Flat mop cleaning tool
By setting a driving member in the flat mop cleaning tool, and controlling the opening and closing of the water outlet by the rotation of the mop board, the problem that the water outlet cannot be continuously discharged in the prior art is solved, and the cleaning efficiency and user experience are improved.
Patent Information
- Application Number
- CN202421517820.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-30
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-06-30
AI Technical Summary
When existing flat mops are rotated and cleaned, the water outlet cannot be continuously discharged, resulting in low cleaning efficiency and laborious operation.
A flat mop cleaning tool is designed. By setting a driving member in the cleaning bucket, the driving member of the mop board is used to open or close the water outlet, so as to realize continuous water outlet of the water outlet.
The stable and continuous water outlet is achieved, the wetting efficiency is improved, the labor intensity of user operations is reduced, and the user experience is improved.
Smart Images

Figure CN223041484U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cleaning equipment, in particular to a flat mop cleaning tool. Background Art
[0002] With the improvement of people's material living standards, mops have become indispensable in life, and there are many types of mops on the market. For example, flat mops are favored by consumers because of their lightness and ease of use. There are also various mop buckets that match them. For traditional flat mops, when cleaning through a mop bucket, the flat mop moves up and down in the mop bucket and then drives the scraper to move to open or close the water outlet that flows to the wipes. When the mop board moves downward, the water outlet can be opened, and when the mop board is pulled back upward, the water outlet is closed, so that the water outlet cannot continuously discharge water during the cleaning process of the mop board, and the cleaning efficiency of the wipes is low. Moreover, when the mop board moves up and down in the mop bucket for cleaning, it is necessary to repeatedly lift and press the mop together with the mop board from the mop bucket, which is laborious and the user experience is poor. Utility Model Content
[0003] 1. Technical issues to be resolved
[0004] The utility model mainly solves the deficiencies in the prior art, and specifically relates to a flat mop cleaning tool, which specifically solves the problem that the water outlet of the existing flat mop cannot continuously discharge water during rotation cleaning, resulting in low cleaning efficiency and laborious cleaning of the wiped object.
[0005] (II) Technical solution
[0006] The utility model relates to a flat mop cleaning tool, comprising a flat mop and a cleaning bucket, wherein the flat mop comprises a mop rod and a mop board connected to the mop rod, a wiping object is arranged on the side of the mop board away from the mop rod; the cleaning bucket comprises a barrel body, a first water outlet connected to a water source is arranged in the barrel body, when the mop board is extended into the barrel body, the first water outlet faces the wiping object; a driving member for opening or closing the first water outlet is arranged in the barrel body; the barrel body comprises a first mating end, which is suitable for supporting the mop board so that the mop board can rotate around the central axis of the mop rod; when the mop board is extended into the barrel body and supported on the first mating end, the wiping object abuts against the driving member, the mop board is driven to rotate, triggering the driving member to open the first water outlet, thereby causing clean water to flow from the first water outlet to the wiping object.
[0007] The advantage is that by rotating the mop plate to drive and trigger the driving member to open the first water outlet for water discharge, the user does not need to manually open the first water outlet, avoiding dirty hands and providing a better user experience. At the same time, when the flat mop plate is abutted against the first mating end and the flat mop plate is rotated for cleaning operation, the user does not need to repeatedly lift or press down the mop rod and the mop plate up and down. The user operation is easier and more convenient. Orienting the first water outlet towards the wiping object facilitates the clear water discharged from the first water outlet to directly flow towards the wiping object. By driving the rotation of the flat mop plate to open the first water outlet, when the mop plate rotates, the first water outlet can stably and continuously moisten the wiping object installed on the mop plate, with a higher moistening efficiency, and thus it is more convenient for cleaning.
[0008] In an optional embodiment, when the mop plate enters the barrel for cleaning, the wiping object abuts against the driving member, and when the mop plate rotates, the wiping object drives the driving member to move or deform to open the first water outlet.
[0009] The advantage is that the first water outlet is opened by means of the movement or deformation of the driving member in a mechanical manner, with a simpler structure, better stability, and less interference from the environment.
[0010] In an optional embodiment, the driving member opens the first water outlet when moving in a first direction; the driving member closes the first water outlet when moving in a second direction.
[0011] In an optional embodiment, the first direction is opposite to the second direction.
[0012] In an optional embodiment, the driving member opens the first water outlet when deforming in a first direction; the driving member closes the first water outlet when deforming in a second direction.
[0013] In an optional embodiment, the first direction is opposite to the second direction.
[0014] In an optional embodiment, the driving member resets or returns to its original state to close the first water outlet, thereby preventing the clear water from flowing out of the first water outlet.
[0015] In an optional embodiment, the side wall of the driving member abuts against the first water outlet to close the first water outlet.
[0016] In an optional embodiment, when the mop plate rotates, the wiping object drives the driving member to close the first water outlet.
[0017] The advantage is that it is convenient for the user to selectively close or open the first water outlet according to the cleaning state of the mop, with stronger controllability.
[0018] In an alternative embodiment, when the mop board is removed from the bucket body, the driving member closes the first water outlet.
[0019] The advantage is that the operation of closing the first water outlet does not require the user to manually close it, making the operation more convenient. At the same time, it can also prevent the waste of water resources caused by the user forgetting to close the first water outlet after finishing cleaning the mop board.
[0020] In an alternative embodiment, the bucket body includes a diversion groove, the diversion groove is communicated with an external water source, the driving member is arranged on one side of the diversion groove facing the first mating end, and the first water outlet is arranged at the connection between the diversion groove and the driving member and is adapted to be opened or closed along with the movement of the driving member.
[0021] In an alternative embodiment, the bucket body further includes a water guiding portion, the water guiding portion is arranged on one side of the opening of the diversion groove and is connected with the diversion groove in a limiting manner, the first water outlet is arranged on the water guiding portion, and the driving member abuts against the side of the water guiding portion where the first water outlet is located, so that after being driven to move, the driving member is adapted to block or open the first water outlet.
[0022] In an alternative embodiment, a convex portion protrudes from the side of the water guiding portion facing the driving member, the first water outlet is arranged on the side wall of the convex portion, and the driving member abuts against the side wall of the convex portion where the first water outlet is located.
[0023] In an alternative embodiment, the cross-sectional shape of the convex portion is triangular, trapezoidal or polygonal.
[0024] In an alternative embodiment, the driving member is a hollow structure that contracts in a direction away from the water guiding portion. One end of the driving member away from the water guiding portion has a water guiding port, and the other end of the driving member is sleeved on the water guiding portion and abuts against the first water outlet. When the driving member opens the first water outlet, the first water outlet is communicated with the water guiding port, so that the clear water flowing out of the first water outlet flows to the wiping object through the diversion of the driving member from the water guiding port.
[0025] In an alternative embodiment, the water guiding port is a flat strip-shaped hole.
[0026] In an alternative embodiment, the included angle between the water outlet direction of the first water outlet and the water outlet direction of the water guiding port is α, where 0° ≤ α ≤ 90°.
[0027] In an alternative embodiment, an outwardly turned fixed outer edge is provided on the side of the driving member away from the water guiding port, and the fixed outer edge is connected with the water guiding portion to prevent the driving member from falling off when triggered.
[0028] In an alternative embodiment, the barrel body further includes a fixing portion disposed outside the water guiding portion and limitingly connected to the diversion groove, and the driving member partially passes through the fixing portion, so that the fixing outer edge is clamped between the fixing portion and the water guiding portion.
[0029] In an alternative embodiment, a clear water tank is further disposed inside the barrel body. The clear water tank is disposed at the upper part of the barrel body and has a second water outlet. The first water outlet and the second water outlet are communicated through a diversion channel.
[0030] In an alternative embodiment, the diversion channel extends obliquely in the vertical direction along the inner wall of the barrel body.
[0031] In an alternative embodiment, the second water outlet is higher than the first water outlet.
[0032] In an alternative embodiment, the driving member is made of a flexible material.
[0033] In an alternative embodiment, a plurality of the first water outlets are provided at intervals, and a plurality of the driving members are also provided at intervals to be adapted to the first water outlets.
[0034] In an alternative embodiment, the mop plate includes a connecting member connected to the mop rod and a side plate movably connected to the side of the connecting member. The side plate is driven to rotate towards the direction of the mop rod to enter the cleaning state.
[0035] In an alternative embodiment, in the cleaning state, the connecting member and the side plate form an "H" shape, a "U" shape or an "n" shape.
[0036] In an alternative embodiment, the mop rod includes a first rod and a second rod sleeved thereon. A rotating shaft connected to the mop plate is provided in the mop rod. The relative movement of the first rod with respect to the second rod drives the rotating shaft to rotate, and then drives the mop plate to rotate.
[0037] In an alternative embodiment, the mop plate includes a second mating end. When the mop plate enters the barrel body for cleaning, the mop plate abuts against the first mating end through the second mating end to cooperate with the barrel body, so that the mop plate can rotate circumferentially around the first mating end. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] To more clearly illustrate the specific embodiments of the present utility model or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0039] Figure 1 Schematic perspective view of the cleaning tool according to an embodiment of the present utility model;
[0040] Figure 2 Schematic cross-sectional view of the cleaning tool according to an embodiment of the present utility model;
[0041] Figure 3 Schematic partial cross-sectional view of the cleaning tool according to an embodiment of the present utility model;
[0042] Figure 4 Schematic partial cross-sectional view of the cleaning tool from another perspective according to an embodiment of the present utility model;
[0043] Figure 5 Schematic view of the driving member structure of the cleaning tool according to an embodiment of the present utility model;
[0044] Figure 6 Schematic view of the diversion part structure of the cleaning tool according to an embodiment of the present utility model;
[0045] Figure 7 Schematic partial cross-sectional view of the cleaning tool according to an embodiment of the present utility model;
[0046] Explanation of reference numerals:
[0047] 10, flat mop; 11, mop rod; 111, first rod; 112, second rod; 113, rotating shaft; 12, mop board; 121, connecting member; 122, side plate; 13, second mating end;
[0048] 20, cleaning bucket; 21, bucket body; 211, first water outlet; 212, water guiding part; 213, protruding part; 214, fixing part; 22, driving member; 221, water guiding port; 222, fixing edge; 23, clean water tank; 231, second water outlet; 24, diversion groove; 25, first mating end. Detailed embodiments
[0049] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0050] Referring to Figure 1-7 , the present utility model provides a flat mop 10 cleaning tool, including a flat mop 10 and a cleaning bucket 20. The flat mop 10 includes a mop rod 11 and a mop plate 12 connected to the mop rod 11. A wiping material is provided on one side of the mop plate 12 facing away from the mop rod 11. The cleaning bucket 20 includes a bucket body 21. A first water outlet 211 connected to a water source is provided inside the bucket body 21. When the mop plate 12 extends into the bucket body 21, the first water outlet 211 faces the wiping material. A driving member 22 for opening or closing the first water outlet 211 is provided inside the bucket body 21. The bucket body 21 includes a first mating end 25 adapted to support the mop plate 12 so that the mop plate 12 can rotate around the central axis of the mop rod 11. When the mop plate 12 extends into the bucket body 21 and is supported on the first mating end 25, the wiping material abuts against the driving member 22, and the mop plate 12 is driven to rotate to trigger the driving member 22 to open the first water outlet 211, so that clear water is guided from the first water outlet 211 to the wiping material.
[0051] The flat mop 10 includes a mop rod 11 and a mop plate 12, wherein the mop rod 11 is rotatably connected to the mop plate 12. The preferred rotational connection method in this example is a hinge connection.
[0052] The mop plate 12 of the flat mop 10 is an integral flat plate. The mop rod 11 is rotatably arranged on one side of the mop plate 12 through a rotating shaft, and the wiping material is installed on the other side of the mop plate 12.
[0053] It can be understood that the mop plate 12 includes a main plate and a sub-plate. The sub-plate is rotatably arranged on the side of the main plate. The mop rod 11 is rotatably connected to the main plate, and the wiping material is installed on the sub-plate, or the wiping material can also be installed on the main plate and the sub-plate at the same time.
[0054] It can be understood that the mop plate 12 includes a connecting member 121 and a side plate 122, which can only play a connecting role. The sub-plate is rotatably arranged on the side of the connecting member 121. The mop rod 11 is rotatably connected to the connecting member 121, and the wiping material is installed on the side plate 122.
[0055] The wiping object is a structure that comes into contact with the surface to be cleaned for wiping, such as a mop. The wiping object is connected to the mop board 12 by means of glue, snap fasteners or Velcro, etc.
[0056] The cleaning bucket 20 includes a bucket body 21. The bucket body 21 is used to form a space for cleaning the mop. A first water outlet 211 is provided in the bucket body 21. When the mop enters the cleaning bucket 20, the wiping object on the mop board 12 is opposite to the first water outlet 211. When clear water flows out from the first water outlet 211, it can flow onto the wiping object, thereby cleaning the mop; the first water outlet 211 is connected to an external water source or a water tank 23 is provided in the bucket body 21 to communicate the first water outlet 211 with the water tank 23. In this example, the connection method between the water source and the first water outlet 211 is not limited, as long as clear water can flow out through the first water outlet 211.
[0057] The first mating end 25 is used to support the mop board 12, so that the mop board 12 can have a support point in the bucket body 21 when rotating in the bucket body 21. The specific structure of the first mating end 25 is not limited in this example, as long as it can support the mop board 12. It can be understood that the mop board 12 is provided with a second mating end 13. When the mop board 12 is placed in the bucket body 21 for cleaning, the mop board 12 is in mating contact with the first mating end 25 through the second mating end 13, so that the mop board 12 is supported in the bucket body 21. When the mop board 12 is driven to rotate, it is more convenient for the mop board 12 to rotate around the central axis of the mop rod 11 and will not be stuck.
[0058] The driving member 22 is a structural member for controlling the opening or closing of the first water outlet 211. In this example, preferably, when the driving member 22 blocks the first water outlet 211, the first water outlet 211 is closed, and when the driving member 22 moves away from blocking the first water outlet 211, the first water outlet 211 is opened.
[0059] The driving member 22 moves under the drive of the mop board 12. Specifically, when the mop extends into the bucket body 21 for cleaning, the mop board 12 cooperates with the driving member 22 to form a linkage. When the mop board 12 is driven to rotate by an external force, the mop board 12 can drive the driving member 22 to move or deform to open the first water outlet 211, so that the water in the water tank 23 can flow onto the wiping object. That is, when the mop board 12 rotates and cleans in the mop bucket, the first water outlet 211 can continuously supply water to the mop board 12 to clean the wiping object, with higher cleaning efficiency. At the same time, the opening of the first water outlet 211 is completed by the drive of the mop board 12, without the need for the user to manually open it, which is convenient to operate and provides a better user experience.
[0060] Wherein, when the mop is removed from the barrel body 21, the driving member 22 moves under the action of its own elastic force or an external driving force to close the first water outlet 211, so as to prevent clean water from flowing to the wiping object. The operation of closing the first water outlet 211 does not require the user to manually close it, which is more convenient to operate. At the same time, it can also prevent the waste of water resources caused by the user forgetting to close the first water outlet 211 after finishing cleaning the mop board 12.
[0061] It can be understood that the mop board 12 can rotate in the barrel body 21 along a preset direction to open the first water outlet 211. At the same time, the mop board 12 can rotate in the barrel body 21 along a direction opposite to the preset direction to close the first water outlet 211.
[0062] It can be understood that after the mop board 12 is removed from the barrel body 21, the driving member 22 can be triggered by the mop board 12 to close the first water outlet 211.
[0063] Wherein, the side wall of the driving member 22 abuts against or disengages from the first water outlet 211 to close or open the first water outlet 211. Specifically, the way of closing the first water outlet 211 by abutting the side wall of the driving member 22 against the first water outlet 211 is simpler and also convenient for assembly. In this example, it is preferably that the inner side wall of the driving member 22 abuts against the first water outlet 211. After the first water outlet 211 is opened, the clean water flowing out of the first water outlet 211 can flow along the driving member 22 to the wiping object. Because the mop board 12 needs to trigger the driving member 22, that is, the driving member 22 will abut against the wiping object during cleaning. When the clean water flows along the driving member 22 to the wiping object, it can effectively prevent the clean water from spilling out and improve the utilization rate of the clean water.
[0064] It can be understood that the outer side wall of the driving member 22 abuts against the first water outlet 211. After the first water outlet 211 is opened, the clean water flowing out of the first water outlet 211 can directly flow to the wiping object or flow along the driving member 22 to the wiping object.
[0065] In order to ensure the sealing performance of the first water outlet 211 when it is closed, some sealing structural members can also be provided on the side wall of the driving member 22. When the side wall of the driving member 22 abuts against the first water outlet 211, the sealing member can prevent water leakage. The structure of the sealing member is not limited in this example.
[0066] Among them, when the mop plate 12 enters the barrel body 21 for cleaning, the wiping material abuts against the driving member 22. When the mop plate 12 rotates, the wiping material drives the driving member 22 to move or deform to open or close the first water outlet 211. Specifically, in order for the mop plate 12 to drive the driving member 22 to move or deform, the mop plate 12 needs to abut against the driving member 22 at least, so that the wiping material installed on the mop plate 12 can abut against the driving member 22, facilitating the clear water to flow along the driving member 22 onto the wiping material to improve the utilization rate of the clear water. At the same time, the driving member 22 can also have a certain scraping or squeezing effect on the wiping material to improve the cleaning efficiency of the wiping material. In this example, the first water outlet 211 is opened or closed by the mechanical method of the movement or deformation of the driving member 22, with a simpler structure, better stability, and less interference from the environment.
[0067] Among them, the driving member 22 opens the first water outlet 211 when moving in the first direction; the driving member 22 closes the first water outlet 211 when moving in the second direction. In this example, the preferred movement mode of the driving member 22 is rotation, that is, the driving member 22 rotates in the first direction to open the first water outlet 211 and rotates in the second direction to abut and close the first water outlet 211. The positions of the first direction and the second direction are driven by the mop plate 12. In this example, the first direction and the second direction are preferably opposite, that is, the first direction is the driven direction, and the second direction is the reset direction opposite to the first direction.
[0068] It can be understood that the movement mode of the driving member 22 is translation. The driving member 22 moves a certain distance in the first direction after being driven to open the first water outlet 211, and the driving member 22 moves a certain distance in the second direction after being driven to abut and close the first water outlet 211, which can also achieve the inventive concept of this solution.
[0069] It can be understood that the first direction and the second direction can be two irrelevant directions, such as the control direction of a knob.
[0070] Among them, the driving member 22 opens the first water outlet 211 when deforming in the first direction; the driving member 22 closes the first water outlet 211 when deforming in the second direction. Specifically, when the driving member 22 has a certain elasticity, the driving member 22 closes the first water outlet 211 at the preset position. When the driving member 22 rotates and deforms in the first direction, it opens the first water outlet 211. When the driving member 22 rotates and deforms in the second direction, it abuts and closes the first water outlet 211. In this example, preferably, the second direction is opposite to the first direction and is the reset direction of the first direction, so that the driving member 22 is driven when moving in the first direction and can be driven by its own restoring force in the second direction, and the driving method is simpler.
[0071] It can be understood that the first direction and the second direction can be two unrelated directions, such as the control direction of a knob.
[0072] Wherein, when the mop plate 12 rotates, it presses on the driving member 22 to drive the driving member 22 to move or deform. Specifically, only when the mop plate 12 presses on the driving member 22 to deform the driving member 22 can the contact area between the mop plate 12 and the driving member 22 be increased, and then it is more convenient to drive the driving member 22 to move or deform.
[0073] Wherein, when the mop plate 12 presses on the driving member 22, the driving member 22 has a tendency to tilt towards the direction of opening the first water outlet 211. Specifically, when the mop plate 12 presses on the driving member 22, the mop plate 12 squeezes the driving member 22 so that the driving member 22 has a tendency to tilt towards the first water outlet 211, thus facilitating the mop plate 12 to drive the driving member 22 to move or deform along a specified preset direction when rotating, so as to reduce the problem that when there are multiple driving members 22, the driving members 22 have different orientations after being driven.
[0074] Wherein, the driving member 22 resets or returns to its original state to close the first water outlet 211, thereby preventing the clear water from flowing out of the first water outlet 211. Specifically, the method of closing the first water outlet 211 by the reset or restoration of the driving member 22 to its original state is simpler and does not require a separate structure for closing the first water outlet 211, and the structure is simpler. In this example, the reset of the driving member 22 means that the driving member 22 is driven to return to its original position, shape or state.
[0075] Wherein, the barrel body 21 includes a diversion groove 24, the diversion groove 24 is communicated with an external water source, the driving member 22 is arranged on one side of the diversion groove 24 facing the first matching end 25, and the first water outlet 211 is arranged at the connection between the diversion groove 24 and the driving member 22 and is adapted to be opened or closed along with the movement of the driving member 22. Specifically, the diversion groove 24 generally has a certain length to adapt to the relatively long mop plate 12 in the vertical direction, so that the mop plate 12 can be evenly wetted by the clear water flowing out of the first water outlet 211. Since the diversion groove 24 is connected to the external water source, the external water source can fill the diversion groove 24, playing a certain role in temporarily storing the clear water; because the mop plate 12 cooperates with the first matching end 25 and the driving member 22 faces the first matching end 25, that is, the driving member 22 faces the mop plate 12, it is convenient for the mop plate 12 to abut against the driving member 22; arranging the first water outlet 211 at the connection between the diversion groove 24 and the driving member 22 facilitates opening or abutting and closing the first water outlet 211 through the driving member 22.
[0076] Among them, the barrel body 21 further includes a water guiding part 212. The water guiding part 212 is arranged on one side of the opening of the diversion groove 24 and is limit-connected to the diversion groove 24. The first water outlet 211 is arranged on the water guiding part 212. The driving member 22 abuts against the side of the water guiding part 212 where the first water outlet 211 is located, so that after the driving member 22 is driven to move, it is adapted to block or open the first water outlet 211. Specifically, in this example, preferably, the water guiding part 212 is installed on the diversion groove 24, and the water guiding part 212 plays a role in guiding the flow of clean water. Therefore, the first water outlet 211 is arranged on the water guiding part 212. The shape of the water guiding part 212 can form some structures similar to a water nozzle. The first water outlet 211 is arranged on the side of the water guiding part 212 away from the diversion groove 24 to facilitate guiding the clean water in the diversion groove 24 to the wiping object. The water guiding part 212 is cooperatively connected with the driving member 22. Further, the driving member 22 is arranged on the water guiding part 212 and can abut against the first water outlet 211 so that the first water outlet can be closed. The driving member 22 can be fixed on the water guiding part 212 by means of gluing, screws or threads, etc.
[0077] Among them, a convex part 213 protrudes from the side of the water guiding part 212 facing the driving member 22. The first water outlet 211 is arranged on the side wall of the convex part 213. The driving member 22 abuts against the side wall of the convex part 213 where the first water outlet 211 is located. Specifically, the convex part 213 protrudes and extends outward from the side of the water guiding part 212 facing away from the diversion groove 24. The first water outlet 211 is arranged on the side wall of the convex part 213. Since the driving member 22 is generally arranged perpendicular to the water guiding part 212, it is convenient for the side wall of the driving member 22 to abut against the first water outlet 211 of the water guiding part 212. In this example, preferably, the part of the driving member 22 abutting against the convex part 213 is a parallel structure, that is, the side walls of the two abutting parts are parallel to each other, so that the sealing performance of the first water outlet 211 is better, thereby reducing water leakage.
[0078] Among them, the cross-sectional shape of the convex part 213 is triangular or trapezoidal or polygonal. Specifically, in this example, preferably, the cross-sectional shape of the convex part 213 is triangular. One side of it is arranged on the water guiding part 212, and among the two adjacent sides to this side, one of them is provided with the first water outlet 211. On the one hand, the triangle has stability, and on the other hand, it can effectively avoid excessive water accumulation at the end of the convex part 213 away from the water guiding part 212. Of course, the cross-sectional shape of the convex part 213 can also be trapezoidal or other polygons, as long as the first water outlet 211 is arranged on the side adjacent to the side that coincides with the water guiding part 212. In this example, preferably, the convex part 213 and the water guiding part 212 are integrally arranged, and then the water guiding part 212 is provided with a water inlet communicated with the first water outlet 211. The water inlet can guide the clean water in the diversion groove 24 to the first water outlet 211.
[0079] It can be understood that the convex part 213 can form a separate part with the water guiding part 212, and the two are connected by assembly. Preferably, the two are hermetically connected at the assembly part, for example, provided with a sealing structure or coated with a sealing material.
[0080] Among them, the driving part 22 is a hollow structure that contracts in a direction away from the water guiding part 212. One end of the driving part 22 away from the water guiding part 212 has a water guiding port 221. The other end of the driving part 22 is sleeved on the water guiding part 212 and abuts against the first water outlet 211. When the driving part 22 opens the first water outlet 211, the first water outlet 211 is communicated with the water guiding port 221, so that the clear water flowing out of the first water outlet 211 flows to the wiping object through the diversion of the driving part 22. Specifically, the driving part 22 is arranged as a hollow structure, and a water guiding port 221 is also arranged at one end, which is convenient for the clear water flowing out of the first water outlet 211 to flow along the hollow interior of the driving part 22, so that the driving part 22 forms a diversion for the clear water. At the same time, because the driving part 22 is a hollow structure, the function of the driving part 22 is similar to that of a water pipe, and the water guiding port 221 is directly abutted against the wiping object, and the clear water flowing out of the driving part 22 directly flows onto the wiping object through the water guiding port 221, thereby avoiding the spillage of the clear water during the flowing process and improving the utilization rate of the clear water; the driving part 22 is sleeved on the water guiding part 212 to facilitate the inner wall of the driving part 22 to abut against the first water outlet 211 of the water guiding part 212.
[0081] Among them, the water guiding port 221 is a flat strip-shaped hole. Specifically, the flat strip-shaped hole can increase the water outlet width of the clear water. When the clear water flows to the rotating mop plate 12, it can increase the water outlet area as much as possible to improve the wetting speed of the mop plate 12, and thus improve the cleaning efficiency of the mop wiping object.
[0082] Among them, the included angle between the water outlet direction of the first water outlet 211 and the water outlet direction of the water guiding port 221 is α, where 0° ≤ α ≤ 90°. Specifically, when there is an included angle between the first water outlet 211 and the water guiding port 221, it is convenient to set an abutting structure at the turning point to prevent the first water outlet 211 from discharging water during the process of the clear water flowing from the first water outlet 211 to the water guiding port 221. In this example, preferably, α = 30° makes the plane where the first water outlet 211 is located an inclined plane, which is also convenient for the driving part 22 to rotate a small angle to abut against the first outlet or the driving part 22 to rotate a small angle to disengage from the abutment.
[0083] Wherein, on the side of the driving member 22 away from the water guiding port 221, there is an outwardly turned fixed outer edge, and the fixed outer edge is connected to the water guiding part 212 to prevent the driving member 22 from falling off when triggered. Specifically, the fixed outer edge is used to fix the driving member 22 on the water guiding part 212 so that the driving member 22 will not fall off when driven. In order to improve the firmness of the fixation of the driving member 22, the fixed outer edge is preferably arranged in a circle around the port on the side opposite to the water guiding port 221, and the connection mode between the fixed outer edge and the water guiding part 212 can be fixedly connected by means such as gluing, buckling or screwing; further, the fixed outer edge on the deformed side of the driving member 22 can be appropriately lengthened and widened to improve the firmness of the installation of the driving member 22.
[0084] Wherein, the barrel body 21 further includes a fixing part 214, the fixing part 214 is arranged outside the water guiding part 212 and is in limit connection with the diversion groove 24, and the driving member 22 is partially passed through the fixing part 214 so that the fixed outer edge is clamped between the fixing part 214 and the water guiding part 212. Specifically, the fixing part 214 is used to fix the driving member 22 on the one hand and to prevent the water guiding part 212 from falling off on the other hand. In this example, preferably, the fixing part 214 is arranged on the side of the water guiding part 212 away from the diversion groove 24 and is connected to the diversion groove 24 by buckling or screwing. The fixing part 214 is provided with a through hole for the driving part to pass through, and the width of the through hole is only enough for the part of the driving part with the water guiding port 221 to pass through. The width of the through hole is smaller than the width of the fixed edge 222, so that when the driving part passes through the through hole, the fixed edge 222 will not pass through the through hole, and then the fixed edge 222 remains between the water guiding part 212 and the fixing part 214, so that the fixed edge 222 is clamped by the water guiding part 212 and the fixing part 214, thereby fixing the fixed edge 222 and fixing the driving member 22. In this example, preferably, the length of the fixing part 214 is the same as the length of the water guiding part 212 to facilitate the limitation of the water guiding part 212.
[0085] Among them, a water tank 23 is also provided inside the barrel body 21. The water tank 23 is arranged at the upper part of the barrel body 21 and has a second water outlet 231. The first water outlet 211 and the second water outlet 231 are communicated through a diversion channel. Specifically, a separate water tank 23 is arranged inside the barrel body 21, so that the cleaning bucket 20 can be selectively moved according to the needs of users to adapt to different cleaning scenarios. In this example, preferably, the water tank 23 is arranged at the upper part of the barrel body 21. On the one hand, it is convenient to add water, and on the other hand, it is convenient to guide the water in the water tank 23 to the mop plate 12 by gravity. In this example, preferably, the water tank 23 is provided with a tank cover, and the tank cover is also provided with a water filling port, and a water plug is also arranged on the water filling port; the water tank 23 is provided with a second water outlet 231, and the second water outlet 231 is used to discharge the clear water in the water tank 23. A diversion channel is arranged between the first water outlet 211 and the second water outlet 231. The diversion channel can be a water pipe or a water tank. In this example, preferably, the diversion channel is arranged inside the barrel body 21, so that when the mop plate 12 extends into the barrel body 21 for cleaning, the diversion channel can guide the clear water to the wiping object, and the clear water can flow to the wiping object through the first water outlet 211 along the diversion channel.
[0086] It can be understood that the driving member 22 can control the on-off of the diversion channel by abutting against or opening the first water outlet 211; it can be understood that the driving member 22 can also control the on-off of the diversion channel by moving to squeeze or release the diversion channel; it can be understood that the driving member 22 can also control the on-off of the diversion channel by blocking or unblocking the diversion channel; it can be understood that the driving member 22 can also control the on-off of the diversion channel by opening or closing the water inlet end of the diversion channel. It can be understood that the driving member 22 can also be an electronic valve to control the on-off of the diversion channel.
[0087] Among them, the driving member 22 makes the diversion channel on or off by opening or closing the first water outlet 211. Specifically, the structure of making the diversion channel on or off by opening or closing the first water outlet 211 through the driving member 22 is simpler and will not damage the diversion channel. In this example, the way of opening or closing between the driving member 22 and the first water outlet 211 is not limited. In this example, preferably, the driving member 22 is in a limit connection when cooperating with the first water outlet 211 to close the first water outlet 211.
[0088] Among them, the diversion channel extends obliquely along the vertical direction on the inner wall of the barrel body 21. Specifically, since the mop plate 12 extends into the barrel body 21 along the vertical direction for cleaning operations, and the diversion channel is also arranged along the vertical direction, the speed of wetting the wiping object when the mop plate 12 rotates is faster, and the wetting efficiency of the wiping object is higher. The diversion channel is obliquely arranged to adapt to the state of the mop plate 12 during cleaning.
[0089] Among them, the second water outlet 231 is higher than the first water outlet 211. Specifically, in this example, preferably, the second water outlet 231 is higher than the first water outlet 211 in the vertical direction, so that the clear water in the water tank can flow from the second water outlet 231 to the first water outlet 211 under its own gravity, and then flow to the wiping object. As a result, no water conveyance structures such as pumps are required during the process of guiding the clear water from the clear water tank 23 to the wiping object, the structure is simple, the cost is lower, and the water guiding efficiency is higher.
[0090] Among them, the driving member 22 is made of a flexible material. Specifically, the driving member 22 can be one of silicone, rubber, thermoplastic elastomer materials, etc. The driving member 22 is set as a flexible material, which is convenient for the driving member 22 to be deformed by driving, and is also convenient for molding and assembly. The reset can also be realized by its own elastic force, so that a separate reset structural member does not need to be provided, and the structure is simpler.
[0091] Among them, a plurality of the first water outlets 211 are provided at intervals, and a plurality of the driving members 22 are also provided at intervals to match the first water outlets 211. Specifically, when a plurality of the first water outlets 211 are provided, a plurality of corresponding driving members 22 will also be provided, and then a plurality of water guiding ports 221 will be correspondingly provided. When the driving member 22 abuts against the wiping object, the water guiding ports 221 will also abut against the wiping object. When the plurality of water guiding ports 221 are arranged at intervals along the extending direction of the water guiding channel, the wiping object has a plurality of water guiding ports 221 abutting against the wiping object in the vertical direction, so that the wetting efficiency of the wiping object is higher. At the same time, the plurality of driving members 22 can also play a better scraping role on the wiping object.
[0092] Among them, the mop board 12 includes a connecting member 121 connected to the mop rod 11 and a side plate 122 movably connected to the side of the connecting member 121. The side plate 122 is driven to rotate towards the direction of the mop rod 11 to enter the cleaning state. Specifically, the longer mop board 12 can be folded into a shorter mop board 12 to fit a smaller cleaning bucket 20. When the side plate 122 is rotated to enter the cleaning state, the side plate 122 forms an approximately vertical state. When the user moves up and down for cleaning, it conforms to the user's cleaning habit and the user experience is better.
[0093] Among them, in the cleaning state, the connecting member 121 and the side plate 122 form an "H" shape, a "U" shape or an "n" shape. Specifically, when the connecting member 121 and the side plate 122 form an "H" shape, a "U" shape or an "n" shape, the entire long mop board 12 can be folded into a smaller structure, which is convenient for cleaning in a smaller cleaning bucket 20, and the user experience is better.
[0094] Among them, the mop rod 11 includes a first rod 111 and a second rod 112 that are sleeved. A rotating shaft 113 connected to the mop plate 12 is provided in the mop rod 11. The relative movement of the first rod 111 with respect to the second rod 112 drives the rotation of the rotating shaft 113, thereby driving the rotation of the mop plate 12. Specifically, the first rod 111 is sleeved on the outer surface of the second rod 112, so that the second rod 112 can extend into the first rod 111. A screw rod is provided in the mop rod 11. One end of the screw rod is connected to the mop plate 12. The screw rod extends into the first rod 111 and the second rod 112. And the second rod 112 or the first rod 111 has a thread that cooperates with the screw rod. The user drives the second rod 112 to rotate relative to the first rod 111 and move into the first rod 111, thereby driving the screw rod to rotate, and then driving the mop plate 12 to rotate for cleaning. The method of driving the mop plate 12 to rotate by rotating the mop rod 11 is already a relatively conventional technical solution in the prior art and will not be elaborated here.
[0095] It can be understood that the mop plate 12 can be driven to rotate by a power output structure such as a motor.
[0096] It can be understood that a motor for driving the rotation of the first mating end 25 is provided in the barrel body 21. When the mop plate 12 is mated with the first mating end 25, the mop plate 12 can be driven to rotate by the first mating end 25.
[0097] Among them, the mop plate 12 includes a second mating end 13. When the mop plate 12 enters the barrel body 21 for cleaning, the mop plate 12 abuts against the first mating end 25 through the second mating end 13 to cooperate with the barrel body 21, so that the mop plate 12 can rotate circumferentially around the first mating end 25. Specifically, when the mop plate 12 cannot be folded, an end portion on the mop plate 12 forms a second mating end 13 that abuts against the first mating end 25, so that when the first mating end 25 abuts and cooperates with the second mating end 13, the barrel body 21 can support the mop plate 12; when the mop plate 12 is folded, the second mating end 13 is provided on the connecting member 121, so that when the first mating end 25 abuts and cooperates with the second mating end 13, the barrel body 21 can support the mop plate 12. The structure of the second mating end 13 in this example is not limited as long as it can cooperate and abut against the first mating end 25. A rotating end is provided on one of the first mating end 25 and the second mating end 13, and the other abuts against the rotating end, which can make the mop plate 12 rotate relative to the first mating end 25.
[0098] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A flat mop cleaning tool, characterized in that: The flat mop (10) comprises a mop rod (11) and a cleaning bucket (20), wherein the flat mop (10) comprises a mop rod (11) and a mop plate (12) connected to the mop rod (11), and a wiping object is provided on a side of the mop plate (12) facing away from the mop rod (11); The cleaning bucket (20) comprises a bucket body (21), wherein a first water outlet (211) connected to a water source is provided in the bucket body (21), and when the mop plate (12) is extended into the bucket body (21), the first water outlet (211) faces the wiping object; A driving member (22) for opening or closing the first water outlet (211) is provided in the barrel body (21); The barrel (21) comprises a first mating end (25) adapted to support the mop plate (12) so that the mop plate (12) can rotate around the central axis of the mop rod (11); When the mop plate (12) extends into the barrel (21) and is supported on the first mating end (25), the wiping object abuts against the driving member (22), and the mop plate (12) is driven to rotate, triggering the driving member (22) to open the first water outlet (211), thereby directing clean water from the first water outlet (211) to the wiping object.
2. A flat mop cleaning tool according to claim 1, characterized in that: When the mop board (12) enters the barrel (21) for cleaning, the wiping material abuts against the driving member (22); when the mop board (12) rotates, the wiping material drives the driving member (22) to move or deform to open the first water outlet (211).
3. A flat mop cleaning tool according to claim 2, characterized in that: When the driving member (22) moves in a first direction, the first water outlet (211) is opened; when the driving member (22) moves in a second direction, the first water outlet (211) is closed.
4. A flat mop cleaning tool according to claim 3, characterized in that: The first direction is opposite to the second direction.
5. A flat mop cleaning tool according to claim 2, characterized in that: When the driving member (22) is deformed in a first direction, the first water outlet (211) is opened; when the driving member (22) is deformed in a second direction, the first water outlet (211) is closed.
6. A flat mop cleaning tool according to claim 5, characterized in that: The first direction is opposite to the second direction.
7. A flat mop cleaning tool according to any one of claims 1 to 6, characterized in that: The driving member (22) is reset or restored to its original state to close the first water outlet (211), thereby preventing clean water from flowing out of the first water outlet (211).
8. A flat mop cleaning tool according to claim 7, characterized in that: The side wall of the driving member (22) abuts against the first water outlet (211) to close the first water outlet (211).
9. A flat mop cleaning tool according to claim 8, characterized in that: When the mop plate (12) rotates, the wiping object drives the driving member (22) to close the first water outlet (211).
10. A flat mop cleaning tool according to claim 8, characterized in that: When the mop plate (12) is removed from the barrel (21), the driving member (22) closes the first water outlet (211).
11. A flat mop cleaning tool according to any one of claims 1-6 and 8-10, characterized in that: The barrel body (21) comprises a guide groove (24), wherein the guide groove (24) is connected to an external water source, the driving member (22) is arranged on a side of the guide groove (24) facing the first mating end (25), and the first water outlet (211) is arranged at the connection between the guide groove (24) and the driving member (22), and is suitable for opening or closing with the movement of the driving member (22).
12. A flat mop cleaning tool according to claim 11, characterized in that: The barrel body (21) further comprises a water guide portion (212), the water guide portion (212) being arranged on one side of the opening of the guide groove (24) and being position-limitingly connected to the guide groove (24), the first water outlet (211) being arranged on the water guide portion (212), the driving member (22) being in contact with a side of the water guide portion (212) having the first water outlet (211), so that the driving member (22) is suitable for covering or opening the first water outlet (211) after being driven to move.
13. A flat mop cleaning tool according to claim 12, characterized in that: The water guide portion (212) is provided with a protruding portion (213) on one side thereof protruding toward the driving member (22); the first water outlet (211) is provided on a side wall of the protruding portion (213); and the driving member (22) abuts against the side wall of the protruding portion (213) having the first water outlet (211).
14. A flat mop cleaning tool according to claim 13, characterized in that: The cross-sectional shape of the protrusion (213) is a polygon.
15. A flat mop cleaning tool according to any one of claims 12 to 14, characterized in that: The driving member (22) is a hollow structure that contracts in a direction away from the water guiding portion (212); one end of the driving member (22) away from the water guiding portion (212) is provided with a water guiding port (221); the other end of the driving member (22) is sleeved on the water guiding portion (212) and abuts against the first water outlet (211); when the driving member (22) opens the first water outlet (211), the first water outlet (211) is connected to the water guiding port (221), so that the clean water flowing out of the first water outlet (211) flows from the water guiding port (221) to the wiped object through the guide of the driving member (22).
16. A flat mop cleaning tool according to claim 15, characterized in that: The water guide port (221) is a flat strip-shaped hole.
17. A flat mop cleaning tool according to claim 15, characterized in that: The angle between the water outlet direction of the first water outlet (211) and the water outlet direction of the water guide port (221) is α, wherein 0°≤α≤90°.
18. A flat mop cleaning tool according to any one of claims 16-17, characterized in that: A side of the driving member (22) facing away from the water guide port (221) is provided with an outwardly turned fixed outer edge, and the fixed outer edge is connected to the water guide portion (212) to prevent the driving member (22) from falling off when triggered.
19. A flat mop cleaning tool according to claim 18, characterized in that: The barrel body (21) further comprises a fixing portion (214), which is arranged on the outside of the water guiding portion (212) and is position-limitingly connected to the guide groove (24), and allows the driving member (22) to partially pass through the fixing portion (214), so that the fixing outer edge is clamped between the fixing portion (214) and the water guiding portion (212).
20. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17 and 19, characterized in that: A clean water tank (23) is also provided in the barrel body (21). The clean water tank (23) is provided at the upper part of the barrel body (21) and has a second water outlet (231). The first water outlet (211) and the second water outlet (231) are connected via a guide channel.
21. A flat mop cleaning tool according to claim 20, characterized in that: The guide channel is arranged on the inner wall of the barrel body (21) to extend obliquely in the vertical direction.
22. A flat mop cleaning tool according to claim 20, characterized in that: The second water outlet (231) is higher than the first water outlet (211).
23. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17, 19 and 21-22, characterized in that: The driving member (22) is made of flexible material.
24. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17, 19 and 21-22, characterized in that: A plurality of the first water outlets (211) are arranged at intervals, and a plurality of the driving members (22) adapted to the first water outlets (211) are also arranged at intervals.
25. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17, 19 and 21-22, characterized in that: The mop plate (12) comprises a connecting piece (121) connected to the mop rod (11) and a side plate (122) movably connected to the side edge of the connecting piece (121); the side plate (122) is driven to rotate toward the mop rod (11) to enter a cleaning state.
26. A flat mop cleaning tool according to claim 25, characterized in that: In the cleaning state, the connecting member (121) and the side plate (122) form an "H" shape, a "U" shape or an "n" shape.
27. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17, 19, 21-22 and 26, characterized in that: The mop rod (11) comprises a first rod (111) and a second rod (112) which are sleeved together. A rotating shaft (113) connected to the mop plate (12) is provided in the mop rod (11). The first rod (111) moves relative to the second rod (112) to drive the rotating shaft (113) to rotate, thereby driving the mop plate (12) to rotate.
28. A flat mop cleaning tool according to any one of claims 1-6, 8-10, 12-14, 16-17, 19, 21-22 and 26, characterized in that: The mop board (12) comprises a second mating end (13). When the mop board (12) enters the barrel (21) for cleaning, the mop board (12) abuts against the first mating end (25) via the second mating end (13) to be mated with the barrel (21), so that the mop board (12) can rotate around the circumference of the first mating end (25).