Hand-washing-free mop

By designing a squeezing mechanism for the hands-free mop, which combines the pull-out cleaning of a flat mop with deep cleaning of the cleaning body, the problem of separate detergent use in existing technologies is solved. This enables automatic transfer and wiping and rinsing, improving cleaning effectiveness and convenience.

CN224039139UActive Publication Date: 2026-03-27NINGBO DERUNTANG INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In the existing technology, the mop pull-out cleaning and the use of cleaning agents are separate steps, the cleaning effect needs to be improved, and the cleaning agent is not effectively integrated into the mop pull-out cleaning process.

Method used

A hands-free mop was designed, which combines the pull-out cleaning of a flat mop with the deep cleaning of the cleaning body. The automatic transfer and distribution of the cleaning body is achieved through a squeezing mechanism, including a wringer, a wringing channel, a cavity, a transfer unit, and a locking component, to realize the automatic transfer and rinsing of the cleaning body.

Benefits of technology

It achieves automatic transfer of cleaning agents and wiping and rinsing, simplifies operation steps, improves cleaning effect, ensures that all areas of the wiping object are fully cleaned, extends service life, and improves cleaning effect and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mop free of hand washing, which comprises a flat plate mop with a wiping object, a mop rod and an extrusion mechanism. The water squeezing channel is used for inserting the flat mop, and the flat mop can be pulled, pushed and squeezed up and down relative to the water squeezing channel; the containing cavity is used for storing a cleaning body; the transmission unit is arranged close to the containing cavity and can move relative to the water squeezing frame; when the flat mop moves up and down in the water squeezing channel, the wiping object can drive the transmission unit to move so as to transmit the cleaning body to the wiping object. The conveying unit can act with a wiping object of the flat mop in the water squeezing channel, the cleaning body is automatically used for cleaning, the cleaning body does not need to be sprayed or smeared on the ground through manual operation, operation steps are reduced, and use is more convenient and faster; the conveying unit is matched with the locking assembly, water scraping and rinsing can be achieved, deep cleaning can be conducted through the cleaning body, cleaning of the flat mop is more thorough, and the structure is simplified.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of cleaning tools, especially relates to a hand-free washing mop. BACKGROUND

[0002] Chinese patent CN217610928U discloses "a wringing frame and mop", which includes a main body, a container part is arranged on the main body, a pressing pump head is connected to the container part, a shaping frame is installed on the main body, the shaping frame is slidably installed on the main body, the pressing pump head is pressed by sliding the shaping frame, and the shaping frame is provided with a pattern hole. Add detergent raw materials in the container part, and the raw materials are pumped out and then pass through the pattern hole to realize embossing. The detergent is extruded to the ground in the form of embossing, and it is not necessary to take another cleaning agent to spray on the ground, thereby improving the cleaning efficiency. However, in the above structure, the mop pulling and cleaning and the mop cleaning with detergent are two relatively independent steps, and the detergent cleaning is not combined with the mop pulling and cleaning process, and the cleaning effect of the mop needs to be improved. SUMMARY

[0003] In order to overcome the defects of the prior art, the utility model provides a hand-free washing mop, which combines the pulling and cleaning of the flat mop and the deep cleaning of the cleaning body into an integrated structure, so that the flat mop is convenient to clean.

[0004] The utility model solves the technical problems by adopting the following technical scheme: a hand-free washing mop, comprising a flat mop with a wiping object, a mop rod rotatably connected to the flat mop, and a squeezing mechanism, the squeezing mechanism comprising:

[0005] A wringing frame;

[0006] A squeezing channel for inserting the flat mop, and the flat mop can be pulled and squeezed up and down relative to the squeezing channel;

[0007] A container cavity for storing a cleaning body;

[0008] A transmission unit arranged close to the container cavity and movable relative to the wringing frame;

[0009] When the flat mop moves up and down in the squeezing channel, the wiping object can drive the transmission unit to move, so as to transmit the cleaning body to the wiping object.

[0010] Further, the transmission unit has at least a first scraping part in contact with the cleaning body, and a transmission channel for conveying the cleaning body, the transmission channel being in communication with the first scraping part, when the wiping object drives the transmission unit to move, the first scraping part obtains the cleaning body and transmits it to the wiping object through the transmission channel.

[0011] Further, the transmission unit includes a linkage part extending in the direction of the wiping object, and the wiping object can contact the linkage part to drive the transmission unit to move.

[0012] Further, the linkage part is the second scraping part, which is located on opposite sides of the transmission unit with the first scraping part, and the first scraping part, the transmission channel and the second scraping part are connected and communicate with each other.

[0013] Further, the number of the transmission channels is two or more; the number of the first scraping parts is one or two or more.

[0014] Further, at least part of the structure of the transmission unit is in a cross shape, which includes a plurality of scraping members extending horizontally, and at least one connecting member extending longitudinally, the connecting member connects all the scraping members, and the first scraping part and the second scraping part are correspondingly arranged on opposite sides of the scraping members; alternatively, at least part of the structure of the transmission unit is in a grid shape.

[0015] Further, the squeezing mechanism further includes a squeezing member, which is located in the water squeezing channel and is used for squeezing the wiping material of the flat mop; the second scraping part is flush with the squeezing member, or the squeezing member protrudes from the plane where the second scraping part is located.

[0016] Further, the transmission unit is movably connected to the water squeezing frame, and the water squeezing frame is provided with a guide rail for restricting the translation of the transmission unit; the height of the transmission unit is greater than the height of the cavity, and the width of the transmission unit is equivalent to the width of the cavity.

[0017] Further, the squeezing mechanism further includes a locking component for preventing the transmission unit from moving. When the locking component locks the transmission unit, the cleaning body stops transmitting to the wiping material.

[0018] Further, the locking component at least includes a positioning groove provided on the transmission unit, a limiting member extending into the positioning groove, and a拨动 member extending from the water squeezing frame. The positioning groove has a locking groove adapted to the maximum width of the limiting member and an activity groove for restricting the movement stroke of the transmission unit. The maximum width of the activity groove is greater than that of the limiting member, and the activity groove is connected to the locking groove. When an external force is applied to the拨动 member, the limiting member can be driven to switch between the activity groove and the locking groove.

[0019] The beneficial effects of this utility model are: 1) The transmission unit can interact with the wiping material of the flat mop within the wringing channel, automatically using the cleaning agent for cleaning, eliminating the need for manual operation to spray or apply the cleaning agent to the floor, reducing operation steps and making it more convenient to use; 2) The transmission unit and locking component work together to achieve both wiping and rinsing, as well as deep cleaning using the cleaning agent, combining deep cleaning and rinsing of the flat mop wiping material into a single squeezing mechanism, resulting in a more thorough cleaning of the flat mop, better cleaning effect, and a simplified structure; 3) The two steps of wiping and rinsing and cleaning using the cleaning agent can be performed simultaneously, or... 4) The locking component can keep the transmission unit in the state of conveying cleaning agents or stop conveying cleaning agents, ensuring effective isolation between the two steps of wiping and rinsing and cleaning with cleaning agents, thus ensuring the cleaning effect of the flat mop; 5) The structural design of the transmission unit allows each area of ​​the wiping material to fully absorb the cleaning agents and rub and foam, resulting in a better cleaning effect of the flat mop; 6) The cleaning agents can achieve a good stain removal effect on the flat mop and remove odors. In addition, the cleaning agents can increase the lubrication of the surface of the wiping material during washing, extending the service life of the wiping material. Attached Figure Description

[0020] Figure 1 A three-dimensional view of the hands-free mop provided for this utility model.

[0021] Figure 2 The extrusion mechanism provided by this utility model is three-dimensional. Figure 1 .

[0022] Figure 3 The extrusion mechanism provided by this utility model is three-dimensional. Figure 2 .

[0023] Figure 4 Front view of the extrusion mechanism provided by this utility model Figure 1 .

[0024] Figure 5 for Figure 4 AA section view in the image.

[0025] Figure 6 for Figure 5 Enlarged view of the structure at point B in the image.

[0026] Figure 7 Front view of the extrusion mechanism provided by this utility model Figure 2 .

[0027] Figure 8 for Figure 7 CC section view in the image.

[0028] Figure 9The utility model provides extrusion mechanism's partial solid Figure 1 .

[0029] Figure 10 The utility model provides extrusion mechanism's partial solid Figure 2 .

[0030] Figure 11 The utility model provides transmission unit's solid drawing.

[0031] Figure 12 The utility model provides transmission unit's front view.

[0032] Wherein, 1 - water squeezing frame, 11 - water squeezing channel, 12 - guide rail, 2 - extrusion piece, 3 - cavity, 31 - cleaning body, 4 - transmission unit, 41 - first scraping part, 42 - transmission channel, 43 - second scraping part, 44 - scraping piece, 45 - connecting piece, 5 - locking assembly, 51 - positioning slot, 511 - locking groove, 512 - movable slot, 513 - inclined surface, 52 - limiting piece, 53 - actuating piece, 6 - flat mop, 61 - mop rod. DETAILED DESCRIPTION

[0033] In order to make the personnel in the technical field better understand the utility model scheme, below will combine the drawing in the embodiment of the utility model, and the technical scheme in the embodiment of the utility model is clearly and completely described, obviously, the described embodiment only is a part of embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments that the person skilled in the art obtains without making the creative labor should belong to the scope of protection of the utility model.

[0034] As Figure 1 Shown, a hand-free mop, including flat mop 6 with wiping material (not shown in the drawing), mop rod 61 rotatably connected on flat mop 6, and extrusion mechanism. As Figures 2-8 Shown, extrusion mechanism includes water squeezing frame 1 with handle, water squeezing channel 11, cavity 3 for storing cleaning body 31, and transmission unit 4, water squeezing channel 11 is inserted for flat mop 6, and flat mop 6 can be relatively pulled and pushed up and down in the water squeezing channel 11, here including water squeezing channel 11 relatively immovable, flat mop 6 is pulled and pushed up and down in the water squeezing channel 11 inside, also includes, flat mop 6 and water squeezing channel 11 both relatively move to realize the up and down pull and push of flat mop 6, need to be explained here up and down is spatial relative concept, and not be specifically limited.

[0035] In the embodiment, the cavity 3 is arranged on the wringing frame 1 and is used to store the cleaning body 31. The cleaning body 31 can be a liquid cleaner, a solid cleaning soap such as soap, or a sponge absorbing liquid cleaner, etc. The cavity 3 can be arranged on the wringing frame 1 as an independent component, i.e. the cavity 3 is arranged separately from the wringing frame 1, or the cavity 3 and the wringing frame 1 can be connected as a whole. The structure also corresponds to the formation of the wringing channel 11, i.e. when the wringing frame 1 and the cavity 3 are relatively independent, the wringing channel 11 is formed by the wringing frame 1, and when the wringing frame 1 and the cavity 3 are connected together, the wringing channel 11 is formed by the wringing frame 1 and the cavity 3. Of course, the cavity 3 can not be an independent component, and it can be generally understood as a part of structure corresponding to the storage of the cleaning body 31.

[0036] When the cleaning body 31 in the cavity 3 is a solid cleaning soap, the volume of the solid cleaning soap is reduced after long time use, and in order to make it always in effective contact with the transmission unit 4, the pressing mechanism can further include a pressing unit which presses the solid cleaning soap to the side where the transmission unit 4 is located. Specifically, the pressing unit at least includes a pressing plate in contact with the cleaning body 31, and an elastic member in contact with the pressing plate, and the other end of the elastic member is in contact with the side wall of the cavity 3. As the volume of the cleaning body 31 in the cavity 3 is deformed, the compressed elastic member is constantly elongated, and the cleaning body 31 is pushed to the transmission unit 4 by the pressing plate.

[0037] The transmission unit 4 is arranged close to the cavity 3 and can be driven to move relative to the wringing frame 1. When the flat mop 6 moves up and down in the wringing channel 11, the wiping object can drive the transmission unit 4 to move, so as to transmit the cleaning body 31 to the wiping object. Specifically, the transmission unit 4 is arranged close to the cavity 3, so as to be in contact with the cleaning body 31 and the flat mop 6 respectively, and is used to transfer the cleaning body 31 in the cavity 3 to the wiping object of the flat mop 6. In the embodiment, the transmission unit 4 is driven to move relative to the cavity 3 by the wiping object of the flat mop 6, so that the cleaning body 31 in the cavity 3 is constantly scraped, especially when the cleaning body 31 is a solid soap, the transmission unit 4 is used to rub and scrape the cleaning body 31, and the cleaning body 31 is transmitted to the wiping object by contact, and the friction with the wiping object can realize sufficient foaming and realize deep cleaning of the flat mop 6.

[0038] As Figure 6 , Figures 8-12As shown, the transmission unit 4 has at least a first scraping part 41 which can contact the cleaning body 31, and a transmission channel 42 for conveying the cleaning body 31, the transmission channel 42 being in communication with the first scraping part 41, which means that the cleaning body 31 scraped by the first scraping part 41 can enter the transmission channel 42, so that when the wiping article drives the transmission unit 4 to move, the first scraping part 41 moves relative to the cleaning body 31 and obtains the cleaning body 31, which is then conveyed to the wiping article through the transmission channel 42.

[0039] The transmission unit 4 further comprises a linkage part extending in the direction in which the wiping article is located, and the wiping article can contact the linkage part to drive the transmission unit 4 to move. In other words, the wiping article drives the transmission unit 4 to move by contacting the linkage part, and the linkage part is connected to the first scraping part 41, so that the movement of the linkage part can realize the relative movement of the first scraping part 41 of the transmission unit 4. The linkage part can be directly connected to the first scraping part 41, or indirectly connected to the first scraping part 41. The linkage part can be a columnar structure with a small cross section, or a plate structure with a large cross section, or a multi-point structure extending through the entire plane of the transmission unit 4, and the specific structure is not limited.

[0040] In the embodiment, the linkage part is a second scraping part 43, which is located on the opposite side of the first scraping part 41 of the transmission unit 4, in other words, the transmission unit 4 has two opposite sides, one side is provided with the first scraping part 41, and the other side is provided with the second scraping part 43, and the second scraping part 43 faces the squeezing channel 11 and is used to contact the wiping article. Moreover, the first scraping part 41, the transmission channel 42 and the second scraping part 43 are in communication, which means that the cleaning body 31 scraped by the first scraping part 41 can enter the transmission channel 42 and go to the second scraping part 43, and finally the wiping article contacts the second scraping part 43 to obtain the cleaning body 31.

[0041] The specific shape and number of the first scraping part 41, the second scraping part 43 and the transmission channel 42 are not limited, and the first scraping part 41 can only scrape the cleaning body 31 when the transmission unit 4 moves, and the specific shape and size are not limited, that is, the amount and range of scraping the cleaning body 31 are not limited, and the number can be one or more. The transmission channel 42 can only convey the cleaning body 31 scraped by the first scraping part 41 to the second scraping part 43, or directly to the wiping article, or to the second scraping part 43 and the wiping article, and the size of the transmission area is not limited, and the size of the transmission channel 42 is not limited, and the speed of the transmission is not limited, and in the embodiment, the number of the transmission channel 42 is two or more. The second scraping part 43 can only realize sufficient contact with the wiping article, so that the wiping article can fully foam after absorbing the cleaning body 31, and the contact area with the wiping article is not limited, and the specific setting position and shape are not limited.

[0042] Specifically, as shown in FIG. 1, Figure 6 ,Figure 11 、 Figure 12 As shown in FIG. 1, the transmission unit 4 is at least partially structured as a cross, which includes a plurality of transversely extending scraping members 44 and at least one longitudinally extending connecting member 45, where the longitudinal direction refers to the direction of the mop 6 being pulled up and down relative to the squeezing channel 11, and the connecting member 45 connects all the transverse scraping members 44 together to form the transmission channel 42 between the connecting member 45 and the adjacent scraping member 44. The first scraping portion 41 and the second scraping portion 42 are arranged on opposite sides of the scraping member 44, or in other words, the first scraping portion 41 and the second scraping portion 42 are portions of the scraping member 44 protruding from the connecting member 45 on both sides. In the illustrated embodiment, the first scraping portion 41, the scraping member 44, and the second scraping portion 42 are integrally arranged as a strip structure with the same thickness, and of course in other embodiments, the first scraping portion 41 and the second scraping portion 42 can be designed as sharp structures with inclined surfaces, with the sharp portions respectively facing the cleaning body 31 and the wiping material.

[0043] Further, the transmission unit 4 is at least partially structured as a cross, which includes a plurality of transversely extending scraping members 44 and at least one longitudinally extending connecting member 45, where the longitudinal direction refers to the direction of the mop 6 being pulled up and down relative to the squeezing channel 11, and the connecting member 45 connects all the transverse scraping members 44 together to form the transmission channel 42 between the connecting member 45 and the adjacent scraping member 44. The first scraping portion 41 and the second scraping portion 42 are arranged on opposite sides of the scraping member 44, or in other words, the first scraping portion 41 and the second scraping portion 42 are portions of the scraping member 44 protruding from the connecting member 45 on both sides. In the illustrated embodiment, the first scraping portion 41, the scraping member 44, and the second scraping portion 42 are integrally arranged as a strip structure with the same thickness, and of course in other embodiments, the first scraping portion 41 and the second scraping portion 42 can be designed as sharp structures with inclined surfaces, with the sharp portions respectively facing the cleaning body 31 and the wiping material.

[0044] As shown in the illustration, the number of scraping members 44 is five, and the number of connecting members 45 is five, which are connected to form a grid structure, and the transmission channel 42 is arranged in a matrix. The transmission unit 4 of the above structure has a height greater than the height of the container cavity 3, and the width of the transmission unit 4 is comparable to the width of the container cavity 3, and the transmission unit 4 is attached to the opening of the container cavity 3 and contacts the cleaning body 31, so that the cleaning body 31 can be quickly scraped and fully transmitted to each area of the wiping material, making the deep cleaning of the mop 6 more sufficient and effective.

[0045] As shown in FIG. 1, the transmission unit 4 is at least partially structured as a cross, which includes a plurality of transversely extending scraping members 44 and at least one longitudinally extending connecting member 45, where the longitudinal direction refers to the direction of the mop 6 being pulled up and down relative to the squeezing channel 11, and the connecting member 45 connects all the transverse scraping members 44 together to form the transmission channel 42 between the connecting member 45 and the adjacent scraping member 44. The first scraping portion 41 and the second scraping portion 42 are arranged on opposite sides of the scraping member 44, or in other words, the first scraping portion 41 and the second scraping portion 42 are portions of the scraping member 44 protruding from the connecting member 45 on both sides. In the illustrated embodiment, the first scraping portion 41, the scraping member 44, and the second scraping portion 42 are integrally arranged as a strip structure with the same thickness, and of course in other embodiments, the first scraping portion 41 and the second scraping portion 42 can be designed as sharp structures with inclined surfaces, with the sharp portions respectively facing the cleaning body 31 and the wiping material. Figure 6 、 Figure 8 As shown in FIG. 1, the transmission unit 4 is at least partially structured as a cross, which includes a plurality of transversely extending scraping members 44 and at least one longitudinally extending connecting member 45, where the longitudinal direction refers to the direction of the mop 6 being pulled up and down relative to the squeezing channel 11, and the connecting member 45 connects all the transverse scraping members 44 together to form the transmission channel 42 between the connecting member 45 and the adjacent scraping member 44. The first scraping portion 41 and the second scraping portion 42 are arranged on opposite sides of the scraping member 44, or in other words, the first scraping portion 41 and the second scraping portion 42 are portions of the scraping member 44 protruding from the connecting member 45 on both sides. In the illustrated embodiment, the first scraping portion 41, the scraping member 44, and the second scraping portion 42 are integrally arranged as a strip structure with the same thickness, and of course in other embodiments, the first scraping portion 41 and the second scraping portion 42 can be designed as sharp structures with inclined surfaces, with the sharp portions respectively facing the cleaning body 31 and the wiping material.

[0046] In this embodiment, the transmission unit 4 is movable relative to the squeezing frame 1, and moves up and down relative to the squeezing frame 1. In order to limit the direction and range of its movement, a guide rail 12 is provided on the squeezing frame 1, and the transmission unit 4 is movably connected to the guide rail 12 of the squeezing frame 1, so that the transmission unit 4 can only move up and down. The guide rail 12 can be a guide groove or any other structure. Of course, in other embodiments, the transmission unit 4 can move laterally, or in any direction, and the specific direction is not limited.

[0047] In the above structure, the transmission unit 4 is not restricted in movement with the wringer 1, that is, the transmission unit 4 is not locked in a fixed position, and the transmission unit 4 can be driven to move up and down as long as the flat mop 6 moves up and down in the wringing channel 11. In other embodiments, the wringing mechanism can further include a locking assembly 5 for preventing the transmission unit 4 from moving, and when the locking assembly 5 locks the transmission unit 4, that is, the first scraping part 41 cannot move relative to the cleaning body 31 to obtain the cleaning body 31, the cleaning body 31 stops transmitting to the wiping material.

[0048] As shown in Figure 9 , Figure 10 , the locking assembly 5 at least includes a positioning groove 51 provided on the transmission unit 4, a limiting piece 52 that can extend into the positioning groove 51, and a pushing piece 53 extending from the wringer 1. As shown in Figure 11 , Figure 12 , the positioning groove 51 has a locking groove 511 and a moving groove 512, the height of the locking groove 511 is adapted to the maximum width of the limiting piece 52, and the height of the moving groove 512 is greater than the maximum width of the limiting piece 52. The moving groove 512 is in communication with the locking groove 511, and an inclined surface 513 is formed between the two. When an external force is applied to the pushing piece 53, the limiting piece 52 can be switched between the moving groove 512 and the locking groove 511. Once the limiting piece 52 enters the locking groove 511 against the inclined surface 513, the transmission unit 4 cannot move up and down, and when the limiting piece 52 moves into the moving groove 512 in the opposite direction, the transmission unit 4 can move up and down, but the range of up and down movement is limited by the height of the moving groove 512.

[0049] When the locking assembly 5 locks the transmission unit 4, the second scraping part 43 of the transmission unit 4 can also serve as a component for pulling and pushing the wiping material up and down to achieve cleaning of the wiping material, facilitating rinsing of the wiping material. In this case, the squeezing piece 2 can be omitted.

[0050] When it is necessary to use the cleaning body 31 to clean the wiping material of the flat mop 6, an external force is applied to the pushing piece 53 to adjust the limiting piece 52 of the locking assembly 5 to the moving groove 512, the flat mop 6 is pulled up and down in the wringing channel 11, the wiping material contacts the second scraping part 43 and drives the transmission unit 4 to move up and down in the guide rail 12 of the wringer 1, so that the first scraping part 41 moves to scrape the cleaning body 31 and transmits to the wiping material through the transmission channel 42, so that the wiping material is cleaned by the cleaning body while being squeezed by the squeezing piece 2 (of course, when the squeezing piece 2 is not provided, it can be relative to the second scraping part 43);

[0051] When the mop 6 is rinsed, the external force is applied on the knob 53 to adjust the limiting member 52 of the locking assembly 5 into the locking groove 511, and the mop 6 is pulled up and down in the squeezing channel 11, so that the wiping material cannot drive the transmission unit 4 to move up and down even if it contacts the second scraping part 43, the first scraping part 41 cannot scrape the cleaning body 31, and the cleaning body 31 stops transmitting to the wiping material, so that the wiping material is rinsed by being squeezed with the squeezing member 2 (of course, when the squeezing member 2 is not arranged, the relative second scraping part 43 can also be squeezed).

[0052] The above specific embodiments are used to explain and illustrate the present application, rather than limit the present application, and any modification and change made to the present application within the spirit and protection scope of the present application and the claims, falls into the protection scope of the present application.

Claims

1. A no-touch mop comprising a flat mop having a wiping material, a mop rod pivotally connected to the flat mop, and a wringing mechanism, characterized in that, The squeezing mechanism comprises: a squeezing frame; a squeezing channel for the flat mop to be inserted and pulled up and down relative to the squeezing channel; a storage cavity for storing cleaning bodies; a transmission unit arranged close to the storage cavity and movable relative to the squeezing frame; when the flat mop is moved up and down in the squeezing channel, the transmission unit is moved by the wiping body to transmit the cleaning bodies to the wiping body.

2. The no-rinse mop of claim 1, wherein: The transmission unit has at least a first scraping part in contact with the cleaning bodies and a transmission channel for transmitting the cleaning bodies, the transmission channel being in communication with the first scraping part, when the wiping body moves the transmission unit, the first scraping part obtains the cleaning bodies and transmits them to the wiping body through the transmission channel.

3. A no-rinse mop according to claim 1 or 2, characterised in that: The transmission unit comprises a linkage part extending in the direction of the wiping body, and the wiping body is in contact with the linkage part to move the transmission unit.

4. The no-rinse mop of claim 3, wherein: The linkage part is a second scraping part, which is respectively arranged on the opposite sides of the transmission unit with the first scraping part, and the first scraping part, the transmission channel and the second scraping part are in communication.

5. The no-rinse mop of claim 2, wherein: The number of transmission channels is two or more. The number of first scraping parts is one or two or more.

6. The no-rinse mop of claim 4, wherein: The transmission unit is at least partially structured as a Heng character, which comprises a plurality of transversely extending scraping parts and at least one longitudinally extending connecting part, the connecting part connects all the scraping parts, and the first scraping part and the second scraping part are respectively arranged on the opposite sides of the scraping parts; or, the transmission unit is at least partially structured as a cross character.

7. The no-rinse mop of claim 4, wherein: The squeezing mechanism further comprises a squeezing part arranged in the squeezing channel for squeezing the wiping body of the flat mop; the second scraping part is arranged flush with the squeezing part, or the squeezing part protrudes from the plane where the second scraping part is arranged.

8. The no-rinse mop of claim 1, wherein: The transmission unit is movably connected to the squeezing frame, the squeezing frame is provided with a guide rail for limiting the translation of the transmission unit; the height of the transmission unit is greater than the height of the storage cavity, and the width of the transmission unit is comparable to the width of the storage cavity.

9. The no-rinse mop of claim 1, wherein: The squeezing mechanism further comprises a locking assembly for preventing the movement of the transmission unit, when the locking assembly locks the transmission unit, the transmission of the cleaning bodies to the wiping body is stopped.

10. The no-rinse mop of claim 9, wherein: The locking assembly comprises at least a positioning groove arranged on the transmission unit, a limiting part extending into the positioning groove, and a pushing part extending from the squeezing frame, the positioning groove has a locking groove adapted to the maximum width of the limiting part and a movement groove for limiting the movement stroke of the transmission unit, the maximum width of the movement groove is greater than that of the limiting part, and the movement groove is in communication with the locking groove, when the pushing part applies an external force, the limiting part can be switched between the movement groove and the locking groove.

Citation Information

Patent Citations

  • Water squeezing frame and mop

    CN217610928U