Material feeding and discharging rack for steel plate beveling machine
By designing a material inlet and outlet rack for a steel plate beveling machine, and adopting an electrically controlled handling component and a rolling conveyor frame, the problems of messy steel plate material placement and inconvenient handling in the existing technology have been solved, realizing automated material conveying and a safe and efficient processing process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 沈阳万通新型建材有限公司
- Filing Date
- 2026-06-09
- Publication Date
- 2026-07-21
AI Technical Summary
The existing steel plate beveling machine lacks dedicated equipment for feeding and discharging, resulting in messy placement of steel plate materials, inconvenience in handling, high labor intensity, and safety hazards.
A material handling rack for a steel plate beveling machine was designed, including a feeding platform frame and a discharging platform frame. It adopts an electrically controlled handling component and a rolling conveyor frame to realize the automated stacking, pushing and discharging of steel plate materials. The magnetic suction cup robot arm realizes the precise handling and rolling conveying of materials.
It improves the efficiency and safety of steel plate beveling, reduces manual labor intensity, ensures stable material conveying and smooth discharge, and avoids the risk of steel plates tilting or falling.
Smart Images

Figure CN224526632U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of material rack technology, specifically relating to an inlet and outlet material rack for a steel plate beveling machine. Background Technology
[0002] A steel plate beveling machine is a device used to bevele the edges of steel plates and is widely used in manufacturing. During the beveling process, the steel plate material to be processed needs to be fed into the beveling machine's processing port, and the processed steel plate material needs to be smoothly removed from the other side of the machine. Currently, existing technologies still rely on manual handling for feeding and discharging, or use ordinary flatbed carts and simple supports for auxiliary feeding and discharging, lacking a dedicated material handling rack. This existing method has the following problems: first, the steel plate material is placed haphazardly, making it inconvenient to pick up and put down, affecting processing efficiency; second, manual handling and pushing of the steel plate lacks stable rolling support, resulting in high labor intensity; and third, the steel plate is prone to tilting or falling, posing a safety hazard. Therefore, there is an urgent need for a dedicated material handling rack that can be used in conjunction with a steel plate beveling machine, has a stable structure, provides smooth conveying, and facilitates the stacking and retrieval of steel plates, in order to improve the production efficiency and safety of beveling processing. Utility Model Content
[0003] This utility model addresses the above-mentioned problems and overcomes the shortcomings of the existing technology by providing a material inlet / outlet rack for a steel plate beveling machine.
[0004] To achieve the above objectives, the present invention adopts the following technical solution.
[0005] This utility model provides a material inlet / outlet rack for a steel plate beveling machine, including a feeding platform frame and a discharging platform frame. The feeding and discharging platform frames work in conjunction with the steel plate beveling machine and are located on both sides of the machine. Each feeding platform frame includes a first connecting rib and an integrated frame for steel plate placement and rolling conveying. Multiple integrated frames for steel plate placement and rolling conveying are connected by the first connecting rib to form the feeding platform frame. An electrically controlled handling component is provided on the side of the feeding platform frame. The integrated frame for steel plate placement and rolling conveying includes... The system includes a placement frame and a first rolling conveyor frame, which are integrally formed. The placement frame is used to stack steel plate materials, and the electrically controlled handling component is used to automatically transport the steel plate materials on the placement frame to the first rolling conveyor frame. The steel plate materials on the first rolling conveyor frame are manually fed into one side of the processing port of the steel plate beveling machine, and then output to the discharge loading platform frame through the other side of the processing port of the steel plate beveling machine. The discharge loading platform frame includes a second connecting rib and a second rolling conveyor frame. Multiple second rolling conveyor frames are connected by the second connecting rib to form the discharge loading platform frame.
[0006] Furthermore, the first connecting rib is four long angle steels. Each integrated frame for placing and rolling conveying steel plates is equally spaced and connected together by the four long angle steels. The four long angle steels are respectively connected to the four inner corners of each integrated frame for placing and rolling conveying steel plates.
[0007] Furthermore, the electrically controlled handling components are evenly spaced on the feeding platform frame on the side of the first rolling conveyor frame; the electrically controlled handling components include a mounting base and a suction cup robot, the suction cup robot is fixed on the mounting base, the suction cup robot is a magnetic suction cup robot, and the side columns of the placement frame are higher than the top surface of the placement frame.
[0008] Furthermore, the electrically controlled handling assembly is controlled by a control cabinet, which is located close to the feeding platform frame, and is electrically connected to the magnetic suction cup robot.
[0009] Furthermore, the first rolling conveyor frame includes a first rolling component, which is disposed on the top of the first rolling conveyor frame, and the top surface of the frame is higher than the first rolling component.
[0010] Furthermore, the first rolling assembly includes a first vertical plate and a first roller. The first vertical plate is fixedly connected to both ends of the top of the first rolling conveyor frame, and the first roller is rotatably connected to the first vertical plate. A first slot is provided on the first vertical plate to cooperate with the rotational connection of the first roller.
[0011] Furthermore, the first upright plate is fastened to the top of the first rolling conveyor frame by a first reinforcing rib.
[0012] Furthermore, the second connecting rib is four long angle steels, and each second rolling conveyor frame is equally spaced and connected together by the four long angle steels. The four long angle steels are respectively connected to the four inner corners of each second rolling conveyor frame.
[0013] Furthermore, the second rolling conveyor frame includes a second rolling assembly, which is disposed on the top of the second rolling conveyor frame; the second rolling assembly includes a second vertical plate and a second roller, the second vertical plate is fixedly connected to both ends of the top of the second rolling conveyor frame, and the second roller is rotatably connected to the second vertical plate; a second slot is provided on the second vertical plate to cooperate with the rotational connection of the second roller.
[0014] Furthermore, the second upright plate is fastened to the top of the second rolling conveyor frame by a second reinforcing rib.
[0015] The beneficial effects of this utility model are: 1. The material feeding and discharging rack for a steel plate beveling machine provided by this utility model, through the feeding platform rack and the discharging platform rack respectively set on both sides of the steel plate beveling machine, can cooperate well with the steel plate beveling machine to realize the centralized stacking, smooth pushing and automatic rolling discharge of steel plate materials, reduce the intensity of manual labor, improve the beveling processing efficiency, and realize the partitioned storage and unidirectional flow of steel plate materials.
[0016] 2. The feeding platform frame of this utility model is composed of multiple steel plate placement and rolling conveyor integrated frames connected by long angle steel. The placement frame and the first rolling conveyor frame are integrally formed, which can serve as both a temporary storage area for steel plate materials and a pushing transition area. The side columns of the placement frame are higher than the top surface as guardrails to prevent the steel plate materials from shifting and falling. The stacked steel plate materials are directly transported to the first roller by the set electronically controlled handling components. This can reduce the labor intensity of manual handling and improve work efficiency. The first rolling components can reduce the pushing friction, making the movement of steel plate materials light and effortless.
[0017] 3. The discharge platform frame of this utility model adopts multiple second rolling conveyor frames connected by long angle steel, and is also equipped with second rolling components, so that the processed steel plate material can slide out smoothly.
[0018] 4. This utility model has a simple overall structure and low manufacturing cost, which can effectively reduce the labor intensity of manually pushing steel plates, improve the efficiency of beveling, and enhance operational safety. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of a material inlet / outlet rack for a steel plate beveling machine, which is set on both sides of the steel plate beveling machine.
[0020] Figure 2 This is a schematic diagram of the main structure of the feeding and mounting platform frame of this utility model.
[0021] Figure 3 This is a side view of the feeding platform frame of this utility model.
[0022] Figure 4 This is a three-dimensional structural diagram of the integrated frame for placing and rolling conveying steel plates on the feeding platform frame of this utility model.
[0023] Figure 5 This is a schematic diagram of the main structure of the material discharge mounting platform frame of this utility model.
[0024] Figure 6 This is a side view of the material discharge mounting platform frame of this utility model.
[0025] Figure 7This is a three-dimensional structural diagram of the second rolling conveyor frame of the material discharge mounting platform frame of this utility model.
[0026] The markings in the diagram are as follows: 1 is the feeding platform frame, 2 is the discharging platform frame, 3 is the steel plate beveling machine, 4 is the first connecting rib, 5 is the integrated frame for steel plate placement and rolling conveying, 6 is the second connecting rib, 7 is the second rolling conveying frame, 8 is the placement frame, 9 is the first rolling conveying frame, 10 is the side column, 11 is the first rolling assembly, 12 is the first upright plate, 13 is the first roller, 14 is the first slot, 15 is the first reinforcing rib, 16 is the second rolling assembly, 17 is the second upright plate, 18 is the second roller, 19 is the second slot, 20 is the second reinforcing rib, 21 is the electrically controlled handling assembly, 22 is the mounting base, 23 is the suction cup robot, and 24 is the control cabinet. Detailed Implementation
[0027] To make the technical problems solved, the technical solutions, and the beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0028] Combination Figures 1 to 7 As shown in the figure, the present invention provides a material feeding and discharging rack for a steel plate beveling machine, comprising a feeding platform frame 1 and a discharging platform frame 2. The feeding platform frame 1 and the discharging platform frame 2 work in conjunction with the steel plate beveling machine 3. The feeding platform frame 1 and the discharging platform frame 2 are arranged on both sides of the steel plate beveling machine 3. The feeding platform frame 1 includes a first connecting rib 4 and an integrated frame 5 for placing and rolling steel plates. Multiple integrated frames 5 for placing and rolling steel plates are connected by the first connecting rib 4 to form the feeding platform frame 1. An electrically controlled handling component 21 is provided on the side of the feeding platform frame 1. The integrated frame for placing and rolling steel plates... 5 includes a placement frame 8 and a first rolling conveyor frame 9, which are integrally formed. The placement frame 8 is used to stack steel plate materials, and the electrically controlled handling component 21 is used to automatically transport the steel plate materials on the placement frame 8 to the first rolling conveyor frame 9. The steel plate materials on the feeding platform frame 1 are manually fed into one side of the processing port of the steel plate beveling machine 3, and the steel plate materials are output to the discharge platform frame 2 through the other side of the processing port of the steel plate beveling machine 3. The discharge platform frame 2 includes a second connecting rib 6 and a second rolling conveyor frame 7. Multiple second rolling conveyor frames 7 are connected by the second connecting rib 6 to form the discharge platform frame 2.
[0029] Preferably, the first connecting rib 4 consists of four long angle steel bars. Each integrated frame 5 for placing and rolling conveying steel plates is equally spaced and connected together by the four long angle steel bars. The four long angle steel bars are respectively connected to the four inner corners of each integrated frame 5 for placing and rolling conveying steel plates. Specifically, the long angle steel bars, as connecting members, have good bending stiffness. Connected to the inner corners of each integrated frame 5 for placing and rolling conveying steel plates, the equally spaced arrangement ensures uniform stress distribution, avoids local deformation, and guarantees the squareness and stability of the overall structure of the feeding platform frame 1.
[0030] Preferably, the electrically controlled handling components 21 are evenly spaced on the feeding platform frame 1 on the side of the first rolling conveyor frame 9. Each electrically controlled handling component 21 includes a mounting base 22 and a suction cup manipulator 23. The suction cup manipulator 23 is fixed to the mounting base 22 and is a magnetic suction cup manipulator. The side columns 10 of the placement frame 8 are higher than the top surface of the placement frame 8. This allows the side columns 10 to act as guardrails for stacked steel plate materials, preventing them from shifting and falling to the ground. The electrically controlled handling components 21 are controlled by a control cabinet 24, which is located close to the feeding platform frame 1. The control cabinet 24 is electrically connected to the magnetic suction cup manipulator. The control cabinet 24 controls the magnetic strength of the magnetic suction cup manipulator to achieve precise adsorption and handling of the steel plate materials. Specifically, the placement frame 8 and the first rolling conveyor frame 9 are integrally formed, improving the connection strength. The side columns 10 act as limiters, preventing the steel plate materials from slipping during stacking and improving operational safety.
[0031] Preferably, the first rolling conveyor frame 9 includes a first rolling assembly 11, which is disposed on the top of the first rolling conveyor frame 9, with the top surface of the placement frame 8 higher than the first rolling assembly 11. The first rolling assembly 11 includes a first upright plate 12 and a first roller 13. The first upright plate 12 is fixedly connected to both ends of the top of the first rolling conveyor frame 9, and the first roller 13 is rotatably connected to the first upright plate 12. A first slot 14 is provided on the first upright plate 12 to rotatably connect with the first roller 13. Specifically, the stacked steel plate material is directly transported to the first roller 13 by the provided electronically controlled handling assembly 21. This reduces the labor intensity of manual handling and improves work efficiency. The first rolling assembly 11 reduces the pushing friction, making the steel plate material move easily and effortlessly. The first slot 14 facilitates the installation and replacement of the first roller 13. The first roller 13 rotates flexibly, which reduces the sliding friction when pushing the steel plate, making the pushing process effortless and stable.
[0032] Preferably, the first upright plate 12 is fastened to the top of the first rolling conveyor frame 9 by a first reinforcing rib 15. Specifically, the first reinforcing rib 15 enhances the lateral force resistance of the first upright plate 12, preventing deformation or loosening of the first upright plate 12 when pushing steel plate materials, and ensuring long-term reliability.
[0033] Preferably, the second connecting rib 6 consists of four long angle steels. Each second rolling conveyor frame 7 is equally spaced and connected together by the four long angle steels. The four long angle steels are respectively connected to the four inner corners of each second rolling conveyor frame 7. This structure allows the discharge platform frame 2 to also have the advantages of good overall rigidity and simple manufacturing. Moreover, it uses the same specifications of parts as the feeding frame, which facilitates material preparation and assembly.
[0034] Preferably, the second rolling conveyor frame 7 includes a second rolling assembly 16, which is disposed on the top of the second rolling conveyor frame 7. The second rolling assembly 16 includes a second vertical plate 17 and a second roller 18. The second vertical plate 17 is fixedly connected to both ends of the top of the second rolling conveyor frame 7, and the second roller 18 is rotatably connected to the second vertical plate 17. A second slot 19 is provided on the second vertical plate 17 to rotatably connect with the second roller 18. The second roller 18 on the discharge platform frame 2 also has low-friction rolling characteristics, so that the processed steel plate material can smoothly slide out from the beveling machine outlet, avoiding jamming or scratching the surface of the steel plate.
[0035] Preferably, the second upright plate 17 is fastened to the top of the second rolling conveyor frame 7 by a second reinforcing rib 20. This strengthens the key load-bearing parts of the discharge loading platform frame 2, ensuring the stability of the steel plate material loading and extending its service life.
[0036] When using the material loading and unloading rack of this utility model, firstly, place the feeding platform frame 1 on the feeding side of the steel plate beveling machine 3, and place the discharging platform frame 2 on the discharging side of the steel plate beveling machine 3. Simultaneously, align the upper surfaces of the first rolling assembly 11 and the second rolling assembly 16 with the lower edge of the processing opening of the steel plate beveling machine 3. Then, stack the steel plate material to be processed on the placement frame 8, using the side columns 10 to prevent the steel plate material from sliding sideways. During processing, the magnetic suction cup manipulator of the electrically controlled handling assembly 21 transports the top layer of steel plate material from the placement frame 8 to the first roller 13 of the adjacent first rolling conveyor frame 9, and then pushes the steel plate material along the rolling direction of the first roller 13, so that one end enters the processing opening of the steel plate beveling machine 3. After the steel plate beveling machine 3 starts, the steel plate material is continuously processed and output from the other side, falling onto the second roller 18 of the discharging platform frame 2. The processed portion continues to roll on the second roller 18 until the entire steel plate material is completely removed from the beveling machine, marking the completion of the beveling process. The operator can then remove the steel plate material from the discharge platform 2 or pass it to subsequent processes. The entire feeding and discharging process achieves centralized stacking, labor-saving pushing, and automatic rolling out of the steel plate material, improving beveling efficiency.
[0037] It is understood that the above specific description of this utility model is only used to illustrate this utility model and is not limited to the technical solutions described in the embodiments of this utility model. Those skilled in the art should understand that modifications or equivalent substitutions can still be made to this utility model to achieve the same technical effect; as long as the use needs are met, they are all within the protection scope of this utility model.
Claims
1. A material inlet / outlet rack for a steel plate beveling machine, characterized in that: The system includes a feeding platform frame and a discharging platform frame, which work in conjunction with a steel plate beveling machine. The feeding platform frame and discharging platform frame are located on both sides of the steel plate beveling machine. Each feeding platform frame includes a first connecting rib and an integrated frame for placing and rolling steel plates. Multiple integrated frames for placing and rolling steel plates are connected by the first connecting rib to form the feeding platform frame. An electrically controlled handling component is located on the side of the feeding platform frame. The integrated frame for placing and rolling steel plates includes a placement frame and a first rolling conveyor. The frame, including the placement frame and the first rolling conveyor frame, is integrally formed. The placement frame is used to stack steel plate materials, and the electrically controlled handling component is used to automatically transport the steel plate materials on the placement frame to the first rolling conveyor frame. The steel plate materials on the feeding platform frame are manually fed into one side of the processing port of the steel plate beveling machine, and the steel plate materials are output to the discharge platform frame through the other side of the processing port of the steel plate beveling machine. The discharge platform frame includes a second connecting rib and a second rolling conveyor frame. Multiple second rolling conveyor frames are connected by the second connecting rib to form the discharge platform frame.
2. The material inlet / outlet rack for a steel plate beveling machine according to claim 1, characterized in that: The first connecting rib is four long angle steels. Each integrated frame for placing and rolling conveying steel plates is set at equal intervals and connected together by the four long angle steels. The four long angle steels are respectively connected to the four inner corners of each integrated frame for placing and rolling conveying steel plates.
3. The material inlet / outlet rack for a steel plate beveling machine according to claim 1, characterized in that: The electrically controlled handling components are evenly spaced on the feeding platform frame on the side of the first rolling conveyor frame; the electrically controlled handling components include a mounting base and a suction cup robot, the suction cup robot is fixed on the mounting base, the suction cup robot is a magnetic suction cup robot, and the side columns of the placement frame are higher than the top surface of the placement frame.
4. The material inlet / outlet rack for a steel plate beveling machine according to claim 3, characterized in that: The electrically controlled handling assembly is controlled by a control cabinet, which is located close to the feeding platform frame. The control cabinet is electrically connected to the magnetic suction cup robot.
5. The material inlet / outlet rack for a steel plate beveling machine according to claim 1, characterized in that: The first rolling conveyor frame includes a first rolling component, which is disposed on the top of the first rolling conveyor frame, and the top surface of the frame is higher than the first rolling component.
6. The material inlet / outlet rack for a steel plate beveling machine according to claim 5, characterized in that: The first rolling assembly includes a first vertical plate and a first roller. The first vertical plate is fixedly connected to both ends of the top of the first rolling conveyor frame, and the first roller is rotatably connected to the first vertical plate. A first slot is provided on the first vertical plate to cooperate with the rotational connection of the first roller.
7. The material inlet / outlet rack for a steel plate beveling machine according to claim 6, characterized in that: The first upright plate is fastened to the top of the first rolling conveyor frame by a first reinforcing rib.
8. The material inlet / outlet rack for a steel plate beveling machine according to claim 1, characterized in that: The second connecting rib is four long angle steels. Each second rolling conveyor frame is equally spaced and connected together by the four long angle steels. The four long angle steels are respectively connected to the four inner corners of each second rolling conveyor frame.
9. The material inlet / outlet rack for a steel plate beveling machine according to claim 1, characterized in that: The second rolling conveyor frame includes a second rolling assembly, which is disposed on the top of the second rolling conveyor frame. The second rolling assembly includes a second vertical plate and a second roller. The second vertical plate is fixedly connected to both ends of the top of the second rolling conveyor frame, and the second roller is rotatably connected to the second vertical plate. A second slot is provided on the second vertical plate to cooperate with the rotational connection of the second roller.
10. The material inlet / outlet rack for a steel plate beveling machine according to claim 9, characterized in that: The second upright plate is fastened to the top of the second rolling conveyor frame by a second reinforcing rib.