Squeezing flat mop cleaning tool

By setting up separate squeezing, water holding, and wastewater areas in the mop bucket, and using water supply channels and switch components to achieve quantitative water supply, the water pollution problem in existing technologies is solved, ensuring that clean water is used for each washing and squeezing, improving cleaning efficiency and saving water resources.

CN223773737UActive Publication Date: 2026-01-09NINGBO DERUNTANG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520047379.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2026-01-09
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

In existing flat mop cleaning buckets, the water in the water-holding area becomes contaminated during the cleaning and wringing process, resulting in unclean water being used for the next wash and affecting the cleaning effect on the wiped items.

Method used

Design a mop bucket with independent squeezing, water holding, and wastewater areas. A water supply channel is used to achieve quantitative water supply, and the opening and closing of the water supply channel is controlled by a switch component to ensure that each water supply is clean water. The cleaning and squeezing operations are completed in one area.

Benefits of technology

It enables the use of clean water for each washing and wringing, improving the cleaning effect of the wiped items, reducing water waste, and has a compact structure that takes up little space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a squeezing flat plate mop cleaning tool, which comprises a mop bucket, a mop rod and a flat plate mop head, a wiping object is arranged on the flat plate mop head, and the squeezing flat plate mop cleaning tool is characterized in that the mop bucket is provided with a water squeezing area, a water containing area and a sewage area which are mutually independent, and the height of the water squeezing area is larger than the width of the water squeezing area. The width size of the water squeezing area is larger than the thickness size of the water squeezing area, the water squeezing area and the water containing area are arranged side by side left and right and staggered up and down, the water squeezing area and the water containing area are communicated through a water supply channel, and the water supply channel is controlled by a switch component to be opened and closed; and a stroking opening extrusion device is mounted on the mop bucket. According to the squeezing flat plate mop cleaning tool, the water consumption for cleaning is small, it is ensured that water for cleaning and squeezing each time is clean water, and cleaning and squeezing operation can be completed in one area.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of cleaning tools, especially a kind of extrusion flat mop cleaning tool suitable for cleaning flat mop or foamed cotton flat mop. BACKGROUND

[0002] The mop cleaning barrel for cleaning flat mop or foamed cotton flat mop mostly needs to fill water in barrel body, then mop is placed for cleaning, only the first time cleaning is clean water, next time cleaning mop barrel water is after cleaning second clean water.Cleaning is carried out in another area again.

[0003] As patent number CN201821203889.3 (publication number CN209863678U) discloses a flat mop tool, including mop bucket and flat mop;Mop bucket has independent water squeezing area and independent water holding area, water squeezing area barrel is equipped with extrusion device;Flat mop includes wiping material, mop rod, flat mop plate connected to the lower end of mop rod.When using, flat mop is rotated to the state that extrusion can be carried out, then in water squeezing area, insert extrusion device, up and down reciprocating motion to squeeze wiping material through extrusion device, water squeezed out by wiping material is transferred to water holding area by water transfer device.Because the amount of water squeezed out by wiping material when being squeezed is greater than the amount of water entering extrusion area from water holding area through slow-release mechanism, so after multiple reciprocations, water in water squeezing area can be basically all transferred to water holding area, wiping material is also squeezed dry in this process.After that, water in water holding area enters water squeezing area through slow-release mechanism, flat mop can enter water squeezing area for squeezing and cleaning after wiping material is dirty.

[0004] Although the foregoing patent can carry out cleaning and squeezing operation in the same area (water squeezing area), but each time the sewage cleaned down from wiping material is discharged back to water holding area, resulting in the pollution of water cup in water holding area, and the water in polluted water holding area enters extrusion area through slow-release mechanism, so that the water used for cleaning mop next time is not clean water, which affects the cleaning of wiping material.Furthermore, slow-release mechanism can be small hole, which cannot be closed, so that the lower end of wiping material can be always soaked in water in water squeezing area during the operation process of cleaning and squeezing wiping material, so that the squeezing effect of wiping material is poor, and wiping material cannot be fully squeezed.

[0005] In summary, the existing mop cleaning barrel for cleaning flat mop or cotton mop can be further improved. UTILITY MODEL CONTENTS

[0006] The utility model solves the technical problems in the prior art, and provides an extrusion flat mop cleaning tool, which has the advantages of small amount of cleaning water, clean water for each cleaning and squeezing, and completion of cleaning and squeezing operation in one area.

[0007] The utility model discloses a kind of extrusion flat mop cleaning tools, including mop bucket and flat mop, the flat mop includes mop rod and flat mop head movably connected on mop rod, the flat mop head is equipped with wiping material, it is characterized in that: the mop bucket has independent squeezing water area, water area and sewage area, the height size of the squeezing water area is greater than the width size of squeezing water area, the width size of squeezing water area is greater than the thickness size of squeezing water area, the squeezing water area and water area are left and right side by side and upside down staggered, the squeezing water area and water area are communicated by water supply channel, the water supply channel is controlled by switch component to open and close;Squeezing device is installed on the mop bucket, when cleaning, the flat mop head is rotated to the state that it can be cleaned, and the flat mop head is moved and extruded between squeezing water area and the squeezing device, so as to clean the wiping material;In the squeezing state, the flat mop head is moved and extruded between the same position and the squeezing device, so as to move and squeeze the wiping material, and most of the liquid from water area is transferred to sewage area from squeezing water area during cleaning and extruding.

[0008] Further improvement, the above-mentioned mop bucket includes a clean water bucket, a squeezing water bucket and a sewage bucket, the clean water bucket and the squeezing water bucket are installed in the sewage bucket, the space in the clean water bucket forms the water area, the space in the squeezing water bucket forms the squeezing water area, and the space in the sewage bucket forms the sewage area. The use of three barrels forms different areas, making each area independent, and the clean water bucket and the squeezing water bucket are installed in the sewage bucket, making the whole mop barrel volume not large; Because the top of the clean water barrel is closed, the space above the liquid level in the clean water barrel is basically vacuum, so when the water level reaches the outlet of the water supply channel, the clean water barrel will not supply water to the squeezing water barrel under atmospheric pressure. Therefore, the amount of water supplied each time is constant, achieving automatic quantitative water supply.

[0009] As a preferred, the above-mentioned clean water bucket includes a barrel body with an open top and a barrel cover, the barrel cover is buckled at the top end of the barrel body, and the barrel body and the barrel cover are connected by ultrasonic process or a third component. The clean water bucket is composed of two parts, and is connected by ultrasonic process or a third component, which forms a good seal at the top of the clean water barrel.

[0010] To further improve the sealing performance of the top of the clean water barrel, the top end of the barrel body has an upwardly protruding plug, and the lower end of the barrel cover is provided with a plug insertion slot.

[0011] To facilitate water injection into the clean water barrel, the barrel cover is provided with a water injection port, and the water injection port is provided with a plug.

[0012] There is a height distance between the water supply channel and the bottom of the squeezing bucket; the water supply channel also serves as an air inlet channel, so that while water is being injected into the squeezing bucket, air enters the enclosed space above the liquid surface in the squeezing bucket through the water supply channel until the water in the squeezing bucket submerges the outlet end of the water supply channel.

[0013] To facilitate smooth air intake while supplying water, the water supply channel is set horizontally, or the water supply channel is set inclined downwards from the inlet end to the outlet end, or at least the top of the inlet end of the water supply channel is higher than the top of the outlet end.

[0014] To increase the strength of the wringer opening and prevent deformation, the wringer opening has an outward-flared reinforcing flange, and the top of the reinforcing flange has an upward-extending water-retaining rib. The water-retaining rib prevents water from flowing out excessively between the wringer plate and the wringer opening, thus avoiding the need for multiple mop head movements to remove all the water from the wringer.

[0015] Furthermore, the water-squeezing area is equipped with two water flow channels. One water flow channel discharges a portion of the water into the sewage area, while the other water flow channel discharges a portion of the water onto the wiping material.

[0016] Compared with the prior art, the advantages of this utility model are as follows: The mop bucket has independent squeezing area, water holding area, and wastewater area. The height of the squeezing area is greater than its width, and the width of the squeezing area is greater than its thickness, making the squeezing area flat overall. Even with less water, the cleaning material inserted into the flat mop head in the squeezing area can be moistened as much as possible. The squeezing area and the water holding area are connected by a water supply channel, which is controlled by a switch. The operation of the switch determines the opening and closing of the water supply channel. When the switch is open, the water holding area supplies water to the squeezing area through the water supply channel. When the switch is closed, the water holding area stops supplying water to the squeezing area, thus achieving a quantitative water supply from the water holding area to the squeezing area. After the water supply is completed, the switch is closed, and the flat mop head is cleaned in the water holding area until all the water in the water holding area is transferred. The next time it is used, the switch needs to be turned on again to supply water, so the water supplied each time is clean water. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model (with the mop head not inserted into the cleaning area);

[0018] Figure 2 for Figure 1 A sectional view;

[0019] Figure 3 for Figure 2 Enlarged view of point A;

[0020] Figure 4 forFigure 2 enlarged view of B of Fig.

[0021] Figure 5 is a three-dimensional structural schematic diagram (mop head is inserted into the cleaning area state) of the embodiment of the utility model;

[0022] Figure 6 is a sectional view of Figure 5

[0023] Figure 7 is an enlarged view of C of Fig. Figure 6

[0024] Figure 8 is an enlarged view of E of Fig. Figure 6

[0025] Figure 9 is an assembly schematic exploded view of the embodiment of the utility model;

[0026] Figure 10 is an assembly exploded schematic view of the squeezing area and the water holding area in the embodiment of the utility model. DETAILED DESCRIPTION

[0027] The utility model will be further described in detail below in combination with the embodiment of the drawings.

[0028] As shown in Fig. Figures 1-10 , it is the preferred embodiment of the utility model.

[0029] A squeezing flat mop cleaning tool, comprising a mop bucket 1 and a flat mop, the flat mop comprising a mop rod 2 and a flat mop head 3 movably connected to the mop rod 2, the flat mop head 3 being provided with a wiping material 4, which can be a fiber cloth or a foamed cotton.

[0030] The mop bucket 1 has a squeezing area 1a, a water holding area 1b and a sewage area 1c, the height dimension L1 of the squeezing area 1a is greater than the width dimension L2 of the squeezing area 1a, the width dimension L2 of the squeezing area 1a is greater than the thickness dimension L3 of the squeezing area 1a, the squeezing area 1a is left and right side by side and vertically staggered with the water holding area 1b, the squeezing area 1a and the water holding area 1b are communicated through a water supply channel S, and the water supply channel S is controlled to open and close by a switch component 6.

[0031] ​​​The mop bucket 1 is provided with a wringing device 5. The mop head 3 is rotated to a position for cleaning. The mop head 3 is moved between the wringing area la and the wringing device 5 for cleaning. In the wringing position, the mop head 3 is moved between the wringing area la and the wringing device 5 for wringing. Most of the water from the water area lb is transferred to the sewage area lc during cleaning and wringing. The wringing area la is provided with two water flow channels. One of the water flow channels directs part of the water to the sewage area lc. The other water flow channel directs part of the water to the mop.

[0032] The mop bucket 1 comprises a clean water bucket 11, a wringing bucket 12 and a sewage bucket 13. The clean water bucket 11 and the wringing bucket 12 are installed in the sewage bucket 13. The space in the clean water bucket 11 forms the water area lb. The space in the wringing bucket 12 forms the wringing area la. The space in the sewage bucket 13 forms the sewage area lc. The top end of the clean water bucket 11 is closed.

[0033] The clean water bucket 11 comprises a bucket body 111 and a bucket cover 112. The bucket cover 112 is buckled to the top end of the bucket body 111. The bucket body 111 and the bucket cover 112 are connected by ultrasonic welding or a third component. A sealing ring 113 is arranged at the joint of the bucket body 111 and the bucket cover 112. The bucket cover 112 is fixed to the bucket body 111 by screws. The top end of the bucket body 111 is provided with an upwardly protruding insertion rib 11a. The bottom end of the bucket cover 112 is provided with an insertion slot 11b into which the insertion rib 11a is inserted. The bucket cover 112 is provided with a water inlet 11c. The water inlet 11c is provided with a plug 11d.

[0034] The water supply channel S has a height distance H from the bottom of the wringing bucket 12. The water supply channel S also serves as an air inlet channel. When water is supplied to the wringing bucket 12, air enters the closed space above the water surface in the wringing bucket 12 through the water supply channel S until the water in the wringing bucket 12 covers the water outlet end S2 of the water supply channel S. The water supply channel S is horizontally arranged, or the water supply channel S is downwardly inclined from the inlet end S1 to the water outlet end S2, or at least the top end of the inlet end S1 of the water supply channel S is higher than the top end of the water outlet end S2. The top end of the water supply channel S is provided with a water blocking rib 122 extending upwardly.

[0035] The mop bucket 1 has a wringing area 1a, a water holding area 1b and a sewage area 1c independently, the height dimension L1 of the wringing area 1a is greater than the width dimension L2 of the wringing area 1a, and the width dimension L2 of the wringing area 1a is greater than the thickness dimension L3 of the wringing area 1a, so that the wringing area 1a is overall flat, and less water can also soak the wiping material 4 on the flat mop head 3 inserted into the wringing area 1a as much as possible, the wringing area 1a and the water holding area 1b are communicated through a water supply channel S, and the water supply channel S is controlled to open and close by a switch component 6; the top end of the clean water bucket 11 is closed, and the opening and closing of the water supply channel S is determined by the action of the switch component 6; the switch component 6 is opened, so that the water supply channel S injects water into the wringing bucket 12 at the same time as air enters the closed space above the liquid surface in the wringing bucket 12 through the water supply channel S, under the action of atmospheric pressure, the clean water bucket 11 no longer supplies water to the wringing bucket 12, so that the amount of water supplied each time is constant, automatic quantitative water supply is realized, and the switch component 6 is closed, so that the water holding area stops supplying water to the wringing area 1a; the flat mop head 3 is cleaned in the water holding area 1b, and the water in the water holding area 1b is transferred until the next time of use, and the switch component 6 is opened to supply water, so that the water supplied each time is clean water.

[0036] It should be noted that in the description of the embodiment, the terms "front, back, left, right, up, down" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore cannot be understood as a limitation on the utility model. The terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

Claims

1. A squeeze flat mop cleaning tool comprising a mop bucket (1) and a flat mop, said flat mop comprising a mop rod (2) and a flat mop head (3) movably connected to said mop rod (2), said flat mop head (3) being provided with a wiping article (4), characterized in that: The mop bucket (1) has a wringing area (1a), a water holding area (1b) and a sewage area (1c) which are independent of each other, the height dimension (L1) of the wringing area (1a) is greater than the width dimension (L2) of the wringing area (1a), the width dimension (L2) of the wringing area (1a) is greater than the thickness dimension (L3) of the wringing area (1a), the wringing area (1a) is left-right side by side and up-down staggered with the water holding area (1b), the wringing area (1a) and the water holding area (1b) are communicated through a water supply channel (S), the water supply channel (S) is controlled to open and close by a switching component (6); the mop bucket (1) is provided with a wringing device (5), the flat mop head (3) is rotated to a state that can be cleaned during cleaning, the flat mop head (3) is moved and pressed between the wringing area (1a) and the wringing device (5) to clean the wiping material (4); in the wringing state, the flat mop head (3) is moved and pressed between the wringing device (5) at the same position to wring the wiping material (4), most of the liquid from the water holding area (1b) is transferred from the wringing area (1a) to the sewage area (1c) during cleaning and pressing.

2. The extruded flat mop cleaning tool of claim 1, wherein: The mop bucket (1) comprises a clean water bucket (11), a wringing bucket (12) and a sewage bucket (13), the clean water bucket (11) and the wringing bucket (12) are installed in the sewage bucket (13), the space in the clean water bucket (11) forms the water holding area (1b), the space in the wringing bucket (12) forms the wringing area (1a), and the space in the sewage bucket (13) forms the sewage area (1c); the top end of the clean water bucket (11) is closed.

3. The extruded flat mop cleaning tool of claim 2, wherein: The clean water bucket (11) comprises a bucket body (111) with an open top end and a bucket cover (112), the bucket cover (112) is buckled on the top end of the bucket body (111), and the bucket body (111) and the bucket cover (112) are connected by ultrasonic process or a third component.

4. The extruded flat mop cleaning tool of claim 3, wherein: The top end of the bucket body (111) has an upwardly protruding insertion rib (11a), and the lower end of the bucket cover (112) is provided with an insertion slot (11b) for inserting the insertion rib (11a).

5. The extruded flat mop cleaning tool of claim 3, wherein: The bucket cover (112) is provided with a water inlet (11c), and the water inlet (11c) is provided with a plug (11d) for plugging.

6. The extruded flat mop cleaning tool of claim 2, wherein: The water supply channel (S) has a height distance (H) from the bottom of the wringing bucket (12).

7. The extruded flat mop cleaning tool of claim 6, wherein: The water supply channel (S) also serves as an air inlet channel, so that when the water supply channel (S) supplies water to the wringing bucket (12), air enters the closed space above the liquid surface in the wringing bucket (12) through the water supply channel (S) until the water in the wringing bucket (12) covers the water outlet end (S2) of the water supply channel (S).

8. The extruded flat mop cleaning tool of claim 7, wherein: The water supply channel (S) is horizontally arranged, or the water supply channel (S) is arranged downwardly inclined from the inlet end (S1) to the water outlet end (S2), or at least the top end of the inlet end (S1) of the water supply channel (S) is higher than the top end of the water outlet end (S2).

9. The extruded flat mop cleaning tool of claim 8, wherein: The mouth end of the wringer bucket (12) has an outwardly turned reinforcing flange (121) whose top has upwardly extending water retaining ribs (122).

10. The extruded flat mop cleaning tool of claim 1, wherein: Two water flow channels are provided on the wringing zone (1a), one of which discharges a portion of the water to the sewage zone (1c), and the other discharges a portion of the water to the wiping material.

Citation Information

Patent Citations

  • Flat mop tool

    CN209863678U