Sweep frequency vibration cleaning brush

By designing a sweep vibration cleaning brush including a sweep frequency vibration motor, a brush body, a sewage discharge shell and a water spray pipe, the problem of low cleaning efficiency of existing fabric cleaning brushes is solved, and efficient cleaning and sewage treatment are achieved.

CN222999212UActive Publication Date: 2025-06-20DONGGUAN QINGNING INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421860125.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-06-20
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The cleaning efficiency of existing fabric cleaning brushes is not high, and users need to brush back and forth frequently, and it is difficult to absorb sewage and stop spraying in time, resulting in inconvenient use and low efficiency.

Method used

A sweeping frequency vibration cleaning brush is designed, including a sweeping frequency vibration brush and a connecting pipe connected to it. The sweeping frequency vibration brush consists of the brush main body, sewage discharge shell, cleaning shell, sweeping frequency vibration motor and main shell. The sweeping frequency vibration motor drives the sweeping frequency vibration of the brush main body, and is equipped with a water spray pipe and sewage outlet to realize the spraying of cleaning liquid and the timely discharge of sewage.

Benefits of technology

Through the design of sweeping frequency vibration, stubborn stains can be effectively cleaned, and sewage can be discharged in time to avoid excess water remaining in the items and improve cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of article cleaning appliances, and discloses a sweep frequency vibration cleaning brush, which comprises a sweep frequency vibration brush and a connecting pipe connected with the sweep frequency vibration brush, the sweep frequency vibration brush comprises a brush main body, a pollution discharge shell, a cleaning shell, a sweep frequency vibration motor and a main shell, one end of the cleaning shell is connected with one end of the main shell, and the other end of the cleaning shell is connected with the main shell. The pollution discharge shell is arranged on the cleaning shell; the frequency sweeping vibration motor is arranged on the lower portion of the main shell, and the brush body is located on the lower side of the cleaning shell and connected with the working end of the frequency sweeping vibration motor. The lower part of the main shell is provided with a water spraying pipe on the side edge of the frequency sweeping vibration motor; the end, away from the main shell, of the sewage discharging shell is bent downwards and extends, the extending part is close to the brush body, a sewage discharging opening is formed in the end of the extending part, a sewage discharging cavity is formed in the sewage discharging shell, a sewage channel is formed in the upper portion of the main shell, and the sewage discharging opening is communicated with the sewage channel through the sewage discharging cavity. The cleaning device is simple in structure, effectively prevents the surfaces of objects from being stained secondarily, and improves cleaning efficiency.
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Description

Technical Field

[0001] The utility model relates to the field of article cleaning appliances, and particularly relates to a frequency-sweeping vibration cleaning brush. Background Art

[0002] In daily life, brushes are often used to clean stains. When encountering stubborn stains, it is necessary to keep brushing back and forth to complete the cleaning. Especially when cleaning fabric items, water alone cannot completely clean them, and it is also necessary to pour in cleaning liquid and then pick up the brush to brush back and forth, which is rather laborious and time-consuming, and the result is generally not ideal. There are also some fabric cleaning brush heads on the market now, which are composed of one or more water spray nozzles, a sewage recovery suction port, and bristles. The bristles are fixed. When the user is using them, it is necessary to brush back and forth forcefully, and the sewage cannot be sucked away in time and the water spraying cannot be stopped, resulting in not being easy to use and extremely low cleaning efficiency. Therefore, it is necessary to provide a frequency-sweeping vibration cleaning brush with a simple structure and effectively improving the cleaning efficiency. Content of the Utility Model

[0003] To solve the deficiencies existing in the prior art, the utility model provides a new type of frequency-sweeping vibration cleaning brush to solve the problem of poor cleaning efficiency of the existing cleaning brush.

[0004] To achieve the above purpose, the following technical solutions are adopted in the utility model:

[0005] A frequency-sweeping vibration cleaning brush for frequency-sweeping vibration cleaning of articles includes a frequency-sweeping vibration brush and a connecting pipe connected thereto. The frequency-sweeping vibration brush includes a brush main body, a sewage discharge housing, a cleaning housing, a frequency-sweeping vibration motor, and a main housing. One end of the cleaning housing is connected to one end of the main housing, and the sewage discharge housing is arranged on the cleaning housing;

[0006] The frequency-sweeping vibration motor is arranged at the lower part of the main housing. The brush main body is located at the lower side of the cleaning housing and is connected to the working end of the frequency-sweeping vibration motor, so as to drive the brush main body to perform frequency-sweeping vibration through the frequency-sweeping vibration motor;

[0007] A water spray pipe is arranged at the lower part of the main housing on the side of the frequency-sweeping vibration motor. One end of the water spray pipe close to the brush main body is provided with a nozzle, and the other end of the water spray pipe passes through the main housing and extends into the connecting pipe;

[0008] One end of the sewage discharge housing far from the main housing bends downward and extends. The extending part is arranged adjacent to the brush main body. The end of the extending part is provided with a sewage discharge port. A sewage discharge cavity is arranged in the sewage discharge housing. A sewage channel is arranged along the length direction of the upper part of the main housing. The sewage discharge port is communicated with the sewage channel through the sewage discharge cavity.

[0009] Further, the brush body includes a brush base and a connecting arm connected thereto. A connecting groove is provided at one end of the lower part of the cleaning housing close to the main housing. The connecting arm passes through the connecting groove and is connected to the working end of the sweep vibration motor. A plurality of bristles are evenly arranged on the brush base, and a cleaning port is provided in the middle of the brush base.

[0010] Further, a water spraying port is provided on the connecting arm of the brush body. The spray head is placed in the water spraying port. A guiding edge is provided on the bottom of the connecting arm around the water spraying port, and an opening is provided at one end of the guiding edge close to the brush base.

[0011] Further, a connecting block is provided at one end of the main housing close to the brush body. One end of the water spraying pipe close to the brush body is movably connected to the connecting block to adjust the inclination angle of the spray head in the water spraying port.

[0012] Further, an insertion part is provided at one end of the main housing close to the cleaning housing. A positioning cylinder adapted to the insertion part is provided at one end of the cleaning housing close to the main housing. The cleaning housing is connected to the main housing by inserting the insertion part into the positioning cylinder.

[0013] Further, the main housing is cylindrical. At least one locking switch is provided on the insertion part of the main housing. A locking position adapted to the locking switch is provided at the corresponding position of the positioning cylinder of the cleaning housing. The cleaning housing is connected to the main housing by snapping the locking switch into the locking position.

[0014] Further, a pressure induction sensor is provided at one end of the lower part of the main housing close to the cleaning housing. The pressure induction sensor is located above the brush body.

[0015] Further, a cleaning cavity is provided in the cleaning housing. A liquid outlet is provided on the lower side of the cleaning housing. The liquid outlet is communicated with the cleaning cavity, and an atomization sheet is provided at the liquid outlet.

[0016] Further, clamping strips are provided on two opposite sides of the cleaning housing along its own length direction. Clamping blocks are provided at the corresponding positions of the lower part of the sewage discharge housing for the clamping strips. An elastic switch is provided at one end of the upper side of the sewage discharge housing close to the cleaning housing. A locking hole adapted to the elastic switch is provided at the corresponding position of the cleaning housing. The cleaning housing is connected to the sewage discharge housing by snapping the clamping strips into the clamping blocks and snapping the elastic switch into the locking hole.

[0017] Further, the cross section of the sewage discharge housing is in the shape of "7", and the sewage discharge housing is a transparent housing.

[0018] The beneficial effects compared with the prior art are as follows. With the above solution, the structure of the present utility model is simple. First, one end of the main housing is aligned with the cleaning housing for assembly, and the brush body located under the cleaning housing is connected to the shaft of the frequency-sweeping vibration motor. Then, the sewage discharge housing is snap-connected to the cleaning housing, and the other end of the main housing and the cleaning unit are connected through a connecting pipe. During use, only the brush body of the frequency-sweeping vibration brush needs to be placed on the stains of the item, without the need to brush back and forth frequently. The frequency-sweeping vibration motor drives the brush body to perform frequency-sweeping vibration, which is beneficial for cleaning stubborn stains. The sewage on the item is discharged in time through the sewage discharge port, avoiding the remaining of excessive water on the item and not wetting the item over a large area, so as to improve the cleaning efficiency and has good market application value. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic diagram of the overall structure of the frequency-sweeping vibration cleaning brush according to an embodiment of the present utility model;

[0020] Figure 2 For the present utility model Figure 1 schematic diagram of the structure of the frequency-sweeping vibration brush of the embodiment;

[0021] Figure 3 For the present utility model Figure 1 sectional view of the frequency-sweeping vibration brush of the embodiment;

[0022] Figure 4 For the present utility model Figure 1 sectional view of the brush body and the main housing of the embodiment;

[0023] Figure 5 For the present utility model Figure 1 sectional view of the sewage discharge housing and the cleaning housing of the embodiment;

[0024] In the figure, 1. Frequency-sweeping vibration brush; 2. Connecting pipe; 3. Brush body; 31. Cleaning port; 32. Water spraying port; 33. Guide edge; 34. Brush seat; 35. Connecting arm; 36. Brush bristles; 4. Sewage discharge housing; 41. Sewage discharge port; 42. Sewage discharge cavity; 43. Elastic switch; 5. Cleaning housing; 51. Cleaning cavity; 52. Connecting groove; 53. Positioning cylinder; 54. Atomization sheet; 6. Main housing; 61. Sprinkler head; 62. Water spraying pipe; 63. Sewage channel; 64. Pressure induction sensor; 65. Connecting block; 66. Insertion part; 67. Locking switch; 68. Control part; 7. Frequency-sweeping vibration motor. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] For the convenience of those skilled in the art to understand the present utility model, the following describes the specific embodiments of the present utility model with reference to the accompanying drawings. The preferred embodiments of the present utility model are given in the drawings. However, the present utility model can be implemented in many different forms and is not limited to the embodiments described in this specification. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure content of the present utility model more thorough and comprehensive.

[0026] It should be noted that when an element is referred to as "fixed to" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "installed", "fixed", "upper part", "lower part" and similar expressions used in this specification are only for the purpose of illustration.

[0027] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in this specification in the description of the present utility model are only for the purpose of describing specific embodiments and are not used to limit the present utility model.

[0028] One embodiment of the present utility model is as Figure 1 , 2 , as shown in Figure 3, the swept-frequency vibration cleaning brush is used for swept-frequency vibration cleaning of articles, and includes a swept-frequency vibration brush 1 and a connecting pipe 2 connected thereto. The swept-frequency vibration brush 1 includes a brush main body 3, a sewage discharge housing 4, a cleaning housing 5, a swept-frequency vibration motor 7 and a main housing 6. One end of the cleaning housing 5 is connected to one end of the main housing 6, and the sewage discharge housing 4 is arranged on the cleaning housing 5; the swept-frequency vibration motor 7 is arranged below the main housing 6, and the brush main body 3 is located below the cleaning housing 5 and is connected to the working end of the swept-frequency vibration motor 7, so as to drive the brush main body 3 to perform swept-frequency vibration through the swept-frequency vibration motor 7; a water spraying pipe 62 is arranged on the lower part of the main housing 6 on the side of the swept-frequency vibration motor 7. One end of the water spraying pipe 62 close to the brush main body 3 is provided with a nozzle 61, and the other end of the water spraying pipe 62 passes through the main housing 6 and extends into the connecting pipe 2; one end of the sewage discharge housing 4 away from the main housing 6 bends downward and extends, and the extending part is arranged adjacent to the brush main body 3. The end of the extending part is provided with a sewage discharge port 41. A sewage discharge cavity 42 is arranged in the sewage discharge housing 4, and a sewage channel 63 is arranged along the length direction of the upper part of the main housing 6. The sewage discharge port 41 is communicated with the sewage channel 63 through the sewage discharge cavity 42.

[0029] The frequency-sweeping vibration cleaning brush of this solution is suitable for quickly cleaning items, especially fabric products. First, align one end of the main housing 6 with the cleaning housing 5 for assembly, and connect the brush body 3 located on the lower side of the cleaning housing 5 to the shaft of the frequency-sweeping vibration motor 7. Then, snap the sewage housing 4 onto the cleaning housing 5, and connect the other end of the main housing 6 to the cleaning unit through the connecting pipe 2. When in use, just place the brush body 3 of the frequency-sweeping vibration brush 1 on the stains of the item, without the need to brush back and forth frequently. The frequency-sweeping vibration motor 7 drives the brush body 3 to perform frequency-sweeping vibration. During the cleaning process, clean water is sprayed from the nozzle 61 through the water spray pipe 62 onto the stains of the item, and at the same time, the cleaning liquid in the cleaning housing 5 is sprayed downward, which is beneficial to cleaning stubborn stains. The sewage on the item is drained away in time through the sewage outlet 41, avoiding the remaining excess water on the item and not wetting the item over a large area, so as to improve the cleaning efficiency.

[0030] In this embodiment, as Figure 4 shown, the brush body 3 includes a brush seat 34 and a connecting arm 35 connected thereto. A connecting groove 52 is provided at the lower part of the cleaning housing 5 near one end of the main housing 6. The connecting arm 35 passes through the connecting groove 52 and is connected to the working end of the frequency-sweeping vibration motor 7. The brush seat 34 is evenly provided with a plurality of bristles 36, and a cleaning port 31 is provided in the middle of the brush seat 34.

[0031] Specifically, the brush seat 34 is connected to the left end of the connecting arm 35. The brush seat 34 has a rounded rectangular structure. A plurality of bristles 36 are evenly provided on the lower side surface of the brush seat 34. A connecting groove 52 is provided at the lower part of the right end of the cleaning housing 5. The right end of the connecting arm 35 passes through the connecting groove 52 and is sleeved on the shaft of the frequency-sweeping vibration motor 7, so that the frequency-sweeping vibration motor 7 drives the brush body 3 to perform frequency-sweeping vibration.

[0032] In this embodiment, as Figure 2 shown, a water spray port 32 is provided on the connecting arm 35 of the brush body 3. The nozzle 61 is placed in the water spray port 32. A guiding edge 33 is provided at the bottom of the connecting arm 35 around the periphery of the water spray port 32. One end of the guiding edge 33 close to the brush seat 34 is provided with an opening.

[0033] Specifically, a water spray port 32 is provided at one end of the connecting arm 35 close to the brush seat 34. A circle of guiding edge 33 is provided around the water spray port 32 on the connecting arm 35. The left end of the guiding edge 33 has an opening, so as to converge and spray the water sprayed by the nozzle 61 from the opening onto the stains of the item, avoiding the water flowing everywhere.

[0034] In this embodiment, as Figure 4As shown, a connecting block 65 is provided at one end of the main housing 6 close to the brush body 3. One end of the water spraying pipe 62 close to the brush body 3 is movably connected to the connecting block 65 to adjust the inclination angle of the nozzle 61 in the water spraying port 32.

[0035] Specifically, a connecting block 65 is provided in the middle of the left end of the main housing 6 and is connected to the left end part of the water spraying pipe 62 through a positioning hinge member to enable the left end part of the water spraying pipe 62 to be adjusted in position, so that the left end part of the water spraying pipe 62 inclines downward towards the brush base 34, that is, the left end part of the water spraying pipe 62 inclines towards the lower left direction, so as to spray the water sprayed by the nozzle 61 towards the brush base 34.

[0036] In this embodiment, as Figure 4 shown, an insertion part 66 is provided at one end of the main housing 6 close to the cleaning housing 5. A positioning cylinder 53 adapted to the insertion part 66 is provided at one end of the cleaning housing 5 close to the main housing 6. The cleaning housing 5 is connected to the main housing 6 by inserting the insertion part 66 into the positioning cylinder 53.

[0037] Specifically, an insertion part 66 is provided along the circumferential side of the left end of the main housing 6, and a positioning cylinder 53 adapted to the insertion part 66 is provided at the right end of the cleaning housing 5. It is only necessary to align the left end of the main housing 6 with the right end of the cleaning housing 5 and insert them. The splicing is simple and convenient to operate.

[0038] In this embodiment, as Figure 4 shown, the main housing 6 is cylindrical. At least one locking switch 67 is provided on the insertion part 66 of the main housing 6. A locking position adapted to the locking switch 67 is provided at the corresponding position of the positioning cylinder 53 of the cleaning housing 5. The cleaning housing 5 is connected to the main housing 6 by snapping the locking switch 67 into the locking position.

[0039] Specifically, the main housing 6 is cylindrical, which is not only convenient to hold but also convenient to dock with the cleaning housing 5. An insertion part 66 with a diameter smaller than that of the main housing 6 is provided at the left end of the main housing 6, and a positioning cylinder 53 with a diameter adapted to that of the main housing 6 and an inner diameter adapted to the diameter of the insertion part 66 is provided at the right end of the cleaning housing 5. This is not only conducive to splicing but also more beautiful in appearance.

[0040] Specifically, a locking switch 67 is provided on the lower side of the insertion portion 66 of the main housing 6. The locking switch 67 can be an elastic locking switch or an elastic buckle. When the insertion portion 66 at the left end of the main housing 6 is inserted into the positioning cylinder 53 at the right end of the cleaning housing 5 and the locking switch 67 is snapped into the locking position, the cleaning housing 5 is connected to the main housing 6.

[0041] In this embodiment, as Figure 3 shown, a pressure sensor 64 is provided at one end of the lower part of the main housing 6 close to the cleaning housing 5. The pressure sensor 64 is located above the brush body 3.

[0042] Specifically, the main housing 6 is divided into upper and lower parts by a partition. The frequency-sweeping vibration motor 7, the water spray pipe 62 and the pressure sensor 64 are located in the lower part of the main housing 6. The sewage channel 63 is arranged in the upper part of the main housing 6 along its own length direction. The pressure sensor 64 is arranged at the bottom of the partition. There is a gap between the pressure sensor 64 and the connecting arm 35 of the brush body 3. Press the brush body 3 of the frequency-sweeping vibration brush 1 on the stains of the article. The connecting arm 35 of the brush body 3 contacts the pressure sensor 64. At this time, the brush body 3 is driven by the frequency-sweeping vibration motor 7 to perform frequency-sweeping vibration. At the same time, clear water is sprayed from the nozzle 61 through the water spray pipe 62 onto the stains of the article. When the frequency-sweeping vibration brush 1 is lifted from the article, the connecting arm 35 of the brush body 3 does not contact the pressure sensor 64. At this time, the frequency-sweeping vibration brush 1 does not perform frequency-sweeping vibration and water spraying, effectively avoiding soiling the surface of the article again.

[0043] In this embodiment, as Figure 5 shown, a cleaning chamber 51 is arranged in the cleaning housing 5. A liquid outlet is arranged on the lower side of the cleaning housing 5. The liquid outlet is communicated with the cleaning chamber 51. An atomizing sheet 54 is arranged at the liquid outlet.

[0044] Specifically, the liquid outlet is located above the cleaning port 31 arranged in the middle of the brush base 34. A liquid replenishing port is arranged at the left end of the cleaning housing 5. A sealing cover is arranged at the liquid replenishing port. Open the sealing cover and pour the cleaning liquid into the cleaning chamber 51 from the liquid replenishing port. The cleaning liquid is sprayed out through the atomizing sheet 54.

[0045] In this embodiment, as Figure 5As shown, clamping strips are provided along the length direction on opposite sides of the cleaning housing 5. At positions corresponding to the clamping strips at the lower part of the sewage discharge housing 4, clamping blocks are provided. At one end of the upper side of the sewage discharge housing 4 close to the cleaning housing 5, an elastic switch 43 is provided. At a position of the cleaning housing 5 corresponding to the elastic switch 43, a locking hole adapted thereto is provided. The clamping strips are snapped into the clamping blocks, and the elastic switch 43 is snapped into the locking hole to connect the cleaning housing 5 and the sewage discharge housing 4.

[0046] Specifically, the clamping blocks provided on the bottom side and the front and rear sides of the sewage discharge housing 4 enclose a cavity for accommodating the left part of the cleaning housing 5. The left part of the cleaning housing 5 is aligned with the cavity of the sewage discharge housing 4 and inserted to sleeved the sewage discharge housing 4 on the cleaning housing 5.

[0047] In this embodiment, as Figure 5 shown, the cross-section of the sewage discharge housing 4 is in the shape of "7", and the sewage discharge housing 4 is a transparent housing.

[0048] Specifically, it can be seen from the transparent sewage discharge housing 4 whether the sewage is pumped out. When the sewage discharge cavity 42 in the sewage discharge housing 4 needs to be cleaned, the elastic switch 43 is pressed to disengage it from the locking hole, and the sewage discharge housing 4 can be pulled out. When it is necessary to add cleaning liquid, it can also be pulled out in this way.

[0049] In this embodiment, as Figure 4 shown, a control member 68 is provided on the upper side of the main housing 6. The control member 68 includes a PCB board, a key and an indicator light, and the key and the indicator light are respectively connected to the PCB board.

[0050] Specifically, the PCB board is arranged inside the upper part of the main housing 6. Through holes adapted to the key and the indicator light are provided on the upper side wall of the main housing 6. The key and the indicator light are placed in the corresponding through holes. The cleaner is turned on and off and whether cleaning liquid needs to be added, and cold / hot water is switched through the key.

[0051] In this embodiment, the water spray pipe 62 connected to the spray head 61 is connected to the cleaning unit at the other end; the cleaning unit is provided with a water storage tank, a water pump and a heating boiler. The water can be turned into hot water or water vapor by heating with the boiler, or cold water can be directly sprayed without heating. Under the action of the water pump, the water in the water storage tank of the main unit is sprayed out through the water spray pipe 62 and the spray head 61. It can also be switched to a mode to heat the water or heat it to the water vapor state and spray it out through the water spray port 32;

[0052] The cleaning unit is also provided with a sewage tank, which is connected to the connecting pipe 2 through a high-suction AC fan and further connected to the sewage channel 63 and then to the sewage discharge port 41, so that a negative pressure is generated in the sewage tank, and the sewage on the article is pumped into the sewage discharge port 41 and introduced into the sewage tank along the connecting pipe 2. A water-vapor separation device is provided in the sewage tank body. Through this device, the sewage is left in the sewage tank to complete the collection.

[0053] In another embodiment, different from the above embodiment, the brush base 34 of the brush body 3 is a rotating disk, and the brush head can be driven to rotate by a motor.

[0054] It should be noted that the above technical features continue to be combined with each other to form various embodiments not listed above, which are all regarded as within the scope described in the specification of the present invention; and for those of ordinary skill in the art, improvements or changes can be made according to the above description, and all such improvements and changes should fall within the protection scope of the appended claims of the present invention.

Claims

1. A sweeping frequency vibration cleaning brush, used for sweeping frequency vibration cleaning of objects, characterized by: The invention comprises a sweeping frequency vibration brush (1) and a connecting pipe (2) connected thereto, wherein the sweeping frequency vibration brush (1) comprises a brush body (3), a sewage discharge housing (4), a cleaning housing (5), a sweeping frequency vibration motor (7) and a main housing (6), one end of the cleaning housing (5) is connected to one end of the main housing (6), and the sewage discharge housing (4) is arranged on the cleaning housing (5); The sweep frequency vibration motor (7) is arranged at the lower part of the main housing (6), and the brush body (3) is located at the lower side of the cleaning housing (5) and is connected to the working end of the sweep frequency vibration motor (7) so as to drive the brush body (3) to perform sweep frequency vibration through the sweep frequency vibration motor (7); A water spray pipe (62) is arranged at the lower part of the main housing (6) on the side of the sweeping frequency vibration motor (7), and a spray head (61) is arranged at one end of the water spray pipe (62) close to the brush body (3), and the other end of the water spray pipe (62) passes through the main housing (6) and extends toward the inside of the connecting pipe (2); One end of the sewage discharge shell (4) away from the main shell (6) is bent downward and extended, the extended part is arranged adjacent to the brush body (3), the end of the extended part is provided with a sewage discharge port (41), a sewage discharge cavity (42) is arranged in the sewage discharge shell (4), a sewage channel (63) is arranged at the upper part of the main shell (6) along its own length direction, and the sewage discharge port (41) is connected with the sewage channel (63) through the sewage discharge cavity (42).

2. The sweeping frequency vibration cleaning brush according to claim 1, characterized in that: The brush body (3) comprises a brush seat (34) and a connecting arm (35) connected thereto; a connecting groove (52) is arranged at one end of the lower part of the cleaning shell (5) close to the main shell (6); the connecting arm (35) passes through the connecting groove (52) and is connected to the working end of the sweeping frequency vibration motor (7); a plurality of bristles (36) are evenly arranged on the brush seat (34); and a cleaning port (31) is arranged in the middle of the brush seat (34).

3. The sweeping frequency vibration cleaning brush according to claim 2, characterized in that: A water spray port (32) is arranged on the connecting arm (35) of the brush body (3), the spray head (61) is placed on the water spray port (32), a guide edge (33) is arranged at the bottom of the connecting arm (35) on the peripheral side of the water spray port (32), and an opening is arranged at one end of the guide edge (33) close to the brush seat (34).

4. The sweeping frequency vibration cleaning brush according to claim 3, characterized in that: A connecting block (65) is provided at one end of the main shell (6) close to the brush body (3), and one end of the water spray pipe (62) close to the brush body (3) is movably connected to the connecting block (65) to adjust the inclination angle of the spray head (61) in the water spray port (32).

5. The sweeping frequency vibration cleaning brush according to claim 1, characterized in that: An insertion portion (66) is provided at one end of the main shell (6) close to the cleaning shell (5), and a positioning cylinder (53) adapted to the insertion portion (66) is provided at one end of the cleaning shell (5) close to the main shell (6). The positioning cylinder (53) is inserted into the insertion portion (66) to connect the cleaning shell (5) to the main shell (6).

6. The sweeping frequency vibration cleaning brush according to claim 5, characterized in that: The main housing (6) is cylindrical, and the insertion portion (66) of the main housing (6) is provided with at least one locking switch (67). The positioning cylinder (53) of the cleaning housing (5) corresponds to the position of the locking switch (67) and is provided with a locking position adapted thereto. The locking switch (67) is snapped into the locking position to connect the cleaning housing (5) to the main housing (6).

7. The sweeping frequency vibration cleaning brush according to claim 1, characterized in that: A pressure sensing sensor (64) is provided at one end of the lower part of the main housing (6) close to the cleaning housing (5), and the pressure sensing sensor (64) is located on the upper side of the brush body (3).

8. The sweeping frequency vibration cleaning brush according to claim 1, characterized in that: A cleaning cavity (51) is arranged in the cleaning shell (5), a liquid outlet is arranged on the lower side of the cleaning shell (5), the liquid outlet is communicated with the cleaning cavity (51), and an atomizing sheet (54) is arranged at the liquid outlet.

9. The sweeping frequency vibration cleaning brush according to claim 1, characterized in that: The cleaning shell (5) is provided with clamping strips on opposite sides along its own length direction, and a clamping block is provided at the lower part of the sewage discharge shell (4) corresponding to the position of the clamping strip. An elastic switch (43) is provided at the upper side of the sewage discharge shell (4) close to one end of the cleaning shell (5). The cleaning shell (5) is provided with a locking hole corresponding to the position of the elastic switch (43), and the clamping block is inserted into the clamping strip, and the elastic switch (43) is buckled into the locking hole, so as to connect the cleaning shell (5) with the sewage discharge shell (4).

10. The sweeping frequency vibration cleaning brush according to claim 9, characterized in that: The cross section of the sewage discharge housing (4) is in the shape of a letter "7", and the sewage discharge housing (4) is a transparent housing.