Steel member profile assembling and welding device
The steel profile angle and clamping are automatically adjusted through connecting rings, motors, gears and other components, which solves the problems of low welding efficiency and poor stability caused by manual angle adjustment in the existing technology, and realizes efficient and stable steel profile welding.
Patent Information
- Application Number
- CN202422939726.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The existing welding process of heterogeneous steel profiles requires manual angle adjustment, resulting in low welding efficiency and inconvenience in fixing, making it difficult to achieve a stable connection.
It uses connecting rings, motors, gears, gear rings, sliders, electric telescopic rods and air bags as components to achieve automatic adjustment of steel profile angles and stable clamping. The motor drives the gears to rotate the gear rings, and combined with air bag clamping, it achieves automatic flipping and stable placement.
It improves welding efficiency, ensures the stability and automation of steel profiles during welding, reduces manual operation and improves welding quality.
Smart Images

Figure CN223476754U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of steel component profile assembly welding technology, and specifically relates to a steel component profile assembly welding device. Background Technology
[0002] Steel profiles are metallic materials processed through hot rolling or cold bending, possessing specific cross-sectional shapes and dimensions. They mainly include hot-rolled steel plates, structural steel sections, and cold-formed thin-walled steel sections. Assembly welding refers to the process of assembling and welding multiple components together. In industrial applications, assembly welding typically involves assembling individual components according to design requirements and then firmly connecting them together through welding or other methods. This process can be applied in various fields, such as shipbuilding and pressure vessel manufacturing.
[0003] Existing irregular steel profiles require a specific clamping mechanism to fix them during the welding process, and it is inconvenient to adjust the angle of the steel profiles during the welding process. As a result, the workers need to rotate the two steel profiles to complete the welding of the two steel profiles. Utility Model Content
[0004] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a steel component profile welding device.
[0005] To achieve the above objectives, this utility model provides a steel component profile welding device, including a base plate, with frames connected to both upper sides of the base plate, and connecting rings connected to the upper ends of the two frames. A first motor is connected to the upper part of one side of one of the frames, and a rotating rod is connected to the output end of the first motor. One end of the rotating rod passes through the two frames in sequence and extends into the interior of one of the frames. One end of the rotating rod is connected to one side of the inner wall of the frame, and a drive assembly is connected to the outer wall of the rotating rod corresponding to the interior of the two frames.
[0006] The drive assembly can drive the gear ring and the support assembly to rotate;
[0007] The upper end of the drive component is connected to a toothed ring, and the lower end of the inner wall of the two toothed rings is connected to a support component.
[0008] The support assembly can support and place steel profiles;
[0009] The toothed ring has grooves on both sides of its inner wall. An electric telescopic rod is connected to the middle of one side of the inner wall of each groove. One end of each electric telescopic rod is connected to a push plate. One end of each push plate is connected to an air bag. A support rod is connected to the upper side of the bottom plate. A welding device is connected to the upper end of the support rod.
[0010] In the above technical solution, the driving component further includes gears, and the number of gears is two sets. The upper end of the gear passes through the frame and the connecting ring in sequence and extends into the interior of the connecting ring. The gear meshes with the lower end of the gear ring. Slider blocks are connected to both sides of the upper end and both sides of the lower end of the gear ring.
[0011] In the above technical solution, the lower end of the connecting ring is provided with an opening corresponding to the gear, and the upper end of the gear is located inside the opening.
[0012] In the above technical solution, the number of sliders is four sets, and the inner wall of the connecting ring is provided with grooves corresponding to multiple sliders, wherein two sliders slide inside two grooves respectively.
[0013] In the above technical solution, the supporting assembly is further provided with connecting rods, and there are two sets of connecting rods. A second motor is connected to the middle of one side of one of the connecting rods. The output end of the second motor extends through to one end of one of the connecting rods. A rotating roller is connected to the output end of the second motor. One end of the rotating roller is rotatably connected to one side of the other connecting rod. A support roller is rotatably connected between the two connecting rods.
[0014] In the above technical solution, further, an inflation tube is connected to the middle of the upper end of the plurality of air bags, and an electric valve is connected to the middle of the outer side of the inflation tube.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] The setup of the connecting ring, first motor, rotating rod, gear, gear ring, slider, slide groove, electric telescopic rod, push plate, air bag and inflation pipe facilitates clamping of steel profiles of different shapes on both sides, ensuring the stability of the steel profiles during the welding process. It also allows for the simultaneous rotation of two steel profiles, enabling the welding equipment to weld the joint of the two steel profiles circumferentially, thus improving welding efficiency.
[0017] The connection rod, second motor, rotating roller, support roller and groove are designed to automatically guide the two steel profiles and move them, reducing the workload of the workers in moving the two steel profiles and making it easier to support and place them. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure proposed in this utility model;
[0019] Figure 2 This is a schematic diagram of the opening structure of the slide groove proposed in this utility model;
[0020] Figure 3 This is a schematic diagram of the installation structure of the rotating roller proposed in this utility model;
[0021] Figure 4 This is a schematic diagram of the installation structure of the air inflator proposed in this utility model.
[0022] In the diagram: 1. Base plate; 2. Frame; 3. Connecting ring; 4. First motor; 5. Rotating rod; 6. Gear; 7. Gear ring; 8. Slider; 9. Slide groove; 10. Connecting rod; 11. Second motor; 12. Rotating roller; 13. Support roller; 14. Groove; 15. Electric telescopic rod; 16. Push plate; 17. Air bag; 18. Inflation pipe; 19. Support rod; 20. Welding equipment. Detailed Implementation
[0023] To better understand the above-mentioned objectives, features and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0024] like Figure 1-Figure 4 The steel component profile welding device shown includes a base plate 1, with frames 2 connected to both sides of the upper end of the base plate 1. Connecting rings 3 are connected to the upper ends of the two frames 2. A first motor 4 is connected to the upper part of one side of one of the frames 2. A rotating rod 5 is connected to the output end of the first motor 4. One end of the rotating rod 5 passes through the two frames 2 in sequence and extends into the interior of one of the frames 2. One end of the rotating rod 5 is connected to one side of the inner wall of the frame 2. A driving component is connected to the outer wall of the rotating rod 5 corresponding to the interior of the two frames 2. The driving component can drive the toothed ring 7 and the support component to rotate. The toothed ring 7 is connected to the upper end of the driving component.
[0025] The drive component drives the two toothed rings 7 to rotate, which in turn drives the two sets of steel profiles inside the two toothed rings 7 to rotate and flip, so that the two sets of steel profiles can be automatically flipped, which facilitates the welding equipment 20 to perform circumferential welding on the connection end of the two steel profiles.
[0026] The lower end of the inner wall of the two toothed rings 7 is connected to a support assembly, which can support the steel profile. The inner walls of the toothed rings 7 are provided with grooves 14 on both sides. The middle of one side of the inner wall of multiple grooves 14 is connected to an electric telescopic rod 15. One end of the multiple electric telescopic rods 15 is connected to a push plate 16. One end of the multiple push plates 16 is connected to an air bag 17. One side of the upper end of the base plate 1 is connected to a support rod 19. The upper end of the support rod 19 is connected to a welding device 20. The middle of the upper end of multiple air bags 17 is connected to an inflation tube 18. The middle of the outer side of the inflation tube 18 is connected to an electric valve.
[0027] The two sets of steel profiles can be easily supported by the support components. The two steel profiles can be driven to contact each other by the two support components. After the two steel profiles contact each other, the push plate 16 and the air bag 17 are moved to one side by the electric telescopic rod 15. The two air bags 17 clamp the two sides of the steel profiles. The air bags 17 can clamp steel profiles of different shapes, which improves the stability of the steel profiles. The air bags 17 can be inflated by the inflation tube 18. The push plate 16 is set with an arc-shaped structure.
[0028] The drive assembly includes gears 6, and there are two sets of gears 6. The upper end of the gears 6 passes through the frame 2 and the connecting ring 3 in sequence and extends into the interior of the connecting ring 3. The gears 6 mesh with the lower end of the gear ring 7. Slider 8 is connected to both sides of the upper end and both sides of the lower end of the gear ring 7. An opening is opened at the lower end of the connecting ring 3 corresponding to the gears 6. The upper end of the gears 6 is located inside the opening. There are four sets of sliders 8. The inner wall of the connecting ring 3 is provided with grooves 9 corresponding to multiple sliders 8. Two sliders 8 and two other sliders 8 slide inside the two grooves 9 respectively.
[0029] The first motor 4 drives the rotating rod 5 to rotate, which in turn drives the gear 6 to rotate the gear ring 7, making it easier to rotate the support assembly and the steel profile. At the same time, the rotation of the gear ring 7 drives multiple sliders 8 to slide inside multiple grooves 9, thereby improving the stability of the rotation of the gear ring 7.
[0030] The support assembly is connected to a connecting rod 10. There are two sets of connecting rods 10. A second motor 11 is connected to the middle of one side of one of the connecting rods 10. The output end of the second motor 11 extends through to one end of one of the connecting rods 10. A rotating roller 12 is connected to the output end of the second motor 11. One end of the rotating roller 12 is rotatably connected to one side of the other connecting rod 10. A support roller 13 is rotatably connected between the two connecting rods 10.
[0031] When the steel profile is placed on the upper end of the rotating roller 12 and the support roller 13, the rotating roller 12 is driven to rotate by the second motor 11, so that the steel profile moves on the upper end of the multiple support rollers 13 by rotating the rotating roller 12, reducing the workload of the staff in moving the steel profile. The middle of the outer wall of the two rotating rollers 12 and the multiple support rollers 13 are all set with a concave structure, which makes it easy to place the steel profile.
[0032] Working principle: When using the device, two steel profiles to be welded are placed on the upper ends of two rotating rollers 12 respectively. The second motor 11 drives the two rotating rollers 12 to rotate, causing the two steel profiles to move to one side. The two steel profiles are then positioned on the upper ends of multiple support rollers 13, bringing one end of the two steel profiles into contact. The electric telescopic rod 15 pushes the push plate 16 and air bags 17 to one side, causing two air bags 17 and two other air bags 17 to clamp the two steel profiles on both sides, improving the stability of the steel profiles. The welding equipment 20 can directly weld the joint of the two steel profiles. The first motor 4 drives the rotating rod 5 to rotate, which in turn drives the two gears 6 to rotate, causing the two gear rings 7 and multiple sliders 8 to rotate. The multiple sliders 8 slide inside multiple sliding grooves 9, causing the multiple support rollers 13, the two rotating rollers 12, the multiple air bags 17 and the two steel profiles to rotate, facilitating the welding equipment 20 to perform circumferential welding on the joint of the two steel profiles and improving the welding effect.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.
Claims
1. A steel component profile welding device, comprising a base plate (1), characterized in that, The base plate (1) is connected to two frames (2) on both sides of the upper end. The upper ends of the two frames (2) are connected to a connecting ring (3). A first motor (4) is connected to the upper part of one side of one of the frames (2). A rotating rod (5) is connected to the output end of the first motor (4). One end of the rotating rod (5) passes through the two frames (2) and extends into the interior of one of the frames (2). One end of the rotating rod (5) is connected to one side of the inner wall of the frame (2). The outer wall of the rotating rod (5) is connected to a drive assembly corresponding to the interior of the two frames (2). The drive assembly can drive the toothed ring (7) and the support assembly to rotate; The upper end of the drive assembly is connected to a toothed ring (7), and the lower end of the inner wall of the two toothed rings (7) is connected to a support assembly; The support assembly can support and place steel profiles; The toothed ring (7) has grooves (14) on both sides of its inner wall. One side of the inner wall of the grooves (14) is connected to an electric telescopic rod (15). One end of the electric telescopic rod (15) is connected to a push plate (16). One end of the push plate (16) is connected to an air bag (17). One side of the upper end of the base plate (1) is connected to a support rod (19). The upper end of the support rod (19) is connected to a welding device (20).
2. The steel component profile welding device according to claim 1, characterized in that, The drive assembly includes gears (6), and there are two sets of gears (6). The upper end of the gears (6) passes through the frame (2) and the connecting ring (3) in sequence and extends into the interior of the connecting ring (3). The gears (6) are meshed with the lower end of the toothed ring (7). The upper and lower sides of the toothed ring (7) are connected to sliders (8).
3. The steel component profile welding device according to claim 2, characterized in that, The lower end of the connecting ring (3) has an opening corresponding to the gear (6), and the upper end of the gear (6) is located inside the opening.
4. The steel component profile welding device according to claim 2, characterized in that, The number of sliders (8) is four sets. The inner wall of the connecting ring (3) is provided with grooves (9) corresponding to multiple sliders (8). Two sliders (8) and two other sliders (8) slide inside the two grooves (9) respectively.
5. The steel component profile welding device according to claim 1, characterized in that, The support assembly is connected to a connecting rod (10), and there are two sets of connecting rods (10). A second motor (11) is connected to the middle of one side of one of the connecting rods (10). The output end of the second motor (11) extends through to one end of one of the connecting rods (10). A rotating roller (12) is connected to the output end of the second motor (11). One end of the rotating roller (12) is rotatably connected to one side of the other connecting rod (10). A support roller (13) is rotatably connected between the two connecting rods (10).
6. The steel component profile welding device according to claim 1, characterized in that, An inflation tube (18) is connected to the middle of the upper end of each of the plurality of air bags (17), and an electric valve is connected to the middle of the outer side of the inflation tube (18).