Mop cleaning set
By designing a mop cleaning kit that includes a cleaning bucket, a clean water bucket, and a rinsing bucket, and utilizing a water supply channel and a scraper structure, the problem of having to perform cleaning and wringing in separate sections in existing technologies is solved, achieving water-saving and efficient cleaning results.
Patent Information
- Application Number
- CN202520044290.3
- 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
Existing flat mop cleaning tools require two separate operations in different zones to complete cleaning and wringing, and the water quality gradually becomes polluted during the washing process, affecting the cleaning effect.
Design a mop cleaning kit that includes a cleaning bucket, a clean water bucket, and a rinsing bucket. It can simultaneously clean and wring out water in one area through a water supply channel and a scraper. The scraper and water guide surface structure control the water flow direction to ensure clean water is used every time.
It enables cleaning and wringing operations to be completed in one area, reducing water consumption, ensuring clean water is used for each cleaning, and improving cleaning efficiency and effectiveness.
Smart Images

Figure CN223773702U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cleaning tools, especially a cleaning set 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 the barrel body, and then the mop is put in for cleaning. Only the first time is clean water, and the next time is the second clean water after cleaning. After cleaning, the squeezing operation is carried out in another area.
[0003] There are many patents of mop barrels for cleaning flat mop. A representative patent is a Chinese utility model patent with patent number CN201821203889.3 (publication number CN209863678U), which discloses a flat mop tool, including a mop barrel and a flat mop. The mop barrel has a separate squeezing water area and a separate water holding area. The barrel body of the squeezing water area is provided with a squeezing device. The flat mop includes a wiping material, a mop rod, and a flat mop plate connected to the lower end of the mop rod. In use, the flat mop is rotated to a state where it can be squeezed, and then inserted into the squeezing device in the squeezing water area. The wiping material is squeezed by the squeezing device through up and down movement. The water squeezed out of the wiping material is transferred to the water holding area by a water transfer device. Because the amount of water squeezed out of the wiping material is greater than the amount of water entering the squeezing area from the water holding area through the slow-release mechanism, the water in the squeezing water area can be basically completely transferred to the water holding area after multiple reciprocations. The wiping material is also squeezed dry in this process. Then the water in the water holding area enters the squeezing area through the slow-release mechanism. After the flat mop is used for mopping and the wiping material is dirty, it can enter the squeezing water area for squeezing and cleaning.
[0004] The applicant of the foregoing patent has also applied for many similar patents with different protection focuses, but the core is that the mop barrel has a separate squeezing water area and a separate water holding area. The water holding area is used to clean the mop, and the squeezing water area is used to squeeze the mop. The water squeezed out of the wiping material is transferred to the water holding area by a water transfer device.
[0005] This flat mop cleaning tool has the following defects: cleaning and squeezing are divided into two areas, and two operations are required in different areas to complete one cleaning work, which is inconvenient for cleaning operation. In addition, the sewage washed off the wiping material each time is discharged back to the water holding area, which pollutes the water cup in the water holding area. The contaminated water in the water holding area enters the squeezing water area through the slow-release mechanism, so that the water used to clean the mop the next time is not clean water, which affects the cleaning of the wiping material. The slow-release mechanism may be a small hole that cannot be closed. In this way, the lower end of the wiping material may be always soaked in the water in the squeezing water area during the operation of cleaning and squeezing the wiping material, which reduces the squeezing effect of the wiping material and cannot be fully squeezed.
[0006] In view of the foregoing, the aforementioned flat mop cleaning tool can be further improved. Utility model content
[0007] The utility model provides a mop cleaning set which can clean and wring the mop simultaneously in one area, and the amount of clean water used in each cleaning operation is small, thereby saving water.
[0008] The utility model provides a mop cleaning set, which comprises a cleaning bucket and a mop, the mop comprises a mop head rotatably connected to the lower end of a mop rod, and a wiping material is arranged on the mop head, characterized in that the lower end of the wiping material is sleeved or buckled on the back plate of the mop head, and the bottom surface of the wiping material is bonded to the back plate of the mop head, the cleaning bucket comprises an outer bucket, a clean water bucket and a washing bucket, the clean water bucket and the washing bucket are at least partially installed in the outer bucket, the outer wall of the washing bucket is provided with a raised blocking part abutting against the corresponding inner wall of the outer bucket, the middle part of the clean water bucket and the washing bucket is connected through a water supply channel, the water supply channel is controlled to open and close by a switch, the washing bucket is provided with a squeezing and scraping plate, the squeezing and scraping plate has a squeezing and scraping edge for scraping water from the wiping material, and the end of the squeezing and scraping plate away from the squeezing and scraping edge has a water blocking wall extending upwards; during the process that the mop head enters the washing bucket downwards, the top surface of the squeezing and scraping plate forms a water guide surface which is arranged to be inclined downwards from the water blocking wall to the squeezing and scraping edge, the outlet of the water supply channel is located below the water guide surface, and the water blocking wall blocks a part of water squeezed from the wiping material and makes the water flow back to the washing bucket along the water guide surface, and the part of water squeezed from the wiping material flows into the outer bucket from above the water blocking wall.
[0009] In order to fully transfer the water in the washing bucket to the outer bucket, the squeezing and scraping plate has an inner recessed water storage cavity which can receive the part of water squeezed from the wiping material, and the squeezing and scraping plate can swing, during the process that the mop head moves upwards and leaves the washing bucket, the mop head drives the squeezing and scraping plate to turn in a direction away from the mop head, so as to discharge the water in the water storage cavity to the outer bucket. After being washed for several times, the amount of water on the wiping material is small, and the energy of the water squeezed out is not enough to be directly discharged to the outer bucket, so the small amount of water squeezed out is stored in the water storage groove, and the water in the water storage groove can be discharged to the outer bucket through the swinging mode, or a water drainage hole arranged at the bottom of the water storage groove and discharging to the sewage area can be arranged to discharge the water to the outer bucket.
[0010] To ensure the squeeze blade swings within a suitable angle range, a limiting structure is further included to limit the swing angle of the squeeze blade. During the process of the mop head entering the cleaning bucket, the squeeze blade is blocked by the limiting structure and cannot be flipped downward. The squeeze blade is held by the spring to maintain a downward flipping trend. If the angle of the forward flipping is too large, the water in the water storage cavity is easily discharged to the cleaning bucket. The spring holds the squeeze blade in the squeezing water position to increase the squeezing water effect.
[0011] The position relationship between the clean water bucket and the cleaning bucket is stable, but the two are easily shaken during the cleaning process, which affects normal use. To stabilize the relative position between the clean water bucket and the cleaning bucket during cleaning, the clean water bucket and the cleaning bucket are mutually clamped.
[0012] To ensure that the clean water bucket and the cleaning bucket are not easily shaken relative to the outer bucket during the cleaning operation, the side wall or the bottom of the clean water bucket has a first plug-in part, and a first through hole communicating the outside and the inner cavity of the first plug-in part is arranged in the first plug-in part. The side wall of the cleaning bucket has a second plug-in part, and a second through hole communicating the outside and the inner cavity of the second plug-in part is arranged in the second plug-in part. The second plug-in part is inserted into the first through hole, and the second through hole constitutes the water supply channel, or the first plug-in part is inserted into the second through hole, and the first through hole constitutes the water supply channel. The water supply channel is formed by the mutually inserted plug-in parts to ensure that the water supply channel has a certain length.
[0013] As an improvement, the switch is in a strip shape and is constrained on the inner circumferential wall of the cleaning bucket through a rib and groove guide structure. The switch moves downward to close the water supply channel, and the rib and groove guide structure applies a force to the switch in the direction of approaching the water outlet end of the water supply channel during the downward movement of the switch. The upward movement of the switch opens the water supply channel, and the mop cooperates with the switch to make the downward movement of the mop drive the downward movement of the switch. The rib and groove guide structure makes the switch along a predetermined track and applies a force to the switch in the direction of approaching the water outlet end of the water supply channel, which can make the switch better close the outlet end of the water supply channel and avoid water leakage.
[0014] Further improvement, the upper end of the switch extends out of the upper part of the cleaning area for human operation, and the middle part of the switch is provided with an outward convex linkage part cooperating with the downward mop. The upper end of the switch is exposed out of the cleaning bucket, which is convenient for the user to operate the upward switch. Since the mop head also moves up and down during cleaning, the downward movement of the switch cooperates with the linkage part to close the water supply channel, which can better realize the linkage with the mop head.
[0015] To facilitate the cleaning of hair and other dirt on the wiping object, a bristle plate is further arranged in the cleaning bucket above the squeeze blade.
[0016] As an improvement, a pressure cap is fixed to the opening of the outer tub. The pressure cap has a squeezing opening that communicates with the inner cavity of the cleaning tub and allows the mop head to pass through. The squeezing opening is part of the cleaning tub, and the scraper is disposed inside the squeezing opening. The pressure cap not only serves an aesthetic purpose but also provides a suitable installation position for the scraper.
[0017] Compared with the prior art, the advantages of this utility model are as follows: The cleaning bucket has an independent outer bucket, a clean water bucket, and a washing bucket. The clean water bucket is filled with clean water. During washing, the opening and closing element is opened, and the clean water bucket supplies water to the washing bucket through the water supply channel. When a certain amount of water is supplied, the switch is closed, and the mop head moves up and down inside the washing bucket. The scraper blade scrapes and cleans the wiping material. Each time, some of the wastewater scraped off the wiping material flows over the water-blocking wall into the outer bucket, while some wastewater is blocked by the water-blocking wall and flows back towards the washing bucket along the water guide surface, replenishing and wetting the wiping material inside the washing bucket. This ensures that in the initial state, the washing bucket... The water inside the tub doesn't need to completely saturate the items being wiped, saving water. Repeatedly moving the mop up and down until the water in the tub is mostly removed allows for thorough wringing out of the items. Cleaning and wringing are completed within a single tub, making the wringing process more convenient. The outer wall of the tub abuts against the corresponding inner wall of the outer tub, preventing the tub from shaking during cleaning and ensuring smooth operation. For a second wash, simply turn the switch back on, and the clean water tank supplies water to the tub again through the water supply channel, repeating the above steps to complete the second wash, ensuring that the mop is always washed with clean water. 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 cleaning 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 cleaning 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 of F;
[0026] Figure 9 is a sectional view (mop head upwardly separated from the cleaning area state) of the embodiment of the utility model;
[0027] Figure 10 for Figure 9 enlarged view of I;
[0028] Figure 11 is the assembly exploded view of the embodiment of the utility model;
[0029] Figure 12 is the assembly exploded view between the clean water bucket and the cleaning bucket of the embodiment of the utility model;
[0030] Figure 13 is the assembly exploded view of the extrusion scraping plate of the embodiment of the utility model. PREFERRED EMBODIMENT
[0031] The utility model will be further described in detail in combination with the embodiment of the drawings.
[0032] As Figures 1 to 13 shown, it is the preferred embodiment of the utility model.
[0033] A mop cleaning set, comprising a cleaning bucket 1 and a mop, the mop comprising a mop head 3 rotatably connected at the lower end of a mop rod 2, the mop head 3 being provided with a wiping material 4; one end of the wiping material 4 is sleeved or buckled on the back plate 31 of the mop head 3, and the bottom surface of the wiping material 4 is bonded to the back plate of the mop head 3; the wiping material 4 can be a fiber cloth or a foamed cotton.
[0034] The cleaning bucket 1 comprises an outer bucket 1a, a clean water bucket 1b and a cleaning bucket 1c, and the clean water bucket 1b and the cleaning bucket 1c are clamped with each other. The clean water bucket 1b and the cleaning bucket 1c are at least partially installed in the outer bucket 1a, and the outer wall of the cleaning bucket 1c is provided with a protruding blocking part 1c1 abutting against the corresponding inner wall of the outer bucket 1a; the middle part of the clean water bucket 1b and the cleaning bucket 1c are communicated through a water supply channel D, the water supply channel D is controlled to open and close by a switch 5, the switch 5 is in a strip shape and is constrained on the inner circumferential wall of the cleaning bucket 1c through a rib and groove guide structure 10, the switch 5 is lowered to close the water supply channel D, and the rib and groove guide structure 10 exerts a force on the switch 5 in the direction of approaching the water outlet end of the water supply channel D during the lowering process of the switch 5; the switch 5 is raised to open the water supply channel D, and the mop cooperates with the switch 5, so that the lowering of the mop drives the switch 5 to lower. The upper end of the switch 5 extends out of the upper part of the cleaning area for operation by a person, and the middle part of the switch 5 is provided with an outer convex linkage part 51 cooperating with the lowered mop.
[0035] The cleaning bucket 1c is provided with a squeezing and scraping plate 6, which has a squeezing and scraping edge 61 for scraping water from the wiping article 4, and has a water blocking wall 62 extending upward from one end of the squeezing and scraping edge 61; during the process of the mop head 3 entering the cleaning bucket 1c, the top surface of the squeezing and scraping plate 6 is provided as a water guide surface 63, which is downwardly inclined from the water blocking wall 62 to the squeezing and scraping edge 61; the outlet of the water supply channel D is located below the water guide surface 63, and the water blocking wall blocks part of the water scraped from the wiping article 4 and causes the water to flow back to the cleaning bucket 1c along the water guide surface 63, and the water scraped from the wiping article 4 flows into the outer bucket 1a from above the water blocking wall 62.
[0036] The squeezing and scraping plate 6 has an inner recessed water storage cavity 64, which can receive part of the water scraped from the wiping article 4; the squeezing and scraping plate 6 can swing, and during the process of the mop head 3 leaving the cleaning bucket 1c, the mop head 3 drives the squeezing and scraping plate 6 to flip in the direction away from the mop head 3, so as to discharge the water in the water storage cavity 64 into the outer bucket 1a. The limiting structure 7 is further arranged to limit the swing angle of the squeezing and scraping plate 6; during the process of the mop head 3 entering the cleaning bucket 1c, the squeezing and scraping plate 6 is blocked by the limiting structure 7 and cannot be flipped downward, and the squeezing and scraping plate 6 is kept in the downward flipping trend by the spring 6a.
[0037] The side wall or the bottom of the clean water bucket 1b is provided with a first plug-in part 11, which is provided with a first through hole 111 for connecting the outside and the inner cavity; the side wall of the cleaning bucket 1c is provided with a second plug-in part 12, which is provided with a second through hole 121 for connecting the outside and the inner cavity; the second plug-in part 12 is plugged into the first through hole 111, and the second through hole 121 constitutes the water supply channel D, or the first plug-in part 11 is plugged into the second through hole 121, and the first through hole 111 constitutes the water supply channel D.
[0038] The cleaning bucket 1c is further provided with a bristle plate 9, which is arranged above the squeezing and scraping plate 6.
[0039] The outer bucket is fixed with a gland 8 at the mouth end, which is provided with a squeezing opening 81 for the mop head 3 to pass through, which is connected with the inner cavity of the cleaning bucket 1c, and the squeezing opening 81 constitutes part of the cleaning bucket 1c, and the squeezing and scraping plate 6 is arranged in the squeezing opening 81.
[0040] The cleaning tub 1 has an independent outer tub 1a, a clean water tub 1b, and a washing tub 1c. The clean water tub 1a is filled with clean water. During cleaning, the switch 5 is turned on, and the clean water tub 1b supplies water to the washing tub 1c through the water supply channel D. When a certain amount of water is supplied, the switch 5 is turned off. The mop head 3 moves up and down inside the washing tub 1c, scraping and cleaning the wiping material 4 with the scraper 6. Each time, some of the wastewater scraped off the wiping material 4 flows over the water-blocking wall 62 and into the outer tub 1a. Some of the wastewater is blocked by the water-blocking wall 62 and flows back towards the washing tub 1b along the water guide surface 63, replenishing and wetting the wiping material 4 inside the washing tub 1b. This ensures that, in the initial state, the washing tub 1b is clean. The water does not need to completely saturate the mop 4, thus saving water. By repeatedly moving the mop up and down until the water in the cleaning tub 1b is basically removed, the water on the mop 4 can be fully squeezed out. The cleaning and squeezing are completed in just one cleaning tub 1b, making the squeezing operation more convenient. The outer wall of the cleaning tub 1b and the corresponding inner wall of the outer tub 1a are abutted by the stop part 1c1, so the cleaning tub 1b is not easy to shake during cleaning, ensuring smooth cleaning. For the second cleaning, simply turn on the switch 5 again, and the clean water tank will supply water to the cleaning tub 1b again through the water supply channel D, and repeat the above operation to complete the second cleaning, ensuring that the mop is clean water every time it is cleaned.
[0041] 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 mop cleaning kit, comprising a cleaning bucket (1) and a mop, the mop including a mop head (3) rotatably connected to the lower end of a mop handle (2), the mop head (3) being provided with a wiping agent (4); characterized in that: The lower end of the wiping material (4) is fitted or fastened to the back plate of the mop head (3), and the bottom surface of the wiping material (4) is adhered to the back plate of the mop head (3). The cleaning bucket (1) includes an outer bucket (1a), a clean water bucket (1b), and a washing bucket (1c). The clean water bucket (1b) and the washing bucket (1c) are at least partially installed inside the outer bucket (1a). The outer wall of the washing bucket (1c) is provided with a protruding stop part (1c1) that abuts against the corresponding inner wall of the outer bucket (1a). The middle parts of the clean water bucket (1b) and the washing bucket (1c) are connected by a water supply channel (D). The water supply channel (D) is controlled to open and close by a switch (5). The washing bucket (1c) is provided with a scraper (6). The scraper (6) has a function of... The wiping material (4) has a squeezing edge (61) for scraping water, and the squeezing plate (6) has an upwardly extending water-blocking wall (62) at one end away from the squeezing edge (61). During the process of the mop head (3) entering the washing tub (1c) downward, the top surface of the squeezing plate (6) forms a water-guiding surface (63) that is inclined downward from the water-blocking wall (62) towards the squeezing edge (61). The outlet of the water supply channel (D) is located below the water-guiding surface (63). The water-blocking wall blocks a portion of the water scraped off the wiping material (4) and flows back along the water-guiding surface (63) towards the washing tub (1c). A portion of the water scraped off the wiping material (4) passes over the water-blocking wall (62) and flows into the outer tub (1a).
2. The mop cleaning kit according to claim 1, characterized in that: The scraper (6) has a concave water storage cavity (64) that can receive some of the water scraped off from the wiping material (4).
3. The mop cleaning kit according to claim 2, characterized in that: The scraper (6) can swing. As the mop head (3) moves upward away from the cleaning tub (1c), the mop head (3) drives the scraper (6) to flip in the opposite direction to the mop head (3) so as to drain the water in the water storage chamber (64) into the outer tub (1a).
4. The mop cleaning kit according to claim 3, characterized in that: It also includes a limiting structure (7) that limits the swing angle of the scraper (6). During the process of the mop head (3) entering the cleaning tub (1c) downward, the scraper (6) is blocked by the limiting structure (7) and cannot be flipped downward. The scraper (6) is held by the spring (6a) to maintain the downward flipping trend.
5. The mop cleaning kit according to claim 1, characterized in that: The clean water tank (1b) and the washing tank (1c) are interlocked.
6. The mop cleaning kit according to claim 5, characterized in that: The clean water tank (1b) has a first insertion part (11) on its side wall or bottom, and the first insertion part (11) has a first through hole (111) that connects the outside to its inner cavity. The cleaning tank (1c) has a second insertion part (12) on its side wall, and the second insertion part (12) has a second through hole (121) that connects the outside to its inner cavity. The second insertion part (12) is inserted into the first through hole (111), and the second through hole (121) constitutes the water supply channel (D). Alternatively, the first insertion part (11) is inserted into the second through hole (121), and the first through hole (111) constitutes the water supply channel (D).
7. The mop cleaning kit according to claim 1, characterized in that: The switch (5) is elongated and constrained to the inner wall of the washing tub (1c) by a ribbed guide structure (10). When the switch (5) moves down, it closes the water supply channel (D). During the downward movement of the switch (5), the ribbed guide structure (10) applies a force to the switch (5) in the direction of the water outlet near the water supply channel (D). When the switch (5) moves up, it opens the water supply channel (D). The mop cooperates with the switch (5), so that the downward movement of the mop drives the switch (5) to move down.
8. The mop cleaning kit according to claim 7, characterized in that: The upper end of the switch (5) extends above the cleaning area for operation, and the middle part of the switch (5) is provided with a protruding linkage part (51) that cooperates with the downward-moving mop.
9. The mop cleaning kit according to claim 1, characterized in that: The cleaning tub (1c) is also equipped with a brush plate (9), which is located above the scraper plate (6).
10. The mop cleaning kit according to claim 1, characterized in that: The outer bucket has a pressure cap (8) fixed at the opening end. The pressure cap (8) has a squeezing port (81) that communicates with the inner cavity of the cleaning bucket (1c) and allows the mop head (3) to pass through. The squeezing port (81) is part of the cleaning bucket (1c). The scraper (6) is set inside the squeezing port (81).
Citation Information
Patent Citations
Flat mop tool
CN209863678U