Flat mop head cleaning module and mop
By designing a combination of wringer, squeegee, and adjustment components, the mop can be switched between different positions, solving the problem of low efficiency in adjusting the wringing effect of existing mops and improving user experience and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BAZHOU HAOLIN HOUSEHOLD PROD CO LTD
- Filing Date
- 2025-04-23
- Publication Date
- 2026-05-12
AI Technical Summary
Existing mops are inefficient at adjusting the wringing effect, which affects the user experience.
Design a flat mop head cleaning module, including a wringer, a squeegee, a swiping sleeve, and an adjustment component. By cooperating with the rotating sleeve and the guide component, the swiping sleeve can be switched between different positions, and the width of the swiping opening can be adjusted to achieve different dehydration effects.
It improves the efficiency of adjusting the mop's wringing effect, enhances the user experience, and makes it easier to operate to meet different wringing needs.
Smart Images

Figure CN224220086U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mop cleaning technology, and in particular to a flat mop head cleaning module and a mop. Background Technology
[0002] A mop is a long-handled cleaning tool for scrubbing floors, widely used in homes, hotels, and other places. A mop consists of a mop handle, with a rotatable flat mop head attached to the lower end of the handle. The mop handle is fitted with a sliding sleeve, which has a slot through which the flat mop head passes. The sliding sleeve relative to the mop handle allows the spun-dry mop to pass through the slot under the action of the flat mop head, thus squeezing and dehydrating the mop.
[0003] For example, a previous patent with application number CN202210332987.1 provided a mop spout structure, which includes a movable frame, a fixed frame, and an adjusting knob. The movable frame is connected to the fixed frame and can move relative to it. The spout is formed between the movable frame and the fixed frame. The adjusting knob and the movable frame are respectively located on both sides of the fixed frame, and a portion of the adjusting knob and the movable frame passes through the fixed frame and are connected. The adjusting knob and the movable frame are connected by a spiral structure. The rotation of the adjusting knob relative to the fixed frame causes the movable frame to move relative to the fixed frame through the spiral structure, thereby adjusting the size of the spout. However, in use, to achieve the desired wringing effect, the position of the adjusting knob usually needs to be adjusted multiple times, resulting in low adjustment efficiency and affecting the user experience. Utility Model Content
[0004] The purpose of this invention is to provide a flat mop head cleaning module and mop to improve the adjustment efficiency of the mop's wringing effect and enhance the user experience.
[0005] On one hand, this utility model provides a cleaning module for a flat mop head, the cleaning module including a wringer, a squeegee disposed on the wringer, and a sleeve slidably connected to the wringer along a predetermined direction. The sleeve and the squeegee are spaced apart along the predetermined direction and form a swiping opening for the flat mop head to pass through. The sleeve is slidable relative to the wringer along the predetermined direction and has a first dehydration position and a second dehydration position. When the sleeve is in the first dehydration position, the dimension of the swiping opening along the predetermined direction is L1; when the sleeve is in the second dehydration position, the dimension of the swiping opening along the predetermined direction is L2, where L1 > L2. The cleaning module for the flat mop head also includes:
[0006] The adjusting component includes a rotating sleeve rotatably connected to the dewatering frame. The rotating sleeve is rotatable relative to the dewatering frame, allowing the adjusting component to have a first position and a second position. A pressure column is provided on the rotating sleeve.
[0007] A guide member is fixedly connected to the sleeve and can move synchronously with the sleeve relative to the dehydration frame. The guide member is provided with a guide structure, which includes a spiral guide surface and a first groove and a second groove respectively disposed at both ends of the guide surface. The spiral center line of the guide surface coincides with the rotation center line of the adjusting member. The pressure column can slidably abut against the guide surface. When the adjusting member is in the first position, the pressure column is engaged in the first groove and the sleeve is in the first dehydration position; when the adjusting member is in the second position, the pressure column is engaged in the second groove and the sleeve is in the second dehydration position.
[0008] As a preferred technical solution for the flat mop head cleaning module, the flat mop head cleaning module further includes a first limiting block and a second limiting block that are both protruding from the guide member. The first limiting block is located on the side of the first groove away from the guide surface; the second limiting block is located on the side of the second groove away from the guide surface; the pressure column is located between the first limiting block and the second limiting block and along the circumference of the adjusting member. The first limiting block and the second limiting block can abut against the pressure column to limit the movement range of the pressure column.
[0009] As a preferred technical solution for the flat mop head cleaning module, the guide member is provided with a plurality of guide structures, which are evenly distributed along the center line of the adjusting member; the rotating sleeve is provided with a plurality of pressure posts, which are evenly distributed along the center line of the adjusting member, and the plurality of pressure posts are arranged in a one-to-one correspondence with the plurality of guide structures.
[0010] As a preferred technical solution for the flat mop head cleaning module, the adjusting member further includes a rotating cover that engages with the rotating sleeve. The outer peripheral surface of the rotating cover is provided with a first mark for indicating that the adjusting member rotates to the first position, and a second mark for indicating that the adjusting member rotates to the second position.
[0011] As a preferred technical solution for the flat mop head cleaning module, the adjusting component further includes a plurality of anti-slip grooves recessed on the outer peripheral surface of the rotating cover, the plurality of anti-slip grooves being evenly distributed along the circumferential direction of the adjusting component; or,
[0012] The adjusting component also includes several anti-slip protrusions on the outer peripheral surface of the rotating cover, and the several anti-slip protrusions are evenly distributed along the circumferential direction of the adjusting component.
[0013] As a preferred technical solution for the flat mop head cleaning module, the flat mop head cleaning module further includes an elastic element, which is connected between the wringer and the guide, and the elastic element is configured to make the guide always have a tendency to drive the sleeve to move towards the first dehydration position.
[0014] As a preferred technical solution for the flat mop head cleaning module, the wringer has a through hole, a through hole communicating with the through hole, and a groove communicating with the through hole. The squeegee is disposed in the through hole. Both the through hole and the groove extend along the set direction. The inner diameter of the groove is larger than the inner diameter of the through hole.
[0015] The sleeve includes a sleeve body that is slidably disposed in the through hole along the set direction, and a connecting part that protrudes from the sleeve body. The connecting part is slidably disposed in the through hole and partially extends into the groove. The rotating sleeve and the guide are both disposed in the groove. The guide and the connecting part are fixedly connected. The elastic element is a compression spring. The compression spring is sleeved on the connecting part, and the two ends of the compression spring abut against the bottom wall of the groove and the guide, respectively.
[0016] The inner wall of the groove is provided with a limiting protrusion, which abuts against the rotating sleeve along the set direction to restrict the rotating sleeve within the groove.
[0017] As a preferred technical solution for the flat mop head cleaning module, the guide member is connected with a number of protruding ribs, and the connecting part is provided with a number of slots. The number of protruding ribs and the number of slots are inserted into each other in a corresponding manner along the set direction.
[0018] As a preferred technical solution for the flat mop head cleaning module, the flat mop head cleaning module further includes a plurality of rollers, each rotatably connected to the sleeve body, the plurality of rollers being spaced apart, and the rollers partially extending into the sleeve opening; and / or,
[0019] The flat mop head cleaning module also includes a cleaning roller, which is rotatably connected to the wringer and is arranged side by side with the wiper.
[0020] The flat mop head cleaning module provided by this utility model has at least the following beneficial effects:
[0021] The device includes a wringer frame, a squeegee, a swiping sleeve, an adjusting component, and a guide component. The squeegee is mounted on the wringer frame. The swiping sleeve is slidably connected to the wringer frame along a predetermined direction. The swiping sleeve and the squeegee are spaced apart along the predetermined direction to form a swiping opening for the flat mop head to pass through. The swiping sleeve can slide relative to the wringer frame along the predetermined direction and has a first dehydration position and a second dehydration position. When the swiping sleeve is in the first dehydration position, the dimension of the swiping opening along the predetermined direction is L1. When the swiping sleeve is in the second dehydration position, the dimension of the swiping opening along the predetermined direction is L2, where L1 > L2. The adjusting component includes a rotating sleeve rotatably connected to the wringer frame, and the rotating sleeve can rotate relative to the wringer frame, allowing the adjusting component to have... In the first and second positions, a pressure post is provided on the rotating sleeve; a guide member is fixedly connected to the sleeve and can move synchronously with the sleeve relative to the wringer. The guide member is provided with a guide structure, which includes a spiral guide surface and a first groove and a second groove respectively provided at both ends of the guide surface. The spiral center line of the guide surface coincides with the rotation center line of the adjusting member. The pressure post can slide and abut against the guide surface. When the adjusting member is in the first position, the pressure post is engaged in the first groove, and the sleeve is in the first dehydration position; when the adjusting member is in the second position, the pressure post is engaged in the second groove, and the sleeve is in the second dehydration position. By switching the position of the adjusting member between the first and second positions, the sleeve can switch between the first and second dehydration positions, so that the spout has two different width dimensions. Therefore, when the mop head enters the spout, under the action of the squeegee, two different dehydration effects can be achieved, meeting the user's needs for different dehydration effects of the mop head. It is easy to operate, improves adjustment efficiency, and enhances user experience.
[0022] On the other hand, the present invention provides a mop, including the flat mop head cleaning module of any of the above-mentioned solutions. The mop also includes a mop handle and a flat mop head hinged to one end of the mop handle, and the mop handle is slidably inserted through the sleeve.
[0023] The mop provided by this utility model has at least the following beneficial effects:
[0024] The mop includes the aforementioned flat mop head cleaning module, a mop handle, and a flat mop head hinged to one end of the mop handle. The mop handle slides through the sleeve. Using the aforementioned flat mop head cleaning module, the user can easily and quickly adjust the wringing effect, effectively improving the user experience. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of the flat mop head cleaning module in an embodiment of this utility model;
[0026] Figure 2 This is an exploded view of the flat mop head cleaning module in an embodiment of this utility model;
[0027] Figure 3This is a cross-sectional view of a partial structure of the mop in an embodiment of this utility model;
[0028] Figure 4 This is a cross-sectional view of the flat mop head cleaning module in an embodiment of this utility model;
[0029] Figure 5 This is an exploded view of a partial structure of the flat mop head cleaning module in an embodiment of this utility model;
[0030] Figure 6 This is a schematic diagram of the rotating cover in an embodiment of the present invention;
[0031] Figure 7 This is a schematic diagram of the rotating sleeve in an embodiment of the present invention;
[0032] Figure 8 This is a schematic diagram of the guide component in an embodiment of the present utility model;
[0033] Figure 9 This is a partial structural diagram of the flat mop head cleaning module in an embodiment of this utility model;
[0034] Figure 10 This is a schematic diagram of the structure of the mop in an embodiment of this utility model.
[0035] In the picture:
[0036] 10. Flat mop head cleaning module; 101. Squeegee; 20. Mop handle; 30. Flat mop head;
[0037] 1. Dewatering rack; 11. Base; 12. Base plate; 121. Slide groove; 13. Lining; 14. Through hole; 15. Through hole; 16. Groove; 17. Limiting protrusion; 18. Guide plate;
[0038] 2. Wiper assembly; 21. Slider; 22. Wiper blade;
[0039] 3. Sleeve; 31. Sleeve body; 32. Connecting part; 321. Slot;
[0040] 4. Adjusting component; 41. Rotating sleeve; 411. Pressure column; 42. Rotating cover; 421. First mark; 422. Second mark; 423. Anti-slip groove;
[0041] 5. Guide component; 51. Guide structure; 511. First groove; 512. Guide surface; 513. Second groove; 52. First limiting block; 53. Second limiting block; 54. Protruding rib;
[0042] 6. Rollers;
[0043] 7. Cleaning roller;
[0044] 8. Elastic components. Detailed Implementation
[0045] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0046] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The terms "first position" and "second position" refer to two different positions. Moreover, "above," "on top of," and "over" the first feature in relation to the second feature includes the first feature directly above and diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "under," and "below" the first feature in relation to the second feature includes the first feature directly below and diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0047] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0048] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0049] In existing mops, users need to turn an adjustment knob to adjust the wringing effect. This knob moves the movable frame relative to the fixed frame, adjusting the size of the opening through which the mop head passes. However, the range of the adjustment knob is difficult to control directly. To achieve the desired wringing effect, users usually need to adjust the knob multiple times, resulting in low adjustment efficiency and negatively impacting the user experience.
[0050] To address this issue, this embodiment provides a flat mop head cleaning module 10.
[0051] Please refer to Figures 1 to 10 The flat mop head cleaning module 10 includes a wringer frame 1, a squeegee 2, a swiping sleeve 3, an adjusting component 4, and a guide component 5. The squeegee 2 is mounted on the wringer frame 1, and the swiping sleeve 3 is aligned with the wringer frame 1 in a predetermined direction (e.g., ...). Figure 2 The sleeve 3 and the wiper 2 are slidably connected in the direction indicated by the arrow ab. The sleeve 3 and the wiper 2 are spaced apart along a set direction to form a swiping opening 101 for the flat mop head 30 to pass through. The sleeve 3 can slide relative to the wringer 1 in a set direction and has a first dehydration position and a second dehydration position. When the sleeve 3 is in the first dehydration position, the size of the swiping opening 101 along the set direction is L1. When the sleeve 3 is in the second dehydration position, the size of the swiping opening 101 along the set direction is L2, where L1 > L2. The adjusting member 4 includes a rotating sleeve 41 rotatably connected to the wringer 1. The rotating sleeve 41 can rotate relative to the wringer 1 so that the adjusting member 4 has a first position and a second position. A pressure post 411 is provided on the rotating sleeve 41. The guide member 5 and The sleeve 3 is fixedly connected, and the guide 5 can move synchronously with the sleeve 3 relative to the dewatering frame 1. The guide 5 is provided with a guide structure 51, which includes a spiral guide surface 512 and a first groove 511 and a second groove 513 respectively provided at both ends of the guide surface 512. The spiral center line of the guide surface 512 coincides with the rotation center line of the adjusting member 4. The pressure column 411 can slide and abut against the guide surface 512. When the adjusting member 4 is in the first position, the pressure column 411 is engaged with the first groove 511, and the sleeve 3 is in the first dewatering position. When the adjusting member 4 is in the second position, the pressure column 411 is engaged with the second groove 513, and the sleeve 3 is in the second dewatering position.
[0052] The flat mop head cleaning module 10 provided in this embodiment allows the adjusting member 4 to rotate between a first position and a second position, enabling the squeegee 3 to switch positions between a first dehydration position and a second dehydration position. This allows the squeegee opening 101 to have two different width dimensions. Thus, when the flat mop head 30 pulls the mop into the squeegee opening 101, the squeegee 2 can achieve two different dehydration effects, meeting the user's needs for different dehydration effects of the flat mop head 30. This is convenient to operate, improves adjustment efficiency, and enhances the user experience. In addition, when the adjusting member 4 is in the first position, the pressure post 411 cooperates with the first groove 511, and when the adjusting member 4 is in the second position, the pressure post 411 cooperates with the second groove 513. Under the condition that the adjusting member 4 is not subjected to external force, the relative position of the adjusting member 4 and the guide member 5 can be kept stable, thereby ensuring the positional stability of the squeegee 3.
[0053] Understandably, when the adjusting member 4 is in the first position, external force can be used to rotate the adjusting member 4 to the second position, which can cause the pressure column 411 to disengage from the first groove 511 and slide along the guide surface 512 toward the second groove 513. At the same time, driven by the pressure column 411, the guide member 5 and the sleeve 3 move synchronously relative to the dehydrating frame 1 in a set direction, so that the sleeve 3 moves from the first dehydration position to the second dehydration position. When the adjusting member 4 is in the second position, the pressure column 411 is engaged in the second groove 513 and the sleeve 3 moves to the second dehydration position.
[0054] Specifically, in this embodiment, when the swivel sleeve 3 is in the first dehydration position, the mop on the flat mop head 30 can achieve a semi-dry, semi-wet effect under the action of the squeegee 2; when the swivel sleeve 3 is in the second dehydration position, the mop on the flat mop head 30 can achieve a completely dry effect under the action of the squeegee 2. It should be noted that "completely dry" means that the mop on the flat mop head 30 still contains moisture, similar to the effect after dehydration in a drum washing machine. The mop can be made of cotton cloth or PVC foam, etc.
[0055] In other embodiments, the sleeve 3 can be made to move relative to the wringer 1 in a set direction and have more dehydration positions as needed to meet the diverse dehydration effect requirements of users. Taking the sleeve 3 being able to move relative to the wringer 1 in a set direction and having a third dehydration position as an example, the third dehydration position can be located between the first and second dehydration positions. The distance between the sleeve 3 and the wiper 2 when it is in the first dehydration position, the distance between the sleeve 3 and the wiper 2 when it is in the third dehydration position, and the distance between the sleeve 3 and the wiper 2 when it is in the second dehydration position decreases sequentially. When the sleeve 3 is in the third dehydration position, the dehydration intensity of the mop on the flat mop head 30 under the action of the wiper 2 is between The effect is between semi-dry and semi-wet and completely dry; or, the first dehydration position can be located between the third dehydration position and the second dehydration position. The distance between the squeegee 3 and the wiper 2 when the squeegee 3 is in the third dehydration position, the distance between the squeegee 3 and the wiper 2 when the squeegee 3 is in the first dehydration position, and the distance between the squeegee 3 and the wiper 2 when the squeegee 3 is in the second dehydration position decreases sequentially. When the squeegee 3 is in the third dehydration position, the dehydration intensity of the mop on the flat mop head 30 under the action of the wiper 2 is between completely wet and semi-dry and semi-wet effects. Taking the third dehydration position as being between the first and second dehydration positions as an example, the guide structure 51 also includes a third groove 16 disposed on the guide surface 512. The third groove 16 is located between the first groove 511 and the second groove 513. When the pressure column 411 and the third groove 16 are engaged, the squeegee 3 is in the third dehydration position.
[0056] Alternatively, please refer to Figure 4 and Figure 8 The flat mop head cleaning module 10 also includes a first limiting block 52 and a second limiting block 53, both protruding from the guide member 5. The first limiting block 52 is located on the side of the first groove 511 away from the guide surface 512; the second limiting block 53 is located on the side of the second groove 513 away from the guide surface 512. The pressure post 411 is located between the first limiting block 52 and the second limiting block 53, and along the circumference of the adjusting member 4, both the first limiting block 52 and the second limiting block 53 can abut against the pressure post 411 to limit the movement range of the pressure post 411. By setting the first limiting block 52 and the second limiting block 53, the movement range of the pressure post 411 can be effectively limited, thereby limiting the rotation range of the adjusting member 4 and ensuring stable adjustment effect.
[0057] Alternatively, please refer to Figure 4 and Figure 8The guide member 5 is provided with multiple guide structures 51, which are evenly distributed along the center line of the adjusting member 4. The rotating sleeve 41 is provided with multiple pressure posts 411, which are evenly distributed along the center line of the adjusting member 4, and each pressure post 411 corresponds to one of the guide structures 51. With this configuration, when the adjusting member 4 is rotated, the rotating sleeve 41 drives the guide member 5 to move through the multiple pressure posts 411, which can ensure the stability of the movement of the guide member 5 and the adjusting sleeve 3. Specifically, this embodiment exemplarily provides a scheme in which the guide member 5 is provided with two guide structures 51 and the rotating sleeve 41 is provided with two pressure posts 411. Furthermore, the first limiting block 52 is provided between the first groove 511 of the first guide structure 51 and the second groove 513 of the second guide structure 51; the second limiting block 53 is provided between the second groove 513 of the first guide structure 51 and the first groove 511 of the second guide structure 51.
[0058] Optionally, the flat mop head cleaning module 10 also includes an elastic element 8, which is connected between the wringer 1 and the guide 5. The elastic element 8 is configured to ensure that the guide 5 always tends to move the sleeve 3 towards the first dehydration position. Specifically, the elastic force of the elastic element 8 is directed along a set direction. By providing the elastic element 8, the elastic element 8 provides an elastic force to the sleeve 3 to move towards the first dehydration position. Thus, when the adjusting member 4 is in the first and second positions, under the action of the elastic force provided by the elastic element 8, the pressure column 411 can be stably engaged with the first groove 511 or the second groove 513, thereby ensuring the stability of the sleeve 3's position. In addition, when the adjusting member 4 is rotated from the second position to the first position, under the action of the elastic force of the elastic element 8, the sleeve 3 can move towards the first dehydration position by itself under the drive of the guide 5.
[0059] It should be noted that when the adjusting member 4 is in the first position, the pressure column 411 is engaged with the first groove 511. When the adjusting member 4 is rotated to the second position, the pressure column 411 drives the guide member 5 to compress the elastic member 8 downward, so that the pressure column 411 disengages from the first groove 511. After the pressure column 411 disengages from the first groove 511, under the action of the elastic member 8, the guide surface 512 and the pressure column 411 can fit tightly together. When the adjusting member 4 is in the second position, the pressure column 411 is engaged with the second groove 513. When the adjusting member 4 is rotated to the first position, the pressure column 411 drives the guide member 5 to compress the elastic member 8 downward, so that the pressure column 411 disengages from the second groove 513. After the pressure column 411 disengages from the second groove 513, under the action of the elastic member 8, the surface 512 and the pressure column 411 can fit tightly together. In other embodiments, the pressure column 411 may also have a certain elasticity. When the adjusting member 4 is in the first position or the second position, under the action of external force, the pressure column 411 is elastically deformed and disengaged from the first groove 511 or the second groove 513.
[0060] In this embodiment, the elastic element 8 is a compression spring. In other embodiments, the elastic element 8 can also be replaced by a tension spring, etc.
[0061] Optionally, the wringer 1 has a through hole 14, a through hole 15 communicating with the through hole 14, and a groove 16 communicating with the through hole 15. The squeegee 2 is disposed in the through hole 14. The through hole 15 and the groove 16 both extend in a set direction. The inner diameter of the groove 16 is larger than the inner diameter of the through hole 15. The squeegee 3 includes a squeegee body 31 slidably disposed in the through hole 14 in a set direction, and a connecting part 32 protruding from the squeegee body 31. The connecting part 32 slidably passes through the through hole 14 and partially extends into the groove 16. The rotating sleeve 41 and the guide 5 are both disposed in the groove 16. The guide 5 and the connecting part 32 are fixedly connected. The compression spring is sleeved on the connecting part 32, and the two ends of the compression spring abut against the bottom wall of the groove 16 and the guide 5, respectively. The inner wall of the groove 16 is provided with a limiting protrusion 17. The limiting protrusion 17 abuts against the rotating sleeve 41 in a set direction to restrict the rotating sleeve 41 in the groove 16. With this configuration, under the elastic force of the elastic element 8, the guide element 5 applies a force to the rotating sleeve 41 to move outward from the groove 16. However, under the restriction of the limiting protrusion 17, the rotating sleeve 41 and the limiting protrusion 17 remain in contact and are restricted within the groove 16, thereby ensuring that the relative position of the rotating sleeve 41 and the squeezing frame 1 is stable. This ensures that when the adjusting element 4 is in the first position or the second position, the squeegee 3 is stably located in the first squeezing position or the second squeezing position.
[0062] Alternatively, please refer to Figure 5 The guide member 5 is connected with several protruding ribs 54, and the connecting part 32 is provided with several slots 321. The protruding ribs 54 and the slots 321 are inserted into each other in a predetermined direction. This arrangement ensures that the relative position of the guide member 5 and the sleeve 3 remains stable when they are connected.
[0063] Alternatively, please refer to Figure 3 , Figure 4 and 6 The adjusting member 4 also includes a rotating cover 42 that engages with the rotating sleeve 41. The outer circumferential surface of the rotating cover 42 is provided with a first indicator 421 for indicating that the adjusting member 4 rotates to a first position, and a second indicator 422 for indicating that the adjusting member 4 rotates to a second position. This arrangement allows the user to easily adjust the mop's wringing effect by referring to the first and second indicators 421, improving operational efficiency. The first indicator 421 may include text and / or an indicator arrow; the second indicator 422 may also include text and / or an indicator arrow.
[0064] Alternatively, please refer to Figure 6The adjusting member 4 also includes a plurality of anti-slip grooves 423 recessed on the outer peripheral surface of the rotating cover 42, the plurality of anti-slip grooves 423 being evenly distributed along the circumferential direction of the adjusting member 4. This design prevents slippage when the user rotates the rotating cover 42. In other embodiments, the adjusting member 4 also includes a plurality of anti-slip protrusions protruding from the outer peripheral surface of the rotating cover 42, the plurality of anti-slip protrusions being evenly distributed along the circumferential direction of the adjusting member 4.
[0065] Alternatively, please refer to Figure 3 The wringer 1 has a frame structure. Depending on the actual needs, the wringer 1 can be integrally formed from a single component or assembled from multiple components. Specifically, this embodiment exemplarily provides a scheme in which the wringer 1 is assembled from multiple components. The wringer 1 includes a U-shaped base 11, a bottom plate 12, and an inner liner 13. The base 11 and the bottom plate 12 are detachably connected (e.g., snap-fit, or connected by screws), and the two form a through hole 14. The inner liner 13 and the base 11 are connected by bolts, and the inner liner 13 forms a through hole 15 and a groove 16. The squeegee 2 is disposed on the bottom plate 12, and the squeegee sleeve 3 slides in cooperation with both the inner liner 13 and the base 11.
[0066] Alternatively, please refer to Figure 9 The wiper component 2 includes a slider 21 slidably connected to the base plate 12 and a wiper blade 22 fixed to the slider 21. The base plate 12 is provided with a long groove 121. The slider 21 is slidably inserted into the groove 121. The length direction of the groove 121 forms an angle with the center line direction of the through hole 14. Several guide plates 18 are protruding on the base plate 12. The wiper blade 22 is slidably connected to the several guide plates 18, and the sliding direction of the wiper blade 22 and the guide plates 18 is consistent with the length direction of the groove 121. The slider 21 drives the wiper blade 22 to move along the groove 121, giving the wiper 2 a working position and a clearance position. When the mop head 30 moves upward through the nozzle 101, the wiper 2 moves to the working position under the action of the mop. At this time, one end of the slider 21 and the groove 121 abuts, and the wiper blade 22 can scrape water off the mop. When the mop head 30 moves downward through the nozzle 101, the wiper 2 moves to the clearance position under the action of the mop. At this time, the other end of the slider 21 and the groove 121 abuts, and the wiper blade 22 separates from the mop. Preferably, two grooves 121 are provided at intervals on the base plate 12. The wiper 2 includes two sliders 21, which are slidably inserted into the two grooves 121 in a one-to-one correspondence to ensure that the wiper 2 remains stable when moving between the working position and the clearance position.
[0067] Alternatively, please refer to Figure 2The flat mop head cleaning module 10 also includes a plurality of rollers 6, each rotatably connected to the sleeve body 31. The rollers 6 are spaced apart, with portions extending into the sleeve opening 101. By providing the rollers 6, when the flat mop head 30 passes through the sleeve opening 101, the flat mop head 30 will contact the rollers 6, causing the rollers 6 to roll and reduce the friction on the flat mop head 30, ensuring smooth movement of the flat mop head 30 during dehydration. Preferably, the plurality of rollers 6 are arranged in an array on the sleeve body 31.
[0068] Alternatively, please refer to Figure 2 and Figure 9 The mop head cleaning module 10 also includes a cleaning roller 7, which is rotatably connected to the wringer 1 and arranged side-by-side with the squeegee 2. By providing the cleaning roller 7, hair and other debris on the mop can be removed as the mop head 30 passes through the squeegee 101, cleaning the mop while simultaneously dehydrating it. Preferably, the surface of the cleaning roller 7 has multiple squeegees evenly distributed along its circumference. These squeegees are used to scrape away debris from the wiping element, improving the scraping effect.
[0069] This embodiment also provides a mop; please refer to [reference needed]. Figure 10 The mop includes the aforementioned flat mop head cleaning module 10, a mop handle 20, and a flat mop head 30 hinged to one end of the mop handle 20. The mop handle 20 is slidably inserted into the sleeve 3. Using the aforementioned flat mop head cleaning module 10, the user can easily and quickly adjust the wringing effect, effectively improving the user experience.
[0070] The flat mop head 30 can rotate relative to the mop handle 20 and either rest against or unfold relative to the mop handle 20. When the flat mop head 30 rests against the mop handle 20, the mop handle 20 slides relative to the bushing along the length of the mop handle 20, and the flat mop head 30 enters the squeegee 101. Under the action of the squeegee 2, the water on the mop on the flat mop head 30 will be squeezed out. By positioning the squeegee 3 in different dehydration positions, the mop can have different dry and wet effects to meet the different needs of users.
[0071] In other embodiments, the above-described flat mop head cleaning module 10 can also be installed in the mop bucket.
[0072] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A cleaning module for a flat mop head, the cleaning module for a flat mop head includes a wringer (1), a squeegee (2) disposed on the wringer (1), and a sleeve (3) slidably connected to the wringer (1) in a set direction. The sleeve (3) and the squeegee (2) are spaced apart in a set direction and form a squeegee opening (101) for the flat mop head (30) to pass through. The sleeve (3) can slide relative to the wringer (1) in a set direction and has a first dehydration position and a second dehydration position. When the sleeve (3) is in the first dehydration position, the size of the squeegee opening (101) in the set direction is L1. When the sleeve (3) is in the second dehydration position, the size of the squeegee opening (101) in the set direction is L2. L1 > L2. Its features are, The flat mop head cleaning module also includes: Adjusting component (4) includes a rotating sleeve (41) rotatably connected to the dewatering frame (1). The rotating sleeve (41) can rotate relative to the dewatering frame (1) so that the adjusting component (4) has a first position and a second position. A pressure column (411) is provided on the rotating sleeve (41). A guide member (5) is fixedly connected to the sleeve (3), and the guide member (5) can move synchronously with the sleeve (3) relative to the wringer (1). The guide member (5) is provided with a guide structure (51). The guide structure (51) includes a spiral guide surface (512) and a first groove (511) and a second groove (513) respectively provided at both ends of the guide surface (512). The spiral center line of the guide surface (512) is aligned with the adjusting member (4). The rotation center line of the adjustment member (4) coincides with the first groove (511), and the pressure column (411) can slide against the guide surface (512). When the adjustment member (4) is in the first position, the pressure column (411) is engaged in the first groove (511), and the squeegee (3) is in the first dehydration position. When the adjustment member (4) is in the second position, the pressure column (411) is engaged in the second groove (513), and the squeegee (3) is in the second dehydration position.
2. The flat mop head cleaning module according to claim 1, characterized in that, The flat mop head cleaning module also includes a first limiting block (52) and a second limiting block (53) protruding from the guide member (5). The first limiting block (52) is located on the side of the first groove (511) away from the guide surface (512); the second limiting block (53) is located on the side of the second groove (513) away from the guide surface (512). The pressure column (411) is located between the first limiting block (52) and the second limiting block (53) along the circumference of the adjusting member (4). Both the first limiting block (52) and the second limiting block (53) can abut against the pressure column (411) to limit the movement range of the pressure column (411).
3. The flat mop head cleaning module according to claim 1, characterized in that, The guide member (5) is provided with a plurality of guide structures (51), which are evenly distributed along the center line of the adjusting member (4); the rotating sleeve (41) is provided with a plurality of pressure posts (411), which are evenly distributed along the center line of the adjusting member (4), and the plurality of pressure posts (411) are provided in a one-to-one correspondence with the plurality of guide structures (51).
4. The flat mop head cleaning module according to claim 1, characterized in that, The adjusting member (4) further includes a rotating cover (42) that engages with the rotating sleeve (41). The outer peripheral surface of the rotating cover (42) is provided with a first mark (421) for indicating that the adjusting member (4) rotates to the first position, and a second mark (422) for indicating that the adjusting member (4) rotates to the second position.
5. The flat mop head cleaning module according to claim 4, characterized in that, The adjusting member (4) further includes a plurality of anti-slip grooves (423) recessed on the outer peripheral surface of the rotating cover (42), the plurality of anti-slip grooves (423) being evenly distributed along the circumferential direction of the adjusting member (4); or, The adjusting member (4) also includes a plurality of anti-slip protrusions protruding from the outer peripheral surface of the rotating cover (42), and the plurality of anti-slip protrusions are evenly distributed along the circumferential direction of the adjusting member (4).
6. The flat mop head cleaning module according to any one of claims 1-5, characterized in that, The flat mop head cleaning module also includes an elastic element (8), which is connected between the wringer (1) and the guide (5), and the elastic element (8) is configured such that the guide (5) always tends to drive the sleeve (3) toward the first dehydration position.
7. The flat mop head cleaning module according to claim 6, characterized in that, The wringer (1) has a through hole (14), a through hole (15) communicating with the through hole (14), and a groove (16) communicating with the through hole (15). The squeegee (2) is disposed in the through hole (14). The through hole (15) and the groove (16) both extend along the set direction. The inner diameter of the groove (16) is larger than the inner diameter of the through hole (15). The sleeve (3) includes a sleeve body (31) that is slidably disposed in the through hole (14) along the set direction, and a connecting part (32) protruding from the sleeve body (31). The connecting part (32) is slidably disposed in the through hole (14) and partially extends into the groove (16). The rotating sleeve (41) and the guide (5) are both disposed in the groove (16). The guide (5) and the connecting part (32) are fixedly connected. The elastic element (8) is a compression spring. The compression spring is sleeved on the connecting part (32), and the two ends of the compression spring abut against the bottom wall of the groove (16) and the guide (5) respectively. The inner wall of the groove (16) is provided with a limiting protrusion (17), which abuts against the rotating sleeve (41) along the set direction to restrict the rotating sleeve (41) within the groove (16).
8. The flat mop head cleaning module according to claim 7, characterized in that, The guide member (5) is connected with a plurality of protruding ribs (54), and the connecting part (32) is provided with a plurality of slots (321). The plurality of protruding ribs (54) and the plurality of slots (321) are inserted into each other in a corresponding manner along the set direction.
9. The flat mop head cleaning module according to claim 7, characterized in that, The flat mop head cleaning module also includes a plurality of rollers (6) rotatably connected to the sleeve body (31), the plurality of rollers (6) being spaced apart, and a portion of each roller (6) extending into the sleeve opening (101); and / or, The flat mop head cleaning module also includes a cleaning roller (7), which is rotatably connected to the wringer (1) and is arranged side by side with the wiper (2).
10. A mop, characterized in that, The mop includes the flat mop head cleaning module according to any one of claims 1-9, and the mop further includes a mop handle (20) and a flat mop head (30) hinged to one end of the mop handle (20), wherein the mop handle (20) is slidably inserted through the sleeve (3).