Push plate lifting feeding device
By designing a push plate lifting and loading device for cylindrical materials, the combination of the lifting plate and steps driven by the lifting cylinder and the conveying track is solved, and the problem of traditional low loading efficiency is realized, and automatic loading and efficient storage are achieved.
Patent Information
- Application Number
- CN202422245360.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-13
AI Technical Summary
The loading of traditional cylindrical materials requires manual sorting and placement, which is inefficient and difficult to achieve automated and efficient storage.
A push plate lifting and loading device is designed, including a storage silo, a conveying track and a lifting device. The lifting device consists of a lifting plate driven by a lifting cylinder. The steps cooperate with the conveying track to realize the automatic direction finishing and loading of materials.
Automatic finishing and loading of cylindrical materials is realized, manual intervention is reduced, work efficiency is improved, and manufacturing costs are reduced.
Smart Images

Figure CN223032423U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of material transmission equipment, and particularly relates to a push plate lifting feeding device for feeding cylindrical materials with different diameters and lengths. Background Art
[0002] For traditional cylindrical material feeding as Figure 1 shown, it is necessary to manually arrange the products in the correct direction and then place them one by one into the storage bin. After sorting by the sorting wheel, they are conveyed to the track for feeding. The material placement time is long, the material space is small, and the storage quantity is relatively small. It is very difficult to perform the replenishment operation, and the work efficiency is low. Summary of the Invention
[0003] The purpose of the utility model is to provide a push plate lifting feeding device that can automatically arrange the material direction, requires no manual intervention, has a large material storage capacity, and automatically feeds the material, aiming at the defects existing in the prior art.
[0004] To achieve the above purpose, the utility model adopts the following technical solutions:
[0005] A push plate lifting feeding device for feeding cylindrical materials, characterized in that: it includes a storage bin, a conveying track arranged above the storage bin, at least one step is arranged between the bottom of the storage bin and the conveying track, and the top step is flush with the conveying track; a lifting plate driven by a lifting device is arranged between the bottom of the storage bin and the conveying track, and the lifting plate is lifted to lift the material from the bottom of the storage bin to the top step. The cylindrical materials in the storage bin roll to the end face of the lifting plate of the lifting device, and the lifting device drives the lifting plate to lift the material to the top step and enter the conveying track, and the conveying track completes the feeding. The vibration generated by the action of the lifting device will also play a role in vibrating and sorting the materials in the storage bin.
[0006] It is further characterized in that: the lifting device is a lifting cylinder, the lifting cylinder is installed on the lifting cylinder mounting plate, and the lifting plate is connected to the lifting cylinder through a cylinder connecting block.
[0007] Preferably: the conveying track includes a conveyor belt, a driving belt and a driving motor; the driving belt is driven to rotate by the driving motor, and one end of the driving belt is coaxially arranged with one end of the conveyor belt.
[0008] It is further characterized in that: the conveyor belt is arranged between two belt side plates; a stopper is arranged above the conveyor belt, and a blowing block is arranged above one side of the conveyor belt. The belt side plates clamp the conveyor belt to ensure that the materials can be smoothly conveyed along the direction of the conveyor belt. If there are erected materials during the feeding process, they will be guided by the stopper at the top and fall back into the storage bin. The blowing block can correct the conveying direction of the materials on the conveyor belt.
[0009] Preferably: there are two steps arranged between the bottom of the storage bin and the conveying track; the lifting plate has two layers, and the heights of the two layers are adapted to the heights of the two steps. The materials are lifted and transferred between the two steps through the two-layer lifting plate to the conveying track. Using multiple steps can effectively reduce the working stroke of the lifting device and save manufacturing costs.
[0010] Preferably: the bottom of the storage bin is inclined downward, the steps are inclined inward, and the end faces of the lifting plates are inclined inward. The storage bin with the bottom inclined downward can make the materials automatically roll towards the steps. The inwardly inclined steps and the end faces of the lifting plates can realize the transfer of the materials between the end faces of the lifting plates and the steps, effectively preventing the materials from rolling down and ensuring the conveying effect.
[0011] The utility model realizes the automatic direction arrangement of cylindrical materials through the cooperation of the steps and the end faces of the lifting plates for lifting, and at the same time, the vibration generated by the action of the lifting device also plays a role in vibrating and arranging the materials in the storage bin. Thereby reducing the manual feeding step in the prior art, without manual intervention, and greatly improving the working efficiency. The structure of the utility model is simple and the manufacturing cost is low. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic structural diagram of a traditional feeding device.
[0013] Figures 2 and 3 are schematic structural diagrams of the utility model.
[0014] Figure 4 is a schematic exploded structural diagram of the utility model.
[0015] Figure 5 is a schematic exploded diagram of the conveying track.
[0016] Figure 6 is a schematic exploded diagram of the lifting device.
[0017] Figure 7 is a schematic diagram of the working process of the utility model. DETAILED DESCRIPTION OF THE INVENTION
[0018] As Figures 2-4As shown in the figure, a push plate lifting and feeding device for feeding cylindrical materials includes a storage bin 1, a conveying track 2 arranged above the storage bin 1. There are two steps 11 arranged between the bottom of the storage bin 1 and the conveying track 2, and the top step 11 is flush with the conveying track 2. A lifting device 3 is arranged between the bottom of the storage bin 1 and the conveying track 2. The lifting device 3 is a two-layer lifting plate 32 driven by a lifting cylinder 31, and the height of the two-layer lifting plate 32 is adapted to the height of the two steps 11. The materials are gradually lifted and transferred between the two steps 11 through the two-layer lifting plate 32 to the conveying track 2.
[0019] As Figure 4 , 6 shown in the figure, the lifting cylinder 31 is installed on the lifting cylinder mounting plate 33, and the lifting plate 32 is connected to the lifting cylinder 31 through a cylinder connecting block 34.
[0020] As Figure 4 , 5 shown in the figure, the conveying track 2 includes a conveyor belt 21, a driving belt 22 and a driving motor 23. The driving belt 22 is driven to rotate by the driving motor 23. One end of the driving belt 22 and one end of the conveyor belt 21 are coaxially arranged on the driving belt pulley 26. The other end of the conveyor belt 21 is connected to the transmission belt pulley 25. The conveyor belt 21 is arranged between two belt side plates 24. A stop block 27 is arranged above the conveyor belt 21, and a blowing block 28 is arranged above one side of the conveyor belt 21. The belt side plates 24 clamp the conveyor belt 21 to ensure that the materials can be smoothly conveyed along the direction of the conveyor belt 21. If there are erected materials during the feeding process, they will be guided by the top stop block 27 and fall back into the storage bin. The blowing block 28 can correct the conveying direction of the materials on the conveyor belt 21.
[0021] As Figures 2-7 shown in the figure, the bottom of the storage bin 1 slopes downward, the steps 11 slope inward, and the end faces of the lifting plates 32 slope inward. The downward-sloping bottom of the storage bin 1 can make the materials automatically roll towards the steps 11. The inward-sloping steps 11 and the end faces of the lifting plates 32 can realize the transfer of materials between the end faces of the lifting plates 32 and the steps 11, effectively preventing the materials from rolling down and ensuring the transmission effect.
[0022] As Figure 7As shown in the figure, the materials in the storage bin 1 roll along the downward-sloping bottom to the end face of the first-layer lifting plate 32. The lifting cylinder 31 operates to rise, and the end face of the first-layer lifting plate 32 rises to the height of the first-layer step 11, and the materials roll onto the first-layer step 11. The lifting cylinder 31 operates to descend, and the end face of the second-layer lifting plate 32 descends to the height of the first-layer step 11, and the materials roll from the first-layer step 11 to the end face of the second-layer lifting plate 32. The lifting cylinder 31 operates to rise again, and the end face of the second-layer lifting plate 32 rises to the height of the second-layer step 11, and the materials roll onto the second-layer step 11 and roll into the conveyor belt 21, and are driven by the conveyor belt 21 to complete the conveying of the materials. The lifting cylinder 31 reciprocates to continuously lift and convey the materials in the storage bin 1 onto the conveyor belt 21 for feeding.
Claims
1. A push plate lifting and loading device for loading cylindrical materials, characterized in that: It includes a storage bin and a conveying track arranged above the storage bin, at least one step is arranged between the bottom of the storage bin and the conveying track, and the top step is flush with the conveying track; a lifting plate driven by a lifting device is arranged between the bottom of the storage bin and the conveying track, and the lifting plate is lifted to lift the material from the bottom of the storage bin to the top step.
2. The push plate lifting and loading device according to claim 1, characterized in that: The lifting device is a lifting cylinder, and the lifting cylinder is installed on a lifting cylinder mounting plate, and the lifting plate is connected to the lifting cylinder through a cylinder connecting block.
3. The push plate lifting and loading device according to claim 2, characterized in that: The conveying track comprises a conveying belt, a driving belt and a driving motor; the driving belt is driven to rotate by the driving motor, and one end of the driving belt is coaxially arranged with one end of the conveying belt.
4. The push plate lifting and loading device according to claim 3, characterized in that: The conveyor belt is arranged between two belt side plates; a stopper is arranged above the conveyor belt, and an air blowing block is arranged above one side of the conveyor belt.
5. The push plate lifting and loading device according to any one of claims 1 to 4, characterized in that: Two steps are arranged between the bottom of the storage bin and the conveying track; the lifting plate has two layers, and the height of the two layers is adapted to the height of the two steps.
6. The push plate lifting and loading device according to claim 5, characterized in that: The bottom of the storage bin is inclined downward, the step is inclined inward, and the end surface of the lifting plate is inclined inward.