Glazed tile production equipment and production method
By using clamping components and motor flip tiles in glazed tiles production equipment, the problem of easy damage to the tiles glaze surface during the flip process is solved, and the complete glaze surface is achieved.
Patent Information
- Application Number
- CN202510648860.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2045-05-20
AI Technical Summary
During the flip process of existing glazed tiles production equipment, the glaze surface of the tiles is easily damaged.
A clamping assembly and a motor are provided on the conveyor belt. The tiles are clamped through the clamping assembly and flipped with the motor to prevent the tiles from contacting other components.
It effectively protects the glaze integrity of the tiles, ensures that both sides of the tiles can be glazed smoothly, and avoids glaze damage.
Smart Images

Figure CN120156002B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glazed tile production devices, and in particular to glazed tile production equipment and a production method. Background Art
[0002] Glazed tiles often need to be glazed during production. In related technologies, the glazed tile glazing production line includes a pair of conveyor bars for placing tiles. The conveyor bars are arranged horizontally and are connected to a driving mechanism that drives them to run in one direction. A glaze pouring platform for pouring glaze is provided above the conveyor bars.
[0003] Chinese invention patent CN112723753B discloses a glazed tile glazing production line, in which the tiles that have been glazed are flipped over by a flipping device and placed on a conveyor bar again. The tiles then continue to move toward a second glazing platform. When the tiles reach the position of the second glazing platform, the second glazing platform pours glaze on the tiles again so that both surfaces of the tiles are glazed.
[0004] The above-mentioned device transports the tiles through a conveyor bar and flips the tiles through a flipping device, so that different surfaces of the tiles can be glazed. However, in actual application, after the flipping device flips the tiles, the tiles still fall onto the conveyor bar, which may cause damage to the glaze surface of the tiles. In summary, this device still has room for improvement.
[0005] Therefore, it is necessary to provide a glazed tile production equipment and production method to solve the above technical problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a glazed tile production device and production method to solve the problem that the existing device proposed in the above background technology transports tiles through a conveyor bar and flips the tiles through a flipping device, so that different surfaces of the tiles can be glazed. However, in actual application, after the flipping device flips the tiles, the tiles still fall onto the conveyor bar, which may cause damage to the glaze surface of the tiles.
[0007] Based on the above ideas, the present invention provides the following technical solutions: a glazed tile production device, comprising a conveyor belt for conveying tiles, with nozzles provided above and near both ends of the conveyor belt, chains provided on both sides of the conveyor belt, and a clamping assembly provided on the side of the chain close to the conveyor belt, which can clamp the tile as the clamping assembly approaches the tile;
[0008] A connecting plate that cooperates with the clamping assembly is fixedly installed on the chain. When the clamping assembly drives the tile to move in a direction away from the conveyor belt, the clamping assembly can drive the tile to flip, and the clamping assembly can be reinserted on the connecting plate after flipping.
[0009] As a further solution of the present invention: a motor is provided above the chain, an output end of the motor is connected to the clamping assembly, and a cylinder is provided on the side of the motor away from the clamping assembly, and the cylinder is used to push the motor to move.
[0010] As a further solution of the present invention: a boss is provided below the cylinder, the cylinder is fixedly provided on the top surface of the boss, the motor is slidably provided on the boss, and a hydraulic rod is installed below the boss.
[0011] As a further solution of the present invention: the clamping assembly includes a baffle, a through slot is opened at the center of the baffle, a pressure block is slidably assembled in the through slot, and the pressure block cooperates with the baffle through a positioning assembly, so that the pressure block can only move toward the direction close to the conveyor belt relative to the baffle.
[0012] As a further solution of the present invention: plug rods are fixedly installed on the outer side surface of the baffle and at positions on the upper and lower sides, and through holes matching the plug rods are opened on the connecting plate.
[0013] As a further solution of the present invention: an insert block is fixedly mounted on the output shaft of the motor, a slot matching the insert block is provided on the outer end face of the pressure block, and the cross sections of the insert block and the slot are both set to be polygonal.
[0014] As a further solution of the present invention: a plurality of clamping blocks are elastically connected to the outer peripheral wall of the insertion rod, and the end of the clamping block away from the insertion rod is set as a spherical surface. When the clamping block passes over the connecting plate, the baffle can be clamped on the connecting plate.
[0015] As a further solution of the present invention: the positioning assembly includes guide blocks arranged on the top and bottom surfaces of the pressure block, and guide grooves that slide with the guide blocks are provided on the top and bottom walls of the through groove, and multiple positioning grooves are provided on the inner wall of the guide groove, and the guide block is elastically connected with the end face of the guide block close to the positioning groove, and an inclined guide surface is provided at one end of the positioning block extending to the inside of the positioning groove, and a pressure rod is slidingly arranged inside the positioning groove, and a pressure plate is fixedly arranged on the top surface of the pressure rod, and a vertical rod is fixedly arranged on the top surface of the pressure plate, and a protrusion is fixedly arranged at one end of the vertical rod passing through the baffle, and inclined surfaces are provided on both sides of the top of the protrusion, and a limit plate that cooperates with the baffle is provided above the chain, and when the chain drives the baffle to move, the top surface of the baffle can contact the bottom surface of the limit plate.
[0016] As a further solution of the present invention: a support plate is provided at the chain.
[0017] A method for production using the above-mentioned glazed tile production equipment includes the following steps: driving the tiles to move to the bottom of the nozzle through a conveyor belt, and glazing the tiles through the nozzle; transporting the tiles to the clamping assembly through the conveyor belt, and clamping the tiles using the clamping assembly; driving the clamping assembly away from the conveyor belt and flipping it over, so that the flipped clamping assembly can be reconnected to the chain when it is reset.
[0018] Compared with the prior art, the beneficial effects of the present invention are: this device can clamp the tiles through the provided clamping assembly, and can flip the clamped tiles through the provided motor, which is conducive to glazing operations on different surfaces of the tiles, and after the tiles are flipped, the glaze surface on the tiles does not contact other parts, thereby avoiding damage to the glaze surface of the tiles. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0021] Figure 2 is a top view of the present invention;
[0022] Figure 3 It is a schematic diagram of the support rod structure of the present invention;
[0023] Figure 4 is a schematic diagram of the clamping assembly of the present invention clamping a tile;
[0024] Figure 5 This is a schematic diagram of the clamping assembly of the present invention driving the tile to flip;
[0025] Figure 6 It is a schematic diagram of the insert block and the pressing block structure of the present invention;
[0026] Figure 7 is a cross-sectional view of a baffle of the present invention;
[0027] Figure 8 This invention Figure 7 A schematic diagram of the enlarged structure at point B;
[0028] Figure 9 It is a schematic diagram of the horizontal axis structure of the present invention;
[0029] Figure 10 It is a schematic diagram of the positioning groove structure of the present invention;
[0030] Figure 11 This is a schematic diagram of the cooperation between the chain and the support plate of the present invention;
[0031] Figure 12 This invention Figure 1A schematic diagram of the enlarged structure.
[0032] In the figure: 1. chain; 2. conveyor belt; 3. limit plate; 4. nozzle; 5. baffle; 501. plug rod; 502. positioning groove; 6. protrusion; 601. inclined plane; 602. vertical rod; 7. sleeve rod; 8. motor; 9. cylinder; 10. tile; 11. first transmission unit; 12. second transmission unit; 13. first vertical plate; 14. second vertical plate; 15. horizontal axis; 16. sleeve; 17. bottom plate; 18. slide rod; 19. connecting plate; 20. support rod; 21. support plate; 22. plug block; 23. pressure block; 2301. slot; 24. clamping block; 2401. spherical surface; 25. guide block; 26. pressure plate; 2601. pressure rod; 27. positioning block; 2701. guide surface; 28. boss; 29. stop block. DETAILED DESCRIPTION
[0033] like Figures 1-10 As shown, a glazed tile production equipment and production method, including a conveyor belt 2 for conveying tiles 10, referring to Figure 1 As shown, nozzles 4 are provided above the conveyor belt 2 and near both ends. In actual use, the nozzles 4 can be connected to external devices such as a manipulator to glaze the tiles 10.
[0034] In order to glaze both sides of the tile 10, the present invention arranges chains 1 at both sides of the conveyor belt 2, and a clamping assembly for clamping the tile 10 is provided on the side of the chain 1 close to the conveyor belt 2. Figure 1-Figure 2 、 Figure 12 As shown, in order to drive the clamping assemblies on both sides of the conveyor belt 2 to approach each other to clamp the tile 10, a motor 8 is provided at the upper position of the chain 1. The output end of the motor 8 is connected to the clamping assembly, and a cylinder 9 is provided on the side of the motor 8 away from the clamping assembly. The telescopic end of the cylinder 9 is fixedly connected to the housing of the motor 8. In actual use, the cylinder 9 can drive the clamping assemblies to approach or move away from each other, so as to clamp the tile 10. In addition, the motor 8 can drive the clamping assembly to rotate, which is conducive to turning over the tile 10.
[0035] Furthermore, in order to drive the clamping assembly to move in the vertical direction, this solution provides a boss 28 below the cylinder 9, and the cylinder 9 is fixedly arranged on the top surface of the boss 28, while the above-mentioned motor 8 is slidably arranged on the top surface of the boss 28. A hydraulic rod is installed below the boss 28, and the telescopic end of the hydraulic rod is fixedly connected to the boss 28. In actual use, the tile 10 to be processed is placed on the conveyor belt 2, and the tile 10 is conveyed to the bottom of the nozzle 4 by the conveyor belt 2. The glaze sprayed from the nozzle 4 is used to glaze the surface of the tile 10. Afterwards, the tile 10 is conveyed to the motor 8 and the cylinder 9 by the conveyor belt 2. The cylinder 9 can drive the clamping assembly to approach the tile 10 and clamp the tile 10. When the hydraulic rod drives the boss 28 to move upward so that the tile 10 leaves the conveyor belt 2, the motor 8 drives the clamping assembly to flip, so that the unglazed side of the tile 10 faces upward. Afterwards, the conveyor belt 2 conveys the tile 10 to another nozzle 4 for glazing.
[0036] like Figures 1-10 As shown, the clamping assembly includes a baffle 5, a through slot is provided at the center of the baffle 5, a pressing block 23 is slidably mounted in the through slot, and the pressing block 23 cooperates with the baffle 5 through a positioning assembly, so that the pressing block 23 can only move toward the direction close to the conveyor belt 2 relative to the baffle 5. When in use, an anti-slip pad can be attached to the side of the pressing block 23 close to the conveyor belt 2 to protect the tile 10.
[0037] Reference Figure 6 As shown, in a set of mutually cooperating baffles 5, a slide bar 18 is fixedly provided on the inner side of one baffle 5, and a sleeve rod 7 cooperating with the slide bar 18 is fixedly provided on the inner side of the other baffle 5. Figure 6 It can be seen that a circular hole is provided at the end of the sleeve rod 7 to match the slide rod 18. When the two baffles 5 are close to each other, one end of the slide rod 18 can be inserted into the circular hole to connect the baffles 5 on both sides.
[0038] An insert block 22 is fixedly mounted on the output shaft of the motor 8, and a slot 2301 matching the insert block 22 is provided at the outer end face of the pressure block 23. The cross-sections of the insert block 22 and the slot 2301 are both set to polygonal shapes, so that the insert block 22 can drive the pressure block 23 to rotate. In actual use, the cylinder 9 can push the motor 8 to move, so that the insert block 22 at one end of the motor 8 can be inserted into the slot 2301 and push the pressure block 23 to slide relative to the baffle 5, and the tile 10 on the conveyor belt 2 can be clamped by the pressure block 23.
[0039] In order to install the clamping assembly on the chain 1, a connecting plate 19 is provided below the baffle 5 in this solution, and plug rods 501 are fixedly installed on the outer side of the baffle 5 at the upper and lower positions. The connecting plate 19 has a through hole that matches the plug rod 501.
[0040] Further, refer to Figure 7 As shown, a plurality of blocks 24 are elastically connected to the outer peripheral wall of the insertion rod 501, and the end of the block 24 away from the insertion rod 501 is set to a spherical surface 2401. The multiple blocks 24 on the insertion rod 501 are in the same plane. When the insertion rod 501 passes through the through hole so that the block 24 passes over the connecting plate 19, the baffle 5 can be stably connected to the connecting plate 19 through the cooperation between the block 24 and the connecting plate 19. In order to fix the connecting plate 19 to the chain 1, a connecting shaft can be fixedly installed on the connecting plate 19, and the connecting shaft is fixedly connected to the chain plate on the chain 1. Fixing a rigid part on the chain 1 is a mature technical means in the mechanical field. Other connection methods between the connecting plate 19 and the chain 1 are not described here.
[0041] The glaze sprayed by the nozzle 4 is used to glaze the tile 10. When the glazing of the tile 10 is completed, the tile 10 is transported to the motor 8 and the cylinder 9 by the conveyor belt 2. Specifically, the motor 8 is driven by the cylinder 9 to move in the direction close to the conveyor belt 2, so that the insert block 22 can be inserted into the slot 2301, and then the pressing block 23 is pushed close to the tile 10 to clamp the tile 10 between the two pressing blocks 23. In this process, the sliding rod 18 on one pressing block 23 will be inserted into the sleeve rod 7 on the other pressing block 23, which is conducive to the stable connection of the two pressing blocks 23. Since the insert block 22 can only move in one direction toward the direction close to the conveyor belt 2 relative to the baffle 5, when the pressing blocks 23 on both sides approach each other to clamp the tile 10, the tile 10 can remain stable between the two pressing blocks 23.
[0042] Afterwards, the boss 28 is driven upward by the hydraulic rod, thereby driving the clamped tile 10 to move upward and away from the conveyor belt 2. In the process of the baffle 5 leaving the connecting plate 19, the block 24 will be compressed into the insertion rod 501. After the tile 10 leaves the conveyor belt 2, the motor 8 drives the insertion block 22 to rotate, thereby driving the clamped tile 10 to flip. After the tile 10 rotates 180°, the hydraulic rod drives the boss 28 to move downward, so that the baffle 5 falls back onto the connecting plate 19. During this process, the insertion rod 501 on the baffle 5 can pass downward through the through hole on the connecting plate 19. When the block 24 on the insertion rod 501 passes over the connecting plate 19, the baffle 5 can be installed on the connecting plate 19 through the cooperation between the block 24 and the connecting plate 19.
[0043] Combine Figure 5As shown, when the baffle 5 falls back onto the connecting plate 19, the tile 10 is clamped between the two pressing blocks 23 and does not contact the conveyor belt 2, the slide rod 18 and other structures, which is conducive to maintaining the integrity of the glaze surface. Afterwards, the clamped tile 10 is driven by the chain 1 to move to another nozzle 4, and the other side of the tile 10 is glazed by the nozzle 4.
[0044] In summary, this device can clamp the tile 10 through the provided clamping assembly, and can flip the clamped tile 10 through the provided motor 8, which is conducive to glazing different surfaces of the tile 10. Moreover, after the tile 10 is flipped, the glaze surface on the tile 10 does not contact other parts, thereby avoiding damage to the glaze surface of the tile 10.
[0045] like Figures 1-10 As shown, the positioning assembly includes a guide block 25 provided on the top and bottom surfaces of the pressing block 23, the guide block 25 is fixedly connected to the pressing block 23, and a guide groove is provided on the top and bottom walls of the through groove to slide with the guide block 25. Figures 8-10 As shown, a plurality of positioning grooves 502 are evenly formed on the end surface of the guide groove opposite to the pressing block 23, and a positioning block 27 is elastically connected to the end surface of the guide block 25 near the positioning groove 502. Figure 1 、 Figure 8 As shown, one end of the positioning block 27 extending into the interior of the positioning groove 502 is provided with an inclined guide surface 2701, so that the positioning block 27 can only move toward the direction close to the conveyor belt 2 relative to the baffle 5;
[0046] Combine Figures 6-10 As shown, a "⊥"-shaped pressure rod 2601 is slidably provided inside the positioning groove 502, and a pressure plate 26 is fixedly provided on the top end surface of the pressure rod 2601. A vertical rod 602 is fixedly provided on the top surface of the pressure plate 26. One end of the vertical rod 602 passing through the baffle 5 is fixedly provided with a protrusion 6, and the protrusion 6 and the vertical rod 602 can slide relative to the baffle 5. Figure 6 As shown, both sides of the top of the protrusion 6 are provided with inclined surfaces 601. When the protrusion 6 is pressed, the vertical rod 602 can drive the pressure plate 26 and the pressure rod 2601 to move downward, thereby squeezing the positioning block 27 out of the positioning groove 502, so that the pressure block 23 can be reset. At this time, the tile 10 clamped between the two pressure blocks 23 can be removed.
[0047] Furthermore, a limit plate 3 cooperating with the baffle 5 is provided at the rotation path of the chain 1. The limit plate 3 is located above the chain 1, and the baffle 5 and the limit plate 3 are on the same vertical plane, so that when the chain 1 drives the baffle 5 to move, the top surface of the baffle 5 can contact the bottom surface of the limit plate 3, thereby squeezing the inclined surface 601 on the protrusion 6 through the limit plate 3 to drive the protrusion 6 to move downward.
[0048] Reference Figure 4-Figure 7 As shown, when the baffle 5 is placed on the connecting plate 19, the protrusion 6 at the bottom of the baffle 5 is squeezed, so that one of the positioning blocks 27 is separated from the positioning groove 502, but the protrusion 6 located above the baffle 5 is in a pop-up state, so that the pressing block 23 can slide unidirectionally relative to the baffle 5. Specifically, when the insert block 22 pushes the pressing block 23 to move to clamp the tile 10, the guide block 25 can slide in the guide groove. When the pressing block 23 clamps the tile 10, the positioning block 27 is limited by the positioning groove 502 to prevent the pressing block 23 from resetting, thereby This allows the tile 10 to be stably clamped between the two pressure blocks 23. When the cylinder 9 drives the motor 8 to retract, the baffle 5 is driven to move through the chain 1. When the baffle 5 moves to the limit plate 3, the limit plate 3 can squeeze the protrusion 6, thereby driving the pressure plate 26 and the pressure rod 2601 to move downward, so that the pressure rod 2601 can squeeze the positioning block 27 out of the positioning groove 502. At this time, the pressure block 23 can be reset and release the tile 10, which is conducive to taking and placing the tile 10. Later, the clamping assembly can be used again as the chain 1 rotates.
[0049] Reference Figure 5 As shown, two groups of blocks 29 can be fixedly installed on the inner side of the pressing block 23. The two groups of blocks 29 are symmetrically distributed about the pressing block 23. In actual use, when the positioning block 27 is separated from the positioning groove 502 so that the pressing block 23 releases the tile 10, the tile 10 can fall onto the block 29, thereby supporting the tile 10.
[0050] The above describes the core working principle of this solution. The following is a brief description of the installation of some components:
[0051] like Figures 1-10 As shown, rollers are provided at both ends of the conveyor belt 2, so that the conveyor belt 2 is sleeved on the outside of the roller, and sprockets are provided at both ends of the chain 1, so that the chain 1 is sleeved on the outside of the sprocket, a first vertical plate 13 is provided on the outside of the sprocket, and a sleeve 16 is fixedly provided at the center of the sprocket, the sleeve 16 passes through the first vertical plate 13 and is rotatably connected thereto, a transverse shaft 15 is provided at the axis of the roller, the transverse shaft 15 passes through the roller and is fixedly connected thereto, the transverse shaft 15 passes through the sprocket and the sleeve 16 and can rotate relative to both, a second vertical plate 14 is provided on the outside of the first vertical plate 13, the transverse shaft 15 passes through the vertical plate and rotatably cooperates therewith, in actual use, a first drive motor 8 and a second drive motor 8 are provided, the first drive motor 8 is connected to the transverse shaft 15 through the first transmission unit 11, and the second drive motor 8 is connected to the sleeve 16 through the second transmission unit 12, and the first transmission unit 11 and the second transmission unit 12 can both be set as belts.
[0052] In actual use, a support plate 21 is provided at the chain 1, referring to Figure 11 As shown, the cross-section of the support plate 21 can be set to a "[" shape, so that the upper half of the chain 1 is located in the support plate 21, so as to support the chain 1 so that the chain 1 can run smoothly. Similarly, in order to support the conveyor belt 2, this solution provides a bottom plate 17 at the conveyor belt 2, so that the upper half of the conveyor belt 2 is located on the bottom plate 17, and the bottom plate 17 and the support plate 21 are fixedly connected by a U-shaped support rod 20.
[0053] The limiting plate 3 is fixedly mounted on the supporting plate 21 through a supporting frame, and a vertical plate is fixedly mounted on the bottom of the supporting plate 21 .
[0054] A groove is provided on the outer wall of the insertion rod 501, which slides with the block 24, and a limit spring is fixed between the inner end face of the groove and the block 24. Specifically, when the baffle 5 rotates to the lower half of the chain 1, the block 24 cooperates with the connecting plate 19 to overcome the deadweight of the clamping assembly, thereby preventing the baffle 5 and other structures from falling.
[0055] The baffle 5 is provided with a mounting groove for accommodating the pressure plate 26, the positioning groove 502 is connected to the mounting groove, the pressure plate 26 slides in the mounting groove, and a support spring is provided between the bottom surface of the mounting groove and the pressure plate 26, so that in the initial state, the positioning block 27 can be inserted into the positioning groove 502, and the end of the guide block 25 is provided with a strip groove that slides with the positioning block 27, and a first spring is fixed between the inner end surface of the strip groove and the positioning block 27. Figure 1 、 Figure 8 As shown, a spring is fixedly provided between the guide block 25 and the end of the guide groove, and the spring is located on the side of the guide block 25 close to the conveyor belt 2. When the positioning block 27 is separated from the positioning groove 502, the spring can drive the guide block 25 to reset.
Claims
1. A glazed tile production device, comprising a conveyor belt for conveying tiles, with nozzles provided above and near both ends of the conveyor belt, characterized in that: Chains are provided on both sides of the conveyor belt, and a clamping assembly is provided on the side of the chain close to the conveyor belt, and the tiles can be clamped as the clamping assembly approaches the tiles; A connecting plate that cooperates with the clamping assembly is fixedly mounted on the chain. When the clamping assembly drives the tile to move away from the conveyor belt, the clamping assembly can be used to drive the tile to flip, and the clamping assembly can be re-inserted on the connecting plate after flipping; The clamping assembly includes a baffle, a through slot is formed at the center of the baffle, a pressure block is slidably mounted in the through slot, and the pressure block cooperates with the baffle through a positioning assembly so that the pressure block can only move toward the conveyor belt relative to the baffle; Insertion rods are fixedly installed on the outer side of the baffle and at the upper and lower sides, and through holes that match the insertion rods are opened on the connecting plate; A motor is provided above the chain, the output end of the motor is connected to the clamping assembly, and a cylinder is provided on the side of the motor away from the clamping assembly, and the cylinder is used to drive the motor to move; An inserting block is fixedly mounted on the output shaft of the motor, and a slot matching the inserting block is provided on the outer end surface of the pressing block. The cross sections of the inserting block and the slot are both polygonal.
2. The glazed tile production equipment according to claim 1, characterized in that: A boss is provided below the cylinder, the cylinder is fixedly arranged on the top surface of the boss, the motor is slidably arranged on the boss, and a hydraulic rod is installed below the boss.
3. The glazed tile production equipment according to claim 1, characterized in that: A plurality of clamping blocks are elastically connected to the outer peripheral wall of the insertion rod, and one end of the clamping block away from the insertion rod is set as a spherical surface. When the clamping block passes over the connecting plate, the baffle can be clamped on the connecting plate.
4. The glazed tile production equipment according to claim 1, characterized in that: The positioning assembly includes guide blocks arranged on the top and bottom surfaces of the pressure block, and guide grooves that slide with the guide blocks are provided on the top and bottom walls of the through slot, and a plurality of positioning slots are provided on the inner wall of the guide slot, and the guide block is elastically connected to the end face of the guide block near the positioning slot, and an inclined guide surface is provided at one end of the positioning block extending to the inside of the positioning slot, and a pressure rod is slidably arranged inside the positioning slot, and a pressure plate is fixedly provided on the top surface of the pressure rod, and a vertical rod is fixedly provided on the top surface of the pressure plate, and a protrusion is fixedly provided on one end of the vertical rod passing through the baffle, and inclined surfaces are provided on both sides of the top of the protrusion, and a limit plate that cooperates with the baffle is provided above the chain. In the process of the chain driving the baffle to move, the top surface of the baffle can contact the bottom surface of the limit plate.
5. The glazed tile production equipment according to claim 1, characterized in that: A supporting plate is provided at the chain.
6. A method for producing glazed tiles using the glazed tile production equipment according to any one of claims 1 to 5, characterized in that: The method includes the following steps: the tiles are moved to the bottom of the nozzle by the conveyor belt, and the tiles are glazed by the nozzle; the tiles are transported to the clamping assembly by the conveyor belt, and the tiles are clamped by the clamping assembly; the clamping assembly is driven away from the conveyor belt and flipped over, and the flipped clamping assembly can be reconnected with the chain when it is reset.
Citation Information
Patent Citations
A glazed tile glazing production line
CN112723753B
Turning plate device for double-sided glazing of ceramic tile
CN209737919U
Glazed tile glazing device
CN219705588U