Flat mop bucket with visible water containing condition
By setting a transparent observation window and a water supply mechanism on the mop bucket, the problem of not being able to observe the water volume in real time is solved, enabling timely replenishment of the clean water area and timely discharge of the wastewater area, thus improving the efficiency of the mop bucket.
Patent Information
- Application Number
- CN202520006799.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-02
AI Technical Summary
The existing flat mop bucket cannot monitor the water levels in the clean water zone and the wastewater zone in real time, which means that water cannot be replenished in time when the water level in the clean water zone is insufficient, and water cannot be drained in time when the water level in the wastewater zone is excessive.
A transparent viewing window is set on the mop bucket to observe the water content of the clean water chamber and the wastewater chamber, respectively. The clean water is delivered and the wastewater is discharged through the water supply mechanism and the scraper structure.
Users can add fresh water and drain wastewater in a timely manner to ensure a reasonable distribution of water in the mop bucket, thereby improving efficiency and cleaning effectiveness.
Smart Images

Figure CN223715671U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a mop bucket, especially to a flat mop bucket with visible water storage condition. BACKGROUND
[0002] A mop is a long-handled cleaning tool for scrubbing the floor, and the flat mop belongs to one kind of mop. In order to prevent the hands from being stained during the cleaning and wringing, the existing flat mop is generally matched with a mop bucket, and the mop head of the flat mop is inserted into the mop bucket, and the flat mop is moved up and down to realize the cleaning and wringing of the mop.
[0003] For example, the mop bucket disclosed in the Chinese utility model patent CN219479993U is convenient for pouring sewage, which comprises a bucket body and a bucket cover. The bucket body comprises a clean water bucket and a sewage bucket. The clean water bucket is divided into a clean water area and a cleaning area. The sewage bucket is provided with a sewage area. The bucket cover is provided with a wrinkle extrusion device. When the bucket cover is closed with the bucket body, the wrinkle extrusion device is located above the cleaning area. During the process of continuously inserting and moving the flat mop up and down, the water in the cleaning area will act on the wiping material of the flat mop, and the squeezed sewage will be discharged into the sewage bucket.
[0004] The user of the above-mentioned existing mop bucket cannot observe the water quantity in the clean water area and the sewage area, so that the water quantity in the clean water area cannot be timely supplemented when the water quantity is too small, and the sewage in the sewage area cannot be timely discharged when the sewage quantity is too much. UTILITY MODEL CONTENT
[0005] Based on the problem that the user cannot observe the water quantity in the clean water area and the sewage area, so that the water quantity in the clean water area cannot be timely supplemented when the water quantity is too small, and the sewage in the sewage area cannot be timely discharged when the sewage quantity is too much, the utility model provides a flat mop bucket with visible water storage condition.
[0006] The utility model adopts the technical scheme that the flat mop bucket with visible water storage condition comprises a bucket body, a cover body and a water supply mechanism. The bucket body is provided with a clean water cavity for containing clean water and a sewage cavity for containing sewage. An inner bucket is arranged in the clean water cavity. The inner bucket is provided with a cleaning and dewatering integrated cavity for inserting the flat mop for cleaning or dewatering. The cover body is arranged on the bucket body. The cover body is provided with a through hole for the flat mop to pass through. The through hole is arranged above the cleaning and dewatering integrated cavity. The water supply mechanism is used for conveying the clean water in the clean water cavity to the flat mop inserted into the cleaning and dewatering integrated cavity. The bucket body is provided with transparent first and second observation windows. The first and second observation windows are used for observing the water storage conditions of the clean water cavity and the sewage cavity, respectively.
[0007] The further preferred technical scheme of the utility model is: the barrel body is equipped with the transverse partition, and the both ends of the partition are connected with the inner wall of the both sides of the barrel body, the partition divides the inner cavity of the barrel body into two independent areas, to form the clean water cavity and the sewage cavity, the first observation window and the second observation window are symmetrically arranged on the barrel wall of the both sides of the barrel body, and the partition is transversely arranged between the first observation window and the second observation window.
[0008] The further preferred technical scheme of the utility model is: the barrel body is equipped with the partition, and the partition divides the inner cavity of the barrel body into the clean water cavity and the sewage cavity, the lowest part of the first observation window is arranged adjacent to or adjacent to the inner bottom of the barrel body, the highest part of the first observation window is not lower than the upper edge of the partition, the lowest part of the second observation window is arranged adjacent to or adjacent to the inner bottom of the barrel body, and the highest part of the second observation window is not lower than the upper edge of the partition.
[0009] The further preferred technical scheme of the utility model is: the first observation window and the second observation window are strip-shaped, and the first observation window and the second observation window are arranged in the barrel wall height direction of the barrel body.
[0010] The further preferred technical scheme of the utility model is: the barrel body is equipped with the partition, and the partition divides the inner cavity of the barrel body into the clean water cavity and the sewage cavity, the first observation window includes a first transparent plate, a first mounting hole is formed in the barrel wall of the barrel body for surrounding the clean water cavity, the first transparent plate is fixedly installed in the first mounting hole as part of the clean water cavity side wall, the second observation window includes a second transparent plate, a second mounting hole is formed in the barrel wall of the barrel body for surrounding the sewage cavity, and the second transparent plate is fixedly installed in the second mounting hole as part of the sewage cavity side wall.
[0011] The further preferred technical scheme of the utility model is: one side of the through hole is provided with a water scraping plate, one side of the water scraping plate close to the through hole is provided with a water scraping part in contact with the mop head of the flat mop passing through, one side of the water scraping plate away from the water scraping part extends to above the sewage cavity for guiding the scraped sewage into the sewage cavity below, a water outlet is formed on the cover body, the water outlet and the water scraping plate are located on the same side of the through hole, the water supply mechanism comprises a transmission assembly and a reciprocating pump body inserted into the clean water cavity, the transmission assembly comprises a driven gear and a transmission wheel coupled with the driven gear, the driven gear is at least partially located in the through hole, an eccentric position of the transmission wheel is movably connected with a connecting rod, the connecting rod is movably connected with a piston of the pump body, an upper water pipe vertically extending is arranged on the pump body, a water passing pipeline is horizontally arranged above the clean water cavity and the sewage cavity, the upper water pipe is connected with a water inlet end of the water passing pipeline, a water outlet end of the water passing pipeline is connected with the water outlet, and the driven gear can be driven to rotate by the up-down movement of the flat mop passing through the through hole, so that the water pump can deliver water in the clean water cavity to the water outlet to supply water to the flat mop in the through hole.
[0012] The further preferred technical scheme of the utility model is: the width of the cleaning and dewatering integrated cavity is greater than the mop head width of the flat mop, the left and right sides of the cleaning and dewatering integrated cavity have a cleaning position and a dewatering position for the up-down movement of the flat mop inside,
[0013] The flat mop is inserted into the cleaning position and cooperates with the driven gear, the up-down movement of the flat mop drives the rotation of the driven gear, and the pump body sends water to the flat mop passing through the through hole,
[0014] The flat mop is inserted into the dewatering position and is disengaged from the driven gear, and the pump body stops sending water to the flat mop.
[0015] The further preferred technical scheme of the utility model is: the through hole comprises a first opening for the plate body of the mop head to pass through and a first gap and a second gap for the hinged seat on the plate body to pass through and communicate with the first opening, the water scraping plate and the water outlet are arranged on one side of the first opening, the first gap and the second gap are arranged on the other side of the first opening, and the driven gear is at least partially located in the first gap.
[0016] The further preferred technical scheme of the utility model is: the barrel body is provided with a drain hole communicating with the clean water cavity and a sewage drain hole communicating with the sewage cavity.
[0017] Another subject: the flat mop barrel with visible water storage condition, comprising a barrel body, a cover body and a water supply mechanism, the barrel body is provided with a clean water cavity for storing clean water and a sewage cavity for storing sewage, the clean water cavity is provided with an inner barrel, the inner barrel is provided with a cleaning and dewatering integrated cavity for inserting the flat mop for cleaning or dewatering, the cover body is arranged on the barrel body, the cover body is provided with a through hole for the flat mop to pass through, the through hole is arranged above the cleaning and dewatering integrated cavity, and the water supply mechanism is used for sending the clean water in the clean water cavity to the flat mop inserted into the cleaning and dewatering integrated cavity, wherein the barrel body is provided with a transparent third observation window, and the same third observation window is arranged on the outer side of the clean water cavity and the sewage cavity and used for observing the water storage condition of the clean water cavity and the sewage cavity.
[0018] Compared with the prior art, the utility model has the advantages that the observation window for observing the water storage condition of the clean water cavity and the sewage cavity is arranged on the mop barrel, the user can observe the water quantity in the clean water cavity and the sewage cavity through the observation window, the user can add water in time when the water quantity in the clean water cavity is too small, and the user can discharge the sewage in time when more sewage accumulates in the sewage cavity. BRIEF DESCRIPTION OF DRAWINGS
[0019] The present application will be described in further detail below in conjunction with the accompanying drawings and preferred embodiments, but it will be appreciated that those skilled in the art will, upon attaining an understanding of the basic principles of the application, readily appreciate that the drawings are only meant to be of a illustrative purpose and, as such, should not be used to limit the scope of the present application. Furthermore, unless otherwise indicated, the drawings are only meant to schematically represent the composition or configuration of the described objects and can contain exaggerated displays, and the drawings are not necessarily drawn to scale.
[0020] Figure 1 Structure diagram of the mop bucket of embodiment one Figure 1 ;
[0021] Figure 2 Structure diagram of the mop bucket of embodiment one Figure 2 ;
[0022] Figure 3 Sectional view diagram of the mop bucket of embodiment one Figure 1 ;
[0023] Figure 4 Sectional view diagram of the mop bucket of embodiment one Figure 2 ;
[0024] Figure 5 Sectional view diagram of the mop bucket of embodiment one Figure 3 ;
[0025] Figure 6 Split view diagram of the water baffle and the cover of embodiment one
[0026] Figure 7 Split view diagram of the cover and the bucket body of embodiment one
[0027] Figure 8 Structure diagram of the water supply mechanism installed in the bucket body of embodiment one Figure 1 ;
[0028] Figure 9 Structure diagram of the water supply mechanism installed in the bucket body of embodiment one Figure 2 ;
[0029] Figure 10 Structure diagram of the cover of embodiment one
[0030] Figure 11 Split view diagram of the upper bucket cover, the water baffle, the water scraping plate, the base and the water channel of embodiment one Figure 1 ;
[0031] Figure 12 Split view diagram of the upper bucket cover, the water baffle, the water scraping plate, the base and the water channel of embodiment one Figure 2 ;
[0032] Figure 13 Structure diagram of the bucket body of embodiment one
[0033] In the figure: 1, barrel body; 2, second observation window; 3, block plug; 4, cover; 5, water inlet; 6, water baffle; 7, first opening; 8, first let go of mouth; 9, second let go of mouth; 10, through hole; 11, driven gear; 12, first observation window; 13, squeegee; 14, clean water cavity; 15, pump body; 16, step; 17, inner barrel; 18, cleaning and dewatering integrated cavity; 19, partition; 20, sewage outlet; 21, first transparent plate; 22, first mounting hole; 23, second transparent plate; 24, second mounting hole; 25, drain outlet; 26, squeegee part; 27, sewage cavity; 28, base; 29, sewage outlet; 30, sewage tank; 31, upper barrel cover; 32, water passage; 33, water outlet; 34, water guide groove; 35, guide column; 36, rotating shaft; 37, transmission wheel; 38, positioning edge; 39, piston; 40, connecting rod; 41, water inlet pipe; 42, water outlet end; 43, water inlet end. DETAILED DESCRIPTION
[0034] The preferred embodiments of the present application will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that the description is merely illustrative, exemplary, and should not be construed as limiting the scope of the present application.
[0035] It should be noted that similar reference numerals in the following drawings represent similar items, and therefore, once an item is defined in one drawing, it can not be further defined and explained in subsequent drawings.
[0036] Embodiment one
[0037] Figures 1-13 As shown, the water-containing flat mop bucket with visible condition includes a barrel body 1, a cover, a water supply mechanism and a squeezing mechanism, the barrel body 1 is internally provided with a clean water cavity 14 for containing clean water and a sewage cavity 27 for containing sewage, the clean water cavity 14 is internally provided with an inner barrel 17, the inner barrel 17 is internally provided with a cleaning and dewatering integrated cavity 18 for inserting a flat mop for cleaning or dewatering, the cover 4 is mounted on the barrel body 1, the cover 4 is provided with a through hole 10 for the flat mop to pass through, the through hole 10 is correspondingly arranged above the cleaning and dewatering integrated cavity 18, and the water supply mechanism is used to deliver the clean water in the clean water cavity 14 to the flat mop inserted into the cleaning and dewatering integrated cavity 18.
[0038] Figure 13 As shown, the barrel body 1 is internally provided with a transversely arranged partition 19, the two ends of the partition 19 are connected with the inner walls opposite to the two sides of the barrel body 1, the partition 19 divides the inner cavity of the barrel body 1 into two independent areas on the left and right sides to form the above-mentioned clean water cavity 14 and sewage cavity 27, the clean water cavity 14 is located on the left side in the barrel body 1, and the sewage cavity 27 is located on the right side in the barrel body 1.
[0039] Figures 1-3As shown, the barrel body 1 is provided with a water outlet 25 communicated with the clean water cavity 14 and a sewage outlet 20 communicated with the sewage cavity 27, the water outlet 25 is used to discharge the water in the clean water cavity 14 to replace the water in the clean water cavity 14, and the sewage outlet 20 is used to discharge the sewage in the sewage cavity 27, the water outlet 25 and the sewage outlet 20 are both plugged with the blocking plug 3.
[0040] The inner barrel 17 is placed in the clean water cavity 14, when the cover body 4 is mounted on the barrel body 1, the cover body 4 is pressed on the inner barrel 17 to fix the inner barrel 17 in the clean water cavity 14. Preferably, the top of the inner barrel 17 is provided with a positioning edge 38 arranged along the contour of the inner barrel 17, when the cover body 4 is pressed on the inner barrel 17, the positioning edge 38 is positioned around the outside of the bottom edge of the cover body 4. The inner barrel 17 can also be fixedly connected to the bottom of the cover body 4 by screws, and when the cover body 4 is mounted, the inner barrel 17 is inserted into the clean water cavity 14.
[0041] The cover body 4 is plugged into the upper end opening of the barrel body 1 to be fixedly connected with the barrel body 1, and the inner wall of the barrel body 1 is provided with a stepped portion 16 for supporting the cover body 4. In order to ensure the stability of the connection between the cover body 4 and the barrel body 1, the cover body 4 can be buckled with the side wall of the barrel body 1 after being plugged into the barrel body 1.
[0042] Figures 2-5 As shown, the water squeezing mechanism includes a water scraping plate 13 arranged at the right side of the through hole 10, the side of the water scraping plate 13 close to the through hole 10 is provided with a water scraping portion 26 in contact with the mop head of the flat mop passing through, and the water scraping portion 26 and the left side of the through hole 10 combine to form a water rolling opening, the side of the water scraping plate 13 away from the water scraping portion 26 extends above the sewage cavity 27, when the mop head of the flat mop passes through the through hole 10 and moves up and down in the washing and dewatering integrated cavity 18, the water scraping portion 26 contacts the wiping portion on the mop head and scrapes the water on the wiping portion, and the scraped water is discharged from above the sewage cavity 27 along the water scraping plate 13 into the sewage cavity 27 for storage.
[0043] Figure 5 、 Figure 11 、 Figure 12 As shown, the cover body 4 includes an upper barrel cover 31 mounted on the barrel body 1 and a base 28 fixed to the bottom of the upper barrel cover 31, the base 28 is located at the right side of the through hole 10, the water scraping plate 13 is arranged between the base 28 and the upper barrel cover 31, the base 28 is provided with a guide column 35, the water scraping plate 13 is sleeved on the guide column 35 and can move up and down along the guide column 35, the guide column 35 is provided with an inclined surface, when the mop head of the flat mop passes through the through hole 10 and moves downward, the water scraping plate 13 is driven by the mop head to move obliquely downward along the inclined surface, the water scraping portion 26 gradually moves to the side of the mop head, so that the width of the water rolling opening becomes smaller, thereby achieving better water scraping effect, when the mop head of the flat mop moves upward, the water scraping plate 13 is driven by the mop head to move obliquely upward along the inclined surface, the water scraping portion 26 gradually moves away from the mop head, so that the width of the water rolling opening becomes larger, thereby facilitating the mop head of the flat mop to move out upward.
[0044] Figure 4 As shown, the base 28 is provided with a sewage tank 30, and the bottom of the sewage tank 30 is provided with a sewage outlet 29 corresponding to the upper part of the sewage cavity 27. When the squeegee 13 scrapes the sewage on the wiping part, the scraped sewage flows into the sewage tank 30 on the lower base 28, and then flows into the sewage cavity 27 from the sewage outlet 29.
[0045] The arrangement structure of the squeegee 13 enables the water scraped by the squeegee 13 to be directly discharged into the sewage cavity 27, and the sewage discharging structure is simpler, and other sewage guiding structures are not required to guide the sewage to the upper part of the sewage cavity 27.
[0046] Figure 4 、 Figure 6 As shown, the cover 4 is provided with a water outlet 33, and the water outlet 33 and the squeegee 13 are located on the same side of the through hole 10. Specifically, the water outlet 33 is arranged on the upper bucket cover 31 above the squeegee 13, the top of the upper bucket cover 31 is provided with a water guide groove 34, the side of the water guide groove 34 is provided with a slot communicating with the through hole 10, the water outlet 33 is arranged in the water guide groove 34, and the water guide groove 34 is provided with the water baffle 6 installed above. When the water outlet 33 discharges water outward, the water baffle 6 blocks the upward spraying water, so that the water can flow into the through hole 10 from the water guide groove 34 to clean the mop head passing through the through hole 10.
[0047] Figures 7-9 As shown, the water supply mechanism includes a transmission assembly and a reciprocating pump body 15 inserted into the clean water cavity 14. The transmission assembly includes a driven gear 11 and a transmission wheel 37 coupled with the driven gear 11. The driven gear 11 is at least partially located in the through hole 10. The eccentric position of the transmission wheel 37 is movably connected with a connecting rod 40. The connecting rod 40 is movably connected with a piston 39 of the pump body 15. The pump body 15 is provided with a vertically extending water inlet pipe 41. The clean water cavity 14 and the sewage cavity 27 are transversely provided with a water passage 32. The water inlet pipe 41 is connected with a water inlet end 43 of the water passage 32. A water outlet end 42 of the water passage 32 is connected with the water outlet 33. The driven gear 11 can be driven to rotate by the up-and-down movement of the flat mop passing through the through hole 10, so that the water pump can deliver the water in the clean water cavity 14 to the water outlet 33 to supply water to the flat mop in the through hole 10. The water passage 32 is fixedly connected with the upper bucket cover 31. The pump body 15 is fixed to the cover 4 through the fixed connection of the water inlet pipe 41 and the water passage 32.
[0048] The driven gear 11 is mounted between the cover 4 and the inner bucket 17 through a rotating shaft 36. The transmission wheel 37 is connected to the rotating shaft 36. When the flat mop is moved up and down to drive the driven gear 11 to rotate, the driven gear 11 drives the transmission wheel 37 to rotate coaxially. The transmission wheel 37 drives the piston 39 of the pump body 15 to reciprocate through the connecting rod 40, so that the pump body 15 can deliver the water in the clean water cavity 14 to the water outlet 33.
[0049] The water supply mechanism is a structure commonly used in the art, and the transmission mechanism and the water supply mechanism in patent CN221750327U can be referred to.
[0050] The width of the cleaning and dewatering integrated cavity 18 is greater than the width of the mop head of the flat mop, and the left and right sides of the cleaning and dewatering integrated cavity 18 have a cleaning position and a dewatering position for the flat mop to move up and down inside. When the flat mop is inserted into the cleaning position, the flat mop cooperates with the driven gear 11, and the up and down movement of the flat mop drives the driven gear 11 to rotate, and the pump body 15 delivers water to the flat mop passing through the through hole 10. When the flat mop is inserted into the dewatering position, the flat mop is disengaged from the driven gear 11, and the pump body 15 stops delivering water to the flat mop. The flat mop can be cleaned and dewatered when inserted into a single port of the mop bucket.
[0051] Figure 1 、 Figure 2 As shown in the figure, the through hole 10 includes a first opening 7 for the plate body of the mop head to pass through, and a first accommodation opening 8 and a second accommodation opening 9 in communication with the first opening 7 for the hinged seat on the plate body to pass through. The wiper 13 and the water outlet 33 are arranged on the right side of the first opening 7, and the first accommodation opening 8 and the second accommodation opening 9 are arranged on the left side of the first opening 7. The driven gear 11 is at least partially located in the first accommodation opening 8, the hinged seat passes through the first accommodation opening 8 when the flat mop is inserted into the cleaning position, and the hinged seat passes through the second accommodation opening 9 when the flat mop is inserted into the dewatering position. The first accommodation opening 8 and the second accommodation opening 9 facilitate the user to insert the flat mop into the above-mentioned cleaning position and dewatering position. A wide enough accommodation opening can also be provided on the left side of the first opening 7, and the flat mop is switched between the cleaning position and the dewatering position by moving the inserted flat mop left and right.
[0052] The flat mop cooperates with the driven gear 11 in the first accommodation opening 8, a lug plate can be provided on the top surface of the mop head away from the wiping part, and the lug plate is provided with a rack. When the mop head of the flat mop is inserted into the cleaning position, the lug plate and the hinged seat are inserted into the first accommodation opening 8, the rack on the lug plate is engaged with the driven gear 11, and when the flat mop moves up and down, the rack drives the driven gear 11 to rotate, so that the pump body 15 delivers water in the clean water cavity 14 to the water outlet 33 for water supply to the flat mop.
[0053] The barrel body 1 is provided with transparent first observation window 12 and second observation window 2, first observation window 12 and second observation window 2 are used to observe the water capacity of clean water cavity 14 and sewage cavity 27 respectively.
[0054] The user observes the water quantity in the clean water cavity 14 and the sewage cavity 27 through the observation window, so that the user can add water in time when the water quantity in the clean water cavity 14 is too small, and the user can discharge sewage in time when a large amount of sewage accumulates in the sewage cavity 27.
[0055] Figures 1-3 As shown, the first observation window 12 and the second observation window 2 are symmetrically arranged on the barrel walls on the left and right sides of the barrel body 1, the partition plate 19 is horizontally arranged between the first observation window 12 and the second observation window 2, the first observation window 12 and the second observation window 2 are arranged on the left and right sides of the barrel body 1 to facilitate distinguishing the first observation window 12 and the second observation window 2, and the symmetric structure makes the mop bucket look more beautiful from the outside.
[0056] The lowest part of the first observation window 12 is arranged adjacent to or adjacent to the inner bottom of the barrel body 1, the highest part of the first observation window 12 is not lower than the upper edge of the partition plate 19, the lowest part of the second observation window 2 is arranged adjacent to or adjacent to the inner bottom of the barrel body 1, and the highest part of the second observation window 2 is not lower than the upper edge of the partition plate 19, so that the first observation window 12 and the second observation window 2 can observe the water storage condition in the clean water cavity 14 and the sewage cavity 27 in the largest range.
[0057] Preferably, the first observation window 12 is arranged adjacent to the inner bottom of the barrel body 1, and the above-mentioned drain port 25 is arranged at a position directly below the first observation window 12, and the second observation window 2 is arranged adjacent to the inner bottom of the barrel body 1, and the above-mentioned sewage port 20 is arranged at a position directly below the second observation window 2.
[0058] Preferably, the first observation window 12 and the second observation window 2 are long strip-shaped, and the first observation window 12 and the second observation window 2 are arranged in the height direction of the barrel wall of the barrel body 1.
[0059] The first observation window 12 includes a first transparent plate 21, the barrel wall of the barrel body 1 for enclosing the clean water cavity 14 is provided with a first mounting hole 22, and the first transparent plate 21 is fixedly installed in the first mounting hole 22 as part of the side wall of the clean water cavity 14, and the second observation window 2 includes a second transparent plate 23, the barrel wall of the barrel body 1 for enclosing the sewage cavity 27 is provided with a second mounting hole 24, and the second transparent plate 23 is fixedly installed in the second mounting hole 24 as part of the side wall of the sewage cavity 27.
[0060] The first transparent plate 21 and the second transparent plate 23 can be transparent or translucent plastic plates, and after the first transparent plate 21 and the second transparent plate 23 are embedded in the first mounting hole 22 and the second mounting hole 24, they can be fixed on the barrel body 1 by gluing; or the first transparent plate 21 and the second transparent plate 23 can also be installed in the first mounting hole 22 and the second mounting hole 24 by secondary injection molding.
[0061] The first transparent plate 21 and the second transparent plate 23 can also be transparent glass plates.
[0062] The cover body 4 is provided with a water inlet 5, and the water inlet 5 is correspondingly arranged above the clean water cavity 14.
[0063] Embodiment two
[0064] The other structure of the embodiment is same as that of the first embodiment, and the difference is only the structure of the observation window.
[0065] The bucket 1, the cover 4 and the water supply mechanism are included, the bucket 1 is internally provided with a clean water cavity 14 for containing clean water and a sewage cavity 27 for containing sewage, the clean water cavity 14 is provided with an inner bucket 17, the inner bucket 17 is internally provided with a cleaning and dehydration integrated cavity 18 for inserting a flat mop for cleaning or dehydration, the cover 4 is mounted on the bucket 1, the cover 4 is provided with a through hole 10 for the flat mop to pass through, the through hole 10 is correspondingly arranged above the cleaning and dehydration integrated cavity 18, the water supply mechanism is used for conveying the clean water in the clean water cavity 14 to the flat mop inserted into the cleaning and dehydration integrated cavity 18, the bucket 1 is provided with a transparent third observation window, and the same third observation window is arranged outside the clean water cavity 14 and the sewage cavity 27 and used for observing the water containing conditions of the clean water cavity 14 and the sewage cavity 27, and the sewage cavity 27 and the clean water cavity 14 can be observed through the third observation window.
[0066] The flat mop bucket with the water containing condition being visible is introduced above, the principle and the implementation mode of the flat mop bucket with the water containing condition being visible are described by applying specific examples in the text, and the above embodiment is only used for helping to understand the flat mop bucket with the water containing condition being visible and the core idea. It should be pointed out that, for ordinary skilled in the art, on the premise of not departing from the principle of the flat mop bucket with the water containing condition being visible, the flat mop bucket with the water containing condition being visible can be improved and modified in many ways, and the improvement and the modification also fall within the protection scope of the flat mop bucket with the water containing condition being visible.
Claims
1. A flat mop bucket with visible water condition, comprising a bucket body, a cover body and a water supply mechanism, a clean water cavity for containing clean water and a sewage cavity for containing sewage are arranged in the bucket body, an inner bucket is arranged in the clean water cavity, a cleaning and dewatering integrated cavity for inserting a flat mop for cleaning or dewatering is arranged in the inner bucket, the cover body is arranged on the bucket body, a through hole for the flat mop to pass through is arranged on the cover body, the through hole is arranged above the cleaning and dewatering integrated cavity, and the water supply mechanism is used for conveying the clean water in the clean water cavity to the flat mop inserted into the cleaning and dewatering integrated cavity, characterized in that, The barrel body is provided with transparent first and second observation windows for observing the water storage conditions of the clean water cavity and the sewage cavity respectively.
2. The flat mop bucket with a view of the water condition according to claim 1, characterized in that, The barrel body is provided with a transversely arranged partition plate, the two ends of the partition plate are connected to the inner walls of the two sides of the barrel body, and the partition plate divides the inner cavity of the barrel body into two independent areas on the left and right sides to form the clean water cavity and the sewage cavity.
3. The flat mop bucket with a view of the water condition according to claim 1, wherein, The barrel body is provided with a partition plate, the partition plate divides the inner cavity of the barrel body into the clean water cavity and the sewage cavity, the lowest part of the first observation window is adjacent to or adjacent to the inner bottom of the barrel body, and the highest part of the first observation window is not lower than the upper edge of the partition plate.
4. The flat mop bucket with a view of the water condition according to claim 3, characterized in that, The first observation window and the second observation window are long strips, and the first observation window and the second observation window are arranged in the height direction of the barrel wall of the barrel body.
5. The flat mop bucket with a view of the water condition according to claim 1, wherein, The barrel body is provided with a partition plate, the partition plate divides the inner cavity of the barrel body into the clean water cavity and the sewage cavity, the first observation window includes a first transparent plate, the barrel wall for surrounding the clean water cavity is provided with a first mounting hole, and the first transparent plate is fixedly installed in the first mounting hole as part of the clean water cavity side wall.
6. The flat mop bucket with a view of the water condition according to claim 1, wherein, The side of the through hole is provided with a water scraping plate, the side close to the through hole of the water scraping plate is provided with a water scraping part in contact with the mop head of the flat mop passing through, the side away from the water scraping part of the water scraping plate extends to the upper side of the sewage cavity for guiding the scraped sewage into the sewage cavity below, the cover body is provided with a water outlet, the water outlet and the water scraping plate are located on the same side of the through hole, the water supply mechanism includes a transmission assembly and a reciprocating pump body inserted into the clean water cavity, the transmission assembly includes a driven gear and a transmission wheel coupled with the driven gear, the driven gear is at least partially located in the through hole, and the eccentric position of the transmission wheel is movably connected with a connecting rod, the connecting rod is movably connected with a piston of the pump body, the pump body is provided with a vertically extending water inlet pipe, and a water passing pipeline is transversely arranged above the clean water cavity and the sewage cavity. The water inlet pipe is connected with the water inlet end of the water passing pipeline, the water outlet end of the water passing pipeline is connected with the water outlet, and the driven gear can be driven to rotate by the up-down movement of the flat mop passing through the through hole, so that the water pump delivers water in the clean water cavity to the water outlet to supply water to the flat mop in the through hole.
7. The flat mop bucket with a view of the water condition according to claim 6, characterized in that, The width of the cleaning and dewatering integrated cavity is greater than the width of the mop head of the flat mop, and the left and right sides of the cleaning and dewatering integrated cavity have a cleaning position and a dewatering position for the flat mop to move up and down in the cavity. When the flat mop is inserted into the cleaning position, the flat mop cooperates with the driven gear, the flat mop drives the driven gear to rotate by moving up and down, and the pump body delivers water to the flat mop passing through the through hole. When the flat mop is inserted into the dewatering position, the flat mop is disengaged from the driven gear, and the pump body stops delivering water to the flat mop.
8. The flat mop bucket with a view of the water condition according to claim 7, characterized in that, The through hole comprises a first opening for the plate body of the mop head to pass through, and a first accommodation opening and a second accommodation opening in communication with the first opening and for the hinged seat on the plate body to pass through, the squeegee and the water outlet are arranged on one side of the first opening, and the first accommodation opening and the second accommodation opening are arranged on the other side of the first opening, the driven gear is at least partially located in the first accommodation opening, the hinged seat passes through the first accommodation opening when the flat mop is inserted into the cleaning position, and the hinged seat passes through the second accommodation opening when the flat mop is inserted into the dehydration position.
9. The flat mop bucket with a view of the water condition according to claim 1, wherein, The barrel body is provided with a water outlet in communication with the clean water cavity and a sewage outlet in communication with the sewage cavity.
10. A flat mop bucket with water condition visible, comprising a bucket body, a cover body and a water supply mechanism, a clean water cavity for containing clean water and a sewage cavity for containing sewage are arranged in the bucket body, an inner bucket is arranged in the clean water cavity, a cleaning and dewatering integrated cavity for inserting a flat mop for cleaning or dewatering is arranged in the inner bucket, the cover body is arranged on the bucket body, a through hole for the flat mop to pass through is arranged on the cover body, the through hole is arranged above the cleaning and dewatering integrated cavity, and the water supply mechanism is used for conveying the clean water in the clean water cavity to the flat mop inserted into the cleaning and dewatering integrated cavity, characterized in that, The barrel body is provided with a transparent third observation window, and the same third observation window is arranged on the outer side of the clean water cavity and the sewage cavity to observe the water storage conditions of the clean water cavity and the sewage cavity.
Citation Information
Patent Citations
Mop bucket convenient for pouring sewage
CN219479993U