CN115054174A - Dull and stereotyped mop burnisher of extrusion - Google Patents
Dull and stereotyped mop burnisher of extrusion Download PDFInfo
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- CN115054174A CN115054174A CN202210516490.5A CN202210516490A CN115054174A CN 115054174 A CN115054174 A CN 115054174A CN 202210516490 A CN202210516490 A CN 202210516490A CN 115054174 A CN115054174 A CN 115054174A
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- Prior art keywords
- mop
- flat mop
- cleaning
- area
- squeezing
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/20—Mops
- A47L13/24—Frames for mops; Mop heads
- A47L13/254—Plate frames
- A47L13/258—Plate frames of adjustable or foldable type
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/50—Auxiliary implements
- A47L13/58—Wringers for scouring pads, mops, or the like, combined with buckets
- A47L13/59—Wringers for scouring pads, mops, or the like, combined with buckets with movable squeezing members
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- Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
Abstract
A cleaning tool for squeezing a flat mop comprises a mop bucket and the flat mop, wherein the flat mop comprises a mop rod and a flat mop head movably connected to the mop rod, wiping materials are 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 bucket is provided with a smoothing-out extrusion device, and the flat mop head is rotated to a state capable of being cleaned and squeezed during cleaning and squeezing; when the mop is washed, the flat mop head moves and extrudes between the washing area and the opening smoothing extrusion device so as to carry out moving, extruding and washing on the wiper, and when the wiper is squeezed, the flat mop head moves and extrudes between the water squeezing area and the opening smoothing extrusion device so as to carry out moving, extruding and water squeezing on the wiper.
Description
The application is a divisional application, the original application date is 2017, 04 and 06 months, the application number is 201710221943.0, and the invention is named as a cleaning tool for the extrusion flat mop.
Technical Field
The invention relates to a flat mop cleaning tool.
Background
In prior art, dull and stereotyped mop's dehydration has three kinds of modes foot to step on the extrusion formula dehydration, it sets up the foot on the mop bucket and steps on extrusion device, this foot is stepped on extrusion device including setting up the wringing basket in the mop bucket, articulate on mop bucket upper portion and the footboard relative with the wringing basket, footboard and wringing basket enclose into a wringing space, need at first shirk the mop on the mop board of dull and stereotyped mop when the dehydration, place the mop in the wringing space, then the foot is stepped on the footboard and is made the shrink of wringing space reach the purpose of wringing the water on the mop. The dehydration mode in the form needs to design a foot-operated extrusion device with a complex structure, and the cost is higher; when squeezing water, the mop cloth needs to be detached first, and the foot needs to be lifted for stepping operation, which is troublesome.
The second mode is centrifugal rotary dehydration, which adopts a hand-press rotary mop rod, when dehydrating, two ends of the mop plate of the flat mop need to be bent and then placed in the dehydration area of the mop bucket, and the mop rod is pressed downwards, so that the mop plate of the flat mop can be centrifugally rotated and dehydrated. The dewatering mode of the form needs to design the mop plate of the flat mop into a bendable structure, the structure is complex, and the dewatering mode needs to be matched with a hand-press rotary mop rod, so that the cost is high.
The third mode is hand-push extrusion type dehydration, for example, the Chinese invention patents ZL200720192814.5, ZL201320019718.6, ZL201420624020.1 and the like comprise a mop rod and a flat mop plate movably connected to the mop rod, wherein the mop rod is provided with a water squeezing mechanism, and water squeezing and cleaning of the wiping matters on the flat mop plate are realized through relative extrusion movement between the water squeezing mechanism and the flat mop plate. It also has the disadvantages that: when the water squeezing operation is carried out, the mop rod needs to be held by one hand for positioning, the water squeezing mechanism needs to be held by the other hand, the relative squeezing movement between the water squeezing mechanism and the flat mop plate is realized by pushing and pulling the water squeezing mechanism by one hand, the operation is very laborious, and the operability is not strong.
Disclosure of Invention
In order to overcome the defects of the existing flat mop cleaning tool, the invention provides the flat mop cleaning tool which is more labor-saving to operate.
The technical scheme for solving the technical problem is as follows: a cleaning tool for an extrusion flat mop comprises a mop bucket and the flat mop, wherein the flat mop comprises a mop rod and a flat mop head movably connected to the mop rod, the flat mop head is provided with a wiping material,
the mop bucket is provided with an independent cleaning area and an independent water squeezing area; the mop bucket is provided with a smoothing-out extrusion device, and the flat mop head is rotated to a state capable of being cleaned and squeezed during cleaning and squeezing;
when the mop is washed, the flat mop head moves and extrudes between the washing area and the opening smoothing extrusion device so as to carry out moving, extruding and washing on the wiper, and when the wiper is squeezed, the flat mop head moves and extrudes between the water squeezing area and the opening smoothing extrusion device so as to carry out moving, extruding and water squeezing on the wiper.
Furthermore, the opening smoothing extrusion device comprises an extrusion frame, an extrusion opening for the flat mop to pass through is formed in the extrusion frame, and an extruder for extruding the wiping object on the flat mop head is arranged in the extrusion opening.
Further, the squeezer is a squeezing strip or a squeezing sheet.
Furthermore, a mouth smoothing extrusion device for squeezing water and a mouth smoothing extrusion device for cleaning are arranged on the mop bucket.
Furthermore, the opening smoothing extrusion device is provided with one opening smoothing extrusion device, and the opening smoothing extrusion device can be switched between the water squeezing area and the cleaning area.
Furthermore, a sliding guide rail is arranged on the mop bucket, and the opening smoothing extrusion device can slide to the water squeezing area or the cleaning area along the sliding guide rail.
Furthermore, the mop barrel is hinged with a turnover handle, the opening smoothing extrusion device is rotatably arranged on the turnover handle, and the turnover handle can be turned to the water squeezing area or the cleaning area.
The invention has the beneficial effects that: the opening smoothing extrusion device is arranged on the mop bucket, so that the mop rod can be held by two hands to be operated when the opening smoothing extrusion device is used, the flat mop head and the opening smoothing extrusion device can be extruded and moved relatively to squeeze water and wash, the operation is more labor-saving and convenient, the wiping materials can be squeezed more dry when water is squeezed, and the mop bucket matched with the flat mop is provided, so that the water squeezing and washing can be conveniently carried out anytime and anywhere; other water squeezing mechanisms are not arranged on the mop, so that the mop is simpler in structure and more convenient to use. A buffer mechanism for buffering the pressed flat mop head is arranged in the water squeezing area and/or the cleaning area, and hard collision cannot be formed when the flat mop is pressed down.
Drawings
Fig. 1 is a schematic structural view of a flat mop.
Fig. 2 is a schematic structural view of a stroking and squeezing device.
Fig. 3 is a schematic structural view of another stroking extrusion device.
Fig. 4 is a schematic structural view of another stroking extrusion device.
Fig. 5 is a schematic view of the structure of an extruder.
Fig. 6 is a schematic view of another extruder configuration.
Fig. 7 is a schematic structural view of another stroking extrusion device.
Figure 8 is a schematic view of a cleaning implement having a water expression zone and a cleaning zone separated by a partition.
FIG. 9 is a schematic view of a cleaning implement having a spring-resilient device.
FIG. 10 is a schematic view of a cleaning implement having an alternative spring-return arrangement.
FIG. 11 is a schematic view of a cleaning implement having an alternative spring-return arrangement.
FIG. 12 is a schematic view of a cleaning implement having a sliding stroker press.
FIG. 13 is a schematic view of a cleaning tool having a sliding stroker press.
FIG. 14 is a schematic view of another alternative embodiment of a stroking device.
FIG. 15 is a view showing a state in which a cuff pressing means is located in a water squeezing zone.
FIG. 16 is a schematic view of a stroking device with state transition.
FIG. 17 is a view showing a state in which a cuff pressing means is located in a washing zone.
Fig. 18 is a schematic view of a flat mop employing magnets in a squeeze and wash condition.
Fig. 19 is a schematic view of a flat mop using magnets in a mopping state.
Figure 20 is a schematic view of a flat mop employing a Velcro in a squeeze and wash condition.
Fig. 21 is a schematic view of a flat mop using a magic buckle in a mopping state.
FIG. 22 is a schematic view of a flat mop positioned using a snap-fit on the mop pole in a squeeze and wash condition.
FIG. 23 is a schematic view of a flat mop positioned using a snap on mop pole in a mopping position.
FIG. 24 is a schematic view of a flat mop in a squeeze and wash position using a snap-on device on the head of the flat mop.
FIG. 25 is a schematic view of a flat mop in a mopping position using a snap-on device on the head of the flat mop for positioning.
FIG. 26 is a schematic view of a flat mop positioned with a resilient top member in a water-squeezing and cleaning position.
FIG. 27 is a schematic view of a flat mop positioned with a resilient top member 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 in a water-squeezing and washing position using an alternative resilient top member for positioning.
FIG. 31 is a schematic view of a flat mop positioned with 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 a mop bucket having a resilient pad or block therein.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
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 material, and the wiping material can be arranged on the front or back surface or both the front and back surfaces of the flat mop head 4.
The mop bucket 1 is provided with an independent water squeezing area 5 and an independent cleaning area 6. The mop bucket 1 is provided with a smoothing squeezing device 7, and the flat mop head 4 is rotated to a state capable of being cleaned and squeezed during cleaning and squeezing, wherein the state is usually embodied as follows: the flat mop head 4 is rotated to be parallel to the mop shaft 3 (although it can be rotated to a non-parallel position) so that the flat mop can be inserted into the mouth-smoothing press 7 for operation. The term "opening squeezing device" refers to a squeezing device having an opening through which a flat mop can be inserted and moved to squeeze a wipe. The flat mop head 4 can keep a cleaning and water-squeezing state between the flat mop head 4 and the mop rod 3 through a positioning device; when mopping, the flat mop head 4 is separated from the control of the positioning device so as to rotate to the mopping state.
During cleaning, the flat mop head 4 moves and extrudes between the cleaning area and the opening smoothing extrusion device 7 so as to extrude and clean the wiper, and during wringing, the flat mop head 4 moves and extrudes between the wringing area and the opening smoothing extrusion device 7 so as to extrude and wring the wiper. During water squeezing and washing, the flat mop head 4 and the opening smoothing squeezing device 7 preferably move vertically relative to each other, namely the flat mop head 4 moves vertically up and down along the axial direction when moving, so that the flat mop head 4 and the opening smoothing squeezing device 7 move relatively to each other, a wiping material on the flat mop head 4 and the opening smoothing squeezing device 7 move to squeeze and wash or squeeze and squeeze water, and when washing or squeezing water, the mop rod 3 can be held by two hands to press downwards, so that the operation is very convenient and labor-saving.
In this embodiment, the mop bucket 1 is internally provided with a partition plate 8, so that the mop bucket 1 is internally divided into an independent wringing area 5 and an independent cleaning area 6, and the cleaning area 6 and/or the wringing area 5 can be provided with a water drain valve, so that water can be conveniently drained through the water drain valve. As shown in fig. 8, a mouth smoothing extrusion device 7 is installed in the cleaning area 6, a mouth smoothing extrusion device 7 is installed in the wringing area 5, the mouth smoothing extrusion device of the cleaning area and the mouth smoothing extrusion device of the wringing area are separable or can be connected into a whole, the mouth smoothing extrusion device 7 of the cleaning area 6 is used for squeezing and cleaning the wiper, and the mouth smoothing extrusion device 7 of the wringing area 5 is used for squeezing and wringing the wiper. Of course, as shown in fig. 7, a plurality of the opening smoothing squeezing devices 7 can be arranged in the cleaning area and the water squeezing area, and the plurality of the opening smoothing squeezing devices 7 are arranged in a row to increase the cleaning and water squeezing effects.
The flat mop cleaning tool described above is divided into the independent squeezing area 5 and the independent cleaning area 6 by the partition plate 8, that is, the mop bucket has the squeezing area and the cleaning area which are separated from each other and exist independently, and it is needless to say that the independent squeezing area and the independent cleaning area can be formed by other methods besides the partition plate, for example, the mop bucket is set as a squeezing bucket and a cleaning bucket connected with the squeezing bucket, the squeezing bucket is located in the squeezing area, and the cleaning bucket is located in the cleaning area.
Of course, the mounting position of the opening smoothing extrusion device for water squeezing can also be at the cleaning area, and the opening smoothing extrusion device for water squeezing needs to extend to the water squeezing area; the mounting position of the cleaning opening smoothing extrusion device can also be at the water squeezing area, and the cleaning opening smoothing extrusion device needs to extend to the cleaning area.
In this embodiment, the specific structural form of the mouth smoothing extrusion device 7 is as follows: the opening smoothing extrusion device 7 comprises an extrusion frame 9, the extrusion frame 9 is installed at the upper end of a mop barrel 1, an extrusion opening 10 for a flat mop to pass through is formed in the extrusion frame 9, and an extruder 11 for extruding the wiping materials on the flat mop head 4 is arranged in the extrusion opening 10. When cleaning or squeezing water, the flat mop head 4 is rotated to be parallel to the mop rod 3, then the flat mop head 4 is inserted into the squeezing opening 10, the squeezer 11 and the wiping material on the flat mop head 4 generate friction squeezing, and the squeezer 11 squeezes the wiping material for cleaning or squeezing for squeezing water.
The function of the squeezer 11 is to exert a squeezing action on the wipes of the flat mop head 4, so long as this action is achieved, its form of construction can take many forms, and its form of installation can also take many forms. The squeezer 11 can be an extrusion strip, an extrusion sheet or a rotatable squeezing roller, the extrusion strip, the extrusion sheet or the squeezing roller can be fixedly arranged in the extrusion port, the extrusion strip, the extrusion sheet or the squeezing roller can also be movably arranged in the extrusion port through an elastic device, and the squeezing roller, the extrusion strip or the extrusion sheet can also be movably arranged in the extrusion port through an inclined track arranged on the extrusion support. As shown in fig. 2, the extruder 11 may take the form of an extrusion roll. Alternatively, as shown in fig. 5, the squeezer 11 may take the form of a squeezing strip on which a wringing rib 12 is provided, through which the wringing rib 12 squeezes with the wipe on the flat mop head 4; or as shown in fig. 6, the squeezer 11 may be in the form of a squeezing strip, on which a water squeezing rib 12 and a brush column 13 are provided, and the water squeezing rib 12 and the brush column 13 squeeze the wiping material on the flat mop head 4, wherein the water squeezing rib 12 plays a major role in squeezing, the brush column 13 plays a minor role in squeezing, and the brush column 13 can also clean the wiping material on the flat mop head 4, which is beneficial for cleaning.
The installation mode of the squeezer 11 can be as shown in fig. 2, the squeeze roll as the squeezer 11 is fixedly installed in the squeezing port 10, the wringing roll can also be movably installed in the squeezing port, one mode is that the two ends of the wringing roll are provided with roll frames, the two ends of the wringing roll are inserted into the roll frames, the roll frames are connected with the squeezing through springs, so that the wringing roll can move to change the width of the squeezing port during wringing and cleaning; or an inclined track on the extrusion support, wherein the two roller frames are respectively provided with a roller frame lug and a roller frame lug, and the roller frame lugs are arranged in the inclined track in a sliding way, so that the wringing roller can move to change the width of the extrusion opening during wringing and cleaning; or as shown in fig. 3, the extruding strip as the extruder 11 is connected to the extruding frame 9 through the extruder spring 14, so that the extruder 11 has certain elasticity and is smoother during extruding operation, and the wringing roller can move to change the width of the extruding opening during wringing and cleaning; or as shown in fig. 4, the extrusion strip as the extruder 11 is fixedly mounted on the extrusion frame 9; or as shown in fig. 14, two ends of the extrusion strip as the extruder 11 are provided with protruded sliders 15, the extrusion frame 9 is provided with an inclined slide rail 16, the sliders 15 are positioned in the inclined slide rail 16, the sliders 15 can slide in the inclined slide rail 16, so that the extruder 11 can move, and the width of the extrusion opening can be changed during water extrusion or cleaning.
The water squeezing area 5 and/or the cleaning area 6 are/is provided with a buffer mechanism for buffering the downward flat mop head 4, the buffer mechanism is generally arranged on the bottom surface of the water squeezing area 5, the bottom surface of the cleaning area 6 can also be provided with a buffer mechanism for buffering the downward 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 flat mop head 4 pressed down touches the buffer mechanism when pressed down, and can avoid direct hard contact with the bottom surface of the mop bucket 1, thereby forming a buffer function and being more comfortable during water squeezing and cleaning operations. The cushioning mechanism may take many forms, for example, using an elastic pad, or block, or spring-resilient device, or the like. When the buffer mechanism adopts a spring rebound device, the rebound device comprises an upper spring 17 and a rebound frame 18, the lower end of the upper spring 17 is propped against the bottom surface of the mop bucket 1, the upper end of the upper spring 17 is propped against the rebound frame 18, the flat mop head 4 is pressed down when washing or squeezing water and is propped against the rebound frame 18, and therefore the buffer is formed through the elasticity of the upper spring 17. The shape of the rebounding frame 18 and the specific installation manner between the rebounding frame and the upper ejecting 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 water squeezing area and/or the cleaning area, an upper ejecting sleeve is sleeved in the fixed sleeve 19, the upper ejecting spring 17 is positioned in the fixed sleeve 19 and the upper ejecting sleeve, and the upper ejecting sleeve forms the rebounding frame 18; or as shown in fig. 10, two fixed spring sleeves 20 are arranged on the bottom surface of the water 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 downwards, two sides of the concave part 22 respectively form a guide head, a guide sleeve 23 is arranged in each guide head, the guide sleeve 23 is sleeved outside the guide post 21, the upper jacking spring 17 is sleeved outside the guide sleeve 23 and the guide post 21, the lower end of the upper jacking spring 17 is propped against the bottom surface of the mop bucket 1, and the upper end of the upper jacking spring 17 is propped against the guide head; or as shown in fig. 11, two fixed guide frames 24 are arranged on the bottom surface of the water squeezing area and/or the cleaning area, the rebound frame 18 is provided with a lower concave part 22, the flat mop head 4 is propped against the lower concave part 22 when being pressed downwards, two sides of the lower concave part 22 are respectively provided with a guide head, the guide head parts are positioned in the guide frames 24, a guide sleeve 23 is arranged in the guide head, an upper propping spring 17 is sleeved outside the guide sleeve 23, the lower end of the upper propping spring 17 is propped against the bottom surface of the mop bucket 1, and the upper end of the upper propping spring 17 is propped against the guide head.
In the technical scheme, a stroke squeezing device is respectively arranged in the water squeezing area 5 and the cleaning area 6. Of course, only one opening smoothing extrusion device can be adopted, and only one opening smoothing extrusion device can be arranged, at the moment, the opening smoothing extrusion device needs to be switched between a water squeezing area and a cleaning area, and is located in the water squeezing area during water squeezing and is located in the cleaning area during cleaning. The conversion mode can adopt various modes, as shown in fig. 12 and 13, a transfer slide rail is arranged on the upper edge of the mop bucket 1, and the squeezing frame 9 is arranged on the transfer slide rail in a sliding manner, so that the opening smoothing squeezing device 7 can slide to the water squeezing area 5 and the cleaning area 6, and the conversion of the opening smoothing squeezing 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 turnover handle 49, the opening squeezing device 7 is rotatably mounted on the turnover handle 49, and the turnover handle 49 can be turned over to the water squeezing area or the cleaning area, so that the opening squeezing device 7 is erected in the water squeezing area or the cleaning area.
When the flat mop is cleaned and squeezed, the flat mop head is rotated to a state capable of being cleaned and squeezed, 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 opening squeezing device for squeezing and squeezing water or moved for squeezing and cleaning. When mopping, the flat mop head is separated from the control of the positioning device so as to rotate to the mopping state for mopping.
The structure form of the positioning device is not limited as long as the flat mop head can keep the cleaning and wringing state and can rotate to the mopping state by being separated from the control of the positioning device when mopping. 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 disposed on the mop rod 3 and a magnet 56 disposed on the flat mop head 4, when the flat mop head 4 is rotated to a state of being capable of cleaning and squeezing water, the iron block 55 and the magnet 56 are attracted, so that the flat mop head 4 is kept in a cleaning or squeezing state under the action of the magnetic attraction force; when mopping, the iron block 55 is separated from the magnet 56, so that the flat mop head 4 is separated from the magnetic attraction force and can be rotated to a mopping state.
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 of being capable of cleaning and squeezing water, the iron block and the magnet are attracted to each other, so that the flat mop head is kept in a cleaning or squeezing state under the action of magnetic attraction force; when mopping the floor, the iron block is separated from the magnet, so that the flat mop head is separated from the action of magnetic attraction force and can rotate to the mopping state.
Alternatively, as shown in fig. 24 and 25, the positioning device comprises an elastic buckle 57 disposed on the flat mop head 4, and when the flat mop head 4 is rotated to a state of being capable of being cleaned and squeezed, 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 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 includes an elastic buckle 57 disposed on the mop rod 3, a buckle hole 58 adapted to the elastic buckle is disposed on the flat mop head 4, and when the flat mop head 5 is rotated to a state of being able to be cleaned and squeezed, the elastic buckle 57 is buckled into the buckle hole 58, so that the flat mop head 4 is kept in a cleaning or squeezing state; when mopping, the flat mop head or the mop rod is pulled to make the elastic buckle 57 separate from the buckle hole 58, so that the flat mop head 4 can freely rotate to the 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 during cleaning and wringing, so that the flat mop head is kept in a cleaning or wringing state; when the mop is used for mopping, the magic male buckle is separated from the magic female buckle, so that the flat mop head can freely rotate to a mopping state.
Or, as shown in fig. 20 and 21, the positioning device includes a magic female buckle 59 disposed on the flat mop head 4 and a magic male buckle 60 disposed on the mop rod 3, and the flat mop head 4 and the mop rod 3 are bonded and bound through the magic male buckle 60 and the magic female buckle 59 during cleaning and squeezing, so that the flat mop head 4 is kept in a cleaning or squeezing state; when mopping, the magic male buckle 60 is separated from the magic female buckle 59, so that the flat mop head 4 can rotate freely to the mopping state.
Alternatively, as shown in fig. 26 to 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 pressed 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 squeezing water 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 connection between the flat mop head 4 and the mop rod 3 can adopt the structure that: the flat mop head is longitudinally hinged with a hinge base 63 (the longitudinal hinge means that a 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 base 63 (the transverse hinge means that the hinge shaft is parallel to the width direction of the flat mop head), the spring 61 and the top block 62 are positioned at the lower end in the mop rod 3, and therefore the top block 62 is propped against the hinge base 63. When the flat mop head 4 is rotated to a cleaning and water squeezing state, the flat mop head 4 is rotated to be substantially parallel to the mop rod 3, and the top block 62 is pushed against the hinge base 63 to form a downward pushing force, so that the flat mop head 4 is kept in the state. In order to achieve better positioning effect, when the flat mop head 4 is rotated to be basically parallel to the mop rod 3, the hinged seat which is propped against the top block 62 is arranged to be a plane so as to increase the positioning capability; or a groove 64 is arranged at the hinged support which is propped against the top block 62, a convex rib 65 or a clamping wheel 66 is arranged on the top block 62, 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 ejecting piece arranged at the movable connection part between the flat mop head and the mop rod, and the elastic ejecting piece is ejected on the mop rod during cleaning and wringing so as to position the flat mop head; 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 referred to herein is a broad flat mop head, and is not strictly a flat plate, and has a small thickness for easy insertion into a mouth squeezing device, and a width that does not require much consideration. The type of the wiping material is not limited, the wiping material can be a mop cloth, and can also be a common collodion mop head in the market.
Referring to fig. 34, a cushioning mechanism, which may also be an elastic pad 67, or an elastic block, is provided in the wringing zone and/or in the cleaning zone to cushion the flat mop head being pressed down.
Claims (6)
1. The utility model provides an extrusion flat mop burnisher, includes mop bucket and flat mop, flat mop includes mop pole and swing joint be in dull and stereotyped mop head on the mop pole, dull and stereotyped mop head on be equipped with wiping material, its characterized in that:
the mop bucket is provided with an independent cleaning area and an independent water squeezing area; a smoothing-out extruding device is arranged on the mop barrel above the water squeezing area, and the flat mop head is rotated to be parallel to the mop rod for water squeezing during water squeezing;
when in wringing, the flat mop head moves and extrudes between the wringing area and the stroking extrusion device so as to move, extrude and wring the wiping material; when in cleaning, the flat mop head is cleaned in the cleaning area.
2. The squeeze flat mop cleaning tool of claim 1, wherein: the opening smoothing extrusion device comprises an extrusion frame, an extrusion opening for the flat mop to pass through is formed in the extrusion frame, and an extruder for extruding the wiping object on the flat mop head is arranged in the extrusion opening.
3. The squeeze flat mop cleaning tool defined in claim 1, wherein: a mouth smoothing extrusion device for squeezing water is arranged on the mop bucket above the water squeezing area, and a mouth smoothing extrusion device for cleaning is arranged on the mop bucket above the cleaning area;
when the mop is cleaned, the flat mop head is rotated to a state parallel to the mop rod and can be cleaned, and the flat mop head moves and extrudes between the cleaning area and the opening smoothing extrusion device so as to move, extrude and clean the wiper.
4. The novel squeeze flat mop cleaning tool of claim 1, characterized in that: the opening smoothing extrusion device is provided with one opening smoothing extrusion device, and the opening smoothing extrusion device can be switched between the water squeezing area and the cleaning area.
5. The new squeeze flat mop cleaning tool as defined in claim 4, further comprising: the mop bucket is provided with a sliding guide rail, and the opening smoothing and extruding device can slide to the water squeezing area or the cleaning area along the sliding guide rail.
6. The new squeeze flat mop cleaning tool of claim 4, characterized in that: the mop bucket is also hinged with a turnover handle, the opening smoothing extrusion device is rotatably arranged on the turnover handle, and the turnover handle can be turned to the water squeezing area or the cleaning area.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201811016058.XA Active CN109330517B (en) | 2016-06-04 | 2017-04-06 | Vertically-arranged cleaning tool for squeezing flat mop |
CN201710221936.0A Pending CN107456185A (en) | 2016-06-04 | 2017-04-06 | A kind of single barrel of extruding flat mop burnisher |
CN202111489256.XA Pending CN114158994A (en) | 2016-06-04 | 2017-04-06 | Novel dull and stereotyped mop burnisher of extrusion |
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CN201810338362.XA Pending CN108670143A (en) | 2016-06-04 | 2017-04-06 | The water squeezing method of extruding flat mop and cleaning and dewatering |
CN201810630141.XA Pending CN108742388A (en) | 2016-06-04 | 2017-04-06 | A kind of application method of flat mop |
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CN201811099459.6A Withdrawn CN109394104A (en) | 2016-06-04 | 2017-04-06 | A kind of novel extrusion flat mop burnisher |
CN202210413471.XA Active CN115153376B (en) | 2016-06-04 | 2017-04-06 | Cleaning tool for squeezing flat mop |
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CN201810651201.6A Pending CN108784571A (en) | 2016-06-04 | 2017-04-06 | The application method of flat mop |
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CN201810664339.XA Withdrawn CN108784577A (en) | 2016-06-04 | 2016-08-12 | Flat mop water squeezing and cleaning method |
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CN201810630183.3A Withdrawn CN108814484A (en) | 2016-06-04 | 2016-08-12 | flat mop water squeezing method |
CN201810813856.9A Withdrawn CN108937770A (en) | 2016-06-04 | 2017-04-06 | It is detachable to squeeze flat mop burnisher |
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CN201811016058.XA Active CN109330517B (en) | 2016-06-04 | 2017-04-06 | Vertically-arranged cleaning tool for squeezing flat mop |
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CN201810338362.XA Pending CN108670143A (en) | 2016-06-04 | 2017-04-06 | The water squeezing method of extruding flat mop and cleaning and dewatering |
CN201810630141.XA Pending CN108742388A (en) | 2016-06-04 | 2017-04-06 | A kind of application method of flat mop |
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CN201710221885.1A Active CN107456179B (en) | 2016-06-04 | 2017-04-06 | The extruding flat mop burnisher that can be erect |
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CN201810630181.4A Pending CN108814472A (en) | 2016-06-04 | 2017-04-06 | A kind of application method of flat mop |
CN201810663200.3A Pending CN108742385A (en) | 2016-06-04 | 2017-04-06 | A kind of application method of flat mop |
CN201810337643.3A Pending CN108685540A (en) | 2016-06-04 | 2017-04-06 | Novel extrusion flat mop burnisher |
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CN201810814546.9A Withdrawn CN108742403A (en) | 2016-06-04 | 2017-04-06 | The extruding flat mop burnisher that can be erect |
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 |
CN201810630124.6A Withdrawn CN108814475A (en) | 2016-06-04 | 2017-04-06 | A kind of application method of flat mop |
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