Water squeezing frame and water squeezing mop

Through the integrated molded water-squeezing frame structure, the existing water-squeezing frame molds are solved, and efficient production and cleaning effects are improved.

CN223158335UActive Publication Date: 2025-07-29XIAN AICHUANGJIA HELPER INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422395554.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-29
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The mold production process of existing water squeeze racks is cumbersome and expensive, making it difficult to produce efficiently.

Method used

A water-extrusion frame structure is designed, including abutment against the frame body, a scraping and washing frame body and a restraining frame body. The mold is integrally formed to form an extrusion cavity, and a scraper piece is installed on the scraping and washing frame body. The guide assembly cooperates with the mop board to simplify the production process and reduce the mold cost.

Benefits of technology

It realizes efficient production of water-squeezing racks, reduces mold and assembly costs, while improving cleaning effect and service life, and enhancing user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wringing frame and a wringing mop, and relates to the technical field of living utensils, the wringing frame comprises an abutting frame body, a wringing rod and a wringing rod, the scraping and washing frame body and the abutting frame body are arranged in a relatively staggered mode, and a scraping piece is arranged on the scraping and washing frame body; the two ends of each restraining frame body are connected with the abutting frame body and the scraping and washing frame body respectively; an extrusion cavity is defined by the abutting frame body, the scraping and washing frame body and the two restraining frame bodies, and the scraping piece is used for cleaning the mop plate inserted into the extrusion cavity; in the radial direction of the mop rod, no overlapping area exists between the abutting frame body and the scraping and washing frame body. The water squeezing frame is arranged in the radial direction of the mop rod, no overlapping area exists between the abutting frame body and the scraping and washing frame body, and therefore a sliding block does not need to be arranged to form a squeezing cavity in the forming process, the water squeezing frame can be manufactured and demolded directly through two molds capable of being buckled, the manufacturing process is simplified, and the mold cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a water squeezing rack and a water squeezing mop. Background Art

[0002] A mop is a commonly used tool in people's daily life, mainly used for cleaning floors, walls, etc. With the improvement of living standards, people have put forward more and more requirements for the use performance of mops. For example, when using a mop to clean the floor, it is required that the mop can clean the floor cleanly and avoid leaving too much sewage on the floor after cleaning. Therefore, usually after rinsing the mop, the excess water on the mop is generally squeezed out to keep the mop in a semi-dry state before use. In order to avoid hand-washing the mop, a water squeezing rack is usually provided on the mop to squeeze out the excess water on the mop by scraping and washing the mop.

[0003] Currently, for the production of the water squeezing rack, if the water squeezing rack is produced by a mold, since there is an extrusion cavity in the water squeezing rack, the relatively complex structure will make the production process by the mold more cumbersome, and the cost of the mold is also relatively high. Summary of the Utility Model

[0004] The utility model provides a water squeezing rack and a water squeezing mop to solve the problems in the related art that the production process of the water squeezing rack by a mold is more cumbersome and the cost of the mold is also relatively high.

[0005] The utility model provides a water squeezing rack, including:

[0006] A abutting frame body, which is abutted against the mop rod;

[0007] A scraping and washing frame body, which is arranged in relative dislocation with the abutting frame body, and a scraping member is arranged on the scraping and washing frame body;

[0008] Two constraint frame bodies, and both ends of each constraint frame body are respectively connected with the abutting frame body and the scraping and washing frame body;

[0009] The abutting frame body, the scraping and washing frame body and the two constraint frame bodies enclose an extrusion cavity, and the scraping member is used for cleaning the mop board inserted into the extrusion cavity;

[0010] In the radial direction of the mop rod, there is no overlapping area between the abutting frame body and the scraping and washing frame body.

[0011] In the embodiment of the present utility model, the water squeezing rack includes a abutting rack body, a scraping and washing rack body, and two restraining rack bodies. These four parts enclose to form the extrusion cavity of the water squeezing rack. Among them, the abutting rack body abuts against the mop rod, the scraping and washing rack body is arranged in a relative dislocation with respect to the abutting rack body, and the abutting rack body and the scraping and washing rack body are connected by two restraining rack bodies to enclose and form the extrusion cavity. A scraping member is arranged on the scraping and washing rack body to clean the mop plate inserted into the extrusion cavity. Moreover, in the radial direction of the mop rod, there is no overlapping area between the abutting rack body and the scraping and washing rack body. This is to facilitate the integral molding of the abutting rack body and the scraping and washing rack body through a mold, and there is no need to set a slider to form the extrusion cavity during molding. It can be directly manufactured and demolded through two detachable molds, which simplifies the manufacturing process and reduces the mold cost.

[0012] According to a water squeezing rack provided by the present utility model, the abutting rack body, the scraping and washing rack body, and the two restraining rack bodies are integrally molded.

[0013] In the embodiment of the present utility model, compared with the method of separately designing, producing and then assembling the water squeezing rack, the structure of the water squeezing rack designed by the present utility model can be manufactured by integrally molding the abutting rack body, the scraping and washing rack body, and the two restraining rack bodies through a mold, effectively reducing the assembly cost.

[0014] According to a water squeezing rack provided by the present utility model, a guiding component is arranged on one side of the abutting rack body close to the extrusion cavity. The guiding component is used to cooperate with the top surface of the mop plate without wiping objects inserted into the extrusion cavity to guide the mop plate to move in the extrusion cavity.

[0015] In the embodiment of the present utility model, a guiding component is arranged on one side of the abutting rack body close to the extrusion cavity. When the mop plate is inserted into the extrusion cavity, the guiding component can cooperate with the top surface of the mop plate without wiping objects to guide the mop plate to move in the extrusion cavity and clean the wiping objects arranged on the mop plate. Due to the guiding effect of the guiding component, it can guide the mop plate to slide in the extrusion cavity and keep the distance between the mop plate and the water squeezing rack stable, without problems such as the mop plate flipping or tilting in the extrusion cavity, so that the water squeezing rack can generate a uniform extrusion force on the wiping objects on the mop plate. In this way, the water squeezing rack can effectively squeeze the mop plate, thus better completing the water squeezing and cleaning operations and providing a better cleaning effect. At the same time, since the top surface of the mop plate is in a sliding state with the guiding component, the smoothness of the mop plate moving in the extrusion cavity is increased. Therefore, during the process of pulling and pushing the mop plate in the extrusion cavity, the friction and wear between the top surface of the mop plate and the water squeezing rack can be greatly reduced, improving the user experience and extending the service life of the mop plate and the water squeezing rack to a certain extent.

[0016] A water squeezing rack provided by the present utility model, the guiding assembly includes:

[0017] A support member, arranged on the inner wall of the abutting frame body along the insertion direction of the mop board into the extrusion cavity;

[0018] A guiding wheel, rotatably arranged on the support member; the guiding wheel abuts against the top surface of the mop board and rotates driven by the mop board.

[0019] In an embodiment of the present utility model, a specific implementation manner of the guiding assembly is provided. Specifically, the guiding assembly may include a support member and a guiding wheel. The support member is arranged on the inner wall of the abutting frame body along the insertion direction of the mop board into the extrusion cavity for supporting the setting of the guiding wheel. The guiding wheel is rotatably arranged on the support member to abut against the top surface of the mop board and rotate driven by the pulling operation of the mop board. The settings of the support member and the guiding wheel keep the distance between the mop board and the water squeezing rack stable, and problems such as the mop board flipping or tilting in the extrusion cavity will not occur, enabling the water squeezing rack to generate a uniform squeezing force on the wiping object on the mop board. In this way, the water squeezing rack can effectively squeeze the mop board, thus better completing the water squeezing and cleaning operations and providing a better cleaning effect. At the same time, the rotation of the guiding wheel realizes the sliding state between the top surface of the mop board and the guiding assembly, increasing the smoothness of the mop board when moving in the extrusion cavity, greatly reducing the friction and wear between the top surface of the mop board and the water squeezing rack, and on the basis of improving the user experience, it can also extend the service life of the mop board and the water squeezing rack to a certain extent.

[0020] A water squeezing rack provided by the present utility model, the water squeezing rack includes at least two guiding assemblies, and the at least two guiding assemblies are respectively arranged on both sides of the mop rod.

[0021] In an embodiment of the present utility model, at least two guiding assemblies may be arranged on the water squeezing rack. Specifically, these guiding assemblies are respectively arranged on both sides of the mop rod, so that during the pulling operation of the mop board in the extrusion cavity, the supporting forces of the guiding assemblies on both sides of the mop rod on the mop board are symmetric along the mop rod, and further enabling the wiping object on the entire mop board to be evenly stressed on the scraping member of the scraping frame body, facilitating the user to effectively squeeze the mop board, thus better completing the water squeezing and cleaning operations and providing a better cleaning effect.

[0022] A water squeezing rack provided by the present utility model, the restraining frame body is plate-shaped, having two vertically arranged side edges extending along the axial direction of the mop rod and oppositely arranged, and two obliquely arranged side edges arranged in parallel. The two vertically arranged side edges and the two obliquely arranged side edges can form a parallelogram;

[0023] The two vertically arranged side edges are respectively connected to the abutting frame body and the scraping frame body.

[0024] In an embodiment of the present utility model, a specific implementation manner of the restraint frame body is provided. The restraint frame body in the shape of a plate has two vertical side edges extending along the axial direction of the mop rod and arranged oppositely, and two inclined side edges arranged in parallel. A parallelogram is formed between the two vertical side edges and the two inclined side edges. The set shape of the restraint frame body is used to adapt to the relative positional relationship between the abutment frame body and the scrubbing frame body, so that the abutment frame body and the scrubbing frame body can be constrained by the two above-mentioned restraint frame bodies without overlapping regions in the radial direction of the mop rod, and a squeezing cavity is jointly formed, facilitating the cleaning of the mop plate through the formed squeezing cavity.

[0025] According to a water squeezing frame provided by the present utility model, one of the two vertical side edges is connected to the abutment frame body through a horizontal section with a chamfer, and the other vertical side edge is connected to the scrubbing frame body through a horizontal section with a chamfer.

[0026] In an embodiment of the present utility model, in the restraint frame body of the above-mentioned restraint body, one of the two vertical side edges is connected to the abutment frame body through a horizontal section with a chamfer, and the other vertical side edge is connected to the scrubbing frame body through a horizontal section with a chamfer. By setting the connection through the horizontal section with a chamfer, the connection between the restraint frame body and the abutment frame body and the scrubbing frame body can be made more stable, improving the durability of the entire water squeezing frame, extending the service life of the water squeezing frame to a certain extent, and not easily damaging the mop plate for cleaning, thus extending the service life of the mop plate.

[0027] According to a water squeezing frame provided by the present utility model, a socket part is arranged on the abutment frame body for sleeving the water squeezing frame on the mop rod, so that the water squeezing frame is slidably connected to the mop rod.

[0028] In an embodiment of the present utility model, a socket part is also arranged on the abutment frame body, facilitating sleeving the water squeezing frame on the mop rod, making the water squeezing frame slidably connected to the mop rod, and further facilitating the pulling operation of the mop plate connected to the mop rod in the squeezing cavity of the water squeezing frame, thereby cleaning the mop plate.

[0029] According to a water squeezing frame provided by the present utility model, the socket part and the abutment frame body are integrally formed by a mold.

[0030] In an embodiment of the present utility model, the socket part and the abutment frame body can also be integrally formed by a mold, facilitating directly sleeving the integrally formed two on the mop rod. There is no need to set relevant assembly structures between the socket part and the abutment frame body for assembly connection. While the production is simple, the assembly cost can be effectively reduced.

[0031] According to a water squeezing rack provided by the present utility model, the scraping member is a scraper; at least two scrapers are arranged in parallel on the inner wall of the scrubbing rack body, and the directions of the at least two scrapers are perpendicular to the axial direction of the mop rod.

[0032] In an embodiment of the present utility model, the scraping member can be a scraper. At least two scrapers are arranged in parallel on the inner wall of the scrubbing rack body, and the directions of these scrapers are perpendicular to the axial direction of the mop rod, which is convenient for the mop plate to move in the radial direction along the mop rod. The scraper can effectively squeeze the mop plate, so as to better complete the water squeezing and cleaning operations and provide a better cleaning effect.

[0033] The present utility model also provides a water squeezing mop, including:

[0034] A mop rod;

[0035] A mop plate, connected to one end of the mop rod;

[0036] The water squeezing rack as described in any one of the above embodiments, and the water squeezing rack is sleeved on the mop rod. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] In order to more clearly illustrate the technical solutions in the present utility model or related technologies, the following will briefly introduce the drawings required for use in the description of the embodiments or related technologies. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0038] Figure 1 It is one of the schematic structural diagrams of the water squeezing rack provided by the present utility model;

[0039] Figure 2 It is the schematic structural diagram of the water squeezing mop provided by the present utility model;

[0040] Figure 3 It is the schematic structural diagram of the water squeezing rack on the water squeezing mop in the related technology;

[0041] Figure 4 It is the second schematic structural diagram of the water squeezing rack provided by the present utility model;

[0042] Figure 5 It is the third schematic structural diagram of the water squeezing rack provided by the present utility model.

[0043] REFERENCE NUMERALS:

[0044] 10: Water squeezing rack; 20: Mop rod; 30: Mop plate;

[0045] 101: Abutting rack body;

[0046] 1011: Socket part;

[0047] 102: Scrubbing frame; 1021 Scrubbing part;

[0048] 103: Constraint frame;

[0049] 104: Guide component; 1041: Support part; 1042: Guide wheel;

[0050] A: Extrusion cavity; B: Vertical side; C: Inclined side. Detailed implementation manner

[0051] To make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions in the present utility model will be clearly and completely described below with reference to the accompanying drawings in the present utility model. Apparently, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art without making creative efforts based on the embodiments in the present utility model fall within the protection scope of the present utility model.

[0052] In the description of the present utility model, it should be clear that the terms "vertical", "lateral", "longitudinal", "front", "rear", "left", "right", "up", "down", "horizontal", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. This is only for the convenience of describing the present utility model and does not mean that the indicated device or element must have a specific orientation or position. Therefore, it should not be construed as a limitation to the present utility model.

[0053] In the description of the present utility model, it should also be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection; it can be directly connected, or indirectly connected through an intermediate medium. It can also be the internal communication of two elements. It can be a wireless connection or a wired connection. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0054] In addition, the technical features involved in different embodiments of the present utility model described below can be combined with each other as long as they do not conflict with each other.

[0055] The water squeezing frame and water squeezing mop of the present utility model will be described below with reference to the accompanying drawings.

[0056] Figure 1 is one of the structural schematic diagrams of the water squeezing frame provided by the present utility model, Figure 2 is the structural schematic diagram of the water squeezing mop provided by the present utility model, combined with Figure 1and Figure 2 As shown in the figure, the wringer frame 10 includes:

[0057] A butt frame 101, which is leaned against the mop rod 20;

[0058] A scraping and washing frame 102, which is arranged in relative dislocation with the butt frame 101, and a scraping member 1021 is arranged on the scraping and washing frame 102;

[0059] Two restraint frames 103, and both ends of each restraint frame 103 are respectively connected with the butt frame 101 and the scraping and washing frame 102;

[0060] The butt frame 101, the scraping and washing frame 102 and the two restraint frames 103 enclose an extrusion cavity A, and the scraping member 1021 is used for cleaning the mop plate 30 inserted into the extrusion cavity A;

[0061] In the radial direction of the mop rod 20, there is no overlapping area between the butt frame 101 and the scraping and washing frame 102.

[0062] In the related art, Figure 3 is a structural schematic diagram of a wringer frame on a wringing mop in the related art. As shown in Figure 3 the figure, the mop includes a mop rod, a mop plate and a wringer frame. The wringer frame needs to be provided with a wringing cavity for accommodating the mop plate to perform a pulling operation therein, so as to clean the mop plate.

[0063] Regarding the production of the wringer frame, when making the wringer frame through a mold, it is usually produced by two mutually buckled molds. However, due to the existence of the extrusion opening, a slider needs to be arranged between the two molds. After the production is completed, the slider is first pulled out and then the two molds are opened. However, the above production process has many steps and the mold cost is also relatively high.

[0064] If in order to reduce the mold cost, the wringer frame can be designed in a split manner and made by assembling different components produced separately. However, this will result in a relatively high assembly cost, and thus the production cost of the wringer frame is relatively high.

[0065] In view of the above problems, in the embodiments of the present utility model, the water squeezing rack includes a abutting rack body, a scraping and washing rack body, and two restraining rack bodies. The abutting rack body abuts against the mop rod. The two ends of the scraping and washing rack body are respectively arranged in relative dislocation with the abutting rack body through one restraining rack body (a total of two restraining rack bodies). And in the radial direction of the mop rod, there is no overlapping area between the abutting rack body and the scraping and washing rack body. The abutting rack body, the scraping and washing rack body, and the two restraining rack bodies enclose an extrusion cavity. Such a setting facilitates the molding of the water squeezing rack through a mold, and there is no need to set a slider to form the extrusion cavity. It can be directly manufactured and demolded through two mold halves that can be buckled together, simplifying the manufacturing process and reducing the mold cost.

[0066] It should be noted that a scraping member is also provided on the scraping and washing rack body. When the mop board is inserted into the extrusion cavity for cleaning, the side of the mop board provided with the wiping material faces the side of the scraping member provided on the scraping and washing rack body. The scraping member can squeeze and clean the wiping material provided on the mop board, while the side of the mop board without the wiping material faces the side of the abutting rack body.

[0067] In the embodiments of the present utility model, the water squeezing rack includes an abutting rack body, a scraping and washing rack body, and two restraining rack bodies. These four parts enclose the extrusion cavity of the water squeezing rack. Among them, the abutting rack body abuts against the mop rod. The scraping and washing rack body is arranged in relative dislocation with the abutting rack body. The abutting rack body and the scraping and washing rack body are connected by two restraining rack bodies to enclose an extrusion cavity. A scraping member is provided on the scraping and washing rack body to clean the mop board inserted into the extrusion cavity. And in the radial direction of the mop rod, there is no overlapping area between the abutting rack body and the scraping and washing rack body. This is to facilitate the integral molding of the abutting rack body and the scraping and washing rack body through a mold, and there is no need to set a slider to form the extrusion cavity during molding. It can be directly manufactured and demolded through two mold halves that can be buckled together, simplifying the manufacturing process and reducing the mold cost.

[0068] In some embodiments, the abutting rack body 101, the scraping and washing rack body 102, and the two restraining rack bodies 103 can be realized through an assembly method.

[0069] In some embodiments, as Figure 1 shown, the abutting rack body 101, the scraping and washing rack body 102, and the two restraining rack bodies 103 can also be integrally formed.

[0070] Specifically, the abutting rack body 101, the scraping and washing rack body 102, and the two restraining rack bodies 103 can be integrally formed through a mold.

[0071] In the embodiments of the present utility model, compared with the method of separately designing, producing, and then assembling the water squeezing rack, the structure of the water squeezing rack designed by the present utility model can be manufactured by integrally forming the abutting rack body, the scraping and washing rack body, and the two restraining rack bodies through a mold, effectively reducing the assembly cost.

[0072] In some embodiments, as Figure 1 shown, on one side of the abutting frame body 101 close to the extrusion cavity A, a guiding component 104 is provided, and the guiding component 104 is used to cooperate with the top surface of the mop plate without wiping objects inserted into the extrusion cavity A to guide the mop plate to move in the extrusion cavity A.

[0073] Specifically, a guiding component is provided on one side of the abutting frame body close to the extrusion cavity A, so that the abutting frame body can contact the top surface of the mop plate without wiping objects inserted into the extrusion cavity A through the guiding component, and the guiding component cooperates with the top surface to guide the mop plate to move in the extrusion cavity A.

[0074] In some embodiments, on the top surface of the mop plate without wiping objects, a sliding groove adapted to the guiding component can be provided to facilitate the relative sliding of the guiding component in the sliding groove, and can more effectively guide the mop plate to move smoothly in the extrusion cavity A, so as to effectively clean the mop plate.

[0075] In the embodiment of the present utility model, a guiding component is provided on one side of the abutting frame body close to the extrusion cavity. When the mop plate is inserted into the extrusion cavity, the guiding component can cooperate with the top surface of the mop plate without wiping objects to guide the mop plate to move in the extrusion cavity and clean the wiping objects provided on the mop plate. Since the guiding component has a certain guiding effect, it can guide the mop plate to slide in the extrusion cavity, and can keep the distance between the mop plate and the water squeezing frame stable, and problems such as the mop plate flipping or tilting in the extrusion cavity will not occur, so that the water squeezing frame can generate a uniform squeezing force on the wiping objects on the mop plate. In this way, the water squeezing frame can effectively squeeze the mop plate, so as to better complete the water squeezing and cleaning operations and provide a better cleaning effect; at the same time, since the top surface of the mop plate and the guiding component are in a sliding state, the smoothness of the mop plate moving in the extrusion cavity is increased. Therefore, during the process of pulling and pushing the mop plate in the extrusion cavity, the friction and wear between the top surface of the mop plate and the water squeezing frame can be greatly reduced, which can not only improve the user experience, but also extend the service life of the mop plate and the water squeezing frame to a certain extent.

[0076] In some embodiments, as Figure 1 shown, the water squeezing frame 10 includes at least two guiding components 104, and the at least two guiding components 104 are respectively arranged on both sides of the mop rod.

[0077] It should be noted that Figure 1 it is shown by taking the water squeezing frame 10 including two guiding components 104 and the two guiding components 104 being respectively arranged on both sides of the mop rod as an example, and the present utility model is not limited thereto.

[0078] In the embodiments of the present utility model, at least two guiding components can be arranged on the water squeezing rack. Specifically, these guiding components are respectively arranged on both sides of the mop rod, so that during the process of the mop board being pulled in and out of the squeezing cavity, the supporting forces of the guiding components on both sides of the mop rod on the mop board are relatively symmetric along the mop rod. Furthermore, the wiping objects on the entire mop board are evenly stressed on the scraping parts of the scraping rack body, facilitating the user to effectively squeeze the mop board, thereby better completing the water squeezing and cleaning operations and providing a better cleaning effect.

[0079] In some embodiments, at least two guiding components can be symmetrically arranged on both sides of the mop rod with the mop rod as the axis of symmetry, facilitating the symmetry of the supporting forces of the guiding components on the mop board, thereby further improving the cleaning effect of the mop board.

[0080] In some embodiments, as Figure 1 shown, it can be set that the water squeezing rack 10 includes two guiding components 104, and the two guiding components 104 are symmetrically arranged on both sides of the mop rod with the mop rod as the axis of symmetry. While ensuring the cleaning effect of the mop as much as possible, the cost of the water squeezing rack can be saved as much as possible.

[0081] In some embodiments, as Figure 1 shown, the guiding component 104 includes:

[0082] A support member 1041, arranged on the inner wall of the abutting rack body 101 along the insertion direction of the mop board into the squeezing cavity A;

[0083] A guiding wheel 1042, rotatably arranged on the support member 1041; the guiding wheel 1042 abuts against the top surface of the mop board and rotates under the drive of the mop board.

[0084] Specifically, the guiding component 104 can include a support member 1041 and a guiding wheel 1042. Among them, the support member 1041 is arranged on the inner wall of the abutting rack body 101 along the insertion direction of the mop board into the squeezing cavity A, used to support and at least one guiding wheel 1042 is arranged thereon. The guiding wheel 1042 is rotatably arranged on the support member 1041. Specifically, the rotation axis of the guiding wheel 1042 is arranged in the corresponding shaft hole on the side surface of the support member 1041. These shaft holes can penetrate the side surface of the support member 1041 or not penetrate the side surface of the support member 1041, as long as it can support the rotation axis of the guiding wheel 1042 to be arranged therein. The present utility model does not limit this.

[0085] It should be noted that, Figure 1Taking the middle squeezing water rack including two symmetrically arranged guiding components 104 as an example, and each of the two guiding components 104 includes a support member 1041 and two guiding wheels 1042 rotatably arranged thereon, is only one implementable way, and the present utility model does not limit this.

[0086] In an embodiment of the present utility model, a specific implementation manner of the guiding component is provided. Specifically, the guiding component may include a support member and a guiding wheel. The support member is arranged on the inner wall of the abutting frame body along the insertion direction of the mop plate into the extrusion cavity for supporting the arrangement of the guiding wheel. The guiding wheel is rotatably arranged on the support member and is used to abut against the top surface of the mop plate and rotate driven by the pulling operation of the mop plate. The arrangement of the support member and the guiding wheel keeps the distance between the mop plate and the squeezing water rack stable, and problems such as the mop plate flipping or tilting in the extrusion cavity will not occur, so that the squeezing water rack can generate a uniform squeezing force on the wiping object on the mop plate. In this way, the squeezing water rack can effectively squeeze the mop plate, thereby better completing the squeezing water and cleaning operations and providing a better cleaning effect. At the same time, the rotation of the guiding wheel realizes the sliding state between the top surface of the mop plate and the guiding component, increases the smoothness when the mop plate moves in the extrusion cavity, can greatly reduce the friction and wear between the top surface of the mop plate and the squeezing water rack, and on the basis of improving the user experience, can also extend the service life of the mop plate and the squeezing water rack to a certain extent.

[0087] In some embodiments, Figure 4 is the second structural schematic diagram of the squeezing water rack provided by the present utility model. As Figure 4 shown, the constraint frame body 103 is in a plate shape and has two vertically arranged side edges B extending along the axial direction of the mop rod and opposite to each other, and two obliquely arranged side edges C arranged in parallel. The two vertically arranged side edges B and the two obliquely arranged side edges C can form a parallelogram.

[0088] The two vertically arranged side edges B are respectively connected to the abutting frame body 101 and the scraping and washing frame body 102.

[0089] In an embodiment of the present utility model, a specific implementation manner of the constraint frame body 103 is provided. The constraint frame body 103 is in a plate shape and has two vertically arranged side edges B extending along the axial direction of the mop rod and opposite to each other, and two obliquely arranged side edges C arranged in parallel. A parallelogram is formed between the two vertically arranged side edges B and the two obliquely arranged side edges C. The shape setting of the constraint frame body 103 is mainly to adapt to the relative position relationship between the abutting frame body and the scraping and washing frame body, so that the abutting frame body 101 and the scraping and washing frame body 102 can be constrained by the two above-mentioned constraint frame bodies 103 without overlapping regions in the radial direction of the mop rod, and together form an extrusion cavity, facilitating the cleaning of the mop plate through the formed extrusion cavity.

[0090] In some embodiments, as Figure 4 shown, one of the two vertical sides B is connected to the abutting frame body 101 through a horizontal section D with a chamfer, and the other vertical side B is connected to the scrubbing frame body 102 through a horizontal section E with a chamfer.

[0091] In the embodiments of the present utility model, one of the two vertical sides B of the plate-shaped constraint body 103 is connected to the abutting frame body 101 through a horizontal section D with a chamfer, and the other vertical side is connected to the scrubbing frame body 102 through a horizontal section E with a chamfer. By setting the horizontal section with a chamfer for connection, the connection between the constraint frame body and the abutting frame body and the scrubbing frame body can be made more stable, improving the durability of the entire water squeezing frame, extending the service life of the water squeezing frame to a certain extent, and not easily damaging the mop plate for cleaning, thus extending the service life of the mop plate.

[0092] In some embodiments, as Figure 2 shown, a socket 1011 is provided on the abutting frame body 101 for sleeving the water squeezing frame 10 on the mop rod 20, so that the water squeezing frame 10 is slidably connected to the mop rod 20.

[0093] In the embodiments of the present utility model, a socket 1011 is further provided on the abutting frame body 101, facilitating sleeving the water squeezing frame 10 on the mop rod through the socket 1011. The socket 1011 is slidably connected to the mop rod, and thus the water squeezing frame can be slidably connected to the mop rod, facilitating the pulling operation of the mop plate connected to the mop rod within the extrusion cavity of the water squeezing frame, thereby cleaning the mop plate.

[0094] In some embodiments, the socket can be connected to the abutting frame body by means of assembly.

[0095] In other embodiments, the socket 1011 and the abutting frame body 101 are integrally formed by a mold.

[0096] In the embodiments of the present utility model, the socket and the abutting frame body can also be integrally formed by a mold, facilitating directly sleeving the integrally formed two on the mop rod. There is no need to set relevant assembly structures between the socket and the abutting frame body for assembly connection. While the production is simple, the assembly cost can be effectively reduced, and thus the overall cost of the water squeezing frame and even the water squeezing mop is reduced.

[0097] In some embodiments, Figure 5 is the third structural schematic diagram of the water squeezing frame provided by the present utility model. As Figure 5As shown, the scraping member 1021 is a scraper; at least two scrapers are arranged in parallel on the inner wall of the scraping and washing frame body 102, and the directions of the at least two scrapers are perpendicular to the axial direction of the mop rod 20.

[0098] In some other embodiments, at least two scrapers can be arranged obliquely on the inner wall of the scraping and washing frame body 102 at a certain angle, which is convenient for better squeezing and cleaning the mop plate 30, and improves the cleaning effect.

[0099] In the embodiment of the present utility model, the scraping member can be a scraper, and at least two scrapers are arranged in parallel on the inner wall of the scraping and washing frame body. The directions of these scrapers are perpendicular to the axial direction of the mop rod. When the mop plate moves along the radial direction of the mop rod, the scraper can effectively squeeze the mop plate, so as to better complete the water squeezing and cleaning operations, and provide a better cleaning effect.

[0100] The embodiment of the present utility model also provides a wringing mop, as Figure 2 shown, the wringing mop includes:

[0101] A mop rod 20;

[0102] A mop plate 30, connected to one end of the mop rod 20;

[0103] The wringing frame 10 as described in any of the above embodiments, and the wringing frame 10 is sleeved on the mop rod 20.

[0104] Specifically, the wringing mop provided by the present utility model includes the mop rod 20, the mop plate 30 and the wringing frame 10 in any of the above embodiments. One end of the mop rod 20 is connected to the mop plate 30 to realize the use of a conventional mop. A wringing frame 10 is also sleeved on the mop rod 20. The wringing frame 10 can at least include the abutting frame body 101, the scraping and washing frame body 102 and two constraint frame bodies 103 mentioned above, and can also include at least two guiding components 104. The specific implementation manner of the constraint frame body 103 is also applicable here, and the specific implementation effect refers to any of the above embodiments of the specific description of the wringing frame.

[0105] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present utility model, rather than to limit it; although the present utility model has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present utility model.

Claims

1. A water squeezing stand, characterized in that: include: Abutting against the frame, and resting against the mop rod; A scraping frame is arranged in a relatively staggered manner with respect to the abutting frame, and a scraping member is provided on the scraping frame; Two restraining frames, each of which has two ends connected to the abutting frame and the scraping frame respectively; The abutting frame, the scraping frame and the two restraining frames enclose an extrusion cavity, and the scraping member is used to clean the mop plate inserted into the extrusion cavity; In the radial direction of the mop rod, there is no overlapping area between the abutting frame and the scraping frame.

2. The water squeezing rack according to claim 1, wherein The abutting frame, the scraping frame and the two restraining frames are integrally formed.

3. The water squeezing rack according to claim 1 or 2, characterized in that, A guide assembly is provided on one side of the abutting frame close to the extrusion cavity, and the guide assembly is used to cooperate with the top surface of the mop board inserted into the extrusion cavity without the wiper, to guide the mop board to move in the extrusion cavity.

4. The water squeezing stand according to claim 3, characterized in that: The guide assembly comprises: a support member, provided on the inner wall of the abutting frame along an insertion direction of the mop plate into the extrusion cavity; The guide wheel is rotatably arranged on the support member; the guide wheel abuts against the top surface of the mop plate and rotates under the drive of the mop plate.

5. The water squeezing stand according to claim 4, characterized in that: The water squeezing rack includes at least two guide assemblies, and the at least two guide assemblies are respectively arranged on both sides of the mop rod.

6. The water squeezing rack according to any one of claims 1, 2, 4 or 5, characterized in that The restraining frame is plate-shaped, having two vertical sides extending along the axial direction of the mop rod and arranged opposite to each other, and two parallel inclined sides, the two vertical sides and the two inclined sides being able to form a parallelogram; The two vertical sides are respectively connected to the abutting frame and the scraping frame.

7. The water squeezing rack according to claim 6, characterized in that, One of the two vertical side edges is connected to the abutting frame through a horizontal section with a chamfer, and the other vertical side edge is connected to the scraping frame through a horizontal section with a chamfer.

8. The water squeezing rack according to any one of claims 1, 2, 4, 5 or 7, characterized in that, The abutting frame is provided with a sleeve member for sleeve-connecting the water squeezing frame onto the mop rod so that the water squeezing frame and the mop rod are slidably connected.

9. The squeezing stand according to any one of claims 1, 2, 4, 5 or 7, characterized in that: The scraping member is a scraper; at least two scrapers are arranged in parallel on the inner wall of the scraping and washing frame, and the directions of the at least two scrapers are perpendicular to the axial direction of the mop rod.

10. A wringing 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 9, wherein the water squeezing frame is sleeved on the mop rod.