5 and the independent cleaning area 6 through the partition 8, that is, the mop bucket has the wringing area and the cleaning area which are separated from each other and exist independently, and of course, other ways besides the partition can be adopted to form the independent wringing area and the cleaning area, for example, the mop bucket is set as the wringing bucket and the cleaning bucket connected with the wringing bucket, the space where the wringing bucket is located is the wringing area, and the space where the cleaning bucket is located is the cleaning area.
Of course, the installation position of the water squeezing device can be at the cleaning area, and the water squeezing device needs to extend to the water squeezing area; the mounting position of the stripping extrusion device for cleaning can also be at the water extrusion area, and the stripping extrusion device for cleaning needs to extend to the cleaning area.
In this embodiment, the specific structural form of the stroking extrusion device 7 is: the squeezing device 7 comprises a squeezing frame 9, the squeezing frame 9 is arranged at the upper end of the mop bucket 1, a squeezing opening 10 for a flat mop to pass through is formed in the squeezing frame 9, and a squeezer 11 for squeezing the wiping objects on the flat mop head 4 is arranged in the squeezing opening 10. When cleaning or squeezing, the flat mop head 4 rotates to be parallel to the mop rod 3, the flat mop head 4 is inserted into the squeezing opening 10, friction squeezing is generated between the squeezer 11 and the wiping object on the flat mop head 4, and the squeezing device 11 is used for squeezing, cleaning or squeezing the wiping object.
The purpose of the squeezer 11 is to squeeze the wipes on the flat mop head 4, so that the device can be constructed in various ways and can be mounted in various ways as long as the effect is achieved. The extruder 11 may be an extrusion bar, or an extrusion sheet, or a rotatable extrusion roll, the extrusion bar, or the extrusion sheet, or the extrusion roll may be fixedly installed in the extrusion opening, the extrusion bar, or the extrusion sheet, or the extrusion roll may also be movably installed in the extrusion opening through an elastic device, and the extrusion roll, or the extrusion bar, or the extrusion sheet may also be movably installed in the extrusion opening through an oblique track provided on the extrusion bracket. As shown in fig. 2, the press 11 may take the form of a press roll. Alternatively, as shown in fig. 5, the squeezer 11 may take the form of a squeezing strip, on which squeezing ribs 12 are provided, and squeezing is performed between the squeezing ribs 12 and the wiper on the flat mop head 4; or with the form of fig. 6, the extruder 11 can adopt the form of extrusion strip, be equipped with crowded water rib 12 and brush post 13 on the extrusion strip, produce the extrusion through crowded water rib 12 and brush post 13 and the wiper on the dull and stereotyped mop head 4, wherein crowded water rib 12 plays the primary extrusion effect, and brush post 13 plays the secondary extrusion effect, and brush post 13 still can be to the wiper on the dull and stereotyped mop head 4, is favorable to wasing.
The installation mode of the extruder 11 can be as shown in fig. 2, the extrusion roller serving as the extruder 11 is fixedly installed in the extrusion port 10, and the wringing roller can also be movably installed in the extrusion port, and the two modes are that two ends of the wringing roller are provided with roller frames, two ends of the wringing roller are inserted into the roller frames, and the roller frames are connected with the extrusion through springs, so that the wringing roller can move to change the width of the extrusion port during wringing and cleaning; or the two roller frames are respectively provided with a roller frame lug, and the roller frame lugs are slidably arranged in the inclined rails so that the squeezing rollers can move to change the width of the squeezing opening during squeezing and cleaning; or as shown in fig. 3, the extrusion strip as the extruder 11 is connected to the extrusion frame 9 through the extruder spring 14, so that the extruder 11 has certain elasticity, is smoother in extrusion operation, and the wringing roller can move to change the width of the extrusion opening in wringing and cleaning; or as shown in fig. 4, the extrusion bar as the extruder 11 is fixedly installed on the extrusion frame 9; or as shown in fig. 14, two ends of the extrusion strip serving as the extruder 11 are provided with protruding sliding blocks 15, the extrusion frame 9 is provided with inclined sliding rails 16, the sliding blocks 15 are positioned in the inclined sliding rails 16, and the sliding blocks 15 can slide in the inclined sliding rails 16, so that the extruder 11 can move, and the width of an extrusion opening can be changed during water extrusion or cleaning.
The squeezing area 5 and/or the cleaning area 6 are/is provided with a buffer mechanism for buffering the pressed flat mop head 4, the buffer mechanism is generally arranged on the bottom surface of the squeezing area 5, the bottom surface of the cleaning area 6 can also be provided with a buffer mechanism for buffering the pressed flat mop head 4, and the buffer mechanism is generally arranged on the bottom surface of the cleaning area 6. The buffer mechanism has the functions that: the pressed flat mop head 4 touches the buffer mechanism when being pressed down, and can avoid being directly in hard contact with the bottom surface of the mop bucket 1, thereby forming a buffer effect and being more comfortable in the water squeezing and cleaning operations. The cushioning mechanism may take a variety of forms, such as an elastomeric pad, or elastomeric block, or spring rebound device, or the like. When the buffer mechanism adopts a spring rebound device, the rebound device comprises an upper top spring 17 and a rebound frame 18, the lower end of the upper top spring 17 is propped against the bottom surface of the mop bucket 1, the upper end of the upper top spring 17 is propped against the rebound frame 18, and the flat mop head 4 is pressed down on the rebound frame 18 during cleaning or squeezing, so that buffer is formed by the elasticity of the upper top spring 17. The shape of the rebound frame 18 and the specific installation mode between the rebound frame and the upper top spring 17 can also adopt various structural forms, for example, as shown in fig. 9, a fixed sleeve 19 is arranged on the bottom surface of the wringing area and/or the cleaning area, an upper top sleeve is sleeved in the fixed sleeve 19, the upper top spring 17 is positioned in the fixed sleeve 19 and the upper top sleeve, and the upper top sleeve forms the rebound frame 18; or as shown in fig. 10, two fixed spring sleeves 20 are arranged on the bottom surface of the squeezing area and/or the cleaning area, a fixed guide post 21 is arranged in each spring sleeve 20, the rebound frame 18 is provided with a concave part 22, the flat mop head 4 is propped against the concave part 22 when being pressed down, guide heads are respectively formed on two sides of the concave part 22, guide sleeves 23 are arranged in the guide heads, the guide sleeves 23 are sleeved outside the guide posts 21, an upper top spring 17 is sleeved outside the guide sleeves 23 and the guide posts 21, the lower end of the upper top spring 17 is propped against the bottom surface of the mop bucket 1, and the upper end of the upper top spring 17 is propped against the guide heads; or as shown in fig. 11, two fixed guide frames 24 are arranged on the bottom surface of the wringing area and/or the cleaning area, the rebound frame 18 is provided with a concave part 22, the flat mop head 4 is propped against the concave part 22 when being pressed down, guide heads are respectively formed on two sides of the concave part 22, the guide heads are partially positioned in the guide frames 24, guide sleeves 23 are arranged in the guide heads, the upper top springs 17 are sleeved outside the guide sleeves 23, the lower ends of the upper top springs 17 are propped against the bottom surface of the mop bucket 1, and the upper ends of the upper top springs 17 are propped against the guide heads.
According to the technical scheme, a smoothing-out extrusion device is respectively arranged in the water extrusion area 5 and the cleaning area 6. Of course, only one stroking extrusion device can be adopted, and only one stroking extrusion device can be arranged, so that the stroking extrusion device needs to be switched between a squeezing area and a cleaning area, and is positioned in the squeezing area during squeezing and is positioned in the cleaning area during cleaning. The conversion modes can adopt various modes, as shown in fig. 12 and 13, a transfer slide rail is arranged at the upper edge of the mop bucket 1, and the extrusion frame 9 is arranged on the transfer slide rail in a sliding manner, so that the mouth-stroking extrusion device 7 can slide to the water squeezing area 5 and the cleaning area 6, and the conversion of the mouth-stroking extrusion device 7 between the water squeezing area 5 and the cleaning area 6 is realized. Or as shown in fig. 15, 26 and 27, the mop bucket 1 is further hinged with a turning handle 49, the mouth-stroking extrusion device 7 is rotatably mounted on the turning handle 49, and the turning handle 49 can be turned to the wringing area or the cleaning area, so that the mouth-stroking extrusion device 7 is supported in the wringing area or the cleaning area.
When the flat mop is used for cleaning and squeezing, the flat mop head is rotated to a state capable of cleaning and squeezing, and the flat mop head can be kept in a cleaning and squeezing state through the positioning device between the flat mop head and the mop rod, so that the flat mop can be smoothly moved in the stripping extrusion device for squeezing or moving for squeezing and cleaning. When mopping, the flat mop head is separated from the control of the positioning device, so that the flat mop head rotates to a mopping state for mopping.
The structure of the positioning device is not limited, so long as the flat mop head can keep the cleaning and squeezing state, and the flat mop head is separated from the control of the positioning device when mopping the floor, so that the flat mop head rotates to the mopping state. In this embodiment, several structural forms of the positioning device are exemplified:
as shown in fig. 18 and 19, the positioning device comprises an iron block 55 arranged on the mop rod 3 and a magnet 56 arranged on the flat mop head 4, when the flat mop head 4 rotates to a state that cleaning and water squeezing can be performed, the iron block 55 is attracted with the magnet 56, so that the flat mop head 4 is kept in a cleaning or water squeezing state under the action of magnetic attraction force; the iron block 55 is separated from the magnet 56 during mopping, so that the flat mop head 4 can rotate to a mopping state under the action of the magnetic attraction force.
Or the positioning device comprises a magnet arranged on the mop rod and an iron block arranged on the flat mop head, and when the flat mop head rotates to a state capable of cleaning and squeezing water, the iron block is attracted with the magnet, so that the flat mop head is kept in a cleaning or squeezing water state under the action of magnetic attraction force; when mopping, the iron block is separated from the magnet, so that the flat mop head can rotate to a mopping state under the action of the magnetic attraction force.
Or as shown in fig. 24 and 25, the positioning device comprises an elastic buckle 57 arranged on the flat mop head 4, when the flat mop head 4 rotates to a state that cleaning and water squeezing can be performed, the mop rod 3 is buckled into the elastic buckle 57, so that the flat mop head 4 and the mop rod 3 are fixed, and the flat mop head 4 is kept in a cleaning or water squeezing state; when mopping, the flat mop head or the mop rod is pulled to separate the mop rod 3 from the elastic buckle 57, so that the flat mop head 3 can freely rotate to a mopping state.
Or as shown in fig. 22 and 23, the positioning device comprises an elastic buckle 57 arranged on the mop rod 3, the flat mop head 4 is provided with a buckle hole 58 matched with the elastic buckle, and when the flat mop head 5 rotates to a state that cleaning and water squeezing can be performed, the elastic buckle 57 is buckled in the buckle hole 58, so that the flat mop head 4 is kept in a cleaning or water squeezing state; when mopping, the flat mop head or the mop rod is pulled to separate the elastic buckle 57 from the buckle hole 58, so that the flat mop head 4 can freely rotate to a mopping state.
Or the positioning device comprises a magic male buckle arranged on the flat mop head and a magic female buckle arranged on the mop rod, and the flat mop head and the mop rod are bonded and bound through the magic male buckle and the magic female buckle when in cleaning and water squeezing, so that the flat mop head is kept in a cleaning or water squeezing state; the magic male buckle is separated from the magic female buckle during mopping, so that the flat mop head can freely rotate to a mopping state.
Or as shown in fig. 20 and 21, the positioning device comprises a magic button 59 arranged on the flat mop head 4 and a magic button 60 arranged on the mop rod 3, and the flat mop head 4 and the mop rod 3 are bonded and bound through the magic button 60 and the magic button 59 during cleaning and water squeezing, so that the flat mop head 4 is kept in a cleaning or water squeezing state; the magic male buckle 60 is separated from the magic female buckle 59 when mopping, so that the flat mop head 4 can freely rotate to a mopping state.
Or as shown in fig. 26-33, the positioning device comprises an elastic top piece arranged in the mop rod 3, the elastic top piece comprises a spring 61 and a top block 62, and the top block 63 is propped against the movable connection part between the flat mop head 4 and the mop rod 3 by the force of the spring 61 during cleaning and water squeezing so as to position the flat mop head 4; when mopping, the mop rod or the flat mop head is pulled to rotate, so that the flat mop head 4 is in a mopping state. The joint of the flat mop head 4 and the mop rod 3 can adopt the following structure: the flat mop head is longitudinally hinged with a hinge support 63 (the longitudinal hinge means that the hinge shaft is parallel to the length direction of the flat mop head), the lower end of the mop rod 3 is transversely hinged with the hinge support 63 (the transverse hinge means that the hinge shaft is parallel to the width direction of the flat mop head), and the spring 61 and the top block 62 are positioned at the lower end in the mop rod 3, so that the top block 62 is propped against the hinge support 63. When the flat mop 4 rotates to the cleaning and wringing state, the flat mop 4 rotates to be substantially parallel to the mop rod 3, and the top block 62 is propped against the hinge support 63 to form a downward pushing force, so that the flat mop 4 is kept in the state. For better positioning, when the flat mop head 4 is turned to be basically parallel to the mop rod 3, the hinged seat on the top of the top block 62 is set to be a plane so as to increase positioning capability; or the hinged support on top of the top block 62 is provided with a groove 64, the top block 62 is provided with a convex rib 65 or a clamping wheel 66, and the convex rib 65 or the clamping wheel 66 is clamped into the groove 64 to achieve a better positioning effect.
Or the positioning device comprises an elastic top piece arranged at the movable joint between the flat mop head and the mop rod, and the elastic top piece is propped against the mop rod to position the flat mop head during cleaning and water squeezing; when mopping, the mop rod or the flat mop head rotates to enable the flat mop head to be in a mopping state.
It should be noted that the flat mop head of the present application is a broad flat mop head, and is not a strictly flat plate, and its thickness should be smaller, so that it is easy to insert into the smoothing-out extrusion device, and its width does not need to be considered too much. The type of the wiper disclosed by the application is not limited, and the wiper can be a mop or a common collodion mop in the market, so long as the flat mop is rotated to a state of being capable of cleaning and squeezing water during cleaning and squeezing water, and then movable squeezing can be realized between the flat mop and the squeezing device.
Referring to fig. 34, a cushioning mechanism is provided in the wringing zone and/or in the cleaning zone to cushion the depressed flat mop head, which may also be a resilient pad 67, or a resilient block.

Claims (9)

1. The utility model provides a squeeze dull and stereotyped mop burnisher, includes mop bucket and flat mop, flat mop includes mop pole and swing joint flat mop head on the mop pole, mop pole swing joint be in the front of flat mop head, the back of flat mop head be equipped with the wiper, its characterized in that:
the mop bucket is provided with an independent cleaning area and an independent water squeezing area; the flat mop head is rotated to be consistent with the mop rod in the length direction during cleaning and water squeezing, so that the flat mop head can be cleaned and squeezed;
the flat mop head and the mop rod can keep a cleaning and water squeezing state through the positioning device; the flat mop head is separated from the control of the positioning device during mopping so as to rotate to a mopping state; the positioning device comprises a spring and a jacking block, the spring and the jacking block are positioned at the lower end in the mop rod, and the jacking block is jacked on the side surface of the hinged support;
the mouth-stroking extrusion device comprises an extrusion frame, the extrusion frame is provided with an extrusion mouth for the flat mop head and the mop rod to pass through, an extruder for extruding the wiping objects on the flat mop head is arranged in the extrusion opening;
during cleaning, the flat mop can enter the cleaning area through the extrusion opening and reciprocate up and down so as to carry out moving extrusion cleaning on the wiping objects through the extruder;
when squeezing water, the flat mop can pass through the squeezing opening to enter the squeezing area and reciprocate up and down so as to squeeze water from the wiping object by moving the squeezer;
the length of the flat mop head is matched with the height from the bottom of the mop barrel to the squeezer, so that when the flat mop is inserted into the squeezing opening to squeeze and clean or squeeze water, the flat mop descends to touch the bottom of the mop barrel, and the wiping objects are sufficiently cleaned and squeezed.
2. The extruded flat mop cleaning tool of claim 1, wherein: the extruder is an extrusion strip or an extrusion sheet.
3. The extruded flat mop cleaning tool of claim 1, wherein: the mop barrel is provided with a smoothing-out extrusion device for squeezing water and a smoothing-out extrusion device for cleaning.
4. The extruded flat mop cleaning tool of claim 1, wherein: the said stroking mouth extrusion device has one, the said stroking mouth extrusion device can change between the said wringing area and cleaning area.
5. The extruded flat mop cleaning tool of claim 4, wherein: the mop barrel is provided with a sliding guide rail, and the smoothing-out opening extrusion device can slide to the water squeezing area or the cleaning area along the sliding guide rail.
6. The extruded flat mop cleaning tool of claim 4, wherein: the mop barrel is also hinged with a turnover handle, the mouth-stroking extrusion device is rotatably arranged on the turnover handle, and the turnover handle can be turned over to the wringing area or the cleaning area.
7. The extruded flat mop cleaning tool of claim 1, wherein: the cleaning area and the wringing area are arranged side by side.
8. The extruded flat mop cleaning tool of claim 1, wherein: the front side of the flat mop head is longitudinally hinged with a hinged support, and the lower end of the mop rod is transversely hinged on the hinged support.
9. The extruded flat mop cleaning tool of claim 1, wherein: the side surface of the hinged support is provided with a plane part, and when the flat mop head rotates to a state capable of cleaning and squeezing water, the top block is propped against the plane part; or the side surface of the hinged support is provided with a groove, the top block is provided with a convex rib or a clamping wheel, and when the flat mop head rotates to a state of being capable of cleaning and squeezing water, the convex rib or the clamping wheel is clamped into the groove.
CN202210413471.XA 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop Active CN115153376B (en)

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CN2016103865888 2016-06-04
CN201610386588 2016-06-04
CN202210413471.XA CN115153376B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201710222065.4A CN107456178A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher

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CN201811118339.6A Withdrawn CN109222802A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201810653758.3A Withdrawn CN108784576A (en) 2016-06-04 2016-08-12 flat mop cleaning method
CN201810812737.1A Withdrawn CN108742398A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201811099914.2A Withdrawn CN109464078A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201810664339.XA Withdrawn CN108784577A (en) 2016-06-04 2016-08-12 Flat mop water squeezing and cleaning method
CN201810630183.3A Withdrawn CN108814484A (en) 2016-06-04 2016-08-12 flat mop water squeezing method
CN201610658179.9A Pending CN107456184A (en) 2016-06-04 2016-08-12 One kind extruding flat mop burnisher
CN201810813879.XA Withdrawn CN108742399A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201720355119.XU Active CN207253313U (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher of provided with wheels
CN201810812690.9A Withdrawn CN109044221A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201810664344.0A Active CN108814476B (en) 2016-06-04 2017-04-06 Flat mop using method
CN201810653757.9A Pending CN108742389A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810813854.XA Withdrawn CN108720766A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201811099500.XA Withdrawn CN109330519A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810813856.9A Withdrawn CN108937770A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810630141.XA Pending CN108742388A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810814544.XA Withdrawn CN108742402A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810747863.3A Withdrawn CN109044224A (en) 2016-06-04 2017-04-06 Squeeze the cleaning assembly of flat mop burnisher
CN202210413471.XA Active CN115153376B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201810630181.4A Pending CN108814472A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810339124.0A Pending CN108742396A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN202011084891.5A Active CN112426112B (en) 2016-06-04 2017-04-06 Flat mop water squeezing method
CN202011086145.XA Withdrawn CN112386191A (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201810814528.0A Withdrawn CN108742401A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810338259.5A Pending CN108498032A (en) 2016-06-04 2017-04-06 A kind of water squeezing method and cleaning and dewatering squeezing flat mop
CN201810814520.4A Withdrawn CN108742400A (en) 2016-06-04 2017-04-06 A kind of flat mop
CN201811099374.8A Withdrawn CN109222799A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810338362.XA Pending CN108670143A (en) 2016-06-04 2017-04-06 The water squeezing method of extruding flat mop and cleaning and dewatering
CN202210273653.1A Active CN114795036B (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201810813880.2A Active CN108937772B (en) 2016-06-04 2017-04-06 Vertically-arranged cleaning tool for squeezing flat mop
CN202111489256.XA Pending CN114158994A (en) 2016-06-04 2017-04-06 Novel dull and stereotyped mop burnisher of extrusion
CN201811016059.4A Withdrawn CN109222798A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810663200.3A Pending CN108742385A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810652423.XA Withdrawn CN108742384A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201811099203.5A Withdrawn CN109464077A (en) 2016-06-04 2017-04-06 A kind of flat mop
CN201710221951.5A Active CN107456181B (en) 2016-06-04 2017-04-06 Detachable and squeezing flat mop cleaning tool
CN202210273652.7A Active CN114795035B (en) 2016-06-04 2017-04-06 Flat mop squeezing device for mop bucket and mop bucket thereof
CN201810630124.6A Withdrawn CN108814475A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201811145726.9A Withdrawn CN109222792A (en) 2016-06-04 2017-04-06 Flat mop application method
CN201710221936.0A Pending CN107456185A (en) 2016-06-04 2017-04-06 A kind of single barrel of extruding flat mop burnisher
CN201811099551.2A Withdrawn CN109222801A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201811099462.8A Withdrawn CN109222800A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810651201.6A Pending CN108784571A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810747869.0A Active CN109008855B (en) 2016-06-04 2017-04-06 Cleaning tool
CN201811099726.XA Withdrawn CN109330520A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN202210516490.5A Active CN115054174B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201710221943.0A Active CN107456180B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201810813857.3A Withdrawn CN108937771A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN202210342285.1A Pending CN114869189A (en) 2016-06-04 2017-04-06 Opening smoothing extrusion device for extruding flat mop
CN201811099336.2A Withdrawn CN109394103A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN202210513940.5A Active CN114847828B (en) 2016-06-04 2017-04-06 Squeezing flat mop cleaning tool
CN201811016058.XA Active CN109330517B (en) 2016-06-04 2017-04-06 Vertically-arranged cleaning tool for squeezing flat mop
CN201810814546.9A Withdrawn CN108742403A (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher that can be erect
CN201810651203.5A Pending CN108814473A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810630142.4A Active CN108670142B (en) 2016-06-04 2017-04-06 Flat mop water squeezing method
CN201810663199.4A Active CN108814474B (en) 2016-06-04 2017-04-06 Using method of flat mop
CN201810337643.3A Pending CN108685540A (en) 2016-06-04 2017-04-06 Novel extrusion flat mop burnisher
CN201810339156.0A Pending CN108670144A (en) 2016-06-04 2017-04-06 A kind of extruding flat mop burnisher
CN201710221885.1A Active CN107456179B (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher that can be erect
CN202210120048.0A Active CN114468902B (en) 2016-06-04 2017-04-06 Squeezing assembly of flat mop for mop bucket and cleaning tool thereof
CN201710222065.4A Withdrawn CN107456178A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN202210273661.6A Active CN114795037B (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201811099459.6A Withdrawn CN109394104A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201810812689.6A Withdrawn CN108742386A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher

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CN201811118339.6A Withdrawn CN109222802A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201810653758.3A Withdrawn CN108784576A (en) 2016-06-04 2016-08-12 flat mop cleaning method
CN201810812737.1A Withdrawn CN108742398A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201811099914.2A Withdrawn CN109464078A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201810664339.XA Withdrawn CN108784577A (en) 2016-06-04 2016-08-12 Flat mop water squeezing and cleaning method
CN201810630183.3A Withdrawn CN108814484A (en) 2016-06-04 2016-08-12 flat mop water squeezing method
CN201610658179.9A Pending CN107456184A (en) 2016-06-04 2016-08-12 One kind extruding flat mop burnisher
CN201810813879.XA Withdrawn CN108742399A (en) 2016-06-04 2016-08-12 A kind of extruding flat mop burnisher
CN201720355119.XU Active CN207253313U (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher of provided with wheels
CN201810812690.9A Withdrawn CN109044221A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201810664344.0A Active CN108814476B (en) 2016-06-04 2017-04-06 Flat mop using method
CN201810653757.9A Pending CN108742389A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810813854.XA Withdrawn CN108720766A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201811099500.XA Withdrawn CN109330519A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810813856.9A Withdrawn CN108937770A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810630141.XA Pending CN108742388A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810814544.XA Withdrawn CN108742402A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810747863.3A Withdrawn CN109044224A (en) 2016-06-04 2017-04-06 Squeeze the cleaning assembly of flat mop burnisher

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CN201810630181.4A Pending CN108814472A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810339124.0A Pending CN108742396A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN202011084891.5A Active CN112426112B (en) 2016-06-04 2017-04-06 Flat mop water squeezing method
CN202011086145.XA Withdrawn CN112386191A (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201810814528.0A Withdrawn CN108742401A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN201810338259.5A Pending CN108498032A (en) 2016-06-04 2017-04-06 A kind of water squeezing method and cleaning and dewatering squeezing flat mop
CN201810814520.4A Withdrawn CN108742400A (en) 2016-06-04 2017-04-06 A kind of flat mop
CN201811099374.8A Withdrawn CN109222799A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810338362.XA Pending CN108670143A (en) 2016-06-04 2017-04-06 The water squeezing method of extruding flat mop and cleaning and dewatering
CN202210273653.1A Active CN114795036B (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201810813880.2A Active CN108937772B (en) 2016-06-04 2017-04-06 Vertically-arranged cleaning tool for squeezing flat mop
CN202111489256.XA Pending CN114158994A (en) 2016-06-04 2017-04-06 Novel dull and stereotyped mop burnisher of extrusion
CN201811016059.4A Withdrawn CN109222798A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810663200.3A Pending CN108742385A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201810652423.XA Withdrawn CN108742384A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201811099203.5A Withdrawn CN109464077A (en) 2016-06-04 2017-04-06 A kind of flat mop
CN201710221951.5A Active CN107456181B (en) 2016-06-04 2017-04-06 Detachable and squeezing flat mop cleaning tool
CN202210273652.7A Active CN114795035B (en) 2016-06-04 2017-04-06 Flat mop squeezing device for mop bucket and mop bucket thereof
CN201810630124.6A Withdrawn CN108814475A (en) 2016-06-04 2017-04-06 A kind of application method of flat mop
CN201811145726.9A Withdrawn CN109222792A (en) 2016-06-04 2017-04-06 Flat mop application method
CN201710221936.0A Pending CN107456185A (en) 2016-06-04 2017-04-06 A kind of single barrel of extruding flat mop burnisher
CN201811099551.2A Withdrawn CN109222801A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201811099462.8A Withdrawn CN109222800A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN201810651201.6A Pending CN108784571A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810747869.0A Active CN109008855B (en) 2016-06-04 2017-04-06 Cleaning tool
CN201811099726.XA Withdrawn CN109330520A (en) 2016-06-04 2017-04-06 It is detachable to squeeze flat mop burnisher
CN202210516490.5A Active CN115054174B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201710221943.0A Active CN107456180B (en) 2016-06-04 2017-04-06 Cleaning tool for squeezing flat mop
CN201810813857.3A Withdrawn CN108937771A (en) 2016-06-04 2017-04-06 Squeeze flat mop burnisher
CN202210342285.1A Pending CN114869189A (en) 2016-06-04 2017-04-06 Opening smoothing extrusion device for extruding flat mop
CN201811099336.2A Withdrawn CN109394103A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN202210513940.5A Active CN114847828B (en) 2016-06-04 2017-04-06 Squeezing flat mop cleaning tool
CN201811016058.XA Active CN109330517B (en) 2016-06-04 2017-04-06 Vertically-arranged cleaning tool for squeezing flat mop
CN201810814546.9A Withdrawn CN108742403A (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher that can be erect
CN201810651203.5A Pending CN108814473A (en) 2016-06-04 2017-04-06 The application method of flat mop
CN201810630142.4A Active CN108670142B (en) 2016-06-04 2017-04-06 Flat mop water squeezing method
CN201810663199.4A Active CN108814474B (en) 2016-06-04 2017-04-06 Using method of flat mop
CN201810337643.3A Pending CN108685540A (en) 2016-06-04 2017-04-06 Novel extrusion flat mop burnisher
CN201810339156.0A Pending CN108670144A (en) 2016-06-04 2017-04-06 A kind of extruding flat mop burnisher
CN201710221885.1A Active CN107456179B (en) 2016-06-04 2017-04-06 The extruding flat mop burnisher that can be erect
CN202210120048.0A Active CN114468902B (en) 2016-06-04 2017-04-06 Squeezing assembly of flat mop for mop bucket and cleaning tool thereof
CN201710222065.4A Withdrawn CN107456178A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN202210273661.6A Active CN114795037B (en) 2016-06-04 2017-04-06 Flat mop cleaning tool
CN201811099459.6A Withdrawn CN109394104A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher
CN201810812689.6A Withdrawn CN108742386A (en) 2016-06-04 2017-04-06 A kind of novel extrusion flat mop burnisher

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