Art brush cleaning device for art
By designing an art brush cleaning device including an aerator, a jet mechanism and a swing mechanism, the problem that existing devices cannot clean the brush and pigment disk at the same time is solved, effectively cleaning and fixing brushes of different sizes is achieved, and cleaning effect and stability are improved.
Patent Information
- Application Number
- CN202510444508.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing art brush cleaning device cannot clean the brush and pigment tray at the same time, and cannot effectively fix brushes of different sizes, resulting in poor cleaning results.
An art brush cleaning device including a cleaning main machine, a drain pipe, a storage frame, a pigment tray cleaning mechanism and a brush cleaning mechanism is designed. The device achieves a complete cleaning of the pigment discs through an aeration machine, an injection mechanism and a swing mechanism, and fixes brushes of different sizes through an adjustable clamping mechanism.
The function of cleaning brushes and pigment plates at the same time is realized, improving the cleaning effect; the adjustable clamping mechanism can adapt to brushes of different sizes, ensuring comprehensiveness and stability of cleaning.
Smart Images

Figure CN120056639A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of art supplies, and more specifically, to an art paintbrush cleaning device for art use. Background Art
[0002] An art paintbrush is a brush used to apply paint or ink. Paintbrushes are usually made by clamping bristles on a handle with a ferrule. They are available in a variety of sizes, shapes, and materials. Thicker ones are used for filling, and thinner ones are used for details. Art paintbrushes need to be used with a paint palette during use. After use, the paintbrushes need to be cleaned to wash off the paint or ink on them to avoid caking of the paint or ink on the paintbrushes and ensure the normal use of the paintbrushes next time. However, the existing art paintbrush cleaning devices have the following deficiencies during the cleaning process of paintbrushes: Art paintbrushes and paint palettes are used simultaneously, but the art paintbrush cleaning device cannot put the paint palette in for cleaning at the same time, resulting in the need to rely on other cleaning equipment or manually clean the paint palette by hand, increasing the cleaning difficulty. Moreover, paintbrushes come in various sizes, and it is difficult to fix and adjust the orientation of the paintbrushes well when placed inside the cleaning device, resulting in incomplete cleaning of the paintbrushes and reducing the cleaning effect of the paintbrushes. Summary of the Invention
[0003] The technical solution adopted by the present invention to achieve the technical purpose is: An art paintbrush cleaning device for art use, the structure of which includes a cleaning main body, a drain pipe, and a storage frame. The drain pipe is embedded and connected through at the lower right end of the cleaning main body. The storage frame is welded above the right end of the cleaning main body. The cleaning main body includes a housing, a paint palette cleaning mechanism, a paintbrush cleaning mechanism, a controller, a water level sensor, and a water inlet pipe. The drain pipe is embedded and connected through at the lower right end of the housing. The storage frame is welded above the right end of the housing. The paint palette cleaning mechanism is installed inside the housing, and the paintbrush cleaning mechanism is installed at the upper end inside the housing. The paint palette cleaning mechanism is located directly below the paintbrush cleaning mechanism. The controller is arranged above the outer side of the left end of the housing. The controller is electrically connected to the water level sensor, and the water level sensor is fixedly installed at the upper left end inside the housing. The water level sensor is located above the water inlet pipe. The controller is connected to control the water inlet pipe. A water pump is provided inside the controller, and the controller is connected through the water pump to the water inlet pipe.
[0004] As a further improvement of the present invention, the paint tray cleaning mechanism includes an aerator, a support platform, a swing mechanism, a support frame, and a spraying mechanism. The aerator is installed at the lower left end outside the machine shell, and the aerator is connected to the inside of the spraying mechanism through the support platform. A swing mechanism is installed inside the support platform, and the aerator is connected to the inside of the swing mechanism. The support platform is fixedly installed at the lower end inside the machine shell, and the upper end surface of the support platform is welded with a support frame. The spraying mechanism is installed between the upper end of the support platform and the inside of the support frame. The support frame has an "ㄇ" shape structure, and there are nine of them, which are horizontally and equally spaced on the upper end surface of the support platform. And five spraying mechanisms are equally spaced inside each support frame. The upper end of the support platform is divided into eight independent placement spaces by the nine support frames. There are eight swing mechanisms, and the eight swing mechanisms are distributed at the bottoms of the eight independent placement spaces formed by the nine support frames.
[0005] As a further improvement of the present invention, the spraying mechanism includes a diversion pipe, a rotating block, a nozzle, a one-way opening and closing piece, a rotating block, and a torsion shaft. The lower end of the diversion pipe is installed inside the upper end of the support platform through a rotating block, and the lower end of the diversion pipe is connected to the inside of the aerator. The upper end of the diversion pipe is connected to the upper end inside the support frame through a rotating block. The outer end face of the diversion pipe is embedded with and communicated with the nozzle. The one-way opening and closing piece is located at the front end inside the nozzle, and a rotating block is provided at the edge of the one-way opening and closing piece. The rotating block is hinged to the inside of the nozzle through a torsion shaft. The nozzle has a cavity frustum shape structure that is wide at the rear end and narrow at the front end, and there are multiple of them, which are vertically arranged and distributed on the diversion pipe. There are two rotating blocks, which are arranged at the upper and lower ends of the diversion pipe. There are four one-way opening and closing pieces and rotating blocks, and they are annularly distributed inside the nozzle. The four one-way opening and closing pieces are connected to form a disc-shaped structure.
[0006] As a further improvement of the present invention, the swing mechanism includes a swing bottom plate, a positioning shaft, a telescopic hose, a connecting middle pipe, and a shunt pipe. The middle part of the swing bottom plate is connected to the inside of the upper end of the support platform through a positioning shaft. The bottom edge of the swing bottom plate is fixed to the upper end of the telescopic hose. The bottom of the telescopic hose is connected to the upper end of the shunt pipe. One end of the connecting middle pipe is connected to the inside of the aerator, and the connecting middle pipe is connected to the lower end of the shunt pipe. There are two telescopic hoses and shunt pipes, which are symmetrically installed left and right. And the telescopic hose has a corrugated structure, is made of rubber material, and has good resilience. The two telescopic hoses are arranged at both ends of the bottom edge of the swing bottom plate.
[0007] As a further improvement of the present invention, the paintbrush cleaning mechanism includes a cover plate, a lifting handle, a magnetic sealing strip, and a fixing mechanism. The rear end of the cover plate is axially connected to the inner part of the upper end of the casing, and a lifting handle is provided at the front end of the cover plate. The magnetic sealing strip is embedded at the edge end of the cover plate. The fixing mechanism is installed at the bottom of the cover plate. There are three magnetic sealing strips, which are distributed on the left and right sides and the front bottom of the cover plate. There are six fixing mechanisms, which are horizontally distributed at the bottom of the cover plate.
[0008] As a further improvement of the present invention, the fixing mechanism includes a guide post, a sliding block, and a clamping mechanism. The guide post is fixedly installed inside the cover plate, and the guide post passes through the inside of the sliding block with a clearance fit. The sliding block is welded to the top of the clamping mechanism. The clamping mechanism is located at the bottom of the cover plate. There are two clamping mechanisms, which are installed on the guide post in the front and rear directions.
[0009] As a further improvement of the present invention, the clamping mechanism includes a spring tube sleeve, an adjusting rod, a clamping ring, and a rubber block. The top of the spring tube sleeve is fixedly installed with a sliding block, and the upper end of the adjusting rod is installed inside the spring tube sleeve with a clearance fit. The lower end of the adjusting rod is welded to the upper end of the clamping ring. Rubber blocks are provided on the inner side of the clamping ring. The clamping ring is of a circular ring structure and has an opening at the lower end. At the same time, there are three rubber blocks, which are distributed on the left and right and the upper positions on the inner side of the clamping ring. The spring tube sleeve is composed of a circular tube and a spring, and the spring inside the spring tube sleeve applies an elastic force to the adjusting rod.
[0010] The beneficial effects of the present invention are as follows: 1. Start the aerator to work and discharge gas into the inside of the diversion pipe. Through the rotating blocks arranged at the upper and lower ends of the diversion pipe, when the air flow enters the inside of the diversion pipe, the diversion pipe itself can be made to rotate, driving the nozzles on the outside to perform circumferential spraying. And through multiple nozzles, the comprehensiveness of aeration is improved, thereby improving the cleaning effect of the cleaning liquid on the paint tray; 2. During the process of the nozzle aerating, an elastic force is applied to the rotating block through the torsion shaft, so that the four one-way opening and closing pieces achieve one-way opening and closing inside the nozzle, ensuring that the nozzle can eject gas, and after the gas stops ejecting, the inside of the nozzle closes to prevent the cleaning liquid from flowing back into the nozzle; 3. Part of the gas generated by the aerator is discharged into the inside of the shunt pipe through the connecting middle pipe. By applying air pressure to both ends of the bottom of the swinging bottom plate through the two shunt pipes, and under the action of the buffer elastic force applied by the telescopic hose, the swinging bottom plate can swing left and right around the positioning shaft, driving the bottom of the paint tray to vibrate, improving the overall aeration cleaning effect of the paint tray; 4. According to the length of the brush, the sliding block is slidably adjusted on the guide column to adjust the distance between the two clamping mechanisms. After the adjustment, the two clamping mechanisms can clamp and fix the ends of brushes of different lengths. During the clamping process, the brush is inserted into the inner side of the clamping ring, and the rubber block inside the clamping ring elastically resists the outer end surface of the brush, so that brushes of different diameters can be firmly clamped; 5. During the cleaning process, the spring inside the spring sleeve applies elastic force to the adjusting rod, so that the spring sleeve and the adjusting rod can elastically adjust the upper and lower positions of the brush clamped inside the clamping ring during the cleaning process, thereby improving the comprehensiveness of the brush cleaning. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 The present invention is a schematic structural diagram of an art brush cleaning device for art.
[0012] Figure 2 It is a schematic diagram of the internal structure of the cleaning host of the present invention.
[0013] Figure 3 It is a three-dimensional structural schematic diagram of the paint tray cleaning mechanism of the present invention.
[0014] Figure 4 It is a three-dimensional and partially enlarged internal perspective structural schematic diagram of the injection mechanism of the present invention.
[0015] Figure 5 It is a schematic diagram of the internal working state structure of the swing mechanism of the present invention from a side view.
[0016] Figure 6 It is a three-dimensional perspective structural schematic diagram of the paintbrush cleaning mechanism of the present invention.
[0017] Figure 7 It is a schematic diagram of the three-dimensional adjustment state structure of the fixing mechanism of the present invention.
[0018] Figure 8 It is a schematic diagram of the structure of the adjustment state of the clamping mechanism of the present invention.
[0019] In the figure: cleaning main unit - X, drain pipe - P, storage frame - C, machine shell - x5, paint tray cleaning mechanism - x6, paintbrush cleaning mechanism - x1, controller - x8, water level sensor - x3, water inlet pipe - x2, aerator - x64, support platform - x66, swing mechanism - x61, support frame - x63, spraying mechanism - x68, diversion pipe - 8g, rotating block - 8d, nozzle - 8z, one-way opening and closing piece - 8k, rotating block - 8v, torsion shaft - 8n, swing bottom plate - 1b, positioning shaft - 1z, telescopic hose - 1s, connecting middle pipe - 1j, shunt pipe - 1f, cover plate - x19, lifting handle - x17, magnetic sealing strip - x15, fixing mechanism - x12, guide post - 2g, sliding block - 2d, clamping mechanism - 2j, spring tube sleeve - j6, adjusting rod - j9, clamping ring - j2, rubber block - j5. Detailed implementation mode
[0020] The present invention will be further described below with reference to the accompanying drawings: Embodiment
[0021] As shown in the Figure 1 to the Figure 5 accompanying drawings: An art paintbrush cleaning device for art, comprising a cleaning main unit X, a drain pipe P, and a storage frame C. The drain pipe P is embedded and connected through the lower right end of the cleaning main unit X. The storage frame C is welded above the right end of the cleaning main unit X. The cleaning main unit X includes a machine shell x5, a paint tray cleaning mechanism x6, a paintbrush cleaning mechanism x1, a controller x8, a water level sensor x3, and a water inlet pipe x2. The drain pipe P is embedded and connected through the lower right end of the machine shell x5. The storage frame C is welded above the right end of the machine shell x5. The paint tray cleaning mechanism x6 is installed inside the machine shell x5, and the paintbrush cleaning mechanism x1 is installed at the upper end inside the machine shell x5. The paint tray cleaning mechanism x6 is directly below the paintbrush cleaning mechanism x1. The controller x8 is arranged above the outer side of the left end of the machine shell x5. The controller x8 is electrically connected to the water level sensor x3, and the water level sensor x3 is fixedly installed at the upper left end inside the machine shell x5. The water level sensor x3 is above the water inlet pipe x2. The controller x8 is control-connected to the water inlet pipe x2; A water pump is provided inside the controller x8. The controller x8 is connected through the water pump to the water inlet pipe x2 inside. The cleaning liquid is discharged into the machine shell x5 through the water inlet pipe x2, and the water level inside the machine shell x5 is monitored through the water level sensor x3. When the water level reaches the highest position of the water level sensor x3, the water inlet pipe x2 is controlled by the water pump inside the controller x8 to stop water inlet, so as to avoid water leakage from the upper end of the machine shell x5 during the cleaning process due to too high water level.
[0022] Among them, the paint tray cleaning mechanism x6 includes an aerator x64, a support table x66, a swing mechanism x61, a support frame x63, and a spraying mechanism x68. The aerator x64 is installed at the lower left end outside the machine shell x5, and the aerator x64 is connected to the inside of the spraying mechanism x68 through the support table x66. The swing mechanism x61 is installed inside the support table x66, and the aerator x64 is connected to the inside of the swing mechanism x61. The support table x66 is fixedly installed at the lower end inside the machine shell x5, and the upper end surface of the support table x66 is welded with the support frame x63. The spraying mechanism x68 is installed between the upper end of the support table x66 and the inside of the support frame x63; The support frame x63 has an "ㄇ" - shaped structure and there are nine of them, which are evenly distributed horizontally on the upper end surface of the support table x66. Five spraying mechanisms x68 are evenly arranged inside each support frame x63. The upper end of the support table x66 is divided into eight independent placement spaces by the nine support frames x63, which can separate and place eight paint trays. And by spraying gas through the spraying mechanisms x68 on both sides, the cleaning liquid inside the machine shell x5 forms aeration to clean the paint trays, improving the cleaning effect of the paint trays. There are eight swing mechanisms x61, and the eight swing mechanisms x61 are distributed at the bottom of the eight independent placement spaces formed by the nine support frames x63 to support the bottoms of the eight paint trays.
[0023] Among them, the spraying mechanism x68 includes a diversion pipe 8g, a rotating block 8d, a nozzle 8z, a one - way opening and closing piece 8k, a rotating block 8v, and a torsion shaft 8n. The lower end of the diversion pipe 8g is installed inside the upper end of the support table x66 through the rotating block 8d, and the lower end of the diversion pipe 8g is connected to the inside of the aerator x64. The upper end of the diversion pipe 8g is connected to the upper end inside the support frame x63 through the rotating block 8d. The outer end face of the diversion pipe 8g is embedded with and communicated with the nozzle 8z. The one - way opening and closing piece 8k is located at the front end inside the nozzle 8z, and a rotating block 8v is provided at the edge of the one - way opening and closing piece 8k. The rotating block 8v is hinged to the inside of the nozzle 8z through the torsion shaft 8n; The nozzle 8z has a cavity frustum structure that is wide at the rear end and narrow at the front end, and there are multiple nozzles arranged vertically on the diversion pipe 8g. Through the multiple nozzles 8z, gas can be ejected vertically, increasing the range of gas ejection. There are two rotating blocks 8d, which are arranged at the upper and lower ends of the diversion pipe 8g. Through the connection of the rotating blocks 8d, when the air flow enters the interior of the diversion pipe 8g, the diversion pipe 8g can rotate itself, driving the nozzles 8z on the outside to perform circumferential spraying, improving the comprehensiveness of gas ejection, and thus improving the aeration effect. There are four one-way opening and closing pieces 8k and rotating blocks 8v, which are annularly distributed inside the nozzle 8z. The four one-way opening and closing pieces 8k are connected to form a disc-shaped structure. Elastic force is applied to the rotating block 8v through the torsion shaft 8n, enabling the four one-way opening and closing pieces 8k to achieve one-way opening and closing inside the nozzle 8z, ensuring that the nozzle 8z can eject gas. And after the gas stops ejecting, the interior of the nozzle 8z closes to prevent the cleaning liquid from flowing back into the nozzle 8z.
[0024] Among them, the swing mechanism x61 includes a swing bottom plate 1b, a positioning shaft 1z, a telescopic hose 1s, a connecting middle pipe 1j, and a shunt pipe 1f. The middle part of the swing bottom plate 1b is connected to the interior of the upper end of the support platform x66 through the positioning shaft 1z. The bottom edge of the swing bottom plate 1b is fixed to the upper end of the telescopic hose 1s. The bottom of the telescopic hose 1s is connected to the upper end of the shunt pipe 1f in a through manner. One end of the connecting middle pipe 1j is connected to the interior of the aerator x64 in a through manner, and the connecting middle pipe 1j is connected to the lower end of the shunt pipe 1f in a through manner; There are two telescopic hoses 1s and shunt pipes 1f, which are installed symmetrically left and right. The telescopic hose 1s has a corrugated structure and is made of rubber material with good resilience. The two telescopic hoses 1s are arranged at both ends of the bottom edge of the swing bottom plate 1b. By introducing air through the two shunt pipes 1f, air pressure is applied to both ends of the bottom of the swing bottom plate 1b. And under the action of the buffer elastic force applied by the telescopic hose 1s, the swing bottom plate 1b can swing left and right around the positioning shaft 1z, driving the bottom of the paint tray to vibrate, improving the effect of overall aeration cleaning of the paint tray. The specific usage mode and function of this embodiment: In the present invention, when cleaning the paintbrush and the paint palette, the paintbrush cleaning mechanism x1 is turned upwards. At this time, the paintbrush and the paint palette are placed inside the casing x5. The paint palette is placed by the paint palette cleaning mechanism x6, and the paintbrush is placed by the paintbrush cleaning mechanism x1. Then, the paintbrush cleaning mechanism x1 is closed. Next, the controller x8 controls the water pump inside to control the inlet pipe x2 to discharge the cleaning liquid into the casing x5. When the cleaning liquid reaches the highest water level inside the casing x5, it is monitored by the water level sensor x3, and the water pump controls the inlet pipe x2 to stop feeding liquid. Then, the aerator x64 is started to work to discharge gas into the guide pipe 8g. Due to the rotating blocks 8d provided at the upper and lower ends of the guide pipe 8g, when the airflow enters the guide pipe 8g, the guide pipe 8g can rotate itself, driving the outer nozzles 8z to perform circumferential spraying. And through multiple nozzles 8z, the comprehensiveness of aeration is improved, thereby improving the cleaning effect of the cleaning liquid on the paint palette. During the process of the nozzles 8z performing aeration, an elastic force is applied to the rotating block 8v through the torsion shaft 8n, so that the four one-way opening and closing pieces 8k achieve one-way opening and closing inside the nozzles 8z, ensuring that the nozzles 8z can eject gas, and after the gas stops ejecting, the inside of the nozzles 8z is closed to prevent the cleaning liquid from flowing back into the nozzles 8z. At the same time, part of the gas generated by the aerator x64 is discharged into the shunt pipe 1f through the connecting middle pipe 1j. Air pressure is applied to both ends of the bottom of the swinging bottom plate 1b through the two shunt pipes 1f, and under the action of the buffer elastic force applied by the telescopic hose 1s, the swinging bottom plate 1b can swing left and right around the positioning shaft 1z, driving the bottom of the paint palette to vibrate, improving the overall aeration cleaning effect of the paint palette. Embodiment
[0025] As shown in the Figure 6 appendix Figure 8 as follows: Among them, the paintbrush cleaning mechanism x1 includes a cover plate x19, a handle x17, a magnetic sealing strip x15, and a fixing mechanism x12. The rear end of the cover plate x19 is axially connected to the upper end inside the casing x5, and a handle x17 is provided at the front end of the cover plate x19. The magnetic sealing strip x15 is embedded at the edge of the cover plate x19, and the fixing mechanism x12 is installed at the bottom of the cover plate x19; There are three magnetic sealing strips x15, which are distributed on the left and right sides and the front bottom of the cover plate x19. Through the three magnetic sealing strips x15, magnetic connection can be generated when the cover plate x19 covers the upper end inside the casing x5, improving the firmness and sealing performance of the connection between the cover plate x19 and the casing x5, and preventing the cleaning liquid from leaking from the gap between the cover plate x19 and the casing x5 during the cleaning process. There are six fixing mechanisms x12, which are horizontally distributed at the bottom of the cover plate x19. Through the six fixing mechanisms x12, six different paintbrushes can be fixed, improving the stability during the cleaning process of the paintbrushes.
[0026] Among them, the fixing mechanism x12 includes a guide post 2g, a sliding block 2d, and a clamping mechanism 2j. The guide post 2g is fixedly installed inside the cover plate x19, and the guide post 2g passes through the inside of the sliding block 2d with a clearance fit. The sliding block 2d is welded to the top of the clamping mechanism 2j. The clamping mechanism 2j is located at the bottom of the cover plate x19. The clamping mechanism 2j is located at the bottom of the cover plate x19; There are two clamping mechanisms 2j, which are installed on the guide post 2g in the front and rear directions. By sliding the two sliding blocks 2d back and forth on the guide post 2g, the distance between the two clamping mechanisms 2j is adjusted to ensure that the clamping mechanisms 2j can stably clamp paintbrushes of different lengths.
[0027] Among them, the clamping mechanism 2j includes a spring tube sleeve j6, an adjusting rod j9, a clamping ring j2, and a rubber block j5. The top of the spring tube sleeve j6 is fixedly installed with a sliding block 2d, and the upper end of the adjusting rod j9 is installed inside the spring tube sleeve j6 with a clearance fit. The lower end of the adjusting rod j9 is welded to the upper end of the clamping ring j2. The inner side of the clamping ring j2 is provided with a rubber block j5; The clamping ring j2 is of a circular ring structure, and there is an opening at the lower end. At the same time, there are three rubber blocks j5, which are distributed on the left and right and upper positions on the inner side of the clamping ring j2. The opening at the lower end of the clamping ring j2 facilitates the paintbrush to be clamped into the inside of the clamping ring j2, and the three rubber blocks j5 on the inner side of the clamping ring j2 can elastically resist the outer side of the paintbrush, facilitating the firm clamping of paintbrushes of different diameters. The spring tube sleeve j6 is composed of a circular tube and a spring. The spring inside the spring tube sleeve j6 applies an elastic force to the adjusting rod j9, so that the spring tube sleeve j6 and the adjusting rod j9 can elastically adjust the orientation of the paintbrush clamped inside the clamping ring j2 during the cleaning process, improving the comprehensiveness of the paintbrush cleaning. The specific usage method and function of this embodiment: In the present invention, when the paintbrush is placed, the sliding block 2d is slidably adjusted on the guide post 2g according to the size and length of the paintbrush, so as to adjust the distance between the two clamping mechanisms 2j. After adjustment, the two clamping mechanisms 2j can clamp and fix the head and tail ends of paintbrushes with different lengths. Moreover, multiple paintbrushes are independently clamped and fixed by multiple groups of fixing mechanisms x12. During the clamping process, the paintbrush is inserted into the inner side of the clamping ring j2, and the rubber block j5 on the inner side of the clamping ring j2 elastically abuts against the outer end face of the paintbrush, which is convenient for firmly clamping paintbrushes with different diameters. After the clamping is completed, the cover plate x19 is closed downward. When the cover plate x19 is placed on the upper end inside the casing x5, magnetic attraction connection can be generated by three magnetic sealing strips x15, which improves the firmness and sealing performance of the connection between the cover plate x19 and the casing x5, and prevents the cleaning liquid from leaking out from the gap between the cover plate x19 and the casing x5 during the cleaning process. Moreover, during the cleaning process, the spring inside the spring tube sleeve j6 applies elastic force to the adjusting rod j9, so that the spring tube sleeve j6 and the adjusting rod j9 can elastically adjust the paintbrush clamped inside the clamping ring j2 in the up and down directions during the cleaning process, improving the comprehensiveness of the paintbrush cleaning. Any technical solution that uses the technical solution of the present invention or is designed by those skilled in the art under the inspiration of the technical solution of the present invention to achieve the above technical effects shall fall within the protection scope of the present invention.
Claims
1. An art brush cleaning device, comprising a cleaning main unit (X), a drain pipe (P), and a storage frame (C), wherein a drain pipe (P) is embedded below the right end of the cleaning main unit (X) and is connected through the drain pipe, and the storage frame (C) is welded above the right end of the cleaning main unit (X), characterized in that: The cleaning host (X) comprises a housing (x5), a paint tray cleaning mechanism (x6), a paint brush cleaning mechanism (x1), a controller (x8), a water level sensor (x3), and a water inlet pipe (x2). A drainage pipe (P) is embedded below the right end of the housing (x5) and is connected through it. A storage frame (C) is welded above the right end of the housing (x5). The paint tray cleaning mechanism (x6) is installed inside the housing (x5), and the paint brush cleaning mechanism (x1) is installed at the upper end inside the housing (x5). The paint tray cleaning mechanism (x6) is located directly below the paint brush cleaning mechanism (x1). The controller (x8) is arranged above the outer side of the left end of the housing (x5). The controller (x8) is electrically connected to the water level sensor (x3), and the water level sensor (x3) is fixedly installed at the upper left end of the inner side of the housing (x5). The water level sensor (x3) is located above the water inlet pipe (x2). The controller (x8) is controllably connected to the water inlet pipe (x2).
2. The art brush cleaning device according to claim 1, characterized in that: The paint tray cleaning mechanism (x6) comprises an aerator (x64), a support platform (x66), a swing mechanism (x61), a support frame (x63), and an injection mechanism (x68); the aerator (x64) is installed at the lower left end of the outer side of the casing (x5), and the aerator (x64) is connected to the inside of the injection mechanism (x68) through the support platform (x66); a swing mechanism (x61) is installed inside the support platform (x66), and the aerator (x64) is connected to the inside of the swing mechanism (x61); the support platform (x66) is fixedly installed at the lower end of the inner side of the casing (x5), and the support frame (x63) is welded to the upper end surface of the support platform (x66); the injection mechanism (x68) is installed between the upper end of the support platform (x66) and the inner side of the support frame (x63).
3. The art brush cleaning device according to claim 2, characterized in that: The injection mechanism (x68) comprises a guide tube (8g), a rotating block (8d), a nozzle (8z), a one-way opening and closing piece (8k), a rotating block (8v), and a torsion shaft (8n); the lower end of the guide tube (8g) is installed inside the upper end of the support platform (x66) through the rotating block (8d), and the lower end of the guide tube (8g) is connected to the inside of the aerator (x64); the upper end of the guide tube (8g) is connected to the inner upper end of the support frame (x63) through the rotating block (8d); the outer end face of the guide tube (8g) is embedded with a nozzle (8z) and is connected to each other; the one-way opening and closing piece (8k) is located at the front end of the nozzle (8z), and the edge of the one-way opening and closing piece (8k) is provided with a rotating block (8v); the rotating block (8v) is hinged to the inside of the nozzle (8z) through the torsion shaft (8n).
4. The art brush cleaning device according to claim 2, characterized in that: The swing mechanism (x61) comprises a swing base plate (1b), a positioning shaft (1z), a telescopic hose (1s), a connecting middle pipe (1j), and a diversion pipe (1f); the middle portion of the swing base plate (1b) is connected to the interior of the upper end of the support platform (x66) via the positioning shaft (1z); the bottom edge of the swing base plate (1b) is fixed to the upper end of the telescopic hose (1s); the bottom of the telescopic hose (1s) is connected to the upper end of the diversion pipe (1f); one end of the connecting middle pipe (1j) is connected to the interior of the aerator (x64); and the connecting middle pipe (1j) is connected to the lower end of the diversion pipe (1f).
5. The art brush cleaning device according to claim 1, characterized in that: The paintbrush cleaning mechanism (x1) comprises a cover plate (x19), a handle (x17), a magnetic sealing strip (x15), and a fixing mechanism (x12); the rear end of the cover plate (x19) is connected to the internal shaft of the upper end of the housing (x5), and the front end of the cover plate (x19) is provided with a handle (x17); the magnetic sealing strip (x15) is embedded in the edge end of the cover plate (x19), and the fixing mechanism (x12) is installed at the bottom of the cover plate (x19).
6. The art brush cleaning device according to claim 5, characterized in that: The fixing mechanism (x12) comprises a guide column (2g), a sliding block (2d), and a clamping mechanism (2j); the guide column (2g) is fixedly installed inside the cover plate (x19), and the guide column (2g) is passed through the inside of the sliding block (2d) by means of a clearance fit; the sliding block (2d) is welded to the top of the clamping mechanism (2j), and the clamping mechanism (2j) is located at the bottom of the cover plate (x19); the clamping mechanism (2j) is located at the bottom of the cover plate (x19).
7. The art brush cleaning device according to claim 6, characterized in that: The clamping mechanism (2j) comprises a spring tube sleeve (j6), an adjusting rod (j9), a clamping ring (j2), and a rubber block (j5); a sliding block (2d) is fixedly mounted on the top of the spring tube sleeve (j6); the upper end of the adjusting rod (j9) is mounted inside the spring tube sleeve (j6) with a clearance fit; the lower end of the adjusting rod (j9) is welded to the upper end of the clamping ring (j2); and a rubber block (j5) is provided on the inner side of the clamping ring (j2).