Automatic control logistics line for grinding, punching, cleaning, drying and spraying of ceramic plates

By designing the automatic control logistics line of the ceramic plate, using the mobile scraper body and the cleaning part of the water blocking column, the problems of waste and pollution of water resources during the cleaning of traditional ceramic plates are solved, and the effect of efficient cleaning and water conservation is achieved.

CN119952583APending Publication Date: 2025-05-09SHANDONG HEJING CERAMICS NEW MATERIAL IND TECH RES INST CO LTD
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Patent Information

Application Number
CN202510216200.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-05-09

AI Technical Summary

Technical Problem

The use of high-pressure nozzles during the cleaning of traditional ceramic plates leads to waste of water resources and environmental pollution. At the same time, a large amount of moisture remains on the surface of the ceramic plate, making it difficult to clean.

Method used

An automatic control logistics line for grinding, drilling, cleaning, drying and spraying of ceramic plates is designed, and the first cleaning part and the second cleaning part are adopted, including a nozzle, a scrubbing part, a scraping part and a water blocking column. By moving the scratch body and a water blocking column, the effective utilization of cleaning water and the removal of stains are achieved.

Benefits of technology

It effectively saves water resources, avoids environmental pollution, reduces drying difficulty, and ensures that the surface of the ceramic plate is clean and residue-free.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of logistics lines, in particular to an automatic control logistics line for grinding, punching, cleaning, drying and spraying of ceramic plates, a first cleaning part comprises a plurality of nozzles and a plurality of brushing parts, and the brushing parts are fixedly arranged below the nozzles; the first cleaning part moves forwards, the scraping body curls backwards to drive the water blocking column on the rear side to move upwards and be inserted into the corresponding scraping hole, cleaning water is prevented from flowing out of the scraping hole, the scraping body can scrape water in front of the ceramic plate, the first cleaning part moves backwards, the scraping body curls forwards to drive the water blocking column on the front side of the scraping body to move upwards, and the cleaning water is prevented from flowing out of the scraping hole. The scraping bodies are inserted into the corresponding scraping holes, so that the cleaning water is prevented from flowing out of the scraping holes, and the scraping bodies can scrape water behind the ceramic plate; the cleaning water flows to the surface of the ceramic plate along the scraping body, the infiltrated stains are brushed away by the brush body, high-pressure water flow is not needed, water resources are saved, meanwhile, rebound water mist is avoided, and pollution to the environment caused by the water mist is avoided.
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Description

Technical Field

[0001] The invention relates to the technical field of logistics lines, in particular to an automatic control logistics line for grinding, drilling, cleaning, drying and spraying of ceramic plates. Background Art

[0002] Ceramic panels, also known as porcelain panels or ceramic panels, are flat ceramic products made from natural mineral raw materials (such as clay, quartz, feldspar, etc.) through a series of processes such as mixing, molding, drying and high-temperature firing. Ceramic panels have many excellent properties, making them widely used in architectural decoration, industrial applications and personal consumer products. Ceramic panels have high strength, chemical corrosion resistance, fire resistance, waterproof and anti-fouling, beautiful and diverse, environmentally friendly and healthy, and large size. Ceramic panels usually have high compressive strength and wear resistance, and can withstand large mechanical stress without being easily damaged; ceramic panels have good resistance to chemicals such as acids and alkalis and are not easily corroded; due to their non-organic nature, ceramic panels will not burn and have a high melting point, making them suitable for occasions with high fire protection requirements; the surface of ceramic panels is dense and smooth, not easy to absorb water, and not easy to be stained, making them easy to clean and maintain; beautiful and diverse ceramic panels can be manufactured in different colors, textures and sizes to meet various aesthetic needs; ceramic panels do not contain harmful substances, meet environmental protection standards, and are harmless to the human body; modern technology makes it possible to produce ceramic panels of extra-large specifications, reducing the number of joints during installation and improving the visual effect.

[0003] Ceramic panels are often used as finishing materials for indoor and outdoor walls, providing beautiful and durable surfaces. They are also used for floor paving in kitchens, bathrooms, corridors, etc., and are popular for their excellent anti-slip properties and easy cleaning. Some countertops, such as kitchen worktops and bathroom counters, often use ceramic panels to extend the service life of the countertops due to their heat-resistant and scratch-resistant properties. Due to their chemical resistance, ceramic panels are suitable for use as laboratory countertops. Because of their durability and easy maintenance, ceramic panels are also used on the floors and walls of public places with large traffic such as subway stations and airports.

[0004] After the ceramic plates are fired and formed, they need to be processed according to technical requirements, including grinding for flatness, drilling, cleaning, drying, spraying and other processes. The traditional cleaning process mostly uses high-pressure nozzles to spray water for flushing, which not only wastes water resources, but the rebounding water mist will also cause environmental pollution. At the same time, a large amount of moisture remains on the surface of the ceramic plates and cannot be cleaned up. It can only be removed by drying equipment, which increases the difficulty of drying. Summary of the invention

[0005] The main purpose of the present invention is to provide an automatic controlled logistics line for grinding, drilling, cleaning, drying and spraying of ceramic plates, so as to solve the problems proposed in the related art of using high-pressure nozzles for cleaning, wasting water resources, polluting the environment, and causing a large amount of moisture to remain on the surface of the ceramic plates and unable to be cleaned away.

[0006] In order to achieve the above-mentioned object, according to one aspect of the present invention, there is provided an automatic control logistics line for grinding, punching, cleaning, drying and spraying of ceramic plates, comprising: an automatic grinder, the automatic grinder being used for grinding the surface of the ceramic plate;

[0007] A main roller conveyor, which is located next to the automatic grinder and is used to convey the ceramic plates;

[0008] The cleaning part is used to clean the ceramic plate, the cleaning part comprises a first cleaning part and a second cleaning part, the first cleaning part and the second cleaning part have the same structure, the first cleaning part and the second cleaning part are both fixedly arranged above the frame of the main roller, the first cleaning part comprises a plurality of nozzles and a plurality of brushing parts, the brushing parts are both fixedly arranged below the nozzles, the nozzles introduce clean water into the brushing part, the brushing part comprises a plurality of brush bodies and a scraping part, the scraping part comprises a scraping body, a plurality of scraping holes and a plurality of water blocking columns, the water blocking columns are all located below the scraping holes, the scraping holes correspond to the water blocking columns one by one and are all distributed on both sides of the scraping body, when the first cleaning part moves forward, the scraping body curls backward, drives the water blocking columns on the rear side thereof to move upward, and inserts into the corresponding scraping holes, when the first cleaning part moves backward, the scraping body curls forward, drives the water blocking columns on the front side thereof to move upward, and inserts into the corresponding scraping holes;

[0009] A chuck part, which is fixed above the frame of the main roller table and is used for drilling holes on the ceramic plate;

[0010] A drying section, which is fixed above the frame of the main roller table and is used to dry the ceramic plate;

[0011] A spraying part, which is fixed above the frame of the main roller table and is used for spraying the ceramic plate;

[0012] The turning part is fixedly arranged above the frame of the main roller conveyor and is used for turning over the ceramic plate.

[0013] Furthermore, the first cleaning part also includes a solenoid valve, a nozzle cylinder and a water spray pipe, the nozzle cylinder is fixedly arranged above the frame of the main roller conveyor, the water spray pipe is fixedly arranged at the end of the nozzle cylinder, and the solenoid valve is fixedly arranged on the water spray pipe.

[0014] Furthermore, the scrubbing part also includes a pipeline group and a support group, the pipeline group includes a vertical pipe, a horizontal pipe and a plurality of branch pipes, and the support group includes a support rod, a water distribution part and a plurality of brush blocks.

[0015] Furthermore, the vertical pipe is fixedly arranged below the nozzle, the horizontal pipe is fixedly arranged below the vertical pipe, the branch pipes are fixedly arranged below the horizontal pipe, support rods are fixedly arranged on both sides of the lower ends of the branch pipes, the support rods are fixedly connected to the water diversion part, the brush blocks are fixedly arranged at the bottom of the water diversion part, and the brush bodies are fixedly arranged at the bottom of the brush blocks for brushing away stains on the surface of the ceramic plate.

[0016] Furthermore, the water diversion part includes a water storage tank, a water diversion block and a plurality of water outlet holes. The water storage tank is fixedly connected to the support rod, the water diversion block is fixedly arranged above the bottom of the water storage tank, the water outlet holes are all arranged through the bottom of the water storage tank and are located on both sides of the water diversion block, and the water outlet holes are all connected to the scraping holes.

[0017] Furthermore, the scraping part also includes a scraping block and a connecting block, the scraping block is fixed at the bottom of the water tank, the connecting block is fixed in the middle of the bottom of the scraping block, the scraping body is fixed at the bottom of the connecting block, the water blocking columns are tilted outward and fixed on both sides of the top of the scraping body, the angle between the water blocking column and the scraping body is 60° to 80°, and the scraping hole and the water blocking column are located on both sides of the connecting block.

[0018] Furthermore, the chuck section includes a double-chuck grinder section and a single-chuck grinder section, the double-chuck grinder section includes a double-chuck transverse cylinder, a double-chuck push plate, a plurality of double-chuck vertical cylinders and a plurality of double-chuck rubber rollers, the double-chuck transverse cylinder is fixedly arranged above the bracket of the main roller conveyor, the double-chuck push plate is fixedly arranged at the end of the double-chuck transverse cylinder, the double-chuck vertical cylinders are all fixedly arranged below the bracket of the main roller conveyor, and the double-chuck rubber rollers are all fixedly arranged at the top of the double-chuck vertical cylinder, the single-chuck grinder section includes a single-chuck transverse cylinder, a single-chuck push plate, a plurality of single-chuck rubber rollers and a plurality of single-chuck vertical cylinders, the single-chuck transverse cylinder is fixedly arranged above the bracket of the main roller conveyor, the single-chuck push plate is fixedly arranged at the end of the single-chuck transverse cylinder, the single-chuck vertical cylinders are all fixedly arranged below the bracket of the main roller conveyor, and the single-chuck rubber rollers are all fixedly arranged on the top of the single-chuck vertical cylinder.

[0019] Furthermore, the drying section includes a first drying device, a second drying device and a third drying device, the first drying device, the second drying device and the third drying device have the same structure, the first drying device includes an axial flow fan and a drying box, the drying box is fixedly arranged above the bracket of the main roller conveyor, and the axial flow fan is fixedly arranged on the top of the drying box.

[0020] Furthermore, the spraying part includes a first spraying robot and a second spraying robot, the first spraying robot and the second spraying robot have the same structure, and are both fixed above the bracket of the main roller table.

[0021] Furthermore, the flipping part includes an active part, a driven part and a clamping part, the active part includes a reducer motor, two transmission gears and a transmission shaft, the driven part includes two gear rings, a number of positioning wheels and a flipping cylinder, the clamping part includes a first bracket, a first roller, a second roller and a second bracket, the reducer motor and the positioning wheels are fixedly arranged above the bracket of the main roller, the transmission shaft is fixedly arranged on the top of the reducer motor, the transmission gears are fixedly arranged at both ends of the transmission shaft, and are respectively meshed with the corresponding gear rings, both ends of the first bracket and the second bracket are fixedly connected to the inside of the gear ring, the first roller rotation is arranged on the inner side of the first bracket, the second roller rotation is arranged on the inner side of the second bracket, and the flipping cylinder is fixedly arranged above the first bracket.

[0022] Compared with the prior art, the present invention has the following beneficial effects: the first cleaning part moves forward, and the scraping body curls backward, driving the water blocking column on its rear side to move upward and insert into the corresponding scraping hole to prevent the cleaning water from flowing out of the scraping hole here, and the scraping body can scrape off the moisture in front of the ceramic plate; the first cleaning part moves backward, and the scraping body curls forward, driving the water blocking column on its front side to move upward and insert into the corresponding scraping hole to prevent the cleaning water from flowing out of the scraping hole here, and the scraping body can scrape off the moisture behind the ceramic plate; the accumulated water on the surface of the ceramic plate is scraped off before entering the drying part, reducing the difficulty of drying; the cleaning water flows along the scraping body to the surface of the ceramic plate and infiltrates the stains, and the infiltrated stains are brushed off by the brush body, without the need to use high-pressure water flow, saving water resources while avoiding the generation of rebound water mist, and will not cause pollution to the environment due to water mist. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is an overall schematic diagram of the present invention;

[0024] Figure 2 It is a schematic diagram of the structure of the cleaning part of the present invention;

[0025] Figure 3 It is a schematic diagram of the structure of the washing part of the present invention;

[0026] Figure 4 It is a cross-sectional view of the washing part of the present invention;

[0027] Figure 5 It is a schematic diagram of the structure of the double-chuck grinder of the present invention;

[0028] Figure 6 It is a schematic diagram of the structure of a single-chuck grinder of the present invention;

[0029] Figure 7This is a schematic diagram of the structure of the drying section of the present invention;

[0030] Figure 8 It is a schematic diagram of the structure of the turning part of the present invention.

[0031] Illustration Description:

[0032] 1. Ceramic plate; 2. Automatic grinder; 3. First cleaning section; 4. Double-chuck grinder section; 5. Single-chuck grinder section; 6. Second cleaning section; 7. First drying device; 8. First spraying robot; 9. Second drying device; 10. Turning section; 11. Second spraying robot; 12. Third drying device; 13. Main roller; 31. Solenoid valve; 32. Nozzle; 33. Nozzle cylinder; 34. Water spray pipe; 35. Washing section; 351. Vertical pipe; 352. Horizontal pipe; 353. Branch pipe; 354. Support rod; 355. Water distribution section; 356. Brush block; 357. Brush body; 358. Scraping section; 3551. Water storage tank; 3552. Water distribution block; 3553. Water outlet ; 3581, scraping block; 3582, scraping hole; 3583, connecting block; 3584, scraping body; 3585, water blocking column; 41, double-chuck horizontal cylinder; 42, double-chuck push plate; 43, double-chuck vertical cylinder; 44, double-chuck rubber roller; 51, single-chuck horizontal cylinder; 52, single-chuck push plate; 53, single-chuck rubber roller; 54, single-chuck vertical cylinder; 71, axial flow fan; 72, drying box; 100, first bracket; 101, reducer motor; 102, transmission gear; 103, positioning wheel; 104, gear ring; 105, flip cylinder; 106, transmission shaft; 107, first roller; 108, second roller; 109, second bracket. DETAILED DESCRIPTION

[0033] In order to further explain the technical means and effects adopted by the present invention to achieve the predetermined invention purpose, the specific implementation mode, structure, characteristics and effects of the present invention are described in detail below in combination with the accompanying drawings and preferred embodiments.

[0034] See also Figures 1 to 8 , This embodiment provides an automatic control logistics line for grinding, drilling, cleaning, drying and spraying of ceramic plates, including: an automatic grinder 2, the automatic grinder 2 is used to grind the surface of the ceramic plate 1;

[0035] A main roller conveyor 13, which is located next to the automatic grinder 2 and is used to convey the ceramic plate 1;

[0036] The cleaning part is used to clean the ceramic plate 1. The cleaning part includes a first cleaning part 3 and a second cleaning part 6. The first cleaning part 3 and the second cleaning part 6 have the same structure. The first cleaning part 3 and the second cleaning part 6 are both fixedly arranged above the frame of the main roller 13. The first cleaning part 3 includes a plurality of nozzles 32 and a plurality of scrubbing parts 35. The scrubbing parts 35 are all fixedly arranged below the nozzles 32. The nozzles 32 introduce clean water into the scrubbing parts 35. The scrubbing parts 35 include a plurality of brush bodies 357 and a scraping part 358. The scraping part 358 includes a scraping body 3584 and a plurality of scraping holes. 3582 and a plurality of water blocking columns 3585, the water blocking columns 3585 are all located below the scraping holes 3582, the scraping holes 3582 correspond to the water blocking columns 3585 one by one and are distributed on both sides of the scraping body 3584, when the first cleaning part 3 moves forward, the scraping body 3584 curls backward, drives the water blocking columns 3585 on the rear side thereof to move upward, and inserts into the corresponding scraping holes 3582, when the first cleaning part 3 moves backward, the scraping body 3584 curls forward, drives the water blocking columns 3585 on the front side thereof to move upward, and inserts into the corresponding scraping holes 3582;

[0037] A chuck part, which is fixed above the frame of the main roller table 13 and is used for drilling holes in the ceramic plate 1;

[0038] A drying section, which is fixedly arranged above the frame of the main roller 13 and is used to dry the ceramic plate 1. A motor for driving the main roller 13 to rotate is provided at the end of the main roller 13;

[0039] A spraying part, which is fixed above the frame of the main roller table 13 and is used for spraying the ceramic plate 1;

[0040] The turning part 10 is fixedly arranged above the frame of the main roller conveyor 13 and is used for turning over the ceramic plate 1 .

[0041] The first cleaning section 3 also includes a solenoid valve 31 , a nozzle cylinder 33 and a water spray pipe 34 . The nozzle cylinder 33 is fixed above the frame of the main roller table 13 , the water spray pipe 34 is fixed at the end of the nozzle cylinder 33 , and the solenoid valve 31 is fixed on the water spray pipe 34 .

[0042] The scrubbing portion 35 further includes a pipeline group and a support group. The pipeline group includes a vertical pipe 351 , a horizontal pipe 352 and a plurality of branch pipes 353 . The support group includes a support rod 354 , a water diversion portion 355 and a plurality of brush blocks 356 .

[0043] The vertical pipe 351 is fixedly arranged below the nozzle 32, the horizontal pipe 352 is fixedly arranged below the vertical pipe 351, the branch pipes 353 are fixedly arranged below the horizontal pipe 352, support rods 354 are fixedly arranged on both sides of the lower ends of the branch pipes 353, the support rods 354 are fixedly connected to the water diversion part 355, the brush blocks 356 are fixedly arranged at the bottom of the water diversion part 355, and the brush bodies 357 are fixedly arranged at the bottom of the brush blocks 356, which are used to brush away stains on the surface of the ceramic plate 1.

[0044] The water diversion part 355 includes a water storage tank 3551, a water diversion block 3552 and a plurality of water outlet holes 3553. The water storage tank 3551 is fixedly connected to the support rod 354. The water diversion block 3552 is fixedly arranged above the bottom of the water storage tank 3551. The water outlet holes 3553 are all arranged through the bottom of the water storage tank 3551 and are located on both sides of the water diversion block 3552. The water outlet holes 3553 are all connected to the scraping holes 3582. The water diversion block 3552 divides the water storage tank 3551 into two parts, and the water in the water storage tank 3551 flows out from the corresponding water outlet holes 3553 respectively.

[0045] The scraping portion 358 also includes a scraping block 3581 and a connecting block 3583. The scraping block 3581 is fixedly arranged at the bottom of the water storage tank 3551, the connecting block 3583 is fixedly arranged in the middle of the bottom of the scraping block 3581, the scraping body 3584 is fixedly arranged at the bottom of the connecting block 3583, and the water blocking columns 3585 are all tilted outwardly and fixedly arranged on both sides of the top of the scraping body 3584. The angle between the water blocking column 3585 and the scraping body 3584 is 60° to 80°, and the preferred angle in this embodiment is 70°, which is convenient for the water blocking column 35 85 is inserted into the scraping hole 3582. The scraping hole 3582 and the water blocking column 3585 are both located on both sides of the connecting block 3583. The connecting block 3583 and the scraping body 3584 are made of rubber. When they come into contact with and move with the ceramic plate 1, the connecting block 3583 and the scraping body 3584 will deform and curl. The water blocking column 3585 rotates upward and is inserted into the corresponding water outlet hole 3553 to prevent clean water from flowing out of the water outlet hole 3553 here. The scraping body 3584 cannot completely scrape the moisture on the surface of the ceramic plate 1.

[0046] The chuck section includes a double-chuck grinder section 4 and a single-chuck grinder section 5. The double-chuck grinder section 4 includes a double-chuck transverse cylinder 41, a double-chuck push plate 42, a plurality of double-chuck vertical cylinders 43 and a plurality of double-chuck rubber rollers 44. The double-chuck transverse cylinder 41 is fixedly arranged above the bracket of the main roller 13, the double-chuck push plate 42 is fixedly arranged at the end of the double-chuck transverse cylinder 41, the double-chuck vertical cylinders 43 are all fixedly arranged below the bracket of the main roller 13, and the double-chuck rubber rollers 44 are all fixedly arranged at the double At the top of the chuck vertical cylinder 43, the single chuck grinding machine part 5 includes a single chuck transverse cylinder 51, a single chuck push plate 52, a plurality of single chuck rubber rollers 53 and a plurality of single chuck vertical cylinders 54. The single chuck transverse cylinder 51 is fixedly arranged above the bracket of the main roller conveyor 13, the single chuck push plate 52 is fixedly arranged at the end of the single chuck transverse cylinder 51, the single chuck vertical cylinders 54 are all fixedly arranged below the bracket of the main roller conveyor 13, and the single chuck rubber rollers 53 are all fixedly arranged at the top of the single chuck vertical cylinder 54.

[0047] The drying section includes a first drying device 7, a second drying device 9 and a third drying device 12. The first drying device 7, the second drying device 9 and the third drying device 12 have the same structure. The first drying device 7 includes an axial flow fan 71 and a drying box 72. The drying box 72 is fixed above the bracket of the main roller 13, and the axial flow fan 71 is fixed on the top of the drying box 72.

[0048] The spraying part includes a first spraying robot 8 and a second spraying robot 11 . The first spraying robot 8 and the second spraying robot 11 have the same structure and are both fixed above the bracket of the main roller table 13 .

[0049] The flipping part 10 includes an active part, a driven part and a clamping part. The active part includes a reducer motor 101, two transmission gears 102 and a transmission shaft 106. The driven part includes two gear rings 104, a plurality of positioning wheels 103 and a flipping cylinder 105. The clamping part includes a first bracket 100, a first roller 107, a second roller 108 and a second bracket 109. The reducer motor 101 and the positioning wheel 103 are both fixedly arranged above the bracket of the main roller 13. The transmission shaft 106 is fixedly arranged on the top of the reducer motor 101. The transmission gear 102 is fixedly arranged at both ends of the transmission shaft 106 and is respectively meshed with the corresponding gear rings 104. Both ends of the first bracket 100 and the second bracket 109 are fixedly connected to the inside of the gear ring 104. The first roller 107 is rotatably arranged on the inner side of the first bracket 100, the second roller 108 is rotatably arranged on the inner side of the second bracket 109, and the flipping cylinder 105 is fixedly arranged above the first bracket 100. A ring wheel is fixedly provided inside the gear ring 104 , and the ring wheel is rollingly connected with the positioning wheel 103 , and the gear ring 104 is supported on the positioning wheel 103 through the ring wheel.

[0050] Place the ceramic plate 1 on the grinding wheel of the automatic grinder 2 and grind the ceramic plate to make its flatness meet the technical requirements, then move the ceramic plate 1 to the first cleaning section 3, after sensing the ceramic plate 1, the solenoid valve 31 opens, and the clean water enters the water spray pipe 34, and flows from the nozzle 32 along the vertical pipe 351 into the horizontal pipe 352, and then flows into the water storage tank 3551 from the branch pipe 353, the clean water in the water storage tank 3551 flows from the water outlet 3553 into the scraping hole 3582, and then flows out from the scraping hole 3582 and falls on the scraping body 3584, and finally falls on the ceramic plate 1 along the scraping body 3584, the clean water soaks the stains on the ceramic plate 1, and the brush body 357 is convenient for brushing the stains off the ceramic plate 1, and the nozzle air is started. Cylinder 33, the telescopic rod of the nozzle cylinder 33 drives the washing part 35 to reciprocate on the surface of the ceramic plate 1 through the water spray pipe 34, and the brush body 357 brushes away the stains on the surface of the ceramic plate 1. When the washing part 35 moves forward, since the scraping body 3584 is tightly against the ceramic plate 1, under the action of friction, the scraping body 3584 bends backward around the connecting block 3583, and the water blocking column 3585 on the rear side of the connecting block 3583 curls upward and is respectively inserted into the scraping hole 3582 on the rear side of the scraping block 3581. The scraping hole 3582 on the rear side no longer discharges water, and the scraping body 3584 pushes the stains and water brushed up by the front brush body 357 to the outer edge of the ceramic plate 1, so as to remove the stains and excess water on the surface of the ceramic plate 1. When the scrubbing part 35 moves backward, under the action of friction, the scraping body 3584 bends forward around the connecting block 3583, and the water blocking column 3585 on the front side of the connecting block 3583 curls upward and is respectively inserted into the scraping holes 3582 on the front side of the scraping block 3581. The scraping holes 3582 on the front side no longer discharge water, and the scraping body 3584 pushes the stains and moisture brushed up by the rear brush body 357 to the outer edge of the ceramic plate 1, removing the stains and excess moisture on the surface of the ceramic plate 1, making it convenient for the drying device to dry the ceramic plate 1; start the motor at the end of the main roller 13, the motor drives the main roller 13 to start rolling, and transports the ceramic plate 1 to the double-chuck grinder part 4, through the double-chuck horizontal cylinder 41 and the double-chuck vertical cylinder 4 3 positions the ceramic plate 1, the drilling machine of the double-chuck grinder section 4 starts to work, and two holes are drilled on the plate surface. The main roller 13 continues to roll and transports the ceramic plate 1 to the single-chuck grinder section 5. Through the same working principle as the double-chuck grinder section 4, holes are drilled on the side of the ceramic plate 1. After the drilling is completed, the main roller 13 transports the ceramic plate 1 to the second cleaning section 6. The ceramic plate 1 is cleaned again in the same way as the first cleaning section 3. Then the main roller 13 transports the ceramic plate 1 to the first drying device 7. The surface of the ceramic plate 1 is dried by the heating of the heating tube and the operation of the axial flow fan 71. After drying, the main roller 13 transports the ceramic plate 1 to the first spraying robot 8, and the upper surface of the ceramic plate 1 is sprayed;After spraying, it is transported to the second drying device 9 to dry the sprayed surface, and then the ceramic plate 1 is transported to the flipping part 10, the flipping cylinder 105 is lifted, the ceramic plate 1 is fixed, the reducer motor 101 is started, and the transmission shaft 106 and the transmission gear 102 are driven to rotate, and then the gear ring 104 is driven to rotate to realize the flipping of the ceramic plate 1. After the flipping is completed, it is transported to the second spraying robot 11, and the spraying and drying work is repeated. ;

[0051] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any form. Although the present invention has been disclosed as a preferred embodiment as above, it is not used to limit the present invention. Any technical personnel in this field can make some changes or modify the technical contents disclosed above into equivalent embodiments without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. An automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates, characterized in that: include: An automatic grinding machine (2), wherein the automatic grinding machine (2) is used to grind the surface of the ceramic plate (1); A main roller conveyor (13), the main roller conveyor (13) is located next to the automatic grinding machine (2) and is used to convey the ceramic plate (1); A cleaning section, the cleaning section is used to clean a ceramic plate (1), the cleaning section comprises a first cleaning section (3) and a second cleaning section (6), the first cleaning section (3) and the second cleaning section (6) have the same structure, the first cleaning section (3) and the second cleaning section (6) are both fixedly arranged above the frame of a main roller table (13), the first cleaning section (3) comprises a plurality of nozzles (32) and a plurality of scrubbing sections (35), the scrubbing sections (35) are all fixedly arranged below the nozzles (32), the nozzles (32) introduce clean water into the scrubbing sections (35), the scrubbing sections (35) comprise a plurality of brush bodies (357) and a scraping section (358), the scraping section (358) comprises a scraping body (3 584), a plurality of scraping holes (3582) and a plurality of water blocking columns (3585), the water blocking columns (3585) are all located below the scraping holes (3582), the scraping holes (3582) correspond to the water blocking columns (3585) one by one and are all distributed on both sides of the scraping body (3584), when the first cleaning part (3) moves forward, the scraping body (3584) curls backward, drives the water blocking columns (3585) on the rear side thereof to move upward, and insert into the corresponding scraping holes (3582), when the first cleaning part (3) moves backward, the scraping body (3584) curls forward, drives the water blocking columns (3585) on the front side thereof to move upward, and insert into the corresponding scraping holes (3582); A chuck part, which is fixedly arranged above the frame of the main roller conveyor (13) and is used for drilling holes in the ceramic plate (1); A drying section, the drying section being fixedly arranged above the frame of the main roller conveyor (13) and being used for drying the ceramic plate (1); A spraying unit, the spraying unit is fixedly arranged above the frame of the main roller table (13) and is used for spraying the ceramic plate (1); A turning part (10), wherein the turning part (10) is fixedly arranged above the frame of the main roller conveyor (13) and is used for turning over the ceramic plate (1).

2. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The first cleaning part (3) also includes a solenoid valve (31), a nozzle cylinder (33) and a water spray pipe (34); the nozzle cylinder (33) is fixedly arranged above the frame of the main roller table (13); the water spray pipe (34) is fixedly arranged at the end of the nozzle cylinder (33); and the solenoid valve (31) is fixedly arranged on the water spray pipe (34).

3. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The scrubbing portion (35) further comprises a pipeline group and a support group. The pipeline group comprises a vertical pipe (351), a horizontal pipe (352) and a plurality of branch pipes (353). The support group comprises a support rod (354), a water distribution portion (355) and a plurality of brush blocks (356).

4. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 3 is characterized in that: The vertical tube (351) is fixedly arranged below the nozzle (32), the horizontal tube (352) is fixedly arranged below the vertical tube (351), the branch tubes (353) are fixedly arranged below the horizontal tube (352), support rods (354) are fixedly arranged on both sides of the lower ends of the branch tubes (353), the support rods (354) are fixedly connected to the water diversion part (355), the brush blocks (356) are fixedly arranged at the bottom of the water diversion part (355), and the brush bodies (357) are fixedly arranged at the bottom of the brush blocks (356) for brushing away stains on the surface of the ceramic plate (1).

5. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 3 is characterized in that: The water diversion part (355) comprises a water storage tank (3551), a water diversion block (3552) and a plurality of water outlet holes (3553); the water storage tank (3551) is fixedly connected to the support rod (354); the water diversion block (3552) is fixedly arranged above the bottom of the water storage tank (3551); the water outlet holes (3553) are all arranged through the bottom of the water storage tank (3551) and are located on both sides of the water diversion block (3552); and the water outlet holes (3553) are all connected to the scraping hole (3582).

6. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 5 is characterized in that: The scraping portion (358) further comprises a scraping block (3581) and a connecting block (3583); the scraping block (3581) is fixedly arranged at the bottom of the water storage tank (3551); the connecting block (3583) is fixedly arranged in the middle of the bottom of the scraping block (3581); the scraping body (3584) is fixedly arranged at the bottom of the connecting block (3583); the water blocking columns (3585) are fixedly arranged at both sides of the top of the scraping body (3584) in an inclined manner outward; the angle between the water blocking columns (3585) and the scraping body (3584) is 60° to 80°; the scraping hole (3582) and the water blocking columns (3585) are both located on both sides of the connecting block (3583).

7. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The chuck section includes a double-chuck grinder section (4) and a single-chuck grinder section (5). The double-chuck grinder section (4) includes a double-chuck transverse cylinder (41), a double-chuck push plate (42), a plurality of double-chuck vertical cylinders (43) and a plurality of double-chuck rubber rollers (44). The double-chuck transverse cylinder (41) is fixedly arranged above a bracket of a main roller conveyor (13). The double-chuck push plate (42) is fixedly arranged at the end of the double-chuck transverse cylinder (41). The double-chuck vertical cylinders (43) are fixedly arranged below the bracket of the main roller conveyor (13). The double-chuck rubber rollers (44) are fixedly arranged at the bottom of the bracket of the main roller conveyor (13). The single-chuck grinding machine part (5) comprises a single-chuck transverse cylinder (51), a single-chuck push plate (52), a plurality of single-chuck rubber rollers (53) and a plurality of single-chuck vertical cylinders (54). The single-chuck transverse cylinder (51) is fixedly arranged above the bracket of the main roller conveyor (13). The single-chuck push plate (52) is fixedly arranged at the end of the single-chuck transverse cylinder (51). The single-chuck vertical cylinders (54) are all fixedly arranged below the bracket of the main roller conveyor (13). The single-chuck rubber rollers (53) are all fixedly arranged at the top of the single-chuck vertical cylinders (54).

8. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The drying section comprises a first drying device (7), a second drying device (9) and a third drying device (12); the first drying device (7), the second drying device (9) and the third drying device (12) have the same structure; the first drying device (7) comprises an axial flow fan (71) and a drying box (72); the drying box (72) is fixedly arranged above a bracket of a main roller conveyor (13); and the axial flow fan (71) is fixedly arranged on the top of the drying box (72).

9. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The spraying section comprises a first spraying robot (8) and a second spraying robot (11); the first spraying robot (8) and the second spraying robot (11) have the same structure and are both fixed above a bracket of a main roller conveyor (13).

10. The automatic control logistics line for grinding, drilling, cleaning, drying and spraying ceramic plates according to claim 1 is characterized in that: The flipping part (10) comprises an active part, a driven part and a pressing part. The active part comprises a reducer motor (101), two transmission gears (102) and a transmission shaft (106). The driven part comprises two gear rings (104), a plurality of positioning wheels (103) and a flipping cylinder (105). The pressing part comprises a first bracket (100), a first roller conveyor (107), a second roller conveyor (108) and a second bracket (109). The reducer motor (101) and the positioning wheels (103) are both fixedly arranged above the bracket of the main roller conveyor (13). The transmission shaft (106) is fixedly arranged on the top of the reducer motor (101), the transmission gear (102) is fixedly arranged on both ends of the transmission shaft (106), and is respectively meshed with the corresponding gear ring (104), both ends of the first bracket (100) and the second bracket (109) are fixedly connected to the inside of the gear ring (104), the first roller (107) is rotatably arranged on the inner side of the first bracket (100), the second roller (108) is rotatably arranged on the inner side of the second bracket (109), and the flip cylinder (105) is fixedly arranged above the first bracket (100).