Ceramic tile glazing and enameling device and method
Patent Information
- Application Number
- CN202410129269.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-30
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2044-01-30
AI Technical Summary
目前,瓷砖施釉上釉装置以及上述案件的结构在使用时,大多通过单一的方法进行施釉上釉工作,不能够进行结合处理,从而保证施釉上釉的质量,使得施釉上釉更加的规整,更好的进行机械化生产工作,因此针对上述问题需要一种设备对其进行改进
一,本发明通过第一上釉结构的结构设置,能够进行二次上釉处理,釉料通过对接导管、连通控制管能够传输,到达组合导管上,之后经过连通泵的处理,传导至上釉处理部件的内部,连通泵与配合连通导座连通,使得釉料进入存储阀座的内部,存储阀座的下端通过对称导环与连通管座块转动连接,实现釉料的传导,且连通管座块的下端与涂釉转盘连通,进行实时的供釉工作,同时动力座能够驱动蜗杆进行转动,蜗杆的转动,带动蜗轮跟随转动配合,实现涂釉转盘转动式上釉工作,帮助进行瓷砖的加工处理。
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Figure CN117962087B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ceramic tile glazing technology, specifically to a ceramic tile glazing device and glazing method. Background Technology
[0002] Glazing of ceramic tiles includes the following methods: 1. Dipping glaze method: This glazing method allows the glaze to be applied evenly to the surface of the body, even for the most complex shapes. It is time-saving and easy to operate.
[0003] 2. Glazing by dipping: If the body is large, the container volume may not be large enough or there may be difficulties in the operation procedure when using the dip glazing method. However, the glazer may want to obtain a uniform glaze layer in a short time and with a less troublesome method. In this case, the glazing by dipping method can be used.
[0004] 3. Brush glazing method: This glazing method is best suited for small areas or for painting with glaze. It can also be used to create special effects. However, when choosing a brush for brushing glaze, it is best to choose a sheep hair brush that can absorb more glaze.
[0005] As the closest existing technology, Chinese Patent Publication No. CN213890491U discloses a glazing device for porcelain glazed tiles. The device includes a conveying support, with several conveying rollers rotatably mounted between two side plates of the support. The conveying rollers are connected to a drive motor via a transmission chain. The ceramic tile to be glazed is located on the conveying rollers. Annular baffles are provided on both sides of the tile. Each annular baffle has an adjusting screw on its outer side. Each adjusting screw passes through a corresponding side plate of the conveying support, and adjusting nuts are tightened on both sides of that side plate. A glazing cover is provided on the conveying support, and a lead screw is installed inside the glazing cover. The lead screw is connected to a rotary motor. The lead screw has threaded sections at both ends in opposite directions, and nuts are installed on the two threaded sections. A glazing spray plate is located at the bottom of the nuts. A collection box is located below the conveying rollers. This device can limit the movement of the ceramic tile, preventing it from deviating during conveying. Furthermore, the positions of the annular baffles and the glazing spray plate can be adjusted according to the size of the tile, effectively ensuring the quality of the glazing. Currently, most tile glazing devices and the structures mentioned above perform glazing work using a single method, without combining different methods to ensure the quality of glazing, make the glazing process more regular, and facilitate better mechanized production. Therefore, an improved device is needed to address these issues. Summary of the Invention
[0006] To address the problems in the prior art, the present invention provides a ceramic tile glazing device and glazing method.
[0007] The technical solution adopted by the present invention to solve its technical problem is: a ceramic tile glazing device and glazing method, including a first glazing structure and a second glazing structure, the front end of the first glazing structure is connected to the second glazing structure, the lower ends of the first glazing structure and the second glazing structure are fixedly provided with a conduction control structure, and a dust collector is installed at the front end of the conduction control structure. The first glazing structure includes a docking conduit, a connecting control conduit, a combined conduit, a connecting pump, and a glazing treatment component. The connecting pump is connected to the side end of the glazing treatment component, the combined conduit is connected to the side end of the connecting pump, the connecting control conduit is connected to the front end of the combined conduit, and the docking conduit is connected to the front end of the connecting control conduit. The glazing treatment component includes a storage valve seat, a docking guide plate, a first support frame plate, a symmetrical guide ring, a connecting pipe seat block, a glazing turntable, a worm gear, a worm, a power seat, and a mating connecting guide. The side end of the storage valve seat is connected to the mating connecting guide. The lower end of the storage valve seat is connected to the docking guide plate, and the side end of the docking guide plate is fixedly connected to the first support frame plate. The bottom of the storage valve seat is connected to the symmetrical guide ring. The lower end of the symmetrical guide ring is rotatably connected to a worm gear. The lower end of the worm gear is fixedly connected to the glazing turntable. The side end of the worm gear is meshed with a worm, and the worm is driven by the power seat. Specifically, the connecting guide seat and the storage valve seat are connected to the glazing turntable via symmetrical guide rings and connecting pipe seat blocks, and the power seat controls the overall rotation of the connecting pipe seat block, the glazing turntable, and the worm wheel via a worm gear. Specifically, the second glazing structure includes a glazing component, a second support frame plate, a connecting branch pipe, a side frame plate, a docking control installation pipe, and a flexible hose. The side end of the glazing component is connected to a flexible hose, the front end of the flexible hose is connected to a docking control installation pipe, and the front end of the docking control installation pipe is connected to a connecting branch pipe. The connecting branch pipe is limited by the second support frame plate and the side frame plate, and the second support frame plate and the side frame plate are fixedly connected. Specifically, the glazing component includes a guide pipe, a connecting main seat, a limiting protection frame, an infrared detector, a valve seat, a guide spray nozzle, a side support bracket, a docking round pipe, a pressurizing pump, and a docking pressure pipe. The side end of the docking round pipe is connected to the pressurizing pump, and the pressurizing pump is connected to the docking pressure pipe. The front end of the docking pressure pipe is connected to the guide pipe, and the lower end of the guide pipe is connected to and has a valve seat through the connecting main seat. The lower end of the valve seat is connected to the guide spray nozzle. Specifically, a limit protection frame is provided between the main seat and the valve seat, a side guard bracket is fixedly connected to the side end of the limit protection frame, and an infrared detector is fixedly installed at the front end of the side guard bracket. Specifically, the transmission control structure includes a ceramic tile, a limiting partition, a guide belt, a driven roller, a power drive seat, and a bracket. The upper end of the power drive seat is driven and connected to the guide belt, and the side end of the power drive seat is fixedly connected to the limiting partition. The guide belt carries the ceramic tile, and the lower end of the ceramic tile is provided with a driven roller. The driven roller rotates to cooperate with the ceramic tile for transmission. The driven roller is mounted and limited by the bracket.
[0008] Specifically, the side guard bracket is fixed to the limiting partition, and the first support frame plate is also fixedly connected to the side guard bracket.
[0009] Specifically, the front end of the connecting branch pipe is connected to the docking conduit, the docking conduit is connected to the glazing treatment component through the connecting control pipe, the combined conduit, and the connecting pump, the mating connecting guide seat is connected to the connecting pump, and the connecting branch pipe, the docking control installation pipe, the flexible hose, and the docking round pipe are connected to each other.
[0010] Specifically, a preliminary heating seat is installed at the rear end of the first glazing structure.
[0011] A glazing method using a ceramic tile glazing device includes the following steps: S1. First, the tiles arrive at the dust collector for surface cleaning. Then, the power drive seat drives the guide belt to rotate, allowing the tiles to slide and adjust under the limit of the restricting partition. At the same time, the lower end of the tiles is supported by the driven roller, enabling them to move in coordination. S2. After that, the tile reaches the second glazing structure position, and the infrared detector detects the tile. At this time, the glaze is introduced through the docking conduit. The glaze is conducted to the hose through the connecting branch pipe and the docking control installation pipe, and then to the docking round pipe. It reaches the inside of the pressure pump, and after processing, it is transmitted to the docking pressure pipe. It is then guided to the connecting main seat through the guide pipe. The connecting main seat is connected to the valve seat, so that the glaze is sprayed onto the tile through the guide spray nozzle to perform the initial glazing treatment. S3. At this time, the tile continues to be transported and reaches the first glazing structure position. The glaze is transported to the combined conduit through the docking conduit and the connecting control pipe. Then, it is introduced into the interior of the connecting guide seat through the connecting pump and stored in the center of the storage valve seat. After that, the glaze is applied to the tile through the symmetrical guide ring, the connecting pipe seat block and the glazing turntable for glazing treatment. S4. At this time, the power seat can control the worm gear to rotate. When the worm gear rotates, it drives the worm wheel to rotate as well, thereby realizing the adjustment and rotation control of the glazing turntable, realizing the secondary glazing treatment on the surface of the tile, and thus completing the glazing work.
[0012] The beneficial effects of this invention are: First, this invention, through the structural design of the first glazing structure, enables secondary glazing. The glaze is transmitted through the connecting conduit and the connecting control pipe to the combined conduit, and then, after being processed by the connecting pump, is conducted to the interior of the glazing processing component. The connecting pump is connected to the matching connecting guide seat, allowing the glaze to enter the interior of the storage valve seat. The lower end of the storage valve seat is rotatably connected to the connecting pipe seat block through symmetrical guide rings to realize the conduction of the glaze. The lower end of the connecting pipe seat block is connected to the glazing turntable for real-time glazing. At the same time, the power seat can drive the worm gear to rotate, and the rotation of the worm gear drives the worm wheel to rotate in coordination, realizing the glazing operation of the glazing turntable and assisting in the processing of ceramic tiles.
[0013] Second, the present invention enables preliminary glazing through the setting of the second glazing structure. The glaze is conducted to the hose through the connecting branch pipe and the docking control installation pipe, and then guided into the interior of the glazing component. The hose is connected to the docking round pipe. At this time, the glaze is discharged to the guide connecting pipe through the pressure pump and the docking pressure pipe, and then sprayed onto the tile through the connecting main seat, valve seat and guide spray nozzle for preliminary glazing treatment. The combination of the first glazing structure and the second glazing structure as a whole makes the glazing more uniform and facilitates mechanized glazing processing. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0015] Figure 1 This is a three-dimensional structural diagram of the main body from a frontal perspective in this invention; Figure 2 This is a side view three-dimensional structural diagram of the main body in this invention; Figure 3 This is a three-dimensional structural diagram of the main body from the rear view in this invention; Figure 4 This is a frontal perspective three-dimensional structural diagram of the first glazing structure in this invention; Figure 5 This is an exploded view of the glazing component in this invention; Figure 6 This is a frontal perspective three-dimensional structural diagram of the second glazing structure in this invention; Figure 7 This is a frontal perspective three-dimensional structural diagram of the glazing component in this invention; Figure 8 This is a three-dimensional structural diagram of the conduction control structure from a frontal perspective in this invention; Figure 9 This is a frontal perspective three-dimensional structural diagram of the second embodiment of the main body of the present invention.
[0016] In the diagram: 1-First glazing structure, 2-Second glazing structure, 3-Dust collector, 4-Conduction control structure, 5-Docking conduit, 6-Connecting control pipe, 7-Combined conduit, 8-Connecting pump, 9-Glazing treatment component, 10-Storage valve seat, 11-Docking guide plate, 12-First support frame plate, 13-Symmetrical guide ring, 14-Connecting pipe seat block, 15-Glazing turntable, 16-Worm gear, 17-Worm, 18-Power seat, 19-Matching connecting guide, 20-Glazing component, 21-Second support 22-Support plate, 23-Connecting branch pipe, 24-Side frame plate, 25-Dating control installation pipe, 26-Hose, 27-Guide connecting pipe, 28-Connecting main seat, 29-Limit protection frame, 30-Infrared detector, 31-Guide spray nozzle, 32-Side support bracket, 33-Dating round pipe, 34-Pressure pump, 35-Dating pressure pipe, 36-Ceramic tile, 37-Restriction partition, 38-Guide belt, 39-Driven roller, 40-Power drive seat, 41-Bracket, 42-Preliminary heating seat. Detailed Implementation
[0017] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.
[0018] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0019] The invention will be further described below with reference to the accompanying drawings.
[0020] Example 1 like Figure 1-8As shown, a ceramic tile glazing device and glazing method of the present invention includes a first glazing structure 1 and a second glazing structure 2. The front end of the first glazing structure 1 is connected to the second glazing structure 2. The lower ends of the first glazing structure 1 and the second glazing structure 2 are fixedly provided with a conduction control structure 4. A dust collector 3 is installed at the front end of the conduction control structure 4. like Figure 4 As shown, the first glazing structure 1 includes a docking conduit 5, a connecting control pipe 6, a combined conduit 7, a connecting pump 8, and a glazing treatment component 9. The side end of the glazing treatment component 9 is connected to the connecting pump 8, the side end of the connecting pump 8 is connected to the combined conduit 7, the front end of the combined conduit 7 is connected to the connecting control pipe 6, and the front end of the connecting control pipe 6 is connected to the docking conduit 5. like Figure 5 As shown, the glazing treatment component 9 includes a storage valve seat 10, a docking guide plate 11, a first support frame plate 12, a symmetrical guide ring 13, a connecting pipe seat block 14, a glazing turntable 15, a worm gear 16, a worm 17, a power seat 18, and a mating connecting guide 19. The side end of the storage valve seat 10 is connected to the mating connecting guide 19. The lower end of the storage valve seat 10 is connected to the docking guide plate 11, and the side end of the docking guide plate 11 is fixedly connected to the first support frame plate 12. The bottom of the storage valve seat 10 is connected to the symmetrical guide ring 13. The lower end of the symmetrical guide ring 13 is rotatably connected to the worm gear 16. The lower end of the worm gear 16 is fixedly connected to the glazing turntable 15. A worm gear 17 is engaged with the side end. The worm gear 17 is driven by the power seat 18. When the tile 36 reaches the position of the second glazing structure 2, the infrared detector 29 detects the tile 36. At this time, the glaze is introduced through the docking conduit 5. The glaze is conducted to the hose 25 through the connecting branch pipe 22 and the docking control installation pipe 24, and then to the docking round pipe 33. It reaches the inside of the pressure pump 34, and after processing, it is transmitted to the docking pressure pipe 35. It is then guided to the connecting main seat 27 through the guide connecting pipe 26. The connecting main seat 27 is connected to the valve seat 30, so that the glaze is sprayed onto the tile 36 through the guide spray nozzle 31 for preliminary glazing treatment. The connecting guide seat 19 and the storage valve seat 10 are connected to the glazing turntable 15 through the symmetrical guide ring 13 and the connecting pipe seat block 14. The power seat 18 controls the overall rotation of the connecting pipe seat block 14, the glazing turntable 15 and the worm wheel 16 through the worm gear 17. like Figure 6As shown, the second glazing structure 2 includes a glazing component 20, a second support frame plate 21, a connecting branch pipe 22, a side frame plate 23, a docking control mounting pipe 24, and a flexible hose 25. The side end of the glazing component 20 is connected to the flexible hose 25, and the front end of the flexible hose 25 is connected to the docking control mounting pipe 24. The front end of the docking control mounting pipe 24 is connected to the connecting branch pipe 22. The connecting branch pipe 22 is limited by the second support frame plate 21 and the side frame plate 23. The second support frame plate 21 and the side frame plate 23 are fixedly connected, and the ceramic tile 36 reaches the second glazing structure. At position 2, infrared detector 29 detects the ceramic tile 36. At this time, glaze is introduced through the docking conduit 5. The glaze is conducted through the connecting branch pipe 22 and the docking control installation pipe 24 to the flexible hose 25, and then to the docking round pipe 33, reaching the inside of the pressure pump 34. After processing, it is transmitted to the docking pressure pipe 35 and guided through the guide connecting pipe 26 to the connecting main seat 27. The connecting main seat 27 is connected to the valve seat 30, so that the glaze is sprayed onto the ceramic tile 36 through the guide spray nozzle 31 for preliminary glazing treatment. like Figure 7 As shown, the glazing component 20 includes a guide pipe 26, a connecting main seat 27, a limiting protection frame 28, an infrared detector 29, a valve seat 30, a guide spray nozzle 31, a side support bracket 32, a docking round pipe 33, a pressurizing pump 34, and a docking pressure pipe 35. The side end of the docking round pipe 33 is connected to the pressurizing pump 34, and the docking pressure pipe 35 is connected to the pressurizing pump 34. The front end of the docking pressure pipe 35 is connected to the guide pipe 26. The lower end of the guide pipe 26 is connected to the valve seat 30 through the connecting main seat 27, and the lower end of the valve seat 30 is connected to the guide spray nozzle 31. A limit protection frame 28 is provided between the main seat 27 and the valve seat 30. A side protection bracket 32 is fixedly connected to the side end of the limit protection frame 28, and an infrared detector 29 is fixedly installed at the front end of the side protection bracket 32. like Figure 8 As shown, the transmission control structure 4 includes a ceramic tile 36, a limiting partition 37, a guide belt 38, a driven roller 39, a power drive seat 40, and a bracket 41. The upper end of the power drive seat 40 is driven and connected to the guide belt 38, and the side end of the power drive seat 40 is fixedly connected to the limiting partition 37. The ceramic tile 36 is driven and transmitted on the guide belt 38, and the lower end of the ceramic tile 36 is provided with a driven roller 39. The driven roller 39 rotates to cooperate with the ceramic tile 36 for transmission. The driven roller 39 is installed and limited to rotation by the bracket 41. The power drive seat 40 drives the guide belt 38 to rotate, so that the ceramic tile 36 slides and adjusts under the limitation of the limiting partition 37. At the same time, the lower end of the ceramic tile 36 is supported and carried by the driven roller 39, so that it can move in coordination.
[0021] The side guard bracket 32 is fixed on the limiting partition 37, and the first support frame plate 12 is also fixedly connected to the side guard bracket 32.
[0022] The front end of the connecting branch pipe 22 is connected to the docking conduit 5. The docking conduit 5 is connected to the glazing treatment component 9 through the connecting control pipe 6, the combined conduit 7, and the connecting pump 8. It is also connected to the connecting pump 8 in conjunction with the connecting guide seat 19. The connecting branch pipe 22, the docking control installation pipe 24, and the flexible hose 25 are connected to the docking round pipe 33.
[0023] A glazing method using a ceramic tile glazing device includes the following steps: S1. First, the tile 36 arrives at the dust collector 3 for surface cleaning. Then, the power drive seat 40 drives the guide belt 38 to rotate, so that the tile 36 slides and adjusts under the limit of the limiting partition 37. At the same time, the lower end of the tile 36 is supported by the driven roller 39, which can cooperate to move. S2. After that, the tile 36 reaches the position of the second glazing structure 2. The infrared detector 29 detects the tile 36. At this time, the glaze is introduced through the docking conduit 5. The glaze is conducted to the hose 25 through the connecting branch pipe 22 and the docking control installation pipe 24. Then it is conducted to the docking round pipe 33 and reaches the inside of the pressure pump 34. After processing, it is transmitted to the docking pressure pipe 35 and guided to the connecting main seat 27 through the guide connecting pipe 26. The connecting main seat 27 is connected to the valve seat 30, so that the glaze is sprayed onto the tile 36 through the guide spray nozzle 31 for the initial glazing treatment. S3. At this time, the ceramic tile 36 continues to be transported and reaches the position of the first glazing structure 1. The glaze is transported to the combined conduit 7 through the docking conduit 5 and the connecting control pipe 6. Then, it is introduced into the interior of the connecting guide seat 19 through the connecting pump 8 and stored in the center of the storage valve seat 10. After that, the glaze is applied to the ceramic tile 36 through the symmetrical guide ring 13, the connecting pipe seat block 14, and the glazing turntable 15 for glazing treatment. S4. At this time, the power seat 18 can control the worm gear 17 to rotate. When the worm gear 17 rotates, it drives the worm wheel 16 to rotate as well, thereby realizing the adjustment and rotation control of the glazing turntable 15, realizing the secondary glazing treatment on the surface of the ceramic tile 36, and thus completing the glazing work.
[0024] The working principle of Example 1 is as follows: In use, the user combines the first glazing structure 1, the second glazing structure 2, the dust collector 3, and the transmission control structure 4 as a whole. The transmission control structure 4 is used for the transmission of the tile 36. First, the tile 36 reaches the dust collector 3 for surface cleaning. Then, the power drive seat 40 drives the guide belt 38 to rotate, allowing the tile 36 to slide and adjust under the limit of the limiting partition 37. At the same time, the lower end of the tile 36 is supported by the driven roller 39, enabling it to move in coordination. After that, the tile 36 reaches the position of the second glazing structure 2, where the infrared detector 29 senses and detects the tile 36. At this time, glaze is introduced through the docking conduit 5. The glaze is transmitted to the hose 25 through the connecting branch pipe 22 and the docking control installation pipe 24, and then to the docking round pipe 33, reaching the inside of the pressure pump 34. After processing, it is transmitted to the docking pressure pipe 3. 5. The glaze is guided through the guide pipe 26 to the main seat 27, which is connected to the valve seat 30. This allows the glaze to be sprayed onto the tile 36 through the guide spray nozzle 31 for initial glazing. The tile 36 continues to be transported to the first glazing structure 1. The glaze is then transported through the connecting pipe 5 and the connecting control pipe 6 to the combined pipe 7. After that, it is introduced into the interior of the connecting guide seat 19 by the connecting pump 8 and stored in the center of the storage valve seat 10. The glaze is then applied to the tile 36 through the symmetrical guide ring 13, the connecting pipe seat block 14, and the glazing turntable 15 for glazing. At this time, the power seat 18 can control the worm gear 17 to rotate. When the worm gear 17 rotates, it drives the worm wheel 16 to rotate as well, realizing the adjustment and rotation control of the glazing turntable 15. This achieves the secondary glazing treatment on the surface of the tile 36, thus completing the glazing process.
[0025] Example 2 Based on Example 1, such as Figure 9 As shown, a preliminary heating seat 42 is installed at the rear end of the first glazing structure 1.
[0026] In implementing this embodiment, the initial heating seat 42 is set up to perform initial heating, making the glaze adhere better, and then it enters the drying oven for heating treatment to achieve the complete glazing process of the ceramic tile 36.
[0027] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A ceramic tile glazing device, characterized in that: It includes a first glazing structure (1) and a second glazing structure (2). The front end of the first glazing structure (1) is connected to the second glazing structure (2). The lower ends of the first glazing structure (1) and the second glazing structure (2) are fixedly provided with a conduction control structure (4). A dust collector (3) is installed at the front end of the conduction control structure (4). The first glazing structure (1) includes a docking conduit (5), a connecting control pipe (6), a combined conduit (7), a connecting pump (8), and a glazing treatment component (9). The side end of the glazing treatment component (9) is connected to the connecting pump (8), the side end of the connecting pump (8) is connected to the combined conduit (7), the front end of the combined conduit (7) is connected to the connecting control pipe (6), and the front end of the connecting control pipe (6) is connected to the docking conduit (5). The glazing treatment component (9) includes a storage valve seat (10), a docking guide plate (11), a first support frame plate (12), a symmetrical guide ring (13), a connecting pipe seat block (14), a glazing turntable (15), a worm gear (16), a worm (17), a power seat (18), and a mating connecting guide seat (19). The side end of the storage valve seat (10) is connected to the mating connecting guide seat (19), and the lower end of the storage valve seat (10) is connected to the docking guide plate (11). The storage valve seat (10) is connected to the bottom of the storage valve seat (10) and the symmetrical guide ring (13). The lower end of the symmetrical guide ring (13) is rotatably connected to a worm gear (16). The lower end of the worm gear (16) is fixedly connected to a glazing turntable (15). The side end of the worm gear (16) is meshed with a worm (17). The worm (17) is driven by a power seat (18). The connecting guide seat (19) and storage valve seat (10) are connected to the glazing turntable (15) through the symmetrical guide ring (13) and the connecting pipe seat block (14), and the power seat (18) controls the overall rotation of the connecting pipe seat block (14), the glazing turntable (15) and the worm wheel (16) through the worm gear (17).
2. The ceramic tile glazing device according to claim 1, characterized in that: The second glazing structure (2) includes a glazing component (20), a second support frame plate (21), a connecting branch pipe (22), a side frame plate (23), a docking control installation pipe (24), and a hose (25). The side end of the glazing component (20) is connected to the hose (25), the front end of the hose (25) is connected to the docking control installation pipe (24), and the front end of the docking control installation pipe (24) is connected to the connecting branch pipe (22). The connecting branch pipe (22) is limited by the second support frame plate (21) and the side frame plate (23). The second support frame plate (21) and the side frame plate (23) are fixedly connected.
3. The ceramic tile glazing device according to claim 2, characterized in that: The glazing component (20) includes a guide pipe (26), a connecting main seat (27), a limiting protection frame (28), an infrared detector (29), a valve seat (30), a guide spray nozzle (31), a side support bracket (32), a docking round pipe (33), a pressurizing pump (34), and a docking pressure pipe (35). The side end of the docking round pipe (33) is connected to the pressurizing pump (34), and the pressurizing pump (34) is connected to the docking pressure pipe (35). The front end of the docking pressure pipe (35) is connected to the guide pipe (26), and the lower end of the guide pipe (26) is connected to and provided with a valve seat (30) through the connecting main seat (27). The lower end of the valve seat (30) is connected to the guide spray nozzle (31).
4. A ceramic tile glazing device according to claim 3, characterized in that: A limiting protection frame (28) is provided between the main connecting seat (27) and the valve seat (30). A side guard bracket (32) is fixedly connected to the side end of the limiting protection frame (28), and an infrared detector (29) is fixedly installed at the front end of the side guard bracket (32).
5. A ceramic tile glazing device according to claim 4, characterized in that: The transmission control structure (4) includes a ceramic tile (36), a limiting partition (37), a guide belt (38), a driven roller (39), a power drive seat (40), and a bracket (41). The upper end of the power drive seat (40) is driven and connected to the guide belt (38), and the side end of the power drive seat (40) is fixedly connected to the limiting partition (37). The guide belt (38) is driven and transmitted with a ceramic tile (36). The lower end of the ceramic tile (36) is provided with a driven roller (39), and the driven roller (39) rotates to cooperate with the ceramic tile (36) for transmission. The driven roller (39) is installed by the bracket (41) for limited rotation.
6. A ceramic tile glazing device according to claim 5, characterized in that: The side guard bracket (32) is fixed on the limiting partition (37), and the first support frame plate (12) is also fixedly connected to the side guard bracket (32).
7. A ceramic tile glazing device according to claim 6, characterized in that: The front end of the connecting branch pipe (22) is connected to the docking conduit (5). The docking conduit (5) is connected to the glazing treatment component (9) through the connecting control pipe (6), the combined conduit (7), and the connecting pump (8). The mating connecting guide seat (19) is connected to the connecting pump (8). The connecting branch pipe (22), the docking control installation pipe (24), the hose (25), and the docking round pipe (33) are connected.
8. A ceramic tile glazing device according to claim 7, characterized in that: The rear end of the first glazing structure (1) is fitted with a preliminary heating seat (42).
9. A glazing method using a ceramic tile glazing device, employing the ceramic tile glazing device of claim 7, characterized in that... Includes the following steps: S1. First, the tile (36) arrives at the dust collector (3) for surface cleaning. Then, the power drive seat (40) drives the guide belt (38) to rotate, so that the tile (36) slides and adjusts under the limit of the limiting partition (37). At the same time, the lower end of the tile (36) is supported and carried by the driven roller (39), so that it can move in coordination. S2. After that, the tile (36) reaches the position of the second glazing structure (2). The infrared detector (29) detects the tile (36). At this time, the glaze is introduced through the docking conduit (5). The glaze is conducted to the hose (25) through the connecting branch pipe (22) and the docking control installation pipe (24). Then it is conducted to the docking round pipe (33) and reaches the inside of the pressure pump (34). After processing, it is transmitted to the docking pressure pipe (35) and guided to the connecting main seat (27) through the guide connecting pipe (26). The connecting main seat (27) is connected to the valve seat (30), so that the glaze is sprayed onto the tile (36) through the guide spray nozzle (31) to carry out the preliminary glazing treatment. S3. At this time, the ceramic tile (36) continues to be transported and reaches the position of the first glazing structure (1). The glaze is transported to the combined conduit (7) through the docking conduit (5) and the connecting control pipe (6). Then, it is introduced into the interior of the connecting guide seat (19) through the connecting pump (8) and stored in the center of the storage valve seat (10). After that, the glaze is applied to the ceramic tile (36) through the symmetrical guide ring (13), the connecting pipe seat block (14), and the glazing turntable (15) for glazing treatment. S4. At this time, the power seat (18) can control the worm (17) to rotate. When the worm (17) rotates, it drives the worm wheel (16) to rotate as well, thereby realizing the adjustment and rotation control of the glazing turntable (15) and realizing the secondary glazing treatment of the surface of the ceramic tile (36), thus completing the glazing work.
Citation Information
Patent Citations
Porcelain glazed tile glazing device
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