Water squeezing frame and water squeezing mop
The size of the extrusion cavity is adjusted by the water squeezing rack connected by the deformable part, which solves the problem of difficulty in cleaning a small area caused by the fixed volume occupied by the water squeezing rack and realizes a flexible cleaning solution.
Patent Information
- Application Number
- CN202422631835.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-30
AI Technical Summary
Existing squeezing racks occupy a fixed volume, making it difficult for users to clean narrow areas such as gaps under homes, resulting in a poor user experience.
A water squeezing frame is designed, which connects the abutting frame and the scraping frame through a deformable part, and adjusts the size of the squeezing cavity to meet different cleaning needs.
When you need to clean the mop board, the extrusion cavity is enlarged; when cleaning a small area, the extrusion cavity is reduced, which improves the user experience and avoids obstruction. It is suitable for different cleaning scenarios.
Smart Images

Figure CN223392422U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of daily necessities, in particular to a water squeezing rack and a water squeezing mop. Background Art
[0002] Mops are commonly used tools in people's daily lives, mainly used to clean floors and walls. With the improvement of living standards, people have put forward more and more requirements on the performance of mops. For example, when using a mop to clean the floor, it is required that the mop can clean the floor thoroughly while avoiding excessive residual dirty water on the floor after cleaning.
[0003] At present, in order to avoid hand-washing the mop, a water squeezing rack is usually provided to clean the wiping material on the mop plate and squeeze out excess water on the mop so that the mop remains in a semi-dry state before use.
[0004] However, the squeeze rack usually occupies a certain volume and is externally mounted on the mop handle. When using the mop to clean, the squeeze rack blocks the user's ability to use the hands-free mop to clean narrow areas such as gaps under the home, resulting in a poor user experience. Utility Model Content
[0005] The utility model provides a squeezing rack and a squeezing mop, which are used to solve the problem in the related art that the squeezing rack occupies a certain volume, making it difficult for users to use the hands-free mop to clean narrow areas such as gaps under the home, resulting in poor user experience.
[0006] The utility model provides a water squeezing rack, comprising: a supporting frame, a scraping frame and a deformable portion, wherein the supporting frame, the scraping frame and the deformable portion enclose a squeezing cavity;
[0007] The scraping frame cleans the wiping material on the mop plate inserted into the extrusion cavity, the abutting frame is arranged opposite to the scraping frame, and the two ends of the abutting frame are connected to the two ends of the scraping frame through the deformable part respectively;
[0008] The deformable portion is used to adjust the distance between the abutting frame and the scraping frame.
[0009] In the water squeezing rack provided by the present invention, the supporting frame and the scraping frame are connected by a deformable part, and together they enclose a squeezing cavity. The deformable part is used to adjust the distance between the supporting frame and the scraping frame, and then adjust the size of the squeezing cavity on the water squeezing rack. When the mop board needs to be scraped and scrubbed, the area of the squeezing cavity on the water squeezing rack is increased to accommodate the mop board in the squeezing cavity for scraping and scrubbing. When the mop needs to be used for cleaning in a narrow area, the area of the squeezing cavity on the water squeezing rack is reduced, so as to minimize the interference and obstruction of the water squeezing rack to other objects, and facilitate the mop to be inserted into narrow areas such as gaps under furniture for cleaning, thereby improving the user experience.
[0010] According to a water squeezing rack provided by the utility model, when the deformable part is extended, the distance between the abutting frame and the scraping frame is increased; when the deformable part is contracted, the distance between the abutting frame and the scraping frame is reduced.
[0011] In an embodiment of the present invention, during specific use, when it is necessary to clean the wipes on the mop board, the mop board can be inserted into the extrusion cavity, and the deformable part can be extended, driving the distance between the abutment frame and the scraping frame to increase. At this time, the mop board can move back and forth in the larger extrusion cavity, and the wipes on the mop board can be cleaned through the scraping frame; when it is not necessary to clean the wipes on the mop board, but it is necessary to clean the narrow gaps under the furniture, the deformable part can be contracted by external force, driving the distance between the abutment frame and the scraping frame to decrease, thereby reducing the size of the extrusion cavity, avoiding the obstruction of the squeezing frame as much as possible, and facilitating the mop to extend into narrow areas such as gaps under furniture for cleaning, thereby improving user experience.
[0012] According to the water squeezing rack provided by the utility model, the deformable portion is a foldable portion that contracts by folding.
[0013] In an embodiment of the present invention, a specific implementation method of the deformable part is provided. The deformable part can be a foldable part, which can adjust the distance between the abutting frame and the scraping frame by folding. The connection method is simple, low in cost, and easy to maintain and replace.
[0014] According to a water squeezing rack provided by the utility model, the foldable part includes a first hinge plate, a second hinge plate and a third hinge plate; the first hinge plate is fixedly arranged at one end of the abutting frame body, the first hinge plate is rotatably connected to the third hinge plate via a hinge shaft, the third hinge plate is rotatably connected to the second hinge plate via a hinge shaft, and the second hinge plate is fixedly arranged at one end of the scraping and washing frame body; when the foldable part is extended, the first hinge plate, the second hinge plate and the third hinge plate have no overlapping area along the direction from the abutting frame body to the scraping and washing frame body; when the foldable part is folded, the third hinge plate is deformed in a direction close to or away from the extrusion cavity, so that the first hinge plate and the second hinge plate are close to each other.
[0015] In an embodiment of the present invention, the foldable portion can be folded by deforming the third hinge plate. That is, when the foldable portion is extended, the first hinge plate, the second hinge plate, and the third hinge plate do not have overlapping areas along the direction from the abutting frame to the scraping frame. In other words, the first hinge plate, the second hinge plate, and the third hinge plate are arranged in sequence along the direction from the abutting frame to the scraping frame, so that the distance from the abutting frame to the scraping frame is maximized. When the foldable portion is folded, the third hinge plate deforms in a direction toward or away from the extrusion cavity, so that the first hinge plate and the second hinge plate move closer to each other, thereby reducing the distance from the abutting frame to the scraping frame, until the first hinge plate and the second hinge plate abut, so that the distance from the abutting frame to the scraping frame is minimized.
[0016] According to a water squeezing rack provided by the utility model, the foldable part includes a first hinge plate, a second hinge plate and at least one third hinge plate; the at least one third hinge plate forms a hinge chain, one end of the hinge chain is rotatably connected to the first hinge plate by a hinge shaft, and the other end of the hinge chain is rotatably connected to the second hinge plate by a hinge shaft, the first hinge plate is rotatably set at one end of the abutting frame body, and the second hinge plate is rotatably set at one end of the scraping frame body; when the foldable part is extended, there is no overlapping area between the first hinge plate, the second hinge plate and the at least one third hinge plate along the direction from the abutting frame body to the scraping frame body; when the foldable part is folded, the first hinge plate and the second hinge plate rotate toward or away from the squeezing cavity, so that the at least one third hinge plate moves toward or away from the squeezing cavity.
[0017] Optionally, when the hinge chain includes a plurality of the third hinge plates, the plurality of the third hinge plates are sequentially connected via hinge shafts.
[0018] Optionally, when the foldable portion is folded, a plurality of the third hinge plates are overlapped and arranged along a direction from the abutting frame to the scraping frame.
[0019] In an embodiment of the present invention, the degree of folding of the entire foldable part can be adjusted by adjusting the angle between the hinge chain and the first hinge plate and the second hinge plate, or the folding degree of the hinge chain itself, thereby adjusting the distance between the abutment frame and the scraping frame. The more third hinge plates the hinge chain includes, the larger the adjustable range of the foldable part. It can be adjusted according to actual conditions to adapt it to the conditions of different users, thereby improving the user experience.
[0020] According to the water squeezing rack provided by the utility model, the foldable portion is an accordion-shaped folding portion, and the accordion-shaped folding portion includes a plurality of pleated portions.
[0021] In an embodiment of the present invention, another specific implementation method of the foldable part is provided. The foldable part can be an accordion-shaped folding part including multiple pleated parts. By adjusting the angles between the multiple pleated parts, the folding degree of the entire foldable part can be adjusted, thereby adjusting the distance between the abutting frame and the scraping frame.
[0022] According to the water squeezing rack provided by the utility model, the water squeezing rack further includes at least one guide assembly;
[0023] The at least one guide assembly is fixedly arranged on the inner wall of the abutting frame, and cooperates with the top surface of the mop board where no wipe is arranged, for guiding the mop board to move in the extrusion cavity.
[0024] In an embodiment of the present invention, a guide assembly is provided on the inner wall of the abutment frame, that is, on the side of the abutment frame close to the extrusion cavity. When the mop board is inserted into the extrusion cavity, the guide assembly can cooperate with the top surface of the mop board where no wipes are provided to guide the mop board to move in the extrusion cavity and clean the wipes provided on the mop board. Since the guide assembly has a certain guiding effect, it can guide the mop board to move in the extrusion cavity, and can keep the distance between the mop board and the water squeezing frame stable, and there will be no problems such as the mop board flipping or tilting in the extrusion cavity, so that the water squeezing frame can generate a uniform squeezing force on the wiping material on the mop board, so that the water squeezing frame can effectively squeeze the mop board, thereby better completing the water squeezing and cleaning operations, providing a better cleaning effect; at the same time, since the top surface of the mop board and the guide assembly are in a sliding state, the smoothness of the mop board when moving in the extrusion cavity is increased, so the friction and wear between the top surface of the mop board and the water squeezing frame can be greatly reduced during the pulling and pulling operation of the mop board in the extrusion cavity. On the basis of improving user experience, the service life of the mop board and the water squeezing frame can also be extended to a certain extent.
[0025] According to a water squeezing rack provided by the utility model, the guide assembly includes:
[0026] A support member is provided on the inner wall of the supporting frame;
[0027] At least one rotating member is provided on the supporting member. When the mop plate is inserted into the extrusion cavity, the top surface abuts against the rotating member. When the mop plate moves in the extrusion cavity, the rotating member rotates driven by the top surface.
[0028] In an embodiment of the present invention, the guide assembly may include a support member arranged on the inner wall of the frame, and at least one rotating member is also provided on the support member. The rotating member is used to abut against the top surface of the mop board and rotate under the drive of the mop board, and slide along the mop board to guide the mop board to move in the extrusion cavity.
[0029] According to the water squeezing rack provided by the utility model, at least one guide rail is provided on the top surface of the mop plate, and the rotating member is used to slide along the corresponding guide rail when the mop plate is inserted into the squeezing cavity and moves in the squeezing cavity.
[0030] In an embodiment of the present invention, at least one guide rail is provided on the top surface of the mop board, which is used to slide along the corresponding guide rail when the mop board is inserted into the extrusion cavity, so that the distance between the mop board and the water squeezing frame remains stable, and the mop board will not flip or tilt in the extrusion cavity. The water squeezing frame can generate a uniform squeezing force on the wiped material on the mop board. In this way, the water squeezing frame can effectively squeeze the mop board, thereby better completing the water squeezing and cleaning operations and providing a better cleaning effect.
[0031] According to a water squeezing rack provided by the utility model, the support member is a guide bar, the direction of the guide bar is set to be the same direction as the mop rod, and at least two rotating members are provided on the guide bar in the direction along the guide bar.
[0032] In an embodiment of the present invention, the above-mentioned support member is a guide bar, and the direction of the guide bar is set to be the same direction as the mop rod. At least two rotating members are provided on the guide bar along the direction of the guide bar to facilitate guiding the mop plate to move in the radial direction of the mop rod in the extrusion cavity.
[0033] According to a water squeezing rack provided by the present invention, the water squeezing rack includes at least two guide assemblies, and the at least two guide assemblies are arranged symmetrically with respect to the central plane of the abutting frame body.
[0034] In an embodiment of the present invention, the squeezing frame includes at least two guide assemblies, which are symmetrically arranged with respect to the central plane of the frame body, so that when the mop board is pulled out and drawn in the squeezing cavity, the supporting force of the guide assemblies on both sides of the mop rod on the mop board is symmetrical along the mop rod, thereby making the wiping material of the entire mop board evenly subjected to force on the scraping frame body, making it convenient for the user to effectively squeeze the mop board, thereby better completing the squeezing and cleaning operations and providing a better cleaning effect.
[0035] According to the water squeezing rack provided by the present invention, the rotating member is a roller, and the roller is rotatably connected to the supporting member via a rotating shaft.
[0036] In an embodiment of the present invention, the above-mentioned rotating member is realized by a roller, which is rotatably connected to the support member through a rotating shaft. The sliding state between the top surface of the mop board and the guide assembly is realized through the rotation of the roller, which increases the smoothness of the mop board when moving in the extrusion cavity, and can greatly reduce the friction and wear between the top surface of the mop board and the water squeezing frame. On the basis of improving user experience, it can also extend the service life of the mop board and the water squeezing frame to a certain extent.
[0037] According to the squeezing rack provided by the utility model, at least one scraping member is provided on the inner wall of the scraping frame body for scraping and / or squeezing the wiping material provided on the bottom surface of the mop plate passing through the squeezing cavity.
[0038] In an embodiment of the present invention, at least one scraping member is provided on the inner wall of the scraping frame body for effectively cleaning the wiping material provided on the bottom surface of the mop plate passing through the squeezing cavity, that is, the squeezing frame can be suitable for a flat mop with a wiping material provided on one side.
[0039] According to a water squeezing rack provided by the utility model, at least one scraping member is provided on the inner wall of the abutting frame body, which is used to scrape and / or squeeze the wiping material provided on the top surface of the mop board passing through the squeezing cavity. The top surface of the mop board is a side of the mop board opposite to the bottom surface of the mop board.
[0040] In an embodiment of the present invention, at least one scraping member is provided on the scraping frame and the inner wall of the frame, which scrapes and / or squeezes the wiping materials on the bottom surface and the top surface of the mop plate that are relatively arranged on the mop, that is, the water-squeezing frame can be suitable for flat mops with wiping materials on the bottom and top surfaces, that is, it is suitable for cleaning double-sided mops.
[0041] According to the water squeezing rack provided by the utility model, at least two scraping members are arranged in parallel on the scraping frame body and / or the inner wall of the frame body, and the directions of the at least two scraping members are perpendicular to the radial direction of the drag plate rod.
[0042] In an embodiment of the present invention, at least two scraping members are arranged in parallel on the scraping frame and / or the inner wall of the abutting frame, and the arrangement direction of these scraping members is perpendicular to the radial direction of the mop plate rod, so that when the mop plate is pulled out and pulled out in the extrusion cavity, the pulling direction of the mop plate is perpendicular to the arrangement direction of the scraping members, so that the scraping members can better scrape the mop plate and provide a better cleaning effect; in addition, at least two scraping members are arranged in parallel on the scraping frame and / or the inner wall of the abutting frame, so that the water squeezing frame can be suitable for both a flat mop with a wipe on one side and a flat mop with wipes on both the bottom and top surfaces, so that both single-sided mops and double-sided mops can be effectively cleaned using the water squeezing frame.
[0043] According to a water squeezing rack provided by the utility model, at least one water permeable hole is further provided on the scraping frame body and / or the abutting frame body, and there is no overlap between the position of the at least one water permeable hole and the position of the at least one scraping member.
[0044] In an embodiment of the present invention, at least one water permeable hole is further provided on the scraping frame and / or the abutting frame, so that when the mop board is pulled out and in the extrusion cavity, the mop board is scraped and squeezed by the scraping member, and excess water can be discharged in time through the provided water permeable hole, and there is no overlap between the position of the water permeable hole and the position of at least one scraping member, which can avoid the scraping member blocking the water permeable hole and thus affecting the drainage of the water permeable hole, providing better water squeezing effect and cleaning effect. Similarly, the water squeezing frame can be suitable for both a flat mop with a wipe on one side and a flat mop with a wipe on both the bottom and top surfaces, so that both single-sided mops and double-sided mops can be effectively cleaned using the water squeezing frame.
[0045] According to the water squeezing rack provided by the utility model, water holes are respectively provided on both sides of each scraping and cleaning member.
[0046] In the embodiment of the present invention, water holes can be provided on both sides of each scraping and cleaning member, so that when the mop plate is pulled out and moved in the extrusion cavity, when it moves toward the mop rod and cleans, excess water can be discharged in time through the provided water holes. When it moves away from the mop rod and cleans, excess water can also be discharged in time through the water holes, which can provide better water squeezing and cleaning effects while improving the efficiency of water squeezing and cleaning.
[0047] According to the water squeezing rack provided by the utility model, the scraping and cleaning component is at least one of a scraper, a roller, comb teeth, a boss and a brush.
[0048] In the embodiment of the present invention, several specific implementation structures of the scraping and cleaning parts are provided, among which the scraper and the boss can effectively squeeze out water and clean the wipes on the mop board, the roller is more suitable for only squeezing water from the wipes on the mop board, the comb teeth can better clean the wipes on the mop board than the scraper and the boss, and the brush can better clean the wipes on the mop board than the comb teeth. Users can choose different scraping and cleaning parts to clean the mop board according to actual conditions, thereby improving user experience.
[0049] The utility model also provides a water squeezing mop, comprising:
[0050] mop handle;
[0051] a mop plate connected to one end of the mop rod;
[0052] As in any of the above embodiments, the water squeezing frame is slidably sleeved on the mop rod, and the water squeezing frame slides along the mop rod so that the mop plate is inserted into the squeezing cavity and moves along the squeezing cavity. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] In order to more clearly illustrate the technical solutions in the present invention or related technologies, the following is a brief introduction to the drawings required for use in the embodiments or related technical descriptions. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0054] Figure 1 This is one of the structural diagrams of the water squeezing rack provided by the utility model;
[0055] Figure 2 This is a structural diagram of the water squeezing mop (with the water squeezing frame extended) provided by the utility model;
[0056] Figure 3 This is a structural diagram of the water squeezing mop (with the water squeezing frame retracted) provided by the utility model;
[0057] Figure 4 It is a schematic structural diagram of a water squeezing frame on a water squeezing mop in the related art;
[0058] Figure 5 This is the second structural diagram of the water squeezing rack provided by the utility model;
[0059] Figure 6 This is the third structural diagram of the water squeezing rack provided by the utility model;
[0060] Figure 7 This is the fourth structural diagram of the water squeezing rack provided by the utility model;
[0061] Figure 8 It is a structural schematic diagram of the scraping and washing frame body in the water squeezing frame provided by the utility model.
[0062] Reference numerals:
[0063] 10: water squeeze rack; 20: mop rod; 30: mop board;
[0064] 101: against the frame;
[0065] 102: scraping and washing frame; 1021: scraping and washing member; 1022: water permeable hole;
[0066] 103: deformable portion; 1031: first hinge plate; 1032: second hinge plate; 1033: third hinge plate;
[0067] 104: guide assembly; 1041: support member; 1042: rotating member;
[0068] A: Squeeze the cavity. DETAILED DESCRIPTION
[0069] To make the purpose, technical solutions, and advantages of the present invention more clear, the following will be combined with the accompanying drawings to clearly and completely describe the technical solutions of the present invention. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0070] In the description of the present invention, it should be clarified that the terms "vertical", "transverse", "longitudinal", "front", "rear", "left", "right", "up", "down", "horizontal", etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and do not mean that the device or element referred to must have a specific direction or position. Therefore, they cannot be understood as limitations on the present invention.
[0071] In the description of the present invention, it should also be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to mechanical connections; they may refer to direct connections, indirect connections through an intermediate medium, internal connections between two components, and wireless connections or wired connections. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0072] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0073] The water squeezing rack and the water squeezing mop of the present invention will be described below with reference to the accompanying drawings.
[0074] Figure 1 This is one of the structural diagrams of the water squeezing rack provided by the utility model. Figure 2 This is a structural diagram of the water squeezing mop (with the water squeezing frame extended) provided by the utility model. Figure 3 This is a schematic diagram of the structure of the water squeezing mop (water squeezing frame retracted) provided by the utility model, combined with Figures 1 to 3 As shown, the water squeezing frame 10 includes: a supporting frame 101, a scraping frame 102 and a deformable portion 103, wherein the supporting frame 101, the scraping frame 102 and the deformable portion 103 enclose an extrusion cavity A;
[0075] The scraping frame 102 cleans the wiping material on the mop plate 30 inserted into the extrusion cavity A. The abutting frame 101 and the scraping frame 102 are arranged opposite to each other, and the two ends of the abutting frame 101 are connected to the two ends of the scraping frame 102 through the deformable parts 103 respectively.
[0076] The deformable portion 103 is used to adjust the distance between the abutting frame 101 and the scraping frame 102 by deformation.
[0077] In the related art, the squeeze rack on the mop usually occupies a certain fixed volume and is externally mounted on the mop handle. When using the mop for cleaning, the squeeze rack often interferes with and blocks the mop, making it difficult for users to use the hands-free mop to clean narrow areas such as gaps under the home, resulting in a poor user experience.
[0078] Figure 4 It is a structural diagram of the water squeezing frame on the water squeezing mop in the related art, such as Figure 4 As shown, the mop includes a mop handle, a mop plate, and a wringing frame. The wringing frame needs to be provided with a wringing cavity for accommodating the mop plate for pulling and pulling, thereby cleaning the mop plate. The wringing frame is usually formed in an integral manner, so that the space occupied by the wringing frame is fixed. As a result, when the user is cleaning a narrow area such as a gap, the wringing frame occupies a large space, making it difficult for the mop to reach the narrow area. The user can only clean the narrow area by removing the wringing frame and then reinstalling the wringing frame to wring water and clean the mop when washing the mop, which is very inconvenient.
[0079] In response to the above problems, an embodiment of the present invention provides a water squeezing rack 10, which is provided with an abutting frame 101 and a scraping frame 102, which are assembled through a deformable part 103 to form an extrusion cavity A, so that the distance between the abutting frame 101 and the scraping frame 102 can be adjusted, and thus the occupied space of the water squeezing rack 10 can be adjusted. Therefore, the user can adjust the occupied space of the water squeezing rack 10 according to actual conditions to adapt to different application scenarios, thereby improving the user experience.
[0080] In some embodiments, the water squeezing rack 10 can be mounted on the mop rod 20, so that the mop plate 30 can directly use the water squeezing rack 10 to squeeze water and clean the mop. The specific mounting method is not limited in the present invention.
[0081] In an embodiment of the present invention, the supporting frame 101 and the scraping frame 102 are connected by a deformable portion 103, and together they enclose an extrusion cavity A. The deformable portion 103 is used to adjust the distance between the supporting frame 101 and the scraping frame 102, and thereby adjust the size of the extrusion cavity A on the water squeezing frame 10, so that when the mop plate 30 needs to be scraped and scrubbed, the area of the extrusion cavity A on the water squeezing frame 10 can be increased to accommodate the mop plate 30 in the extrusion cavity A and perform scraping and scrubbing; and when a mop needs to be used for cleaning in a narrow area, the area of the extrusion cavity A on the water squeezing frame can be reduced, so as to minimize the interference and obstruction of the water squeezing frame 10 on other objects, making it easier to extend the mop into narrow areas such as gaps under furniture for cleaning, thereby improving the user experience.
[0082] For example, when the abutting frame 101 or the scraping frame 102 is subjected to force, the deformable portion 103 can deform and adjust the size of the extrusion cavity A on the water squeezing frame 10 through deformation. For example, when the abutting frame 101 or the scraping frame 102 is forced to move closer to each other, the deformable portion 103 can deform in a direction closer to or farther from the extrusion cavity A, for example forming an arched shape closer to or farther from the extrusion cavity A, thereby reducing the distance between the abutting frame 101 and the scraping frame 102; when the abutting frame 101 or the scraping frame 102 is forced to move away from each other, the arched shape formed by the deformable portion 103 can be restored, or even the deformable portion 103 can be extended, to facilitate the insertion of the mop plate 30 into the extrusion cavity A for cleaning.
[0083] In some embodiments, as Figure 2 and Figure 3 As shown, when the deformable portion 103 is extended, the distance between the abutting frame 101 and the scraping frame 102 is increased; when the deformable portion 103 is contracted, the distance between the abutting frame 101 and the scraping frame 102 is reduced.
[0084] In the embodiment of the present invention, during specific use, when it is necessary to clean the wipes on the mop plate 30, the mop plate 30 can be inserted into the extrusion cavity A, and the deformable portion 103 can be extended, driving the distance between the abutment frame 101 and the scraping frame 102 to increase. At this time, the mop plate 30 can reciprocate in the larger-sized extrusion cavity A, and the scraping frame 102 is used to clean the wipes on the mop plate 30; when there is no need to clean the wipes on the mop plate 30, but it is necessary to clean the narrow gaps under the furniture, the deformable portion 103 can be contracted by external force, driving the distance between the abutment frame 101 and the scraping frame 102 to decrease, thereby reducing the size of the extrusion cavity A, avoiding the obstruction of the squeezing frame 10 as much as possible, and facilitating the mop to extend into narrow areas such as gaps under furniture for cleaning, thereby improving user experience.
[0085] In some embodiments, the deformable portion 103 is a foldable portion that contracts by folding.
[0086] In an embodiment of the present invention, a specific implementation method of the deformable part 103 is provided. The deformable part 103 can be a foldable part, which can adjust the distance between the abutment frame 101 and the scraping frame 102 by folding. The connection method is simple, low in cost, and easy to maintain and replace.
[0087] In some embodiments, the foldable portion includes a first hinge plate 1031 , a second hinge plate 1032 , and a third hinge plate 1033 .
[0088] The first hinge plate 1031 is fixedly arranged at one end of the abutting frame 101, and the first hinge plate 1031 is rotatably connected to the third hinge plate 1033 via a hinge shaft, and the third hinge plate 1033 is rotatably connected to the second hinge plate 1032 via a hinge shaft, and the second hinge plate 1032 is fixedly arranged at one end of the scraping and washing frame 102.
[0089] When the foldable part is extended, there is no overlapping area among the first hinge plate 1031, the second hinge plate 1032 and the third hinge plate 1033 along the direction from the abutting frame 101 to the scraping frame 102; when the foldable part is folded, the third hinge plate 1033 is deformed in the direction of approaching or moving away from the extrusion cavity A, so that the first hinge plate 1031 and the second hinge plate 1032 are close to each other.
[0090] Specifically, for the foldable part, since the third hinge plate 1033 is rotationally connected to the first hinge plate 1031 and the second hinge plate 1032, when the foldable part is subjected to force, the third hinge plate 1033 first rotates relative to the first hinge plate 1031 and the second hinge plate 1032 in the direction of approaching or moving away from the extrusion cavity A, and deforms while rotating, that is, forming an arch approaching or moving away from the extrusion cavity A, thereby making the first hinge plate 1031 and the second hinge plate 1032 approach or move away from each other.
[0091] In some embodiments, the foldable portion can be folded by deforming the third hinge plate 1033. That is, when the foldable portion is extended, the first hinge plate 1031, the second hinge plate 1032, and the third hinge plate 1033 do not overlap along the direction from the abutting frame 101 to the scraping frame 102. In other words, the first hinge plate 1031, the second hinge plate 1032, and the third hinge plate 1033 are arranged in sequence along the direction from the abutting frame 101 to the scraping frame 102, so that the distance between the abutting frame 101 and the scraping frame 102 is maximized. When the foldable portion is folded, the third hinge plate 1033 deforms toward or away from the extrusion cavity A, causing the first hinge plate 1031 and the second hinge plate 1032 to move closer to each other, thereby reducing the distance between the abutting frame 101 and the scraping frame 102, until the first hinge plate 1031 and the second hinge plate 1032 abut, so that the distance between the abutting frame 101 and the scraping frame 102 is minimized.
[0092] Optionally, the third hinge plate can be made of a flexible material, such as rubber or silicone.
[0093] Figure 5 This is the second structural diagram of the water squeezing rack provided by the utility model. Figure 6 This is the third structural diagram of the water squeezing rack provided by the present invention, as shown in FIG. Figure 5 and Figure 6 As shown, the foldable portion includes a first hinge plate 1031, a second hinge plate 1032 and at least one third hinge plate 1033, and the at least one third hinge plate 1033 forms a hinge chain, one end of the hinge chain is rotatably connected to the first hinge plate 1031 through a hinge shaft, and the other end of the hinge chain is rotatably connected to the second hinge plate 1032 through a hinge shaft, the first hinge plate 1031 is rotatably set at one end of the abutting frame 101, and the second hinge plate 1032 is rotatably set at one end of the scraping frame 102.
[0094] For example, the foldable part includes a first hinge plate 1031, a second hinge plate 1032 and a third hinge plate 1033. When the angle between the third hinge plate 1033 and the first hinge plate 1031 and the second hinge plate 1032 is 0°, it can be considered that the foldable part is in an extended state at this time. When the foldable part is extended, there is no overlapping area between the first hinge plate 1031, the second hinge plate 1032 and the third hinge plate 1033 along the direction from the abutting frame 101 to the scraping frame 102. That is to say, the first hinge plate 1031, the second hinge plate 1032 and the third hinge plate 1033 are arranged in sequence along the direction from the abutting frame 101 to the scraping frame 102, so that the distance between the abutting frame 101 and the scraping frame 102 is the largest.
[0095] like Figure 6 As shown, when the third hinge plate 1033 moves toward the extrusion cavity A until the angle between the third hinge plate 1033 and the first hinge plate 1031 and the second hinge plate 1032 is 90 degrees, it can be considered that the foldable portion is in a folded state.
[0096] It should be noted that the user can also use external force to make the third hinge plate 1033 and the first hinge plate 1031 and the second hinge plate 1032 form any angle of 0~90°, and confirm that it is the extended state and the folded state of the foldable part to adapt to different application scenarios. The present utility model does not limit this.
[0097] In some embodiments, the foldable portion includes a plurality of third hinge plates 1033. The plurality of third hinge plates 1033 form a hinge chain, one end of the hinge chain being rotatably connected to the first hinge plate 1031 via a hinge shaft, and the other end of the hinge chain being rotatably connected to the second hinge plate 1032 via a hinge shaft. The first hinge plate 1031 is rotatably disposed at one end of the abutting frame 101, and the second hinge plate 1032 is rotatably disposed at one end of the scraping and washing frame 102. When the foldable portion is extended, the first hinge plate 1031, the second hinge plate 1032, and the plurality of third hinge plates 1033 do not have overlapping areas along the direction from the abutting frame 101 to the scraping and washing frame 102. When the foldable portion is folded, the first hinge plate 1031 and the second hinge plate 1032 rotate toward or away from the extrusion cavity A, causing the plurality of third hinge plates 1033 to move toward or away from the extrusion cavity A.
[0098] In other embodiments, when the hinge chain includes a plurality of the third hinge plates 1033 , the plurality of the third hinge plates 1033 are sequentially connected via hinge shafts.
[0099] In other embodiments, when the foldable portion is folded, a plurality of the third hinge plates 1033 are overlapped and arranged along a direction from the abutting frame 101 to the scraping frame 102 .
[0100] Specifically, compared with Figure 5 and Figure 6 In the corresponding embodiment, the number of the third hinge plates 1033 is no longer limited, that is, the first hinge plate 1031 and the second hinge plate 1032 can be connected by a hinge chain formed by multiple third hinge plates 1033 in series, and the two adjacent third hinge plates 1033 in the hinge chain are rotatably connected by a rotating shaft. Therefore, the degree of folding of the foldable part can be adjusted by adjusting the angle between the hinge chain and the first hinge plate 1031 and the second hinge plate 1032, and the degree of folding of the entire foldable part can be adjusted by adjusting the folding degree of the hinge chain itself. The adjustable range of the foldable part becomes larger to suit different application scenarios.
[0101] During use of the water squeezing frame 10, when the foldable portion is extended, the first hinge plate 1031, the second hinge plate 1032, and the at least one third hinge plate 1033 do not have any overlapping areas along the direction from the abutting frame 101 to the scraping frame 102, so that the first hinge plate 1031, the second hinge plate 1032, and the at least one third hinge plate 1033 are arranged in sequence along the direction from the abutting frame 101 to the scraping frame 102, so that the distance from the abutting frame 101 to the scraping frame 102 is maximized;
[0102] When the foldable part is folded, the first hinge plate 1031 and the second hinge plate 1032 rotate toward or away from the extrusion cavity A, so that at least one third hinge plate 1033 moves toward or away from the extrusion cavity A. At this time, the first hinge plate 1031 and the second hinge plate 1032 will approach each other, thereby reducing the distance from the abutment frame 101 to the scraping frame 102, until the first hinge plate 1031 and the second hinge plate 1032 abut, making the distance from the abutment frame 101 to the scraping frame 102 as the smallest, and at this time the degree of folding of the water squeezing frame 10 is the largest.
[0103] It should be noted that the number of third hinge plates 1033 forming the hinge chain can be set according to actual conditions. The more third hinge plates 1033 are set, the larger the foldable form and range of the foldable part. Reasonable settings can be made considering factors such as actual application scenarios and costs, and the present utility model does not impose any restrictions on this.
[0104] In an embodiment of the present invention, the degree of folding of the entire foldable portion can be adjusted by adjusting the angle between the hinge chain and the first hinge plate 1031 and the second hinge plate 1032, or the folding degree of the hinge chain itself, thereby adjusting the distance between the abutment frame 101 and the scraping frame 102. The more third hinge plates 1033 included in the hinge chain, the larger the adjustable range of the foldable portion. It can be adjusted according to actual conditions to adapt it to the conditions of different users, thereby improving the user experience.
[0105] In some embodiments, the foldable portion is an accordion-shaped folded portion, and the accordion-shaped folded portion includes a plurality of pleats.
[0106] In an embodiment of the utility model, another specific implementation method of the foldable part is provided. The foldable part can be an accordion-shaped folding part including multiple pleated parts. By adjusting the angles between the multiple pleated parts, the folding degree of the entire foldable part can be adjusted, thereby adjusting the distance between the abutting frame and the scraping frame.
[0107] In some embodiments, Figure 7 This is the fourth structural diagram of the water squeezing rack provided by the utility model, as shown in FIG. Figure 7 As shown, the water squeezing rack 10 further includes at least one guide assembly 104;
[0108] The at least one guide assembly 104 is fixedly arranged on the inner wall of the abutting frame 101 , and cooperates with the top surface of the mop board 30 where no wipe is provided, for guiding the mop board 30 to move in the extrusion cavity A.
[0109] In an embodiment of the present invention, a guide assembly 104 is provided on the inner wall of the abutment frame 101, that is, on the side of the abutment frame 101 close to the extrusion cavity A. When the mop plate 30 is inserted into the extrusion cavity A, the guide assembly 104 can cooperate with the top surface of the mop plate 30 where no wipe is provided to guide the mop plate 30 to move in the extrusion cavity A to clean the wipe provided on the mop plate 30. Since the guide assembly 104 has a certain guiding effect, it can guide the mop board 30 to move in the squeezing cavity A, and can keep the distance between the mop board 30 and the water squeezing frame 10 stable, and there will be no problems such as the mop board 30 flipping or tilting in the squeezing cavity A, so that the water squeezing frame 10 can generate a uniform squeezing force on the wiping material on the mop board 30, so that the water squeezing frame 10 can effectively squeeze the mop board 30, thereby better completing the water squeezing and cleaning operations, providing a better cleaning effect; at the same time, since the top surface of the mop board 30 and the guide assembly 104 are in a sliding state, the smoothness of the mop board 30 when moving in the squeezing cavity A is increased, so during the pulling and pulling operation of the mop board 30 in the squeezing cavity A, the friction and wear between the top surface of the mop board 30 and the water squeezing frame 10 can be greatly reduced, and on the basis of improving the user experience, the service life of the mop board 30 and the water squeezing frame 10 can be extended to a certain extent.
[0110] In some embodiments, as Figure 7 As shown, the guide assembly 104 includes:
[0111] A support member 1041 is provided on the inner wall of the support frame 101;
[0112] At least one rotating member 1042 is provided on the supporting member 1041. When the mop plate 30 is inserted into the extrusion cavity A, the top surface abuts against the rotating member 1042. When the mop plate 30 moves in the extrusion cavity A, the rotating member 1042 rotates driven by the top surface.
[0113] Specifically, the guide assembly 104 may include a support member 1041 arranged on the inner wall of the frame 101, and at least one rotating member 1042 is also provided on the support member 1041. The rotating member 1042 is used to abut against the top surface of the mop board 30, and rotate under the drive of the mop board 30, and slide along the mop board 30 to guide the mop board 30 to move in the extrusion cavity A.
[0114] In some embodiments, the rotating member 1042 is a roller, and the roller is rotatably connected to the supporting member 1041 via a rotating shaft.
[0115] In the embodiment of the present invention, the above-mentioned rotating member 1042 is realized by a roller, which is rotatably connected to the support member 1041 through a rotating shaft. The sliding state between the top surface of the mop plate 30 and the guide assembly 104 is realized through the rotation of the roller, thereby increasing the smoothness of the mop plate 30 when moving in the extrusion cavity A, and can greatly reduce the friction and wear between the top surface of the mop plate 30 and the water squeezing frame 10. On the basis of improving user experience, it can also extend the service life of the mop plate 30 and the water squeezing frame 10 to a certain extent.
[0116] It should be noted that Figure 7 In the figure, the rotating member 1042 is a roller, and two rollers are provided on one supporting member 1041 of the guide assembly 104 as an example, but the present invention does not impose any limitation on this.
[0117] In some embodiments, at least one guide rail is provided on the top surface of the mop plate 30 , and the rotating member 1042 is used to slide along the corresponding guide rail when the mop plate 30 is inserted into the extrusion cavity A and moves in the extrusion cavity A.
[0118] In the embodiment of the present invention, at least one guide rail is provided on the top surface of the mop plate 30, which is used to slide along the corresponding guide rail when the mop plate 30 is inserted into the squeezing cavity A, so that the distance between the mop plate 30 and the water squeezing frame 10 remains stable, and the mop plate 30 will not turn over or tilt in the squeezing cavity A. The water squeezing frame 10 can generate a uniform squeezing force on the wiped material on the mop plate 30. In this way, the water squeezing frame 10 can effectively squeeze the mop plate 30, thereby better completing the water squeezing and cleaning operations and providing a better cleaning effect.
[0119] In some embodiments, as Figure 7As shown, the support member 1041 is a guide bar, and the direction of the guide bar is set to be the same direction as the mop rod 20. At least two rotating members 1042 are set on the guide bar along the direction of the guide bar.
[0120] In the embodiment of the present invention, the above-mentioned support member 1041 is a guide bar, and the direction of the guide bar is set to be the same direction as the mop rod 20. At least two rotating members 1042 are provided on the guide bar along the direction of the guide bar to facilitate guiding the mop plate 30 to move in the radial direction of the mop rod 20 in the extrusion cavity A.
[0121] In some embodiments, as Figure 7 As shown, the water squeezing rack 10 includes at least two guide assemblies 104 , and the at least two guide assemblies 104 are arranged symmetrically with respect to the central plane of the abutting frame body 101 .
[0122] In the embodiment of the present invention, the squeezing frame 10 includes at least two guide assemblies 104, which are symmetrically arranged with respect to the central plane of the frame body 101, so that when the mop plate 30 is pulled out and drawn in the squeezing cavity A, the supporting force of the guide assemblies 104 on both sides of the mop rod 20 on the mop plate 30 is symmetrical along the mop rod 20, thereby making the wiping material of the entire mop plate 30 evenly subjected to force on the scraping frame body 102, making it convenient for the user to effectively squeeze the mop plate 30, thereby better completing the squeezing and cleaning operations and providing a better cleaning effect.
[0123] In some embodiments, Figure 8 This is a schematic diagram of the structure of the scraping and washing frame in the water squeezing frame provided by the present invention. Figure 8 As shown, at least one scraping member 1021 may be provided on the inner wall of the scraping frame 102 for scraping and / or squeezing the wiping material provided on the bottom surface of the mop plate 30 passing through the squeezing cavity A.
[0124] In an embodiment of the present invention, at least one scraping member 1021 is provided on the inner wall of the scraping frame 102, which is used to effectively clean the wiping material set on the bottom surface of the mop plate 30 passing through the extrusion cavity A, that is, the water squeezing frame 10 can be suitable for a flat mop with a wiping material set on one side.
[0125] In some embodiments, at least one scraping member may be provided on the inner wall of the abutting frame 101 for scraping and / or squeezing the wiping material provided on the top surface of the mop plate 30 passing through the squeezing cavity A;
[0126] The top surface of the mop board 30 is a surface of the mop board 30 that is opposite to the bottom surface of the mop board 30 .
[0127] In an embodiment of the present invention, at least one scraping member can be provided on the inner walls of the abutting frame 101 and the scraping frame 102 to scrape and / or squeeze the wiping materials on the bottom surface and the top surface of the mop plate that are relatively arranged on the mop, that is, the water squeezing frame 10 can be suitable for flat mops with wiping materials on both the bottom and top surfaces, that is, suitable for cleaning double-sided mops.
[0128] In some embodiments, at least two scraping members 1021 are arranged in parallel on the scraping frame 102 and / or the inner wall of the abutting frame 101 , and the directions of the at least two scraping members 1021 are perpendicular to the radial direction of the dragging plate rod 20 . Figure 8 In the figure, only the case where at least two scraping members 1031 are provided on the scraping frame 102 and no scraping members are provided on the abutting frame 101 is shown as an example.
[0129] In the embodiment of the present invention, at least two scraping members are arranged in parallel on the inner wall of the scraping frame 102 and / or the abutting frame 101, and the arrangement direction of these scraping members is perpendicular to the radial direction of the mop rod 20, so that when the mop board 30 is pulled out and pulled in the extrusion cavity A, the pulling direction of the mop board 30 is perpendicular to the arrangement direction of the scraping members, so that the scraping members can better scrape the mop board, providing a better cleaning effect; in addition, at least two scraping members are arranged in parallel on the inner wall of the scraping frame 102 and / or the abutting frame 101, so that the water squeezing frame 10 can be suitable for both a flat mop with a wipe on one side and a flat mop with a wipe on both the bottom and top surfaces, so that both a single-sided mop and a double-sided mop can be effectively cleaned using the water squeezing frame 10.
[0130] In some embodiments, at least one water-permeable hole 1022 is further provided on the scraping frame 102 and / or the abutting frame 101 , and there is no overlap between the position of the at least one water-permeable hole 1022 and the position of the at least one scraping member 1021 . Figure 8 In the figure, only the case where at least one water permeable hole 1022 is provided on the scraping and washing frame 102 and no water permeable hole is provided on the abutting frame 101 is shown as an example.
[0131] It should be noted that the shape of the water-permeable hole 1022 can be set to different shapes such as rectangle, oval, circle, rounded rectangle, etc. according to actual conditions, and the shapes of the multiple water-permeable holes 1022 set on the scraping and washing frame 102 can be the same or different, and the present invention does not impose any restrictions on this.
[0132] In the embodiment of the present invention, at least one water permeable hole 1022 is further provided on the scraping frame 102 and / or the abutting frame 101, so that when the mop plate 30 is pulled out and drawn in the extrusion cavity A, the mop plate 30 is scraped and squeezed with water by the scraping member, and excess water can be discharged in time through the provided water permeable hole 1022, and there is no overlap between the position of the water permeable hole 1022 and the position of at least one scraping member 1021, so that the scraping member 1021 can be prevented from blocking the water permeable hole 1022, thereby affecting the drainage of the water permeable hole 1022, providing better water squeezing effect and cleaning effect. Similarly, the water squeezing frame 10 can be suitable for flat mops with wiping objects provided on a single side, and can also be suitable for flat mops with wiping objects provided on both the bottom and top surfaces, so that both single-sided mops and double-sided mops can be effectively cleaned using the water squeezing frame 10.
[0133] In some embodiments, as Figure 8 As shown, water-permeable holes 1022 are respectively provided on both sides of each scraping and cleaning member 1021 .
[0134] In the embodiment of the present invention, water holes 1022 can be provided on both sides of each scraping and cleaning member 1021, so that when the mop plate 30 is pulled out and pulled in the extrusion cavity A, when it moves toward the mop rod 20 and cleans, excess water can be discharged in time through the provided water holes 1022. When it moves away from the mop rod 20 and cleans, excess water can also be discharged in time through the water holes 1022. This can provide better water squeezing and cleaning effects while improving the efficiency of water squeezing and cleaning.
[0135] In some embodiments, the scraping member 1021 may be at least one of a scraper, a roller, comb teeth, a boss, and a brush.
[0136] In the embodiment of the present invention, several specific implementation structures of the scraping and cleaning member 1021 are provided, among which the scraper and the boss can effectively squeeze out water and clean the wipes on the mop board, the roller is more suitable for only squeezing water from the wipes on the mop board, the comb teeth can better clean the wipes on the mop board than the scraper and the boss, and the brush can better clean the wipes on the mop board than the comb teeth. The user can choose different scraping and cleaning members to clean the mop board according to actual conditions, thereby improving the user experience.
[0137] The present utility model also provides a water squeezing mop. Figure 2 and Figure 3 As shown, the squeeze mop includes:
[0138] mop handle 20;
[0139] a mop plate 30 connected to one end of the mop rod 20;
[0140] Like the squeezing frame 10 in any of the above embodiments, the squeezing frame 10 is slidably sleeved on the mop rod 20 . The squeezing frame 10 slides along the mop rod 20 so that the mop plate 30 is inserted into the squeezing cavity A and moves along the squeezing cavity A.
[0141] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A water squeezing stand, characterized in that: It comprises a supporting frame, a scraping frame and a deformable portion, wherein the supporting frame, the scraping frame and the deformable portion enclose an extrusion cavity; The scraping frame cleans the wiping material on the mop plate inserted into the extrusion cavity, the abutting frame is arranged opposite to the scraping frame, and the two ends of the abutting frame are connected to the two ends of the scraping frame through the deformable part respectively; The deformable portion is used to adjust the distance between the abutting frame and the scraping frame through deformation.
2. The water squeezing stand according to claim 1, characterized in that: When the deformable portion is extended, the distance between the abutting frame and the scraping frame is increased; when the deformable portion is contracted, the distance between the abutting frame and the scraping frame is reduced.
3. The water squeezing stand according to claim 1 or 2, characterized in that: The deformable portion is a foldable portion that contracts by folding.
4. The water squeezing stand according to claim 3, characterized in that: The foldable portion includes a first hinge plate, a second hinge plate and a third hinge plate; The first hinge plate is fixedly arranged at one end of the abutting frame, the first hinge plate is rotatably connected to the third hinge plate via a hinge shaft, the third hinge plate is rotatably connected to the second hinge plate via a hinge shaft, and the second hinge plate is fixedly arranged at one end of the scraping and washing frame; When the foldable part is extended, there is no overlapping area among the first hinge plate, the second hinge plate and the third hinge plate along the direction from the abutting frame to the scraping frame; when the foldable part is folded, the third hinge plate is deformed in the direction of approaching or moving away from the extrusion cavity, so that the first hinge plate and the second hinge plate are close to each other.
5. The water squeezing stand according to claim 3, characterized in that: The foldable portion includes a first hinge plate, a second hinge plate and at least one third hinge plate; The at least one third hinge plate forms a hinge chain, one end of the hinge chain is rotatably connected to the first hinge plate via a hinge shaft, and the other end of the hinge chain is rotatably connected to the second hinge plate via a hinge shaft, the first hinge plate is rotatably arranged at one end of the abutting frame, and the second hinge plate is rotatably arranged at one end of the scraping and washing frame; When the foldable portion is extended, there is no overlapping area among the first hinge plate, the second hinge plate and the at least one third hinge plate along the direction from the abutting frame to the scraping frame; when the foldable portion is folded, the first hinge plate and the second hinge plate rotate toward or away from the extrusion cavity, so that the at least one third hinge plate moves toward or away from the extrusion cavity.
6. The water squeezing stand according to claim 5, characterized in that: When the hinge chain includes a plurality of the third hinge plates, the plurality of the third hinge plates are sequentially connected via hinge shafts.
7. The water squeezing stand according to claim 6, characterized in that: When the foldable portion is folded, the plurality of third hinge plates are overlapped and arranged along a direction from the abutting frame to the scraping frame.
8. The water squeezing stand according to claim 3, characterized in that: The foldable portion is an accordion-shaped folding portion, and the accordion-shaped folding portion includes a plurality of pleats.
9. The squeezing stand according to any one of claims 1, 2, 4 to 8, characterized in that: The squeezing rack further comprises at least one guide assembly; The at least one guide assembly is fixedly arranged on the inner wall of the abutting frame, and cooperates with the top surface of the mop board where no wipe is arranged, for guiding the mop board to move in the extrusion cavity.
10. The water squeezing stand according to claim 9, characterized in that: The guide assembly comprises: A support member is provided on the inner wall of the supporting frame; At least one rotating member is provided on the supporting member. When the mop plate is inserted into the extrusion cavity, the top surface abuts against the rotating member. When the mop plate moves in the extrusion cavity, the rotating member rotates driven by the top surface.
11. The water squeezing stand according to claim 10, characterized in that: At least one guide rail is provided on the top surface of the mop plate, and the rotating member is used to slide along the corresponding guide rail when the mop plate is inserted into the extrusion cavity and moves in the extrusion cavity.
12. The squeezing stand according to any one of claims 1, 2, 4 to 8, characterized in that: At least one scraping member is provided on the inner wall of the scraping frame, which is used for scraping and / or squeezing the wiping material provided on the bottom surface of the mop plate passing through the squeezing cavity.
13. The water squeezing stand according to claim 12, characterized in that: At least one scraping member is provided on the inner wall of the abutting frame for scraping and / or squeezing the wiping material provided on the top surface of the mop board passing through the squeezing cavity. The top surface of the mop board is a side of the mop board opposite to the bottom surface of the mop board.
14. A squeeze mop, characterized in that: include: mop handle; a mop plate connected to one end of the mop rod; The water squeezing frame according to any one of claims 1 to 13, wherein the water squeezing frame is slidably sleeved on the mop rod, and the water squeezing frame slides along the mop rod so that the mop plate is inserted into the squeezing cavity and moves along the squeezing cavity.