Squeezing flat plate mop cleaning tool with detachable barrel body

By designing a detachable cleaning tool, the problem of water quality degradation in existing technologies is solved, ensuring that clean water is used every time you wash and wring out, improving the cleaning effect of the wiped items, and reducing transportation costs.

CN223773720UActive Publication Date: 2026-01-09NINGBO DERUNTANG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520045257.2
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

The existing flat mop cleaning bucket has multiple areas molded as one piece, which leads to a decline in water quality after cleaning, affecting the cleaning effect on the wiped objects, and it cannot be guaranteed that the water used for each washing and wringing is clean water.

Method used

Design a cleaning tool with a detachable barrel, including a squeezing area, a water holding area, and a wastewater area. Through a detachable connection, the water supply channel and switch components ensure that the water used for each cleaning and squeezing is clean water. The wastewater is effectively separated and treated through a detachable squeezing device and a water transfer channel.

Benefits of technology

This allows for the use of clean water for each washing and wringing process, improving the cleaning effect on the wiped items, reducing transportation costs, and maintaining the aesthetic appeal of the cleaning tools.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an extrusion flat plate mop cleaning tool with a detachable barrel body, which comprises a mop barrel, a mop rod and a flat plate mop head, and a wiping object is arranged on the flat plate mop head. The mop bucket is provided with a water squeezing area, a water containing area and a sewage area, and a squeezing device is arranged on the mop bucket; the mop bucket is characterized in that the mop bucket comprises a water squeezing bucket, a water containing bucket and a sewage bucket which are arranged side by side, an area in the water squeezing bucket forms a water squeezing area, an area in the water containing bucket forms a water containing area, a sewage area is formed in the sewage bucket, the water squeezing bucket and the water containing bucket are detachably connected with the sewage bucket, and the water squeezing bucket is communicated with the water containing bucket through a water supply channel. The water supply channel is controlled to be opened and closed by a switch part, the extrusion device is detachably connected with the sewage bucket, and the water containing bucket can be independently placed at a water source for water adding after being detached. According to the squeezing flat plate mop cleaning tool with the detachable barrel bodies, different working areas are formed by assembling a plurality of different barrel bodies.
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Description

Technical Field

[0001] This utility model belongs to the technical field of cleaning tools, and in particular to a squeezing flat mop cleaning tool with a detachable bucket suitable for cleaning flat mops or foam flat mops. Background Technology

[0002] For cleaning flat mops or foam flat mops, most mop buckets need to be filled with water before placing the mop in for cleaning. Only the first cleaning uses clean water; subsequent cleanings use water that is slightly cleaner than the previous cleaning. After cleaning, the mop should be wrung out in another area.

[0003] For example, Chinese utility model patent CN201821203889.3 (publication number CN209863678U) discloses a flat mop tool, including a mop bucket and a flat mop. The mop bucket has a separate wringing area and a separate water-holding area, and the wringing area is equipped with a squeezing device. The flat mop includes a cleaning material, a mop handle, and a flat mop plate connected to the lower end of the mop handle. In use, the flat mop is rotated to a squeezing state, and then the squeezing device is inserted into the wringing area. The mop moves up and down to squeeze the cleaning material, and the squeezed water is transferred to the water-holding area through a water transfer device. Since the amount of water squeezed out when the cleaning material is squeezed is greater than the amount of water entering the wringing area from the water-holding area through the slow-release mechanism, after multiple repetitions, almost all the water in the wringing area can be transferred to the water-holding area, and the cleaning material is also squeezed dry in the process. Afterwards, the water in the water-holding area enters the wringing area through the slow-release mechanism. When the flat mop gets dirty, it can then enter the wringing area for wringing and cleaning.

[0004] The aforementioned patent features multiple areas that are integrally molded and cannot be independently removed for water collection or cleaning. While the patent allows cleaning and wringing to be performed within the same area (the wringing zone), the wastewater washed off the mop is discharged back into the water-holding area each time, contaminating the water cup. This contaminated water then enters the wringing zone via a slow-release mechanism, meaning the water used for the next mop wash is not clean, affecting the cleanliness of the mop. Furthermore, the slow-release mechanism may be a small, non-closable orifice. This means that during the cleaning and wringing process, the lower part of the mop may remain soaked in water from the wringing zone, resulting in poor wringing and insufficient drying.

[0005] In conclusion, existing mop cleaning buckets for cleaning flat mops or sponge mops can be further improved. Utility Model Content

[0006] The technical problem to be solved by this utility model is to provide a detachable squeezing flat mop cleaning tool that can be assembled with multiple different buckets to form different working areas, in view of the above-mentioned existing technology. This cleaning tool can also ensure that the water used for each washing and wringing is clean water.

[0007] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: a detachable squeezing flat mop cleaning tool, including a mop bucket and a flat mop, wherein the flat mop includes a mop handle and a rigid flat mop head movably connected to the mop handle, and the flat mop head is provided with a wiping agent; the mop bucket has a wringing area, a water-holding area, and a wastewater area, and the mop bucket is provided with a squeezing device, wherein the wiping agent is wrung dry, the flat mop head is rotated to the wringing state, the flat mop head is inserted into the squeezing device in the wringing area and reciprocates to squeeze out the water through the squeezing device, and the flat mop head is cleaned in the wringing area; characterized in that: The mop bucket includes a squeezing bucket, a water holding bucket, and a wastewater bucket arranged side by side. The area inside the squeezing bucket forms the squeezing area, the area inside the water holding bucket forms the water holding area, and the area inside the wastewater bucket forms the wastewater area. The squeezing bucket, water holding bucket, and wastewater bucket are detachably connected. The squeezing bucket and water holding bucket are connected by a water supply channel, which is controlled by a switch. The squeezing device is detachably connected to the wastewater bucket. The water holding bucket can be detached and placed independently at a water source for adding water. The mop handle is composed of several sections connected by a detachable connection. It also includes a water transfer channel for transferring the squeezed water to the wastewater bucket.

[0008] In a further improvement, the aforementioned wringing device includes a bucket lid and a scraper. The bucket lid is detachably installed at the opening of the wastewater bucket. The bucket lid has an inlet for the flat mop head to pass through and a through hole for the water container to be exposed. The scraper is installed in the inlet. The bucket lid covers the entire opening of the wastewater bucket, preventing dirty water from leaking out and making the entire mop bucket more aesthetically pleasing. In addition, the bucket lid also provides constraint for the wringing bucket and the water container.

[0009] As an improvement, the squeezing bucket and the water-holding bucket are staggered, with the bottom of the water-holding bucket located above the bottom of the squeezing bucket. A mounting block is fixed to the bottom of the water-holding bucket, and the side of the squeezing bucket is also fixed to the mounting block. The mounting block rests on the inner bottom of the wastewater bucket, and the bucket lid constrains the top of both the squeezing bucket and the water-holding bucket. During assembly, the squeezing bucket and the water-holding bucket can be pre-installed on the mounting block to ensure their relative positions are fixed, and then the connecting parts are constrained inside the wastewater bucket, making assembly more convenient.

[0010] To ensure that the squeezing bucket and the water container do not easily wobble relative to the outer bucket during cleaning operations, as an improvement, the squeezing bucket and the water container are fitted together at their mating surfaces.

[0011] As an improvement, the aforementioned switch component is elongated, with its upper end extending above the washing tub for user operation. Lowering the switch component closes the water supply channel, while raising it opens it. The exposed upper end of the switch within the washing tub facilitates user operation by lifting the switch. Since the mop head also moves up and down during washing, lowering the switch to close the water supply channel better coordinates with the mop head's movement. Of course, the switch can also take other forms, such as a ball valve or other on / off switch structures.

[0012] As an improvement, the aforementioned wringing area has a first chamber for the flat mop head to pass through and a second chamber for the mop handle to pass through. The first and second chambers are arranged side by side, with the inner bottom surface of the second chamber higher than the inner bottom surface of the first chamber. The second chamber guides the entry of the mop handle. The staggered arrangement of the first and second chambers reduces excessive space in the wringing bucket that is not used for washing the mop, allowing the liquid level in the first chamber to be higher even with less water, thus saving water.

[0013] To facilitate the fixing of the squeezing bucket to the mounting block, the squeezing bucket has a raised boss on the side wall adjacent to the water container. The second cavity is located on the boss, and the boss is fixed to the mounting block.

[0014] As an improvement, the aforementioned water transfer channel is located inside the spout of the bucket lid and above the squeezer.

[0015] As a further improvement, the bottom surface of the aforementioned sewage tank is provided with a first slot for inserting the bottom of the squeezing bucket and a second slot for inserting the mounting block. The first and second slots constrain the squeezing bucket and the water-holding bucket, making their positional relationship relative to the sewage tank more stable.

[0016] To facilitate drainage, the aforementioned sewage tank has a drain hole on its side wall, and a plug is installed at the drain hole. To drain, simply open the plug to allow the sewage in the tank to flow out through the drain hole; there is no need to lift the tank to empty it.

[0017] Compared with the prior art, the advantages of this utility model are as follows: The mop bucket includes a wringer bucket, a water container bucket, and a wastewater container arranged side by side. The wringer bucket is used to clean the mop, the water container bucket is used to hold clean water and supply clean water to the wringer bucket through a water supply channel, and the wastewater container is used to receive the wastewater squeezed out by the squeezing device. The opening and closing of the water supply channel is determined by the action of the switch component. After the water supply is completed, the switch component is closed, and the mop head is cleaned in the wringer bucket until the water in the wringer bucket is completely transferred by the water transfer channel, and then the mop head is squeezed dry. When using it again, you only need to turn on the switch component to supply water, so the water supplied each time is clean water. The water container bucket can be disassembled and placed independently at the water source for refilling, without having to lift the entire mop bucket to refill it. The squeezing device and the wastewater container are detachably connected, which makes it convenient to pre-assemble the squeezing device and then install it on the wastewater container. The mop handle is composed of several sections connected by a detachable connection, which can be disassembled during transportation to reduce the volume and transportation costs. Attached Figure Description

[0018] 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 wringing area);

[0019] Figure 2 for Figure 1 A sectional view;

[0020] Figure 3 for Figure 2 Enlarged view of point A;

[0021] Figure 4 for Figure 2 Enlarged view of point B;

[0022] Figure 5 This is a three-dimensional structural diagram of an embodiment of the present utility model (mop head inserted downwards into the wringing area);

[0023] Figure 6 for Figure 5 A sectional view;

[0024] Figure 7 for Figure 6 Enlarged view of point E;

[0025] Figure 8 for Figure 6 Enlarged view at point F;

[0026] Figure 9 This is an exploded view of the assembly between the squeezing area and the water-holding area in an embodiment of this utility model;

[0027] Figure 10 This is an exploded view of the extrusion device in an embodiment of the present invention. Detailed Implementation

[0028] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0029] like Figures 1-10 The figure shown is a preferred embodiment of the present invention.

[0030] A detachable squeeze-type flat mop cleaning tool includes a mop bucket 1 and a flat mop. The flat mop includes a mop handle 2 and a rigid flat mop head 3 movably connected to the mop handle 2. The flat mop head 3 is provided with a wiping agent 4. The mop bucket 1 has a wringing area 1a, a water-holding area 1b, and a wastewater area 1c. The mop bucket 1 is provided with a squeezing device 5. The wiping agent 4 is squeezed dry. The flat mop head 3 is rotated to the wringing state. The flat mop head 3 reciprocates in the wringing area 1a, and the water is squeezed out by the squeezing device 5. The flat mop head 3 is cleaned in the wringing area 1a.

[0031] The mop bucket 1 includes a squeezing bucket 11, a water holding bucket 12, and a wastewater bucket 13 arranged side by side. The area inside the squeezing bucket 11 forms a squeezing area 1a, the area inside the water holding bucket 12 forms a water holding area 1b, and the wastewater bucket 13 forms a wastewater area 1c. The squeezing bucket 11 and the water holding bucket 12 are detachably connected to the wastewater bucket. The squeezing bucket 11 and the water holding bucket 12 are connected by a water supply channel S, which is controlled to open and close by a switch component 6. The squeezing device 5 is detachably connected to the wastewater bucket 13. The water holding bucket 12 can be detached and placed independently at a water source for adding water. The mop handle 2 is composed of several sections 21 connected by a detachable connection. It also includes a water transfer channel D for transferring the squeezed water to the wastewater bucket 13.

[0032] The squeezing device 5 includes a bucket lid 51 and a scraper 52. The bucket lid 51 is detachably installed at the opening of the wastewater bucket 13. The bucket lid 51 has an inlet 511 for the flat mop head 3 to pass through and a through hole 512 for the water bucket 12 to be exposed. The scraper 52 is installed in the inlet 511. The water transfer channel D is located in the inlet 511 of the bucket lid 51 and above the scraper 52.

[0033] The squeezing bucket 11 and the water holding bucket 12 are staggered and interlocked at their mating surfaces. The bottom surface of the water holding bucket 12 is located above the bottom surface of the squeezing bucket 11. A mounting block 8 is fixed to the bottom of the water holding bucket 12, and the side of the squeezing bucket 11 is also fixed to the mounting block. The mounting block 8 rests on the inner bottom of the sewage bucket 13, and the bucket lid 51 constrains the top of the squeezing bucket 11 and the water holding bucket 12.

[0034] The switch component 6 is elongated and is located on the inner wall of the squeezing bucket 11. The upper end 22 of the switch component 6 extends above the washing bucket 3 for operation. The switch component 6 moves down to close the water supply channel S, and moves up to open the water supply channel S.

[0035] The wringing area 1a includes a first cavity 1a1 for the flat mop head 3 to pass through and a second cavity 1a2 for the mop handle 2 to pass through. The first cavity 1a1 and the second cavity 1a2 are arranged side by side, and the inner bottom surface of the second cavity 1a2 is higher than the inner bottom surface of the first cavity 1a1. The wringing bucket 11 has a raised boss 111 on the side wall adjacent to the water tank 12. The second cavity is provided on the boss 111, and the boss 111 is fixed to the mounting block.

[0036] The bottom surface of the sewage tank 13 is provided with a first slot 131 for the bottom of the squeezing tank 11 to be inserted and a second slot 132 for the mounting block 8 to be inserted.

[0037] The sewage tank 13 has a drain hole 134 on its side wall, and a plug 9 is provided at the drain hole 134.

[0038] The mop bucket 1 includes a wringer 11, a water container 12, and a wastewater container 13 arranged side by side. The wringer 11 is used to clean the mop. The water container 12 holds clean water and supplies it to the wringer 13 through a water supply channel S. The wastewater container 13 collects the wastewater squeezed out by the scraper 52. The opening and closing of the water supply channel is determined by the action of the switch 6. After the water supply is completed, the switch is closed, and the flat mop head 3 is cleaned in the wringer 11 until the water in the wringer 11 is transferred. After the channel D is transferred, the squeezing begins; the next time it is used, simply turn on the switch 6 to supply water, so the water supplied each time is clean water; the water tank 12 can be disassembled and moved independently to the water source to add water, without having to lift the entire mop bucket to add water; the squeezing device 5 is detachably connected to the wastewater tank, making it convenient to pre-assemble the squeezing device 5 and then install it onto the wastewater tank 13; the mop handle 2 is composed of several sections 21 connected by a detachable connection, which can be disassembled during transportation to reduce the volume and lower transportation costs.

[0039] It should be noted that in the description of this embodiment, the terms "front," "rear," "left," "right," "up," "down," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings. They are merely for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. The terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

Claims

1. A detachable flat mop cleaning tool, comprising a mop bucket (1) and a flat mop, wherein the flat mop includes a mop handle (2) and a rigid flat mop head (3) movably connected to the mop handle (2), the flat mop head (3) being provided with a wiping agent (4); the mop bucket (1) has a wringing area (1a), a water-holding area (1b), and a wastewater area (1c), and the mop bucket (1) is provided with a squeezing device (5), wherein the wiping agent (4) is wrung out, the flat mop head (3) is rotated to a wringing state, the flat mop head (3) is inserted into the squeezing device (5) in the wringing area (1a) and reciprocates to squeeze out water through the squeezing device (5), and the flat mop head (3) is cleaned in the wringing area (1a); characterized in that: The mop bucket (1) includes a squeezing bucket (11), a water holding bucket (12), and a wastewater bucket (13) arranged side by side. The area inside the squeezing bucket (11) forms the squeezing area (1a), the area inside the water holding bucket (12) forms the water holding area (1b), and the wastewater bucket (13) forms the wastewater area (1c). The squeezing bucket (11) and the water holding bucket (12) are detachably connected to the wastewater bucket. The squeezing bucket (11) and the water holding bucket (12) are connected by a water supply channel (S). The water supply channel (S) is controlled to open and close by a switch component (6). The squeezing device (5) is detachably connected to the wastewater bucket (13). The water holding bucket (12) can be detached and placed independently at a water source for water filling. The mop handle (2) is composed of several sections (21) connected by a detachable connection. It also includes a water transfer channel (D) for transferring the squeezed water to the wastewater bucket (13).

2. The detachable bucket-type squeezing flat mop cleaning tool according to claim 1, characterized in that: The squeezing device (5) includes a bucket lid (51) and a squeezing scraper (52). The bucket lid (51) is detachably installed at the opening of the sewage bucket (13). The bucket lid (51) is provided with an inlet (511) through which the flat mop head (3) of the flat mop passes and a through hole (512) for the water bucket (12) to be exposed. The squeezing scraper (52) is installed in the inlet (511).

3. The detachable bucket-type squeezing flat mop cleaning tool according to claim 2, characterized in that: The squeezing bucket (11) and the water holding bucket (12) are staggered, with the bottom of the water holding bucket (12) located above the bottom of the squeezing bucket (11). The bottom of the water holding bucket (12) is fixed with an mounting block (8), and the side of the squeezing bucket (11) is also fixed on the mounting block. The mounting block (8) rests on the inner bottom of the sewage bucket (13), and the bucket lid (51) constrains the top of the squeezing bucket (11) and the water holding bucket (12).

4. The detachable bucket-type squeezing flat mop cleaning tool according to claim 1, characterized in that: The squeezing bucket (11) and the water holding bucket (12) are engaged together at their mating surfaces.

5. The detachable bucket-type squeezing flat mop cleaning tool according to claim 1, characterized in that: The switch component (6) is elongated and is located on the inner wall of the squeezing bucket (11). The upper end (61) of the switch component (6) extends above the squeezing bucket (11) for operation. The switch component (6) moves down to close the water supply channel (S), and the switch component (6) moves up to open the water supply channel (S).

6. The detachable bucket-type squeezing flat mop cleaning tool according to claim 3, characterized in that: The squeezing area (1a) includes a first cavity (1a1) through which the flat mop head (3) passes and a second cavity (1a2) through which the mop handle (2) passes. The first cavity (1a1) and the second cavity (1a2) are arranged side by side, and the inner bottom surface of the second cavity (1a2) is higher than the inner bottom surface of the first cavity (1a1).

7. The detachable bucket-type squeezing flat mop cleaning tool according to claim 6, characterized in that: The squeezing bucket (11) has a raised boss (111) on the side wall adjacent to the water tank (12), and the second cavity (1a2) is provided on the boss (111). The boss (111) is fixed on the mounting block.

8. The detachable bucket-type squeezing flat mop cleaning tool according to claim 2, characterized in that: The water transfer channel (D) is located inside the inlet (511) of the bucket lid (51) and above the scraper (52).

9. The detachable bucket-type squeezing flat mop cleaning tool according to claim 3, characterized in that: The bottom surface of the sewage tank (13) is provided with a first slot (131) for inserting the bottom of the squeezing bucket (11) and a second slot (132) for inserting the mounting block (8).

10. The detachable bucket-type squeezing flat mop cleaning tool according to claim 1, characterized in that: The upper end of the mop bucket (1) also includes a water transfer channel that flows towards the wiping object.

Citation Information

Patent Citations

  • Flat mop tool

    CN209863678U