Self-smoothing horizontal plate mop with cleaning function
By designing a cleaning chamber and drainage channel in the self-slicking horizontal board mop, the problems of cleaning liquid backflow and uneven squeezing force are solved, resulting in better cleaning effect and convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-04-07
AI Technical Summary
Existing hands-free flat mops often have cleaning solutions that flow back onto the surface during the wringing and washing process, resulting in poor cleaning performance. Additionally, the squeezing force applied by the extruder is uneven, further affecting the cleaning effect.
A self-squeezing horizontal board mop was designed, comprising a mop handle, a mop head with a wiping agent, a squeezing frame body, and a squeezing channel. The squeezing frame body has a cleaning chamber and a draining channel. The cleaning soap is scraped and delivered to the wiping agent by a transfer component. When the soap is squeezed dry, the draining channel drains all residual liquid to prevent backflow.
It effectively prevents the backflow of cleaning solution, improves the cleaning and wringing effect, ensures even force on the wiping surface, and enhances the convenience and effectiveness of cleaning operations.
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Figure CN224085258U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cleaning tools, especially relates to a self-rolling horizontal plate mop with cleaning function. BACKGROUND
[0002] Chinese patent CN217610928U discloses a wringing frame and mop, which comprises a main body, a container part is arranged on the main body, a pressing pump head is connected to the container part, a shaping frame is installed on the main body, the shaping frame is slidably installed on the main body, the pressing pump head is pressed by sliding the shaping frame, and the shaping frame is provided with a pattern hole. Add detergent raw materials in the container part, and the raw materials are pumped out and then pass through the pattern hole to realize embossing. The detergent is extruded to the ground in the form of embossing, and it is not necessary to take another cleaning agent to spray on the ground, thereby improving the cleaning efficiency. However, in the above structure, the mop pulling and cleaning and the mop cleaning by using the detergent are two relatively independent steps, and the detergent cleaning is not combined with the mop pulling and cleaning process, and the convenience of the mop cleaning and cleaning operation needs to be improved.
[0003] In view of the foregoing status, the applicant develops a new hand-free mop. For example, the invention patent with the application number CN202410906757.0 (publication number CN118716981A) discloses a hand-free flat plate mop, which comprises a flat plate mop with a wiping material, a mop rod rotatably connected to the flat plate mop, and a squeezing mechanism. The squeezing mechanism comprises a water squeezing frame with a handle, a water squeezing channel for inserting the flat plate mop, and the flat plate mop can be pulled up and down to push and squeeze the water squeezing channel. A squeezing piece is arranged in the water squeezing channel for squeezing the wiping material of the flat plate mop. A cavity is arranged for storing cleaning bodies. A transmission unit is arranged to at least partially act on the flat plate mop for transmitting the cleaning bodies in the cavity to the wiping material of the flat plate mop. The transmission unit has at least a working state and a waiting state. In the working state, at least part of the transmission unit contacts or tends to contact the wiping material of the flat plate mop to transmit the cleaning bodies to the wiping material. In the waiting state, the transmission unit stops transmitting the cleaning bodies to the wiping material. The squeezing piece and the transmission unit can act on the wiping material of the flat plate mop in the water squeezing channel, which can realize water scraping and cleaning, and can also use the cleaning bodies for cleaning, so that the cleaning and cleaning operation effect of the flat plate mop is better.
[0004] However, in the squeezing and cleaning process, excessive cleaning liquid is easily accumulated in the container, which causes the cleaning liquid to flow back to the wiping material from the transmission unit during the cleaning and squeezing process, and the wiping material after cleaning and squeezing is easy to leave cleaning liquid, thereby affecting the cleaning effect of the flat plate mop.
[0005] Further, because the squeezing member swings to a position where the opening of the rolling mouth is small, at this time, the squeezing member has a large squeezing and scraping force on the wiping material, which causes the squeezing member to push the cleaning liquid to and concentrate on the lower end of the wiping material, the cleaning liquid is unevenly distributed, and the cleaning of the wiping material is affected. In the cleaning operation state, it is better to have more water in the wiping material, but the squeezing mechanism of the foregoing mop can squeeze most of the water on the wiping material at one time, which further affects the cleaning of the wiping material.
[0006] Therefore, the foregoing hand-washing-free flat mop can be further improved. Invention content
[0007] The technical problem to be solved by the utility model is to provide a self-rolling horizontal plate mop with a cleaning function which can effectively avoid the backflow of excess soap liquid in the cleaning box to the wiping material and effectively improve the cleaning and squeezing effect.
[0008] The utility model adopts the technical scheme that a self-rolling horizontal plate mop with a cleaning function comprises a mop rod and a mop head with a wiping material rotatably connected to the lower end of the mop rod, the mop rod is provided with a squeezing frame body which slides up and down along the mop rod, the squeezing frame body is provided with a rolling water channel for the mop head to pass through, a rolling water piece is installed in the rolling water channel, a cleaning cavity is arranged in the squeezing frame body to accommodate cleaning soap, a transfer component is arranged on the cleaning cavity to scrape the cleaning soap and send the scraped cleaning soap to the wiping material entering the rolling water channel, and a liquid discharge channel is arranged on the surrounding wall of the cleaning cavity to discharge the liquid in the cleaning cavity to the outside of the squeezing frame body.
[0009] In order to facilitate assembly, the squeezing frame body is provided with a mounting cavity, a box body is installed in the mounting cavity, the inner cavity of the box body constitutes the cleaning cavity, a first liquid discharge hole is formed in the box body, and the first liquid discharge hole directly constitutes the liquid discharge channel.
[0010] As an improvement, a second liquid discharge hole is formed in the surrounding wall of the mounting cavity, and the second liquid discharge hole also constitutes the liquid discharge channel.
[0011] Of course, a concave cavity can also be directly formed in the squeezing frame body, the concave cavity directly constitutes the cleaning cavity, and the liquid discharge channel directly penetrates the squeezing frame body.
[0012] Further improvement, the box body is constrained in the squeezing frame body and can be lifted and lowered; the box body can be positioned at a working position and an initial position, at the working position, the transfer component can contact the wiping material on the mop head entering the rolling water channel, and at the initial position, the transfer component is away from the wiping material on the mop head entering the rolling water channel. This structure makes the transfer component only transfer the cleaning material in the box body to the wiping material on the mop head during the cleaning operation, and when the transfer component is not in contact with the wiping material, it automatically switches to the rinsing and squeezing operation, and the use is more humanized.
[0013] In order to facilitate the driving of the box body to be lifted, the above-mentioned extrusion frame body is provided with a driving member for driving the box body to be lifted. The driving member and the box body can adopt a rack and pinion lifting structure, a lever structure or other similar structures.
[0014] Further improvement, the above-mentioned driving member is constrained in the extrusion frame body and can slide left and right, and a linkage structure is provided between the box body and the limiting member, so that the sliding of the limiting member drives the box body to be lifted.
[0015] As a preferred linkage structure, the above-mentioned linkage structure includes a guide groove provided on the side wall of the box body and a driving column provided on the driving member, the driving column is placed in the guide groove and can slide along the guide groove, and the sliding of the driving member makes the driving column be placed in different positions of the guide groove, thereby driving the box body to be lifted. This linkage structure is simple, convenient to process, and has good stability.
[0016] As a preferred structure, the above-mentioned guide groove has an upper horizontal groove part, a lower horizontal groove part and an inclined groove part, the upper horizontal groove part is located above the lower horizontal groove part and is arranged left and right with a spacing, and the inner end of the upper horizontal groove part and the inner end of the lower horizontal groove part are communicated through the inclined groove part; the driving column slides along the inclined groove part to the upper horizontal groove part, the box body is lowered to the working position, the driving column slides along the inclined groove part to the lower horizontal groove part, and the box body is lifted to the initial position. When the box body is subjected to the vertical force from the driving of the extrusion roller, the upper horizontal groove part and the lower horizontal groove part are horizontally arranged, which plays a locking role and makes the driving column not easy to be subjected to lateral force, and the limiting member always remains in the original position. Only by operating the limiting member can the use mode of the extrusion frame be changed, and the working stability is better.
[0017] In order to facilitate the sliding of the driving member, the above-mentioned driving member is further provided with an operation end which is exposed to the extrusion frame body.
[0018] As a specific structure of the transfer component, the above-mentioned transfer component is a transmission roller installed at the bottom opening of the box body, the transmission roller can rotate around its own axis to scrape the cleaning soap, and the transmission roller is driven to rotate around its own axis by the wiping material on the mop head moving in the water channel, thereby scraping the cleaning soap in the box body and taking the scraped cleaning soap to the wiping material. The wiping material contacted by the transmission roller can cover the cleaning soap.
[0019] As preferred, the box is provided with an elastic member which directly or indirectly presses the cleaning soap against the transmission roller. The elastic member directly or indirectly presses the cleaning soap against the transmission roller, ensuring that the transmission roller can scrape the cleaning soap when rotating, and the scraped cleaning soap is delivered to the wiping material via the rotating transmission roller. The elastic member can be a spring or a spring sheet or elastic rubber.
[0020] Compared with the prior art, the advantages of the flat mop are as follows: when cleaning, the wiping material is flushed with water, the reciprocating moving squeezing frame body, the transfer component scrapes the cleaning soap and sends the scraped cleaning soap to the wiping material entering the water channel, the mop head reciprocates through the water channel, and the water squeezing member can squeeze and scrape the wiping material combined with the mixed cleaning soap and water, so that the wiping material is deeply cleaned; after cleaning for several times, the wiping material is squeezed and no longer flushed with water, the transfer component no longer sends the cleaning soap to the wiping material, the mop head reciprocates through the water channel, and the water squeezing member can repeatedly squeeze and scrape the wiping material, so that the wiping material is fully squeezed, and the working principle is the same as that of the traditional self-watering mop; importantly, at the beginning of the squeezing, the liquid in the cleaning cavity is fully drained through the liquid discharge channel, and the cleaning material will not flow back to the wiping material, so that the cleaning and squeezing effect is better. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a perspective structural schematic view of the flat mop embodiment (cleaning mode);
[0022] Figure 2 It is a perspective view of the water squeezing frame in the flat mop embodiment Figure 1 (cleaning mode);
[0023] Figure 3 It is a perspective view of the water squeezing frame in the flat mop embodiment Figure 2 (cleaning mode);
[0024] Figure 4 It is a sectional view of the water squeezing frame in the flat mop embodiment Figure 1 (cleaning mode);
[0025] Figure 2 It is a sectional view of the water squeezing frame in the flat mop embodiment Figure 6 (cleaning mode);
[0026] Figure 1 It is a perspective view of the water squeezing frame in the flat mop embodiment Figure 7 (cleaning mode);
[0027] Figure 1 It is a perspective view of the water squeezing frame in the flat mop embodiment Figure 8 (rinsing and squeezing mode);
[0028] Figure 2 It is a perspective view of the water squeezing frame in the flat mop embodiment Figure 9(rinse wringing mode);
[0029] Figure 10 is a sectional view of the wringer in the flat mop embodiment (rinse wringing mode);
[0030] Figure 1 is a perspective view of the wringer after removing the wringer body in the flat mop embodiment Figure 11 (rinse wringing mode);
[0031] Figure 1 is a perspective exploded view of the wringer in the flat mop embodiment Figure 12 ;
[0032] Figure 2 is a perspective exploded view of the wringer in the flat mop embodiment Figures 1-12 . DETAILED DESCRIPTION
[0033] The utility model will be described in further detail below in conjunction with the drawings.
[0034] As Figures 1-6 shown, it is a preferred embodiment of the self-wringing flat mop with cleaning function.
[0035] The self-wringing flat mop with cleaning function comprises a mop rod 9, a mop head 2 with a wiping material 4 rotatably connected to the lower end of the mop rod 9, and a wringer body 1 arranged on the mop rod 9 and capable of sliding up and down along the mop rod 9, wherein the wringer body 1 has a water-wringing channel D for the mop head 2 to pass through, a water-wringing element 3 is installed in the water-wringing channel D, a cleaning cavity Q is arranged in the wringer body 1 for accommodating a cleaning soap 10, and a transfer component 7 is arranged on the cleaning cavity Q for scraping the cleaning soap 10 and transferring the scraped cleaning soap 10 to the wiping material 4 entering the water-wringing channel D.
[0036] A liquid discharge channel is arranged on the surrounding wall of the cleaning cavity Q for discharging the liquid in the cleaning cavity Q to the outside of the wringer body 1. An installation cavity 1a is arranged in the wringer body 1, a box body 6 is installed in the installation cavity 1a, the inner cavity of the box body 6 constitutes the cleaning cavity Q, a first liquid discharge hole S1 is opened on the box body 6, and the first liquid discharge hole S1 directly constitutes the liquid discharge channel; a second liquid discharge hole S2 is opened on the surrounding wall of the installation cavity 1a, and the second liquid discharge hole S2 also constitutes the liquid discharge channel.
[0037] The box body 6 is constrained in the wringer body 1 and can be lifted and lowered; the box body 6 can be positioned in a working position and an initial position, in the working position, the transfer component 7 can be in contact with the wiping material on the mop head 2 entering the water-wringing channel D, and in the initial position, the transfer component 7 is away from the wiping material 4 on the mop head 2 entering the water-wringing channel D.
[0038] The extrusion frame body 1 is provided with a driving component 5 for driving the box body 6 to rise and fall. The driving component 5 also has an operating end 5a that protrudes from the extrusion frame body 1. The driving component 5 is constrained within the extrusion frame body 1 and can slide left and right. A linkage structure is provided between the box body 6 and the driving component 5, so that the sliding of the driving component 5 drives the box body 6 to rise and fall. The linkage structure includes a guide groove 61 provided on the side wall of the box body 6 and a driving column 51 provided on the driving component 5. The driving column 51 is placed in the guide groove 61 and can slide along the guide groove 61. The sliding of the driving component 5 causes the driving column 51 to be placed at different positions in the guide groove 61, thereby driving the box body 6 to rise and fall.
[0039] In this embodiment, the guide groove 61 has an upper horizontal groove 611, a lower horizontal groove 612, and an inclined groove 613. The upper horizontal groove 611 is located above the lower horizontal groove 612 and is spaced apart from each other on the left and right. The inner end of the upper horizontal groove 611 and the inner end of the lower horizontal groove 612 are connected through the inclined groove 613. The drive column 51 slides along the inclined groove 613 to the upper horizontal groove 611, and the box 6 descends to the working position. The drive column 51 slides along the inclined groove 613 to the lower horizontal groove 612, and the box 6 rises to the initial position.
[0040] The transfer component 7 is a transfer roller installed at the bottom opening of the housing 6. The transfer roller rotates around its own axis to scrape the cleaning soap 10. The transfer roller is driven to rotate by friction from the wiping material on the mop head 2, which moves within the water rinsing channel D. An elastic element 8 is provided inside the housing 6, which directly or indirectly presses the cleaning soap 10 against the transfer roller.
[0041] The working process and principle of this embodiment are as follows:
[0042] Cleaning modes, such as Figures 7-10 As shown, the sliding drive 5 and drive column 51 slide along the inclined groove 613 to the upper horizontal groove 611, the box body 6 descends to the working position, and the transfer component 7 can contact the wiping material 4 on the mop head 2 passing through the water rinsing channel D; the extrusion frame body 1 is pushed back and forth, and the transfer component 7 is driven by the wiping material 4 sliding back and forth in the water rinsing channel D to rotate around its own axis. Then the transfer component 7 scrapes the cleaning material 10 in the box body 6 and brings it to the wiping material 4. The wiping material 4 contacted by the transfer component 7 can cover the cleaning material 10. After the extrusion frame body 1 is pushed back and forth, the cleaning is completed.
[0043] Rinse and wring dry mode, such as As shown, the reverse sliding limiting piece 5 is driven to slide along the inclined groove part 613 to the lower horizontal groove part 612, the box body 6 is lifted to the initial position, the transfer part 7 cannot contact the wiping article 4 on the mop head 2 passing through the water channel D, the reciprocating pushing frame body 1 is pushed, the mop head 2 reciprocates through the water channel D, the water channel 3 can apply a larger water channeling force to the wiping article 4, and the wiping article is fully squeezed and dried. The working principle of the traditional squeezing water frame is the same. At the beginning of the squeezing, the liquid (soap water) remaining in the cleaning cavity Q has been fully discharged through the liquid discharge channel S, and there is no backflow of cleaning material to the wiping article 4, and the cleaning and squeezing effect is better.
[0044] It should be noted that in the description of the present embodiment, the terms "front, rear, left, right, inner, outer, upper and lower" indicate the orientation or positional relationship shown in the drawings, and are only used for the convenience of describing the present application 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 application. The terms "mounting", "connection", "connection" 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 present application can be understood according to the specific circumstances.
Claims
1. A self-sweeping horizontal board mop with cleaning function, comprising a mop handle (9) and a mop head (2) with a wiping agent (4) rotatably connected to the lower end of the mop handle (9), wherein the mop handle (9) is provided with a squeegee body (1) that slides up and down along the mop handle (9), the squeegee body (1) having a squeegee channel (D) through which the mop head (2) passes; a squeegee component (3) is installed in the squeegee channel (D); the squeegee body (1) is provided with a cleaning chamber (Q) for accommodating cleaning soap (10), and the cleaning chamber (Q) is provided with a transfer component (7) for scraping the cleaning soap (10) and sending the scraped cleaning soap (10) to the wiping agent (4) entering the squeegee channel (D); characterized in that: The cleaning chamber (Q) is provided with a drainage channel on its surrounding wall to discharge the liquid inside to the outside of the extruder body (1).
2. The self-straightening level board mop with cleaning function according to claim 1, characterized in that: The extrusion frame body (1) is provided with an installation cavity (1a), and a box body (6) is installed in the installation cavity (1a). The inner cavity of the box body (6) constitutes the cleaning cavity (Q). A first drain hole (S1) is opened on the box body (6), and the first drain hole (S1) directly constitutes the drain channel.
3. The self-straightening level board mop with cleaning function according to claim 2, characterized in that: The mounting cavity (1a) has a second drain hole (S2) on its surrounding wall, and the second drain hole (S2) also constitutes the drain channel.
4. The self-straightening level board mop with cleaning function according to claim 2, characterized in that: The box (6) is constrained within the extrusion frame body (1) and can be raised and lowered; the box (6) can be positioned in a working position and an initial position. In the working position, the transfer component (7) can contact the wiping material on the mop head (2) entering the water rinsing channel (D); in the initial position, the transfer component (7) leaves the wiping material (4) on the mop head (2) entering the water rinsing channel (D).
5. The self-straightening level board mop with cleaning function according to claim 4, characterized in that: The extrusion frame body (1) is provided with a drive component (5) for driving the box body (6) to rise and fall.
6. The self-straightening level board mop with cleaning function according to claim 5, characterized in that: The driving component (5) is constrained within the extrusion frame body (1) and can slide left and right. A linkage structure is provided between the box body (6) and the driving component (5), so that the sliding of the driving component (5) drives the box body (6) to rise and fall.
7. The self-straightening level board mop with cleaning function according to claim 6, characterized in that: The linkage structure includes a guide groove (61) on the side wall of the box (6) and a drive column (51) on the drive member (5). The drive column (51) is placed in the guide groove (61) and can slide along the guide groove (61). The sliding of the drive member (5) causes the drive column (51) to be placed in different positions of the guide groove (61), thereby driving the box (6) to rise and fall.
8. The self-straightening level board mop with cleaning function according to claim 7, characterized in that: The guide groove (61) has an upper horizontal groove (611), a lower horizontal groove (612), and an inclined groove (613). The upper horizontal groove (611) is located above the lower horizontal groove (612) and is spaced apart on the left and right. The inner end of the upper horizontal groove (611) and the inner end of the lower horizontal groove (612) are connected through the inclined groove (613). The drive column (51) slides along the inclined groove (613) to the upper horizontal groove (611), the box (6) descends to the working position, the drive column (51) slides along the inclined groove (613) to the lower horizontal groove (612), and the box (6) rises to the initial position.
9. The self-straightening level board mop with cleaning function according to claim 6, characterized in that: The drive unit (5) is also provided with an operating end (5a) that exposes the extruder body (1).
10. The self-sweeping level board mop with cleaning function according to claim 2, characterized in that: The transfer component (7) is a transfer roller installed at the bottom opening of the box (6). The transfer roller rotates around its own axis to scrape the cleaning soap (10). The transfer roller is driven to rotate by the wiping material (4) on the mop head (2) that moves in the water rinsing channel (D). The box (6) is provided with an elastic element (8), which directly or indirectly presses the cleaning soap (10) against the transfer roller.
Citation Information
Patent Citations
Squeezing mechanism for flat mop and hand-washing-free flat mop
CN118716981A
Water squeezing frame and mop
CN217610928U