Conveying device for metal tile production
By designing a correction component on the conveying device, the problem of tilted placement of metal tiles was solved, the smooth transportation of tiles and the ability to adapt to different widths were achieved, and the practicality and stability of the device were improved.
Patent Information
- Application Number
- CN202422067942.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-08-26
AI Technical Summary
Existing conveying devices for metal tile production are prone to tilting when placing metal tiles, resulting in incomplete painting and being unable to adapt to tiles of different widths.
A conveying device including a correction component is designed. The correction component consists of an adjustment plate, a correction plate, a correction spring, an arc part, an adjustment block, a fixing component and a protective component. Through the synergistic effect of these components, the tiles can be placed stably and adapt to different widths.
The smooth transportation of metal tiles is achieved, the practicality and applicability of the conveying device are improved, the operating difficulty of the staff is reduced, and the service life of the correction spring is extended.
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Figure CN223341555U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of tile production, in particular to a conveying device for metal tile production. Background Art
[0002] A conveying device for metal tile production is a device used to transport unfinished tiles during the production process.
[0003] The conveying device in the prior art is usually used in the step of painting metal tiles. The painting equipment is set on both sides of the conveying device, the metal tiles are placed on the conveying device, and then the painting equipment is started to paint the metal tiles. In order to facilitate the placement of metal tiles on the conveying device, the prior art usually sets the conveying device as two rotating rollers, a conveyor belt with both ends mounted on the rotating rollers, and a drive motor fixedly connected to one of the rotating rollers at the output end. The staff places the metal tiles on the conveyor belt and starts the drive motor to move the metal tiles on the conveyor belt, and the painting is completed through the painting device.
[0004] However, since there were no restrictions on both sides of the conveyor belt, the staff did not pay attention when placing the metal tiles, resulting in the metal tiles being placed in an inclined state on the conveyor belt when the staff placed them, causing the paint spraying device to not fully spray the paint on the metal tiles. Some technicians suggested setting baffles on both sides of the conveyor belt to prevent the metal tiles from being placed in an inclined state on the conveyor belt, but the width of each batch of metal tiles is different, which results in metal tiles that are larger or smaller than the width of the two baffles on the conveyor belt still being placed in an inclined state during processing. Utility Model Content
[0005] In view of the shortcomings of the existing technology, the purpose of this application is to provide a conveying device for metal tile production, which is used to solve the technical problem of deviation in the placement position of metal tiles when the conveying device places metal tiles in the existing technology.
[0006] The above-mentioned purpose of the present application is achieved through the following technical solutions: a conveying device for producing metal tiles, comprising two groups of mounting brackets, a rotating roller installed between each group of mounting brackets, a conveyor belt with both ends mounted on the two rotating rollers, and a driving motor with one of the rotating rollers fixedly connected to the output end and mounted on the mounting bracket. The conveyor belt is provided with a correction component for preventing deviation in the placement position of the metal tiles. The correction component comprises two adjustment plates arranged opposite to each other and fixedly connected on both sides of the conveyor belt, two correction plates located on opposite sides of the two adjustment plates, and a correction spring located between the correction plate and the adjustment plate, one end of the correction spring is connected to the adjustment plate, and the other end is fixedly connected to the correction plate. The correction component is provided in multiple groups and is evenly arranged along the length direction of the conveyor belt.
[0007] By adopting the above technical solution, when the staff needs to place the metal tiles on the conveyor belt for transportation, they first place the metal tiles obliquely between the two correction plates, and then push the metal tiles so that the metal tiles press against one of the correction plates to compress the correction spring, leaving space for placement. Then, the metal tiles are laid flat so that the two correction plates press against both sides of the metal tiles to prevent the metal tiles from tilting. In this way, the metal tiles placed on the conveyor belt will not tilt, and the setting of the correction springs allows a certain elastic space to be provided between the two correction plates, so that the correction plates can clamp metal tiles of different widths, thereby improving the practicality and applicability of the conveying device.
[0008] Furthermore, the upper ends of the opposite sides of the correction plate are each provided with an arc portion.
[0009] By adopting the above technical solution, although the setting of the correction component improves the practicality and applicability of the conveying device, each time the staff places the metal tiles, they need to place the metal tiles at an angle and then push the correction plate and then place the metal tiles flat on the conveyor belt. This increases the workload of the staff and makes it very inconvenient for the staff to place the metal tiles. The setting of the arc part solves this technical problem. Through the setting of the arc part, the staff can place the two sides of the metal tiles directly above the arc part, and then the staff only needs to lower the metal tiles, and the bottom ends of both sides of the metal tiles will slide down along the arc part, and the sliding process will push the correction plate to compress, making it more convenient for the staff to place the metal tiles.
[0010] Furthermore, a plug-in interface that passes through the adjustment plate horizontally is provided on the opposite side of the two adjustment plates, and both adjustment plates are provided with adjustment blocks that are plugged into the adjustment plates through the plug-in interface. The end of the correction spring away from the correction plate is fixedly connected to the adjustment block, and the correction spring is connected to the adjustment plate through the adjustment block.
[0011] By adopting the above technical solution, although the setting of the arc part makes it more convenient for the staff to place the metal tiles, some metal tiles with a width greater than the distance between the two correction plates will not have their bottom ends on both sides contact the arc part when they are lowered, but the bottom surface of the metal tile will contact the arc part. This will cause the metal tiles to be blocked by the correction plate and unable to be lowered, resulting in the arc part being effective only for metal tiles with a width that is exactly or slightly wider than the distance between the two correction plates. The setting of the adjustment block solves this technical problem. The staff takes the metal tiles to be transported and places them above the two correction plates, and then pulls the two adjustment blocks outward so that the width between the two correction blocks is just enough to allow the bottom ends on both sides of the metal tile to contact the arc part. In this way, the arc part can adapt to metal tiles of different widths, thereby improving the practicality and applicability of the correction component.
[0012] Furthermore, a fixing assembly for fixing the adjusting block is provided at one end of the adjusting block away from the correction spring.
[0013] Furthermore, the fixing assembly includes fixing plates fixedly connected to both sides of the adjustment block and fixing bolts passing through the fixing plates and threadedly connected to the adjustment plates.
[0014] By adopting the above technical solution, although the setting of the adjustment block improves the practicality and applicability of the correction component, after the staff places the metal tiles between the two correction plates, due to the elastic force of the correction spring, the adjustment block may slide toward the outside of the conveyor belt, causing the correction plate to lose the function of clamping the metal tiles. The setting of the fixed component solves this technical problem. After the staff adjusts the adjustment block, they screw the fixing bolt into the fixing plate, so that the fixing bolt passes through the fixing plate thread and is connected to the adjustment plate, thereby fixing the adjustment block. In this way, the adjustment block will not slide toward the outside of the conveyor belt due to the elastic force of the correction spring, thereby improving the stability of the correction component during operation.
[0015] Furthermore, a protective component for protecting the correction spring is provided on the opposite sides of the two correction plates.
[0016] Furthermore, the protective assembly includes an extension plate fixedly connected to the correction plate and extending upward, and a protective plate fixedly connected to the extension plate and passing horizontally through the adjustment plate. The protective plate is located directly above the correction spring and is plugged into the adjustment plate.
[0017] By adopting the above technical solution, although the setting of the correction component improves the practicality and applicability of the conveying device, when the metal tiles are sprayed with paint, they will also be sprayed onto the correction spring. After the correction spring has worked for a period of time, thick paint will accumulate on the surface, thereby affecting the elastic force of the correction spring and reducing the service life of the correction spring. The setting of the protective component solves this technical problem. Through the setting of the protective component, the protective plate is located directly above the correction spring to block the paint sprayed by the paint spraying device, thereby improving the service life of the correction spring. At the same time, the normal extension and contraction of the correction plate is not affected by the plug-in protective plate.
[0018] Furthermore, an adjustment handle is fixedly provided on the end surface of the adjustment block away from the correction spring.
[0019] By adopting the above technical solution, the adjustment handle makes it easier for the staff to pull the adjustment block.
[0020] In summary, this application includes at least one of the following beneficial technical effects:
[0021] Through the setting of the correction component, when the staff needs to place the metal tile on the conveyor belt for transportation, they first place the metal tile obliquely between the two correction plates, and then push the metal tile so that the metal tile presses against one of the correction plates to compress the correction spring, leaving space for placement, and then lay the metal tile flat so that the two correction plates press against both sides of the metal tile to prevent the metal tile from tilting. In this way, the metal tiles placed on the conveyor belt will not tilt, and the setting of the correction spring makes the distance between the two correction plates have a certain elastic space, so that the correction plates can clamp metal tiles of different widths, thereby improving the practicality and applicability of the conveying device.
[0022] Through the setting of the adjustment block and the fixed component, the staff takes the metal tile to be transported and places it on top of the two correction plates, and then pulls the two adjustment blocks outward so that the width between the two correction blocks can just allow the bottom ends of both sides of the metal tile to contact the arc part, so that the arc part can adapt to metal tiles of different widths, thereby improving the practicality and applicability of the correction component. After the staff adjusts the adjustment block, they screw the fixing bolt into the fixed plate, so that the fixing bolt passes through the fixed plate thread and is connected to the adjustment plate, thereby fixing the adjustment block. In this way, the adjustment block will not slide toward the outside of the conveyor belt due to the elastic force of the correction spring, thereby improving the stability of the correction component during operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 1 is a schematic diagram of the overall structure of the embodiment;
[0024] Figure 2 yes Figure 1 Enlarged view of part A in the middle.
[0025] Figure numerals: 1. Mounting bracket; 10. Conveyor belt; 11. Driving motor; 2. Correction assembly; 20. Adjustment plate; 21. Correction plate; 22. Correction spring; 23. Arc portion; 24. Adjustment block; 25. Adjustment handle; 3. Fixing assembly; 30. Fixing plate; 31. Fixing bolt; 4. Protective assembly; 40. Extension plate; 41. Protective plate. DETAILED DESCRIPTION
[0026] The present application is further described in detail below with reference to the accompanying drawings.
[0027] Example, see Figure 1 、 Figure 2, a conveying device for producing metal tiles, comprising two groups of mounting brackets 1, a rotating roller installed between each group of mounting brackets 1, a conveyor belt 10 with both ends sleeved on the two rotating rollers, and a driving motor 11 with the output end fixedly connected to one of the rotating rollers mounted on the mounting bracket 1, a correction component 2 is provided on the conveyor belt 10 for preventing the metal tiles from being placed in a position where there is a deviation, the correction component 2 comprises two adjustment plates 20 that are arranged oppositely and fixedly connected to both sides of the conveyor belt 10, two correction plates 21 located on opposite sides of the two adjustment plates 20, and a correction spring 22 located between the correction plate 21 and the adjustment plate 20, one end of the correction spring 22 is connected to the adjustment plate 20, and the other end is fixedly connected to the correction plate 21, the correction component 2 is provided with multiple groups, And they are evenly arranged along the length direction of the conveyor belt 10. When the staff needs to place the metal tiles on the conveyor belt 10 for transportation, they first place the metal tiles obliquely between the two correction plates 21, and then push the metal tiles so that the metal tiles press against one of the correction plates 21 to compress the correction spring 22, leaving space for placement, and then lay the metal tiles flat so that the two correction plates 21 press against both sides of the metal tiles to prevent the metal tiles from tilting. In this way, the metal tiles placed on the conveyor belt 10 will not tilt, and the setting of the correction spring 22 makes the distance between the two correction plates 21 have a certain elastic space, so that the correction plate 21 can clamp metal tiles of different widths, thereby improving the practicality and applicability of the conveying device.
[0028] Although the setting of the correction component 2 improves the practicality and applicability of the conveying device, each time the staff places the metal tiles, they need to place the metal tiles at an angle and then push the correction plate 21 and then place the metal tiles flat on the conveyor belt 10. This increases the workload of the staff and makes it very inconvenient for the staff to place the metal tiles. In order to solve this technical problem, in this embodiment, the upper ends of the opposite sides of the two correction plates 21 are provided with arc portions 23. Through the setting of the arc portions 23, the staff can place the two sides of the metal tiles directly above the arc portions 23, and then the staff only needs to lower the metal tiles, and the bottom ends of both sides of the metal tiles will slide down along the arc portions 23. During the sliding process, the correction plate 21 will be pushed to compress, making it more convenient for the staff to place the metal tiles.
[0029] Although the provision of the arc portion 23 makes it more convenient for the staff to place the metal tiles, some metal tiles with a width greater than the distance between the two correcting plates 21 will not have their bottom ends contact the arc portion 23 when they are lowered, but the bottom surface of the metal tile will contact the arc portion 23. This will result in the metal tile being blocked by the correcting plate 21 and unable to be lowered, resulting in the arc portion 23 being effective only for metal tiles with a width that is just or slightly wider than the distance between the two correcting plates 21. In order to solve this technical problem, in this embodiment, a plug-in interface that passes through the adjustment plate 20 horizontally is provided on the opposite side of the two adjustment plates 20, and an adjustment block 24 is provided on each of the two adjustment plates 20 for plugging the adjustment plate 20 through the plug-in interface. The end of the correction spring 22 away from the correction plate 21 is fixedly connected to the adjustment block 24, and the correction spring 22 is connected to the adjustment plate 20 through the adjustment block 24. The staff takes the metal tile to be transported and places it on top of the two correction plates 21, and then pulls the two adjustment blocks 24 outward so that the width between the two correction blocks can just make the bottom ends of both sides of the metal tile contact the arc portion 23, so that the arc portion 23 can adapt to metal tiles of different widths, thereby improving the practicality and applicability of the correction component 2, and an adjustment handle 25 is fixed on the end face of the adjustment block 24 away from the end of the correction spring 22, and the adjustment handle 25 facilitates the staff to pull the adjustment block 24.
[0030] Although the provision of the adjustment block 24 improves the practicality and applicability of the correction component 2, after the staff places the metal tile between the two correction plates 21, due to the elastic force of the correction spring 22, the adjustment block 24 may slide toward the outside of the conveyor belt 10, causing the correction plate 21 to lose the function of clamping the metal tile. In order to solve this technical problem, in this embodiment, the end of the adjustment block 24 away from the correction spring 22 is provided with a fixing component 3 for fixing the adjustment block 24. The fixing component 3 includes a fixing plate 30 fixedly connected to both sides of the adjustment block 24 and a fixing bolt 31 threadedly connected to the adjustment plate 20 through the fixing plate 30. After the staff adjusts the adjustment block 24, the fixing bolt 31 is screwed into the fixing plate 30 so that the fixing bolt 31 passes through the fixing plate 30 and is threadedly connected to the adjustment plate 20, thereby fixing the adjustment block 24. In this way, the adjustment block 24 will not slide toward the outside of the conveyor belt 10 due to the elastic force of the correction spring 22, thereby improving the stability of the correction component 2 during operation.
[0031] Although the setting of the correction component 2 improves the practicality and applicability of the conveying device, when the metal tiles are painted, the paint will also be sprayed onto the correction spring 22. After the correction spring 22 has worked for a period of time, thick paint will accumulate on the surface, thereby affecting the elastic force of the correction spring 22 and reducing the service life of the correction spring 22. In order to solve this technical problem, in this embodiment, a protective component 4 for protecting the correction spring 22 is provided on the opposite side of the two correction plates 21. The protective component 4 includes an extension plate 40 fixedly connected to the correction plate 21 and extending upward, and a protective plate 41 fixedly connected to the extension plate 40 and passing horizontally through the adjustment plate 20. The protective plate 41 is located directly above the correction spring 22 and is plugged into the adjustment plate 20. Through the setting of the protective component 4, the protective plate 41 is located directly above the correction spring 22 to block the paint sprayed by the paint spraying device, thereby improving the service life of the correction spring 22. At the same time, the normal extension and retraction of the correction plate 21 is not affected by the plug-in protective plate 41.
[0032] The specific implementation process is as follows: metal tiles of the same width are divided into the same batch, a metal tile of the batch is taken and placed on top of the correction plate 21, and then the adjustment block 24 is pushed to adjust the width of the two correction plates 21 to the metal tiles, and then the fixing bolt 31 is screwed into the fixing plate 30 to fix the adjustment block 24, and the paint spraying device and the drive motor 11 can be started to work.
[0033] The embodiments of this specific implementation method are all preferred embodiments of the present application and are not intended to limit the scope of protection of the application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A conveying device for producing metal tiles, comprising two sets of mounting brackets (1), a rotating roller installed between each set of mounting brackets (1), a conveyor belt (10) with both ends mounted on the two rotating rollers, and a drive motor (11) with an output end fixedly connected to one of the rotating rollers mounted on the mounting brackets (1), characterized in that: The conveyor belt (10) is provided with a correction component (2) for preventing deviation in the placement position of the metal tiles. The correction component (2) includes two adjustment plates (20) arranged opposite to each other and fixedly connected on both sides of the conveyor belt (10), two correction plates (21) located on opposite sides of the two adjustment plates (20), and a correction spring (22) located between the correction plate (21) and the adjustment plate (20). One end of the correction spring (22) is connected to the adjustment plate (20), and the other end is fixedly connected to the correction plate (21). The correction component (2) is provided with multiple groups and is evenly arranged along the length direction of the conveyor belt (10).
2. The conveying device for metal tile production according to claim 1, characterized in that: The upper ends of the opposite sides of the correction plate (21) are each provided with an arc portion (23).
3. The conveying device for metal tile production according to claim 1, characterized in that: An insertion port that passes through the adjustment plate (20) transversely is provided on one side opposite to the other adjustment plate (20). Both adjustment plates (20) are provided with an adjustment block (24) that is plugged into the adjustment plate (20) through the insertion port. One end of the correction spring (22) away from the correction plate (21) is fixedly connected to the adjustment block (24). The correction spring (22) is connected to the adjustment plate (20) through the adjustment block (24).
4. The conveying device for producing metal tiles according to claim 3, characterized in that: An end of the adjustment block (24) away from the correction spring (22) is provided with a fixing assembly (3) for fixing the adjustment block (24).
5. The conveying device for producing metal tiles according to claim 4, characterized in that: The fixing assembly (3) comprises fixing plates (30) fixedly connected to both sides of the adjustment block (24) and fixing bolts (31) passing through the fixing plates (30) and being threadedly connected to the adjustment plate (20).
6. The conveying device for producing metal tiles according to claim 1, characterized in that: A protection component (4) for protecting the correction spring (22) is provided on the opposite sides of the two correction plates (21).
7. The conveying device for producing metal tiles according to claim 6, characterized in that: The protective assembly (4) includes an extension plate (40) fixedly connected to the correction plate (21) and extending upward, and a protective plate (41) fixedly connected to the extension plate (40) and passing through the adjustment plate (20) transversely. The protective plate (41) is located directly above the correction spring (22) and is plugged into the adjustment plate (20).
8. The conveying device for producing metal tiles according to claim 3, characterized in that: An adjustment handle (25) is fixedly provided on the end surface of the adjustment block (24) away from one end of the correction spring (22).