Mop washing and squeezing integrated device
By designing an integrated mop washing and squeezing device that combines scrubbing, squeezing, and rinsing mechanisms, the problem of cumbersome mop cleaning in existing technologies has been solved, achieving automated and efficient mop cleaning, and is suitable for various mop models.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-27
- Publication Date
- 2026-03-27
AI Technical Summary
Existing mop cleaning devices cannot simultaneously rub and squeeze the mop head, and are not suitable for various mop models, resulting in cumbersome and time-consuming cleaning processes that waste water.
A mop washing and squeezing integrated device was designed, which includes a scrubbing mechanism, a squeezing mechanism, a rinsing mechanism and a water dispensing mechanism. Through the combination of mechanical structure and electronic control, the mop is automatically scrubbled and squeezed. A 90° fan-shaped nozzle is used to improve rinsing efficiency, and an infrared sensor controls the sequence of actions.
It automates and improves the efficiency of mop cleaning, simplifies the operation process, reduces water waste, and is suitable for various mop models.
Smart Images

Figure CN224039150U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a mop washing and extruding integrated device belongs to the technical field of cleaning device. BACKGROUND
[0002] Cleaning is a relatively cumbersome thing when using the traditional mop, and it is time-consuming and laborious and the waste of water resources is more serious, and most of the mop washing and water squeezing devices on the market are not suitable for various mops, the prior art such as patent publication No. CN111387894A discloses a flat mop cleaning device, which can realize the cleaning of the mop, but cannot wring the mop and cannot realize the extrusion of the mop through an automatic structure, so it is necessary to design a washing and extruding integrated machine suitable for various mainstream mops on the market, which combines washing and extrusion into one machine and improves the automation and efficiency of cleaning through modular breakthrough. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model aims at providing a mop washing and extruding integrated device to solve the problems in the prior art.
[0004] The mop washing and extruding integrated device, comprising a body, a rubbing mechanism, an extruding mechanism, a washing mechanism and a water releasing mechanism are arranged in the body, the rubbing mechanism is located below the inside of the body and comprises two parallel rubbing plates, the two parallel rubbing plates are arranged in staggered manner, the rubbing plates are connected with a rubbing drive mechanism, the rubbing drive mechanism controls the short-distance relative movement of the rubbing plates to rub the mop back and forth, the extruding mechanism comprises a fixed extruding cylinder and a movable extruding cylinder, the fixed extruding cylinder is installed on the upper surface of the body, the movable extruding cylinder is connected with an extruding pedal through a support frame, the movable extruding cylinder is controlled to move back and forth by artificially stepping the extruding pedal, and the extruding action of the mop is realized by cooperating with the rotation of the fixed extruding cylinder, the washing mechanism is located above the rubbing mechanism to realize the washing of the mop, and the water releasing mechanism is located at the bottom of the body and communicates with the body to realize water releasing.
[0005] Further, the rubbing mechanism further comprises a linear bearing, a rubbing plate base, a light shaft and a vertical light shaft support frame, the rubbing plate is nested with the linear bearing through the rubbing plate base, the rubbing plate is fixed to the bottom surface of the body through the vertical light shaft support frame in cooperation with the light shaft, and the rubbing plate base is connected with the rubbing drive mechanism through a connecting rod.
[0006] Further, the rubbing drive mechanism comprises a driving bevel gear and a driven bevel gear in engagement, the driving bevel gear and the driven bevel gear are connected with a driving motor, and the driving motor controls the movement to rub the mop back and forth.
[0007] Further, the extrusion mechanism further comprises a DC speed reducer, a spring and a limit switch, two fixed extrusion cylinders are installed on the upper surface of the machine body and are connected with the DC speed reducer through a shaft coupling, the support frame is 90°, the two ends of the movable extrusion cylinder are connected with the extrusion pedal through the support frame, one end of the spring is fixed on the profile on the two sides of the upper part of the machine body, and the other end is hung on the extension rod of the extrusion pedal, and the support frame is in contact with the straight handle of the limit switch in the natural state.
[0008] Further, the flushing mechanism comprises 90° fan-shaped nozzles, a water inlet pipe, a connecting water pipe, an electromagnetic valve and a connecting pipe, a plurality of 90° fan-shaped nozzles are connected with the water pipe through the connecting pipe, the 90° fan-shaped nozzles are uniformly distributed on the front and rear sides in the machine body, and the electromagnetic valve is located at the bottom of the machine body and controls the on-off of water flow.
[0009] Further, a variable diameter connector is installed on the two sides of the electromagnetic valve, and the variable diameter connector connects the water inlet pipe and the connecting water pipe.
[0010] Further, the water discharge mechanism comprises a drain pipe, a drain pressing pedal, a filter basket upper member, a filter basket lower member, a drain tank, a control hose, a tab and a fixed bolt, the filter basket upper member and the filter basket lower member constitute a drain filter basket and are arranged in the drain tank, the filter basket lower member is tightly combined with the drain tank, the middle part of the filter basket upper member is a closed surface, the outer side of the closed surface is an arc surface, the arc surface is provided with uniform gaps, the filter basket lower member is provided with a drain hole at a position corresponding to the middle part of the filter basket upper member, the drain pipe is connected below the drain tank, the fixed bolt passes through the filter basket lower member and is connected below the filter basket upper member, one end of the tab is combined with the lower side of the fixed bolt, the other end is connected with the control hose, the control hose is connected with the drain pressing pedal, a traction steel wire is arranged in the control hose to control the tab to act upwardly, the filter basket upper member is lifted up through the fixed bolt, and the drain is opened.
[0011] Further, the infrared sensor is fixed to one side of the machine body.
[0012] Further, the control panel is connected with the rubbing mechanism, the extrusion mechanism and the flushing mechanism through the relays.
[0013] Further, the switching power supply is 220V to 12V, and supplies power to the whole device.
[0014] Compared with the prior art, the utility model has the advantages of:
[0015] The utility model discloses a mop flush extrusion integrated device, the device is the integration of the cleaning mop step, and the mop flush, extrusion is combined together, and the cleaning work is convenient and simple, and is easy. The rubbing structure that is provided in the device, the mobile extrusion cylinder and the fixed extrusion cylinder that contain, are connected the pedal through the support frame, and the artificial pedal control mobile extrusion cylinder is close to the contact of fixed extrusion cylinder, and the mop is extruded, and the spring can make the mobile cylinder automatic reset, when the mobile extrusion cylinder is far from the limit switch, the motor starts movement, and the fixed extrusion cylinder starts rotating. Can realize the operation of mop rubbing and extrusion integration, and the cleaning efficiency of device is improved.
[0016] Through infrared sensor provides the inductive signal to let the singlechip signal control relay on-off control related action occurs the electric appliance sequence produces action, sequence stops action, and the mechanical structure is combined with the electric control part and completes the whole process of washing mop.
[0017] The flushing structure of the device adopts a 90-degree sector-shaped spray head, which can fully wet the mop washing surface.
[0018] The device is provided with a control panel, and the 51 single-chip microcomputer contained therein realizes a time delay effect, so that the flushing structure moves first, and the rubbing structure operates, thereby improving the automation degree of the device. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the perspective view of the whole structure of the utility model;
[0020] Figure 2 It is the top view of the whole structure of the utility model;
[0021] Figure 3 It is the bottom view of the whole structure of the utility model;
[0022] Figure 4 It is the side view of the whole structure of the utility model;
[0023] Figure 5 It is the structure diagram of the first orientation of the rubbing mechanism in the utility model;
[0024] Figure 6 It is the structure diagram of the second orientation of the rubbing mechanism in the utility model;
[0025] Figure 7 It is the structure diagram of the partial view of the rubbing mechanism in the utility model;
[0026] Figure 8 It is the structure diagram of the extrusion mechanism in the utility model;
[0027] Figure 9 It is the structure diagram of the flushing mechanism in the utility model;
[0028] Figure 10 is a structure diagram of the water releasing mechanism in the utility model;
[0029] Figure 11 is a sectional view of the water releasing mechanism in the utility model;
[0030] In the figure: 1, moving extrusion cylinder; 2, 90 ° sector-shaped spray head; 3, connecting water pipe; 4, connecting pipe fitting; 5, rubbing plate; 6, machine body; 7, extrusion cylinder backplate; 8, deep groove ball bearing; 9, limit switch; 10, support frame; 11, direct current speed reduction motor; 12, infrared sensor; 13, spring; 14, drain pipe; 15, drainage pressing pedal; 16, fixed extrusion cylinder right support seat; 17, fixed extrusion cylinder; 18, extrusion pedal; 19, cylindrical roller bearing; 20, water flowing plate; 21, fixed extrusion cylinder left support seat; 22, motor support; 23, connecting rod; 24, driving bevel gear; 25, upper component of filtering basket; 26, vertical optical shaft support frame; 27, control board; 28, switching power supply; 29, direct current planetary speed reduction motor; 30, reducing joint; 31, electromagnetic valve; 32, water inlet pipe; 33, optical shaft; 34, linear bearing; 35, rubbing plate base with convex shaft; 36, driven bevel gear; 37, bevel gear fixing frame; 38, rubbing plate base; 39, sink; 40, control hose; 41, push piece; 42, fixed bolt; 43, lower component of filtering basket. DETAILED DESCRIPTION
[0031] The utility model will be further explained in connection with the drawings and examples:
[0032] Example 1:
[0033] As Figure 1As shown, the mop washing, extruding and flushing integrated device, including the body 6, the body 6 is equipped with washing mechanism, extruding mechanism, flushing mechanism and water discharge mechanism, the washing mechanism is located below the body 6 inside, including two parallelly arranged washboard 5, two parallelly arranged washboard 5 staggered discharge, the washboard 5 is connected with washing drive mechanism, the relative movement of short distance of washboard 5 is controlled by washing drive mechanism, and the mop is washed back and forth, the extruding mechanism includes fixed extruding cylinder 17 and mobile extruding cylinder 1, the fixed extruding cylinder 17 is installed on the upper surface of the body 6, the mobile extruding cylinder 1 is connected with extruding pedal 18 through support frame 10, and the extruding pedal 18 is controlled by artificial stepping to move the mobile extruding cylinder 1 back and forth, and the extruding action of mop is realized by cooperating with the rotation of fixed extruding cylinder 17, the flushing mechanism is located above the washing mechanism for realizing the flushing of mop, and the water discharge mechanism is located at the bottom of the body 6 and is communicated with the body 6 for realizing water discharge.The body 6 is built by 2020 aluminum profile, 4mm acrylic plate, the frame of 10mm acrylic plate on the bottom surface, the aluminum profile is fixed by 2020 angle code right angle 90 degree profile fixing piece, T-shaped nut and matched bolt, for the place with interference, the built-in angle groove aluminum profile connecting piece is connected, the recessed end locking screw internal hexagonal head M5 screw is fixed, the three-dimensional right-angle connecting piece is selected to be connected on the four top corners, and the recessed end locking screw internal hexagonal head M5 screw is also fixed, and the whole machine uses glass cement to ensure its airtightness.
[0034] As Figure 2 shown, the positions of the two washboards 5 are parallel to each other, and the filter basket 25 is installed at the position of the water outlet and is connected with the driving bevel gear 24 through the connecting rod 23.
[0035] As Figure 3 shown, the installation positions of the control panel 27 at the bottom, the 12V switching power supply 28 and the electromagnetic valve 31, a supporting plate is installed at the bottom, the distance from the bottom plate is controlled through the bolt and nut, so that the control panel 27, the switching power supply 28 and the electromagnetic valve 31 can be close to the bottom plate, the control panel 27 is a PCB board, the control panel 27, the voltage reduction module and the relay module are welded together through soldering, forming a system that can control the whole device; the switching power supply 28 realizes 220V to 12V, and supplies power to the whole device.
[0036] As Figure 4 shown, the infrared sensor 12 is installed on the right side of the device, the sensing lamp of the infrared sensor 12 passes through two adaptive holes on the body wall, can be explored into the interior, and the sensor body is adhered to the place where other workpieces do not interfere with each other by using hot melt adhesive, the limit switch 9 is close to the support frame 10, and the support frame 10 extrudes the straight handle of the limit switch 9.
[0037] As Figure 1 and Figure 8As shown, the extrusion mechanism is composed of a moving extrusion cylinder 1, a deep groove ball bearing 8, a limit switch 9, a support frame 10, a DC speed reducer motor 11, a spring 13, a fixed extrusion cylinder right support seat 16, a fixed extrusion cylinder 17, an extrusion pedal 18, a fixed extrusion cylinder left support seat 21, and a motor support 22. Water flow plates 20 are arranged below the two fixed extrusion cylinders 17. The moving extrusion cylinder 1 is nested in the support frame 10 through the deep groove ball bearing 8, which can effectively reduce the friction when the moving extrusion cylinder 1 rotates. The support frame 10 is installed on the profile of the bottom support through bolts, and the connection with the extrusion pedal 18 is realized through rivets. One end of the spring 13 is fixed on the profiles on both sides of the upper part of the machine body 6, and the other end is hung on the extension rod of the extrusion pedal 18, which can make the moving extrusion cylinder 1 return automatically after work, drive the fixed extrusion cylinder 17 to rotate counterclockwise, and make the fixed extrusion cylinder 17 give the mop an upward extrusion force to extrude the mop, which has a significant water extrusion effect, saves time and effort, and the two fixed extrusion cylinders 17 are installed on the machine body 6 through the fixed extrusion cylinder right support seat 16 and the fixed extrusion cylinder left support seat 21 respectively. Cylindrical roller bearings 19 are arranged at the positions where the two fixed extrusion cylinders 17 and the fixed extrusion cylinder right support seat 16 and the fixed extrusion cylinder left support seat 21 are installed. The motor support 22 provides support for the DC speed reducer motor 11. The support frame 10 extrudes the straight handle of the limit switch 9. The limit switch 9 is connected to the control panel 27 through wires. When the moving extrusion cylinder 1 moves away, the straight handle of the limit switch 9 is loosened, the signal is transmitted to the control panel 27, the relay is closed, the DC speed reducer motor 11 moves, and the fixed extrusion cylinder 17 rotates to realize the extrusion action.
[0038] After the mop is washed, one side of the mop is leaned against the fixed extrusion cylinder 17, and the foot steps on the extrusion pedal 18. When the support frame 10 moves away from the limit switch 9, the limit switch 9 moves, transmits the signal to the control panel 27, the relay is attracted, power supply is realized, the fixed extrusion cylinder 17 rotates counterclockwise, and when the foot steps on the extrusion pedal 18 to move the moving extrusion cylinder 1 close to the fixed extrusion cylinder 17, the mutual approach of the two cylinders realizes the extrusion action. After the extrusion is completed, the support frame 10 and the moving extrusion cylinder 1 are reset by the spring 13, and the limit switch 9 is stopped from being powered.
[0039] As Figure 9As shown, the flushing mechanism is provided with 5 90° fan-shaped nozzles 2, connecting pipes 3, connecting pipe fittings 4, reducing adapters 30, electromagnetic valves 31, water inlet pipes 32, the 90° fan-shaped nozzles 2 are connected by using the connecting pipe fittings 4 and the 9.52 mm connecting pipes 3, the nut of the connecting pipe fitting 4 is loosened, the connecting pipe 3 is inserted and the nut is tightened to complete the connection, which is uniformly distributed in the front and rear sides of the body and is at the same height as the washing board 5; the suitable reducing adapters 30 are installed on both sides of the electromagnetic valve 31 to connect the water inlet pipe 32 and the connecting pipe 3, the 90° fan-shaped nozzles 2 can greatly improve the flushing range and reduce the use amount of the nozzles, the connecting pipes 3 can improve the pressure resistance and avoid water pipe burst caused by high pressure, the electromagnetic valves 31 control the on-off of the water flow and are connected to the control panel 27 by wires;
[0040] The water source is provided by connecting the water inlet pipe 32 to the faucet, when the infrared sensor 12 senses that the mop is put in, the signal is transmitted to the control system, and then the relay is closed to make the electromagnetic valve 31 act, and the flushing action is realized.
[0041] As shown in Figures 5-7 The washing mechanism further includes linear bearings 34, washing board bases 38, light shafts 33 and vertical light shaft support frames 26, the washing board 5 is nested with the linear bearings 34 through the washing board base 38, the washing board 5 is fixed to the bottom surface of the body 6 through the vertical light shaft support frame 26 in cooperation with the light shaft 33, and the washing board base 38 is connected to the washing driving mechanism through the connecting rod. The washing driving mechanism includes a driving bevel gear 24 and a driven bevel gear 36 engaged with each other, the driving bevel gear 24 and the driven bevel gear 36 are connected with a driving motor, and the driving motor controls the movement to back and forth wash the mop. The bottom is arranged in a staggered manner by 8 vertical light shaft support frames 26, which are fixed on the bottom plate by screws and cooperate with the light shaft 33 as a base; two pairs of washing board bases 38 and a pair of washing board bases 35 with convex shafts are nested with the linear bearings 34 and installed on the light shaft 33, two pairs of washing board bases 38 are installed with two parallel washing boards 5, the linear bearings 34 can effectively reduce the sliding friction in the movement process, the washing board 5 has regularly arranged convex points, which can better wash the mop, is made of light plastic and has low cost.
[0042] The driven bevel gear 36 has an eccentric hole, is connected with the convex shaft of the rubbing plate base 35 through the connecting rod 23, the connecting rod 23 has a hole matched with the convex shaft of the rubbing plate base 35, and has a shaft matched with the eccentric hole of the driven bevel gear 36; the bevel gear fixing frame 37 is fixed on the bottom plate through screws and matched with the center hole of the driven bevel gear 36 to play a constraint role; the driven bevel gear 36 is engaged with the driving bevel gear 24; the driving motor is a direct current planetary reduction motor 29; the motor shaft is matched with the driving bevel gear 24; the direct current planetary reduction motor 29 drives the driven bevel gear 36 to move when it operates, thereby controlling the connecting rod 23 to rotate around the center of the driven bevel gear 36 and driving the horizontal opposite movement of the two rubbing plates 5; the control board 27 controls the relay to be closed after 5 seconds of the washing work, the direct current planetary reduction motor 29 operates, and the rubbing and washing action is realized.
[0043] As shown in Figures 10-11 The drainage mechanism includes a drain pipe 14, a drain pressing pedal 15, a filter basket upper member 25, a filter basket lower member 43, a drain tank 39, a control hose 40, a push piece 41 and a fixed bolt 42. The filter basket upper member 25 and the filter basket lower member 43 constitute a drain filter basket and are arranged in the drain tank 39. The filter basket lower member 43 is tightly combined with the drain tank 39. The middle part of the filter basket upper member 25 is a closed surface, the outer side of the closed surface is a curved surface, the curved surface has uniform gaps, the filter basket lower member 43 is provided with a drain hole at a position corresponding to the middle part of the filter basket upper member 25. The drain pipe 14 is connected below the drain tank 39. The fixed bolt 42 passes through the filter basket lower member 43 and is connected below the filter basket upper member 25. One end of the push piece 41 is combined below the fixed bolt 42, and the other end is connected with the control hose 40. The control hose 40 is connected with the drain pressing pedal 15. A traction steel wire is arranged in the control hose 40 to control the push piece 41 to move upward and lift the filter basket upper member 25 through the fixed bolt 42, thereby opening the drain.
[0044] The drain pipe 14, the drain pressing pedal 15, the filter basket upper member 25, the filter basket lower member 43 and the drain tank 39 constitute a drain. When the drain pressing pedal 15 is stepped on, the traction steel wire in the control hose 40 controls the push piece 41 to move upward and lift the combination of the filter basket upper member 25 and the fixed bolt 42. The gaps between the filter basket upper member 25 and the filter basket lower member 43 are generated, water flows out of the drain hole, and the drainage starts. When the drain pressing pedal 15 is stepped on again, the push piece 41 is reset, the filter basket upper member 25 is also restored to the original position by inertia, the drain hole is closed, and the drainage is not performed.
[0045] In the work, the infrared sensor 12 sends a signal to the control panel 27, and then controls the relay, the control panel 27 adopts STC89C52 single-chip microcomputer, when the mop is close to the infrared induction action, the signal is sent to the single-chip microcomputer, the first road relay works, the flushing structure starts, after 5s delay, the second road relay works, the rubbing structure starts relative motion, after the flushing is completed, the mop is scanned to the infrared sensor 12 again, the action is stopped in succession, the water is squeezed, the moving extrusion cylinder 1 is close to the mop when the foot presses the extrusion pedal 18, far away from the limit switch 9, the relay is closed, the fixed extrusion cylinder 17 is driven counterclockwise by the 12V direct-current speed reducer motor 11, when the mop is completed extrusion, the potential energy of the spring 13 moves the extrusion cylinder 1 to return to the initial position automatically, the foot presses the drainage pressing pedal 15, starts to drain water, and the cleaning process is completed.
[0046] In the description of the utility model, it is explained that, the terms "upper", "lower", "left", "right", "inner", "outer" and the like indicate the orientation or position relationship based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the utility model.
[0047] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above. It should be understood by those skilled in the art that the utility model is not limited by the above-mentioned embodiments, the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, under the premise of not departing from the spirit and scope of the utility model, the utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A mop washing, squeezing and wringing integrated device, characterized in that: The utility model provides a mop washing machine, including body (6), be equipped with washing mechanism, extrusion mechanism, flushing mechanism and water release mechanism in body (6), washing mechanism is located body (6) inside below, including two parallelly arranged washboard (5), two parallelly arranged washboard (5) staggered discharge, washboard (5) is connected with washing drive mechanism, through washing drive mechanism control washboard (5) short distance relative movement, come and go washes the mop, extrusion mechanism includes fixed extrusion cylinder (17) and mobile extrusion cylinder (1), fixed extrusion cylinder (17) is installed on body (6) upper surface, mobile extrusion cylinder (1) is connected with extrusion pedal (18) through support frame (10), artificial tread extrusion pedal (18) control mobile extrusion cylinder (1) back and forth movement while cooperate fixed extrusion cylinder (17) rotation realizes the extrusion action of mop, flushing mechanism is located the top of washing mechanism for realizing the flushing of mop, water release mechanism is located the bottom of body (6) with body (6) intercommunication for realizing water release.
2. The mop washing and squeezing integrated device according to claim 1, characterized in that: The washing mechanism further includes a linear bearing (34), a washboard base (38), a light shaft (33), and a vertical light shaft support frame (26). The washboard (5) is nested with the linear bearing (34) through the washboard base (38). The washboard (5) is fixed to the bottom surface of the body (6) through the vertical light shaft support frame (26) in cooperation with the light shaft (33). The washboard base (38) is connected to the washing drive mechanism through a connecting rod (23).
3. The mop washing and squeezing integrated device according to claim 2, characterized in that: The washing drive mechanism includes a driving bevel gear (24) and a driven bevel gear (36) engaged with each other. The driving bevel gear (24) and the driven bevel gear (36) are connected with a driving motor. The driving motor controls the movement to come and go wash the mop.
4. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: The extrusion mechanism further includes a DC speed reducer (11), a spring (13), and a limit switch (9). Two fixed extrusion cylinders (17) are installed on the upper surface of the body (6) and connected with the DC speed reducer (11) through a shaft coupling. The support frame (10) is 90°. The two ends of the mobile extrusion cylinder (1) are connected with the extrusion pedal (18) through the support frame (10). One end of the spring (13) is fixed to the profile on both sides of the upper part of the body (6), and the other end is hung on the extension rod of the extrusion pedal (18). The support frame (10) is in contact with the straight handle of the limit switch (9) in the natural state.
5. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: The flushing mechanism includes 90° sector-shaped spray heads (2), a water inlet pipe (32), a connecting water pipe (3), an electromagnetic valve (31), and a connecting pipe fitting (4). Multiple 90° sector-shaped spray heads (2) are connected with the connecting water pipe (3) through the connecting pipe fitting (4). The 90° sector-shaped spray heads (2) are evenly distributed on the front and back sides in the body (6). The electromagnetic valve (31) is located at the bottom of the body (6) to control the water flow.
6. The mop washing, squeezing and wringing integrated device according to claim 5, characterized in that: Variable diameter connectors (30) are installed on both sides of the electromagnetic valve (31). The variable diameter connectors (30) connect the water inlet pipe (32) and the connecting water pipe (3).
7. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: The water drainage mechanism comprises a drain pipe (14), a drain pressing pedal (15), a filter basket upper member (25), a filter basket lower member (43), a sink (39), a control hose (40), a tab (41) and a fixed bolt (42), the filter basket upper member (25) and the filter basket lower member (43) constitute a sink filter basket and are arranged in the sink (39), the filter basket lower member (43) is tightly combined with the sink (39), the middle part of the filter basket upper member (25) is a closed surface, the outer side of the closed surface is a curved surface, the curved surface is provided with uniform gaps, the filter basket lower member (43) is provided with a sink hole at a position corresponding to the middle part of the filter basket upper member (25), the drain pipe (14) is connected below the sink (39), the fixed bolt (42) passes through the filter basket lower member (43) and is connected below the filter basket upper member (25), one end of the tab (41) is combined below the fixed bolt (42), the other end is connected with the control hose (40), the control hose (40) is connected with the drain pressing pedal (15), a steel wire in the control hose (40) is arranged to control the tab (41) to act upward and lift the filter basket upper member (25) through the fixed bolt (42) to open the drain.
8. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: Further comprising an infrared sensor (12) fixed to one side of the machine body (6).
9. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: Further comprising a control panel (27) connected with the rubbing mechanism, the squeezing mechanism and the flushing mechanism through relays.
10. The mop rinsing and squeezing integrated device according to claim 1, characterized in that: Further comprising a switching power supply (28) for converting 220V to 12V to supply power to the whole device.
Citation Information
Patent Citations
Flat mop cleaning device
CN111387894A