Cleaning barrel and cleaning tool of rotary mop
By incorporating a shaft, lifting seat, and guide column within the rotating mop bucket, and utilizing guide helical teeth and a return spring to achieve the switching between the high-level dehydration zone and the low-level cleaning zone of the lifting basket, the problem of complex structure, large size, and inconvenience in use of existing rotating mop buckets is solved, achieving a simplified structure and low-cost cleaning effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-15
- Publication Date
- 2026-04-07
AI Technical Summary
Existing rotating mop buckets have complex structures, large volumes, high manufacturing costs, and are inconvenient to use, especially the lifting mechanism, which is prone to clogging and difficult to operate.
The design incorporates a shaft, lifting seat, and guide column within the tank. The switching between the high-level dehydration zone and the low-level cleaning zone of the lifting basket is achieved through guide helical teeth and a return spring, simplifying the structure and reducing volume.
It enables the washing and wringing of a rotating mop to be completed in the same bucket, which is simple to operate, reduces manufacturing costs, avoids clogging and difficulty in use, and improves the user experience.
Smart Images

Figure CN224085267U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of daily cleaning products, and in particular to a rotating mop cleaning bucket and cleaning tool. Background Technology
[0002] A spin mop is a cleaning tool that uses the rotation of the mop head inside the mop bucket to evenly wet and clean or wring out the mop head. Various mop bucket devices for cleaning mop heads have emerged. In order to achieve cleaning and wringing of the mop head, a cleaning zone and a wringing zone need to be set up inside the bucket. When cleaning, the mop is cleaned in the cleaning zone. After cleaning, the mop needs to be moved to the wringing zone to spin dry. This method not only increases the size of the mop bucket, but also has a high manufacturing cost. Another type of mop bucket features a lifting mechanism inside, dividing the bucket into a lower washing area and an upper spin-drying area. For example, Chinese utility model patent application number CN202021361318.X discloses a lifting device for a mop bucket. The mop bucket includes a bucket body, a lifting basket, and a lifting base. A rotatable lifting basket is installed above the lifting base. At least one set of lifting devices is provided between the lifting base and the bucket body. The lifting basket is installed in the bucket body along with the lifting base via the lifting devices. The lifting devices include a guide rail structure and a guide column. The lifting base can move up and down within the bucket body guided by the cooperation of the guide rail structure and the guide column without detaching. However, the guide rail mechanism on the side wall is exposed, making it easy for hair and debris to entangle and clog the guide rail, resulting in a high failure rate of the mop bucket.
[0003] In addition, existing technology includes a pulling device between the mop head and the lifting basket. The pulling device includes an elastic hook in the mop head and a hook groove in the lifting basket that mates with the hook. The mop head and the lifting basket are connected by the hook and the hook groove. The mop moves the lifting seat up and down in the bucket through the pulling device. This means that when the mop is put in, it is necessary to press down hard to make the mop hook engage with the hook groove. When the mop is taken out, it is necessary to tilt the mop at an angle and pull it hard to take it out, which increases the difficulty of use for users. Utility Model Content
[0004] One of the purposes of this utility model is to provide a cleaning bucket for a rotating mop, wherein the lifting basket of the cleaning bucket can be switched between the high-level dehydration zone and the low-level cleaning zone by pressing and lifting. The overall structure is convenient and practical, and the manufacturing cost is low.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A cleaning bucket for a rotating mop includes a bucket body, a lifting basket for holding the rotating mop rotatably disposed within the bucket body, a shaft, a lifting seat, and a guide column. The shaft is located in the middle of the bucket body, and the guide column, lifting seat, and lifting basket are coaxially mounted on the shaft. The guide column is fixedly disposed within the bucket body, and the lifting seat is sleeved on the guide column and slides up and down along the guide column. A pressure plate is fixedly connected to the top of the lifting seat, and a return spring is provided between the pressure plate and the guide column. The lifting basket is rotatably disposed on the pressure plate. A first slide and a second slide are circumferentially spaced on the guide column, and a guide block is provided on the lower side of the inner wall of the lifting seat. A downward force is applied to the rotating mop to press the lifting basket, thereby positioning the guide block in the first slide. The rotating mop contacts the water in the bucket body and rotates to clean. After the downward force is removed, the return spring pushes the lifting basket upward to reset, and the guide block is squeezed by guide teeth and rotates towards the second slide. The lifting basket is pressed downward again, and the guide block is positioned in the second slide, causing the rotating mop to rotate away from the water surface and dehydrate.
[0007] Preferably, the guide helical teeth include a plurality of lower guide helical teeth and upper guide helical teeth. The lower guide helical teeth are disposed between the first slide rail and the second slide rail, and the guide slope of the lower guide helical teeth gradually slopes downward from right to left. The openings of the first slide rail and the second slide rail are each provided with corresponding upper guide helical teeth. The guide slope of the upper guide helical teeth gradually slopes upward from right to left, and the inclined end of the guide slope of the upper guide helical teeth is opposite to the guide slope of the lower guide helical teeth. Alternatively, the guide helical teeth include a plurality of lower guide helical teeth and upper guide helical teeth. The lower guide helical teeth are disposed between the first slide rail and the second slide rail, and the guide slope of the lower guide helical teeth gradually slopes downward from left to right. The openings of the first slide rail and the second slide rail are each provided with corresponding upper guide helical teeth. The guide slope of the upper guide helical teeth gradually slopes upward from left to right, and the inclined end of the guide slope of the upper guide helical teeth is opposite to the guide slope of the lower guide helical teeth.
[0008] Preferably, a transition slide is provided between the lower guide helical tooth and the upper guide helical tooth, and the transition slide is connected to the first slide and the second slide.
[0009] Preferably, a base is provided in the middle of the barrel, the guide post is disposed in the base, and there is an annular cavity between the guide post and the base.
[0010] Preferably, the lifting basket has an upwardly protruding support seat in the middle, the upper surface of the support seat has a connecting column for connecting to an external mop, the side wall of the connecting column has a limiting rib, and the shaft can pass through the middle of the connecting column.
[0011] Preferably, a planar bearing is provided between the inner bottom surface of the support base and the pressure plate; a movable latch is provided on the inner wall of the support base, the edge of the pressure plate protrudes from the side wall of the lifting base, the latch engages with the lower side of the edge of the pressure plate, and there is a gap between the latch and the pressure plate.
[0012] Preferably, mounting grooves are provided on opposite sides of the support base, and a retaining plate is rotatably mounted in the mounting groove. A button protruding from the side wall of the support base is provided on the upper part of one side of the retaining plate, and an arc-shaped spring is provided on the upper part of the other side of the retaining plate. The lower end of the arc-shaped spring is fixedly connected to the retaining plate, and the upper end of the arc-shaped spring contacts the bottom wall of the mounting groove. The retaining plate extends downward and protrudes from the mounting groove to provide the retaining tongue, which is located on the same side as the arc-shaped spring.
[0013] Preferably, the bottom wall of the lifting basket includes a plurality of paddles, which are arranged radially from the center of the bottom wall of the lifting basket, and one side of the paddles is inclined downward along the direction of mop rotation, forming a flushing gap between adjacent paddles; one end of the plurality of paddles away from the center of the bottom wall of the lifting basket is connected to the side wall of the lifting basket, and a plurality of water passage holes are evenly spaced on the side wall, which are vertically arranged on the side wall.
[0014] Preferably, a plurality of longitudinal baffles are provided on the inner circumference of the barrel body, and a barrel lid is detachably connected to the barrel body, wherein a cleaning port corresponding to the opening of the lifting basket is provided in the middle of the barrel lid.
[0015] In the above technical solution, a washing zone and a dehydration zone are set at different heights above and below the bucket, so that a single bucket can wash and dehydrate the mop, which can reduce the volume and floor space of the mop bucket and facilitate transportation and storage.
[0016] The mop features a lifting basket, a lifting seat, and a guide column coaxially arranged within the tub. A first slide, a second slide, an auxiliary slide, and a transition slide, all located on the outer wall of the guide column, form a closed-loop mop lifting and lowering switching channel. The guide block of the lifting seat switches between the first and second slides within this channel. When the guide block is in the first slide, the mop is in the washing state, and the lifting basket descends to the lower side of the tub to enter the washing area, allowing for the rotation and washing of the items on the mop head. After washing, lifting the mop upwards causes a return spring to push the lifting basket upwards, and the guide block rotates towards the second slide due to the pressure of the guide teeth. Pressing the lifting basket downwards again allows the guide block to switch to the second slide via the auxiliary and transition slides, putting the mop in the spin-drying state. At this time, the lifting basket descends only to the upper side of the tub to enter the spin-drying area, allowing for the rotation, spin-drying, and drying of the items on the mop head. The operation is simple, convenient, and easily accepted by users.
[0017] The lifting basket features a latch that engages with the underside of the pressure plate, creating a gap between them. This prevents the lifting basket from detaching from the shaft when the mop is lifted and rotated, and also avoids interference between the latch and the pressure plate during rotation, thus ensuring usability. A button controls the opening and closing of the latch, allowing for easy removal of the lifting basket for cleaning the inside of the bucket. Finally, the shaft can be inserted into the mop handle, functioning as a mop holder when the mop is not in use and stands upright in the bucket.
[0018] The second objective of this utility model is to provide a cleaning tool that includes a rotating mop and a cleaning bucket. The cleaning bucket is used to clean the rotating mop, and the overall structure is simple and easy to use.
[0019] A cleaning tool includes a rotary mop and a cleaning bucket, wherein the cleaning bucket is the cleaning bucket of the rotary mop described in the above technical solution; the rotary mop includes a mop handle and a mop disc rotatably connected to the end of the mop handle, a positioning hole communicating between the mop handle and the mop disc is provided in the middle, and a drive mechanism for driving the mop disc to rotate is provided inside the mop handle. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention (with a lifting basket);
[0021] Figure 2 This is a three-dimensional structural diagram of the present invention from another angle (without the lifting basket);
[0022] Figure 3 This is a schematic diagram of the exploded state structure of the lifting basket of this utility model;
[0023] Figure 4 This is a three-dimensional structural diagram of the guide column of this utility model;
[0024] Figure 5 This is an exploded view of the lifting seat of this utility model.
[0025] Figure 6 This is a structural schematic diagram of the lifting seat of this utility model from another angle;
[0026] Figure 7 This is a longitudinal sectional view of the present invention;
[0027] Figure 8 for Figure 7 A schematic diagram of the local method structure in part A;
[0028] Figure 9 This is a schematic diagram of the structure of a rotary mop;
[0029] Figure 10This is a top view of the mop disc of a rotating mop.
[0030] In the diagram, 1 is the bucket body; 11 is the base; 12 is the shaft; 13 is the annular cavity; 14 is the baffle; 15 is the handle; 2 is the lifting basket; 21 is the paddle; 22 is the flushing gap; 23 is the side wall; 24 is the water passage hole; 25 is the baffle; 3 is the lifting seat; 31 is the pressure plate; 32 is the guide block; 33 is the slide groove; 34 is the locking protrusion; 4 is the guide post; 41 is the first slide; 42 is the second slide; 43 is the upper guide helical tooth; 44 is the auxiliary slide; 45 is the lower guide helical tooth; 46 is the transition slide; 47 is the upper guide post; 48 is the lower guide post; 5 is the support seat; 51 is the connecting post; 52 is the limiting rib; 53 is the mounting groove; 54 is the shaft hole; 55 is the mounting seat; 56 is the through hole; 6 is the plane bearing; 7 is the locking plate; 71 is the button; 72 is the arc-shaped spring; 73 is the latch; 74 is the rotating shaft; 8 is the bucket lid; 9 is the mop disc; 91 is the positioning hole; 92 is the mop handle. Detailed Implementation
[0031] The present invention will be further described below with reference to the accompanying drawings:
[0032] like Figures 1 to 8 As shown, a cleaning bucket for a rotary mop includes a bucket body 1. The bucket body 1 has a washing zone and a dehydration zone at different heights, with the washing zone at the bottom and the dehydration zone at the top. A switching mechanism is provided inside the bucket body 1. A lifting basket 2 for holding an externally mounted mop is rotatably mounted on the upper part of the switching mechanism. Pressing the lifting basket 2 causes the switching mechanism to slide it downwards into the washing zone and rotate for washing. After washing, the rotary mop is lifted upwards and removed. The switching mechanism then pushes the lifting basket 2 back to its original position and presses it downwards again, causing the lifting basket 2 to switch to the dehydration zone and rotate for dehydration.
[0033] The switching structure includes a shaft 12, a lifting seat 3, and a guide column 4. The shaft 12 is located in the middle of the barrel 1. The guide column 4, the lifting seat 3, and the lifting basket 2 are coaxially mounted on the shaft 12. The guide column 4 is fixedly mounted inside the barrel 1. The lifting seat 3 is sleeved on the guide column 4 and can slide up and down along the guide column 4. A first slide rail 41 and a second slide rail 42 are arranged vertically downwards at intervals on the guide column 4, and the bottom of the second slide rail 42 is higher than the bottom of the first slide rail 41. Preferably, there are three first slide rails 41 and three second slide rails 42. Multiple guide blocks 31 are provided on the lower side of the inner wall of the lifting seat 3. Preferably, the guide blocks 31 correspond to the first slide rail 41 or the second slide rail 42.
[0034] A pressure plate 31 is fixedly connected to the top of the lifting seat 3, preferably screwed to the top of the lifting seat 3. The lifting basket 2 is rotatably mounted on the upper side of the pressure plate 31; a return spring is provided between the pressure plate 31 and the guide column 4, preferably sleeved on the shaft 12. During the downward movement of the lifting basket 2, the return spring is compressed and deformed. After the pressure on the lifting basket 2 is removed, the return spring releases energy to restore its deformation and drives the lifting basket 2 and the lifting seat 3 to return to the upward position. A downward force is applied to the rotating mop to press the lifting basket 2, thereby positioning the guide block 31 in the first slide 41. The lifting basket 2 enters the cleaning area downward, and the rotating mop contacts the water in the bucket 1 to rotate and clean. After the downward force is removed, the return spring pushes the lifting basket 2 to return to the upward position, and the guide block 31 is squeezed by the guide helical teeth and rotates towards the second slide 42. The lifting basket 2 is pressed down again, the guide block 31 is positioned in the second slide 42, the lifting basket 2 enters the dehydration area, and the rotating mop rotates away from the water surface to dehydrate.
[0035] The guide helical teeth include several upper guide helical teeth 43 and several lower guide helical teeth 45 disposed on the side wall of the guide post 4. The lower guide helical teeth 45 are disposed between the first slide rail 41 and the second slide rail 42, and the guide slope of the lower guide helical teeth 45 gradually slopes downward from right to left. The openings of the first slide rail 41 and the second slide rail 42 are each provided with corresponding upper guide helical teeth 43. The guide slope of the upper guide helical teeth 43 gradually slopes upward from right to left, and the inclined end of the guide slope of the upper guide helical teeth 43 is disposed opposite to the guide slope of the lower guide helical teeth 45. A transition slide rail 46 is provided between the lower guide helical teeth 45 and the upper guide helical teeth 43, and the transition slide rail 46 is connected to the first slide rail 41 and the second slide rail 42. During the static period of the lifting basket 2, the guide block 31 is positioned at the inclined end of the guide slope of the upper guide tooth 43. When the lifting basket 2 is pressed down, the guide block 31 moves downward and contacts the guide slope of the lower guide tooth 45 and rotates and slides downward along the guide slope of the lower guide tooth 45 to the first slide 41 at the bottom of the lower guide tooth 45. At this time, the guide block 31 moves vertically downward along the first slide 41 to the bottom of the first slide 41. The external rotating mop comes into contact with the water in the bucket 1. The drive mechanism in the mop handle drives the mop disc to rotate the lifting basket 2, thereby achieving the rotational cleaning of the wiping object. After cleaning, lift the rotating mop upwards. The return spring drives the lifting basket 2 and lifting seat 3 to move upwards. The guide block 31 moves upwards and contacts the guide slope of the upper guide tooth 43 corresponding to the outlet of the first slide 41. It then rotates and slides upwards along the guide slope of the upper guide tooth 43 to the inclined end of the upper guide tooth 43. At this time, the lifting basket 2 returns to its original position. When the lifting basket 2 is pressed down again, the guide block 31 moves downwards and contacts the guide slope of the corresponding lower guide tooth 45. It then rotates and slides downwards along the guide slope of the lower guide tooth 45 to the second slide 42 at its bottom. At this time, the guide block 31 moves vertically downwards along the second slide 42 to the bottom of the second slide 42. The external rotating mop does not contact the water surface inside the bucket 1. The drive mechanism of the rotating mop handle drives the mop disc to rotate the lifting basket 2 to dehydrate the wiped items. Each time the rotating mop is lifted, the lifting basket 2 returns to its original position, and then it is pressed down again, the rotating mop can switch between the two modes of rotating cleaning and rotating dehydration. The process is convenient and quick. Furthermore, an auxiliary slide 44 is formed at the inclined end of the upper guide tooth 43. That is, the auxiliary slide 44 is arranged at the bottom of the corresponding upper guide tooth 43. The auxiliary slide 44 is set opposite to the guide slope of the lower guide tooth 45. The auxiliary slide 44 has a guiding effect on the vertical downward movement of the guide block 41.
[0036] In another embodiment, the guide helical teeth include an upper guide helical tooth 43 disposed on the side wall of the guide post 4 and a plurality of lower guide helical teeth 45. The lower guide helical teeth 45 are disposed between the first slide rail 41 and the second slide rail 42, and the guide slope of the lower guide helical teeth 45 gradually slopes downward from left to right. The openings of the first slide rail 41 and the second slide rail 42 are each provided with a corresponding upper guide helical tooth 43. The guide slope of the upper guide helical tooth 43 gradually slopes upward from left to right, and the inclined end of the guide slope of the upper guide helical tooth 43 is disposed opposite to the guide slope of the lower guide helical teeth 45.
[0037] The rotating mop handle includes an upper handle and a lower handle. A drive structure is located within both the upper and lower handles. Pressing down on the upper handle causes the drive structure to rotate the lower handle and the mop disc 9. This technology is existing, and any structure capable of achieving the above function is applicable; therefore, it will not be elaborated upon in this utility model patent. After the upper handle is pressed down to the bottom of the lower handle, during the upward lifting of the upper handle, because the rotating mop disc 9 and the lifting basket 2 are rotating at high speed, and the weight of the rotating mop still exerts downward pressure on the lifting basket, the guide block 32 slides a certain distance along the first slide rail 41 or the second slide rail 42, but it will not slide into the auxiliary slide rail 44, causing the lifting basket 2 to reset.
[0038] In one embodiment, a hollow base 11 is provided in the middle of the barrel 1. The base is generally truncated cone-shaped. The bottom of the barrel 1 is screwed to the base. The guide post 4 is fixedly connected in the base 11. There is an annular cavity 13 between the guide post 4 and the base 11. The lifting seat 3 slides in the annular cavity 13. When the lifting seat 3 slides to the bottom of the first slide rail 41, the base 11 is not higher than the end of the lifting seat.
[0039] In one embodiment, the guide post 4 includes an upper guide post 47 and a lower guide post 48. An upper guide helical tooth 43 and an auxiliary slide rail 44 are disposed on the upper guide post 47, while a lower guide helical tooth 45, a first slide rail 41, and a second slide rail 42 are disposed on the lower guide post 48. The lower guide post 48 and the base 11 are integrally injection molded. After the lifting seat 3 is sleeved onto the lower guide post 48, and the upper guide post 47 is screwed to the top of the lower guide post 48, the first slide rail 41, the second slide rail 42, the auxiliary slide rail 44, and the transition slide rail 46 together form a closed-loop mop lifting and switching channel, preventing the lifting seat from detaching from the guide post 4. Furthermore, the shaft 12 is fixedly connected to the axial position of the lower guide post 48. In this embodiment, the shaft 12 and the lower guide post 48 are integrally injection molded.
[0040] In one embodiment, a support base 5 protruding upwards is provided in the middle of the lifting basket 2. The upper surface of the support base 5 is provided with a connecting post 51 for connecting to an external rotating mop. The side wall of the connecting post 51 is provided with a limiting rib 52, which strengthens the connection between the connecting post 51 and the support base 5, and at the same time restricts the relative rotation between the mop disc 9 and the support base 5. A through hole is provided in the middle of the connecting post 51, and the shaft 12 passes through the through hole in the middle of the connecting post 51. The mop disc 9 and the mop handle 92 of the external rotating mop are respectively provided with positioning holes 91 that cooperate with the shaft 12, so as to avoid the shaft 12 during the lifting and lowering process of the lifting basket 2. When the mop needs to be cleaned or wrung out, place the mop disc on the support base 5, insert the shaft into the positioning hole 91 on the mop disc 9 and the mop handle 92, and the mop disc 9 drives the lifting basket to rotate through the limiting rib 52. The support base 5 supports the mop disc 9 so that the wiping material will not be piled up and squeezed in the lifting basket 2, so that the water flow can more easily impact the wiping material and have a better cleaning effect, or limit the rotation range of the wiping material so that the water on the wiping material can be more thoroughly centrifuged and spun dry.
[0041] The inner bottom surface of the support base 5 rotatably rests on the upper surface of the pressure plate 31, and a flat bearing 6 is provided between the inner bottom surface of the support base 5 and the pressure plate 31, making the rotation of the support base 5 smoother. The inner diameter of the support base 5 is larger than the outer diameter of the pressure plate 31, which facilitates the placement of the lifting basket 2 on the lifting seat 3. Furthermore, a locking protrusion 34 is provided on the top of the pressure plate 31, which fixes the flat bearing 6 to the upper surface of the pressure plate 31, so that the flat bearing 6 will not fall off the pressure plate 31. Furthermore, a circular sliding groove 33 is provided on the inner bottom surface of the support base 51 and the upper surface of the pressure plate 31, and the balls of the flat bearing 6 roll and / or slide within the sliding groove 33.
[0042] The inner wall of the support base 5 is provided with a movable latch 73. The diameter of the pressure plate 3 is larger than the diameter of the lifting base 3, so that the edge of the pressure plate 31 protrudes from the side wall of the lifting base 3. The latch 73 is engaged with the lower side of the edge of the pressure plate 31 and there is a gap between the latch 73 and the pressure plate 31. In this way, when the mop is lifted and rotated, the lifting basket 2 will not move upward and disengage from the shaft 12. At the same time, during the rotation of the lifting basket 2, the latch 73 will not interfere with the edge of the pressure plate 31 and affect the rotation speed.
[0043] Mounting slots 53 are provided on opposite sides within the support base 5. A retaining plate 7 is rotatably mounted within the mounting slots 53. Rotating shafts 74 are provided on both sides of the retaining plate 7. Shaft holes 54 are provided on the side walls of the mounting slots 53. The retaining plate 7 is rotatably mounted within the mounting slots 53 via the rotating shafts 72 and the shaft holes 54. A button 71 protruding from the side wall of the support base 5 is provided on the upper part of one side of the retaining plate 7. An arc-shaped spring piece 72 is provided on the upper part of the other side of the retaining plate 7. The lower end of the arc-shaped spring piece 72 is fixedly connected to the retaining plate 7, and the upper end of the arc-shaped spring piece contacts the bottom wall of the mounting slot 53. The retaining plate 7 extends downward beyond the mounting slot 53 and has a latch 73, which is located on the same side as the arc-shaped spring piece 72. By pinching the button 71 and pressing it firmly, the arc-shaped spring piece 72 is squeezed, and the retaining plate 7 rotates obliquely upward around the rotating shafts 74. The latch 73 disengages from the lower edge of the pressure plate 31, allowing the lifting basket 2 to be easily removed for cleaning of the inside of the bucket 1. Then, squeeze and press button 71 again, so that latch 73 passes over the edge of pressure plate 31, and then release button 71. The arc-shaped spring 72 returns to its original shape and pushes pull plate 7 to rotate diagonally downward, so that latch 73 is locked on the lower side of pressure plate 31, thus completing the installation of lifting basket 2. The operation is simple and convenient. Furthermore, a mounting seat 55 is provided inside support base 5. Mounting seat 55 is fixedly connected inside support base 5. Mounting groove 53 is provided on mounting seat 55, and support base 5 has a through hole 56 for button 71 to pass through, which facilitates the processing and installation of lifting basket 2.
[0044] In one embodiment, the bottom wall of the lifting basket 2 includes several paddles 21 arranged radially from the center of the lifting basket 2. One side of each paddle 21 is inclined downward along the direction of mop rotation, and a flushing gap 22 is formed between adjacent paddles 21. This allows water in the bucket to be better propelled into the interior of the lifting basket 2 during rotation, thus better cleaning the mop head 9. The ends of the paddles 22 away from the center of the lifting basket 2 are connected to the side wall 23 of the lifting basket. The side wall 23 is provided with several water passage holes 24 evenly spaced. The water passage holes 24 are vertically arranged on the side wall 23, allowing water in the bucket 1 to better contact the mop head 9 and facilitating the spin-drying of the mop.
[0045] In a preferred embodiment, a plurality of longitudinal baffles 14 are provided circumferentially on the inner side of the tank body 1. As the water in the tank body 1 rotates with the lifting basket, the baffles 4 can disrupt the flow direction of the water, further ensuring that the water can easily enter the lifting basket 2. Furthermore, a lid 8 is detachably connected to the tank body 1, and the center of the lid 8 has a cleaning port corresponding to the opening of the lifting basket 2. A handle 15 is rotatably connected to the side wall of the tank body 1.
[0046] In a preferred embodiment, to improve the cleaning effect during the rotating mop's cleaning process, the paddles 21 on the bottom wall of the lifting basket 2 are tilted downward one by one in a counterclockwise direction, or the paddles 21 are tilted downward one by one in a clockwise direction. Furthermore, the baffles 25 between the water holes 24 are blade-shaped to facilitate the flow of water in the bucket 1 to the rotating mop disc for cleaning and / or to facilitate the mop disc's spin-drying. Moreover, the upper guide teeth 43 are tilted upward counterclockwise, and the lower guide teeth 45 are tilted downward counterclockwise.
[0047] like Figures 1 to 10 As shown, a cleaning tool includes a rotary mop and a cleaning bucket, wherein the cleaning bucket is the cleaning bucket of the rotary mop described in the above technical solution; the rotary mop includes a mop handle 92 and a mop disc 9 rotatably connected to the end of the mop handle 92. A retaining strip is provided on the mop disc 9 to cooperate with a limiting rib 52, and the retaining strip and the limiting rib 52 cooperate to prevent the mop disc 9 from rotating relative to the support base 5. A drive mechanism for driving the mop disc to rotate is provided inside the mop handle. The mop handle includes an upper rod and a lower rod, and a drive structure is provided inside the upper and lower rods. Pressing down on the upper rod causes the drive structure to drive the lower rod and the mop disc 9 to rotate. This technology is existing technology, and any structure capable of achieving the above function is applicable. A connecting positioning hole 91 is provided in the middle of the mop handle 92 and the mop disc 9. The positioning hole 91 cooperates with a shaft 12. During the lifting and lowering process of the lifting basket 2, the positioning hole 91 is used to avoid the shaft 12. When the mop needs to be cleaned or wrung out, place the mop disc 9 on the support base 5, insert the shaft into the positioning hole 91 on the mop disc 9 and the mop handle 92, and the mop disc 9 drives the lifting basket to rotate through the cooperation of the locking strip and the limiting rib 52.
[0048] In the above technical solution, when the rotary mop needs cleaning, the rotary mop disc is placed on the support base 5, and then the upper lever of the rotary mop is pressed to drive the mop disc to rotate the lifting basket 2. At the same time, the lifting basket 2 moves downward. After the lifting base 3 rotates a certain angle, the guide block 32 guides it into the first slide 41, that is, the lifting basket 2 enters the cleaning area, thereby rotating and cleaning the wiping material on the mop disc. At this time, the return spring sleeved on the shaft 12 is compressed. After cleaning, the rotary mop is lifted upward, and the lifting basket 2 moves upward into the corresponding auxiliary slide 44 under the push of the return spring restoring its deformation and resetting. Then, the rotary mop is placed in the lifting basket 2 again and pressed downward. The lifting basket 2 moves downward, and after the lifting base 3 rotates a certain angle again, the guide block 32 guides it into the second slide 42, that is, the lifting basket 2 enters the dehydration area, and then the wiping material in the mop bucket is rotated and dehydrated. The above process is repeated to clean and spin-dry the rotary mop multiple times.
[0049] This embodiment is merely an illustration of the concept and implementation of this utility model, and is not intended to limit it. Under the concept of this utility model, the technical solution without substantial changes is still within the scope of protection.
Claims
1. A cleaning bucket for a rotating mop, comprising a bucket body, and a lifting basket for holding a rotating mop rotatably disposed within the bucket body, characterized in that, It also includes a shaft, a lifting seat, and a guide column. The shaft is located in the middle of the bucket. The guide column, lifting seat, and lifting basket are coaxially mounted on the shaft. The guide column is fixedly mounted inside the bucket. The lifting seat is sleeved on the guide column and slides up and down along the guide column. A pressure plate is fixedly connected to the top of the lifting seat. A return spring is provided between the pressure plate and the guide column. The lifting basket is rotatably mounted on the pressure plate. A first slide and a second slide are provided circumferentially at intervals on the guide column. A guide block is provided on the lower side of the inner wall of the lifting seat. A downward force is applied to the rotating mop to press the lifting basket, thereby positioning the guide block in the first slide. The rotating mop contacts the water in the bucket and rotates to clean. After the downward force is removed, the return spring pushes the lifting basket upward to reset, and the guide block is squeezed by the guide teeth and rotates towards the second slide. The lifting basket is pressed down again, and the guide block is positioned in the second slide. The rotating mop rotates away from the water surface to dehydrate.
2. The cleaning bucket of the rotating mop as described in claim 1, characterized in that, The guide helical teeth include several lower guide helical teeth and upper guide helical teeth. The lower guide helical teeth are disposed between the first slide rail and the second slide rail, and the guide slope of the lower guide helical teeth gradually slopes downward from right to left. The openings of the first slide rail and the second slide rail are each provided with a corresponding upper guide helical tooth. The guide slope of the upper guide helical tooth gradually slopes upward from right to left, and the inclined end of the guide slope of the upper guide helical tooth is opposite to the guide slope of the lower guide helical tooth. Alternatively, the guide helical teeth include several lower guide helical teeth and upper guide helical teeth. The lower guide helical teeth are disposed between the first slide rail and the second slide rail, and the guide slope of the lower guide helical teeth gradually slopes downward from left to right. The openings of the first slide rail and the second slide rail are each provided with a corresponding upper guide helical tooth. The guide slope of the upper guide helical tooth gradually slopes upward from left to right, and the inclined end of the guide slope of the upper guide helical tooth is opposite to the guide slope of the lower guide helical tooth.
3. The cleaning bucket of the rotating mop as described in claim 2, characterized in that, A transition slide is provided between the lower guide helical tooth and the upper guide helical tooth, and the transition slide is connected to the first slide and the second slide.
4. The cleaning bucket of the rotating mop as described in claim 1, characterized in that, A base is provided in the middle of the barrel, the guide post is disposed in the base, and there is an annular cavity between the guide post and the base.
5. The cleaning bucket of the rotary mop as described in any one of claims 1 to 4, characterized in that, The lifting basket has an upwardly protruding support seat in the middle. The upper surface of the support seat has a connecting column for connecting to an external mop. The side wall of the connecting column has a limiting rib. The shaft can pass through the middle of the connecting column.
6. The cleaning bucket of the rotating mop as described in claim 5, characterized in that, A planar bearing is provided between the inner bottom surface of the support base and the pressure plate; a movable latch is provided on the inner wall of the support base, the edge of the pressure plate protrudes from the side wall of the lifting base, the latch engages with the lower side of the edge of the pressure plate and there is a gap between the latch and the pressure plate.
7. The cleaning bucket of the rotary mop as described in claim 6, characterized in that, Mounting grooves are provided on opposite sides of the support base. A retaining plate is rotatably mounted in the mounting groove. A button protruding from the side wall of the support base is provided on the upper part of one side of the retaining plate. An arc-shaped spring is provided on the upper part of the other side of the retaining plate. The lower end of the arc-shaped spring is fixedly connected to the retaining plate and the upper end of the arc-shaped spring contacts the bottom wall of the mounting groove. The retaining plate extends downward and protrudes from the mounting groove to provide a retaining tongue. The retaining tongue is located on the same side as the arc-shaped spring.
8. The cleaning bucket of the rotary mop as described in claim 1 or 7, characterized in that, The bottom wall of the lifting basket includes several paddles, which are arranged radially from the center of the bottom wall of the lifting basket. One side of the paddles is inclined downward along the direction of mop rotation, and a flushing gap is formed between adjacent paddles. One end of the paddles away from the center of the bottom wall of the lifting basket is connected to the side wall of the lifting basket. The side wall is provided with several water passage holes at even intervals, which are vertically arranged on the side wall.
9. The cleaning bucket of the rotary mop as described in claim 1 or 7, characterized in that, The inner side of the barrel is provided with multiple longitudinal baffles, and a barrel lid is detachably connected to the barrel body. The middle of the barrel lid is provided with a cleaning port corresponding to the opening of the lifting basket.
10. A cleaning tool comprising a spin mop and a cleaning bucket, characterized in that, The cleaning bucket is the cleaning bucket of the rotary mop according to any one of claims 1 to 9; the rotary mop includes a mop handle and a mop disc rotatably connected to the end of the mop handle, a positioning hole communicating between the mop handle and the mop disc is provided in the middle, and a drive mechanism for driving the mop disc to rotate is provided inside the mop handle.
Citation Information
Patent Citations
Lifting device of mop bucket
CN212394837U