Cleaning plate structure and cleaning tool
By incorporating movable fasteners and flexible connectors into the cleaning tool, the problems of inconvenient cleaning pad replacement and squeegee interference are solved, enabling quick fixing and adaptive adjustment, thus improving cleaning efficiency and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 西安佳品创意设计有限公司
- Filing Date
- 2025-02-24
- Publication Date
- 2026-05-05
AI Technical Summary
Traditional cleaning tools have inconvenient cleaning pad replacements and poor compatibility, and the scraper structure interferes with the cloth clamping operation, affecting the user experience.
A cleaning plate structure is designed, employing movable fasteners and elastic connectors. The fasteners can detach from the cleaning plate body to secure the cleaning sheet, and when reset, they tightly adhere to the cleaning plate body, achieving rapid fixation and adaptive adjustment.
It enables quick replacement and stable fixation of cleaning pads, improving cleaning efficiency and user convenience. It is adaptable to cleaning pads of different thicknesses and materials, and avoids scratches interfering with the cloth clamping operation.
Smart Images

Figure CN224193429U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of daily necessities technology, and in particular to a cleaning board structure and cleaning tool. Background Technology
[0002] Traditional cleaning tools (such as mops and window cleaners) typically use fixed or disposable cleaning sheets, which suffer from inconvenience in replacement and poor adaptability. Existing technologies have implemented some improvements by using clamping structures or adhesives to fix the cleaning sheets, but these still have the following drawbacks: the clamping structure is fixed in position and the fixing device cannot be reset, affecting the cloth clamping operation; the lack of flexible connection design means that the cleaning sheet cannot adaptively adjust tension after installation, resulting in an uneven cleaning surface. Therefore, there is an urgent need for a cleaning board structure that can quickly fix the cleaning sheet, automatically reset, and has strong adaptability. Some mop boards are equipped with scraper structures, but the interference of these scraper structures makes the cloth clamping operation more cumbersome, affecting the user experience. Utility Model Content
[0003] This utility model provides a cleaning board structure and a cleaning tool to solve the problem of inconvenient operation when changing the cleaning pad of a mop cleaning board in the prior art.
[0004] This utility model provides a cleaning board structure, including:
[0005] Clean the board;
[0006] The fastener is movably mounted on the cleaning plate body via a connector. It has a fixed position that can be detached from the cleaning plate body to fix the cleaning sheet, and a working position that abuts or is fixed to the cleaning plate body after the fixing operation is completed. When the fastener is in the working position, the cleaning sheet is placed on the cleaning plate body to facilitate cleaning of the surface to be cleaned. Beneficial effects
[0007] The overall design of the cleaning plate structure fully considers the user's operating habits and actual needs. For example, the design of the fasteners and connectors allows users to easily replace the cleaning plate without using additional tools.
[0008] In some embodiments, the fixing member includes a clamping member for clamping the edge of the cleaning sheet in a fixed position detached from the cleaning plate body, such that when the clamping member returns to the working position, the cleaning sheet covers the bottom of the cleaning plate body.
[0009] In some implementations, the clamping member is a dual-arm clamping member.
[0010] Beneficial effects: The bottom of the clamping part is connected to the cleaning plate body through a connector. The connector adopts an elastic design, which allows the clamping part to flexibly switch between a fixed position and a working position.
[0011] In the fixed position, the clamping element detaches from the cleaning plate, allowing the user to insert the edge of the cleaning sheet between the clamping arms, which then hold the sheet in place using the elastic force of the arms. In the working position, the clamping element returns to its original position, abutting or securing itself against the cleaning plate, ensuring the cleaning sheet fits snugly against the bottom of the plate. The clamping element's double-arm design ensures stability and reliability, making it suitable for cleaning sheets of various thicknesses.
[0012] In some embodiments, the fastener includes Velcro, which is used to attach and secure the cleaning sheet to another Velcro located at the edge of the cleaning sheet at the fixed position away from the cleaning plate body, such that when the fastener is returned to the working position, the cleaning sheet covers the bottom of the cleaning plate body.
[0013] And / or, the fastener includes one of the snap fasteners, which is used to engage with the other of the snap fasteners located at the edge of the cleaning sheet in a fixed position away from the cleaning plate body, such that when the fastener is returned to the working position, the cleaning sheet covers the bottom of the cleaning plate body.
[0014] Beneficial effects: The Velcro design offers advantages such as ease of use and secure fastening, making it especially suitable for applications requiring frequent cleaning pad changes. Furthermore, the Velcro material boasts excellent water and abrasion resistance, adapting to various cleaning environments. And / or, the snap fastener design offers the advantages of ease of use and secure fastening, particularly suitable for applications requiring high fixation strength. Snap fasteners are typically made of high-strength plastic or metal, offering good durability and corrosion resistance.
[0015] In some embodiments, the cleaning plate structure includes two fasteners. When the two fasteners are in the fixed position, they are used to fix the cleaning plate to the opposite two side edges respectively. When both fasteners are in the working position, they are respectively disposed on opposite sides of the cleaning plate body, so that the cleaning plate covers the bottom of the cleaning plate body.
[0016] Beneficial effects: In this embodiment, the cleaning plate structure includes two fasteners, located on both sides of the cleaning plate body. When in the fixed position, the two fasteners are used to fix the cleaning sheet to the opposite edges of the cleaning plate. In the working position, they are positioned on opposite sides of the cleaning plate body, allowing the cleaning sheet to cover the bottom of the cleaning plate body. This design not only improves the fixing effect of the cleaning sheet, making it more stable, but also ensures a tight fit between the cleaning sheet and the surface to be cleaned.
[0017] In some embodiments, the connector is an elastic member, with its two ends connected to two fixing members respectively, and the two ends of the elastic member connected to the cleaning plate body.
[0018] Beneficial effects: It can detach the fastener from the cleaning plate for cloth clamping, and automatically reset after the cloth clamping operation is completed, making it easy to operate.
[0019] In some embodiments, the elastic element is an elastic band, the cleaning plate is provided with a connecting hole, the elastic band passes through the connecting hole and its two ends are respectively connected to two fixing elements.
[0020] Beneficial effects: It can be installed through the connection holes, has a simple structure, and is easy to install.
[0021] In some embodiments, the elastic band has limiting flanges at both ends, and the fixing member has a groove. The elastic band passes through the groove from the side of the fixing member close to the cleaning plate, so that the limiting flange is limited to the side of the groove away from the cleaning plate.
[0022] Beneficial effects: The elastic band design offers advantages such as ease of operation and good reset effect, making it especially suitable for applications requiring frequent replacement of cleaning pads. Furthermore, the elastic band can have limiting flanges at both ends, and the fixing component has a groove. The elastic band passes through the groove from the side of the fixing component closest to the cleaning plate, causing the limiting flanges to be positioned on the side of the groove furthest from the cleaning plate. This design not only simplifies the installation process but also improves the stability of the connection. Once the cleaning pad is fixed, it can maintain continuous tension, facilitating the cleaning of surfaces.
[0023] In some implementations, the connector is an elastic element; when the fixing element detaches from the cleaning plate and moves to a fixed position, the elastic element stores force; the elastic element releases force and drives the fixing element to return to the working position, thus enabling automatic reset and convenient use.
[0024] A cleaning tool includes: a cleaning rod and the aforementioned cleaning plate structure;
[0025] The end of the cleaning rod is hinged to the top of the cleaning plate body included in the cleaning plate body structure. When the fixing member included in the cleaning plate body structure is in the working position, the cleaning plate is disposed at the bottom of the cleaning plate body to facilitate cleaning of the surface to be cleaned. Beneficial effects
[0026] 1. This solution uses a detachable cleaning plate to fix the cleaning pad in a fixed position.
[0027] The cleaning pad is easy to replace. When replacing the cleaning pad, simply remove the fixing piece and detach it from the cleaning plate body to clamp the cloth, which simplifies the cloth clamping operation.
[0028] 2. The connector in this solution is an elastic component. After clamping the cleaning sheet, it can keep the cleaning sheet in a taut state for easy wiping.
[0029] 3. This solution uses elastic elements to connect the fixing elements. After the fixing elements fix the cleaning sheet, they can automatically reset, making operation convenient. Attached Figure Description
[0030] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the 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.
[0031] Figure 1 This is a schematic diagram of the cleaning plate structure provided by this utility model;
[0032] Figure 2 This is an exploded structural diagram of the cleaning plate structure provided by this utility model;
[0033] Figure 3 This is a structural diagram of the cleaning tool and cleaning plate structure provided by this utility model.
[0034] Figure label:
[0035] 1: Cleaning plate; 2: Cleaning disc; 3: Fixing element; 31: Groove; 4: Mounting base; 41: Through groove; 5: Connecting element; 51: Flange; 6: Scraper; 7: Cleaning rod; 71: Connecting head. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions 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 scope of protection of this utility model.
[0037] The following is combined Figures 1-3 Describe the structure of the cleaning plate of this utility model.
[0038] See Figure 1-3 This utility model provides a cleaning board structure, comprising:
[0039] Clean panel 1;
[0040] The fixing member 3 is movably disposed on the cleaning plate 1 via the connecting member 5. It has a fixed position that can be detached from the cleaning plate 1 to fix the cleaning sheet 2, and a working position that abuts or is fixed to the cleaning plate 1 after the fixing operation is completed. When the fixing member 3 is in the working position, the cleaning sheet 2 is disposed on the cleaning plate 1 so as to facilitate cleaning of the surface to be cleaned.
[0041] In this embodiment, the cleaning plate 1 serves as the main body of the cleaning tool. Its surface is typically designed to be flat and rigid to facilitate the support of the cleaning pad 2 and the effective cleaning of the surface to be cleaned. The cleaning plate 1 can be made of plastic, metal, or composite materials, depending on the requirements of the cleaning scenario. For example, a plastic cleaning plate 1 is more suitable for situations requiring lightweight operation, while metal or composite materials are more appropriate for situations requiring higher durability.
[0042] In this embodiment, the fixing member 3 is movably mounted on the cleaning plate 1 via the connecting member 5. Its function is to fix the cleaning sheet 2 to the cleaning plate 1 and maintain stability during the cleaning process. The fixing member 3 is designed with two main positions: a fixed position and a working position. In the fixed position, the fixing member 3 can be detached from the cleaning plate 1, and the user can fix the cleaning part to the fixing member 3 in the fixed position, at which time the cleaning sheet 2 is away from the cleaning plate 1. When the fixing member 3 returns to the working position, it can drive the cleaning sheet 2 to move, so that the cleaning sheet 2 moves from a position away from the cleaning plate 1 to a position that abuts against and covers the cleaning plate 1. In this way, when installing the cleaning pad 2 onto the cleaning plate 1, the user does not need to be close to the cleaning plate 1. They only need to operate the fixing member 3 to detach it from the cleaning plate 1 and move it to a position convenient for fixing the cleaning pad 2. This position is the fixing position of the fixing member 3. After fixing the cleaning pad 2 in this position, the fixing member can return to its working position abutting against the cleaning plate 1. Specifically, the user can operate the fixing member 3 to return it to the working position, or the fixing member 3 can be returned to the working position via the connecting member 5, allowing the cleaning pad 2 to be installed onto the cleaning plate 1. This facilitates the user's use of the cleaning plate 1 and the cleaning pad 2 to clean the surface to be cleaned, such as a floor, wall, or glass surface. The fixing member 3 can be in the form of a clamp, snap fastener, or Velcro. The clamp typically consists of two opposing clamping arms, with a spring or elastic material providing clamping force to ensure that the cleaning pad 2 does not fall off during cleaning. Snap fasteners use a tongue-and-groove structure for fixation, making operation simple and secure. Velcro, on the other hand, utilizes the adhesive properties of its hook and loop sides, making it suitable for situations where frequent replacement of the cleaning pad 2 is required.
[0043] In this embodiment, the connecting member 5 enables the fixing member 3 to flexibly switch between a fixed position and a working position. The connecting member 5 can be an elastic element, a guide rail, or other object that can move the fixing member 3. The elastic element is typically made of spring or elastic rubber material, and can automatically return to the working position after the fixing member 3 detaches from the cleaning plate 1. The guide rail allows the fixing member 3 to move along a predetermined path by sliding or rotating, ensuring smooth switching between the fixed and working positions. Furthermore, the connecting member 5 can also be designed to be adjustable, allowing the user to fine-tune it according to the size and thickness of the cleaning plate 2 to ensure a secure fit.
[0044] Furthermore, when the fixing member 3 is in the working position, it abuts against or is fixed to the cleaning plate 1, so that the cleaning sheet 2 is tightly attached to the surface of the cleaning plate 1. This design not only ensures the stability of the cleaning sheet 2 during the cleaning process, but also improves cleaning efficiency. The cleaning sheet 2 can be made of different materials and thicknesses as needed to adapt to different cleaning tasks. For example, for occasions requiring higher cleaning power, a thicker cleaning sheet 2 can be selected; while for occasions requiring fine cleaning, a thinner cleaning sheet 2 can be selected.
[0045] Furthermore, the edges of the cleaning plate 1 are rounded to avoid scratching the surface to be cleaned during the cleaning process.
[0046] This embodiment, through the ingenious design of the fixing component 3 and the connecting component 5, achieves quick fixing and flexible switching between the cleaning plate 2 and the cleaning board body 1, improving the practicality and convenience of the cleaning tool. At the same time, the diverse options for the fixing component 3 and the connecting component 5 provide users with greater operational flexibility, meeting the needs of different cleaning scenarios.
[0047] In this embodiment, the fixing member 3 adopts a clamping design. The main function of the clamping member is to clamp the edge of the cleaning sheet 2 in the fixed position after it is detached from the cleaning plate 1, and to tightly cover the bottom of the cleaning plate 1 with the cleaning sheet 2 when it is reset to the working position. The clamping member is designed as a double-arm clamping structure. This structure not only ensures the stability and reliability of clamping, but also improves the convenience of user operation. The clamping member consists of two symmetrical clamping arms. The inner side of the clamping arms is provided with anti-slip teeth to increase the friction during clamping and prevent the cleaning sheet 2 from falling off during cleaning. The outer side of the clamping arms is designed as a smooth curved surface to avoid scratching the user's hands or the surface to be cleaned during operation. The bottom of the clamping arms is connected to the cleaning plate 1 through a connector 5. The connector 5 adopts an elastic design, which allows the clamping member to flexibly switch between the fixed position and the working position.
[0048] In this embodiment, Velcro, a common fastening method, is also applied to the cleaning board structure. The fastener 3 includes a hook side of the Velcro, while the edge of the cleaning sheet 2 has a matching rough side. In the fixed position, the user can attach and fix the rough side of the cleaning sheet 2 to the hook side of the fastener 3. In the working position, the fastener 3 returns to its original position to abut or fix against the cleaning board body 1, so that the cleaning sheet 2 covers the bottom of the cleaning board body 1.
[0049] In this embodiment, a snap fastener is another common fixing method, which is also used in the cleaning plate structure. The fastener 3 includes one part of the snap fastener (e.g., a protruding snap), while the edge of the cleaning plate 2 has a matching part (e.g., a recessed snap). In the fixed position, the user can fasten the recessed snap of the cleaning plate 2 to the protruding snap of the fastener 3. In the working position, the fastener 3 returns to its original position to abut or fix against the cleaning plate body 1, so that the cleaning plate 2 covers the bottom of the cleaning plate body 1.
[0050] In this embodiment, the cleaning plate structure includes two fixing members 3. When the two fixing members 3 are in the fixed position, they are used to fix the cleaning sheet 2 to the opposite side edges. When both fixing members 3 are in the working position, they are respectively set on opposite sides of the cleaning plate body 1, so that the cleaning sheet 2 covers the bottom of the cleaning plate body 1. This design, through the symmetrically distributed fixing members 3, ensures that the cleaning sheet 2 is evenly covered and firmly fixed on the cleaning plate body 1, thereby improving the cleaning effect and operational stability. The number of fixing members 3 can be adjusted according to actual needs. For example, in some embodiments, there can be four fixing members 3, located at the four corners of the cleaning plate body 1. This four-corner fixing design further enhances the fixing effect of the cleaning sheet 2, especially when the cleaning sheet 2 has a large area or the cleaning task is heavy, effectively preventing the cleaning sheet 2 from shifting or falling off during the cleaning process.
[0051] In this embodiment, the structural design of the fasteners 3 fully considers both functionality and operability. Each fastener 3 is movably connected to the cleaning plate 1 via a connector 5. In the fixed position, the fastener 3 is detached from the cleaning plate 1, and the user can insert the edge of the cleaning sheet 2 into the fastener 3, fixing the cleaning sheet 2 by the clamping or adhesive force of the fastener 3. In the working position, the fastener 3 returns to its original position to abut or fix against the cleaning plate 1, ensuring that the cleaning sheet 2 fits tightly against the bottom of the cleaning plate 1. The symmetrical distribution design of the fasteners 3 not only ensures uniform force on the cleaning sheet 2 but also allows the cleaning sheet 2 to better adhere to the surface to be cleaned during the cleaning process, improving cleaning efficiency.
[0052] In this embodiment, the structural design of the cleaning plate 1 also fully considers the layout and functional implementation of the fasteners 3. The cleaning plate 1 has connection points on both sides or at its four corners that match the fasteners 3. The positions of these connection points are precisely calculated and optimized to ensure that the fasteners 3 do not interfere with or get stuck on the cleaning plate 1 during operation. The edges of the cleaning plate 1 are rounded to prevent scratching the surface to be cleaned during the cleaning process.
[0053] In this embodiment, the surface of the fastener 3 is treated with an anti-slip coating to increase friction with the cleaning sheet 2, ensuring that the cleaning sheet 2 will not fall off during the cleaning process. The clamping force or adhesive force of the fastener 3 can be adjusted according to the thickness and material of the cleaning sheet 2 to adapt to different cleaning needs. For example, for a thicker cleaning sheet 2, the clamping force of the fastener 3 can be appropriately increased to ensure a secure hold; for a thinner cleaning sheet 2, the clamping force of the fastener 3 can be appropriately reduced to avoid damaging the cleaning sheet 2.
[0054] In this embodiment, this structural design not only enables rapid fixing and flexible switching of the cleaning pad 2, but also improves the overall stability and ease of operation of the cleaning tool. The symmetrical distribution and four-corner fixing design of the fixing members 3 further enhance the fixing effect of the cleaning pad 2, ensuring its stability and reliability during the cleaning process. This design performs excellently in practical applications, significantly improving cleaning efficiency and user experience, and meeting the needs of users in different cleaning scenarios.
[0055] In this embodiment, the connector 5 is an elastic element, which can take various forms, such as an elastic band, a spring, or a slide rail. A spring is a common form of connector 5, with its two ends connected to the fixing element 3 and the cleaning plate 1, respectively. The spring is made of high-strength stainless steel, possessing good elasticity and durability. In the fixed position, the user can detach the fixing element 3 from the cleaning plate 1 and stretch the spring to clamp the cleaning sheet 2. In the working position, the spring automatically retracts, causing the fixing element 3 to return to its original position and abut against or be fixed to the cleaning plate 1.
[0056] Furthermore, an elastic band is also a common form of connector 5, with its two ends connected to two fixing members 3 respectively, and the middle part passing through the connecting hole on the cleaning plate 1. The elastic band is made of high-elasticity rubber or polyurethane, which has good tensile properties and durability. In the fixed position, the user can detach the fixing member 3 from the cleaning plate 1 and stretch the elastic band to clamp the cleaning sheet 2. In the working position, the elastic band automatically retracts, causing the fixing member 3 to return to its original position and abut or fix against the cleaning plate 1.
[0057] Furthermore, the guide rail is another form of the connector 5, which allows the fixing member 3 to move along a predetermined path by sliding or rotating. The guide rail is made of high-strength plastic or metal, with good wear resistance and corrosion resistance. In the fixed position, the user can slide or rotate the fixing member 3 along the guide rail to a position detached from the cleaning plate 1 to hold the cleaning sheet 2. In the working position, the fixing member 3 slides or rotates along the guide rail back to abut or fix itself against the cleaning plate 1.
[0058] In this embodiment, the elastic band has limiting flanges 51 at both ends, and the fixing member 3 has a groove 31. The elastic band passes through the groove 31 from the side of the fixing member 3 closest to the cleaning plate 1, so that the limiting flanges 51 are limited to the side of the groove 31 away from the cleaning plate 1. This design achieves a quick connection between the elastic band and the fixing member 3 through the flange mounting structure, and the installation process is simple and convenient. The design of the limiting flanges 51 ensures that the elastic band can be firmly fixed in the groove 31 after installation, preventing the elastic band from falling off or shifting during use. The size of the groove 31 matches the size of the limiting flanges 51, ensuring that the elastic band can fit tightly against the fixing member 3 after passing through the groove 31. At the same time, the limiting flanges 51 form an effective limiting effect on the outside of the groove 31, preventing the elastic band from slipping out of the groove 31. This structure not only simplifies the installation steps but also improves the stability and reliability of the connection.
[0059] Furthermore, the elastic band is typically made of highly elastic rubber or polyurethane, offering excellent tensile strength and durability. The two ends of the elastic band are connected to the fixing member 3 via limiting flanges 51, allowing the fixing member 3 to be easily stretched when detached from the cleaning plate 1 and automatically returning to its working position after the cloth clamping operation is complete. The design of the limiting flanges 51 also eliminates the need for additional tools or complex procedures during installation; the user simply passes both ends of the elastic band through the slots 31 on the fixing member 3 to complete the installation. This design is particularly suitable for scenarios requiring frequent replacement of the cleaning pad 2, significantly improving user efficiency.
[0060] Furthermore, the design of the slot 31 also considers the stress distribution of the elastic band, ensuring that the elastic band is subjected to uniform force during stretching and resetting, avoiding damage caused by localized stress concentration. A smooth contact is formed with the edge of the slot 31, reducing frictional loss and extending the service life of the elastic band. The position of the slot 31 on the fastener 3 is optimized so that the elastic band remains parallel to the cleaning plate 1 after installation, ensuring that the fastener 3 will not shift or jam during movement. This design not only improves the overall stability of the cleaning plate structure but also provides users with a smoother operating experience.
[0061] Furthermore, this flange mounting structure ensures a more secure connection between the elastic band and the fastener 3, and the installation process is simple and quick, allowing users to easily complete the operation without requiring professional knowledge. This design performs excellently in practical applications, effectively improving the ease of use and reliability of cleaning tools and meeting users' needs in various cleaning scenarios.
[0062] In this embodiment, a mounting base 4 is also provided on the cleaning plate 1 for mounting the elastic band. The structural design of the mounting base 4 fully considers the fixing and movement requirements of the elastic band, ensuring that the elastic band can function stably during the cleaning process, while also facilitating user operation and maintenance. The mounting base 4 includes two vertically erected mounting plates, each with a through groove 41 through which the elastic band passes and can move. A connecting plate connects the two vertical mounting plates, providing reinforcement and ensuring the overall stability and durability of the mounting base 4.
[0063] Furthermore, the groove 41 is sized to accommodate the width of the elastic band while allowing sufficient room for movement, ensuring smooth movement of the elastic band within it. The design of the groove 41 is a crucial part of the mounting base 4; its dimensions and shape are precisely calculated to ensure the elastic band can pass smoothly through and move within it. The width of the groove 41 is typically slightly larger than the width of the elastic band to ensure free movement within it and prevent jamming. The length of the groove 41 is designed according to the elastic band's range of motion to ensure sufficient movement between the fixed and working positions. The edges of the groove 41 are rounded to prevent wear during the elastic band's movement.
[0064] Furthermore, the flange design is used to limit the ends of the elastic band, ensuring that the elastic band does not detach from the groove 41 during operation. The flange is typically located at both ends of the elastic band, and its diameter is slightly larger than the width of the groove 41 to ensure that the flange can be effectively limited to the outside of the groove 41. The flange is usually made of the same material as the elastic band, such as high-elasticity rubber or polyurethane, which has good elasticity and durability. The flange is typically circular or elliptical in shape, forming a smooth contact with the edge of the groove 41, reducing frictional loss and extending the service life of the elastic band.
[0065] Furthermore, the connecting plate is designed to reinforce the two vertical mounting plates, ensuring the overall stability and durability of the mounting base 4. The connecting plate is typically made of the same material as the mounting plate, and the connecting plate and mounting plate are a single integrated structure, ensuring a strong and reliable connection between them.
[0066] In practical use, the design of mounting base 4 fully considers the user's ease of operation and maintenance needs. For example, the user can easily pass the elastic band through the slot 41 and fix it to the mounting base 4 without using additional tools. The disassembly and replacement of mounting base 4 has also been optimized, allowing users to easily remove mounting base 4 for cleaning or replacement as needed. In addition, the structural design of mounting base 4 also considers the overall aesthetics of the cleaning plate 1, ensuring that the appearance of mounting base 4 is consistent with that of the cleaning plate 1.
[0067] Through this structural design, mounting base 4 not only achieves stable fixation and flexible movement of the elastic band, but also improves the overall stability and ease of operation of the cleaning tool. The design of mounting base 4 fully considers the functional requirements of the elastic band and the user's operating habits, ensuring that the elastic band functions stably during cleaning, while also facilitating user operation and maintenance. This design performs excellently in practical applications, significantly improving cleaning efficiency and user experience, and meeting the needs of users in different cleaning scenarios.
[0068] In this embodiment, the connector 5 adopts an elastic element design. When the fixing member 3 detaches from the cleaning plate 1 and moves to a fixed position, the elastic element stores force. After the fixing member 3 completes the cloth clamping operation, the elastic element releases force and drives the fixing member 3 to automatically reset to the working position. This design achieves the automatic reset function of the fixing member 3 through the force storage and release mechanism of the elastic element, significantly improving the user's ease of operation. The elastic element is usually made of highly elastic materials, such as springs or elastic bands, which have good tensile properties and durability. When the fixing member 3 detaches from the cleaning plate 1 and moves to a fixed position, the elastic element is stretched and stores elastic potential energy. After the user completes the installation of the cleaning sheet 2, the elastic element releases the stored elastic potential energy, driving the fixing member 3 to quickly reset to the working position where it abuts or is fixed to the cleaning plate 1. This automatic reset mechanism not only simplifies the user's operation steps but also ensures the stability and reliability of the fixing member 3 in the working position.
[0069] Furthermore, the design of the elastic element fully considers the range of motion and reset force of the fixing element 3. For example, the spring force can be adjusted according to the weight and movement distance of the fixing element 3 to ensure that the fixing element 3 can move smoothly during the reset process, avoiding inaccurate reset or jamming due to excessive or insufficient spring force. The elastic band design, through its high elasticity, provides continuous elastic force to the fixing element 3, allowing it to be easily stretched when detached from the cleaning plate 1 and automatically reset after the cloth clamping operation is completed. The two ends of the elastic element are usually firmly connected to the fixing element 3 and the cleaning plate 1 to ensure that it will not fall off or be damaged during repeated stretching and reset processes.
[0070] Furthermore, in practical applications, users can easily install the cleaning pad 2 simply by detaching the fixing piece 3 from the cleaning plate 1 and stretching the elastic element. After installation, the fixing piece 3 automatically returns to its working position, eliminating the need for manual operation. This design not only reduces the number of steps required by the user but also prevents damage to the fixing piece 3 or the cleaning pad 2 from detaching due to improper operation. In addition, the automatic reset function of the elastic element ensures a tight fit between the cleaning pad 2 and the cleaning plate 1, improving cleaning effectiveness and efficiency. Through this design, the overall performance of the cleaning tool is significantly enhanced, better meeting the needs of users in different cleaning scenarios.
[0071] In this embodiment, a scraper 6 is also provided above the cleaning plate 1. The scraper 6 is connected to the upper part of the cleaning plate 1 via a "human"-shaped connector 71. The cleaning plate 1 is hinged to the connector 71 and located below the scraper 6. The scraper 6 is arranged parallel to the long side of the mop board. This design, through the organic combination of the scraper 6 and the cleaning plate 1, realizes the multi-functionality of the cleaning tool. It can perform regular mopping and cleaning, and can also scrape away liquids or stains on the ground with the scraper 6, significantly improving cleaning efficiency and ease of use. The design of the scraper 6 is closely matched with the structure of the cleaning plate 1, ensuring that the scraper 6 can fully perform its function during the cleaning process, while not affecting the fixing and replacement of the cleaning pad 2.
[0072] Furthermore, the length of the scraper 6 is matched with the long side of the cleaning plate 1, thereby achieving complete scraping during the cleaning process.
[0073] Furthermore, the hinge structure typically employs a rotating shaft design, allowing the cleaning plate 1 to rotate freely relative to the connector 71 within a certain angle range, thereby adjusting the relative position between the cleaning plate 1 and the scraper 6 as needed during the cleaning process.
[0074] Furthermore, during the cloth clamping operation, the user can remove the fixing member 3 to avoid the obstruction of the scraper 6, thus facilitating the installation and removal of the cleaning sheet 2. The design of the fixing member 3 fully considers the presence of the scraper 6, ensuring that the fixing member 3 will not interfere with the scraper 6 when it is detached from the cleaning plate 1. For example, the range of motion of the fixing member 3 has been precisely calculated so that when the fixing member 3 is detached from the cleaning plate 1 and moved to the fixed position, it can completely avoid the obstruction area of the scraper 6. This design not only improves the convenience of the cloth clamping operation but also avoids the problem of damage to the fixing member 3 or insecure installation of the cleaning sheet 2 due to obstruction by the scraper 6.
[0075] In this embodiment, the relative positions of the cleaning plate 1 and the scraper 6 have also been optimized to ensure that the scraper 6 can fully perform its function during the cleaning process. For example, when cleaning liquids or stains, the user can rotate the cleaning plate 1 upwards to bring the scraper 6 into contact with the ground, thereby scraping away the liquid or stains. After cleaning, the user can rotate the cleaning plate 1 downwards to bring the cleaning pad 2 into contact with the ground, thereby performing regular mopping. This design achieves multi-functionality of the cleaning tool through simple rotation, significantly improving cleaning efficiency and ease of use.
[0076] Furthermore, the connection method between the scraper 6 and the cleaning plate 1 also takes into account the maintenance and replacement needs of the cleaning tool. For example, the scraper 6 is connected to the "human"-shaped connector 71 via a detachable structure, allowing users to easily replace the scraper 6 as needed without using additional tools. This design not only extends the service life of the cleaning tool but also reduces maintenance costs. In addition, the connection structure of the scraper 6 is treated with an anti-slip coating to ensure that the scraper 6 will not fall off or shift during the cleaning process, thereby guaranteeing the stability of the cleaning effect.
[0077] A cleaning tool includes: a cleaning rod 7 and the aforementioned cleaning plate structure;
[0078] The end of the cleaning rod 7 is hinged to the top of the cleaning plate 1 included in the cleaning plate structure. When the fixing member 3 included in the cleaning plate structure is in the working position, the cleaning plate 2 is disposed at the bottom of the cleaning plate 1 to facilitate cleaning of the surface to be cleaned.
[0079] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," etc., indicating the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0080] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0081] Other components and operations of the mop bucket according to embodiments of the present invention are known to those skilled in the art and will not be described in detail here. In the description of the present invention, "first feature" and "second feature" may include one or more of the features. The up-down, left-right, and front-back directions are defined as shown in the figures.
[0082] In the description of this utility model, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features not in direct contact but through another feature between them. Moreover, "above," "over," and "on top" of the second feature include the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature.
[0083] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In the present invention, various features can be arbitrarily combined.
[0084] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A cleaning board structure, characterized in that, include: Clean the board; A fixing member is movably mounted on the cleaning plate body via a connector. It has a fixed position that can be detached from the cleaning plate body to fix the cleaning sheet, and a working position that abuts or is fixed to the cleaning plate body after the fixing operation is completed. When the fixing member is in the working position, the cleaning sheet is placed on the cleaning plate body to facilitate cleaning of the surface to be cleaned.
2. The cleaning plate structure according to claim 1, characterized in that, The fixing member includes a clamping member for clamping the edge of the cleaning sheet at the fixed position detached from the cleaning plate body, such that when the clamping member returns to the working position, the cleaning sheet covers the bottom of the cleaning plate body.
3. The cleaning plate structure according to claim 2, characterized in that, The clamping device is a double-arm clamping device.
4. The cleaning plate structure according to claim 1, characterized in that, The fastener includes a Velcro fastener, which is used to attach and fix the cleaning sheet to another Velcro fastener located at the edge of the cleaning sheet at the fixed position detached from the cleaning plate body, so that when the fastener is reset to the working position, the cleaning sheet covers the bottom of the cleaning plate body; And / or, the fastener includes one of the snap fasteners, the fastener being used to engage with the other of the snap fasteners located at the edge of the cleaning sheet in the fixed position away from the cleaning plate body, such that when the fastener is reset to the working position, the cleaning sheet covers the bottom of the cleaning plate body.
5. The cleaning plate structure according to any one of claims 1 to 4, characterized in that, The cleaning plate structure includes two fixing members. When the two fixing members are in the fixed position, they are used to fix the cleaning sheet to the opposite sides of the cleaning plate. When both fixing members are in the working position, they are respectively disposed on opposite sides of the cleaning plate body, so that the cleaning sheet covers the bottom of the cleaning plate body.
6. The cleaning plate structure according to claim 5, characterized in that, The connector is an elastic member, and its two ends are respectively connected to the two fixing members, and the two ends of the elastic member are connected to the cleaning plate body.
7. The cleaning plate structure according to claim 6, characterized in that, The elastic element is an elastic band, and the cleaning plate is provided with a connecting hole. The elastic band passes through the connecting hole and its two ends are respectively connected to the two fixing elements.
8. The cleaning plate structure according to claim 7, characterized in that, The elastic band has limiting flanges at both ends, and the fixing member has a groove. The elastic band passes through the groove from the side of the fixing member close to the cleaning plate, so that the limiting flange is limited to the side of the groove away from the cleaning plate.
9. The cleaning plate structure according to any one of claims 1 to 4 or 6 to 8, characterized in that, The connector is an elastic element; when the fixing element detaches from the cleaning plate and moves to the fixed position, the elastic element stores force; the elastic element releases force, causing the fixing element to return to the working position.
10. A cleaning tool, characterized in that, include: The cleaning rod and the cleaning plate structure according to any one of claims 1 to 9; The end of the cleaning rod is hinged to the top of the cleaning plate body included in the cleaning plate body structure. When the fixing member included in the cleaning plate body structure is in the working position, the cleaning plate is disposed at the bottom of the cleaning plate body to facilitate cleaning of the surface to be cleaned.