A cleaning device for ceramic tile production

By designing a ceramic tile cleaning device including a conveying platform, a scrubbing assembly and a driving mechanism, the problem of the inability to clean multiple faces of the ceramic tile at the same time in the prior art is solved, and an efficient and simple cleaning process is achieved, and the cleaning efficiency and placement stability of the ceramic tile are improved.

CN118976727BActive Publication Date: 2025-05-23SHANDONG DAJUN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202411471408.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-05-23
Estimated Expiration
2044-10-22

AI Technical Summary

Technical Problem

During the production process of existing ceramic tiles, the cleaning device cannot clean the top, bottom and side of the ceramic tiles at the same time, and the cleaning steps are cumbersome and inefficient.

Method used

A cleaning device including a front-end conveying platform, a back-end conveying platform, a scrubbing assembly and a driving mechanism is designed to achieve push and rotate cleaning of ceramic tiles through an electric telescopic rod and a driving mechanism, expand the cleaning range, and realize loading and unloading through a single push structure, simplifying locking processing.

Benefits of technology

It realizes the simultaneous cleaning of the top, bottom and side of the ceramic tile, improves the cleaning efficiency, simplifies the cleaning steps, and improves the stability of the placement of the ceramic tile.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a cleaning device for ceramic tile production, which relates to the technical field of dirt cleaning. The cleaning device body includes a front-end conveying platform, a rear-end conveying platform, a scrubbing assembly and a driving mechanism. A first electric telescopic rod is screwed on one end of the surface of the front-end conveying platform, and a bottom plate is welded to the bottom ends of the front-end conveying platform and the rear-end conveying platform. A support rod is welded in the middle of the bottom plate, and the top of the support rod is embedded under the scrubbing assembly. A top frame and a bottom frame are welded to one side of the scrubbing assembly. The cleaning device for ceramic tile production can provide cleaning treatment for the top surface, bottom surface and side edges of the ceramic tile at the same time, thereby expanding the cleaning range, and can simultaneously realize the loading and unloading processes of the ceramic tile through a single pushing structure, without the need for locking treatment, thereby improving the efficiency of the cleaning process, and also ensuring the placement stability of the ceramic tile during the cleaning process.
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Description

Technical Field

[0001] The invention relates to the technical field of dirt cleaning, in particular to a cleaning device used for ceramic tile production. Background Art

[0002] The main purpose of cleaning during the production of ceramic tiles is to protect the quality of the glaze, improve production efficiency and ensure product quality. By removing stains and residues, damage to the glaze and chemical corrosion can be avoided, ensuring the beauty and durability of the tiles. The stains and residues that have adhered to the surface of ceramic tiles during the early production and processing can be restored to their cleanliness and brightness through subsequent cleaning devices, thereby improving the quality of the final product.

[0003] In the prior art, the cleaning device used in the ceramic tile production process is completed by flushing or brushing and wiping. During the production process, the ceramic tiles can only be cleaned on the surface area as they move along the conveyor belt. Therefore, the cleaning range is limited and cannot cover every area on both sides and the sides. If the top and bottom surfaces are cleaned at the same time after clamping, each ceramic tile needs to be frequently clamped and locked before cleaning, and then taken out after cleaning, which makes the cleaning steps cumbersome and inefficient. Summary of the invention

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a cleaning device for ceramic tile production to solve the problems raised in the above-mentioned background technology. The present invention can provide cleaning treatment for the top surface, bottom surface and side edges of the ceramic tiles at the same time, thereby expanding the cleaning range, and can simultaneously realize the loading and unloading processes of the ceramic tiles through a single pushing structure, without the need for locking treatment, thereby improving the cleaning efficiency and improving the placement stability of the ceramic tiles during the cleaning process.

[0005] In order to achieve the above-mentioned purpose, the present invention is implemented through the following technical scheme: a cleaning device for ceramic tile production, including a cleaning device body, the cleaning device body including a front conveying platform, a rear conveying platform, a washing assembly and a driving mechanism, a first electric telescopic rod is screwed on one end of the surface of the front conveying platform, and a bottom plate is welded at the bottom ends of the front conveying platform and the rear conveying platform, a support rod is welded in the middle of the bottom plate, and the top of the support rod is embedded under the washing assembly, a top frame and a bottom frame are welded on one side of the washing assembly, and a correction scraping mechanism is welded at both ends of the top frame and the bottom frame, and an extension plate is integrally formed on the side of the bottom plate, and a column is welded at the end of the surface of the extension plate, and the driving mechanism is welded at the top position of the column, and the bottom of the driving mechanism is fixed to the side of the washing assembly as a whole.

[0006] Furthermore, a push plate is welded to the end of the first electric telescopic rod, the bottom of the push plate is in contact with the surface of the front conveying platform, and an arc-shaped edge is provided at one end of the front conveying platform and the rear conveying platform close to the washing component.

[0007] Furthermore, the surfaces of the front conveying platform and the rear conveying platform are flush with each other, and the side edge of the scrubbing assembly rests against the arc-shaped edge of the front conveying platform or the rear conveying platform through rotational movement.

[0008] Furthermore, a top-layer scrubbing plate is welded to one side of the top frame, a bottom-layer scrubbing plate and an edge scrubbing plate are welded to one side of the bottom frame, a top-layer docking sleeve is opened in the middle of the top-layer scrubbing plate, and a bottom-layer docking sleeve is opened in the middle of the bottom-layer scrubbing plate, and brushes are mounted on the surfaces of the top-layer scrubbing plate, the bottom-layer scrubbing plate and the edge scrubbing plate.

[0009] Furthermore, the number of the top scrubbing plate and the bottom scrubbing plate is one each, the number of the edge scrubbing plates is two, and the surfaces of the edge scrubbing plates and the bottom scrubbing plates are flush, and the central axes of the top docking sleeve and the bottom docking sleeve coincide with each other.

[0010] Furthermore, an air pump is placed on the surface of the bottom plate, and a support plate is integrally formed on the outer side of the top of the support rod. A suction cup is embedded on the top of the support plate. The air pump passes through the interior of the support rod through a pipeline and is connected to the bottom of the suction cup. The support plate is rested on the bottom of the washing plate, and the suction cup is passed upward from the inside of the bottom docking sleeve.

[0011] Furthermore, the driving mechanism includes a motor and a driving shaft, a top plate screwed to the top of the motor housing, a rear end of the top plate welded to the top of the column, a driving shaft inserted into the output end of the motor, a linkage sleeve sleeved on the surface of the driving shaft, the bottom of the linkage sleeve movably connected to the surface of the top docking sleeve, a linkage rod welded to the side of the linkage sleeve, and a rotating arm welded to the end of the linkage rod.

[0012] Furthermore, the end of the drive shaft is embedded in the interior of the top-layer docking sleeve, and a pressure plate is inserted into the lower inner side of the top-layer docking sleeve, a rubber pad is attached to the bottom of the pressure plate, a ball bearing is welded to the bottom end of the drive shaft, and the drive shaft is embedded in the surface of the pressure plate through the ball bearing.

[0013] Furthermore, the correction and scraping mechanism includes a second electric telescopic rod and a scrubbing roller, telescopic sleeves are welded to both ends of the top frame and the bottom frame, and one end of the second electric telescopic rod is embedded in the interior of the telescopic sleeve.

[0014] Furthermore, the other end of the second electric telescopic rod is sleeved with a washing roller, the number of the correction and scraping mechanisms is two, and each of the washing rollers is aligned with the edge of the ceramic tile to be cleaned.

[0015] Beneficial effects of the present invention:

[0016] 1. The cleaning device for ceramic tile production can rotate with the help of multiple scrubbing plates on the scrubbing assembly in cooperation with the driving mechanism on the top. Therefore, after the ceramic tile is pushed to the inside of the scrubbing assembly, the top surface, bottom surface and side edges of the ceramic tile can be cleaned at the same time, thereby expanding the cleaning range.

[0017] 2. The cleaning device for ceramic tile production realizes the loading and unloading processes of ceramic tiles simultaneously through a single pushing structure. After the ceramic tiles are pushed into the interior of the washing component, no additional locking process is required. The bottom of the ceramic tiles is only adsorbed by the adsorption structure at the bottom, and the washing component can be directly started to perform the washing operation, thereby improving the cleaning efficiency.

[0018] 3. The cleaning device for ceramic tile production can provide cleaning and scraping treatment for the side edges of each ceramic tile through the correcting and scraping mechanisms at both ends of the washing component, so as to avoid the retention of impurities or bumps adhering to the edges of the ceramic tiles. At the same time, it can also rotate synchronously with the periodically rotating washing component. After each rotation, it can scrape and clean the edges of the ceramic tiles while also correcting the ceramic tiles that are slightly offset, thereby improving the placement stability of the ceramic tiles during the cleaning process. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic structural diagram of the appearance of a cleaning device for ceramic tile production according to the present invention;

[0020] Figure 2 It is a structural schematic diagram of the conveying platform part of the present invention;

[0021] Figure 3 A top view of a washing assembly portion of the present invention;

[0022] Figure 4 It is a structural schematic diagram of the washing component part of the present invention;

[0023] Figure 5 It is a structural schematic diagram of the driving mechanism part of the present invention;

[0024] Figure 6 It is an internal cross-sectional view of the top layer docking sleeve portion of the present invention;

[0025] Figure 7 for Figure 1 A magnified image of area A;

[0026] In the figure: 1, front conveying platform; 2, rear conveying platform; 3, washing assembly; 4, driving mechanism; 5, first electric telescopic rod; 6, push plate; 7, bottom plate; 8, air pump; 9, support rod; 10, support plate; 11, suction cup; 12, arc edge; 13, extension plate; 14, column; 15, edge washing plate; 16, bottom washing plate; 17, top washing plate; 18, top docking sleeve; 19, correction scraping mechanism; 20, top frame; 21, bottom frame; 22, rotating arm; 23, linkage rod; 24, top plate; 25, motor; 26, bottom docking sleeve; 27, telescopic sleeve; 28, second electric telescopic rod; 29, washing roller; 30, driving shaft; 31, linkage sleeve; 32, brush; 33, rubber pad; 34, ball; 35, pressure plate. DETAILED DESCRIPTION

[0027] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.

[0028] See also Figures 1 to 7 The present invention provides the following technical solutions: A cleaning device for ceramic tile production, comprising a cleaning device body, the cleaning device body comprising a front conveying platform 1, a rear conveying platform 2, a scrubbing assembly 3 and a driving mechanism 4, a first electric telescopic rod 5 is screwed to one end of the surface of the front conveying platform 1, and a bottom plate 7 is welded to the bottom ends of the front conveying platform 1 and the rear conveying platform 2, a support rod 9 is welded in the middle of the bottom plate 7, and the top of the support rod 9 is embedded under the scrubbing assembly 3, a top frame 20 and a bottom frame 21 are welded to one side of the scrubbing assembly 3, and a correction scraping mechanism 19 is welded to both ends of the top frame 20 and the bottom frame 21, and an extension plate 13 is integrally formed on the side of the bottom plate 7, and a column 14 is welded to the end of the surface of the extension plate 13, and the driving mechanism 4 is welded to the top position of the column 14, and the bottom of the driving mechanism 4 is fixed to the side of the scrubbing assembly 3 as a whole. The cleaning device for ceramic tile production can provide cleaning and scrubbing treatment for the surface, bottom surface and sides of each ceramic tile.

[0029] When the present invention is used, the ceramic tiles are placed on the front conveying platform 1 in sequence through the external conveying equipment, and the ceramic tiles are pushed by the first electric telescopic rod 5 on the surface of the front conveying platform 1 until they are pushed into the middle washing assembly 3. After the surface of the washing assembly 3 is evacuated with the help of the air pump 8 at the bottom, the middle position of the ceramic tiles is adsorbed and fixed from the bottom, and the top is pressed and fixed by squeezing the rubber pad 33, and the subsequent cleaning and washing process can be carried out. During washing, the driving mechanism 4 is started to directly drive the entire washing assembly 3 to rotate, and the top and bottom surfaces of the ceramic tiles are cleaned during the rotation process, and the rotation can be stopped every 90°. At this time, the correction scraping mechanism 19 is started to push and scrape the two side areas of the ceramic tiles to ensure that the side edges of the ceramic tiles can also be cleaned. The above process is repeated until the entire ceramic tiles are cleaned, and finally the washing assembly 3 is controlled to rotate to dock with the rear conveying platform 2. At this time, the ceramic tiles in the washing assembly 3 are still pushed toward the rear end by the first electric telescopic rod 5 on the front conveying platform 1, and the discharge process can be completed.

[0030] In this embodiment, a push plate 6 is welded to the end of the first electric telescopic rod 5, and the bottom of the push plate 6 is in contact with the surface of the front conveying platform 1, and the front conveying platform 1 and the rear conveying platform 2 are provided with an arc-shaped edge 12 at one end close to the scrubbing assembly 3. The surfaces of the front conveying platform 1 and the rear conveying platform 2 are flush, and the side of the scrubbing assembly 3 is pressed against the arc-shaped edge 12 of the front conveying platform 1 or the rear conveying platform 2 through rotational motion. The loading and unloading processes of ceramic tiles are simultaneously realized through a single pushing structure, and after the ceramic tiles are pushed into the interior of the scrubbing assembly 3, no additional locking process is required, and the bottom of the ceramic tiles can be directly started to perform the scrubbing operation by only adsorbing the bottom of the ceramic tiles through the adsorption structure at the bottom, thereby improving the cleaning efficiency.

[0031] Specifically, after placing the ceramic tiles on the surface of the front conveying platform 1, start the first electric telescopic rod 5 and cooperate with the push plate 6 at the end to push the ceramic tiles toward the position of the washing component 3. At this time, the washing component 3 will initially press the bottom washing plate 16 and the two edge washing plates 15 against the arc-shaped edge 12 at the end of the front conveying platform 1. At this time, the ceramic tiles can be directly pushed to the surface of the edge washing plate 15 and the bottom washing plate 16, and subsequent adsorption and reinforcement treatment can be carried out at this position. After the placement is completed, the subsequent washing process can be carried out.

[0032] In this embodiment, a top scrubber 17 is welded to one side of the top frame 20, a bottom scrubber 16 and an edge scrubber 15 are welded to one side of the bottom frame 21, a top docking sleeve 18 is provided in the middle of the top scrubber 17, a bottom docking sleeve 26 is provided in the middle of the bottom scrubber 16, and brushes 32 are mounted on the surfaces of the top scrubber 17, the bottom scrubber 16 and the edge scrubber 15. There are one top scrubber 17 and one bottom scrubber 16, two edge scrubbers 15, and the surfaces of the edge scrubber 15 and the bottom scrubber 16 are flush, and the central axes of the top docking sleeve 18 and the bottom docking sleeve 26 coincide. An air pump 8 is placed on the surface of the bottom plate 7, a support plate 10 is integrally formed on the outer side of the top of the support rod 9, a suction cup 11 is embedded on the top of the support plate 10, the air pump 8 passes through the inside of the support rod 9 through a pipeline and is connected to the bottom of the suction cup 11, the support plate 10 is against the bottom of the bottom scrubbing plate 16, and the suction cup 11 passes upward from the inside of the bottom docking sleeve 26. With the help of multiple scrubbing plates on the scrubbing assembly 3 and the driving mechanism 4 on the top, it can be rotated, so after the ceramic tile is pushed to the inside of the scrubbing assembly 3, the top surface, bottom surface and side edges of the ceramic tile can be cleaned at the same time, expanding the cleaning range.

[0033] Specifically, by starting the air pump 8 at the bottom, the air inside the suction cup 11 can be extracted with the help of the pipeline. At this time, with the help of the pressure of the ceramic tile itself pressing on the top of the suction cup 11, it can be ensured that the suction cup 11 can be fixedly adsorbed on the bottom position of the ceramic tile. At this time, the fixation of the suction cup 11 can be completed, and at the same time, the driving mechanism 4 on the top also provides downward pressure from the middle position of the surface of the ceramic tile for further reinforcement. Then, starting the driving mechanism 4 can simultaneously drive the top frame 20 and the bottom frame 21 to rotate around the driving shaft 30. During the rotation process, since the ceramic tile has been squeezed and fixed by the suction cup 11 at the bottom and the rubber pad 33 at the top, each washing plate can only be rotated along the two sides of the ceramic tile for washing, thereby realizing the washing process of both sides of the ceramic tile.

[0034] In this embodiment, the driving mechanism 4 includes a motor 25 and a driving shaft 30. The top plate 24 is screwed to the top of the housing of the motor 25. The rear end of the top plate 24 is welded to the top of the column 14. The output end of the motor 25 is plugged with the driving shaft 30. The surface of the driving shaft 30 is sleeved with a linkage sleeve 31. The bottom of the linkage sleeve 31 is movably connected to the surface of the top-layer docking sleeve 18. The end of the driving shaft 30 is embedded in the inside of the top-layer docking sleeve 18, and a pressing plate 35 is inserted below the inner side of the top-layer docking sleeve 18. A rubber pad 33 is attached to the bottom of the pressing plate 35. A ball bearing 34 is welded to the bottom end of the driving shaft 30, and the driving shaft 30 is embedded in the surface of the pressing plate 35 through the ball bearing 34.

[0035] Specifically, after starting the motor 25, the driving shaft 30 drives the linkage rods 23 at both ends to rotate, and then the linkage rods and the rotating arms 22 drive the top frame 20 and the bottom frame 21 to rotate, so that the bottom scrubbing plate 16, the edge scrubbing plate 15 and the top scrubbing plate 17 can finally rotate in contact with the two sides of the ceramic tile to achieve the purpose of scrubbing, and the end of the driving shaft 30 is always embedded in the bottom pressure plate 35 through the welded ball 34. When the ceramic tile is moved to the interior of the scrubbing component 3, the rubber pad 33 will be squeezed. When the driving shaft 30 rotates subsequently, the linkage effect of the ball 34 will make it impossible to directly drive the pressure plate 35 to rotate completely synchronously. Therefore, the squeezing plate 35 will apply a certain pressure to the bottom ceramic tile through the bottom rubber pad 33. This pressure, combined with the bottom suction cup 11 structure, can prevent the ceramic tile from rotating synchronously with the scrubbing component 3.

[0036] In this embodiment, the correction scraping mechanism 19 includes a second electric telescopic rod 28 and a brush roller 29. Telescopic sleeves 27 are welded to both ends of the top frame 20 and the bottom frame 21, and one end of the second electric telescopic rod 28 is embedded in the interior of the telescopic sleeve 27. The other end of the second electric telescopic rod 28 is sleeved with a brush roller 29. There are two correction scraping mechanisms 19, and each of the brush rollers 29 is aligned with the edge of the ceramic tile to be cleaned. The correction scraping mechanisms 19 at both ends of the brush assembly 3 can also provide cleaning and scraping treatment for the side of each ceramic tile to avoid the retention of impurities or bumps adhering to the edge of the ceramic tile. At the same time, it can also rotate synchronously with the periodically rotating brush assembly 3. After each rotation, it can scrape and clean the edge of the ceramic tile while also correcting the ceramic tile that is slightly offset, thereby improving the placement stability of the ceramic tile during the cleaning process. Specifically, if Figure 3 As shown, by starting the second electric telescopic rod 28, the washing roller 29 at the end can be pushed along the side of the ceramic tile to achieve the scraping and cleaning effect on the edge of the ceramic tile. At the same time, even if the inner ceramic tile is offset at a certain angle during the rotation of the washing component 3, it is also possible to control one of the washing rollers 29 to be pushed out first, and the tilted side of the ceramic tile can be pushed along a straight line, so that the tilted ceramic tile can be corrected to its initial state again, ensuring that the subsequent discharge process can be completed smoothly.

[0037] The basic principles and main features of the present invention and the advantages of the present invention are shown and described above. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention.

[0038] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A cleaning device for ceramic tile production, comprising a cleaning device body, characterized in that: The cleaning device body comprises a front conveying platform (1), a rear conveying platform (2), a scrubbing assembly (3) and a driving mechanism (4); a first electric telescopic rod (5) is screwed to one end of the surface of the front conveying platform (1); a bottom plate (7) is welded to the bottom ends of the front conveying platform (1) and the rear conveying platform (2); a support rod (9) is welded to the middle of the bottom plate (7); the top of the support rod (9) is embedded under the scrubbing assembly (3); a top frame (20) and a bottom frame (21) are welded to one side of the scrubbing assembly (3); both ends of the top frame (20) and the bottom frame (21) are welded with a correction scraping mechanism (19); and an extension plate (13) is integrally formed on the side of the bottom plate (7). A column (14) is welded to the end of the surface of the extension plate (13); the drive mechanism (4) is welded to the top of the column (14); the bottom of the drive mechanism (4) is fixed to the side of the scrubbing assembly (3) as a whole; a push plate (6) is welded to the end of the first electric telescopic rod (5); the bottom of the push plate (6) is in contact with the surface of the front conveying platform (1); and an arc-shaped edge (12) is provided at one end of the front conveying platform (1) and the rear conveying platform (2) close to the scrubbing assembly (3); the surfaces of the front conveying platform (1) and the rear conveying platform (2) are flush with each other; and the side of the scrubbing assembly (3) is pressed against the arc-shaped edge (12) of the front conveying platform (1) or the rear conveying platform (2) through rotational motion. A top scrubber (17) is welded to one side of the top frame (20), a bottom scrubber (16) and an edge scrubber (15) are welded to one side of the bottom frame (21), a top butt sleeve (18) is provided in the middle of the top scrubber (17), a bottom butt sleeve (26) is provided in the middle of the bottom scrubber (16), brushes (32) are mounted on the surfaces of the top scrubber (17), the bottom scrubber (16) and the edge scrubber (15), the number of the top scrubber (17) and the bottom scrubber (16) is one, the number of the edge scrubber (15) is two, and the surfaces of the edge scrubber (15) and the bottom scrubber (16) are flush with each other, and the top butt sleeve (26) is provided in the middle of the bottom scrubber (16). 18) and the central axis of the bottom docking sleeve (26) coincide with each other, an air pump (8) is placed on the surface of the bottom plate (7), a support plate (10) is integrally formed on the outer side of the top of the support rod (9), a suction cup (11) is embedded on the top of the support plate (10), the air pump (8) passes through the inside of the support rod (9) through a pipeline and is connected to the bottom of the suction cup (11), the support plate (10) is against the bottom of the bottom scrubbing plate (16), and the suction cup (11) is passed upward from the inside of the bottom docking sleeve (26), the driving mechanism (4) includes a motor (25) and a driving shaft (30), the top of the housing of the motor (25) is screwed with a top plate (24), and the rear end of the top plate (24) is welded to the top of the column (14),A drive shaft (30) is inserted into the output end of the motor (25), a linkage sleeve (31) is sleeved on the surface of the drive shaft (30), the bottom of the linkage sleeve (31) is movably connected to the surface of the top-layer docking sleeve (18), a linkage rod (23) is welded to the side of the linkage sleeve (31), a rotating arm (22) is welded to the end of the linkage rod (23), the end of the drive shaft (30) is embedded in the interior of the top-layer docking sleeve (18), and a pressure plate (35) is inserted below the inner side of the top-layer docking sleeve (18), a rubber pad (33) is attached to the bottom of the pressure plate (35), a ball bearing (34) is welded to the bottom end of the drive shaft (30), and the drive shaft (30) is embedded in the surface of the pressure plate (35) through the ball bearing (34).

2. A cleaning device for ceramic tile production according to claim 1, characterized in that: The correction and scraping mechanism (19) comprises a second electric telescopic rod (28) and a scrubbing roller (29); telescopic sleeves (27) are welded to both ends of the top frame (20) and the bottom frame (21); and one end of the second electric telescopic rod (28) is embedded in the interior of the telescopic sleeve (27).

3. A cleaning device for ceramic tile production according to claim 2, characterized in that: The other end of the second electric telescopic rod (28) is sleeved with a brush roller (29), the number of the correction and scraping mechanisms (19) is two, and each of the brush rollers (29) is aligned with the edge of the ceramic tile to be cleaned.

Citation Information

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