Mop cleaning kit
By designing independent cleaning and wastewater chambers within the cleaning bucket, and utilizing drainage and return water channels to achieve cleaning and wringing within a single chamber, the problem of inconvenient cleaning and water waste in existing technologies is solved, achieving a highly efficient and water-saving cleaning effect.
Patent Information
- Application Number
- CN202520042457.2
- 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
Existing flat mop cleaning tools require separate wringing and water-holding areas, which makes cleaning inconvenient and causes wastewater to contaminate clean water, affecting cleaning effectiveness and wasting water resources.
Design a cleaning bucket with independent cleaning chamber and sewage chamber. Cleaning and squeezing are achieved in one chamber through drainage channel and return water channel. Sewage is discharged to sewage chamber through drainage channel, and a small amount of sewage is returned to cleaning chamber through return water channel to ensure that clean water is used for each cleaning.
It enables cleaning and wringing operations to be completed within a single chamber, ensuring that clean water is used for each cleaning, thus improving cleaning efficiency and saving water resources.
Smart Images

Figure CN223773693U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cleaning tools, especially a mop cleaning kit suitable for cleaning flat mop or foamed cotton flat mop. BACKGROUND
[0002] There are many patents of mop bucket for cleaning flat mop, and a representative patent is a Chinese utility model patent with patent No. CN201821203889.3 (publication No. CN209863678U) which discloses a flat mop tool, including a mop bucket and a flat mop. The mop bucket has a separate squeezing water area and a separate water holding area, and the bucket 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. During 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 to transfer water to the water holding area through the water transfer device. Since 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, and the wiping material is also squeezed dry in this process. Then the water in the water holding area enters the squeezing water area through the slow-release mechanism, and the flat mop can enter the squeezing water area for squeezing and cleaning after the wiping material is dirty.
[0003] The applicant of the foregoing patent has also applied for many similar patents with different protection focuses, but the core is that the mop bucket 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 dry the mop. The water squeezed out of the wiping material is transferred to the water holding area through the water transfer device.
[0004] 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 a cleaning operation, 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.
[0005] In summary, the foregoing flat mop cleaning tool can be further improved. UTILITY MODEL CONTENTS
[0006] The utility model solves the technical problem of the foregoing prior art and provides a mop cleaning kit which can complete cleaning and squeezing operations in one cavity, use clean water to clean the mop each time, and save water.
[0007] The utility model discloses a mop cleaning kit which comprises a cleaning bucket and a mop, the mop comprises a mop head rotatably connected to the lower end of a mop rod, a wiping material is arranged on the mop head, the cleaning bucket has a washing cavity and a sewage cavity which are independent of each other, the washing cavity is used to receive clean water and allow the mop head to enter for cleaning, and the sewage cavity is used to receive part of the sewage squeezed from the wiping material, and a water squeezing component is arranged on the washing cavity, characterized in that: water in the washing cavity is provided from outside, a drainage channel and a backwater channel are formed above the water squeezing component, the drainage channel is used to drain the water squeezed from the wiping material to the sewage cavity, the backwater channel is used to return the water squeezed from the wiping material to the washing cavity, and the drainage channel and the backwater channel satisfy the following conditions: the drainage direction of the drainage channel and the backwater direction of the backwater channel are arranged in opposite directions.
[0008] In order to facilitate water injection into the washing cavity, as an improvement, the washing cavity is provided with a water injection port connected with an external water tank or a faucet, and a switch arranged in the washing cavity is used to close the water injection port. When water injection is performed, the faucet and the water injection port are connected through a water pipe, and then the faucet is opened to inject water. Of course, water injection can also be realized through an external water tank.
[0009] As a preferred embodiment, the drainage channel is located above the backwater channel, and the drainage channel is at least partially communicated with the backwater channel. This arrangement of the drainage channel and the backwater channel is more reasonable, and of course, the drainage channel can also be arranged at the bottom of the backwater channel, such as a drainage hole arranged at the bottom of the backwater channel.
[0010] As a further improvement, the top surface of the water squeezing component has a further concave transition water storage cavity. When the wiping material is cleaned 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 drained to the sewage cavity. Therefore, the small amount of water squeezed out is stored in the transition water storage cavity, and the water in the transition water storage cavity can be drained to the sewage cavity through a swinging mode or through a drainage hole arranged at the bottom of the transition water storage cavity.
[0011] As a preferred embodiment, the water squeezing component is a squeezing and scraping plate swingably arranged in the washing cavity, and a limiting structure is arranged to limit the swinging angle range of the squeezing and scraping plate. During the process that the mop head enters the washing cavity downward, the squeezing and scraping plate is blocked by the limiting structure and cannot be turned downward. Of course, a squeezing roller can also be used, which is suitable for squeezing and cleaning foamed cotton.
[0012] Further improvement, the top surface of the squeeze plate has an upwardly extending wall, the wall and the squeeze plate form the backflow channel, the backflow channel has an open upper end and an open end facing the direction of the mop inserted into the cleaning cavity; the area above the wall forms the drainage channel. The wall can block the water flow and make it backflow to the cleaning cavity. The wall has a limited height, and the water squeezed from the mop can pass through the wall and form the drainage channel.
[0013] To drain the water in the transition storage cavity to the sewage cavity in a simple and reasonable way, the upwardly swinging squeeze plate can pour the water in the transition storage cavity to the sewage cavity.
[0014] As a preferred embodiment, the wall has a back wall, a left side wall and a right side wall. The wall surrounds the squeeze plate from three sides, and can more efficiently backflow the water.
[0015] To facilitate the cleaning of the mop, the cleaning cavity is provided with a brush, which is located above the water squeezing part.
[0016] Compared with the prior art, the cleaning bucket has a cleaning cavity and a sewage cavity which are independent of each other. During cleaning, clean water is directly poured into the cleaning cavity (through a faucet, a water jug or an externally hung water tank), the mop head is inserted into the cleaning cavity and moves downward, the mop is cleaned by the water squeezing part, most of the water squeezed from the mop is drained to the sewage cavity through the drainage channel, and a small amount of water is backflowed to the cleaning cavity through the backflow channel to soak the mop. In the initial state, the water in the cleaning cavity does not need to completely soak the mop, so water can be saved. The drainage direction of the drainage channel and the backflow direction of the backflow channel are arranged in opposite directions, so that they are independent of each other and do not interfere with each other. The mop is repeatedly moved up and down until the water in the cleaning cavity is basically transferred to the sewage cavity by the drainage channel, and the water on the mop is fully squeezed out. The cleaning and squeezing operations are completed in one cleaning cavity, and the water squeezing operation is more convenient. During the second cleaning, clean water is poured into the cleaning cavity again, and the above steps are repeated to ensure that the mop is cleaned with clean water each time. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a perspective structural schematic view of the embodiment of the utility model (the mop head is not inserted into the cleaning cavity);
[0018] Figure 2 It is a perspective structural schematic view of the embodiment of the utility model (the mop head is not inserted into the cleaning cavity); Figure 1 It is a sectional view of the cleaning bucket;
[0019] Figure 3 It is a perspective structural schematic view of the embodiment of the utility model (the mop head is not inserted into the cleaning cavity);
[0020] Figure 4 It is a perspective structural schematic view of the embodiment of the utility model (the mop head is not inserted into the cleaning cavity); Figure 3a sectional view of the mopping head;
[0021] Figure 5 is Figure 4 an enlarged view of A of the mopping head;
[0022] Figure 6 is a perspective view of the wringing member in the embodiment of the present application. DETAILED DESCRIPTION
[0023] The present application will be further described in detail below with reference to the accompanying drawings.
[0024] As Figures 1 to 6 shown, it is a preferred embodiment of the present application.
[0025] A mop cleaning kit comprises a cleaning bucket 1 and a mop, the mop comprises a mop head 3 rotatably connected to the lower end of a mop rod 2, and a wiping material 4 is arranged on the mop head 3, which can be a fiber cloth or a foamed cotton.
[0026] The cleaning bucket 1 has a cleaning cavity 1a and a sewage cavity 1b which are independent of each other, the cleaning cavity 1a is used to receive clean water and allow the mop head 3 to enter for cleaning, and the sewage cavity 1b is used to receive part of the sewage squeezed and scraped from the wiping material 4, and a wringing member 5 is arranged on the cleaning cavity 1a; the water in the cleaning cavity 1a is provided from outside, a drainage channel S1 and a backwater channel S2 are formed above the wringing member 5, the drainage channel S1 is used to drain the water squeezed and scraped from the wiping material 4 to the sewage cavity 1b, the backwater channel S2 is used to return the water squeezed and scraped from the wiping material 4 to the cleaning cavity 1a, and the drainage channel S1 and the backwater channel S2 satisfy the following conditions: the drainage direction of the drainage channel S1 and the backwater direction of the backwater channel S2 are arranged in opposite directions. The drainage channel S1 is located above the backwater channel S2, and the drainage channel S1 is at least partially communicated with the backwater channel S2.
[0027] The cleaning cavity 1a is provided with a water inlet 1a1 used to be connected with an external water tank or a faucet, and further comprises a switch 6 arranged in the cleaning cavity 1a and used to close the water inlet 1a1, and the switch 6 can be closed by moving the mop head 3 downward. The water inlet 1a1 can be connected with a water hose.
[0028] The wringing member 5 is a squeezing and scraping plate arranged in the cleaning cavity 1a in a swing manner, the top surface of the squeezing and scraping plate has a further concave transition water storage cavity 52, and further comprises a limiting structure 7 used to limit the swing angle range of the squeezing and scraping plate, and in the process of moving the mop head 3 downward into the cleaning cavity 1a, the squeezing and scraping plate is blocked by the limiting structure 7 and cannot be turned downward.
[0029] The top surface of the squeeze plate has an upwardly extending surrounding plate 51, which has a rear wall 511, a left side wall 512 and a right side wall 513. The surrounding plate 51 surrounds the water return channel S2, which is open at the upper end and at the end facing the mop 4 inserted into the cleaning cavity 1a; the area above the surrounding plate 51 forms the water drainage channel S1. The top surface of the squeeze plate has a further recessed transition water storage cavity 52, which can be emptied by the upwardly swinging squeeze plate.
[0030] The cleaning cavity 1a is also provided with bristles 6 above the water squeezing member 5.
[0031] The cleaning bucket 1 has a cleaning cavity 1a and a sewage cavity 1b, which are independent of each other. During cleaning, clean water is directly poured into the cleaning cavity 1a (through a faucet, a water jug or an externally hung water tank), and the switch 6 is closed. The mop head 3 enters the cleaning cavity 1a and moves downward, and the mop 4 is cleaned by the squeeze plate 5. Most of the water squeezed from the mop 4 is drained through the water drainage channel S1 to the sewage cavity 1b, and a small amount of water is returned to the cleaning cavity 1b through the water return channel S2, which is used to soak the mop 4. In the initial state, the water in the cleaning cavity 1b does not need to fully soak the mop 4, so it can save water. Because the water drainage direction of the water drainage channel S1 and the water return direction of the water return channel S2 are arranged in opposite directions, they are independent of each other and do not interfere with each other. After several cleanings, the amount of water on the mop 4 is small, and the energy of the squeezed water is not enough to be directly drained to the sewage cavity 1b. The small amount of water squeezed is stored in the transition water storage cavity 52, and the water in the transition water storage cavity 52 can be drained to the sewage cavity 1b by swinging. The mop is repeatedly moved up and down until the water in the cleaning cavity 1a is basically transferred by the water drainage channel S1, and the mop is moved again to fully squeeze the water on the mop 4. The cleaning and squeezing operations are more convenient. During the second cleaning, the switch 6 is opened, clean water is poured into the cleaning cavity 1a again, and the above steps are repeated to ensure that the mop is cleaned with clean water each time.
[0032] It should be noted that in the description of the present embodiment, the terms "front, rear, left, right, upper, lower" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are merely for the convenience of describing the present 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, and therefore cannot be understood as a limitation on the present utility model. The terms "mounting", "connection", "connection" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present 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) having a wiping agent (4), the cleaning bucket (1) having a washing chamber (1a) and a wastewater chamber (1b) that are independent of each other, the washing chamber (1a) for receiving clean water and allowing the mop head (3) to enter for cleaning, the wastewater chamber (1b) for receiving a portion of wastewater squeezed off from the wiping agent (4), the washing chamber (1a) being provided with a wringing component (5); characterized in that: The water in the cleaning chamber (1a) is supplied from the outside. A drain channel (S1) and a return water channel (S2) are formed above the water squeezing component (5). The drain channel (S1) is used to drain the water squeezed off the wiping material (4) to the sewage chamber (1b). The return water channel (S2) is used to return the water squeezed off the wiping material (4) to the cleaning chamber (1a). The drain channel (S1) and the return water channel (S2) satisfy the following condition: the drain direction of the drain channel (S1) is opposite to the return water direction of the return water channel (S2).
2. The mop cleaning kit according to claim 1, characterized in that: The cleaning chamber (1a) is provided with a water inlet (1a1) for connecting to an external water tank or faucet, and also includes a switch (6) located in the cleaning chamber (1a) for closing the water inlet (1a1).
3. The mop cleaning kit according to claim 1, characterized in that: The drainage channel (S1) is located above the return water channel (S2), and the drainage channel (S1) is at least partially connected to the return water channel (S2).
4. The mop cleaning kit according to claim 1, characterized in that: The top surface of the water-squeezing component (5) has a further recessed transition water-storage cavity (52).
5. The mop cleaning kit according to claim 4, characterized in that: The water-squeezing component (5) is a oscillating scraper plate installed in the cleaning chamber (1a). The upward oscillating scraper plate can pour the water in the transition water storage chamber (52) into the sewage chamber (1b).
6. The mop cleaning kit according to claim 5, characterized in that: It also includes a limiting structure (7) that limits the swing angle range of the scraper. When the mop head (3) enters the cleaning chamber (1a) downwards, the scraper is blocked by the limiting structure (7) and cannot be flipped downwards.
7. The mop cleaning kit according to claim 5, characterized in that: The top surface of the scraper has an upwardly extending enclosure (51), which together with the scraper forms the return water channel (S2). The upper end of the return water channel (S2) is open, and the end of the return water channel (S2) is open towards the wiping material (4) inserted into the cleaning chamber (1a).
8. The mop cleaning kit according to claim 7, characterized in that: The area above the enclosure (51) forms the drainage channel (S1).
9. The mop cleaning kit according to claim 7, characterized in that: The enclosure (51) has a rear wall (511), a left side wall (512) and a right side wall (513).
Citation Information
Patent Citations
Flat mop tool
CN209863678U