Water squeezing frame, mop bucket and mop

By designing an adjustable-width wringer, the problem of reduced wringing effect of hands-free mops during use was solved, enabling effective wringing and cleaning of materials of different thicknesses.

CN224070382UActive Publication Date: 2026-04-03XIAN AICHUANGJIA HELPER 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
2025-03-31
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing hands-free mops lose their wringing power after a period of use and cannot effectively cope with changes in the thickness of the material being wiped.

Method used

Design a wringer frame, including two frames with multiple mounting parts on the frames. The wringer blade cooperates with the mounting parts to form wringer channels of different widths. The wringer blade position can be adjusted to adapt to changes in the thickness of the wiping material.

Benefits of technology

It ensures the stability and efficiency of the wringing effect when the thickness of the wiping material changes, adapts to wiping materials of different thicknesses, and maintains good wringing performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cleaning supplies, and discloses a water squeezing frame, a mop bucket and a mop, the water squeezing frame is provided with a water squeezing scraper blade and an abutting part, and a water squeezing channel allowing a mop plate to be inserted is formed between the water squeezing scraper blade and the abutting part; the water squeezing scraping plate is used for scraping and / or squeezing a wiping object arranged on the bottom surface of the mop plate, and the abutting part is used for being supported on the top surface, opposite to the bottom surface, of the mop plate when the mop plate is inserted into the water squeezing channel; the water squeezing frame comprises two frame bodies, at least one of the two frame bodies is provided with a plurality of mounting parts in a splicing area, at least one part of the water squeezing scraper blade is clamped between the two frame bodies through the mounting parts, and when the water squeezing scraper blade is matched with different mounting parts in the mounting parts, the distances between the water squeezing scraper blade and the abutting part are different. And the widths of water squeezing channels formed by the water squeezing scraping plate and the abutting part are different.
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Description

Technical Field

[0001] This utility model relates to the field of cleaning products technology, specifically to a wringer, a mop bucket, and a mop. Background Technology

[0002] A mop generally refers to a cleaning product that uses a cleaning body on the mop head for mopping. To maintain the good performance of the cleaning body, it is necessary to wring out the water and clean it promptly before or after use. A hands-free mop has emerged in related technologies. This hands-free mop includes a mop handle and a mop head. The mop head has a cleaning body, and a movable operating part is connected to the mop handle. A wringing device is located at the lower end of the operating part. The mop head has two states: an extended state for mopping (normal use) and a retracted state for washing and wringing. The wringing process is as follows: In the retracted state, the mop head and mop handle are basically parallel. The user holds the operating part with one hand and the mop handle with the other. Moving both hands relative to each other causes the wringing holder to move relative to the mop handle, thus inserting the mop head into the wringing nozzle. Through the relative movement between the mop head and the wringing holder, the cleaning body of the mop head is squeezed dry.

[0003] The wiping material on the mop head of the hands-free mop with related technology is relatively thick at the beginning, but it gradually thins as the usage time increases, resulting in insufficient squeezing force of the wringer and a decrease in the wringing effect. Utility Model Content

[0004] In view of this, the present invention provides a wringer, a mop bucket, and a mop to solve the problem of reduced wringing effect of hands-free mops after a period of use in related technologies.

[0005] In a first aspect, this utility model provides a wringer, which is provided with a wringer scraper and a backing part, and a wringer channel is formed between the wringer scraper and the backing part for inserting a mop board; the wringer scraper is used to scrape and / or squeeze the wiping material provided on the bottom surface of the mop board, and the backing part is used to support the top surface of the mop board opposite to the bottom surface when the mop board is inserted into the wringer channel;

[0006] The dewatering frame includes two frames. At least one of the frames has multiple mounting parts in its joint area. At least a portion of the dewatering scraper is clamped between the two frames through the mounting parts. When the dewatering scraper is configured to cooperate with different mounting parts among the multiple mounting parts, the distance between the dewatering scraper and the abutment is different, resulting in different widths of the dewatering channel formed by the dewatering scraper and the abutment.

[0007] Beneficial effects: When cleaning a mop board, the mop board enters the wringing channel between the wringer and the abutment. The wringer scrapes and / or squeezes the wiping material on the bottom surface of the mop board, thereby cleaning away foreign matter adhering to the wiping material and / or squeezing out the water. Since the wringing frame includes two frames, at least one of the frames has multiple mounting parts in the joint area between the two frames. When the wringer is engaged with different mounting parts, the distance between the wringer and the abutment varies, resulting in different widths of the wringing channel formed by the wringer and the abutment. Therefore, the wringing channel can squeeze out water and clean wiping materials of different thicknesses. When the wiping material is first used and is relatively thick, the width of the wiping channel formed by the wiping scraper and the abutment can be increased by adjusting the position of the wiping scraper. After a period of use, the thickness of the wiping material becomes thinner, and the width of the wiping channel formed by the wiping scraper and the abutment can be reduced by adjusting the position of the wiping scraper, thereby ensuring the wiping effect.

[0008] In one optional implementation, the two frames are a first frame and a second frame;

[0009] The first frame has multiple mounting parts in its assembly area. The mounting side of the water-squeezing scraper is movably connected to the second frame. The scraping side of the water-squeezing scraper is configured to cooperate with the mounting parts. When the scraping side is configured to cooperate with different mounting parts among the multiple mounting parts, the distance between the scraping side and the abutment is different, which makes the width of the water-squeezing channel formed by the water-squeezing scraper and the abutment different.

[0010] Beneficial effects: The mounting side of the wringer is movably connected to the second frame, which facilitates the adjustment of the wringer's position. The wiping side of the wringer is set in conjunction with the mounting part, which can fix the wiping side of the wringer. When the wiping side is set in conjunction with different mounting parts among multiple mounting parts, the distance between the wiping side and the abutment part is different, which makes the width of the wringing channel formed by the wringer and the abutment part different. The width of the wringing channel can be adjusted by fixing the wiping side to different mounting parts, which can adapt to the wringing operation of wiping materials of different thicknesses.

[0011] In one optional embodiment, the plurality of mounting portions are formed as a plurality of slots in the splicing area of ​​the first frame, and when the wiper side engages with different slots among the plurality of slots, the distance between the wiper side and the abutment portion is different.

[0012] Beneficial effects: Multiple mounting parts form multiple slots in the splicing area of ​​the first frame. When the wiper side engages with different slots in the multiple slots, the distance between the wiper side and the abutment part is different. The structure of the mounting part is simple and it is easy to fix the wiper side.

[0013] In one optional embodiment, the splicing area of ​​the first frame is provided with a fan-shaped groove, and the plurality of slots are provided on the arc-shaped sidewall of the fan-shaped groove.

[0014] Beneficial effects: The first frame has a fan-shaped groove in the splicing area adjacent to the second frame. Multiple slots are set on the arc-shaped sidewall of the fan-shaped groove, which facilitates the processing of multiple slots. In addition, the end of the fan-shaped groove is small, so when the wiping side is located on the arc-shaped sidewall at the bottom of the fan-shaped groove, it is not easy to fall off upward.

[0015] In one optional embodiment, the dewatering channel includes a setting side where the dewatering scraper is located, an abutting side where the abutting part is located, and a constraint side adjacent to the setting side and the abutting side, respectively.

[0016] The first frame has a first sidewall corresponding to the constrained side, and the first sidewall is recessed in a direction away from the squeezing channel to form the fan-shaped groove and the plurality of slots.

[0017] Beneficial effects: The first frame has a first sidewall corresponding to the constraint side. The first sidewall is recessed in the direction away from the squeezing channel to form a fan-shaped groove and multiple slots. The fan-shaped groove and multiple slots do not occupy the space of the squeezing channel, which can make the contact area between the squeezing scraper and the wiping material larger and improve the squeezing effect.

[0018] In one optional embodiment, the first frame has a first opening communicating with the squeezing channel, and the four side walls of the first opening correspond to the setting side, the abutting side, and two opposing first side walls of the squeezing channel, respectively.

[0019] The first sidewall is provided with the fan-shaped groove and the plurality of slots near the edge of the second frame.

[0020] Beneficial effects: The first sidewall is provided with a fan-shaped groove and multiple slots near the edge of the second frame. Therefore, the fan-shaped groove has an opening facing the top of the second frame, which makes it easy for the two ends of the squeegee side of the wringer to enter the fan-shaped groove and be engaged in the slots through the top opening.

[0021] In one optional embodiment, the wringer is a plate-shaped member, which includes two opposing long sides. The side of the two long sides closer to the abutment is the wiping side, and the side farther from the abutment is the mounting side.

[0022] Beneficial effects: The long side of the plate-shaped part is both the wiping side and the mounting side, resulting in a larger contact area with the object being wiped, thus improving the wringing effect.

[0023] In one optional embodiment, a mounting post is provided on the wiping side extending away from the squeezing blade, and when the mounting post is configured to cooperate with different mounting parts among the plurality of mounting parts, the distance between the wiping side and the abutment part is different.

[0024] Beneficial effect: By providing mounting columns extending laterally away from the squeezing scraper, the mounting columns can be installed in conjunction with different mounting sections among multiple mounting sections, without occupying the space of the squeezing channel.

[0025] In one optional embodiment, the mounting side is rotatably connected to the second frame, and the wiping side rotates relative to the second frame when switching between the plurality of mounting parts.

[0026] Beneficial effects: The mounting side is rotatably connected to the second frame, and the connection position between the mounting side and the second frame remains unchanged. When it is necessary to adjust the distance between the wiper side and the abutment, the position of the wiper side is adjusted by rotating the mounting side. After the position is adjusted properly, the wiper side is engaged with the mounting part at the corresponding position to fix the position of the wiper side.

[0027] In one optional embodiment, a protruding post is provided on the mounting side in a direction away from the dewatering scraper, and a rotating groove is provided on the second frame, wherein the protruding post extends into the rotating groove and is in clearance fit with the rotating groove.

[0028] Beneficial effects: A protruding post is provided on the side of the squeegee that extends away from the squeezing squeegee. A rotating groove is provided on the second frame. The protruding post extends into the rotating groove and is fitted with the rotating groove with a clearance. The protruding post can rotate in the rotating groove, thereby making the mounting side rotatably connected to the second frame.

[0029] In one alternative implementation, the two frames are interlocked.

[0030] And / or, the dewatering rack includes a connector, and the two racks are fixedly connected by the connector after being assembled.

[0031] Beneficial effects: The two frames can be interlocked, making the connection between them simple and convenient; or, the two frames can be joined together and fixed with connectors, which can stably connect the two frames together.

[0032] In one alternative embodiment, each of the two frames is provided with a connecting hole and an elastic buckle, the elastic buckle being adapted to snap into the connecting hole so that the two frames are interlocked.

[0033] Beneficial effects: The two frames are interlocked by elastic buckles inserted into the connection holes, resulting in a simple structure and connection method.

[0034] In one alternative embodiment, one of the two frames is provided with two extending connecting arms, the elastic buckle being attached to the end of the connecting arms, and the other of the two frames is provided with a locking groove, the connecting hole being provided on the side wall of the locking groove, and the connecting arm being adapted to extend into the locking groove so that the elastic buckle is engaged in the connecting hole.

[0035] Beneficial effects: The connecting arm extends into the locking groove, and the connecting hole is located on the side wall of the locking groove. The elastic buckle is fastened into the connecting hole, and the connecting arm is not visible from the outside, making the appearance more aesthetically pleasing.

[0036] In one optional embodiment, the two frames each have a first through-hole and a second through-hole communicating with the squeezing channel. After the two frames are assembled, the first through-hole and the second through-hole are aligned to form a through hole through which the squeezing channel passes. The connector is fixedly connected to the outer wall of the through hole and is fixedly connected to the two frames respectively.

[0037] Beneficial effects: After the two frames are assembled, the first and second through holes are aligned to form a through hole, and the connector is fixedly connected to the outer wall of the through hole, which makes it easy for the connector to be fixedly connected to the two frames respectively.

[0038] In one optional embodiment, the first frame, which has the mounting part among the two frames, is provided with a cleaning component. After the first frame is detached from the other frame, the first frame is used to clean the wiping material of the mop board that is not inserted into the wringing channel.

[0039] Beneficial effect: By setting the cleaning component in the first frame, the first frame can still clean the mop board even after it is detached from the other frame of the two frames. Therefore, the first frame can be used independently.

[0040] In one alternative embodiment, the side wall of the second frame is provided with a gripping part.

[0041] Beneficial effect: By providing a grip on the side wall of the second frame, the user can easily hold the second frame to move it relative to the mop board, thereby squeezing out the water from the mop board.

[0042] Secondly, this utility model provides a mop bucket, comprising:

[0043] The barrel body has an open top.

[0044] The dewatering rack is located at the opening.

[0045] Beneficial effects: When cleaning the mop board using this mop bucket, the mop board enters the wringing channel between the wringer and the abutment. The wringer scrapes and / or squeezes the wiping material on the bottom surface of the mop board, thereby cleaning away foreign matter adhering to the wiping material and / or squeezing out the water. Since the wringing frame includes two frames, at least one of the frames has multiple mounting parts in the joint area between the two frames. When the wringer is engaged with different mounting parts, the distance between the wringer and the abutment varies, resulting in different widths of the wringing channel formed by the wringer and the abutment. Therefore, the wringing channel can squeeze out water and clean wiping materials of different thicknesses. When the wiping material is first used and is relatively thick, the width of the wiping channel formed by the wiping scraper and the abutment can be increased by adjusting the position of the wiping scraper. After a period of use, the thickness of the wiping material becomes thinner, and the width of the wiping channel formed by the wiping scraper and the abutment can be reduced by adjusting the position of the wiping scraper, thereby ensuring the wiping effect.

[0046] Thirdly, this utility model provides a mop, comprising:

[0047] Mop handle;

[0048] The wringer is slidably connected to the mop handle.

[0049] The mop handle is hinged to one end of the mop rod;

[0050] When the mop board is flipped to be parallel to the mop handle and the wringer slides along the axial direction of the mop handle, the mop board can be inserted into the wringer channel so that the wringer channel squeezes and cleans the wiping material disposed on the mop board.

[0051] Beneficial effects: When cleaning the mop board, first flip the mop board parallel to the mop handle, then slide the wringer along the axis of the mop handle. The mop board enters the wringing channel, which squeezes and cleans the wiped material from the mop board. Since the wringer consists of two frames, at least one of the frames has multiple mounting parts in the joint area. When the wringer blade is engaged with different mounting parts, the distance between the wringer blade and the abutment varies, resulting in different widths of the wringing channel formed by the wringer blade and the abutment. Therefore, the wringing channel can squeeze and clean wiped materials of varying thicknesses. When the wiped material is initially thick, the width of the wringing channel formed by the wringer blade and the abutment can be increased by adjusting the position of the wringer blade. After a period of use, as the wiped material becomes thinner, the width of the wringing channel formed by the wringer blade and the abutment can be decreased by adjusting the position of the wringer blade, thus ensuring effective wringing. Attached Figure Description

[0052] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0053] Figure 1 This is a schematic diagram of a mop according to an embodiment of the present utility model;

[0054] Figure 2 for Figure 1 Schematic diagram of the first frame Figure 1 ;

[0055] Figure 3 for Figure 1 Schematic diagram of the first frame Figure 2 ;

[0056] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0057] Figure 5 for Figure 1 Schematic diagram of the second frame Figure 1 ;

[0058] Figure 6 for Figure 1 Schematic diagram of the second frame Figure 2 ;

[0059] Figure 7 for Figure 1 Schematic diagram of the second frame Figure 3 ;

[0060] Figure 8 for Figure 7 Enlarged view of point B in the middle.

[0061] Explanation of reference numerals in the attached figures:

[0062] 1. First frame; 101. Slot; 102. Fan-shaped groove; 103. First side wall; 104. First through-hole; 105. Elastic buckle; 106. Connecting arm; 107. Cleaning component; 108. Through hole; 2. Second frame; 201. Squeezing scraper; 2011. Squeezing side; 2012. Mounting side; 2013. Mounting post; 2014. Protruding post; 202. Connecting hole; 203. Engaging groove; 204. Second through-hole; 205. Grip; 3. Mop handle; 4. Mop board; 5. Wiping material. Detailed Implementation

[0063] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0064] The following is combined Figures 1 to 8 The following describes embodiments of the present invention.

[0065] According to an embodiment of the present invention, a wringer is provided, which is provided with a wringer scraper 201 and a support portion, and a wringer channel for inserting a mop board 4 is formed between the wringer scraper 201 and the support portion; the wringer scraper 201 is used to scrape and / or squeeze the wiping material 5 provided on the bottom surface of the mop board 4, and the support portion is used to support the top surface of the mop board 4 opposite to the bottom surface when the mop board 4 is inserted into the wringer channel.

[0066] The dewatering rack includes two frames. At least one of the frames has multiple mounting parts in its joint area. At least a portion of the dewatering scraper 201 is clamped between the two frames through the mounting parts. When the dewatering scraper 201 is configured to cooperate with different mounting parts among the multiple mounting parts, the distance between the dewatering scraper 201 and the abutment is different, resulting in different widths of the dewatering channel formed by the dewatering scraper 201 and the abutment.

[0067] The splicing area refers to the edge corresponding to the splicing gap between one frame and another, and / or, the area where one frame abuts or is adjacent to another, and / or, the area where one frame overlaps with another. When the splicing area is the edge corresponding to the splicing gap between one frame and another, the mounting part can be set at that edge. When the splicing area is the area where one frame abuts or is adjacent to another, or when the splicing area is the area where one frame overlaps with another, the mounting part can be set within the splicing area, that is, the mounting part is located away from the edge of the frame.

[0068] Multiple mounting parts can be provided in the joint area of ​​each of the two frames, or in the joint area of ​​one of the two frames. For example, three mounting parts A, B, and C can be provided in the joint area of ​​the first frame, and two mounting parts D and E can be provided in the joint area of ​​the second frame. When one side of the dewatering scraper 201 is installed with mounting part D of the second frame, the other side can be installed with mounting parts A, B, and C of the first frame respectively, so as to form three different distances with the abutment. When one side of the dewatering scraper 201 is installed with mounting part E of the second frame, the other side can also be installed with mounting parts A, B, and C of the first frame respectively, so as to form three other different distances with the abutment.

[0069] Optionally, the two frames can be divided into a front shell of a dewatering frame and a rear shell with abutment, or the two frames can be divided into an upper shell and a lower shell.

[0070] It is understandable that the different mounting parts among the multiple mounting sections are positioned differently. For example, if two frames are divided into an upper shell and a lower shell, multiple mounting parts can be set at the edges corresponding to the splicing gap between the lower shell and the upper shell, and are arranged sequentially along the extension direction of the splicing gap. The distance between different mounting parts and the abutment is different. When one side of the dewatering scraper 201 is rotatably connected to the upper shell, and the other side of the dewatering scraper 201 is set in conjunction with different mounting parts among the multiple mounting sections, the distance between the dewatering scraper 201 and the abutment is different, resulting in different widths of the dewatering channel formed by the dewatering scraper 201 and the abutment.

[0071] In this embodiment, when cleaning the mop board 4, the mop board 4 is placed into the squeezing channel between the wringer 201 and the abutment. The wringer 201 scrapes and / or squeezes the wiping material 5 on the bottom surface of the mop board 4, thereby cleaning the foreign matter adhering to the wiping material 5 and / or squeezing out the water from the wiping material 5. Since the wringer includes two frames, at least one of the frames has multiple mounting parts in its joint area. When the wringer 201 is configured with different mounting parts, the distance between the wringer 201 and the abutment is different, resulting in different widths of the squeezing channel formed by the wringer 201 and the abutment. Therefore, the squeezing channel can squeeze out and clean wiping materials 5 of different thicknesses. When the wiping material 5 is first used, it is relatively thick. The distance between the wiping scraper 201 and the abutment can be increased by adjusting the wiping scraper 201 to cooperate with the mounting part further away from the abutment. This increases the width of the wiping channel formed by the wiping scraper 201 and the abutment. After a period of use, the thickness of the wiping material 5 becomes thinner. The distance between the wiping scraper 201 and the abutment can be reduced by adjusting the wiping scraper 201 to cooperate with the mounting part closer to the abutment. This reduces the width of the wiping channel formed by the wiping scraper 201 and the abutment, thus ensuring the wiping effect.

[0072] Specifically, when the squeezing scraper 201 is installed in conjunction with different mounting parts, it has different gears, and the width of the squeezing channel is different under different gears.

[0073] In one embodiment, the two frames are a first frame 1 and a second frame 2; the splicing area on the first frame 1 is provided with multiple mounting parts, the mounting side 2012 of the squeezing scraper 201 is movably connected to the second frame 2, the scraping side 2011 of the squeezing scraper 201 is configured to cooperate with the mounting parts, and when the scraping side 2011 is configured to cooperate with different mounting parts among the multiple mounting parts, the distance between the scraping side 2011 and the abutment is different, so that the width of the squeezing channel formed by the squeezing scraper 201 and the abutment is different.

[0074] The splicing area of ​​the first frame 1 can be the edge corresponding to the splicing gap between the first frame 1 and the second frame 2, and / or the area where the first frame 1 and the second frame 2 abut or are adjacent, and / or the area where the first frame 1 and the second frame 2 overlap.

[0075] In this embodiment, the mounting side 2012 of the wringer 201 is movably connected to the second frame 2, thereby facilitating the adjustment of the position of the wringer 201. The wiping side 2011 of the wringer 201 is configured to cooperate with the mounting part, which can fix the wiping side 2011 of the wringer 201. When the wiping side 2011 is configured to cooperate with different mounting parts among multiple mounting parts, the distance between the wiping side 2011 and the abutment part is different, so that the width of the wringing channel formed by the wringer 201 and the abutment part is different. The width of the wringing channel can be adjusted by fixing the wiping side 2011 to different mounting parts to adapt to the wringing operation of wiping materials 5 with different thicknesses.

[0076] It should be noted that the first frame 1 and the second frame 2 can be installed vertically or front-to-back. In this embodiment, vertical installation is preferred, as detailed below. Figure 1 As shown, the second frame 2 is located above the first frame 1. The mounting portion is located on the edge of the first frame 1 corresponding to the splicing gap of the second frame 2. That is, the splicing area of ​​the first frame 1 is the edge corresponding to the splicing gap of the second frame 2. These mounting portions are sequentially arranged along the extension direction of the splicing gap. One side of the squeezing scraper 201 has a rotating shaft. The second frame 2 has a shaft groove corresponding to the rotating shaft. The rotating shaft is embedded in the shaft groove so that the squeezing scraper 201 is rotatably connected to the second frame 2. The other side of the squeezing scraper 201 can cooperate with any mounting portion, such as a snap-fit ​​or plug-in fit, thereby forming squeezing channels of different widths.

[0077] In another embodiment not shown in the figure, the first frame 1 and the second frame 2 are spliced ​​together front and back. The first frame 1 is located at the front, and the mounting part is set at the edge of the first frame 1 corresponding to the splicing gap of the second frame 2. The plurality of mounting parts are arranged sequentially along the extension direction of the splicing gap. One side of the squeezing scraper 201 has a rotating shaft, and the first frame 1 is provided with a shaft groove corresponding to the rotating shaft. The rotating shaft is embedded in the shaft groove so that the squeezing scraper 201 is rotatably connected to the first frame. The other side of the squeezing scraper 201 can cooperate with any mounting part, such as a snap-fit ​​or plug-in fit, thereby forming squeezing channels of different widths.

[0078] In the above embodiments, one end of the dewatering scraper 201 is rotatably connected to a frame, and the other end cooperates with any mounting part, thus achieving positional adjustability of the dewatering scraper 201. It is understood that, besides this, other methods can also achieve positional adjustability of the dewatering scraper 201. For example, one end of the dewatering scraper has a T-shaped sliding part, and a frame is provided with a sliding groove that cooperates with the T-shaped sliding part. The T-shaped sliding part is slidably connected within the sliding groove. When the T-shaped sliding part slides along the sliding groove, the other end of the dewatering scraper 201 can move between different mounting parts and cooperate with any mounting part, thereby forming dewatering channels of different widths.

[0079] Optionally, the mounting part can be a fixed structure or limiting structure set on the first frame 1, such as a lock, buckle, hook, etc.

[0080] In one embodiment, multiple mounting parts are formed as multiple slots 101 provided in the splicing area of ​​the first frame 1. When the wiper side 2011 engages with different slots 101 among the multiple slots 101, the distance between the wiper side 2011 and the abutment part is different.

[0081] In this embodiment, multiple mounting parts are formed as multiple slots 101 provided in the splicing area of ​​the first frame 1. When the wiper side 2011 engages with different slots 101 among the multiple slots 101, the distance between the wiper side 2011 and the abutment part is different. The structure of the mounting part is simple and convenient for fixing the wiper side 2011.

[0082] Specifically, such as Figure 3 and Figure 4 As shown, the splicing area of ​​the first frame 1 is the edge corresponding to the splicing gap of the second frame 2. This splicing area has two slots 101, which can be formed by the edge being recessed away from the second frame 2, thus giving the wringer 201 two positions. Of course, this embodiment does not specifically limit the number of slots 101, and can set them according to actual needs.

[0083] Optionally, the shape of the slot 101 can be elongated or curved. A sealing element can also be provided in the mounting section. After the wiper side 2011 is engaged with the slot 101, the sealing element is used to prevent the wiper side 2011 from coming out of the slot 101.

[0084] In one embodiment not shown in the figure, the mounting part can be a protrusion, and the wiper side 2011 is provided with a connecting hole 202. The distance between the wiper side 2011 and the abutment part can be adjusted by making the connecting hole 202 engage with different protrusions.

[0085] In another embodiment not shown in the figure, the mounting part can be a hook, and the wiper side 2011 can be hung on the hook. The distance between the wiper side 2011 and the abutment part can be adjusted by hanging the wiper side 2011 on different hooks.

[0086] In one embodiment, such as Figure 3 and Figure 4The first frame 1 and the second frame 2 are assembled vertically. The assembly area of ​​the first frame 1 has a fan-shaped groove 102, and multiple slots 101 are provided on the arc-shaped sidewall of the fan-shaped groove 102. This assembly area is the edge corresponding to the assembly gap between the first frame 1 and the second frame 2, and the portion of the sidewall adjacent to this edge. The edge is recessed away from the second frame 2 to form the fan-shaped groove 102, and the arc-shaped sidewall of the fan-shaped groove 102 is recessed away from the second frame 2 to form multiple slots 101.

[0087] In another embodiment, the first frame 1 and the second frame 2 can also be spliced ​​together front and back.

[0088] In this embodiment, the splicing area of ​​the first frame 1 is provided with a fan-shaped groove 102, and multiple slots 101 are provided on the arc-shaped sidewall of the fan-shaped groove 102, which facilitates the processing of multiple slots 101. Furthermore, the end of the fan-shaped groove 102 is relatively small, so when the wiping side 2011 is located on the arc-shaped sidewall at the bottom of the fan-shaped groove 102, it is not easy to fall off upwards.

[0089] Optionally, the groove can also be U-shaped or other shapes, and the multiple slots 101 can also be set on the arc-shaped sidewall of the U-shaped groove.

[0090] In one embodiment, the dewatering channel includes a setting side where the dewatering scraper 201 is located, an abutment side where the abutment part is located, and a constraint side adjacent to the setting side and the abutment side, respectively. The first frame 1 has a first sidewall 103 corresponding to the constraint side, and the first sidewall 103 is recessed in a direction away from the dewatering channel to form a fan-shaped groove 102 and a plurality of slots 101.

[0091] In this embodiment, the first frame 1 has a first sidewall 103 corresponding to the constraint side, and the splicing area of ​​the first frame 1 is the part of the first sidewall 103 near the second frame 2. The first sidewall 103 is recessed in the direction away from the squeezing channel to form a fan-shaped groove 102 and multiple slots 101. The fan-shaped groove 102 and multiple slots 101 do not occupy the space of the squeezing channel, which can make the contact area between the squeezing scraper 201 and the wiping material 5 larger, thereby improving the squeezing effect.

[0092] In one embodiment, the first frame 1 has a first through-hole 104 communicating with the squeezing channel. The four side walls of the first through-hole 104 correspond to the setting side, the abutment side, and two opposing first side walls 103 of the squeezing channel, respectively. The first side wall 103 is provided with a fan-shaped groove 102 and a plurality of slots 101 near the edge of the second frame 2.

[0093] In this embodiment, the second frame 2 has a second through-hole 204 corresponding to the first through-hole 104. After the two frames are assembled, the first through-hole 104 and the second through-hole 204 are aligned to form a through hole for the squeezing channel to pass through. The four side walls of the second through-hole 204 are respectively provided corresponding to the four side walls of the first through-hole 104. The mounting side 2012 of the squeezing scraper 201 is movably mounted on two opposite side walls in the second through-hole 204. The first side wall 103 is provided with a fan-shaped groove 102 and a plurality of slots 101 near the edge of the second frame 2. The fan-shaped groove 102 has an opening facing the top of the second frame 2, which facilitates the two ends of the squeezing side 2011 of the squeezing scraper 201 to enter the fan-shaped groove 102 and be engaged in the slots 101 through the top opening.

[0094] In one embodiment, the wringer 201 is a plate-shaped member, which includes two opposing long sides. The side of the two long sides closer to the abutment is the wiping side 2011, and the side farther from the abutment is the mounting side 2012.

[0095] Optionally, the squeegee 201 can be made of plastic or metal. The squeegee side 2011 has a curved edge, which allows for smoother squeezing of the wiping material 5 and reduces damage to the wiping material 5.

[0096] In this embodiment, the two opposite long sides of the plate-shaped member are the wiping side 2011 and the mounting side 2012, respectively.

[0097] In one embodiment, the wiping side 2011 is provided with a mounting post 2013 extending away from the wiping scraper 201. When the mounting post 2013 is configured to cooperate with different mounting parts among a plurality of mounting parts, the distance between the wiping side 2011 and the abutment part is different.

[0098] In this embodiment, an installation post 2013 is provided extending from the scraper side 2011 away from the squeezing scraper 201. The installation post 2013 can be configured to cooperate with different installation parts among multiple installation parts without occupying the space of the squeezing channel.

[0099] In one specific embodiment, the mounting part includes a slot 101, and the mounting post 2013 can be embedded in the slot 101. When the mounting post 2013 is embedded in different slots 101, the distance between the wiper side 2011 and the abutment part is different.

[0100] The shape of the mounting post 2013 is adapted to the slot 101. For example, if the slot 101 is semi-circular, the shape of the mounting post 2013 can be cylindrical or semi-cylindrical.

[0101] In one embodiment, the mounting side 2012 is rotatably connected to the second frame 2, and when the wiper side 2011 is switched between multiple mounting parts, the mounting side 2012 rotates relative to the second frame 2.

[0102] In this embodiment, the mounting side 2012 is rotatably connected to the second frame 2, and the connection position between the mounting side 2012 and the second frame 2 remains unchanged. When it is necessary to adjust the distance between the wiper side 2011 and the abutment, the position of the wiper side 2011 is adjusted by rotating the mounting side 2012. After the position is adjusted appropriately, the wiper side 2011 is engaged with the mounting part at the corresponding position to fix the position of the wiper side 2011.

[0103] In one embodiment not shown in the figure, a sliding groove can be provided on the second frame 2, and the mounting side 2012 is rotatably connected to the sliding groove. The mounting side 2012 can both slide and rotate relative to the sliding groove. When the first frame 1 and the second frame 2 are installed vertically, the sliding groove is provided on two opposite side walls in the second through-hole 204 and extends in the vertical direction. When the first frame 1 and the second frame 2 are installed front to back, with the first frame 1 in front, the sliding groove is provided on two opposite side walls in the first frame 1 and extends in the vertical direction.

[0104] In another embodiment not shown in the figure, multiple snap-fit ​​parts can be provided on the second frame 2. When it is necessary to adjust the distance between the wiper side 2011 and the abutment part, the wiper side 2011 is first made to cooperate with the corresponding mounting part, and then the mounting side 2012 is snapped into the corresponding snap-fit ​​part of the second frame 2.

[0105] In one embodiment, the mounting side 2012 is provided with a protruding post 2014 extending away from the dewatering scraper 201, and the second frame 2 is provided with a rotating groove, the protruding post 2014 extending into the rotating groove and fitting with the rotating groove with a clearance.

[0106] In this embodiment, a protruding post 2014 is provided on the squeegee side 2011 extending away from the squeegee 201. A rotating groove is provided on the second frame 2. The protruding post 2014 extends into the rotating groove and is in clearance fit with the rotating groove. The protruding post 2014 can rotate in the rotating groove, thereby making the mounting side 2012 rotatably connected to the second frame 2.

[0107] In one embodiment not shown in the figure, rotating grooves can be provided on both sides of the wiper side 2011 to set the protruding post 2014 in the second frame 2.

[0108] In one embodiment, the two frames are interlocked; and / or, the wringer includes a connector, and the two frames are fixedly connected by the connector after being assembled.

[0109] In this embodiment, the two frames are interlocked, and the connection between the two frames is simple and convenient; or, the two frames can be assembled and fixedly connected by connectors, which can stably connect the two frames together.

[0110] It should be noted that the two frames can be connected by snap-fit ​​only. For example, one frame is equipped with a connecting plate that can extend from the outside of the other frame to the top of the entire frame and snap-fit ​​to the top. Alternatively, the two frames can be fixedly connected by connectors after being assembled. Or they can be fixedly connected by both snap-fit ​​and connectors.

[0111] In one embodiment, each of the two frames is provided with one of a connection hole 202 and an elastic buckle 105, the elastic buckle 105 being adapted to snap into the connection hole 202 so that the two frames can be interlocked.

[0112] In this embodiment, the two frames are interlocked by elastic buckles 105 that snap into the connecting holes 202, resulting in a simple structure and connection method.

[0113] In one specific embodiment, the connecting hole 202 is located on the second frame 2, and the elastic buckle 105 is located on the first frame 1. Of course, in an embodiment not shown in the figure, the connecting hole 202 can be located on the first frame 1, and the elastic buckle can be located on the second frame 2.

[0114] In one embodiment, one of the two frames is provided with two extending connecting arms 106, and an elastic buckle 105 is provided at the end of the connecting arm 106. The other of the two frames is provided with a locking groove 203, and a connecting hole 202 is provided on the side wall of the locking groove 203. The connecting arm 106 is adapted to extend into the locking groove 203 so that the elastic buckle 105 is engaged in the connecting hole 202.

[0115] In this embodiment, the connecting arm 106 extends into the engaging groove 203, the connecting hole 202 is provided on the side wall of the engaging groove 203, and the elastic buckle 105 is fastened into the connecting hole 202. The connecting arm 106 is not visible from the outside, making the appearance more aesthetically pleasing.

[0116] Specifically in one embodiment, such as Figure 7 and Figure 8 As shown, the second frame 2 is provided with a locking groove 203, and a connecting hole 202 is provided on the side wall of the locking groove 203.

[0117] In one embodiment, the two frames have a first through-hole 104 and a second through-hole 204 communicating with the squeezing channel. After the two frames are assembled, the first through-hole 104 and the second through-hole 204 are aligned to form a through hole through which the squeezing channel passes. The connector is fixedly connected to the outer wall of the through hole and is fixedly connected to the two frames respectively.

[0118] In this embodiment, after the two frames are assembled, the first through hole 104 and the second through hole 204 are aligned to form a through hole, and the connector is fixedly connected to the outer wall of the through hole, so that the connector can be fixedly connected to the two frames respectively.

[0119] In one specific embodiment, the squeezing channel is located in the through hole.

[0120] In one embodiment, the first frame 1, which has an installation part among the two frames, is provided with a cleaning component 107. After the first frame 1 is detached from the other frame among the two frames, the first frame 1 is used to clean the wiping material 5 of the mop board 4 that is not inserted into the wringing channel.

[0121] In this embodiment, by providing a cleaning component 107 to the first frame 1, the first frame 1 can still clean the wiping material 5 on the mop board 4 even after it is detached from the other frame of the two frames. Therefore, the first frame 1 can be used independently.

[0122] In one specific embodiment, the cleaning component 107 is a comb with multiple rows and columns of teeth.

[0123] In one embodiment, a cleaning component 107 may also be installed inside the second frame 2.

[0124] In one embodiment, the side wall of the second frame 2 is provided with a gripping part 205.

[0125] In this embodiment, by providing a gripping part 205 on the side wall of the second frame 2, the user can grip the second frame 2 to move the second frame 2 relative to the mop board 4, thereby squeezing out the water from the wiping material 5 on the mop board 4.

[0126] like Figure 2 As shown, the first frame 1 is provided with a through hole 108 for the mop handle 3 to pass through, and the mop handle 3 can pass through the through hole 108 and slide relative to the through hole 108.

[0127] According to an embodiment of the present invention, in a second aspect, a mop bucket is also provided, including a bucket body and a wringer provided in the above embodiment.

[0128] The top of the barrel is open, and the dewatering rack is located at the open.

[0129] In this embodiment, when cleaning the mop board 4 using the mop bucket, the mop board 4 enters the squeezing channel between the wringer 201 and the abutment. The wringer 201 scrapes and / or squeezes the wiping material 5 on the bottom surface of the mop board 4, thereby cleaning the foreign matter adhering to the wiping material 5 and / or squeezing out the water from the wiping material 5. Since the wringer includes two frames, at least one of the frames has multiple mounting parts in the joint area of ​​the two frames. When the wringer 201 is configured with different mounting parts, the distance between the wringer 201 and the abutment is different, resulting in different widths of the squeezing channel formed by the wringer 201 and the abutment. Therefore, the squeezing channel can squeeze out and clean wiping materials 5 of different thicknesses. When the wiping material 5 is first used, its thickness is relatively large. The width of the squeezing channel formed by the squeezing scraper 201 and the abutment can be increased by adjusting the position of the squeezing scraper 201. After a period of use, the thickness of the wiping material 5 becomes thinner. The width of the squeezing channel formed by the squeezing scraper 201 and the abutment can be reduced by adjusting the position of the squeezing scraper 201, thereby ensuring the squeezing effect.

[0130] According to an embodiment of the present invention, in a third aspect, a mop is also provided, including a mop handle 3, a wringer provided in the above embodiment, and a mop board 4.

[0131] The wringer is slidably connected to the mop handle 3; the mop plate 4 is hinged to one end of the mop handle 3; when the mop plate 4 is flipped to be parallel to the mop handle 3 and the wringer slides along the axial direction of the mop handle 3, the mop plate 4 can be inserted into the wringer channel so that the wringer channel squeezes and cleans the wiping material 5 set on the mop plate 4.

[0132] In this embodiment, when cleaning the mop board 4, the mop board 4 is first flipped so that it is parallel to the mop handle 3. Then, the wringer is slid along the axial direction of the mop handle 3, and the mop board 4 enters the wringer channel. The wringer channel squeezes and cleans the wiping material 5 on the mop board 4. Since the wringer includes two frames, at least one of the frames has multiple mounting parts in the joint area of ​​the two frames. When the wringer scraper 201 is configured to cooperate with different mounting parts, the distance between the wringer scraper 201 and the abutment is different, which makes the width of the wringer channel formed by the wringer scraper 201 and the abutment different. Therefore, the wringer channel can squeeze and clean wiping materials 5 of different thicknesses. When the wiping material 5 is first used, its thickness is relatively large. The width of the squeezing channel formed by the squeezing scraper 201 and the abutment can be increased by adjusting the position of the squeezing scraper 201. After a period of use, the thickness of the wiping material 5 becomes thinner. The width of the squeezing channel formed by the squeezing scraper 201 and the abutment can be reduced by adjusting the position of the squeezing scraper 201, thereby ensuring the squeezing effect.

[0133] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined in this application.

Claims

1. A dewatering rack characterized in that, The wringing frame is provided with a wringing scraper (201) and an abutting part, a wringing channel is formed between the wringing scraper (201) and the abutting part for inserting a mop plate (4); the wringing scraper (201) is used for scraping and / or pressing a wiping material (5) arranged on the bottom surface of the mop plate (4), and the abutting part is used for supporting the top surface of the mop plate (4) opposite to the bottom surface when the mop plate (4) is inserted into the wringing channel. The wringing frame comprises two frame bodies, at least one of the two frame bodies is provided with a plurality of mounting parts at the splicing area thereof, at least a part of the wringing scraper (201) is clamped between the two frame bodies through the mounting parts, and when the wringing scraper (201) is arranged in cooperation with different mounting parts of the plurality of mounting parts, the distance between the wringing scraper (201) and the abutting part is different, so that the width of the wringing channel formed by the wringing scraper (201) and the abutting part is different.

2. The skimming device according to claim 1, characterized in that The two frame bodies are a first frame body (1) and a second frame body (2). The splicing area of the first frame body (1) is provided with a plurality of mounting parts, the mounting side (2012) of the wringing scraper (201) is movably connected with the second frame body (2), the water scraping side (2011) of the wringing scraper (201) is arranged in cooperation with the mounting parts, and when the water scraping side (2011) is arranged in cooperation with different mounting parts of the plurality of mounting parts, the distance between the water scraping side (2011) and the abutting part is different, so that the width of the wringing channel formed by the wringing scraper (201) and the abutting part is different.

3. The skimming device according to claim 2, characterized in that The plurality of mounting parts are formed as a plurality of clamping grooves (101) arranged at the splicing area of the first frame body (1), and when the water scraping side (2011) is clamped with different clamping grooves (101) of the plurality of clamping grooves (101), the distance between the water scraping side (2011) and the abutting part is different.

4. The skimming device according to claim 3, characterized in that The splicing area of the first frame body (1) is provided with a fan-shaped recess (102), and the plurality of clamping grooves (101) are arranged on the arc-shaped side wall of the fan-shaped recess (102).

5. The skimming device according to claim 4, characterized in that The wringing channel comprises a setting side where the wringing scraper (201) is arranged, an abutting side where the abutting part is arranged, and a constraint side adjacent to the setting side and the abutting side, respectively; The first frame body (1) has a first side wall (103) corresponding to the constraint side, and the first side wall (103) is recessed in a direction away from the wringing channel to form the fan-shaped recess (102) and the plurality of clamping grooves (101).

6. The skimming device according to claim 5, characterized in that The first frame body (1) has a first through hole (104) communicating with the wringing channel, and four side walls of the first through hole (104) correspond to the setting side, the abutting side and two opposite first side walls (103) of the wringing channel, respectively. The edge of the first side wall (103) close to the second frame body (2) is provided with the fan-shaped recess (102) and the plurality of clamping grooves (101).

7. The strainer according to any one of claims 2 to 6, characterized in that The squeeze water scraping plate (201) is a plate-shaped member, which includes two opposite long side edges, one side of the two long side edges close to the abutting part is the water scraping side (2011), and the side away from the abutting part is the mounting side (2012).

8. The skimmer of claim 7, wherein, The water scraping side (2011) is provided with a mounting column (2013) extending away from the squeeze water scraping plate (201), when the mounting column (2013) is matched with different mounting parts of the plurality of mounting parts, the distance between the water scraping side (2011) and the abutting part is different.

9. The strainer according to any of claims 2 to 6, 8, characterized in that, The mounting side (2012) is rotationally connected with the second frame body (2), when the water scraping side (2011) is switched between the plurality of mounting parts, the mounting side (2012) rotates relative to the second frame body (2).

10. The skimming device according to claim 9, characterized in that The mounting side (2012) is provided with a convex column (2014) extending away from the squeeze water scraping plate (201), the second frame body (2) is provided with a rotation groove, the convex column (2014) extends into the rotation groove and is gap matched with the rotation groove.

11. The press according to any one of claims 1-6, 8, 10, characterized in that The two frame bodies are clamped with each other; And / or, the squeeze water frame includes a connecting piece, and the two frame bodies are fixedly connected through the connecting piece after being spliced.

12. The skimming device according to claim 11, characterized in that The two frame bodies are each provided with one of a connecting hole (202) and an elastic buckle (105), and the elastic buckle (105) is adapted to be buckled into the connecting hole (202) so that the two frame bodies are clamped with each other.

13. The skimming device according to claim 12, characterized in that One of the two frame bodies is provided with two extending connecting arms (106), the elastic buckle (105) is arranged at the end of the connecting arm (106), and the other of the two frame bodies is provided with a clamping groove (203), the connecting hole (202) is arranged on the side wall of the clamping groove (203), and the connecting arm (106) is adapted to extend into the clamping groove (203) so that the elastic buckle (105) is buckled into the connecting hole (202).

14. The skimming device of claim 12, wherein, The two frame bodies are respectively provided with a first through hole (104) and a second through hole (204) in communication with the squeeze water channel, the first through hole (104) and the second through hole (204) are aligned to form a through hole for the squeeze water channel to pass through after the two frame bodies are spliced, and the connecting piece is fixedly connected to the outer side wall of the through hole and is fixedly connected with the two frame bodies respectively.

15. The skimming device according to any of claims 1-6, 8, 10, 12-14, characterized in that The first frame body (1) provided with the mounting part of the two frame bodies is provided with a cleaning piece (107), and the first frame body (1) is used for cleaning the wiping material (5) of the mop plate (4) not inserted into the squeeze water channel after the first frame body (1) is separated from the other of the two frame bodies.

16. The press according to any of claims 2-6, 8, 10, characterized in that The side wall of the second frame body (2) is provided with a holding part (205).

17. A mop bucket, characterized in that Comprise: A bucket body, the top of the bucket body is open; The squeeze water frame according to any one of claims 1-16 is arranged at the opening.

18. A mop, characterized in that Comprise: A mop rod (3); The squeeze water frame according to any one of claims 1-16 is in sliding connection with the mop rod (3); A mop plate (4) is hingedly connected to one end of the mop rod (3); When the mop plate (4) is flipped to be parallel to the mop rod (3) and the wringing frame slides along the axial direction of the mop rod (3), the mop plate (4) can be inserted into the wringing channel so that the wringing channel squeezes and cleans the wiping material (5) arranged on the mop plate (4).