A servo plate conveying device

By designing a follow-up board conveying device, the synchronous movement of the transmission platform is achieved through the cooperation of the rotating block and the chute, which solves the problem of increased time costs caused by door operation in the foam board production process, improves production efficiency and reduces maintenance costs.

CN224349691UActive Publication Date: 2026-06-12HANGZHOU FANGYUAN PLASTICS MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-13
Publication Date
2026-06-12

AI Technical Summary

Technical Problem

In the current foam board production process, the conveying device needs to wait for the door to open or close, which increases time costs.

Method used

Design a follow-up plate conveying device. Through the cooperation of the conveying platform and the passive plate, and the cooperation of the rotating block and the slide, the conveying platform can be synchronized and rotate with the door, reducing waiting time.

Benefits of technology

Improve production efficiency, reduce time costs, minimize unnecessary waiting time, enhance equipment adaptability and flexibility, and lower maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of servo type plate conveying device, plate conveying technical field, including transmission track and transmission platform slidingly connected on the transmission track, one side of the transmission platform is connected with passive plate, the passive plate slidingly connected with connecting plate, the sliding direction of the transmission platform is vertically arranged with the sliding direction of the connecting plate, the connecting plate is connected with rotating block, the passive plate is provided with sliding groove for sliding cooperation with the rotating block, and the connecting plate is used to be connected with door.The application when door rotates, connecting plate rotates with the rotation of door, i.e. rotating block rotates with the rotation of connecting plate, rotating block abuts with the inner wall of sliding groove in the process of rotation, passive plate drives transmission platform to slide along transmission track by the cooperation of sliding groove and rotating block, so as to realize transmission platform and machine corresponding or separation.Improve production efficiency and reduce unnecessary waiting time, shorten time cost.
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Description

Technical Field

[0001] This application relates to the technical field of sheet material conveying, and in particular to a follow-up sheet material conveying device. Background Technology

[0002] Foam board is a common lightweight porous material, usually made from plastic through a foaming process.

[0003] In the foam board production process, when the foam boards are stored in the machine and the conveyor device transports them, the door must first be opened. Then, the conveyor is moved to the designated position by the motor drive, and the foam boards are pushed out and moved onto the conveyor. The door can only be closed after the conveyor leaves the machine, or the door can only be fully opened before the conveyor is transported to the designated position. The whole process increases the time cost and needs to be improved. Utility Model Content

[0004] The purpose of this application is to provide a follow-up plate conveying device to reduce time and cost.

[0005] The following technical solution is provided in this application for a follow-up plate conveying device: it includes a conveying track and a conveying platform slidably connected to the conveying track. A passive plate is connected to one side of the conveying platform, and a connecting plate is slidably connected to the passive plate. The sliding direction of the conveying platform is perpendicular to the sliding direction of the connecting plate. A rotating block is connected to the connecting plate. The passive plate is provided with a groove for sliding cooperation with the rotating block. The connecting plate is used to connect with a door.

[0006] By adopting the above technical solution, when the door rotates, the connecting plate rotates along with the door, that is, the rotating block rotates with the connecting plate. During the rotation, the rotating block abuts against the inner wall of the slide groove. The passive plate, through the cooperation of the slide groove and the rotating block, drives the transmission platform to slide along the transmission track, thereby realizing the correspondence or separation between the transmission platform and the machine. This improves production efficiency, reduces unnecessary waiting time, and shortens time costs.

[0007] Optionally, the rotating block is rotatably connected to the connecting plate.

[0008] By adopting the above technical solution, the rotating block between the transmission platform and the passive plate enables the transmission platform to move synchronously with the movement of the passive plate. At the same time, the cooperation between the connecting plate and the passive plate coordinates the movement of the door with the position adjustment of the transmission platform. The rotating block and the connecting plate are rotatably connected, reducing the friction between the rotating block and the passive plate and protecting the rotating block and the passive plate.

[0009] Optionally, the rotating block is detachably connected to the connecting plate.

[0010] By adopting the above technical solution, the detachable connection between the rotating block and the connecting plate allows for easy replacement of the rotating block when it is damaged during actual use, thereby improving equipment maintenance efficiency and reducing repair costs. Furthermore, the detachable connection also facilitates the replacement of rotating blocks of different specifications according to different working conditions, enhancing the adaptability and flexibility of the equipment.

[0011] Optionally, the rotating block is connected to the connecting plate by a first bolt and a first nut, the first bolt and the first nut being threadedly connected, and the threaded end of the first bolt passing through the rotating block and the connecting plate.

[0012] By adopting the above technical solution, the rotating block and the connecting plate are detachably connected via the first bolt and the first nut, making the connection method more flexible and reliable. Specific effects include: firstly, ease of disassembly and assembly; when the rotating block needs replacement or repair, simply loosening the first nut allows for quick separation of the rotating block and the connecting plate, improving maintenance efficiency; secondly, a stable connection; the threaded connection provides sufficient tightening force, ensuring a stable connection between the rotating block and the connecting plate during operation and preventing malfunctions caused by loosening.

[0013] Optionally, the transmission platform is connected to a first connecting rod, and the passive plate is connected to a second connecting rod. The first connecting rod and the second connecting rod are connected by a second bolt and a second nut. The second bolt and the second nut are threaded together. The first connecting rod is provided with a waist-shaped groove for the threaded end of the second bolt to pass through, and the second connecting rod is provided with a through hole for the threaded end of the second bolt to pass through.

[0014] By adopting the above technical solution, the first connecting rod and the second connecting rod are connected by the second bolt and the second nut. The first connecting rod is provided with a waist-shaped groove, and the second connecting rod is provided with a through hole. This structure allows the relative position of the transmission platform and the passive plate to be adjusted within a certain range, preventing the door from scratching the foam board.

[0015] Optionally, the transmission platform is rotatably connected to several transmission rollers.

[0016] By adopting the above technical solution, the conveyor roller enables the foam board to move more smoothly on the conveyor platform, reduces the impact of friction on the foam board transportation process, thereby improving conveying efficiency and reducing the risk of damage to the foam board surface.

[0017] Optionally, the transmission platform is slidably connected to a lifting plate, and the transmission platform is connected to a drive unit for driving the lifting plate toward or away from the transmission track.

[0018] By adopting the above technical solution, when it is necessary to move the foam board on the conveying platform to different heights, the driving component drives the lifting plate to slide away from the conveying platform. The lifting plate abuts against the foam board and drives the foam board to detach from the conveying roller, thus adjusting the height of the foam board. After the foam board is moved to another position, the driving component drives the lifting plate to slide closer to the conveying platform, so that the lifting plate moves back to its original position.

[0019] Optionally, the transmission track is provided with a limiting part, and the transmission platform is rotatably connected with a plurality of rollers, the rollers being provided with limiting ring grooves for sliding cooperation with the limiting part.

[0020] By adopting the above technical solution, when the roller rolls, the rolling cooperation between the limiting part and the limiting ring groove guides and limits the rolling of the roller, thereby improving the stability of the sliding of the transmission platform.

[0021] In summary, this application includes at least one of the following beneficial technical effects:

[0022] 1. When the door rotates, the connecting plate rotates along with the door, meaning the rotating block rotates with the connecting plate. During rotation, the rotating block abuts against the inner wall of the slide rail. The passive plate, through the cooperation of the slide rail and the rotating block, drives the transmission platform to slide along the transmission track, thus enabling the transmission platform to align with or separate from the machine. This improves production efficiency, reduces unnecessary waiting time, and shortens time costs.

[0023] 2. The first connecting rod and the second connecting rod are connected by the second bolt and the second nut. The first connecting rod is provided with a waist-shaped groove and the second connecting rod is provided with a through hole. This structure allows the relative position of the transmission platform and the passive plate to be adjusted within a certain range, preventing the door from scratching the foam board. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0025] Figure 2 yes Figure 1 An enlarged view of region A.

[0026] Figure 3 This is one of the cross-sectional views of an embodiment of this application, showing the second connecting rod.

[0027] Figure 4 yes Figure 3 A magnified view of region B.

[0028] Figure 5 This is one of the cross-sectional views of an embodiment of this application, showing the rotating block.

[0029] Figure 6 yes Figure 5 A magnified view of region C.

[0030] Explanation of reference numerals in the attached drawings: 1. Conveyor track; 11. Support rod; 12. Conveyor rod; 121. Limiting part; 13. Vertical rod; 14. Stabilizing block; 2. Conveyor platform; 21. Roller; 211. Limiting ring groove; 22. Conveyor roller; 23. Lifting plate; 24. Driving component; 25. First connecting rod; 251. Waist-shaped groove; 3. Passive plate; 31. Second connecting rod; 311. Through hole; 32. Slide groove; 4. Second bolt; 41. Second nut; 5. Connecting plate; 6. Rotating block; 7. First bolt; 71. First nut. Detailed Implementation

[0031] The following is in conjunction with the appendix Figure 1 -Appendix Figure 6 This application will be described in further detail.

[0032] This application discloses a follow-up plate conveying device.

[0033] like Figure 1 As shown, the system includes a transmission track 1 and a transmission platform 2 slidably connected to the transmission track 1. The transmission track 1 includes three support rods 11 and two transmission rods 12. The two transmission rods 12 are fixedly connected to the three support rods 11. The three support rods 11 are parallel and evenly spaced. The two transmission rods 12 are parallel and perpendicular to the support rods 11. Each support rod 11 has a vertical rod 13 fixedly connected to both ends. Each vertical rod 13 has a stabilizing block 14 fixedly connected to it, and the stabilizing block 14 is in contact with the ground.

[0034] Combination Figure 1 and Figure 2 As shown, the transmission platform 2 slides along the length of the transmission rod 12. Each transmission rod 12 is provided with a limiting part 121, which has two abutment surfaces. The distance between the two abutment surfaces gradually increases towards the support rod 11. Four rollers 21 are rotatably connected to the bottom of the transmission platform 2. Each roller 21 has a limiting annular groove 211 on its outer circumferential surface for sliding cooperation with the limiting part 121.

[0035] Combination Figure 1 and Figure 2As shown, several transmission rollers 22 are rotatably connected to the upper surface of the transmission platform 2. The rotation direction of each transmission roller 22 is perpendicular to the sliding direction of the transmission platform 2. Each transmission roller 22 includes two long rollers and two rows of short rollers. The two rows of short rollers are located between the two long rollers and are spaced apart. A lifting plate 23 is slidably connected between the two rows of short rollers. Four driving components 24 are fixedly connected to the transmission platform 2 to drive the lifting plate 23 to slide towards or away from the transmission track 1. The driving components 24 are cylinders, and a controller (not shown in the figure) is externally connected to each driving component 24. The signal output terminal of the controller is connected to the signal input terminal of the driving component 24, and the output terminal of each driving component 24 is fixedly connected to the lifting plate 23.

[0036] Combination Figure 3 and Figure 4 As shown, a passive plate 3 is connected to one side of the transmission platform 2. Two first connecting rods 25 are fixedly connected to the side of the transmission platform 2 near the passive plate 3. Two second connecting rods 31 are fixedly connected to the side of the passive plate 3 near the transmission platform 2. The first connecting rods 25 and the second connecting rods 31 correspond one-to-one. The first connecting rods 25 and the second connecting rods 31 are connected by three second bolts 4 and three second nuts 41. The second bolts 4 and the second nuts 41 are threaded together. The first connecting rods 25 have a waist-shaped groove 251 for the bolt end of the second bolt 4 to pass through. The waist-shaped groove 251 is set along the length direction of the first connecting rod 25. The second connecting rods 31 have a through hole 311 for the threaded end of the second bolt 4 to pass through.

[0037] Combination Figure 3 , Figure 5 and Figure 6 As shown, a connecting plate 5 is slidably connected to the passive plate 3. One end of the connecting plate 5 is fixedly connected to the door, and the sliding direction of the connecting plate 5 is perpendicular to the sliding direction of the transmission platform 2. A rotating block 6 is detachably connected to the side of the connecting plate 5 near the passive plate 3. The passive plate 3 has a groove 32 for sliding cooperation with the rotating block 6. The rotating block 6 is rotatably connected to the connecting plate 5. The rotating block 6 and the connecting plate 5 are connected by a first bolt 7 and a first nut 71. The first bolt 7 and the first nut 71 are threadedly connected, and the threaded end of the first bolt 7 passes through the rotating block 6 and the connecting plate 5.

[0038] The implementation principle of a follow-up plate conveying device according to an embodiment of this application is as follows:

[0039] When the door rotates, the connecting plate 5 rotates along with the door, meaning the rotating block 6 rotates with the connecting plate 5. During rotation, the rotating block 6 abuts against the inner wall of the slide groove 32. The passive plate 3, through the cooperation of the slide groove 32 and the rotating block 6, drives the transmission platform 2 to slide along the transmission track 1, thereby enabling the transmission platform 2 to align with or separate from the machine. This improves production efficiency, reduces unnecessary waiting time, and shortens time costs.

[0040] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A follow-up plate conveying device, characterized in that: The system includes a transmission track (1) and a transmission platform (2) slidably connected to the transmission track (1). A passive plate (3) is connected to one side of the transmission platform (2). A connecting plate (5) is slidably connected to the passive plate (3). The sliding direction of the transmission platform (2) is perpendicular to the sliding direction of the connecting plate (5). A rotating block (6) is connected to the connecting plate (5). The passive plate (3) is provided with a groove (32) for sliding cooperation with the rotating block (6). The connecting plate (5) is used to connect to a door.

2. The follow-up plate conveying device according to claim 1, characterized in that: The rotating block (6) is rotatably connected to the connecting plate (5).

3. The follow-up plate conveying device according to claim 1, characterized in that: The rotating block (6) is detachably connected to the connecting plate (5).

4. The follow-up plate conveying device according to claim 3, characterized in that: The rotating block (6) is connected to the connecting plate (5) by a first bolt (7) and a first nut (71). The first bolt (7) is threadedly connected to the first nut (71), and the threaded end of the first bolt (7) passes through the rotating block (6) and the connecting plate (5).

5. The follow-up plate conveying device according to claim 1, characterized in that: The transmission platform (2) is connected to a first connecting rod (25), and the passive plate (3) is connected to a second connecting rod (31). The first connecting rod (25) and the second connecting rod (31) are connected by a second bolt (4) and a second nut (41). The second bolt (4) and the second nut (41) are threaded together. The first connecting rod (25) is provided with a waist-shaped groove (251) for the threaded end of the second bolt (4) to pass through. The second connecting rod (31) is provided with a through hole (311) for the threaded end of the second bolt (4) to pass through.

6. The follow-up plate conveying device according to claim 1, characterized in that: The transmission platform (2) is rotatably connected to several transmission rollers (22).

7. The follow-up plate conveying device according to claim 1, characterized in that: The transmission platform (2) is slidably connected to a lifting plate (23), and the transmission platform (2) is connected to a drive member (24) for driving the lifting plate (23) toward or away from the transmission track (1).

8. The follow-up plate conveying device according to claim 1, characterized in that: The transmission track (1) is provided with a limiting part (121), and the transmission platform (2) is rotatably connected with a number of rollers (21). The rollers (21) are provided with limiting ring grooves (211) for sliding cooperation with the limiting part (121).