Mop bucket convenient for adding cleaning solution
By incorporating a liquid filling chamber and seepage hole into the mop bucket, and utilizing elastic components and sealing devices, automatic addition of cleaning solution is achieved, solving the problems of cumbersome operation and waste associated with traditional mop buckets, and improving cleaning efficiency and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BAZHOU LIANGJIE HOUSEHOLD GOODS CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-05-08
AI Technical Summary
Traditional mop buckets are cumbersome to use when adding cleaning solution, which can easily lead to waste and contamination of the solution, affecting cleaning efficiency and effectiveness.
Design a mop bucket that is easy to add cleaning fluid. By setting a fluid filling chamber and a seepage hole on the lid, the cleaning fluid can be automatically added using elastic elements and sealing components. During cleaning, squeezing the sealing ring and connecting frame allows the cleaning fluid to flow out to the mop head. The bucket is automatically sealed after cleaning is completed.
It enables automatic addition of cleaning solution, avoiding spills and contamination, improving cleaning efficiency and user experience, and reducing waste of cleaning solution.
Smart Images

Figure CN224206771U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mop bucket technology, and in particular to a mop bucket that is easy to add cleaning solution. Background Technology
[0002] In daily household cleaning, mops are a frequently used cleaning tool. To improve cleaning effectiveness, people usually add cleaning solution to the mop head during cleaning. However, in practice, the traditional method of adding cleaning solution has many inconveniences. The traditional method involves pouring the cleaning solution from the container into a separate container (such as a small bowl or bucket) before manually spreading or spraying it evenly onto the mop head. This process is not only tedious, increasing the steps and time cost of cleaning, but also easily leads to waste of cleaning solution, as excess solution may spill on the floor or other unintended areas, creating unnecessary cleaning burden. Even if users pre-add a certain amount of cleaning solution to the mop bucket, during cleaning, the solution gradually decreases with repeated washing and squeezing of the mop head. Users need to frequently open the lid to check the remaining solution and add more as needed, which also affects cleaning efficiency. Furthermore, adding solution during this process can easily allow external dust and impurities to enter the bucket, contaminating the cleaning solution and thus affecting the cleaning effect. Utility Model Content
[0003] The purpose of this invention is to provide a mop bucket that facilitates the addition of cleaning solution. While cleaning the objects being wiped by the flat mop head in the mop bucket, the cleaning solution is also applied to the objects being wiped. This allows for convenient and automatic addition of cleaning solution, saving time and effort, avoiding waste of cleaning solution, improving cleaning efficiency, ensuring cleaning effect, and enhancing the user experience.
[0004] To achieve the above objectives, this utility model provides the following solution:
[0005] This utility model provides a mop bucket for easy addition of cleaning fluid, including a bucket body, a bucket lid connected to the bucket body, a cleaning inlet on the bucket lid, a fluid filling chamber on the cleaning inlet for holding cleaning fluid, a seepage hole on the side wall of the fluid filling chamber near the cleaning inlet, a first elastic element inside the fluid filling chamber, the first elastic element being connected to a sealing component, the sealing component passing through the seepage hole and sealing it, when a flat mop head is inserted into the cleaning inlet, the flat mop head squeezes the sealing component while the first elastic element is compressed, creating a gap between the sealing component and the seepage hole, through which the cleaning fluid flows out.
[0006] Preferably, the liquid filling chamber is provided with a connecting frame, and the side of the connecting frame near the seepage hole is provided with a first protruding shaft, and the side of the connecting frame away from the seepage hole is provided with a second protruding shaft.
[0007] Preferably, the first elastic element is a compression spring, and the liquid filling chamber is also provided with a C-shaped abutment plate. One end of the compression spring is sleeved on the second protruding shaft, and the other end abuts against the abutment plate.
[0008] Preferably, the sealing assembly includes an extrusion member and a sealing ring, and the connecting frame is connected to the extrusion member. The extrusion member includes a head and a cylindrical part. The head is located outside the liquid filling chamber, and the cylindrical part passes through the seepage hole. The center of the cylindrical part is provided with a cylindrical part through hole, and a first protruding shaft is inserted into the cylindrical part through hole.
[0009] Preferably, the sealing ring is fitted onto the end of the cylindrical part, with one side of the sealing ring abutting against the connecting frame and the other side abutting against the side wall of the liquid filling chamber near the cleaning port.
[0010] Preferably, a plurality of cylindrical grooves are evenly distributed circumferentially along the axial direction of the cylindrical portion on the side wall of the cylindrical portion.
[0011] Preferably, the liquid filling chamber has an opening above it, which is closed by a cover plate. The cover plate is connected to a sealing plate. The cover plate has a cover plate mounting hole and a liquid filling hole. The sealing plate has a sealing plate protrusion and a sealing plate groove. The sealing plate protrusion is inserted into the cover plate mounting hole, and the sealing plate groove is inserted into the liquid filling hole.
[0012] Preferably, the cleaning port is provided with a cleaning part and a cleaning roller arranged opposite each other, and the liquid filling chamber is located on the edge of the cleaning port and above the cleaning part.
[0013] Preferably, the bucket lid includes a support cover, the outer periphery of which is connected to an outer ring body. A rotating plate is rotatably connected to the outer edges of opposite sides of the outer ring body. A horizontally arranged protruding plate is provided on the lower part of the side of the rotating plate facing the mop bucket. The protruding plate can be engaged with the lower edge of the bucket opening.
[0014] Preferably, the inner side of the outer ring is connected to two hollow connecting posts, which are symmetrically arranged on both sides of the rotating plate. The upper end of the connecting post is movably connected to the outer ring, and the lower end of the connecting post abuts against the upper edge of the opening of the barrel. The upper part of the connecting post is provided with a connecting post opening, and a first spring is provided inside the connecting post. The upper end of the first spring is connected to the outer ring, and the lower end of the first spring is connected to the inner bottom surface of the connecting post.
[0015] Preferably, the connecting post has symmetrically arranged upwardly extending ear plates at its opening, and the upper part of the ear plates has an outwardly extending tongue. The outer ring body has an insertion hole, and the connecting post is connected to the outer ring body after passing through the insertion hole via the tongue. The ear plates can move up and down within the insertion hole.
[0016] Preferably, the rotating plate has hinge protrusions at both ends, and the outer ring body has hinge holes that mate with the hinge protrusions.
[0017] Preferably, the rotating plate is further provided with a positioning plate, which is located at the end opposite to the convex plate. When the positioning plate is engaged with the lower edge of the barrel opening, the positioning plate abuts against the edge of the outer ring body.
[0018] Preferably, the lower end of the positioning plate is provided with a protruding shaft, which is sleeved on one end of the second spring. The other end of the second spring abuts against the outside of the support cover. When the protruding plate is engaged with the lower edge of the barrel opening, the second spring is compressed. When the protruding plate is released from the lower edge of the barrel opening, the second spring is released.
[0019] Preferably, the cleaning part is a brush bristle, which is located below the liquid filling chamber and protrudes from the side wall of the cleaning port. The support cover is provided with a mounting groove, and the brush bristle is fixedly connected in the mounting groove. The two ends of the brush bristle are bent towards the middle and the brush bristle extends out from the opening of the mounting groove.
[0020] Preferably, the cleaning roller is rotatably connected to a first support shaft, which is located on the edge of the cleaning port opposite to the bristles.
[0021] Preferably, the bucket lid further includes a squeezing spout, which is provided with a squeezing part and a squeezing roller.
[0022] Preferably, the squeezing rollers include two rollers arranged symmetrically, and the squeezing rollers are mounted on a mounting bracket, which is located on the side wall of the squeezing inlet.
[0023] Preferably, the mounting frame has symmetrical vertical slides on both sides, and the squeezing roller can slide within the vertical slides.
[0024] Preferably, the wringing section includes a first wringing plate and a second wringing plate arranged opposite to each other, and the wringing roller is disposed between the first wringing plate and the second wringing plate, so that the flat mop head can move up and down between the first wringing plate and the wringing roller and / or the flat mop head can move up and down between the second wringing plate and the wringing roller to wring out water and dry the mop.
[0025] Preferably, the first wringer is a hollow tubular structure, and the upper surface of the first wringer gradually slopes downward from the side away from the wringer to the side closer to the wringer. The surface of the first wringer near the wringer is a vertical plane to wring water and dry the surface of the flat mop. The second wringer is integrally formed with the bucket lid.
[0026] Preferably, the bucket body includes a cleaning area and a squeezing area, the cleaning area corresponding to the cleaning port and the squeezing area corresponding to the squeezing port, and a drain outlet is provided in the cleaning area and the squeezing area respectively, the drain outlet being located on the side wall of the bucket body.
[0027] Preferably, it also includes a handle, which is rotatably connected to the barrel body.
[0028] Preferably, the support cover has a marking for drying wood flooring corresponding to the first wringer, a marking for drying floor tiles corresponding to the second wringer, and a marking for cleaning with cleaning fluid corresponding to the opening of the liquid filling chamber.
[0029] The present invention achieves the following beneficial technical effects compared to the prior art:
[0030] 1. The mop bucket provided by this utility model facilitates the addition of cleaning fluid. When the flat mop head is inserted into the cleaning port, the wiping material on the flat mop head squeezes the head of the squeezing member, causing the cylindrical part of the squeezing member to move towards the filling chamber. This, in turn, causes the sealing ring and connecting bracket to move towards the filling chamber, compressing the compression spring. At this time, the seal of the leakage hole is released, and the cleaning fluid flows out through the groove of the cylindrical part onto the wiping material. The user can clean the wiping material on the flat mop head up and down while the cleaning fluid adheres to the wiping material. After cleaning the wiping material, the flat mop head is pulled out of the cleaning port. The elasticity of the compression spring causes the connecting bracket and sealing ring to return to their original positions, and the squeezing member also returns to its original position. The sealing ring seals the leakage hole, and the cleaning fluid no longer flows out. The mop bucket in this embodiment, which facilitates the addition of cleaning solution, not only cleans the objects being wiped by the flat mop head within the bucket but also applies cleaning solution to the objects. This prevents cleaning solution from spilling onto the floor or other non-target areas, avoiding unnecessary cleaning burdens, eliminating the need for manual refilling, and preventing external dust and impurities from entering the mop bucket and contaminating the cleaning solution during the refilling process. It achieves convenient and automatic cleaning solution addition, saving time and effort, reducing cleaning solution waste, improving cleaning efficiency, ensuring cleaning results, and enhancing the user experience.
[0031] 2. The mop bucket provided by this utility model facilitates the addition of cleaning solution. During use, the cleaning area is filled with water, and the sealing plate protrusion is pulled out of the filling hole to add cleaning solution to the filling chamber. After adding the solution, the sealing plate protrusion is reinserted into the filling hole. The flat mop head to be cleaned is inserted between the bristles and cleaning rollers in the cleaning port, and external force is used to move the flat mop head up and down. The wiping material on the flat mop head will squeeze the head of the squeezing component, causing the cylindrical part of the squeezing component to move towards the filling chamber. This, in turn, will cause the sealing ring and connecting bracket to move towards the filling chamber, compressing the compression spring. At this time, the seal of the seepage hole is released, and the cleaning solution will flow out through the groove of the cylindrical part onto the wiping material. After cleaning is complete, the flat mop head is pulled out. The elasticity of the compression spring will cause the connecting bracket and sealing ring to return to their original positions, and the squeezing component will also return to its original position. The sealing ring will seal the seepage hole, and the cleaning solution will no longer flow out. Then, insert the flat mop head into the wringer inlet and move it up and down to wring out the water using the first or second wringer plate. When it's time to clean the mop bucket, rotate the rotating plate to disengage the convex plate from the bottom edge of the bucket opening. At this point, the first spring returns to its original shape, pushing the bucket lid off the bucket. The second spring's force also pushes the rotating plate open quickly, preventing the convex plate from not fully disengaging, thus facilitating the removal of the bucket lid for cleaning. After cleaning the bucket lid, place it at the bucket opening and press down to press the connecting post against the top edge and compress the first spring. The convex plate then engages with the bottom edge of the bucket opening, completing the bucket lid installation. Attached Figure Description
[0032] Figure 1 This is a schematic diagram of the overall structure of the mop bucket for easy addition of cleaning solution in this utility model;
[0033] Figure 2 This is a partial exploded structural diagram of the mop bucket for easy addition of cleaning fluid in this utility model;
[0034] Figure 3 This is a partial exploded structural diagram of the lid of the mop bucket that facilitates the addition of cleaning fluid according to this utility model.
[0035] Figure 4 This is an exploded structural diagram of another part of the lid of the mop bucket that facilitates the addition of cleaning liquid in this utility model.
[0036] Figure 5 This is a schematic diagram showing the exploded structure of another part of the lid of the mop bucket that facilitates the addition of cleaning liquid in this utility model.
[0037] Figure 6 This is a schematic diagram of the connecting column of the mop bucket that facilitates the addition of cleaning liquid in this utility model;
[0038] Figure 7This is a schematic diagram of the extrusion component of the mop bucket that facilitates the addition of cleaning fluid in this utility model;
[0039] Figure 8 This is a schematic diagram of the rotating plate of the mop bucket that facilitates the addition of cleaning solution in this utility model;
[0040] In the picture:
[0041] 1-Barrel body, 101-Barrel opening, 102-Clean area, 103-Wringing area, 104-Drain outlet;
[0042] 2-Bucket lid, 201-Cleaning inlet, 202-Liquid filling chamber, 203-Leakage hole, 204-Connecting frame, 205-First protruding shaft, 206-Second protruding shaft, 207-Abutting plate, 208-Compression spring, 209-Extrusion piece, 210-Head; 211-Cylindrical part, 212-Cylindrical part through hole, 213-Sealing ring, 214-Cylindrical part groove, 215-Liquid filling chamber opening, 216-Cover plate, 217-Sealing plate, 218-Cover plate mounting hole, 219-Liquid filling hole, 220-Sealing plate protrusion, 221-Sealing plate groove, 222-Brush bristles, 223-Cleaning roller, 224-First support shaft, 225-Through hole;
[0043] 3-Support cover, 301-Outer ring body, 302-Rotating plate, 303-Protruding plate, 304-Connecting post, 305-Connecting post opening, 306-First spring, 307-Ear plate, 308-Protruding tongue, 309-Insertion hole, 310-Hinge protrusion, 311-Hinge hole, 312-Positioning plate, 313-Protruding shaft, 314-Second spring, 315-Mounting groove;
[0044] 4-Squeezing inlet, 401-Squeezing roller, 402-Mounting bracket, 403-Vertical slide, 404-First squeezing plate, 405-Second squeezing plate;
[0045] 5-Handle. Detailed Implementation
[0046] This embodiment provides a mop bucket that is easy to add cleaning solution, such as... Figures 1-8As shown, it includes a barrel body 1, with a barrel opening 101 at the top of the barrel body 1. A barrel lid 2 is connected to the barrel opening 101. A cleaning inlet 201 is provided on the barrel lid 2. A liquid filling chamber 202 is provided on the edge of the cleaning inlet 201. The liquid filling chamber 202 is used to contain cleaning liquid, which can be 84 disinfectant or floor cleaning liquid, etc. The liquid filling chamber 202 has several seepage holes 203 on its side wall near the cleaning port 201. In this embodiment, there are two seepage holes 203 and the two seepage holes 203 are symmetrically arranged. The liquid filling chamber 202 is provided with a connecting frame 204. The side of the connecting frame 204 near the seepage hole 203 is provided with a first protruding shaft 205, and the side of the connecting frame 204 away from the seepage hole 203 is provided with a second protruding shaft 206. The liquid filling chamber 202 is also provided with a C-shaped abutment plate 207. One end of the compression spring 208 is sleeved on the second protruding shaft 206, and the other end abuts against the abutment plate 207. The connecting frame 204 is connected to the extrusion member 209. Specifically, the extrusion member 209 includes a head 210 and a cylindrical portion 211. The head 210 is located outside the liquid filling chamber 202. The head 210 of the extrusion member 209 is mushroom-shaped, which makes the up-and-down movement of the flat mop head after it comes into contact with the extrusion member 209 smoother. The cylindrical portion 211 passes through the seepage hole 203. The center of the cylindrical portion 211 has a cylindrical through hole 212. The first protruding shaft 205 is inserted into the cylindrical through hole 212, realizing the connection between the connecting frame 204 and the extrusion member 209. A sealing ring 213 is sleeved on the end of the cylindrical portion 211. One side of the sealing ring 213 abuts against the connecting frame 204, and the other side abuts against the side wall of the liquid filling chamber 202 near the cleaning port 201. Under normal conditions, the sealing ring 213 seals the seepage hole 203, so that the cleaning liquid will not flow out from the seepage hole 203. A plurality of cylindrical grooves 214 are evenly distributed circumferentially along the axial direction of the cylindrical part 211 on the side wall of the cylindrical part 211. When the head 210 of the extruder 209 is subjected to external pressure, the cylindrical part 211 of the extruder 209 moves toward the liquid filling chamber 202, the compression spring 208 is compressed, and the movement of the cylindrical part 211 will drive the movement of the sealing ring 213, so that the leakage hole 203 is released from the seal, and a gap is generated between the cylindrical part 211 and the leakage hole 203, and the cleaning fluid will flow out through the cylindrical grooves 214.
[0047] Specifically, when the flat mop head is inserted into the cleaning port 201, the wiping material on the flat mop head will squeeze the head 210 of the squeezing member 209, causing the cylindrical part of the squeezing member 209 to move towards the liquid filling tank 202. This, in turn, will cause the sealing ring 213 and the connecting bracket 204 to move towards the liquid filling tank 202, compressing the compression spring 208. At this time, the seal of the seepage hole 203 is released, and the cleaning fluid will flow out through the cylindrical groove 214 onto the wiping material. The user can clean the wiping material on the flat mop head up and down while the cleaning fluid adheres to the wiping material. After cleaning the wiping material, the flat mop head is pulled out of the cleaning port 201. The elasticity of the compression spring 208 will cause the connecting bracket 204 and the sealing ring 213 to return to their original positions, and the squeezing member 209 will also return to its original position. The sealing ring 213 will seal the seepage hole 203, and the cleaning fluid will no longer flow out. The mop bucket in this embodiment, which facilitates the addition of cleaning solution, not only cleans the objects being wiped by the flat mop head within the bucket but also applies cleaning solution to the objects. This prevents cleaning solution from spilling onto the floor or other non-target areas, avoiding unnecessary cleaning burdens, eliminating the need for manual refilling, and preventing external dust and impurities from entering the mop bucket and contaminating the cleaning solution during the refilling process. It achieves convenient and automatic cleaning solution addition, saving time and effort, reducing cleaning solution waste, improving cleaning efficiency, ensuring cleaning results, and enhancing the user experience.
[0048] A filling chamber opening 215 is provided above the filling chamber 202. The filling chamber opening 215 is closed by a cover plate 216, which is connected to a sealing plate 217. The cover plate 216 has a cover plate mounting hole 218 and a filling hole 219. The sealing plate 217 has a sealing plate protrusion 220 and a sealing plate groove 221. The sealing plate protrusion 220 is inserted into the cover plate mounting hole 218, and the sealing plate groove 221 is inserted into the filling hole 219. Through the insertion of the sealing plate protrusion 220 into the cover plate mounting hole 218 and the insertion of the sealing plate groove 221 into the filling hole 219, a relatively tight connection is achieved between the cover plate 216 and the sealing plate 217, effectively reducing the risk of liquid leakage from the filling chamber opening 215 and improving the sealing performance of the filling chamber 202. When a user needs to add cleaning fluid to the liquid filling chamber 202, simply pull the sealing plate protrusion 221 out of the liquid filling hole 219 to perform the liquid filling operation through the liquid filling hole 219. After the liquid filling is completed, insert the sealing plate protrusion 221 back into the liquid filling hole 219 to seal the liquid filling chamber 202. The operation is simple and convenient.
[0049] The cleaning inlet 201 is equipped with opposing bristles 222 and cleaning rollers 223. The liquid filling chamber 202 is located at the edge of the cleaning inlet 201 and above the bristles 222. The lid 2 includes a support cover 3, the outer periphery of which is connected to an outer ring body 301. A rotating plate 302 is rotatably connected to the outer edges of opposite sides of the outer ring body 301. A protruding plate 303 is provided on the lower part of the rotating plate 302 facing the mop bucket. The protruding plate 303 can be engaged with the lower edge of the bucket opening 101. Rotating the rotating plate 302 causes the protruding plate 303 to engage with the lower edge of the bucket opening 101, thus connecting the lid 2 to the bucket body 1. Alternatively, rotating the rotating plate 302 causes the protruding plate 303 to disengage from the lower edge of the bucket opening 101, thus removing the lid 2 from the bucket body 1.
[0050] The inner side of the outer ring body 301 is connected to two hollow connecting posts 304. The two connecting posts 304 are located on both sides of the rotating plate 302 and are symmetrically arranged. The upper end of the connecting post 304 is movably connected to the outer ring body 301, and the lower end of the connecting post 304 abuts against the upper edge of the barrel opening 101. The upper part of the connecting post 304 is provided with a connecting post opening 305. A first spring 306 is provided inside the connecting post 304. The upper end of the first spring 306 is connected to the outer ring body 301, and the lower end of the first spring 306 is connected to the inner bottom surface of the connecting post 304. When the barrel lid 2 is connected to the barrel body 1, the first spring 306 is compressed. Further, the connecting post opening 305 is symmetrically provided with upwardly extending ear plates 307. The upper part of the ear plates 307 is provided with an outwardly extending protrusion 308. The outer ring body 301 is provided with an insertion hole 309. The size of the protrusion 308 is larger than the size of the insertion hole 309. After the tongue 308 passes through the insertion hole 309 from bottom to top, it will lock onto the upper side of the insertion hole 309, thereby connecting the connecting post 304 to the lid 2. At this time, the ear plate 307 moves up and down within the insertion hole 309 to provide space for the deformation of the first spring 306. The rotating plate 302 has hinge protrusions 310 at both ends, and the outer ring body 301 has hinge holes 311 that cooperate with the hinge protrusions 310. The hinge protrusions 310 are rotatably connected within the hinge holes 311. The lower side of the rotating plate 302 is the operating part. By holding the rotating plate 302 from the operating part and rotating it around the hinge protrusions 310, the protrusion 303 can be engaged with or disengaged from the lower edge of the opening 101 of the barrel, making it more convenient to use. A positioning plate 312 is provided on the side of the rotating plate 302 opposite to the protruding plate 303. When the positioning plate 312 is engaged with the lower edge of the barrel opening 101, the positioning plate 312 abuts against the edge of the outer ring body 301. When the protruding plate 303 is engaged with the lower edge, the positioning plate 312 contacts the edge of the outer ring body 301, which can prevent the rotating plate 302 from rotating excessively. A protruding shaft 313 is provided at the lower end of the positioning plate 312. One end of the second spring 314 is sleeved on the protruding shaft 313. The other end of the second spring 314 abuts against the outside of the support cover 3. When the protruding plate 303 is engaged with the lower edge of the barrel opening 101, the second spring 314 is compressed. When the protruding plate 303 is released from the lower edge of the barrel opening 101, the second spring 314 is released. By setting a second spring 314, the second spring 314 can push the rotating plate 302 to open quickly after being released. This can prevent the rotating plate 302 from opening insufficiently and the convex plate 303 from still being stuck on the lower edge of the barrel opening 101, thus preventing the barrel lid 2 from popping up quickly.
[0051] Below the liquid filling chamber 202 is a brush bristle 222 that protrudes from the side wall of the cleaning port 201. The cleaning roller 223 is rotatably connected to the first support shaft 224, which is located on the edge of the cleaning port 201 opposite to the brush bristle 222. The cleaning roller 223 has a through hole 225 in the middle and is rotatably mounted on the first support shaft 224 through the through hole 225. When the flat mop head moves up and down, the cleaning roller 223 supports the flat mop head to move on the brush bristle 222 and rotates along with the up and down movement of the flat mop head. The support cover 3 is provided with a mounting groove 315. The bristles 222 are fixedly connected in the mounting groove 315 and extend out from the opening of the mounting groove 315. The two ends of the bristles 222 are bent towards the middle, so that the bristles 222 are C-shaped. When the flat mop head moves up and down between the bristles 222 and the cleaning roller 223, the sides and front of the flat mop head are surrounded by the bristles 222. Thus, the bristles 222 clean the lower surface and sides of the flat mop head and scrape off the dirt on the flat mop head, thereby achieving a comprehensive scraping and cleaning of the flat mop head.
[0052] The lid 2 also includes a wringer 4, within which the flat mop head can move up and down to wring out water and dry. The wringer 4 has two symmetrically arranged wringer rollers 401, which are mounted on a mounting bracket 402 located on the side wall of the wringer 4. Vertical slides 403 are symmetrically arranged on both sides of the mounting bracket 402, allowing the wringer rollers 401 to slide within them. The wringer rollers 401 provide support for the up-and-down movement of the flat mop head within the wringer 4. When the flat mop head moves downwards within the wringer 4, the wringer rollers 401 are at the lower end of the vertical slides 403, resulting in the greatest squeezing force on the flat mop head. When the flat mop head moves upwards, the wringer rollers 401 follow, moving to the upper end of the vertical slides 403, at which point the squeezing force on the flat mop head decreases, making it easier to remove the flat mop head. The wringing inlet 4 also includes a first wringing plate 404 and a second wringing plate 405 arranged opposite each other to wring out water from the flat mop head. A wringing roller 401 is positioned between the first wringing plate 404 and the second wringing plate 405, allowing the flat mop head to move up and down between the first wringing plate 404 and the wringing roller 401 and / or between the second wringing plate 405 and the wringing roller 401 for wringing out water. The distance from the wringing roller 401 to the first wringing plate 404 is greater than the distance from the wringing roller 401 to the second wringing plate 405. By setting two wringing plates at different distances, the squeezing force on the flat mop head varies, resulting in inconsistent moisture levels after wiping. This makes it suitable for wiping wooden floors and tiles, increasing its applicability and improving the user experience. The first wringer plate 404 is a hollow tubular structure, and its upper surface gradually slopes downward from the side away from the wringer roller 401 to the side closer to the wringer roller 401. The surface of the first wringer plate 404 near the wringer roller 401 is a vertical plane to wring water and dry the surface of the flat mop. In this way, the vertical plane serves as the scraping surface, and the edges serve as scraping edges, resulting in a better cleaning and scraping effect on the items wiped by the flat mop head. The second wringer plate 405 is integrally formed with the lid 2, which enhances stability.
[0053] The mop bucket 1 includes a cleaning area 102 and a wringing area 103. The cleaning area 102 corresponds to the cleaning port 201 for cleaning the flat mop head, and the wringing area 103 corresponds to the wringing port 4 for wiping the flat mop head dry. Drain outlets 104 are provided in both the cleaning area 102 and the wringing area 103 to discharge wastewater. The drain outlets 104 are located on the side wall of the bucket 1. The mop bucket also includes a handle 5 for easy movement; the handle 5 is rotatably connected to the bucket 1. A marking for drying wooden floors is provided on the support cover 3 corresponding to the first wringing plate 404, a marking for drying floor tiles is provided on the support cover 3 corresponding to the second wringing plate 405, and a marking for cleaning solution is provided on the support cover 3 corresponding to the liquid filling compartment opening 215. These markings make it easier for users to identify and use the product, improving the user experience.
[0054] The mop bucket provided by this utility model facilitates the addition of cleaning fluid. In use, the cleaning area 102 is filled with water, and the sealing plate protrusion 221 is pulled out of the filling hole 219 to add cleaning fluid to the filling chamber 202. After adding the fluid, the sealing plate protrusion 221 is reinserted into the filling hole 219. The flat mop head to be cleaned is inserted between the bristles 222 and the cleaning roller 223 in the cleaning inlet 201, and external force is used to move the flat mop head up and down. The wiping material on the flat mop head will squeeze the head 210 of the squeezing member 209, causing the cylindrical part of the squeezing member 209 to move towards the filling chamber 202. This, in turn, will cause the sealing ring 213 and the connecting frame 204 to move towards the filling chamber 202, compressing the compression spring 208. At this time, the seal of the seepage hole 203 is released, and the cleaning fluid will flow out through the cylindrical groove 214 onto the wiping material. After cleaning, pull out the flat mop head. The spring force of the compression spring 208 will cause the connecting bracket 204 and the sealing ring 213 to return to their original positions, and the squeezing part 209 will also return to its original position. The sealing ring 213 will seal the leakage hole 203, and the cleaning liquid will no longer flow out. Then, put the flat mop head into the wringer 4 and move it up and down. The first wringer 404 or the second wringer 405 will scrape and wring out the flat mop head. When it is necessary to clean the mop bucket, rotate the rotating plate 302 to make the convex plate 303 disengage from the lower edge of the bucket opening 101. At this time, the first spring 306 returns to its original deformation and pushes the bucket lid 2 to pop open from the bucket body 1. The spring force of the second spring 314 pushes the rotating plate 302 to open quickly, so as to avoid the convex plate 303 not disengaging completely, thus making it easy to remove the bucket lid 2 for cleaning. After cleaning the lid 2, place the lid 2 at the opening 101 of the bucket body and press it down so that the connecting post 304 presses against the upper edge and compresses the first spring 306. The protruding plate 303 then engages with the lower edge of the opening 101 of the bucket body, thus realizing the installation of the lid 2.
[0055] This utility model uses specific examples to illustrate its principles and implementation methods. The above description of the embodiments is only for the purpose of helping to understand the method and core idea of this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the idea of this utility model. In summary, the content of this specification should not be construed as a limitation of this utility model.
Claims
1. A mop bucket for easy addition of cleaning solution, comprising a bucket body, a bucket lid connected to the bucket body, and a cleaning inlet on the bucket lid, characterized in that: The cleaning port is provided with a liquid filling chamber for holding cleaning fluid. The side wall of the liquid filling chamber near the cleaning port is provided with a seepage hole. The liquid filling chamber is provided with a first elastic element, which is connected to a sealing component. The sealing component passes through the seepage hole and can seal the seepage hole. When the flat mop head is inserted into the cleaning port, the flat mop head squeezes the sealing component, and the first elastic element is compressed, which creates a gap between the sealing component and the seepage hole, and the cleaning fluid flows out through the gap.
2. The mop bucket for easy addition of cleaning solution according to claim 1, characterized in that: The liquid filling chamber is equipped with a connecting frame. The side of the connecting frame near the seepage hole is provided with a first protruding shaft, and the side of the connecting frame away from the seepage hole is provided with a second protruding shaft.
3. The mop bucket for easy addition of cleaning solution according to claim 2, characterized in that: The first elastic element is a compression spring, and the liquid filling chamber is also provided with a C-shaped abutment plate. One end of the compression spring is sleeved on the second protruding shaft, and the other end abuts against the abutment plate.
4. The mop bucket for easy addition of cleaning solution according to claim 2, characterized in that: The sealing assembly includes an extrusion member and a sealing ring. A connecting frame is connected to the extrusion member. The extrusion member includes a head and a cylindrical part. The head is located outside the liquid filling chamber. The cylindrical part passes through the leakage hole. The center of the cylindrical part has a cylindrical part through hole. A first protruding shaft is inserted into the cylindrical part through hole.
5. The mop bucket for easy addition of cleaning solution according to claim 4, characterized in that: A sealing ring is fitted onto the end of the cylindrical part. One side of the sealing ring abuts against the connecting frame, and the other side abuts against the side wall of the liquid filling chamber near the cleaning port. Several cylindrical grooves are evenly distributed circumferentially along the axial direction of the cylindrical part on the side wall of the cylindrical part.
6. The mop bucket for easy addition of cleaning solution according to claim 5, characterized in that: The liquid filling chamber is provided with a liquid filling chamber opening above it. The liquid filling chamber opening is closed by a cover plate. The cover plate is connected to a sealing plate. The cover plate is provided with a cover plate mounting hole and a liquid filling hole. The sealing plate is provided with a sealing plate protrusion and a sealing plate groove. The sealing plate protrusion is inserted into the cover plate mounting hole, and the sealing plate groove is inserted into the liquid filling hole.
7. The mop bucket for easy addition of cleaning solution according to claim 5, characterized in that: The cleaning port is provided with a cleaning part and a cleaning roller arranged opposite each other, and the liquid filling chamber is located on the edge of the cleaning port and above the cleaning part.
8. The mop bucket for adding cleaning solution according to any one of claims 1 to 7, characterized in that: The bucket lid includes a support cover, the outer periphery of which is connected to an outer ring body. A rotating plate is rotatably connected to the outer edges of opposite sides of the outer ring body. A horizontally arranged protruding plate is provided on the lower part of the rotating plate facing the mop bucket. The protruding plate can be engaged with the lower edge of the bucket opening.
9. The mop bucket for easy addition of cleaning solution according to claim 8, characterized in that: The inner side of the outer ring is connected to two hollow connecting posts, which are symmetrically arranged on both sides of the rotating plate. The upper end of the connecting post is movably connected to the outer ring, and the lower end of the connecting post abuts against the upper edge of the opening of the barrel. The upper part of the connecting post is provided with a connecting post opening, and a first spring is provided inside the connecting post. The upper end of the first spring is connected to the outer ring, and the lower end of the first spring is connected to the inner bottom surface of the connecting post.
10. The mop bucket for easy addition of cleaning solution according to claim 9, characterized in that: The connecting post has symmetrically arranged upward-extending ear plates at its opening, and an outward-extending protrusion at the upper part of the ear plate. The outer ring body has a socket, and the connecting post is connected to the outer ring body after passing through the socket through the protrusion. The ear plates can move up and down within the socket.
11. The mop bucket for easy addition of cleaning solution according to claim 10, characterized in that: The rotating plate has hinge protrusions at both ends, and the outer ring body has hinge holes that mate with the hinge protrusions.
12. The mop bucket for easy addition of cleaning solution according to claim 11, characterized in that: The rotating plate is also provided with a positioning plate, which is located at the end opposite to the convex plate. When the positioning plate is engaged with the lower edge of the barrel opening, the positioning plate abuts against the edge of the outer ring. The lower end of the positioning plate is provided with a protruding shaft, which is sleeved on one end of the second spring. The other end of the second spring abuts against the outside of the support cover. When the convex plate is engaged with the lower edge of the barrel opening, the second spring is compressed. When the convex plate is released from the lower edge of the barrel opening, the second spring is released.
13. The mop bucket for easy addition of cleaning solution according to any one of claims 1-7 and 9-12, characterized in that: The cleaning part is a brush bristle, which is located below the liquid filling chamber and protrudes from the side wall of the cleaning port. The support cover is provided with a mounting groove, and the brush bristle is fixedly connected in the mounting groove. The two ends of the brush bristle are bent towards the middle and the brush bristle extends out from the opening of the mounting groove.
14. The mop bucket for easy addition of cleaning solution according to claim 13, characterized in that: The cleaning roller is rotatably connected to a first support shaft, which is located on the edge of the cleaning port opposite to the bristles.
15. The mop bucket for easy addition of cleaning solution according to claim 14, characterized in that: The bucket lid also includes a squeezing spout, which is provided with a squeezing part and squeezing rollers; there are two squeezing rollers arranged symmetrically, and the squeezing rollers are mounted on a mounting frame, which is set on the side wall of the squeezing spout; vertical slides are symmetrically provided on both sides of the mounting frame, and the squeezing rollers can slide in the vertical slides.
16. The mop bucket for easy addition of cleaning solution according to claim 15, characterized in that: The wringing section includes a first wringing plate and a second wringing plate arranged opposite to each other, and the wringing roller is disposed between the first wringing plate and the second wringing plate, so that the flat mop head can move up and down between the first wringing plate and the wringing roller and / or the flat mop head can move up and down between the second wringing plate and the wringing roller to wring out water and dry the mop.
17. The mop bucket for easy addition of cleaning solution according to claim 16, characterized in that: The first wringer plate is a hollow tubular structure, and the upper surface of the first wringer plate gradually slopes downward from the side away from the wringer roller to the side closer to the wringer roller. The surface of the first wringer plate near the wringer roller is a vertical plane to wring water and dry the surface of the flat mop. The second wringer plate is integrally formed with the bucket lid.
18. A mop bucket for adding cleaning solution according to any one of claims 1 to 7 and 17, characterized in that: It also includes a handle, which is rotatably connected to the bucket body. The bucket body includes a cleaning area and a squeezing area. The cleaning area corresponds to the cleaning port, and the squeezing area corresponds to the squeezing port. Drain outlets are provided in the cleaning area and the squeezing area respectively, and the drain outlets are located on the side wall of the bucket body.