WO2022174670A1 - 低水位清洗长拖把的方法 - Google Patents

低水位清洗长拖把的方法 Download PDF

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Publication number
WO2022174670A1
WO2022174670A1 PCT/CN2021/140317 CN2021140317W WO2022174670A1 WO 2022174670 A1 WO2022174670 A1 WO 2022174670A1 CN 2021140317 W CN2021140317 W CN 2021140317W WO 2022174670 A1 WO2022174670 A1 WO 2022174670A1
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WO
WIPO (PCT)
Prior art keywords
wiping body
water
cleaning
wiping
temporary storage
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PCT/CN2021/140317
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English (en)
French (fr)
Inventor
朱雪林
池丹俊
甘宏亮
Original Assignee
嘉兴捷顺旅游制品有限公司
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Application filed by 嘉兴捷顺旅游制品有限公司 filed Critical 嘉兴捷顺旅游制品有限公司
Publication of WO2022174670A1 publication Critical patent/WO2022174670A1/zh

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    • 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 present invention relates to a method for cleaning long mops with low water level.
  • the prior patent technical document CN206080445U discloses a mop bucket for squeezing water and cleaning a flat mop, including a bucket body, the bucket body has a water squeezing area and a cleaning area, and the water squeezing area and the cleaning area are respectively located in the mop bucket.
  • the barrel body is provided with a mouth pressing device that can squeeze and slide relative to the flat mop head of the flat mop to form a moving squeeze for the wipes on the flat mop head.
  • the mouth squeezing device includes a water squeezing rack installed in the water squeezing area, and a cleaning rack installed in the cleaning area.
  • the wiper on the water squeezer forms a squeezed squeezer;
  • the squeezing rack can be provided with a water channel extending to the cleaning area, and the water squeezed by the squeezer when squeezing water passes through the squeezer.
  • the water channel flows to the cleaning area.
  • the technical solution includes two mutually independent squeezing areas and cleaning areas. When cleaning the mop, the mop moves vertically and reciprocally in the cleaning area. The water level in the cleaning area must be sufficient to soak the entire wiper, otherwise the wiper at the upper end will not water. Therefore, the height of the bucket determines the length of the mop head. The longer the mop head, the higher the bucket is required for washing. If the barrel is raised a little higher, since the barrel has an annular wall, a lot of materials are needed, and the logistics cost in the later stage will also increase. The movement stroke during cleaning is also increased, and the user will be laborious.
  • the purpose of the present invention is to overcome the deficiencies of the prior art and provide a method for cleaning long mops with low water level.
  • the technical scheme adopted in the present invention is: a method for cleaning a long mop at a low water level, the mop includes a mop plate and a wiping body, the water moistening the wiping body is lower than the upper end of the wiping body, and a squeezer is arranged above the liquid level of the water moistening the wiping body
  • the wiping body moves vertically, the wiping body is in contact with the extruding part; the wet wiping body moves up with the water liquid, and the extruding part squeezes the wet wiping body after the upward movement to squeeze out the water from the wet wiping body
  • All or part of the extruded water is reserved for the wiping body above the water level, and the reserved water is located above the water that wets the wiping body.
  • the squeezing action of the extrusion part gives the wet wiping body all or part of the water liquid in the wet wiping body to squeeze out and retain it; when the wiping body moves in the reverse direction, all or part of the retained water liquid Wash the wiper body above the liquid level.
  • the squeezing action of the pressing member gives the wet wiping body all or part of the water liquid in the wet wiping body to squeeze out and retain and wash the wiping body above the liquid level.
  • the squeezing action of the extruding member gives the wet wiping body all or part of the water in the wet wiping body to squeeze out and retain it; when the wiping body moves downward, it is retained. All or part of the water washes the wiper body above the liquid level; or, when the wiper body moves downwards, the squeezing action of the extrusion piece gives the wet wiper body to squeeze all or part of the water in the wet wiper body.
  • the wiping body moves upward, all or part of the retained water washes the wiping body above the liquid level.
  • the temporary storage area is formed above the extrusion element or between the extrusion element and the wiper body.
  • the temporary storage area is arranged below the extrusion part.
  • the extruding member is a rotating roller arranged to rotate.
  • the rotating roller is driven to rotate, and the rotation of the rotating roller and the squeezing of the wiping body keep all or part of the water liquid extruded from the wiping body above the liquid level, so as to be used for the part above the liquid level. wiping body wash.
  • the rotating roller is driven to rotate, and the rotation of the rotating roller and the pressing of the wiping body keep all or part of the water liquid extruded from the wiping body above the liquid level, so as to be used for the part above the liquid level. wiping body wash.
  • the rotating roller is arranged above the temporary storage area.
  • the temporary storage area is formed between the rotating roller and the wiping body.
  • the rotating roller rotates in both forward and reverse directions.
  • the rotating roller is arranged to rotate in one direction; when the wiping body moves forward, it drives the rotating roller to rotate, and when it moves in the reverse direction, the rotating roller is stationary.
  • the rotatable direction of the rotating roller is the direction of bringing the water liquid to the wiping body.
  • the rotating roller is stationary when the wiping body moves upward, the rotating roller rotates when the wiping body moves downward, or the rotating roller is stationary when the wiping body moves downward, and the rotating roller rotates when the wiping body moves upward.
  • it also includes a rotating roller arranged to rotate.
  • the wiping body drives the rotating roller to rotate when the wiping body moves vertically, and the rotation of the rotating roller transports the water liquid retained in the temporary storage area to the wiping body for washing the wiping body above the liquid level.
  • the rotating roller is arranged above the temporary storage area.
  • the rotating roller is arranged to rotate in one direction; when the wiping body moves forward, it drives the rotating roller to rotate, and when it moves in the reverse direction, the rotating roller is stationary.
  • the rotatable direction of the rotating roller is the direction of bringing the water liquid to the wiping body.
  • the rotatable direction of the rotating roller is the direction of bringing the water liquid to the high position of the wiping body.
  • the rotating roller is stationary when the wiping body moves upward, the rotating roller rotates when the wiping body moves downward, or the rotating roller is stationary when the wiping body moves downward, and the rotating roller rotates when the wiping body moves upward.
  • the wiping body contacts the rotating roller.
  • the temporary storage area is formed above the extruding member.
  • the temporary storage area is arranged below the extrusion member.
  • the water liquid scraped by the extrusion member from the wiper body flows to the temporary storage area, and the water liquid released from the temporary storage area flows to the direction Wipe body.
  • the state in which the water liquid in the temporary storage area overflows and flows to the wiping body continues until the wiping body reaches the bottom.
  • the reverse movement of the wiping body acts on the temporary storage area, and all or part of the water in the temporary storage area flows to the wiping body.
  • the extrusion part is a scraper.
  • the scraping strip can be arranged close to or away from the wiping body, when the wiping body moves downward, the scraping strip tends to be close to the wiping body; when the wiping body moves upward, the scraping strip tends to be far away from the wiping body Wipe body.
  • the scraping strip can be arranged close to or away from the wiping body, when the wiping body moves upward, the scraping strip tends to be close to the wiping body; when the wiping body moves downward, the scraping strip tends to be far away from the wiping body Wipe body.
  • the two extruders are layered high and low, and the extruders of each layer extrude water from the wet wiper, and the extruded water is reserved for washing the wiper with water;
  • the wiping body moves upward, the lower extruder extrudes water from the lower wiping body, and the extruded water remains;
  • the wiping body moves down, the retained water can flow to the middle wiping body;
  • the high-level extruder squeezes out the water from the middle section or the middle and lower sections of the wiping body, and the squeezed effluent is retained; when the wiping body moves down, the retained water can flow to the upper section. wiping body.
  • the two extruders are layered high and low, and the extruders of each layer extrude water from the wet wiper, and the extruded water is reserved for washing the wiper with water;
  • the extruding piece can be arranged close to or away from the wiping body.
  • the wiping body moves upward, the extruding piece tends to be close to the wiping body; when the wiping body moves downward, the extruding piece tends to move closer to the wiping body. away from the wiper.
  • the pressing member may be disposed close to or away from the wiping body, and when the wiping body moves downward, the pressing member tends to be close to the wiping body.
  • the uppermost extruding piece moves up and down relative to the barrel body, and the extruding piece maintains its position after being raised.
  • the adjacent lowermost extrusion piece does not have a scraper which presses the wiper body.
  • a scraper that can move close to or away from the wiping body.
  • the scraper When the wiping body moves up, the scraper is far away from the wiping body; when the wiping body moves down, the scraper is close to the wiping body.
  • the extrusion piece is connected with the frame, the frame is connected with a support rod, and the lower end of the support rod abuts against the barrel to support the extrusion piece.
  • the support rod is rotatably connected to the frame, the upper end of the support rod is exposed, the support rod is connected to an elastic piece, and the elastic piece applies a force to the support rod to move the lower end of the support rod to the outside.
  • the pressing member is arranged in the cleaning area, and the wiping body is acted by the pressing member when moving vertically in the cleaning area.
  • the water liquid moistening the wiping body comes from the first water holding area.
  • the water removal area is separated from the second water holding area, the water removal area has an opening for the wiping body to be inserted, and the water removal area is provided with a pressure when the wiping body is inserted into the water removal area to remove water.
  • the water removing part of the wiping body, the water extruded from the wiping body flows to the second water holding area.
  • the extruding piece is arranged in the cleaning area, and the wiping body is acted by the extruding piece when moving vertically in the cleaning area; all or part of the water extruded from the wiping body finally flows to the second water holding area.
  • the water in the first water holding area first flows to the cleaning area or the wiping body located in the cleaning area; the wiping body is subjected to the action of the extrusion when the wiping body moves vertically in the cleaning area; all or part of the water extruded from the wiping body finally flows to the The second water area.
  • the first water holding area is located above the second water holding area, or the first water holding area is located above the second water holding area and the cleaning area, or the first water holding area is located above the second water holding area and the second water holding area Above the water holding area, the second water holding area and the cleaning area or/and the second water holding area are arranged left and right and separated from each other.
  • the first water holding area includes a large cavity and a small cavity, the large cavity and the small cavity are connected by pipes, the small cavity has a water outlet, and the opening/closing between the large cavity and the small cavity is the same as that of the small cavity.
  • the opening/closing of the water outlet of the small cavity is controlled by interlocking.
  • the mop also includes a trigger for the mop to trigger the interlock control switch, and the trigger is connected to the plug that controls the opening/closing between the large cavity and the small cavity and the opening/closing of the water outlet of the small cavity.
  • the pieces are located above the liquid level and below the lowest extrusion piece.
  • the user After the extruder is set, the user only needs to use it in accordance with the general rules, and when the height of the bucket body is less than the length of the wiping body, the wiping body at the upper end can still be cleaned, the height of the bucket can be reduced, and the mop board to be cleaned can be lengthened, which solves the problem.
  • both the bucket and the mop board have to be increased at the same time as a disadvantage.
  • the user can reduce the stroke of the movement according to the general rules, and can wash the wiper with water, which is convenient for the user to use.
  • the low-level water can be transferred to the high-level, so the washed sewage can not be used without affecting the subsequent washing of the mop.
  • the mop can be cleaned with clean water, the height of the barrel body can be reduced, and the wiper body can be longer washed with water, which solves the pain point in the prior art that water must be replenished to maintain the water level to wash the mop.
  • FIG. 1 is a schematic structural diagram of one embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of Embodiment 2 of the present invention.
  • FIG. 3 is a schematic structural diagram of Embodiment 3 of the present invention.
  • FIG. 4 is a schematic structural diagram of Embodiment 4 of the present invention.
  • FIG. 5 is a schematic structural diagram of the transfer of the water on the wiping body to the temporary storage area according to the fourth embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of the fourth embodiment of the present invention in the downward movement state of the wiping body.
  • FIG. 7 is a schematic structural diagram of another mode of Embodiment 4 of the present invention.
  • FIG. 8 is a schematic structural diagram of another embodiment of the fourth embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of Embodiment 5 of the present invention.
  • FIG. 10 is a schematic structural diagram of another mode of Embodiment 5 of the present invention.
  • FIG. 11 is a schematic structural diagram of Embodiment 6 of the present invention.
  • FIG. 12 is a schematic structural diagram of the present invention when there are two extruded parts.
  • FIG. 13 is a schematic structural diagram of the extruding member moving up and down relative to the barrel according to the present invention.
  • This embodiment is a method for cleaning a long mop at a low water level.
  • the mop includes a mop plate with a wiping body 1, and the water that wets the wiping body 1 is lower than the upper end of the wiping body 1.
  • the water that wets the wiping body 1 includes stored in
  • the water that wets the wiping body 1 also includes the water flowing out of the container, for example, the water flowing out of the first water holding area 22.
  • the water that wets the wiping body 1 is lower on the upper end of the wiping body 1 .
  • An extrusion member 4 is arranged above the liquid level of the water that wets the wiper body 1.
  • the wiper body 1 moves vertically, the wiper body 1 contacts the extrusion member 4, and the extrusion member 4 presses the wiper body 1 to squeeze water against the wiper body 1;
  • the wet wiping body 1 moves up with the water liquid, and the squeezing member 4 squeezes the wet wiping body 1 after the upward movement to squeeze out the water liquid from the wet wiping body 1, and retains all or part of the extruded water liquid.
  • the retained water is located above the water that wets the wiper body 1 .
  • the water liquid is brought to a high level higher than the water of the wet wiping body 1 , and kept at the high level.
  • the wiping body 1 is divided according to the water that wets the wiping body 1 as a boundary line, the lower part is the lower section, and the upper part is the middle section or/and the upper section. The water remaining at the high level can then be showered on the wiper body 1 in the middle or/and upper section.
  • the wiping body 1 when the wiping body 1 is moving forward, the pressing action of the pressing member 4 gives the wet wiping body 1 all or part of the water in the wet wiping body 1 to squeeze out and retain it; the wiping body 1 is reversed During activity, all or part of the retained water washes the wiping body 1 above the liquid level.
  • the forward direction in this embodiment is relative to the reverse direction, and there is actually no difference between the forward and the negative.
  • the pressing action of the pressing member 4 gives the wet wiping body 1 all or part of the water in the wet wiping body 1 to squeeze out and retain it; the wiping body 1 When moving down, all or part of the retained water washes the wiping body 1 above the liquid level; All or part of the water in the wiper body 1 is squeezed out and retained; when the wiper body 1 moves upward, all or part of the retained water washes the wiper body 1 above the liquid level.
  • all or part of the water liquid squeezed from the wet wiping body 1 is retained in the temporary storage area 3 , and all or part of the water liquid retained in the temporary storage area 3 flows to the wiping body 1 .
  • This embodiment further includes a barrel body 2 during specific implementation, and the barrel body 2 includes a cleaning area 21 into which the wiping body 1 can be inserted.
  • the water moistening the wiping body 1 supplies water to the cleaning zone 21 or the wiping body 1 in the cleaning zone 21 .
  • the pressing member 4 presses the wiping body 1 to squeeze out and retain the water in the wiping body 1 .
  • the squeezed water is retained in the temporary storage area 3 .
  • the temporary storage area 3 is mainly used for storing water liquid, and the water liquid can be used later. In this application, the formation of the temporary storage area 3 includes various schemes.
  • the temporary storage area 3 in this embodiment can be formed above the extrusion member 4 , and can also be formed between the extrusion member 4 and the wiper body 1 . , or an independent water storage area, such as a concave surface, which is connected with the barrel body 2 .
  • the rotating roller 41 and the barrel body 2 are rotated and arranged.
  • the rotating roller 41 squeezes out the water liquid from the wiping body 1, and the extruded water liquid is caused by the rotation of the rotating roller 41 and the upward movement of the wiping body 1. All or part of the water liquid squeezed out from the wiper body 1 remains between the rotating roller 41 and the wiper body 1 .
  • the outer surface of the rotating roller 41 has irregularities.
  • the outer surface of the rotating roller 41 has a groove body in the same direction as its axial line. The contact between the rotating roller 41 with the concave and convex outer surface and the wiping body 1 is not complete, and the water squeezing of the rotating roller 41 to the wiping body 1 is not complete, and the wiping body 1 can transfer more water upwards, so that the temporary storage area 3 Water increases.
  • the contact force between the wiper body 1 and the rotating roller 41 with the groove body is elastic and fluctuating.
  • the water liquid squeezed by the rotating roller 41 pressing the wiper body 1 falls on the groove body and can be efficiently brought to the upper temporary storage area due to the relaxation effect. 3. It is beneficial to transfer more water to the temporary storage area 3 and provide sufficient water for subsequent washing.
  • Another embodiment is the same as the previous technical solution: the rotating roller 41 and the barrel body 2 are rotated and arranged, and when the wiping body 1 moves down from above, the rotating roller 41 squeezes out the water liquid from the wiping body 1, and the squeezed water liquid is retained. Above, the temporary storage area 3 is located between the rotating roller 41 and the wiper body 1 .
  • the wiping body 1 moves upward, the retained water will flow to the wiping body 1 again, and the retained water will flow to the wiping body 1 again, which is a continuous process. Therefore, the water retained at a high position can be drenched in the middle section or/and Wiper body 1 in the upper stage.
  • the rotating roller 41 is arranged above the temporary storage area 3 .
  • the rotating roller 41 contacts and squeezes the wiping body 1 , and all or part of the water liquid extruded from the wiping body 1 remains in the temporary storage area 3 .
  • the temporary storage area 3 includes a concave surface, and the water liquid can be stored on the concave surface.
  • the wiping body 1 moves in the reverse direction, the wiping body 1 drives the rotating roller 41 to reverse, and the rotating roller 41 brings the water liquid in the temporary storage area 3 to the wiping body 1 . It is a continuous process that the retained water liquid is brought back to the wiping body 1. Therefore, the water liquid retained at a high level can be showered on the wiping body 1 in the middle section or/and the upper section later.
  • the wiping body 1 moves upward, the wet wiping body 1 contacts the rotating roller 41 , and the rotating roller 41 rotates and squeezes with the wiping body 1 to flow part or all of the water on the wiping body 1 to the temporary storage area 3 .
  • the outer surface of the rotating roller 41 has irregularities. The contact between the rotating roller 41 with the concave and convex outer surface and the wiping body 1 is not complete, and the water squeezing of the rotating roller 41 to the wiping body 1 is not complete, and the wiping body 1 can transfer more water upwards, so that the temporary storage area 3 Water increases. Still more preferably, the outer surface of the rotating roller 41 has a groove body in the same direction as its axial line.
  • the contact force between the wiper body 1 and the rotating roller 41 with the groove body is elastic and fluctuating.
  • the water liquid squeezed by the rotating roller 41 pressing the wiper body 1 falls on the groove body and can be efficiently brought to the upper temporary storage area due to the relaxation effect. 3. It is beneficial to transfer more water to the temporary storage area 3 and provide sufficient water for subsequent washing.
  • the use of the rotating roller 41 structure can also realize that when the wiping body 1 moves down, all or part of the water extruded by the wiping body 1 due to the pressing action of the pressing member 4 flows to the temporary storage area 3, and the wiping body 1 moves upward. All or part of the water in the temporary storage area 3 flows to the wiping body 1 during activity.
  • the rotating roller 41 can rotate in both forward and reverse directions.
  • the rotating roller 41 rotates in both forward and reverse directions.
  • the bidirectional rotation can realize bidirectional delivery of water to the wiping body 1 and reduce the resistance of the operator.
  • the rotating roller 41 is arranged to rotate in one direction, and the rotatable direction of the rotating roller 41 is the direction of bringing the water liquid to the wiping body 1 .
  • the unidirectional rotation means that the rotating roller 41 rotates when the wiping body 1 moves forward, and the rotating roller 41 stops when the wiping body 1 moves reversely.
  • the rotating roller 41 is stationary when the wiping body 1 moves upward, the rotating roller 41 rotates when the wiping body 1 moves downward, or the rotating roller 41 is stationary when the wiping body 1 moves downward, and the rotating roller 41 moves when the wiping body 1 moves upward. 41 turns.
  • the rotating roller 41 rotates when the wiping body 1 moves upward, the rotating roller 41 stops when the wiping body 1 moves downward, or the rotating roller 41 rotates when the wiping body 1 moves downward, and the rotating roller 41 rotates when the wiping body 1 moves upward. stop.
  • the rotatable direction of the rotating roller 41 is a direction to bring the water liquid to the higher part of the wiping body 1 .
  • the rotating roller 41 is on the left side
  • the wiping body 1 is on the right side
  • the water outlet belt of the rotating roller 41 is turned toward the high position of the wiping body 1, so that the end above the wiping body 1 can be cleaned. vice versa.
  • this embodiment also has a rotating roller 41 on the basis of retaining the original extrusion part 4 .
  • the extrusion member 4 is mainly responsible for extruding the water liquid from the wiper body 1 , and the extruded water liquid is retained in the temporary storage area 3 , and the rotation of the rotating roller 41 will bring the water liquid retained in the temporary storage area 3 to the wiper body 1 .
  • the specific implementation is as follows: the temporary storage area 3 is provided below the extrusion part 4 and the rotating roller 41 . When the wiping body 1 is moved vertically, it is in contact with the pressing member 4 , and the rotating roller 41 may or may not be in contact with the wiping body 1 .
  • the contact transmission between the rotating roller 41 and the mop is not limited to the wiping body 1, but may also be a mop board.
  • the rotating roller 41 is connected with a raised round wheel 411, and the round wheel 411 is in contact with the wiping body 1, and drives the rotating roller 41 to rotate when the wiping body 1 moves vertically.
  • the driving of the counter-rotating roller 41 can also be realized by transferring the contact portion through the existing transmission structure.
  • the outer surface of the rotating roller 41 has irregularities.
  • the outer surface of the rotating roller 41 has a groove body in the same direction as its axial line.
  • the tank body has a space for water storage, and the effect of carrying water is better when it is rotated.
  • the rotating roller 41 can also press the wiping body 1 , and also has the function of discharging water by pressing the wiping body 1 .
  • the rotating roller 41 rotates in one direction.
  • the rotating roller 41 stops rotating when the pressing member 4 squeezes the wiping body 1; when the wiping body 1 moves in the reverse direction, The wiping body 1 drives the rotating roller 41 to rotate, thereby bringing the water liquid to the wiping body 1 . It is a continuous process that the retained water liquid is brought back to the wiping body 1. Therefore, the water liquid retained at a high level can be showered on the wiping body 1 in the middle section or/and the upper section later.
  • the forward direction in this embodiment is relative to the reverse direction, and there is actually no difference between the forward and the negative.
  • the rotating roller 41 rotates when the wiping body 1 moves upward, the rotating roller 41 stops when the wiping body 1 moves downward, or the rotating roller 41 rotates when the wiping body 1 moves downward, and the rotating roller 41 rotates when the wiping body 1 moves upward. stop.
  • the wiping body 1 can squeeze water more efficiently when it moves forward, and water is supplied to the wiping body 1 when it moves backward, so that one roller can be used for multiple purposes.
  • the rotatable direction of the rotating roller 41 is a direction to bring the water liquid to the high position of the wiping body 1 .
  • the rotating roller 41 is on the left side
  • the wiping body 1 is on the right side
  • the water outlet belt of the rotating roller 41 turns forward to the high position of the wiping body 1, so that the end above the wiping body 1 can be cleaned. vice versa.
  • the wiping body 1 when the wiping body 1 moves forward, all or part of the water extruded by the wiping body 1 due to the pressing action of the extrusion member 4 flows to the temporary storage area 3, and when the wiping body 1 moves in the reverse direction, the water in the temporary storage area 3 All or part of the aqueous liquid flows to the wiper body 1 .
  • the wiping body 1 when the wiping body 1 moves upward, all or part of the water liquid squeezed out by the wiping member 4 flows to the temporary storage area 3, and when the wiping body 1 moves downward, the temporary storage area 3 All or part of the aqueous liquid flows to the wiper body 1 .
  • the surface 31 of the temporary storage area that is close to the wiping body is moved down by the wiping body 1, and the surface that blocks the water liquid is lowered, so that the water in the temporary storage area 3 can be discharged and flow to the wiping body. 1. All or part of the water in the temporary storage area 3 flows to the wiping body 1 .
  • the flow of the retained water to the wiping body 1 is a continuous process, and therefore, the water retained at a high level can then be showered on the wiping body 1 in the middle or/and upper stages.
  • the extrusion member 4 is arranged close to or away from the wiping body 1 .
  • the specific ways of being disposed close to or away from the wiper body 1 include but are not limited to the following ways: for example, the wiper bar 42 is oscillatingly arranged, and the end surface of the wiper bar 42 moves in an arc-shaped trajectory, and approaches or moves away from the wiper body 1 during rotation.
  • the wiper bar 42 is arranged in an oblique sliding manner, and the wiper bar 42 is obliquely slid close to or away from the wiping body 1 .
  • the scraping strip 42 is elastically movable, and the scraping strip 42 is elastically movable close to or away from the wiping body 1 .
  • an elastic member can also be configured on the scraper strip 42. During the rotation of the scraper strip 42, it needs to overcome the resistance of the elastic member or the elastic member provides assistance.
  • the resistance and assistance can be configured with a reasonable elastic member according to actual needs, and the elastic member is the prior art. , for example: springs, torsion springs, etc.
  • the extrusion part 4 is in contact with the wiping body 1 when it moves vertically.
  • the water outlet of the temporary storage area 3 has a valve.
  • the vertically movable wiping body 1 drives the extruding part 4 to swing, and the swing of the extruding part 4 is transmitted to the valve. , thereby controlling the opening and closing of the valve.
  • the forward direction is relative to the reverse direction, and there is actually no difference between the positive and the negative.
  • the shape of the extrusion member 4 is related to the temporary storage area 3 .
  • the temporary storage area 3 can realize that the accumulation of water requires the cooperation of the extrusion member 4 or the extrusion member 4 is connected to a part of the temporary storage area 3 .
  • the temporary storage area 3 has a water outlet, and when the extruder 4 squeezes water against the wiper body 1, that is, when it is moving forward, the state of the extrusion part 4 is to block the water outlet of the temporary storage area 3; the wiper body 1 During the reverse movement, the extrusion member 4 is changed to its original state by the reverse movement of the wiper body 1 , the gap of the temporary storage area 3 is opened, and the water outlet of the water outlet of the temporary storage area 3 flows to the wiper body 1 .
  • the extruding member 4 is arranged in a swinging manner, and the extruding member 4 is a scraper 42 .
  • the extrusion part 4 is arranged close to or away from the wiper body 1 .
  • the blocking surface connected with the extrusion part 4 closes the temporary storage area 3, and the temporary storage area 3 can store water;
  • the wiping body 1 moves downward, the downward movement of the wiping body 1 drives the extrusion part 4 to swing , the extrusion member 4 drives the blocking surface to move, the temporary storage area 3 is opened, and the water retained in the temporary storage area 3 flows to the wiping body 1, which is a continuous process. / and the wiper body 1 in the upper paragraph.
  • the above embodiment can also be implemented in reverse, that is: when the wiping body 1 moves down, all or part of the water liquid extruded from the wiping body 1 flows to the temporary storage area 3 by the extrusion member 4, and when the wiping body 1 moves down, it squeezes.
  • the wiping body 1 moves upward, the temporary storage area 3 is opened by the downward movement of the wiping body 1, all or part of the water in the temporary storage area 3 flows to the wiping body 1, and the extruding member 4 is far away from the wiping body 1. body 1.
  • the specific structure of the extrusion member 4 that can be disposed close to or away from the wiping body 1 can be referred to in the foregoing scheme.
  • the wiper bar 42 is arranged in a swinging manner, the wiper bar 42 is in contact with the wiping body 1 during vertical movement, and the wiper bar 42 is arranged in an upwardly inclined manner.
  • the blocking surface connected with the extrusion member 4 closes the temporary storage area 3, and the temporary storage area 3 can store water;
  • the wiping body 1 moves upward, the downward movement of the wiping body 1 drives the wiper bar 42 to swing,
  • the wiper strip 42 drives the blocking surface to move, the temporary storage area 3 is opened, and the water retained in the temporary storage area 3 flows to the wiper body 1, which is a continuous process. Wiper body 1 in the upper stage.
  • the temporary storage area 3 is formed above the extrusion member 4 or between the extrusion member 4 and the wiper body 1 .
  • the wiping body 1 is in contact with the extruding member 4 when it moves vertically; when the wiping body 1 is moving forward, all or part of the water extruded from the wiping body 1 by the squeezing member 4 flows to the temporary storage area 3 and All or part of the water liquid extruded from the wiping body 1 by the extrusion element 4 flows to the temporary storage area 3 and flows to the wiping body 1 when the wiping body 1 flows to the wiping body 1 , or when the wiping body 1 moves in the reverse direction.
  • the temporary storage area 3 is formed above the extrusion member 4.
  • the extrusion member 4 squeezes the wiper body 1, and all or part of the water extruded from the wiper body 1 flows to the temporary storage area. Zone 3, the water released from the temporary storage zone 3 flows to the wiping body 1 .
  • Preferred Embodiment 1 When the wiping body 1 moves upward or downward, the pressing member 4 squeezes the wiping body 1, the temporary storage area 3 is formed above the pressing member 4, and the water liquid squeezed from the wiping body 1 flows to the temporary storage area 3. In the storage area 3, when there is enough water in the temporary storage area 3, it overflows and flows to the wiping body 1.
  • the extrusion member 4 may be a rotating roller 41 or a scraper 42 . The rotating roller 41 is rotated and arranged.
  • the wiping body 1 moves up or down, the wiping body 1 is in contact with the rotating roller 41, and the water liquid of the wiping body 1 can be accumulated between the wiping body 1 and the rotating roller 41, and the accumulated water When there is enough liquid, the water overflows and flows to the wiping body 1 or at the same time, the contact between the rotating roller 41 and the wiping body 1 is not tight and the wiping body 1 is washed with water.
  • the preferred structure of the rotating roller 41 can refer to the aforementioned solutions.
  • the state in which the water in the temporary storage area 3 overflows and flows to the wiper body 1 continues until the wiper body 1 reaches the bottom.
  • the overflow of water from the temporary storage area 3 is continuous, and the duration is preferably when the wiping body 1 reaches the bottom and still delivers water to the wiping body 1, so as to ensure that the upper end of the wiping body 1 is washed with water.
  • the flow rate of the overflowing water should be designed considering the amount of water inflow and the vertical movement time, so as to design a reasonable water flow rate.
  • the extrusion member 4 is a wiper strip 42, and the wiper strip 42 is provided with a through hole 30 flowing to the wiper body 1, and the water squeezed from the wiper body 1 enters from the top of the temporary storage area 3, and after passing through the through hole The overflow flows to the wiper body 1 .
  • the state in which the water in the temporary storage area 3 overflows and flows to the wiper body 1 continues until the wiper body 1 reaches the bottom.
  • the temporary storage area 3 is formed above the extrusion member 4 or between the extrusion member 4 and the wiper body 1. When the wiper member 1 moves vertically, the water liquid scraped by the extrusion member 4 from the wiper body 1 flows to the temporary storage area.
  • the water released from the temporary storage area 3 flows to the wiping body 1 .
  • the wiping body 1 moves downward, the water liquid scraped by the pressing member 4 from the wiping body 1 flows to the temporary storage area 3 , and the water liquid in the temporary storage area 3 overflows and flows to the wiping body 1 .
  • the state in which the water liquid in the temporary storage area 3 overflows and flows to the wiping body 1 continues until the wiping body 1 reaches the bottom.
  • the temporary storage area 3 is arranged below the extruding member 4, the extruding member 4 squeezes the wiper body 1 when the wiper body 1 moves up or down, and the extruder member 4 moves from the wiper body 1 to the bottom. All or part of the extruded water flows to the temporary storage area 3 , and the released water from the temporary storage area 3 flows to the wiping body 1 .
  • the wiping body 1 moves upward, all or part of the water liquid extruded from the wiping body 1 by the extrusion member 4 flows to the temporary storage area 3, and the water liquid in the temporary storage area 3 overflows and flows to the wiping body 1, or the wiping body 1
  • the rotating roller 41 for the extrusion part 4 is: when the wiping body 1 moves vertically, the rotating roller 41 contacts with the wiping body 1 and drives the rotating roller 41 to rotate.
  • the extruded water flows to the temporary storage area 3 ; the overflow of the temporary storage area 3 flows to the wiping body 1 .
  • the side of the temporary storage area 3 close to the wiper body 1 is provided with a through hole, and the water liquid in the temporary storage area 3 flows out from the through hole.
  • the water in the temporary storage area 3 can also flow out from the upper opening.
  • the state in which the water in the temporary storage area 3 overflows and flows to the wiper body 1 continues until the wiper body 1 reaches the bottom.
  • the overflow of water from the temporary storage area 3 is continuous, and the duration is preferably when the wiping body 1 reaches the bottom and still delivers water to the wiping body 1, so as to ensure that the upper end of the wiping body 1 is washed with water.
  • the extruder 4 adopts the solution of the wiper strip 42 : the wiper strip 42 is in contact with the wiping body 1 , and all or part of the water liquid extruded from the wiping body 1 flows to the temporary storage area 3 .
  • the overflow of the temporary storage area 3 flows to the wiper body 1 .
  • the side of the temporary storage area 3 close to the wiper body 1 is provided with a through hole, and the water liquid in the temporary storage area 3 flows out from the through hole 30 .
  • the water in the temporary storage area 3 can also flow out from the upper opening.
  • the state in which the water in the temporary storage area 3 overflows and flows to the wiper body 1 continues until the wiper body 1 reaches the bottom.
  • the overflow of water from the temporary storage area 3 is continuous, and the duration is preferably when the wiping body 1 reaches the bottom and still delivers water to the wiping body 1, so as to ensure that the upper end of the wiping body 1 is washed with water.
  • the scraper strip 42 can be arranged close to or away from the wiping body 1 , and the structure that can be arranged close to or away from the wiping body 1 refers to the foregoing embodiments.
  • the wiper bar 42 tends to be close to the wiping body 1; when the wiping body 1 moves upward, the wiper bar 42 tends to be away from the wiping body 1; the water scraped by the wiper bar 42 from the wiping body 1
  • the liquid flows to the temporary storage area 3 , and all or part of the water liquid in the temporary storage area 3 flows to the wiping body 1 .
  • the scraping strip 42 tends to be close to the wiping body 1; when the wiping body 1 moves downward, the scraping strip 42 tends to move away from the wiping body 1; the scraping strip 42 scrapes off the wiping body 1
  • the water liquid flows to the temporary storage area 3, and all or part of the water liquid in the temporary storage area 3 flows to the wiping body 1 again.
  • the scraper 42 is connected to the barrel 2 in rotation, and the scraper 42 is inclined upward to the wiping body 1. When the wiping body 1 moves down, it contacts the scraper 42, and the scraper 42 is driven by friction.
  • the downward rotation tends to approach the wiping body 1 , so as to squeeze the water, and all or part of the water flows to the temporary storage area 3 .
  • the water in the temporary storage area 3 can be re-directed to the wiping body 1 or the water in the temporary storage area 3 can overflow and flow to the wiping body 1.
  • the former is provided with a diversion channel, and the latter can retain the squeezed water to overflow.
  • the upward movement of the wiping body 1 is mainly to transfer water upward. If a squeeze action is applied again, part of the water on the wiping body 1 will be squeezed out, and the amount of water when the wiping body 1 moves upward will be reduced and transferred to the temporary storage area. 3's water liquid will also be reduced. This structure can make the amount of water carried upwards sufficient.
  • the wiper body 1 moves up, the wiper body 1 and the wiper bar 42 rubbing drive the wiper bar 42 to rotate upward and tend to move away from the wiper body 1.
  • the wiper bar 42 is connected to the elastic member, and the elastic member applied to the wiper bar 42 tends to move away from the wiper bar 42.
  • the temporary storage area 3 is arranged below the extrusion member 4.
  • the wiping body 1 moves upward, the water liquid scraped by the extrusion member 4 from the wiping body 1 flows to the temporary storage area 3 , and the water liquid in the temporary storage area 3 overflows and flows to the wiping body 1 .
  • the state in which the water liquid in the temporary storage area 3 overflows and flows to the wiping body 1 continues until the wiping body 1 reaches the bottom.
  • the water is reserved for washing the wiper body 1; when the wet wiper body 1 moves up, the lower extruder 4 squeezes out the water liquid from the wiper body 1 in the lower section, and the extruded water liquid is retained; when the wiper body 1 moves down , the retained water can flow to the wiping body 1 in the middle section; after the wiping body 1 in the middle section is wet and moving upward, the high-level extrusion member 4 squeezes out the water liquid from the wiping body 1 in the middle section or the middle section and the lower section.
  • the pressed effluent liquid is reserved; when the wiper body 1 moves down, the retained water liquid can flow to the wiper body 1 in the upper section.
  • multi-stage water extraction can be realized, that is, the extrusion member 4 at the lowest position draws water from the wiper body 1 and retains it, and then releases the retained water liquid to wet the wiper body 1 at a higher position.
  • the wetted wiper body 1 is moved to the upper extrusion member 4, its water liquid is absorbed and retained by the upper extrusion member 4, and the upper extrusion member 4 wets the upper wiper body 1, thereby The low-level water liquid is transferred up level by level, and then the wiper body 1 is wetted from top to bottom. Although part of the water liquid is lost in this process, the low-level water liquid can wash the high-level wiper body 1.
  • the moving stroke of the wiping body 1 can be effectively shortened, so that the user's operation is more labor-saving. If only one extrusion member 4 is provided, the initially wetted wiper body 1 must be lifted to the highest position extrusion member 4, so that the extrusion member 4 can transfer the water liquid of the wiper body 1, and the travel distance is large. After a plurality of extruders 4 are set, the initially wetted wiper body 1 is lifted to the lowest water extruder 4 and retained, and the retained water is released to the wiper body 1 in the middle section or the middle section and the upper section, and the wiper body 1 goes up again.
  • the wiper body 1 in the middle or upper section can be moved to a higher position after being wetted and retained.
  • the water at a low level is raised to a high level, and the wiping body 1 in the middle section or the middle section and the upper section is washed with water.
  • the extrusion parts 4 of each layer are arranged on the same vertical line.
  • the mop board can also be a rigid construction.
  • the uppermost extrusion member 4 and the temporary storage area 3 move up and down relative to the barrel 2, and the extrusion member 4 maintains its position after being lifted.
  • the uppermost extrusion part 4 and the temporary storage area 3 are supported after being lifted up, and more wiping bodies 1 can be cleaned by the rising of the extrusion part 4 .
  • the top extrusion part 4 is lowered, so as to realize storage and save space.
  • the uppermost extrusion part 4 described in this embodiment includes the case where there is only one extrusion part 4 , that is, when there is only one extrusion part 4 , this is the uppermost extrusion part 4 .
  • the extrusion part 4 and the temporary storage area 3 are connected with the frame 5 , and the frame 5 is connected with a support rod 51 , and the lower end of the support rod 51 abuts on the barrel 2 to support the extrusion part 4 and the temporary storage area 3 connected with the frame 5 .
  • the support rod 51 is rotatably connected to the frame 5 , the upper end of the support rod 51 is exposed, and the support rod 51 is connected to an elastic piece, which exerts a force on the support rod 51 to move the lower end of the support rod 51 outward.
  • a scraper 44 is provided adjacent to the uppermost extrusion piece 4 , which presses the wiper body 1 when the wiper body 1 is moved vertically.
  • the extrusion member 4 is arranged in the cleaning area 21, and the wiper body 1 is expected to be free of dripping water when it leaves the cleaning area 21 after washing.
  • the adjacent pressing member 4 located at the bottom does not have a scraper 44 for pressing the wiper body 1.
  • the wiping body 1 needs to absorb more water to transfer upward.
  • a scraper 44 is added at the bottom. During the upward transfer of the water through the wiping body 1, part of it has been scraped off by the scraper 44, which is not conducive to upward transfer.
  • the wiper body 1 in the lower section needs to absorb more water to move upward. In the process of transferring the water upward, part of it has been scraped off by the scraper 44, which is not conducive to transferring upward.
  • the scraper 44 is not provided, the lower part of the wiping body 1 may not be able to effectively remove water, and the lower part of the wiping body 1 is wet, which is not conducive to mopping the floor.
  • the scraper 42 is connected to the barrel 2 in rotation, and the scraper 42 is inclined upward to the wiping body 1.
  • the wiping body 1 moves down, it contacts the scraper 42, and the scraper 42 is driven by friction.
  • the downward rotation tends to approach the wiper body 1, thereby forcing the squeeze.
  • the wiper body 1 and the wiper strip 42 rubbing drive the wiper strip 42 to rotate upward and tend to move away from the wiper body 1.
  • an elastic member such as a torsion spring and a spring, can be assumed to be applied to the wiper strip. 42 is far away from the force of the wiping body 1.
  • the swinging angle is limited by a limit block, and the stopped position can touch the wiping body 1 slightly.
  • the wiping body 1 moves down, it can be driven by friction to press and squeeze water.
  • the barrel body 2 includes a cleaning area 21 , and all or part of the wiping body 1 can extend into the cleaning area 21 ; the barrel body 2 is connected to a first water holding area 22 .
  • the first water holding area 22 provides a water source for the wiping body 1 washed with water in the cleaning area 21 .
  • the extrusion part 4 and the temporary storage area 3 are arranged in the cleaning area 21, and the wiping body 1 is acted by the extrusion part 4 when the cleaning area 21 moves vertically; all or part of the water extruded from the wiping body 1 eventually flows to the first Two Shengshui District.
  • the water outlet of the first water holding area 22 flows to the cleaning area 21 area
  • the wiping body 1 absorbs water liquid from the cleaning area 21, or the water outlet of the first water holding area 22 flows to the cleaning area 21.
  • Body 1 the water to wet the wiping body 1 comes from the first water holding area 22.
  • the area of the cleaning area 21 includes the cleaning area 21 and an area communicating with the cleaning area 21 .
  • the water from the first water holding area 22 flows to the cleaning area 21 and then accumulates in the cleaning area 21. Part of the wiping body 1 can be soaked in the water.
  • the soaked wiping body 1 When the wiping body 1 moves up, the soaked wiping body 1 The water liquid is transferred upwards; another embodiment is that the water outlet of the first water holding area 22 is showered on the wiping body 1 located in the cleaning area 21, so that the wiping body 1 is wetted and then transferred upwards. In yet another embodiment, the outlet water of the first water holding area 22 flows to the temporary storage area 3. It is transferred to the wiping body 1 through the temporary storage area 3 and then transferred upward.
  • the first water holding area 22 includes a large cavity 222 and a small cavity 221, the large cavity 222 is connected to the small cavity 221, and the small cavity 221 has an outlet.
  • the water outlet, the opening/closing between the large volume chamber 222 and the small volume chamber 221 and the opening/closing of the water outlet of the small volume chamber 221 are interlocked control.
  • the interlock control of the present embodiment includes a mechanically controlled interlock and an electrical controlled interlock. Those skilled in the art are well aware of the principle of interlock control.
  • the interlock control is effectively applied, that is, the opening/closing between the large cavity 222 and the small cavity 221 and the water outlet of the small cavity 221
  • the opening/closing is reversed. Specifically, when the large cavity 222 and the small cavity 221 communicate with each other, the water outlet of the small cavity 221 is closed; when the large cavity 222 and the small cavity 221 are closed, the water outlet of the small cavity 221 is opened. Therefore, the small volume cavity 221 can only discharge the amount of water in the small volume cavity 221 at most each time, and a quantitative water consumption can be realized. When the water in the small cavity 221 is used up, water removal can also be realized at the original position.
  • the wiping body 1 can be washed and water removed in the cleaning area 21, and the removed water is transferred to other areas.
  • a second water holding area 23 is also included, and the water squeezed from the wiping body 1 finally flows to the second water holding area 23 .
  • the cleaned water is collected by the second water holding area 23 to avoid mixing with the water in the first water holding area 22 .
  • the water removal area 24 also includes a water removal area 24 that is connected with the barrel 2, the water removal area 24 is separated from the second water holding area 23, and the water removal area 24 has a water removal area for the wiping body 1 to insert.
  • the water removal area 24 is provided with a water removal member 43 that presses the wiper body 1 when the wiper body 1 is inserted into the water removal area 24 to remove water.
  • the water removing area 24 is independent of the second water holding area 23 and the first water holding area 22 , and the water removing area 24 has a water removing member 43 for pressing and removing water from the wiping body 1 .
  • the water removal member 43 includes a device in the prior art. The water squeezed out from the wiping body 1 is collected into the second water holding area 23 .
  • the extrusion member 4 and the temporary storage area 3 are arranged in the cleaning area 21 , and the wiping body 1 is acted by the extrusion member 4 when the cleaning area 21 moves vertically.
  • the first water holding area 22 is located above the second water holding area 23, or the first water holding area 22 is located above the second water holding area 23 and the cleaning area 21, or the first water holding area 22 is located on the second water holding area 22.
  • the second water holding area 23 and the cleaning area 21 or/and the second water holding area are arranged left and right and separated from each other.
  • the trigger for the mop to trigger the interlocking control switch, and the trigger and control the opening/closing between the large cavity 222 and the small cavity 221 and the opening of the water outlet of the small cavity 221.
  • the closed plug body is connected, and the triggering piece is arranged above the liquid level and below the lowermost extrusion piece 4 .
  • the trigger is located above the liquid level.
  • One of the plugs 223 is connected to the trigger, and the mop board or the wiping body 1 touches the trigger to control the linkage of the two plugs 223 .
  • the mop head moves vertically, there is a situation where the mop head is separated from the trigger. At this time, the small cavity 221 will be filled with water.
  • the trigger is set above the liquid level, this situation can be avoided as much as possible.

Landscapes

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

Abstract

低水位清洗长拖把的方法,拖把包括拖把板,拖把板设有擦拭体(1),湿润擦拭体(1)的水低于擦拭体(1)的上端,湿润擦拭体(1)的水的液位上方设有挤压件(4),擦拭体(1)竖向活动时擦拭体(1)与挤压件(4)相接触;湿的擦拭体(1)携带水液上移,挤压件(4)对上移后的湿的擦拭体(1)挤压作用从湿的擦拭体(1)挤出水液,将挤出的全部或部分水液做保留用于水洗液位上方部分的擦拭体(1),保留的水液位于湿润擦拭体(1)的水的上方。

Description

低水位清洗长拖把的方法 技术领域
本发明涉及低水位清洗长拖把的方法。
背景技术
现有专利技术文献CN206080445U公开的一种用于平板拖把挤水和清洗的拖把桶,包括桶体,所述的桶体具有挤水区和清洗区,所述的挤水区与清洗区分别位于两个不同的位置;所述桶体上安装有可与平板拖把的平板拖把头之间相对挤压滑动从而对平板拖把头上的擦拭物形成移动挤压的口挤压装置。所述的捋口挤压装置包括安装在所述挤水区的挤水架、安装在所述清洗区的清洗架,所述的挤水架及清洗架内均设有对所述平板拖把头上的擦拭物形成挤压的挤压器;在所述的挤水架中可设有延伸至所述清洗区的水路通道,挤水时通过所述挤压器挤下来的水通过所述的水路通道流至所述的清洗区。在该技术方案中包括两个相互独立挤水区和清洗区,清洗拖把时,拖把在清洗区往复竖向活动,清洗区的水位必须足够多才能浸泡到整个擦拭物,否则上端的擦拭物没有水。因此桶的高度就决定了拖把头的长度,越长的拖把头就需要越高的桶,才能水洗。桶加高一点,由于桶具有环形壁所消耗的材料就需要很多,后期物流成本也增加。清洗时的活动行程也加大,使用者就会很费力。
发明内容
本发明的目的是克服现有技术的不足,提供低水位清洗长拖把的方法。
本发明采用的技术方案是:低水位清洗长拖把的方法,拖把包括拖把板设有擦拭体,湿润擦拭体的水低于擦拭体的上端,湿润擦拭体的水的液位上方设有挤压件,擦拭体竖向活动时擦拭体与挤压件相接触;湿的擦拭体携带水液上移,挤压件对上移后的湿的擦拭体挤压作用从湿的擦拭体挤出水液,将挤出的全部或部分水液做保留用于水洗液位上方部分的擦拭体,保留的水液位于湿润擦拭体的水的上方。
擦拭体正向活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;擦拭体反向活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体。
其中,擦拭体正向或反向活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭 体中的全部或部分水液挤出并保留并水洗液位上方部分的擦拭体。
其中,所述擦拭体上移活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;所述擦拭体下移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体;或,所述擦拭体下移活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;所述擦拭体上移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体。
其中,将从湿的擦拭体中挤水的全部或部分水液保留在暂存区,保留在暂存区的全部或部分水液流向擦拭体。
所述暂存区形成在挤压件上方或挤压件与擦拭体之间。
所述暂存区设于挤压件下方。
其中,所述挤压件为转动设置的转辊。
其中,擦拭体竖向活动时带动转辊转动,转辊的转动和对擦拭体的挤压将从擦拭体挤出的全部或部分水液保留在液位上方,以用于对液位上方部分的擦拭体的水洗。
其中,擦拭体正向活动时带动转辊转动,转辊的转动和对擦拭体的挤压将从擦拭体挤出的全部或部分水液保留在液位上方,以用于对液位上方部分的擦拭体的水洗。
其中,所述转辊设于暂存区上方。
其中,所述暂存区形成于转辊与擦拭体之间。
其中,所述转辊正反双向转动。
其中,转辊单向转动设置;擦拭体正向活动时带动转辊转动,反向活动时转辊静止。
其中,所述转辊的可转动向为将水液带向擦拭体的方向。
其中,擦拭体上移活动时转辊静止,擦拭体下移活动时转辊转动,或擦拭体下移活动时转辊静止,擦拭体上移活动时转辊转动。
其中,还包括一转动设置的转辊。
其中,擦拭体竖向活动时带动转辊转动,转辊的转动将保留在暂存区的水液输送向擦拭体以用于对液位上方部分的擦拭体的水洗。
其中,所述转辊设于暂存区上方。
其中,转辊单向转动设置;擦拭体正向活动时带动转辊转动,反向活动时转辊静止。
其中,所述转辊的可转动向为将水液带向擦拭体的方向。
其中,所述转辊的可转动向为将水液带向擦拭体高处的方向。
其中,擦拭体上移活动时转辊静止,擦拭体下移活动时转辊转动,或擦拭体下移活动时转辊静止,擦拭体上移活动时转辊转动。
其中,所述擦拭体接触转辊。
其中,所述暂存区形成于挤压件上方,擦拭体竖向活动时,挤压件从擦拭体刮出的水液流向暂存区,从暂存区的释出的水液流向擦拭体。
其中,所述暂存区设于挤压件设于下方,擦拭体竖向活动时,挤压件从擦拭体刮出的水液流向暂存区,从暂存区的释出的水液流向擦拭体。
其中,擦拭体下移活动时,挤压件从擦拭体刮出的水液流向暂存区,暂存区的水液溢出流向擦拭体。
其中,擦拭体上移活动时,挤压件从擦拭体刮出的水液流向暂存区,暂存区的水液溢出流向擦拭体。
其中,暂存区的水液溢出流向擦拭体的状态持续至擦拭体到达最下方。
其中,擦拭体正向活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体反向活动时,暂存区的水液流向擦拭体。
其中,擦拭体反向活动时,擦拭体的反向活动作用给暂存区,暂存区的全部或部分水液流向擦拭体。
其中,擦拭体下移活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体上移活动时,暂存区被擦拭体的上移作用打开,暂存区的全部或部分水液流向擦拭体。
其中,擦拭体上移活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体下移活动时,暂存区被擦拭体的下移作用打开,暂存区的全部或部分水液流向擦拭体。
其中,所述挤压件为刮条。
其中,所述刮条呈可靠近或远离擦拭体设置,擦拭体下移活动时,所述刮条趋于靠近所述擦拭体;擦拭体上移活动时,所述刮条趋于远离所述擦拭体。
其中,所述刮条呈可靠近或远离擦拭体设置,擦拭体上移活动时,所述刮条趋于靠近所述擦拭体;擦拭体下移活动时,所述刮条趋于远离所述擦拭体。
其中,所述挤压件至少是两个,两挤压件高低分层,各层的挤压件从湿的擦拭体挤出的水液,挤出的水液保留用于水洗擦拭体;湿的擦拭体上移时,低层的挤压件从下段的擦拭体挤压出水液,挤出的水液保留;擦拭体下移时,保留的水液可流向中段的擦拭体;当中段的擦拭体被湿润后并在上移时,高层的挤压件从中段或中段和下段的擦拭体挤压出水液,挤压的出水液做保留;擦拭体下移时,保留的水液可流向上段的擦拭体。
其中,所述挤压件至少是两个,两挤压件高低分层,各层的挤压件从湿的擦拭体挤出的水液,挤出的水液保留用于水洗擦拭体;湿的擦拭体上移后,湿的擦拭体下移过程中,先由高层的挤压件从下段的擦拭体挤压出水液,挤压的出水液做保留,保留的水液而后释放,释放的水液可流向上段的擦拭体。
其中,所述挤压件呈可靠近或远离擦拭体设置,擦拭体上移活动时,所述挤压件趋于靠近所述擦拭体;擦拭体下移活动时,所述挤压件趋于远离所述擦拭体。
其中,所述挤压件呈可靠近或远离擦拭体设置,所述擦拭体下移活动时,所述挤压件趋于靠近所述擦拭体。
其中,各层的挤压件设于同一竖直线。
其中,最上方的挤压件相对桶体升降活动,该挤压件升起后保持定位。
其中,毗邻最上方的挤压件设有当擦拭体竖向活动时压迫所述擦拭体的刮刀。
其中,毗邻位于最下方的挤压件不具有压迫所述擦拭体的刮刀。
其中,毗邻位于最下方的挤压件具有一可靠近或远离擦拭体活动的刮刀,擦拭体上移时,刮刀远离擦拭体;擦拭体下移时,刮刀靠近擦拭体。
其中,所述挤压件与框架相连,框架相连支撑杆,支撑杆下端抵在桶体从而支撑挤压件。
其中,所述支撑杆与框架转动相连,支撑杆的上端裸露,支撑杆相连弹性件,弹性件施给支撑杆使支撑杆下端向外侧活动的作用力。
其中,所述挤压件设于清洁区,擦拭体在清洁区竖向活动时受挤压件作用。
其中,从擦拭体挤出的全部或部分水液最终流向第二盛水区。
其中,湿润擦拭体的水液来自第一盛水区。
其中,还包括除水区,所述除水区与第二盛水区相分隔,除水区具有可供擦拭体插入的开口,除水区设有当擦拭体插入除水区除水时压迫擦拭体的除水件,从擦拭体挤出的水流向第二盛水区。
其中,所述挤压件设于清洁区,擦拭体在清洁区竖向活动时受挤压件作用;从擦拭体挤出的全部或部分水液最终流向第二盛水区。
其中,第一盛水区的水液先流向清洁区或位于清洁区的擦拭体;擦拭体在清洁区竖向活动时受挤压件作用;从擦拭体挤出的全部或部分水液最终流向第二盛水区。
其中,所述第一盛水区位于第二盛水区的上方,或第一盛水区位于第二盛水区和清洁区上方,或第一盛水区位于第二盛水区和第二盛水区上方,第二盛水区和清洁区或/和第二盛水区呈左右设置且互相之间相分隔。
其中,所述第一盛水区包括大容腔、小容腔,大容腔与小容腔相管接,小容腔具有出水口,大容腔与小容腔之间的开/闭与小容腔出水口的开/闭为互锁控制,所述擦拭体位于清洁区时,大容腔与小容腔之间的水路关闭,小容腔的出水口打开;所述擦拭体远离清洁区时,大容腔与小容腔之间的水路打开,小容腔的出水口关闭。
其中,还包括有拖把触发互锁控制切换的触动件,触动件与控制大容腔与小容腔之间的开/闭与小容腔出水口的开/闭的塞体相连,所述触动件设于液位上方和最下方的挤压件下方。
与现有技术相比,本发明的有益效果在于:
本发明通过设置挤压件后,使用者只要按一般规程使用,桶体的高度小于擦拭体的长度时照样能清洗到上端的擦拭体,桶高度可以降低,清洗的拖把板可以加长,解决了现有技术中,桶和拖把板必须同时增大所带来的不利因素。
当挤压件为两个或更多个时,使用者只要按一般规程使用活动的行程即可减小,又能水洗到更长的擦拭物,使用者使用便利。
本发明在实施时可将低位的水转移到高位,因此水洗后的污水就可以不在使用也不影响后续对拖把的水洗,通过将水洗后的拖把转移,相对现有技术可实现每次都使用洁净水清洗拖把,且桶体的高度可以降低,水洗的擦拭体可以更长,解决了现有技术中必须要水液回补保持水位从而水洗拖把的痛点。
附图说明
图1是本发明实施方式之一的结构示意图。
图2是本发明实施方式之二的结构示意图。
图3是本发明实施方式之三的结构示意图。
图4是本发明实施方式之四的结构示意图。
图5是本发明实施方式之四擦拭体上水液向暂存区转移的结构示意图。
图6是本发明实施方式之四擦拭体下移状态的结构示意图。
图7是本发明实施方式之四另一方式的结构示意图。
图8是本发明实施方式之四再另一方式的结构示意图。
图9是本发明实施方式之五的结构示意图。
图10是本发明实施方式之五另一方式的结构示意图。
图11是本发明实施方式之六的结构示意图。
图12是本发明实施所述挤压件为两个时的结构示意图。
图13是本发明所述挤压件相对桶体升降活动的结构示意图。
具体实施方式
下面结合附图并通过实施例对本实施例作进一步说明。
如图1-11所示。本实施例是低水位清洗长拖把的方法,拖把包括拖把板设有擦拭体1,湿润擦拭体1的水低于擦拭体1的上端,本实施例中湿润擦拭体1的水包括存蓄在容器中的水,将存蓄在容器中水的液面高度与擦拭体1的上端比较,湿润擦拭体1的水低于擦拭体1的上端。本实施例中湿润擦拭体1的水还包括从容器中流出的水,例如第一盛水区22流出的水,将流出水的位置与擦拭体1的上端比较,湿润擦拭体1的水低于擦拭体1的上端。湿润擦拭体1的水的液位上方设有挤压件4,擦拭体1竖向活动时擦拭体1与挤压件4相接触,挤压件4压迫擦拭体1对擦拭体1挤水;湿的擦拭体1携带水液上移,挤压件4对上移后的湿的擦拭体1挤压作用从湿的擦拭体1挤出水液,将挤出的全部或部分水液做保留用于水洗液位上方部分的擦拭体1,保留的水液位于湿润擦拭体1的水的上方。本实施例通过擦拭体1的上移活动,将水液带上高于湿润擦拭体1的水的高位,并保留在高位。将擦拭体1按湿润擦拭体1的水为界线划分,位于下方的为下段,位于上方的为中段或/和上段。保留在高位的水液后续可淋到中段或/ 和上段的擦拭体1。
作为优选实施方式一:擦拭体1正向活动时,挤压件4挤压作用给湿的擦拭体1将湿的擦拭体1中的全部或部分水液挤出并保留;擦拭体1反向活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体1。本实施例中的正向是相对反向而言,实际无正反之分。具体的说,所述擦拭体1上移活动时,挤压件4挤压作用给湿的擦拭体1将湿的擦拭体1中的全部或部分水液挤出并保留;所述擦拭体1下移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体1;或,所述擦拭体1下移活动时,挤压件4挤压作用给湿的擦拭体1将湿的擦拭体1中的全部或部分水液挤出并保留;所述擦拭体1上移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体1。作为优选,将从湿的擦拭体1中挤水的全部或部分水液保留在暂存区3,保留在暂存区3的全部或部分水液流向擦拭体1。本实施例在具体实施时还包括一桶体2,桶体2包括一可使擦拭体1插入的清洁区21。作为优选,湿润擦拭体1的水向清洁区21或清洁区21内的擦拭体1供水。擦拭体1出入清洁区21时,所述挤压件4压迫所述擦拭体1从而将擦拭体1内的水液挤出并做保留,作为优选,挤出的水液保留至暂存区3。暂存区3主要是可存蓄水液,后续对水液再加以利用。本申请中,暂存区3的形成方式包括多种方案,例如:本实施例中的暂存区3可形成于挤压件4上方,还可形成于挤压件4与擦拭体1之间,也可是一个独立的蓄水区域,例如:一个凹面,该凹面与桶体2相连。以挤压件4为转辊41为例。转辊41与桶体2转动设置,擦拭体1上移活动时,转辊41从擦拭体1挤出水液,被挤出的水液因转辊41的转动和擦拭体1的上移,从擦拭体1挤出的全部或部分水液保留在转辊41和擦拭体1之间。当擦拭体1下移活动时,保留的水液再流向擦拭体1,保留的水液再流向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。本实施例中,优选的转辊41的外表面具有凹凸。转辊41的外表面具有与其轴向线同向的槽体。外表面凹凸的转辊41与擦拭体1的接触并不完全,转辊41的对擦拭体1的挤水并不完全,擦拭体1可向上方转移更多的水液,使暂存区3水液增多。擦拭体1与具有槽体的转辊41的接触力度呈松紧起伏,转辊41压紧擦拭体1挤出的水液落在槽体后因松弛效果又能高效的带向上方的暂存区3,利于向暂存区3转移更多的水液,为后续的水洗提供充足水液。 同前述技术方案的另一实施方式是:转辊41与桶体2转动设置,擦拭体1从上方下移活动时,转辊41从擦拭体1挤出水液,被挤出的水液保留在上方,暂存区3处于转辊41和擦拭体1之间。当擦拭体1上移活动时,保留的水液再流向擦拭体1,保留的水液再流向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。
作为优选实施方式二:将从湿的擦拭体1中挤水的全部或部分水液保留在暂存区3,暂存区3的全部或部分水液再流向擦拭体1。另一实施方式是:所述转辊41设于暂存区3上方。擦拭体1正向活动时,转辊41与擦拭体1接触并挤压,从擦拭体1挤出的全部或部分水液保留在暂存区3。作为优选,暂存区3包括一个凹面,水液可蓄在该凹面。擦拭体1反向活动时,擦拭体1带动转辊41反转,转辊41将暂存区3的水液带向擦拭体1。保留的水液再带向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。当擦拭体1上移活动时,湿的擦拭体1与转辊41相接触,转辊41转动及和擦拭体1的挤压将擦拭体1上的部分或全部水液流向暂存区3。当擦拭体1下移活动时,暂存区3的水因转辊41反转又部分反流,从而可清洗更高位的擦拭体1。再进一步优选,转辊41的外表面具有凹凸。外表面凹凸的转辊41与擦拭体1的接触并不完全,转辊41的对擦拭体1的挤水并不完全,擦拭体1可向上方转移更多的水液,使暂存区3水液增多。再进一步优选,转辊41的外表面具有与其轴向线同向的槽体。擦拭体1与具有槽体的转辊41的接触力度呈松紧起伏,转辊41压紧擦拭体1挤出的水液落在槽体后因松弛效果又能高效的带向上方的暂存区3,利于向暂存区3转移更多的水液,为后续的水洗提供充足水液。在上述方案中,采用转辊41结构同样可实现擦拭体1下移活动时擦拭体1因挤压件4挤压作用挤出的全部或部分水液流向暂存区3,擦拭体1上移活动时暂存区3的全部或部分水液流向擦拭体1。作为优选,本实施例中所述转辊41顺向逆向均能转动。所述转辊41正反双向转动。双向转动可实现向擦拭体1双向输送水液,减小操作者的阻力。本实施方案中,作为优选所述转辊41单向转动设置,所述转辊41的可转动向为将水液带向擦拭体1的方向。具体的说,单向转动是擦拭体1正向活动时转辊41转动,擦拭体1反向活动时转辊41停转。优选方式是,擦拭体1上移活动时转辊41静止,擦拭体1下移活动时转辊41转动,或擦拭体1 下移活动时转辊41静止,擦拭体1上移活动时转辊41转动。例如,擦拭体1上移活动时转辊41转动,擦拭体1下移活动时转辊41停转,或擦拭体1下移活动时转辊41转动,擦拭体1上移活动时转辊41停转。采用该结构可实现擦拭体1正向活动时更高效的挤水,反向活动时向擦拭体1输水,从而实现一辊多用。再进一步优选是,所述转辊41的可转动向为将水液带向擦拭体1高处的方向。例如,转辊41处于左侧,擦拭体1处于右侧,转辊41顺向转向的出水带向擦拭体1高处,从而可清洗到擦拭体1上方的端部。反之亦然。
作为优选实施方式三:本实施方式与实施方式二相比保留原挤压件4的基础上还具有转辊41。挤压件4主要负责从擦拭体1挤出水液,挤出的水液保留在暂存区3,转辊41的转动将保留在暂存区3水液带向擦拭体1。具体实施方式如下:暂存区3设于挤压件4和转辊41下方。擦拭体1竖向活动时与挤压件4相接触,转辊41与擦拭体1可接触也可不接触。擦拭体1正向活动时,挤压件4对擦拭体1挤压作用的出水流向暂存区3。擦拭体1反向活动时,擦拭体1的反向活动带动转辊41转动,转辊41转动将暂存区3的水液带向擦拭体1。本实施例中,转辊41与拖把的接触传动并不局限于擦拭体1,也可以是拖把板。作为优选,转辊41相连有凸起的圆轮411,圆轮411与擦拭体1相接触,当擦拭体1竖向活动时带动转辊41转动。也可以通过现有的传动结构转移接触部位实现对转辊41的带动。作为优选,转辊41的外表面具有凹凸。在进一步优选,转辊41的外表面具有与其轴向线同向的槽体。槽体具有储水的空间,旋转时,带水效果更优。再作为优选,所述转辊41也可压迫所述擦拭体1,也具有对擦拭体1挤压作用的出水的作用。本实施例中,作为优选,转辊41单向转动,擦拭体1正向活动时,挤压件4对擦拭体1挤压作用此时转辊41停转;擦拭体1反向活动时,擦拭体1带动转辊41转动,从而将水液带向擦拭体1。保留的水液再带向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。本实施例中的正向是相对反向而言,实际无正反之分。例如,擦拭体1上移活动时转辊41转动,擦拭体1下移活动时转辊41停转,或擦拭体1下移活动时转辊41转动,擦拭体1上移活动时转辊41停转。采用该结构可实现擦拭体1正向活动时更高效的挤水,反向活动时向擦拭体1输水,从而实现一辊多用。再进一步优选是,所述转辊41的可转动向为将水液带向擦拭体1高处 的方向。例如,转辊41处于左侧,擦拭体1处于右侧,转辊41顺向转向的出水带向擦拭体1高处,从而可清洗到擦拭体1上方的端部。反之亦然。
作为优选实施方式四:擦拭体1正向活动时擦拭体1因挤压件4挤压作用挤出的全部或部分水液流向暂存区3,擦拭体1反向活动时暂存区3的全部或部分水液流向擦拭体1。举例其中一具体实施方式:擦拭体1上移活动时擦拭体1因挤压件4挤压作用挤出的全部或部分水液流向暂存区3,擦拭体1下移活动时暂存区3的全部或部分水液流向擦拭体1。作为优选,擦拭体1向下活动时,暂存区上贴近擦拭体的面31受擦拭体1带动而下移,阻挡水液的面降低,暂存区3的水从而可排出并流向擦拭体1。暂存区3的水液全部或部分流向擦拭体1。保留的水液流向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。
再另一实施方式是:挤压件4呈靠近或远离擦拭体1设置。呈可靠近或远离擦拭体1设置的具体方式包括但不限于如下方式:例如:刮条42呈摆动设置,刮条42的端面呈弧形轨迹运动,转动过程中靠近或远离擦拭体1。刮条42呈斜向滑动设置,刮条42斜向滑动靠近或远离擦拭体1。刮条42弹性活动设置,刮条42弹性活动靠近或远离擦拭体1。作为优选,还可以对刮条42配置弹性件,刮条42转动过程中需要克服弹性件阻力或弹性件给予助力,阻力和助力根据实际需要配置合理的弹性件即可,弹性件为现有技术,例如:弹簧、扭簧等。挤压件4与竖向活动时的擦拭体1相接触,暂存区3的出水口具有一阀,竖向活动的擦拭体1带动挤压件4摆动,挤压件4的摆动传递给阀,从而控制阀的开关。本实施例中,正向是相对反向而言,实际无正反之分。再再另一实施方式是:挤压件4与暂存区3的形态相关。本实施例中,暂存区3能实现积存水液需要挤压件4的配合或挤压件4相连了暂存区3的一部分。例如:暂存区3具有一出水口,挤压件4对擦拭体1挤水时,即:正向活动时,挤压件4的状态为封堵暂存区3的出水口;擦拭体1反向活动时,挤压件4受擦拭体1反向活动作用而改变原状态,暂存区3被打开缺口,暂存区3的出水口的出水流向擦拭体1。具体的说,挤压件4呈摆动设置,挤压件4为刮条42。挤压件4呈靠近或远离擦拭体1设置。擦拭体1上移活动时,与挤压件4相连的挡面封闭暂存区3,暂存区3可蓄水;擦拭体1下移活动时,擦拭体1下移带动挤压件4摆动,挤压件4带动挡面 活动,暂存区3被打开,保留在暂存区3的水液流向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。擦拭体1上移活动时,挤压件4从擦拭体1刮出的全部或部分水液流向暂存区3;擦拭体1下移活动时,暂存区3被擦拭体1的下移作用打开,暂存区3的全部或部分水液流向擦拭体1。
上述实施方案也可以反向来实现,即:擦拭体1下移活动时,挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3,擦拭体1下移活动时挤压件4靠近擦拭体1;擦拭体1上移活动时,暂存区3被擦拭体1的下移作用打开,暂存区3的全部或部分水液流向擦拭体1,挤压件4远离擦拭体1。本实施例中,挤压件4呈可靠近或远离擦拭体1设置的具体结构可参前述方案。进一步优选是,刮条42呈摆动设置,刮条42与竖向活动时的擦拭体1相接触,刮条42呈上行倾斜设置。擦拭体1下移活动时,与挤压件4相连的挡面封闭暂存区3,暂存区3可蓄水;擦拭体1上移活动时,擦拭体1下移带动刮条42摆动,刮条42带动挡面活动,暂存区3被打开,保留在暂存区3的水液流向擦拭体1是一个持续的过程,因此,保留在高位的水液后续可淋到中段或/和上段的擦拭体1。擦拭体1下移活动时,挤压件4从擦拭体1刮出的全部或部分水液流向暂存区3;擦拭体1上移活动时,暂存区3被擦拭体1的上移作用打开,暂存区3的全部或部分水液流向擦拭体1。
作为优选实施方式五:本实施例中,暂存区3形成于挤压件4上方或挤压件4与擦拭体1之间。本实施例中,所述擦拭体1竖向活动时与挤压件4接触;擦拭体1正向活动时挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3并流向擦拭体1,或擦拭体1反向活动时挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3并流向擦拭体1。所述暂存区3形成于挤压件4上方,擦拭体1竖向活动时挤压件4挤压擦拭体1,挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3,从暂存区3的释出的水液流向擦拭体1。优选实施方式一:擦拭体1上移或下移活动时挤压件4挤压擦拭体1,所述暂存区3形成于挤压件4上方,从擦拭体1挤出的水液流向暂存区3,暂存区3的水液足够多时,溢出并流向擦拭体1。挤压件4可以是转辊41或刮条42。转辊41转动设置,当擦拭体1上移或下移活动时,擦拭体1与转辊41相接触,擦拭体1的水液可积存在擦拭体1 与转辊41之间,积存的水液足够多时,水液溢出流向擦拭体1或同时转辊41与擦拭体1之间贴合不紧密向擦拭体1水洗。转辊41的优选结构可参前述方案。作为优选,暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。具体的说,从暂存区3溢出水液具有持续性,持续的时间作为优选是擦拭体1到达最下方还在向擦拭体1输送水,这样才能保证水洗到擦拭体1的上端。为实现该发明目的,溢出的水的流量在设计时要考虑进水量和竖向活动时间,从而设计合理的出水流量。优选实施方式二:挤压件4为刮条42,刮条42上设有流向擦拭体1的通孔30,从擦拭体1挤水的水液从暂存区3上方进入,超过通孔后溢出流向擦拭体1。作为优选,暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。该方案中,暂存区3形成于挤压件4上方或挤压件4与擦拭体1之间,擦拭体1竖向活动时,挤压件4从擦拭体1刮出的水液流向暂存区3,从暂存区3的释出的水液流向擦拭体1。擦拭体1下移活动时,挤压件4从擦拭体1刮出的水液流向暂存区3,暂存区3的水液溢出流向擦拭体1。暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。
作为优选实施方式六:所述暂存区3设于挤压件4设于下方,擦拭体1上移或下移活动时挤压件4挤压擦拭体1,挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3,从暂存区3的释出的水液流向擦拭体1。作为优选,擦拭体1上移活动时,挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3,暂存区3的水液溢出流向擦拭体1,或擦拭体1下移活动时,挤压件4从擦拭体1挤出的全部或部分水液流向暂存区3,暂存区3的水液溢出流向擦拭体1。挤压件4采用转辊41方案是:当擦拭体1竖向活动时转辊41与擦拭体1接触并带动转辊41转动。挤压出的水流向暂存区3;暂存区3的溢出流向擦拭体1。作为优选,暂存区3上靠近擦拭体1的一侧设有通孔,存在暂存区3的水液从通孔流出。当然,暂存区3的水液也可从上方开口流出。作为优选,暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。具体的说,从暂存区3溢出水液具有持续性,持续的时间作为优选是擦拭体1到达最下方还在向擦拭体1输送水,这样才能保证水洗到擦拭体1的上端。挤压件4采用刮条42方案是:刮条42与擦拭体1相接触,从擦拭体1挤出的全部或部分水液流向暂存区3。暂存区3的溢出流向擦拭体1。作为优选,暂存区3上靠近擦拭体1的一侧设有通孔,存 在暂存区3的水液从通孔30流出。当然,暂存区3的水液也可从上方开口流出。作为优选,暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。具体的说,从暂存区3溢出水液具有持续性,持续的时间作为优选是擦拭体1到达最下方还在向擦拭体1输送水,这样才能保证水洗到擦拭体1的上端。作为优选,所述刮条42呈可靠近或远离擦拭体1设置,呈可靠近或远离擦拭体1设置的结构参前述实施方式。擦拭体1向下活动时,所述刮条42趋于靠近擦拭体1;擦拭体1向上活动时,所述刮条42趋于远离擦拭体1;刮条42从擦拭体1刮除的水液流向暂存区3,暂存区3的全部或部分水液又流向擦拭体1。或者,擦拭体1向上活动时,所述刮条42趋于靠近擦拭体1;擦拭体1向下活动时,所述刮条42趋于远离擦拭体1;刮条42从擦拭体1刮除的水液流向暂存区3,暂存区3的全部或部分水液又流向擦拭体1。以刮条42呈转动设置为例,刮条42与桶体2转动相连,刮条42向擦拭体1呈上行斜向,当擦拭体1下移时和刮条42接触,摩擦带动刮条42向下转动趋于靠近擦拭体1,从而压迫挤水,全部或部分水液流向暂存区3。暂存区3的水再导流向擦拭体1或暂存区3的水溢满流向擦拭体1均可,前者设置导流通道,后者则保留好挤出的水使其溢出。擦拭体1向上活动主要是为了向上方转移水,如再施予挤压作用擦拭体1上的部分水液将会被挤出,擦拭体1上移时的水量就减少,转移到暂存区3的水液也将减少。本结构可使向上带水的水量充足。具体的说,当擦拭体1上移时,擦拭体1和刮条42摩擦带动刮条42向上转动趋于远离擦拭体1,刮条42相连弹性件,弹性件施予刮条42趋于远离擦拭体1的作用力。该方案中,所述暂存区3设于挤压件4设于下方,擦拭体1竖向活动时,挤压件4从擦拭体1刮出的水液流向暂存区3,从暂存区3的释出的水液流向擦拭体1。擦拭体1上移活动时,挤压件4从擦拭体1刮出的水液流向暂存区3,暂存区3的水液溢出流向擦拭体1。暂存区3的水液溢出流向擦拭体1的状态持续至擦拭体1到达最下方。
如图12-13所示。上述实施方案中,作为优选方案:所述挤压件4至少是两个,两挤压件4高低分层,各层的挤压件4从湿的擦拭体1挤出的水液,挤出的水液保留用于水洗擦拭体1;湿的擦拭体1上移时,低层的挤压件4从下段的擦拭体1挤压出水液,挤出的水液保留;擦拭体1下移时,保留的水液可流向中段的擦拭体1;当中段的擦拭体1被湿润后并在上移时,高层的挤压件4从中段或 中段和下段的擦拭体1挤压出水液,挤压的出水液做保留;擦拭体1下移时,保留的水液可流向上段的擦拭体1。具有多个挤压件4时,可实现多级提水,即最低位的挤压件4从擦拭体1汲取水液并保留,而后再释放保留的水液从而湿润更高位的擦拭体1,润湿的擦拭体1上移至再上方的挤压件4时其水液又被再上方的挤压件4汲取并保留,再上方的挤压件4再湿润更上方的擦拭体1,从而实现低位的水液一级一级往上转移,再从上往下润湿擦拭体1,这一过程中虽然有部分水液被损耗,但实现了低位的水液洗高位的擦拭体1,且实现这一发明目的同时,擦拭体1的活动行程可有效缩短,使得使用者的操作更加省力。如仅设置一个挤压件4,那么初始润湿的擦拭体1一定要提升至最高位的挤压件4,挤压件4才能对擦拭体1的水液转移,行程距离大。设置多个挤压件4后,初始润湿的擦拭体1提升至最低位的水挤压件4并保留,保留的水液向中段或中段和上段的擦拭体1释放,擦拭体1再上移时,中段或上段的擦拭体1湿润后可向再高位转移并保留。从而通过擦拭体1、挤压件4、暂存区3的协同作用实现将低位的水提升到高位,并水洗中段或中段和上段的擦拭体1。作为优选,各层的挤压件4设于同一竖直线。水往下淋时因重力作用垂直竖向淋湿的擦拭体1更多。拖把板也可为硬质结构。
上述实施方案中,作为优选方案:最上方的挤压件4和暂存区3相对桶体2升降活动,该挤压件4升起后保持定位。最上方的挤压件4和暂存区3升起后受支撑,挤压件4的上升可清洗到更多的擦拭体1。使用完毕后,最上方的挤压件4下降,从而实现收纳,节省空间。本实施例所述的最上方的挤压件4包括只有1个挤压件4的情况,即:只有1个挤压件4时这个就是最上方的挤压件4。所述挤压件4、暂存区3与框架5相连,框架5相连支撑杆51,支撑杆51下端抵在桶体2从而支撑与框架5相连的挤压件4、暂存区3。进一步优选,所述支撑杆51与框架5转动相连,支撑杆51的上端裸露,支撑杆51相连弹性件,弹性件施给支撑杆51使支撑杆51下端向外侧活动的作用力。作为优选实施方案:毗邻最上方的挤压件4设有当擦拭体1竖向活动时压迫所述擦拭体1的刮刀44。作为优选,挤压件4设于清洁区21,擦拭体1水洗完毕脱离清洁区21时希望是没有滴水的,毗邻最上方的挤压件4加设刮刀44可避免该不利情况的出现。
作为优选实施方案:当挤压件4和暂存区3具有多个时,毗邻位于最下方的 挤压件4不具有压迫所述擦拭体1的刮刀44。擦拭体1需要吸附更多水液从而向上转移,如在最下方加设刮刀44,通过擦拭体1向上转移水液过程中部分已经被刮刀44刮除,不利于向上转移。
毗邻位于最下方的挤压件4,具有一可靠近或远离擦拭体1活动的刮刀44,可靠近或远离的结构可参前述结构。擦拭体1上移时,刮刀44远离擦拭体1;擦拭体1下移时,刮刀44靠近擦拭体1。如前一问题所述,当具有多个挤压件4和暂存区3时,下段的擦拭体1需要吸附更多水液从而向上转移,如在最下方加设刮刀44,通过擦拭体1向上转移水液过程中部分已经被刮刀44刮除,不利于向上转移。但如不设有刮刀44,那么下方部分的擦拭体1会出现不能被有效除水的情况,擦拭体1的下段部分较湿,不利于拖地,本结构中,呈可靠近或远离擦拭体1设置的结构参前述实施方式。以刮条42呈转动设置为例,刮条42与桶体2转动相连,刮条42向擦拭体1呈上行斜向,当擦拭体1下移时和刮条42接触,摩擦带动刮条42向下转动趋于靠近擦拭体1,从而压迫挤水。当擦拭体1上移时,擦拭体1和刮条42摩擦带动刮条42向上转动趋于远离擦拭体1,作为优选,可在假设弹性件,例如扭簧、弹簧,弹性件施给刮条42远离擦拭体1的作用力,当然摆动的角度具有限位块限位,停转的位置能稍微接触到擦拭体1,当擦拭体1下移时又能摩擦带动对其压迫挤水。
上述实施方案中,作为优选方案:桶体2包括清洁区21,全部或部分擦拭体1可伸入清洁区21;所述桶体2相连一第一盛水区22。本实施方案中,第一盛水区22为在清洁区21水洗的擦拭体1提供水源。所述挤压件4和暂存区3设于清洁区21,擦拭体1在清洁区21竖向活动时受挤压件4作用;从擦拭体1挤出的全部或部分水液最终流向第二盛水区。
上述实施方案中,作为优选方案:第一盛水区22的出水流向清洁区21区域,擦拭体1从清洁区21吸取水液,或第一盛水区22的出水流向位于清洁区21的擦拭体1,湿润擦拭体1的水液来自第一盛水区22。清洁区21区域包括清洁区21和与清洁区21相连通的区域。一实施方式是,第一盛水区22的出水流向清洁区21后积存在清洁区21,部分擦拭体1可在浸泡在该水液,当擦拭体1上移时,浸泡过的擦拭体1将水液向上转移;另一实施方式是,第一盛水区22的出水淋在位于清洁区21的擦拭体1,使擦拭体1淋湿后向上转移。再另一实施方 式是,第一盛水区22的出水流向暂存区3。通过暂存区3转移到擦拭体1后再向上转移。
作为第一盛水区22的优选实施方式:所述第一盛水区22包括大容腔222、小容腔221,大容腔222与小容腔221相管接,小容腔221具有出水口,大容腔222与小容腔221之间的开/闭与小容腔221出水口的开/闭为互锁控制。本实施例的互锁控制包括机械控制的互锁和电气控制的互锁。本领域技术人员都清楚互锁控制的原理,在本实施方案中,对互锁控制加以有效应用,即:大容腔222与小容腔221之间的开/闭和小容腔221出水口的开/闭呈互反。具体的说:大容腔222与小容腔221之间连通时,则小容腔221出水口关闭;大容腔222与小容腔221之间关闭时,则小容腔221出水口打开。从而实现每次小容腔221最多仅能排放小容腔221的水量,可实现定量用水。当小容腔221的水用光后也能实现在原位置除水,具体到本实施例中,擦拭体1可在清洁区21水洗和除水,除去的水转移到其他区域。作为优选实施方案:还包括第二盛水区23,从擦拭体1挤出的水最终流向第二盛水区23。清洗后的水液由第二盛水区23收集,避免和第一盛水区22水液发生混合。
上述实施方案中,作为优选方案:还包括与桶体2相连的除水区24,所述除水区24与第二盛水区23相分隔,除水区24具有可供擦拭体1插入的开口,除水区24设有当擦拭体1插入除水区24除水时压迫擦拭体1的除水件43,从擦拭体1挤除的水流向第二盛水区23。本实施例中,除水区24独立于第二盛水区23、第一盛水区22,除水区24具有对擦拭体1压迫除水的除水件43。除水件43包括现有技术中的器件。从擦拭体1挤除的水汇集至第二盛水区23。
上述实施方案中,作为优选方案:挤压件4和暂存区3设于清洁区21,擦拭体1在清洁区21竖向活动时受挤压件4作用。
作为优选,所述第一盛水区22位于第二盛水区23的上方,或第一盛水区22位于第二盛水区23和清洁区21上方,或第一盛水区22位于第二盛水区23和第二盛水区上方,第二盛水区23和清洁区21或/和第二盛水区呈左右设置且互相之间相分隔。
上述实施方案中,作为优选方案:还包括有拖把触发互锁控制切换的触动件,触动件与控制大容腔222与小容腔221之间的开/闭与小容腔221出水口的开/ 闭的塞体相连,所述触动件设于液位上方和最下方的挤压件4下方。触动件设于液位上方。具体的说,大容腔222与小容腔221之间具有控制水路通道的塞223,小容腔221出水口也具有塞223,两个塞223互锁控制。其中一塞223与触动件相连,拖把板或擦拭体1触碰触动件从而控制两个塞223联动。由于拖把头竖向活动时,存在拖把头脱离触动件的情况,此时小容腔221会出现补水情况,所述触动件设于液位上方时,可尽量避免该情况的发生。
本说明书中所描述的以上内容仅仅是对本发明所作的举例说明。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,只要不偏离本发明说明书的内容或者超越本权利要求书所定义的范围,均应属于本发明的保护范围。

Claims (55)

  1. 低水位清洗长拖把的方法,拖把包括拖把板设有擦拭体,其特征是,湿润擦拭体的水低于擦拭体的上端,湿润擦拭体的水的液位上方设有挤压件,擦拭体竖向活动时擦拭体与挤压件相接触;湿的擦拭体携带水液上移,挤压件对上移后的湿的擦拭体挤压作用从湿的擦拭体挤出水液,将挤出的全部或部分水液做保留用于水洗液位上方部分的擦拭体,保留的水液位于湿润擦拭体的水的上方。
  2. 如权利要求1所述的低水位清洗长拖把的方法,其特征是,擦拭体正向活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;擦拭体反向活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体。
  3. 如权利要求1所述的低水位清洗长拖把的方法,其特征是,擦拭体正向或反向活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留并水洗液位上方部分的擦拭体。
  4. 如权利要求2所述的低水位清洗长拖把的方法,其特征是,所述擦拭体上移活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;所述擦拭体下移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体;或,所述擦拭体下移活动时,挤压件挤压作用给湿的擦拭体将湿的擦拭体中的全部或部分水液挤出并保留;所述擦拭体上移活动时,被保留的全部或部分水液水洗液位上方部分的擦拭体。
  5. 如权利要求1至4任意一项权利要求所述的低水位清洗长拖把的方法,其特征是,将从湿的擦拭体中挤水的全部或部分水液保留在暂存区,保留在暂存区的全部或部分水液流向擦拭体。
  6. 如权利要求5所述的低水位清洗长拖把的方法,其特征是,所述暂存区形成在挤压件上方或挤压件与擦拭体之间。
  7. 如权利要求5所述的低水位清洗长拖把的方法,其特征是,所述暂存区设于挤压件下方。
  8. 如权利要求1至4、6、7任意一项权利要求所述的低水位清洗长拖把的方法,其特征是,所述挤压件为转动设置的转辊。
  9. 如权利要求5所述的低水位清洗长拖把的方法,其特征是,所述挤压件为转动设置的转辊。
  10. 如权利要求8所述的低水位清洗长拖把的方法,其特征是,擦拭体竖向 活动时带动转辊转动,转辊的转动和对擦拭体的挤压将从擦拭体挤出的全部或部分水液保留在液位上方,以用于对液位上方部分的擦拭体的水洗。
  11. 如权利要求10所述的低水位清洗长拖把的方法,其特征是,擦拭体正向活动时带动转辊转动,转辊的转动和对擦拭体的挤压将从擦拭体挤出的全部或部分水液保留在液位上方,以用于对液位上方部分的擦拭体的水洗。
  12. 如权利要求9、10、11任意一项权利要求所述的低水位清洗长拖把的方法,其特征是,所述转辊正反双向转动。
  13. 如权利要求10所述的低水位清洗长拖把的方法,其特征是,转辊单向转动设置;擦拭体正向活动时带动转辊转动,反向活动时转辊静止。
  14. 如权利要求13所述的低水位清洗长拖把的方法,其特征是,所述转辊的可转动向为将水液带向擦拭体的方向。
  15. 如权利要求13所述的低水位清洗长拖把的方法,其特征是,擦拭体上移活动时转辊静止,擦拭体下移活动时转辊转动;或擦拭体下移活动时转辊静止,擦拭体上移活动时转辊转动。
  16. 如权利要求1至4、6、7任意一项权利要求所述的低水位清洗长拖把的方法,其特征是,还包括一转动设置的转辊。
  17. 如权利要求16所述的低水位清洗长拖把的方法,其特征是,擦拭体竖向活动时带动转辊转动,转辊的转动将保留在暂存区的水液输送向擦拭体以用于对液位上方部分的擦拭体的水洗。
  18. 如权利要求17所述的低水位清洗长拖把的方法,其特征是,所述转辊设于暂存区上方。
  19. 如权利要求17所述的低水位清洗长拖把的方法,其特征是,所述转辊正反双向转动。
  20. 如权利要求17所述的低水位清洗长拖把的方法,其特征是,转辊单向转动设置;擦拭体正向活动时带动转辊转动,反向活动时转辊静止。
  21. 如权利要求20所述的低水位清洗长拖把的方法,其特征是,所述转辊的可转动向为将水液带向擦拭体的方向。
  22. 如权利要求21所述的低水位清洗长拖把的方法,其特征是,所述转辊的可转动向为将水液带向擦拭体高处的方向。
  23. 如权利要求20所述的低水位清洗长拖把的方法,其特征是,擦拭体上移活动时转辊静止,擦拭体下移活动时转辊转动,或擦拭体下移活动时转辊静止,擦拭体上移活动时转辊转动。
  24. 如权利要求16所述的低水位清洗长拖把的方法,其特征是,所述擦拭体接触转辊。
  25. 如权利要求5所述的低水位清洗长拖把的方法,其特征是,所述暂存区形成于挤压件上方,擦拭体竖向活动时,挤压件从擦拭体刮出的水液流向暂存区,从暂存区的释出的水液流向擦拭体。
  26. 如权利要求5所述的低水位清洗长拖把的方法,其特征是,所述暂存区设于挤压件设于下方,擦拭体竖向活动时,挤压件从擦拭体刮出的水液流向暂存区,从暂存区的释出的水液流向擦拭体。
  27. 如权利要求25所述的低水位清洗长拖把的方法,其特征是,擦拭体下移活动时,挤压件从擦拭体刮出的水液流向暂存区,暂存区的水液溢出流向擦拭体。
  28. 如权利要求26所述的低水位清洗长拖把的方法,其特征是,擦拭体上移活动时,挤压件从擦拭体刮出的水液流向暂存区,暂存区的水液溢出流向擦拭体。
  29. 如权利要求27或28所述的低水位清洗长拖把的方法,其特征是,暂存区的水液溢出流向擦拭体的状态持续至擦拭体到达最下方。
  30. 如权利要求2所述的一种清洗拖把的装置,其特征是,擦拭体正向活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体反向活动时,暂存区的水液流向擦拭体。
  31. 如权利要求30所述的一种清洗拖把的装置,其特征是,擦拭体反向活动时,擦拭体的反向活动作用给暂存区,暂存区的全部或部分水液流向擦拭体。
  32. 如权利要求31所述的一种清洗拖把的装置,其特征是,擦拭体下移活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体上移活动时,暂存区被擦拭体的上移作用打开,暂存区的全部或部分水液流向擦拭体。
  33. 如权利要求31所述的一种清洗拖把的装置,其特征是,擦拭体上移活动时,挤压件从擦拭体刮出的全部或部分水液流向暂存区;擦拭体下移活动时,暂存区被擦拭体的下移作用打开,暂存区的全部或部分水液流向擦拭体。
  34. 如权利要求24至28、30至33任意一项权利要求所述的一种清洗拖把的 装置,其特征是,所述挤压件为刮条。
  35. 如权利要求24至28、30至33任意一项权利要求所述的一种清洗拖把的装置,所述挤压件呈可靠近或远离擦拭体设置,擦拭体下移活动时,所述挤压件趋于靠近所述擦拭体;擦拭体上移活动时,所述挤压件趋于远离所述擦拭体。
  36. 如权利要求24至28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,所述挤压件呈可靠近或远离擦拭体设置,擦拭体上移活动时,所述挤压件趋于靠近所述擦拭体;擦拭体下移活动时,所述挤压件趋于远离所述擦拭体。
  37. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,所述挤压件至少是两个,两挤压件高低分层,各层的挤压件从湿的擦拭体挤出的水液,挤出的水液保留用于水洗擦拭体;湿的擦拭体上移时,低层的挤压件从下段的擦拭体挤压出水液,挤出的水液保留;擦拭体下移时,保留的水液可流向中段的擦拭体;当中段的擦拭体被湿润后并在上移时,高层的挤压件从中段或中段和下段的擦拭体挤压出水液,挤压的出水液做保留;擦拭体下移时,保留的水液可流向上段的擦拭体。
  38. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,所述挤压件至少是两个,两挤压件高低分层,各层的挤压件从湿的擦拭体挤出的水液,挤出的水液保留用于水洗擦拭体;湿的擦拭体上移后,湿的擦拭体下移过程中,先由高层的挤压件从下段的擦拭体挤压出水液,挤压的出水液做保留,保留的水液而后释放,释放的水液可流向上段的擦拭体。
  39. 如权利要求37所述的一种清洗拖把的装置,其特征是,所述挤压件呈可靠近或远离擦拭体设置;擦拭体上移活动时,所述挤压件趋于靠近所述擦拭体;擦拭体下移活动时,所述挤压件趋于远离所述擦拭体。
  40. 如权利要求38所述的一种清洗拖把的装置,其特征是,所述挤压件呈可靠近或远离擦拭体设置;所述擦拭体下移活动时,所述挤压件趋于靠近所述擦拭体。
  41. 如权利要求37所述的一种清洗拖把的装置,其特征是,最上方的挤压件相对桶体升降活动,该挤压件升起后保持定位。
  42. 如权利要求37所述的一种清洗拖把的装置,其特征是,毗邻最上方的挤压件设有当擦拭体竖向活动时压迫所述擦拭体的刮刀。
  43. 如权利要求37所述的一种清洗拖把的装置,其特征是,毗邻位于最下方的挤压件不具有压迫所述擦拭体的刮刀。
  44. 如权利要求37所述的一种清洗拖把的装置,其特征是,毗邻位于最下方的挤压件具有一可靠近或远离擦拭体活动的刮刀,擦拭体上移时,刮刀远离擦拭体;擦拭体下移时,刮刀靠近擦拭体。
  45. 如权利要求41所述的一种清洗拖把的装置,其特征是,所述挤压件或挤压件和暂存区与框架相连,框架相连支撑杆,支撑杆下端抵在桶体从而支撑挤压件。
  46. 如权利要求45所述的一种清洗拖把的装置,其特征是,所述支撑杆与框架转动相连,支撑杆的上端裸露,支撑杆相连弹性件,弹性件施给支撑杆使支撑杆下端向外侧活动的作用力。
  47. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,所述挤压件设于清洁区,擦拭体在清洁区竖向活动时受挤压件作用。
  48. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,从擦拭体挤出的全部或部分水液最终流向第二盛水区。
  49. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,湿润擦拭体的水液来自第一盛水区。
  50. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,还包括除水区,所述除水区与第二盛水区相分隔,除水区具有可供擦拭体插入的开口,除水区设有当擦拭体插入除水区除水时压迫擦拭体的除水件,从擦拭体挤出的水流向第二盛水区。
  51. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,所述挤压件设于清洁区,擦拭体在清洁区竖向活动时受挤压件作用;从擦拭体挤出的全部或部分水液最终流 向第二盛水区。
  52. 如权利要求1至4、6、7、9至11、12至15、17、28、30至33任意一项权利要求所述的一种清洗拖把的装置,其特征是,第一盛水区的水液先流向清洁区或位于清洁区的擦拭体;擦拭体在清洁区竖向活动时受挤压件作用;从擦拭体挤出的全部或部分水液最终流向第二盛水区。
  53. 如权利要求50所述的一种清洗拖把的装置,所述第一盛水区位于第二盛水区的上方,或第一盛水区位于第二盛水区和清洁区上方,或第一盛水区位于第二盛水区和第二盛水区上方,第二盛水区和清洁区或/和第二盛水区呈左右设置且互相之间相分隔。
  54. 如权利要求50所述的一种清洗拖把的装置,其特征是,所述第一盛水区包括大容腔、小容腔,大容腔与小容腔相管接,小容腔具有出水口,大容腔与小容腔之间的开/闭与小容腔出水口的开/闭为互锁控制,所述擦拭体位于清洁区时,大容腔与小容腔之间的水路关闭,小容腔的出水口打开;所述擦拭体远离清洁区时,大容腔与小容腔之间的水路打开,小容腔的出水口关闭。
  55. 如权利要求65所述的一种清洗拖把的装置,其特征是,还包括有拖把触发互锁控制切换的触动件,触动件与控制大容腔与小容腔之间的开/闭与小容腔出水口的开/闭的塞体相连,所述触动件设于液位上方和最下方的挤压件下方。
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