Flat mop head cleaning module and mop

By designing a combination of wringer, squeegee, swiping sleeve, and guide on the mop, and utilizing a drive mechanism to adjust the width of the swiping nozzle, the problem of low adjustment efficiency of existing mop nozzles is solved, improving user experience and the stability of the wringing effect.

CN224085260UActive Publication Date: 2026-04-07BAZHOU HAOLIN HOUSEHOLD PROD CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing mop spout structure cannot effectively adjust the size, making it difficult for users to quickly adjust to the desired wringing effect, thus affecting the user experience.

Method used

A cleaning module for a flat mop head was designed, including a wringer, a squeegee, a swiping sleeve, a guide, and a drive mechanism. The drive mechanism drives the guide to move, which in turn moves the swiping sleeve between different dehydration positions, thereby adjusting the width of the swiping opening to meet the diverse dehydration needs of users.

Benefits of technology

It enables quick adjustment of the mop's wringing effect, improves user experience and operational efficiency, and ensures the stability of the mop's movement and the wringing effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224085260U_ABST
    Figure CN224085260U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of mop plate cleaning, in particular to a flat mop head cleaning module and a mop, the flat mop head cleaning module comprises a water squeezing frame, a water scraping piece, a stroking sleeve, a guide piece and a driving mechanism, and the water scraping piece is arranged on the water squeezing frame; the stroking sleeve is in sliding connection with the water squeezing frame, the stroking sleeve and the water scraping piece are arranged in a spaced mode in the set direction to form a stroking opening, and the stroking sleeve can move in the set direction relative to the water squeezing frame and is provided with a first dewatering position and a second dewatering position. The distance between the stroking sleeve and the water scraping pieces when the stroking sleeve is located at the first dewatering position is larger than the distance between the water scraping pieces when the stroking sleeve is located at the second dewatering position. The guide piece is rotatably arranged on the stroking sleeve in a sleeving mode and is fixed to the stroking sleeve in the set direction, the water squeezing frame is provided with a guide groove, the guide piece is provided with a guide column connected with the guide groove in a sliding and inserted mode, and the driving mechanism is used for driving the guide piece to move so that the guide piece can drive the stroking sleeve to move between the first dewatering position and the second dewatering position. And the adjustment efficiency and the user experience can be improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to mop plate cleaning technical field especially relates to a flat mop head cleaning module and mop. BACKGROUND

[0002] The mop is a kind of long handle cleaning tool for scrubbing floor, is widely used in family, hotel and other places.The mop includes mop rod, and the lower end of mop rod is connected with rotatable flat mop head;Mop rod is sleeved with slidable wring sleeve, and wring sleeve is provided with wring opening for flat mop head to pass through, and the sliding of wring sleeve relative to mop rod can make flat mop head in dewatering state pass through wring opening and implement extrusion dewatering.

[0003] Because user uses mop, according to the different of use place and the different of operation habit, there will be different demand for the scraping effect of scraping structure, which leads to that the mop with the wring opening of size that cannot be adjusted in the prior art cannot satisfy the diversified demand of user.For this, like the prior patent of application No. CN202210332987.1, a wring opening structure of mop is provided, the wring opening structure includes movable frame, fixed frame and adjusting twist, movable frame is connected to fixed frame and can move relative to fixed frame, wring opening is formed between movable frame and fixed frame, adjusting twist and movable frame are respectively arranged on the two sides of fixed frame, and the local position of one of adjusting twist and movable frame penetrates fixed frame and is connected, adjusting twist and movable frame are connected by screw structure, and the rotation of adjusting twist relative to fixed frame can promote the movement of movable frame relative to fixed frame by screw structure, and then the size of wring opening can be adjusted.However, the different range of screwing adjusting twist can lead to the change of dewatering effect of flat mop head, and user is difficult to screw adjusting twist directly to the position of dewatering effect required by oneself when using, usually needs to adjust the position of adjusting twist for many times, and the adjustment efficiency is low, and the user experience is affected. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a flat mop head cleaning module and mop to improve the adjustment efficiency of dewatering effect of mop and improve user experience.

[0005] On the one hand, the utility model provides a flat mop head cleaning module, and the flat mop head cleaning module comprises:

[0006] Wringing frame;

[0007] Scraping part, is arranged in the wringing frame;

[0008] The wringing sleeve is movably connected with the wringing frame, and is spaced apart from the wiping member along a set direction to form a wringing opening for the mop head to pass through. The wringing sleeve is movable relative to the wringing frame along the set direction to have a first wringing position and a second wringing position. The distance between the wringing sleeve and the wiping member is greater when the wringing sleeve is in the first wringing position than when the wringing sleeve is in the second wringing position.

[0009] The guide member is rotatably sleeved on the wringing sleeve and is fixed in position along the set direction. The guide member is provided with a guide column, and the wringing frame is provided with a guide groove. The guide column is slidably inserted into the guide groove.

[0010] The driving mechanism is used to drive the guide member to move, so that the guide member drives the wringing sleeve to move between the first wringing position and the second wringing position.

[0011] As a preferred technical solution of the mop head cleaning module, the wringing frame is provided with a through hole and a groove in communication with the through hole.

[0012] The wringing sleeve includes a wringing sleeve body and a protruding column. The protruding column is slidably inserted into the through hole. A first end of the protruding column is fixedly connected with the wringing sleeve body, and a second end of the protruding column is located in the groove. The guide member is located in the groove and is rotatably sleeved on the protruding column.

[0013] The driving mechanism includes a pressing plate. The pressing plate is fixedly connected with the second end of the protruding column. When the wringing sleeve is in the first wringing position, an end face of the pressing plate away from the guide member is flush with a groove opening of the groove. When the wringing sleeve is in the second wringing position, the pressing plate is located in the groove.

[0014] As a preferred technical solution of the mop head cleaning module, the pressing plate is provided with a plurality of protrusions in a hemispherical shape. The protrusions are uniformly distributed along the circumferential direction of the protruding column. Along the set direction, one end of the guide member abuts against the protruding column, and the other end of the guide member abuts against the plurality of protrusions.

[0015] As a preferred technical solution of the mop head cleaning module, the mop head cleaning module further includes a bushing. The bushing is located in the groove. The wringing frame abuts against the bushing along the set direction to limit the bushing from being separated from the groove. The bushing is rotatably connected with the wringing frame. The bushing is provided with an avoiding groove. The guide column passes through the avoiding groove and is inserted into the guide groove.

[0016] As a preferred technical solution of the mop head cleaning module, the wringing frame is provided with a through hole and a groove in communication with the through hole.

[0017] The pulling sleeve comprises a pulling sleeve body and a protruding column, the protruding column is slidably arranged in the through hole, a first end of the protruding column is fixedly connected with the pulling sleeve body, and a second end of the protruding column is located in the recess; the guide member is located in the recess and is rotatably sleeved on the protruding column;

[0018] The driving mechanism comprises a knob and a connecting sleeve, the knob is rotatably sleeved on the water squeezing frame and located outside the recess, the connecting sleeve is fixedly connected with the knob and located in the recess, and the connecting sleeve is provided with a through slot, the length direction of the through slot is along the setting direction, and the guide column passes through the through slot and is inserted into the guide groove.

[0019] As the preferred technical scheme of the flat mop head cleaning module, the driving mechanism further comprises an elastic member, the elastic member is located in the recess, and the elastic member is arranged between the water squeezing frame and the guide member, the elastic member is configured to give the guide member an elastic force, and the guide member always has a tendency to drive the pulling sleeve to move to the second dehydration position.

[0020] As the preferred technical scheme of the flat mop head cleaning module, the guide groove comprises a first groove and a second groove, a first end of the first groove and a first end of the second groove are away from each other, a second end of the first groove and a second end of the second groove are communicated with each other, and the first groove and the second groove are arranged at an angle, and the first end of the first groove is away from the first end of the second groove relative to the water scraping member;

[0021] When the pulling sleeve is located at the first dehydration position, the guide column abuts against the first end of the first groove, and when the pulling sleeve is located at the second dehydration position, the guide column abuts against the first end of the second groove.

[0022] As the preferred technical scheme of the flat mop head cleaning module, the flat mop head cleaning module further comprises a roller rotatably connected with the pulling sleeve body, and the roller partially extends into the pulling opening; and / or,

[0023] The flat mop head cleaning module further comprises a cleaning roller, the cleaning roller is rotatably connected with the water squeezing frame, and the cleaning roller is arranged side by side with the water scraping member.

[0024] As the preferred technical scheme of the flat mop head cleaning module, the water scraping member comprises a roller rotatably connected with the water squeezing frame, and a water scraping plate protruding from an outer circumferential surface of the roller, first and second limiting plates are arranged on the water squeezing frame at intervals, the first and second limiting plates are respectively located on two sides of the roller, and the water scraping plate can abut against the first and second limiting plates respectively.

[0025] The flat mop head cleaning module provided by the utility model has at least the following beneficial effects:

[0026] The flat mop cleaning module comprises a squeezing frame, a wiping member, a rolling sleeve, a guide member and a driving mechanism, the wiping member is arranged on the squeezing frame; the rolling sleeve is slidably connected with the squeezing frame, and the rolling sleeve and the wiping member are arranged in a set direction and form a rolling opening for the flat mop to pass through, the rolling sleeve can move in the set direction relative to the squeezing frame to have a first water removal position and a second water removal position, the distance between the rolling sleeve and the wiping member when the rolling sleeve is located at the first water removal position is greater than the distance between the wiping member when the rolling sleeve is located at the second water removal position; the guide member is rotatably sleeved on the rolling sleeve and is fixed in position with the rolling sleeve in the set direction, the guide member is provided with a guide column, and the squeezing frame is provided with a guide groove, and the guide column is slidably inserted into the guide groove; the driving mechanism is used for driving the guide member to move, so that the guide member drives the rolling sleeve to move between the first water removal position and the second water removal position. The driving mechanism drives the guide member to move, and then the guide member drives the rolling sleeve to move between the first water removal position and the second water removal position, so as to realize the rolling opening with two different width sizes in the set direction, so that when the flat mop enters the rolling opening, the two different water removal effects can be realized under the action of the wiping member, the user's demand for different water removal effects of the flat mop is met, the operation is convenient, the adjustment efficiency can be improved, and the user experience is improved; in addition, when the guide member drives the rolling sleeve to move between the first water removal position and the second water removal position, the guide column and the guide groove are matched to ensure the stability of the movement direction of the rolling sleeve.

[0027] In another aspect, the utility model provides a mop, including any scheme in above -mentioned flat mop cleaning module, the mop still includes mop stick, and the flat mop is hinged to one end of the mop stick, the mop stick is slidably arranged in the rolling sleeve.

[0028] The mop provided by the utility model has at least the following beneficial effects:

[0029] The mop comprises the flat mop cleaning module, the mop further comprises a mop rod and a flat mop hinged to one end of the mop rod, and the mop rod is slidably arranged in the rolling sleeve. The flat mop cleaning module is used, and when the user adjusts the water removal effect, the operation is simple and fast, and the user experience can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 It is a structure schematic view of a flat mop cleaning module in the utility model embodiment;

[0031] Figure 2 It is an exploded view of a flat mop cleaning module in the utility model embodiment;

[0032] Figure 3 It is a sectional view of a flat mop cleaning module in the utility model embodiment;

[0033] Figure 4A sectional view of a partial structure of the flat mop head cleaning module in the embodiment of the utility model;

[0034] Figure 5 A structure schematic view of another flat mop head cleaning module in the embodiment of the utility model;

[0035] Figure 6 A first exploded view of another flat mop head cleaning module in the embodiment of the utility model;

[0036] Figure 7 A second exploded view of another flat mop head cleaning module in the embodiment of the utility model;

[0037] Figure 8 A sectional view of another flat mop head cleaning module in the embodiment of the utility model;

[0038] Figure 9 A sectional view of a partial structure of another flat mop head cleaning module in the embodiment of the utility model;

[0039] Figure 10 A structure schematic view of a mop in the embodiment of the utility model.

[0040] In the drawing,

[0041] 10, flat mop head cleaning module; 101, roll mouth; 20, mop rod; 30, flat mop head;

[0042] 1, wringing frame; 11, base; 111, recess; 12, bottom plate; 121, first limiting plate; 122, second limiting plate; 123, draining hole; 13, inner lining; 131, through hole; 14, guide groove; 141, first groove; 142, second groove;

[0043] 2, water scraping piece; 21, roller; 22, water scraping plate;

[0044] 3, roll sleeve; 31, roll sleeve body; 32, protruding column;

[0045] 4, guide piece; 41, guide column;

[0046] 5, driving mechanism; 51, elastic piece; 52, pressing plate; 53, knob; 54, connecting sleeve; 541, through groove;

[0047] 6, roller;

[0048] 7, cleaning roller;

[0049] 8, bushing; 81, position avoiding groove. DETAILED DESCRIPTION

[0050] The technical solutions of the present application will be described clearly and completely in connection with the drawings. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0051] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", are only for the purpose of description, and cannot be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions, and moreover, the first feature is "above", "above" and "above" of the second feature, which includes the first feature above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature is "below", "below" and "below" of the second feature, which includes the first feature below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0052] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0053] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation on the present application.

[0054] The user needs to rotate the adjusting knob to drive the movable frame to move relative to the fixed frame to adjust the size of the gap through which the mop head passes when adjusting the dehydration effect in the prior art. However, it is difficult to directly control the amplitude of the rotating adjusting knob. When the user uses it, it is difficult to directly rotate the adjusting knob to the position of the dehydration effect required by the user. Usually, the position of the adjusting knob needs to be adjusted for several times, which is low in adjusting efficiency and affects the user experience.

[0055] To this end, the mop head cleaning module is provided to solve the above problems.

[0056] Please refer to Figures 1 to 10 The mop head cleaning module 10 includes a squeezing frame 1, a scraping member 2, a gap sleeve 3, a guide member 4, and a driving mechanism 5. The scraping member 2 is arranged on the squeezing frame 1. The gap sleeve 3 is slidably connected with the squeezing frame 1. The gap sleeve 3 and the scraping member 2 are arranged in a set direction and form a gap 101 for the mop head 30 to pass through. The gap sleeve 3 can move along the set direction relative to the squeezing frame 1 to have a first dehydration position and a second dehydration position. The distance between the gap sleeve 3 and the scraping member 2 when the gap sleeve 3 is in the first dehydration position is greater than the distance between the gap sleeve 3 and the scraping member 2 when the gap sleeve 3 is in the second dehydration position. The guide member 4 is rotatably sleeved on the gap sleeve 3 and is fixed in position with the gap sleeve 3 along the set direction. The guide member 4 is provided with a guide column 41. The squeezing frame 1 is provided with a guide groove 14. The guide column 41 is slidably inserted into the guide groove 14. The driving mechanism 5 is used to drive the guide member 4 to move, so that the guide member 4 drives the gap sleeve 3 to move between the first dehydration position and the second dehydration position. The mop head cleaning module 10 provided by the embodiment drives the guide member 4 to move through the driving mechanism 5, and then drives the gap sleeve 3 to move between the first dehydration position and the second dehydration position through the guide member 4, so that the gap 101 has two different width sizes. When the mop head 30 enters the gap 101, two different dehydration effects can be achieved under the action of the scraping member 2, which meets the user's demand for different dehydration effects of the mop head 30, is convenient to operate, can improve the adjusting efficiency and improve the user experience. In addition, when the guide member 4 drives the gap sleeve 3 to move between the first dehydration position and the second dehydration position, the guide column 41 and the guide groove 14 cooperate to ensure the stability of the movement direction of the gap sleeve 3.

[0057] The set direction is the direction indicated by the arrow ab in Figure 1 The set direction is the width direction of the gap 101.

[0058] Specifically, in the embodiment, when the wringing sleeve 3 is located at the first dehydration position, the rubber cotton or cotton cloth on the flat mop head 30 can achieve the semi-dry and semi-wet effect under the action of the scraping member 2; when the wringing sleeve 3 is located at the second dehydration position, the rubber cotton or cotton cloth on the flat mop head 30 can achieve the full dry effect under the action of the scraping member 2. It should be noted that the full dry refers to that the rubber cotton or cotton cloth on the flat mop head 30 still contains water, which is similar to the effect after dehydration of the drum washing machine.

[0059] In other embodiments, the wringing sleeve 3 can also be moved relative to the wringing frame 1 along the set direction to have more dehydration positions according to needs, so as to meet the diversified dehydration effect needs of users. For example, the wringing sleeve 3 can have a third dehydration position relative to the wringing frame 1 along the set direction, the third dehydration position can be located between the first dehydration position and the second dehydration position, the distance between the wringing sleeve 3 located at the first dehydration position and the scraping member 2, the distance between the wringing sleeve 3 located at the third dehydration position and the scraping member 2, and the distance between the wringing sleeve 3 located at the second dehydration position and the scraping member 2 decrease in turn, and the dehydration strength of the rubber cotton or cotton cloth on the flat mop head 30 under the action of the scraping member 2 when the wringing sleeve 3 is located at the third dehydration position is between the semi-dry and semi-wet effect and the full dry effect. Alternatively, the first dehydration position can be located between the third dehydration position and the second dehydration position, the distance between the wringing sleeve 3 located at the third dehydration position and the scraping member 2, the distance between the wringing sleeve 3 located at the first dehydration position and the scraping member 2, and the distance between the wringing sleeve 3 located at the second dehydration position and the scraping member 2 decrease in turn, and the dehydration strength of the rubber cotton or cotton cloth on the flat mop head 30 under the action of the scraping member 2 when the wringing sleeve 3 is located at the third dehydration position is between the full wet and the semi-dry and semi-wet effect.

[0060] Optionally, please refer to Figures 3 to 5 , Figures 6 to 9 , the wringing frame 1 has a frame structure, and according to actual needs, the wringing frame 1 can be integrally formed by one component or assembled by multiple components. Specifically, please refer to Figures 2 to 9 , in the embodiment, the wringing frame 1 is exemplarily assembled by multiple components, and the wringing frame 1 includes a base 11 in a U shape, a bottom plate 12, and an inner lining 13. The base 11 and the bottom plate 12 are clamped and surrounded to form a frame structure, the inner lining 13 and the base 11 are connected by bolts, and a guide groove 14 is formed between the inner lining 13 and the base 11. The scraping member 2 is arranged on the base 11, and the wringing sleeve 3 is in sliding cooperation with the inner lining 13. Optionally, the bottom plate 12 is provided with a drainage hole 123, and the water scraped by the wringing opening 101 of the flat mop head 30 can be discharged through the drainage hole 123.

[0061] Optionally, please refer to Figure 3 , Figure 4 , Figure 8 and Figure 9In the embodiment, the squeezing frame 1 is provided with a through hole 131 and a groove 111 in communication with the through hole 131; the rolling sleeve 3 comprises a rolling sleeve body 31 and a protruding column 32, the protruding column 32 is slidably arranged in the through hole 131, the first end of the protruding column 32 is fixedly connected with the rolling sleeve body 31, the second end of the protruding column 32 is located in the groove 111, and the guide member 4 is rotatably sleeved on the protruding column 32 and located in the groove 111. Specifically, the through hole 131 is arranged on the inner liner 13, the groove 111 is arranged on the base 11, the guide groove 14 is arranged on the circumferential side wall of the groove 111, and the protruding column 32 is slidably connected with the inner liner 13.

[0062] Optionally, referring to Figure 4 and Figure 9 , the guide groove 14 comprises a first groove 141 and a second groove 142, the first ends of the first groove 141 and the second groove 142 are away from each other, the second ends of the first groove 141 and the second groove 142 are in communication with each other, the first groove 141 and the second groove 142 are arranged at an included angle, and the first end of the first groove 141 is away from the first end of the second groove 142 relative to the wiping member 2; when the rolling sleeve 3 is located at the first dehydration position, the guide column 41 abuts against the first end of the first groove 141; when the rolling sleeve 3 is located at the second dehydration position, the guide column 41 abuts against the first end of the second groove 142. In this way, when the rolling sleeve 3 is located at the first dehydration position, the first end of the first groove 141 abuts against the guide column 41 to limit the position of the guide column 41, so that the positions of the guide member 4 and the rolling sleeve 3 relative to the squeezing frame 1 can be kept stable; when the rolling sleeve 3 is located at the second dehydration position, the first end of the second groove 142 abuts against the guide column 41 to limit the position of the guide column 41, so that the positions of the guide member 4 and the rolling sleeve 3 relative to the squeezing frame 1 can be kept stable, and the stable dehydration effect is ensured.

[0063] Optionally, referring to Figure 3 , Figure 4 , Figures 6 to 8The drive mechanism 5 includes an elastic element 51 located in the groove 111 and disposed between the dewatering frame 1 and the guide 4. The elastic element 51 is configured to provide elastic force to the guide 4 and to make the guide 4 always tend to drive the sleeve 3 to move towards the second dewatering position. With this configuration, when the sleeve 3 moves from the first dehydration position to the second dehydration position, the guide 4 first moves along the first groove 141. After the guide 4 reaches the second end of the second groove 142, the user releases the operation of the drive mechanism 5. Under the drive of the elastic element 51, the guide column 41 can move along the second groove 142 to the first end of the second groove 142. Similarly, when the sleeve 3 moves from the second dehydration position to the first dehydration position, the guide 4 first moves along the second groove 142. After the guide 4 reaches the second end of the first groove 141, the user releases the operation of the drive mechanism 5. Under the drive of the elastic element 51, the guide column 41 can move along the first groove 141 to the first end of the second groove 142. This configuration is convenient and ensures the stability of the sleeve 3 in both the first and second dehydration positions, thereby guaranteeing a stable dehydration effect. In this embodiment, the elastic element 51 is a compression spring; in other embodiments, the elastic element 51 can be replaced by a tension spring, etc.

[0064] Alternatively, please refer to Figure 4 and Figure 9 The dewatering rack 1 is provided with multiple guide grooves 14, which are evenly distributed around the circumference of the groove 111. The ends of any two connected guide grooves 14 are connected. In each guide groove 14, the user operates the drive mechanism 5 to make the guide post 41 move from the first groove 141 of the first guide groove 14. When the guide post 41 moves to the second end of the first groove 141, the guide post 41 and the second groove 142 are opposite to each other in a set direction. Thus, the user releases the drive mechanism 5. Under the drive of the elastic element 51, the guide post 41 automatically enters the second groove 142 and moves to the first end of the second groove 142. For two adjacent guide grooves 14, when the guide post 41 is located at the first end of the second groove 142 of the first guide groove 14, the guide post 41 and the first groove 141 of the second guide groove 14 are opposite to each other in a set direction. Thus, the user operates the drive mechanism 5 to make the guide post 41 enter the first groove 141 of the second guide groove 14. This configuration allows the user to operate the guide 4 and sequentially switch the sleeve 3 between the first dehydration position and the second dehydration position. Preferably, the guide 4 is provided with multiple guide posts 41, which correspond one-to-one with multiple guide grooves 14. This configuration ensures the stable movement of the guide 4 and guarantees that the sleeve 3 remains stable when it is in the first dehydration position and the second dehydration position.

[0065] Alternatively, please refer to Figure 2The wiper component 2 includes a roller 21 rotatably connected to the wringer frame 1, and a wiper blade 22 protruding from the outer circumferential surface of the roller 21. A first limiting plate 121 and a second limiting plate 122 are spaced apart on the wringer frame 1, located on opposite sides of the roller 21, and the wiper blade 22 can abut against the first limiting plate 121 and the second limiting plate 122 respectively. Specifically, the first limiting plate 121 and the second limiting plate 122 are both mounted on the base plate 12, limiting the rotation range of the wiper blade 22. In this embodiment, when the flat mop head 30 passes through the squeegee 101, as the flat mop head 30 reciprocates relative to the wringer 1, the roller 21 will reciprocate accordingly, causing the scraper blade 22 to abut against the first limiting plate 121 or the second limiting plate 122 respectively, so as to ensure that no matter which direction the flat mop head 30 moves relative to the wringer 1, the orientation of the scraper blade 22 is aligned with the direction of movement of the flat mop head 30, thus avoiding the two being opposite to each other and causing the flat mop head 30 to get stuck.

[0066] Alternatively, please refer to Figure 2 , Figure 3 , Figures 6 to 8 The flat mop head cleaning module 10 also includes rollers 6 rotatably connected to the sleeve body 31, with a portion of the rollers 6 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, and the rollers 6 will roll to reduce the friction on the flat mop head 30, ensuring smooth movement of the flat mop head 30 during dehydration. Preferably, the flat mop head cleaning module 10 includes multiple rollers 6, which are arranged in an array on the sleeve body 31.

[0067] Alternatively, please refer to Figure 2 and Figure 6 The flat 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 can be removed from the wiping element as the flat mop head 30 passes through the squeegee 101, cleaning the wiping element while simultaneously dehydrating it. Preferably, the surface of the cleaning roller 7 has multiple scrapers evenly distributed along its circumference. These scrapers are used to scrape away debris from the wiping element, thereby improving the scraping effect.

[0068] Alternatively, please refer to Figure 2 and Figure 3The driving mechanism 5 also includes a pressing plate 52, which is fixedly connected to the second end of the protrusion 32. When the sleeve 3 is in the first dehydration position, the end face of the pressing plate 52 away from the guide member 4 is flush with the groove opening of the groove 111. When the sleeve 3 is in the second dehydration position, the pressing plate 52 is located in the groove 111. With this configuration, by pressing the pressing plate 52 in a set direction, the pressing plate 52 drives the guide member 4 to move in the set direction. With the cooperation of the guide groove 14 and the guide post 41, the guide member 4 rotates relative to the sleeve 3, and at the same time drives the sleeve 3 to move relative to the dehydration frame 1 in the set direction. Specifically, when the sleeve 3 is in the first dehydration position, the pressing plate 52 is pressed along the set direction, and the guide post 41 moves from the first end of the first groove 141 to the second end of the first groove 141. When the guide post 41 moves to the connection between the first groove 141 and the second groove 142, it will restrict the guide member 4 and the pressing plate 52 from continuing to move along the set direction. At this time, the pressing plate 52 is released, and under the drive of the elastic member 51, the guide post 41 will move along the second groove 142 to the first end of the second groove 142, and at the same time drive the guide member 4 and the sleeve 3 to move synchronously, so that the sleeve 3 is finally in the second dehydration position.

[0069] Alternatively, please refer to Figure 3 The pressing plate 52 has multiple hemispherical protrusions, which are evenly distributed along the circumference of the protrusion 32. Along a set direction, one end of the guide member 4 abuts against the protrusion 32, and the other end of the guide member 4 abuts against the multiple protrusions. This arrangement reduces the frictional force experienced by the guide member 4 when it rotates relative to the wringer 1, ensuring smooth pressing.

[0070] Alternatively, please refer to Figure 2 The flat mop head cleaning module 10 also includes a bushing 8, which is located within a groove 111. The wringer 1 abuts against the bushing 8 in a predetermined direction to prevent the bushing 8 from disengaging from the groove 111. The bushing 8 is rotatably connected to the wringer 1. The bushing 8 is provided with a relief groove 81, through which a guide post 41 passes and is inserted into a guide groove 14. By providing the bushing 8, the movement stability of the guide member 4 can be improved. When the guide member 4 rotates relative to the wringer 1, the bushing 8 rotates synchronously under the action of the guide post 41. In this embodiment, the bushing 8 is provided with multiple relief grooves 81, and multiple guide posts 41 are correspondingly inserted into the multiple relief grooves 81.

[0071] As one alternative, please refer to Figures 6 to 8The drive mechanism 5 also includes a knob 53 and a connecting sleeve 54. The knob 53 is rotatably sleeved on the wringer 1 and located outside the groove 111. The connecting sleeve 54 is fixedly connected to the knob 53 and located inside the groove 111. The connecting sleeve 54 has a through groove 541, the length direction of which is along a set direction. The guide post 41 passes through the through groove 541 and is inserted into the guide groove 14. With this configuration, by turning the connecting sleeve 54, the connecting sleeve 54 rotates synchronously, and the connecting sleeve 54 drives the guide post 41 to move synchronously. The guide post 41 drives the guide member 4 to rotate relative to the wringer 1. With the cooperation of the guide groove 14 and the guide post 41, the guide member 4, along with the squeegee 3, moves synchronously relative to the wringer 1 along a set direction. Specifically, when the sleeve 3 is in the first dehydration position, the connecting sleeve 54 is screwed on. When the guide post 41 moves to the connection between the first groove 141 and the second groove 142, it will restrict the guide member 4 and the pressing plate 52 from continuing to move in the set direction. The guide post 41 moves from the first end of the first groove 141 to the second end of the first groove 141. When the guide post 41 moves to the connection between the first groove 141 and the second groove 142, it will restrict the guide member 4 and the pressing plate 52 from continuing to move in the set direction. At this time, the pressing plate 52 is released. Under the drive of the elastic member 51, the guide post 41 will move along the second groove 142 to the first end of the second groove 142. At the same time, it will drive the guide member 4 and the sleeve 3 to move synchronously in the set direction. The guide member 4, the connecting sleeve 54 and the knob 53 will also rotate synchronously relative to the squeezing frame 1, so that the sleeve 3 is finally in the second dehydration position. Preferably, the flat mop head cleaning module 10 further includes a baffle, which is fixedly connected to the second end of the protrusion 32. One end of the guide member 4 abuts against the protrusion 32, and the other end of the guide member 4 abuts against the baffle. This arrangement facilitates assembly. More preferably, the baffle is provided with a ball protrusion that abuts against the guide member 4 to reduce the friction force experienced by the guide member 4 during rotation and ensure smooth operation for the user.

[0072] 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.

[0073] The flat mop head 30 can rotate relative to the mop handle 20 and 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 8 along the length direction of the mop handle 20, and the flat mop head 30 will enter the wiping opening 101. Under the action of the squeegee 2, the water on the wiping part of the flat mop head 30 will be squeezed out. By making the bushing 8 in different dehydration positions, the wiping part can have different dry and wet effects to meet the different needs of users.

[0074] In other embodiments, the above-described flat mop head cleaning module 10 can also be installed in the mop bucket.

[0075] 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 flat mop head cleaning module, characterized in that, include: Dewatering rack (1); A squeegee (2) is disposed on the squeegee frame (1); A swiping sleeve (3) is slidably connected to the wringer (1), and the swiping 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 swiping sleeve (3) can move relative to the wringer (1) along the set direction to have a first dehydration position and a second dehydration position. When the swiping sleeve (3) is in the first dehydration position, the distance between it and the wiper (2) is greater than the distance between the wiper (2) when the swiping sleeve (3) is in the second dehydration position. The guide member (4) is rotatably sleeved on the sleeve (3) and fixed in position with the sleeve (3) along the set direction. The guide member (4) is provided with a guide post (41). The squeezing rack (1) is provided with a guide groove (14). The guide post (41) is slidably inserted into the guide groove (14). The driving mechanism (5) is used to drive the guide (4) to move so that the guide (4) drives the sleeve (3) to move between the first dehydration position and the second dehydration position.

2. The flat mop head cleaning module according to claim 1, characterized in that, The dewatering rack (1) is provided with a through hole (131) and a groove (111) communicating with the through hole (131); The sleeve (3) includes a sleeve body (31) and a protrusion (32). The protrusion (32) slides through the through hole (131), and the first end of the protrusion (32) is fixedly connected to the sleeve body (31). The second end of the protrusion (32) is located in the groove (111). The guide (4) is located in the groove (111) and is rotatably sleeved on the protrusion (32). The driving mechanism (5) includes a pressing plate (52), which is fixedly connected to the second end of the protrusion (32). When the sleeve (3) is in the first dehydration position, the end face of the pressing plate (52) away from the guide (4) is flush with the groove (111). When the sleeve (3) is in the second dehydration position, the pressing plate (52) is located in the groove (111).

3. The flat mop head cleaning module according to claim 2, characterized in that, The pressing plate (52) is provided with a plurality of hemispherical protrusions. The plurality of protrusions are evenly distributed along the circumference of the protrusion (32). Along the set direction, one end of the guide (4) abuts against the protrusion (32), and the other end of the guide (4) abuts against the plurality of protrusions.

4. The flat mop head cleaning module according to claim 2, characterized in that, The flat mop head cleaning module also includes a bushing (8), which is located in the groove (111). The wringer (1) abuts against the bushing (8) along the set direction to restrict the bushing (8) from disengaging from the groove (111). The bushing (8) is rotatably connected to the wringer (1). The bushing (8) is provided with a relief groove (81), and the guide post (41) passes through the relief groove (81) and is inserted into the guide groove (14).

5. The flat mop head cleaning module according to claim 1, characterized in that, The dewatering rack (1) is provided with a through hole (131) and a groove (111) communicating with the through hole (131); The sleeve (3) includes a sleeve body (31) and a protrusion (32). The protrusion (32) slides through the through hole (131), and the first end of the protrusion (32) is fixedly connected to the sleeve body (31). The second end of the protrusion (32) is located in the groove (111). The guide (4) is located in the groove (111) and is rotatably sleeved on the protrusion (32). The drive mechanism (5) includes a knob (53) and a connecting sleeve (54). The knob (53) is rotatably sleeved on the wringer (1) and located outside the groove (111). The connecting sleeve (54) is fixedly connected to the knob (53) and located inside the groove (111). The connecting sleeve (54) is provided with a through groove (541). The length direction of the through groove (541) is along the set direction. The guide post (41) passes through the through groove (541) and is inserted into the guide groove (14).

6. The flat mop head cleaning module according to any one of claims 2 to 5, characterized in that, The drive mechanism (5) further includes an elastic element (51) located in the groove (111) and disposed between the dewatering frame (1) and the guide (4). The elastic element (51) is configured to give the guide (4) an elastic force and make the guide (4) always have the tendency to drive the sleeve (3) to move toward the second dewatering position.

7. The flat mop head cleaning module according to any one of claims 2 to 5, characterized in that, The guide groove (14) includes a first groove (141) and a second groove (142). The first end of the first groove (141) and the first end of the second groove (142) are far apart from each other. The second end of the first groove (141) and the second end of the second groove (142) are connected to each other. The first groove (141) and the second groove (142) are arranged at an angle. The first end of the first groove (141) is far away from the wiper component (2) relative to the first end of the second groove (142). When the sleeve (3) is in the first dehydration position, the guide post (41) abuts against the first end of the first groove (141). When the sleeve (3) is in the second dehydration position, the guide post (41) abuts against the first end of the second groove (142).

8. The flat mop head cleaning module according to any one of claims 2 to 5, characterized in that, The flat mop head cleaning module also includes rollers (6) rotatably connected to the sleeve body (31), with the rollers (6) partially 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).

9. The flat mop head cleaning module according to any one of claims 2 to 5, characterized in that, The wiper component (2) includes a roller (21) rotatably connected to the wringer (1) and a wiper blade (22) protruding from the outer peripheral surface of the roller (21). The wringer (1) is provided with a first limiting plate (121) and a second limiting plate (122) spaced apart. The first limiting plate (121) and the second limiting plate (122) are respectively located on both sides of the roller (21), and the wiper blade (22) can abut against the first limiting plate (121) and the second limiting plate (122) respectively.

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).

Citation Information

Patent Citations

  • Striking opening structure of mop

    CN114557654A