Electric brush head and fabric cleaning machine

By designing a double inlet pipe structure and a suction pump in the electric brush head, the synchronous supply of cleaning liquid and steam is achieved, and the problems of uneven coverage of cleaning liquid and complicated operation steps in the prior art are solved, thereby improving the cleaning efficiency and effect.

CN223158320UActive Publication Date: 2025-07-29NINGBO DWAFER ELECTRICAL APPLIANCES CO LTD
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Patent Information

Application Number
CN202521014225.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-07-29
Estimated Expiration
2035-05-22

AI Technical Summary

Technical Problem

The existing electric brush heads cannot spray cleaning liquid simultaneously, resulting in uneven coverage of the cleaning liquid, complicated operation steps, insufficient penetration of the cleaning liquid and insufficient adaptability, affecting the cleaning effect.

Method used

An electric brush head is designed, including a handle, mounting shell, scrubbing module and cleaning module. The dual inlet pipe structure realizes the synchronous supply of cleaning liquid and steam, and is equipped with a suction pump and a suction chamber to ensure the accurate supply of cleaning media and the active extraction of sewage.

Benefits of technology

The synchronous supply of cleaning liquid and steam is achieved, the efficiency of stain softening and removal is improved, the waste of detergent is reduced, the cleaning effect and drying efficiency are improved, and the operation process is simplified.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fabric cleaning machines, in particular to an electric brush head and a fabric cleaning machine. Comprising a holding handle, and a first pipeline and a second pipeline for steam and waste liquid conduction are arranged in the holding handle; the mounting shell is detachably arranged at the front end of the holding handle; an arc-shaped partition plate is arranged in the mounting shell, and the inner space of the mounting shell is divided into a first bin body and a second bin body through the arc-shaped partition plate; the washing module is fixedly mounted in the second bin body; the cleaning module is detachably arranged outside the mounting shell and located above the brushing module; the cleaning module is provided with a liquid storage bin capable of temporarily storing cleaning liquid and an output unit capable of conducting steam and cleaning liquid towards the rotating brush. Cleaning liquid can be automatically sprayed towards the brush head in the washing process, the washing area is completely covered with the cleaning liquid, operation is convenient, and the cleaning effect is good.
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Description

Technical Field

[0001] The present utility model relates to the technical field of fabric cleaning machines, specifically to an electric brush head and a fabric cleaning machine. Background Technique

[0002] Fabric cleaning machines are widely used in the cleaning of the surfaces of fabrics such as sofas, carpets, and curtains. The core component, the electric brush head, improves the ability to peel off stains through rotation or reciprocating motion. However, existing electric brush heads usually cannot spray cleaning liquid synchronously during the scrubbing process, resulting in the following technical problems:

[0003] 1. Uneven supply of cleaning liquid: Most existing cleaning devices adopt an independent spraying system, that is, the cleaning liquid is sprayed onto the cleaning area through an independent nozzle, and then the electric brush head is used for scrubbing. This separate liquid supply method leads to uneven coverage of the cleaning liquid, affecting the decontamination effect. Especially in the case of heavy local stains, it is difficult to ensure sufficient infiltration of the cleaning agent.

[0004] 2. Complicated operation steps: Since the spraying of the cleaning liquid and the scrubbing action cannot be synchronized, the user needs to first spray the cleaning liquid and then start the electric brush head for scrubbing, which increases additional operation steps and reduces the cleaning efficiency.

[0005] 3. Insufficient penetration of the cleaning liquid: After spraying the cleaning liquid, if scrubbing is not carried out immediately, some of the cleaning liquid may be wasted due to gravity, resulting in waste of the cleaning agent and affecting the cleaning effect at the same time.

[0006] 4. Insufficient adaptability: Although some devices have the functions of spraying and scrubbing, the spraying points of the cleaning liquid and the position of the brush head cannot be accurately corresponding, resulting in the cleaning liquid not effectively acting on the movement area of the brush head and affecting the decontamination ability. Content of the Utility Model

[0007] In view of the above problems, an electric brush head and a fabric cleaning machine are provided. By proposing an electric brush head that can not only continuously scrub the fabric but also automatically spray the cleaning liquid towards the brush head, the technical problems that the existing electric brush head cannot actively spray the cleaning liquid, easily leads to uneven coverage of the cleaning liquid during scrubbing, and complicated operation steps are solved.

[0008] To solve the problems of the prior art, the present utility model provides an electric brush head and a fabric cleaning machine, including: a handle, in which a first pipe and a second pipe for conducting steam and waste liquid are provided; a mounting shell detachably arranged at the front end of the handle; an arc-shaped partition is arranged in the mounting shell, and the internal space of the mounting shell is divided into a first chamber and a second chamber by the arc-shaped partition; the first pipe is communicated with the first chamber, and the second pipe is communicated with the second chamber; a scrubbing module fixedly installed in the second chamber; the scrubbing module is provided with a rotating brush capable of continuously cleaning the fabric; the scrubbing end of the rotating brush passes through the second chamber and is arranged towards the outside of the second chamber; a cleaning module detachably arranged outside the mounting shell and located above the scrubbing module; the cleaning module is provided with a liquid storage bin capable of temporarily storing the cleaning liquid and an output unit capable of conducting steam and cleaning liquid towards the rotating brush.

[0009] Preferably, the cleaning module further includes a suction pump capable of sucking the cleaning liquid from the liquid storage bin into the output unit and a storage battery capable of supplying power to the suction pump; the suction pump is fixedly arranged in the second chamber, and the storage battery is fixedly arranged in the second chamber and is located on one side of the suction pump.

[0010] Preferably, the output unit is composed of a liquid guide plate and a liquid inlet pipe vertically arranged at the rear side of the liquid guide plate; the liquid guide plate is a rectangular plate with a hollow interior, and a plurality of liquid outlet holes communicated with the inside of the liquid guide plate are also penetrated through the lower surface of the liquid guide plate; there are two liquid inlet pipes, and the two liquid inlet pipes are vertically arranged on the liquid guide plate and are respectively arranged near both ends of the liquid guide plate; the two liquid inlet pipes are respectively arranged at both ends of the liquid guide plate.

[0011] Preferably, the scrubbing module further includes a fixing seat and a driving unit capable of driving the rotating brush to rotate at a high speed; the rotating brush is arranged in the second chamber through the fixing seat; the fixing seat is provided with a waterproof groove capable of preventing water from entering the second chamber; the rotating brush is horizontally rotatably arranged in the waterproof groove; the driving unit is fixedly arranged in the second chamber, and the driving end of the driving unit is in transmission connection with the driving end of the rotating brush.

[0012] Preferably, a suction bin capable of sucking sewage is also detachably arranged outside the mounting shell; the suction bin is detachably arranged outside the mounting shell, the connecting end of the suction bin is communicated with the first pipe, and the adsorption end of the suction bin is arranged towards the lower surface of the mounting shell and is flush with the lower surface of the mounting shell.

[0013] A fabric cleaning machine includes an electric brush head.

[0014] The beneficial effects of this utility model compared with the prior art are as follows:

[0015] 1. Through the double inlet pipe structure, this utility model enables the cleaning liquid and steam to be transported to the rotary brush simultaneously or independently, ensuring the precise supply of the cleaning medium. Compared with the traditional equipment that requires separate operations of spraying the cleaning liquid first and then brushing, it can supply liquid and steam simultaneously during the cleaning process, improving the efficiency of stain softening and removal, reducing the waste of cleaning agents, and enhancing the ability to remove stubborn stains.

[0016] 2. Through the suction chamber and the negative pressure pipeline, this utility model can actively extract sewage after cleaning, preventing sewage from remaining on the fabric surface, avoiding secondary pollution or water stain residues, and improving the drying efficiency. Compared with the traditional method that relies on natural drying or wiping, this utility model can quickly remove sewage and dissolved stains, improve the cleaning effect, and make the fabric surface return to the dry state faster. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a perspective view of the electric brush head and the fabric cleaning machine.

[0018] Figure 2 is a side view of the electric brush head and the fabric cleaning machine.

[0019] Figure 3 is Figure 2 a cross-sectional view taken along line A-A of

[0020] Figure 4 is a top view of the electric brush head and the fabric cleaning machine.

[0021] Figure 5 is Figure 4 a three-dimensional cross-sectional view taken along line B-B of

[0022] Figure 6 is Figure 5 a partial enlarged view at C of

[0023] Figure 7 is a three-dimensional exploded view of the partial structure of the electric brush head and the fabric cleaning machine with the handle removed.

[0024] Figure 8 is a three-dimensional exploded view of the partial structure of the electric brush head and the fabric cleaning machine with the handle and the mounting shell removed.

[0025] The reference numerals in the figures are:

[0026] 1. Handle; 11. First pipeline; 12. Second pipeline; 13. Control panel;

[0027] 2. Mounting shell; 21. Arc-shaped partition; 22. First chamber; 23. Second chamber; 24. Suction chamber;

[0028] 3. Washing module; 31. Rotating brush; 32. Driving unit; 33. Fixed seat; 34. Waterproof groove; 4. Cleaning module; 41. Liquid storage bin; 411. Check valve; 42. Output unit; 421. Liquid guide plate; 422. Liquid inlet pipe; 423. Liquid outlet hole; 43. Suction pump; 44. Battery; 45. Power supply unit. Detailed implementation manners

[0029] To further understand the features, technical means, specific purposes and functions achieved by the present utility model, the following further describes the present utility model in detail in conjunction with the drawings and specific implementation manners.

[0030] See Figures 1 to 8 As shown: The electric brush head includes: a handle 1, and a first pipe 11 and a second pipe 12 for conducting steam and waste liquid are arranged in the handle 1; a mounting shell 2, and the mounting shell 2 is detachably arranged at the front end of the handle 1; an arc-shaped partition 21 is arranged in the mounting shell 2, and the internal space of the mounting shell 2 is divided into a first chamber 22 and a second chamber 23 by the arc-shaped partition 21; the first pipe 11 is communicated with the first chamber 22, and the second pipe 12 is communicated with the second chamber 23; a washing module 3, and the washing module 3 is fixedly installed in the second chamber 23; the washing module 3 is provided with a rotating brush 31 capable of continuously cleaning the fabric; the washing end of the rotating brush 31 passes through the second chamber 23 and is arranged towards the outside of the second chamber 23; a cleaning module 4, and the cleaning module 4 is detachably arranged outside the mounting shell 2 and above the washing module 3; the cleaning module 4 is provided with a liquid storage bin 41 capable of temporarily storing the cleaning liquid and an output unit 42 capable of conducting steam and cleaning liquid towards the rotating brush 31.

[0031] When it is necessary to clean the fabric through the electric brush head, first connect to an external power supply to drive the washing module 3 to act, so that the rotating brush 31 enters a high-speed rotation state, thereby effectively cleaning the surface of the fabric. During the cleaning process, the host starts synchronously. The host is a prior art and will not be elaborated here, and high-temperature steam is input into the second pipe 12. The steam is transmitted to the output unit 42 through the second pipe 12 and finally introduced into the rotating brush 31, so that the rotating brush 31 releases steam while cleaning the fabric, thereby assisting in softening the stains and improving the cleaning effect.

[0032] In order to further optimize the washing effect, the liquid storage bin 41 can be synchronously opened, so that the cleaning liquid is conveyed to the surface of the fabric together with the steam, thereby forming a combined cleaning method of steam plus cleaning liquid plus mechanical brushing, enabling the rotating brush 31 to make full use of the synergistic effect of the cleaning liquid and steam during the washing process and improving the efficiency of stain dissolution and removal. Until the cleaning is completed, stop the washing module 3, steam transmission and cleaning liquid supply to achieve efficient cleaning operations.

[0033] Through the coordinated cooperation of the scrubbing module 3, steam, and the liquid storage bin 41, multiple cleaning functions such as high-speed cleaning with the rotary brush 31, steam-assisted stain removal, and precise delivery of the cleaning liquid are achieved. The introduction of steam can soften stubborn stains and improve the scrubbing efficiency, while the synchronous supply of the cleaning liquid further enhances the stain decomposition ability, making the cleaning process more efficient. And by introducing the cleaning liquid onto the rotary brush 31, the cleaning liquid can cover the area to be scrubbed more evenly and comprehensively via the rotary brush 31. Compared with the traditional electric brush head that requires step-by-step operation of steam and cleaning liquid spraying, this utility model realizes the synchronous cooperation of steam, cleaning liquid, and mechanical scrubbing, not only improving the cleaning efficiency but also optimizing the usability of the fabric washing machine to ensure a more uniform and thorough cleaning effect.

[0034] See Figure 5 and Figure 8 As shown: The cleaning module 4 further includes a suction pump 43 that can suck the cleaning liquid from the liquid storage bin 41 into the output unit 42 and a storage battery 44 that can supply power to the suction pump 43; the suction pump 43 is fixedly arranged in the second housing 23, and the storage battery 44 is fixedly arranged in the second housing 23 and is located on one side of the suction pump 43.

[0035] The input end of the suction pump 43 is communicated with the output end of the liquid storage bin 41 through a hose to ensure smooth extraction and transportation of the cleaning liquid; the output end of the suction pump 43 is communicated with the input end of the output unit 42 through a hose to achieve precise export of the cleaning liquid.

[0036] When it is necessary to deliver the cleaning liquid to the rotary brush 31, the suction pump 43 is driven to start. The suction pump 43 sucks the cleaning liquid in the liquid storage bin 41 during the working state and transmits it to the output unit 42 through the hose. Subsequently, the cleaning liquid is introduced onto the surface of the rotary brush 31 through the output unit 42, enabling the rotary brush 31 to continuously deliver the cleaning liquid to the area to be cleaned while rotating at high speed to clean the fabric, thereby improving the cleaning effect.

[0037] The cleaning module 4 further includes a power supply unit 45 that can charge the storage battery 44.

[0038] A one-way valve 411 that can be opened under a rated pressure is fixedly arranged at the liquid outlet of the liquid storage bin 41, thereby realizing the active opening of the liquid outlet when the liquid storage bin 41 is inserted into the installation shell 2 and the automatic closing of the liquid outlet when the liquid storage bin 41 is detached.

[0039] A control panel 13 for controlling the opening and closing of the scrubbing module 3 and controlling the export of the cleaning liquid by the cleaning module 4 is further arranged on the handle 1.

[0040] See Figure 6 and Figure 7As shown in the figure: The output unit 42 is composed of a liquid guide plate 421 and a liquid inlet pipe 422 vertically arranged at the rear side of the liquid guide plate 421; the liquid guide plate 421 is a rectangular plate with a hollow interior, and a plurality of liquid outlet holes 423 communicating with the interior of the liquid guide plate 421 are also penetrated through the lower surface of the liquid guide plate 421; there are two liquid inlet pipes 422, and the two liquid inlet pipes 422 are vertically arranged on the liquid guide plate 421 and are respectively arranged near both ends of the liquid guide plate 421; the two liquid inlet pipes 422 are respectively arranged at both ends of the liquid guide plate 421.

[0041] The two liquid inlet pipes 422 are respectively used for the transportation of different media. One liquid inlet pipe 422 is connected to the output end of the suction pump 43 through a hose to ensure the stable transportation of the cleaning liquid; the other liquid inlet pipe 422 is connected to the second pipeline 12 through a hose to realize the introduction of steam, so as to construct a composite liquid supply system that supports the transportation of both the cleaning liquid and steam.

[0042] During the cleaning process, whether it is introducing steam or the cleaning liquid, the corresponding medium will enter the interior of the liquid guide plate 421 along the liquid inlet pipe 422. After filling the cavity of the liquid guide plate 421, it will be evenly exported to the rotary brush 31 through the liquid outlet, ensuring that the rotary brush 31 can stably and evenly release the cleaning liquid or steam while cleaning the fabric, achieving a more efficient cleaning effect.

[0043] Through the synergistic effect of the double liquid inlet pipes 422, the liquid guide plate 421 and the rotary brush 31, the synchronous supply of steam and the cleaning liquid is realized, ensuring that the area to be cleaned can always be covered with sufficient cleaning medium during the brushing process, improving the decontamination efficiency. Compared with the traditional cleaning method, the present utility model can flexibly select steam cleaning, cleaning liquid cleaning or the combination of both according to the cleaning requirements, enhancing the adaptability of the fabric cleaning machine. At the same time, the uniform transportation design of the liquid guide plate 421 avoids the problem of uneven distribution of the cleaning liquid or steam, improves the cleaning consistency, and reduces the waste of cleaning agents.

[0044] See Figure 7 and Figure 8 As shown in the figure: The scrubbing module 3 further includes a fixed seat 33 and a driving unit 32 capable of driving the rotary brush 31 to rotate at a high speed; the rotary brush 31 is arranged in the second cavity 23 through the fixed seat 33; the fixed seat 33 is provided with a waterproof groove 34 capable of preventing water source from being introduced into the second cavity 23; the rotary brush 31 is horizontally rotatably arranged in the waterproof groove 34; the driving unit 32 is fixedly arranged in the second cavity 23, and the driving end of the driving unit 32 is in transmission connection with the driving end of the rotary brush 31.

[0045] The driving unit 32 includes a servo motor and a synchronous belt for transmitting driving torque. The synchronous belt is used to connect the output shaft of the servo motor to the driving shaft of the rotary brush 31, ensuring that the rotary brush 31 can obtain power drive stably and efficiently. The servo motor is powered by a storage battery 44 to provide continuous and stable power support, ensuring the efficient operation of the cleaning operation.

[0046] When it is necessary to clean the area to be cleaned, the servo motor is driven to start. The output shaft of the servo motor rotates, and power is transmitted through the synchronous belt, causing the rotary brush 31 to rotate synchronously at high speed, thereby realizing effective brushing of the fabric surface.

[0047] Since the rotary brush 31 is rotatably arranged in the waterproof tank 34, during the cleaning operation, it can effectively intercept and collect the cleaning medium rolled up by the rotary brush 31, preventing the cleaning liquid or steam from overflowing during the high-speed rotation process, thereby avoiding corrosion or damage to the driving equipment in the second housing 23 and ensuring the stability and durability of the internal structure of the equipment.

[0048] The output unit 42 is fixedly installed on the fixed seat 33 in an embedded installation manner. Its output end passes through the fixed seat 33 and is arranged towards the rotary brush 31, ensuring that the cleaning liquid or steam can be accurately introduced onto the surface of the rotary brush 31, enabling the rotary brush 31 to continuously obtain an adequate supply of cleaning medium during the cleaning process and improving the stain removal efficiency.

[0049] See Figure 7 As shown: A suction chamber 24 capable of sucking sewage is detachably arranged outside the installation shell 2; the suction chamber 24 is detachably arranged outside the installation shell 2. The connection end of the suction chamber 24 is communicated with the first pipeline 11, and the adsorption end of the suction chamber 24 is arranged towards the lower surface of the installation shell 2 and is flush with the lower surface of the installation shell 2.

[0050] When it is necessary to suck the sewage generated after cleaning the cleaning area, the staff turns on the suction module of the host. At this time, a stable negative pressure environment will be formed in the first pipeline 11, causing the sewage to be driven by the negative pressure and guided to the adsorption end of the suction chamber 24, and being efficiently sucked away along the suction path, thereby realizing the active suction and collection of the sewage in the cleaning area.

[0051] During the suction process, the structural design of the suction chamber 24 can ensure that the sewage is quickly discharged under uniform force, effectively reducing sewage retention. At the same time, the negative pressure effect can penetrate into the fiber fabric in the cleaning area, assisting in taking away the attached moisture and dirt, improving the drying efficiency of the fabric surface, and avoiding problems such as secondary pollution or mildew caused by sewage residue.

[0052] The fabric cleaning machine includes an electric brush head.

[0053] The utility model can automatically spray cleaning liquid towards the brush head during the washing process, so that the washing area is fully covered with the cleaning liquid, with convenient operation and good cleaning effect.

[0054] The above embodiments only represent one or several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation to the scope of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the appended claims.

Claims

1. Electric toothbrush head, characterized in that, Comprising: A handle (1), within which there are a first pipe (11) and a second pipe (12) for conducting steam and waste liquid; An installation shell (2), which is detachably arranged at the front end of the handle (1); an arc-shaped partition (21) is provided inside the installation shell (2), and the internal space of the installation shell (2) is divided into a first chamber (22) and a second chamber (23) by the arc-shaped partition (21); the first pipe (11) communicates with the first chamber (22), and the second pipe (12) communicates with the second chamber (23); A washing module (3), which is fixedly installed inside the second chamber (23); the washing module (3) is provided with a rotating brush (31) capable of continuously cleaning the fabric; the washing end of the rotating brush (31) passes through the second chamber (23) and is arranged towards the outside of the second chamber (23); A cleaning module (4), which is detachably arranged outside the installation shell (2) and above the washing module (3); the cleaning module (4) is provided with a liquid storage chamber (41) capable of temporarily storing the cleaning liquid and an output unit (42) capable of conducting steam and cleaning liquid towards the rotating brush (31).

2. The electric brush head according to claim 1, wherein The cleaning module (4) further includes a suction pump (43) capable of sucking the cleaning liquid from the liquid storage chamber (41) into the output unit (42) and a storage battery (44) capable of supplying power to the suction pump (43); the suction pump (43) is fixedly arranged inside the second chamber (23), and the storage battery (44) is fixedly arranged inside the second chamber (23) and on one side of the suction pump (43).

3. The electric brush head according to claim 1, wherein, The output unit (42) is composed of a liquid guide plate (421) and a liquid inlet pipe (422) vertically arranged at the rear side of the liquid guide plate (421); The liquid guide plate (421) is a rectangular plate with a hollow interior, and a plurality of liquid outlet holes (423) communicating with the inside of the liquid guide plate (421) are also provided through the lower surface of the liquid guide plate (421); There are two liquid inlet pipes (422), and the two liquid inlet pipes (422) are vertically arranged on the liquid guide plate (421) and are respectively arranged near both ends of the liquid guide plate (421); the two liquid inlet pipes (422) are respectively arranged at both ends of the liquid guide plate (421).

4. The electric brush head according to claim 1, wherein The washing module (3) further includes a fixed seat (33) and a driving unit (32) capable of driving the rotating brush (31) to rotate at a high speed; The rotating brush (31) is arranged inside the second chamber (23) through the fixed seat (33); The fixed seat (33) is provided with a waterproof groove (34) capable of preventing water from entering the second chamber (23); the rotating brush (31) is horizontally rotatably arranged inside the waterproof groove (34); The driving unit (32) is fixedly arranged inside the second chamber (23), and the driving end of the driving unit (32) is in transmission connection with the driving end of the rotating brush (31).

5. The electric brush head according to claim 1, wherein A suction bin (24) capable of sucking sewage is detachably arranged outside the installation shell (2); The suction bin (24) is detachably arranged outside the installation shell (2). The connecting end of the suction bin (24) is communicated with the first pipeline (11). The adsorption end of the suction bin (24) faces the lower surface of the installation shell (2) and is flush with the lower surface of the installation shell (2).

6. Fabric cleaning machine, characterized in that, It includes an electric brush head according to any one of claims 1-5.