Soft metal plate rolling processing device for building steel structure
By designing a rolling and processing device for soft metal sheets used in building steel structures, the problem of adjusting the position and angle of laser cutting devices during cutting was solved, enabling flexible cutting of the sheets and ensuring that the cutting end is at a specific angle, thus improving the flexibility and precision of cutting.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QIHE KEYUAN CONSTRUCTION ENGINEERING CO LTD
- Filing Date
- 2025-06-10
- Publication Date
- 2026-05-15
AI Technical Summary
In existing technologies, laser cutting devices are difficult to move and adjust angles when cutting soft metal sheets, making it inconvenient to cut the sheet ends, especially when oblique cutting is required.
A laser cutting device for drawing and rolling soft metal sheets for building steel structures has been designed. It includes a moving component, a clamping component, a limiting component, a driving component, and a cutting component. Through the coordinated use of the driving component and the cutting component, the laser cutting device can move back and forth and adjust the angle to achieve straight and oblique cutting.
It enables flexible movement and angle adjustment of the laser cutting device, allowing for straight and oblique cuts on the sheet metal as needed, ensuring that the cutting end presents a specific angle, thus improving the flexibility and precision of the cutting process.
Smart Images

Figure CN224238543U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of soft metal sheet processing technology, specifically relating to a soft metal sheet rolling processing device for building steel structures. Background Technology
[0002] Soft metal sheets for building steel structures refer to metallic materials used in building steel structures. These materials have low hardness and can be drawn and rolled into the required shapes. Common soft metal sheets include galvanized steel sheets, aluminum alloy sheets, and copper sheets. These materials are widely used in construction projects because they have good plasticity, processability, and corrosion resistance, and can meet the different needs of building steel structures.
[0003] In existing technologies, the typical processing steps for rolling soft metal sheets are as follows: 1. The metal sheet is gradually rolled into the desired shape using a series of rolling and stretching devices. This process usually involves multiple rolling and shaping operations to ensure the accuracy and strength of the coil; 2. After the rolling process is completed, the coil undergoes post-processing, including cutting, welding, rust prevention, and painting, to ensure the quality and durability of the final product.
[0004] In the prior art, laser cutting devices are usually used for cutting sheet metal. However, it is usually inconvenient to move the laser cutting device during the cutting process. Furthermore, when it is necessary to make the end of the sheet metal at a certain angle, it is usually inconvenient to deflect the laser cutting device. To address these issues, we propose a soft metal sheet rolling processing device for building steel structures. Utility Model Content
[0005] The purpose of this invention is to provide a device for processing soft metal sheets for building steel structures by drawing and rolling, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A device for processing soft metal sheets for building steel structures includes a main component, a moving component on the main component, a clamping component and a limiting component on the moving component, a driving component on the main component, and a cutting component on the driving component, wherein the driving component and the cutting component are used in conjunction.
[0008] The drive assembly includes a U-shaped component, which is disposed on the main body assembly. A moving groove is provided on the U-shaped component, a rack is disposed in the moving groove, a sliding plate is disposed in the moving groove, and a drive gear is disposed on the sliding plate, with the drive gear meshing with the rack.
[0009] The cutting assembly includes an extension member disposed within a movable groove and rotatably connected to a drive gear. An angle adjustment member is disposed inside the extension member, and a laser cutting device is disposed at the lower end of the angle adjustment member. A B motor is disposed on the extension member, and the output end of the B motor passes through the extension member and is connected to the angle adjustment member.
[0010] Preferably, the main component includes a mobile cabinet, casters, an extension plate, and rollers. Multiple casters are provided, and all casters are mounted on the mobile cabinet. The extension plate is mounted on the mobile cabinet, and the rollers are mounted on the extension plate.
[0011] Preferably, the drive assembly further includes an A motor, which is disposed on the sliding plate, and the output end of the A motor passes through the sliding plate and is connected to the drive gear. The U-shaped component is disposed on the extension plate.
[0012] Preferably, the movable component includes a movable plate and a hollow component, the expansion plate has an installation groove, the hollow component is disposed in the installation groove, and the movable plate is slidably disposed in the hollow component.
[0013] Preferably, the moving component further includes a fixing member, a rotating member, and a spring A. There are two fixing members and two rotating members. The two fixing members are respectively disposed on the extension plate and the moving plate. The two rotating members are distributed inside the two fixing members. The spring A is disposed at the close ends of the two rotating members.
[0014] Preferably, the clamping assembly includes a clamping plate, a pulling member, a sleeve rod, and a B spring. The moving plate has a sliding groove, the sleeve rod is disposed in the sliding groove, the clamping plate is disposed in the sliding groove and is sleeved on the sleeve rod, and the B spring is disposed between the moving plate and the clamping plate.
[0015] Preferably, the limiting component includes a mounting component, a rotating wheel, a threaded component, a connecting component, a lead screw, and a handle. There are two mounting components, both of which are mounted on the hollow component and arranged symmetrically. There are multiple rotating wheels, each mounted on one of the two mounting components. The threaded component is mounted on the mounting component. The connecting component is mounted on the extension plate. The lead screw is mounted on the connecting component, and the threaded component and the lead screw are threadedly connected. The handle is mounted on the lead screw.
[0016] Preferably, the cutting assembly further includes a telescopic component, an A-deflection gear, a B-deflection gear, a C-deflection gear, and a protective plate. The A-deflection gear, B-deflection gear, and C-deflection gear are disposed on the U-shaped component. The B-deflection gear meshes with the A-deflection gear and the C-deflection gear, respectively. The telescopic component is disposed on the A-deflection gear, and the telescopic end of the telescopic component passes through the extension component and is connected to the angle adjustment component. The protective plate is disposed on the C-deflection gear.
[0017] Compared with the prior art, the beneficial effects of this utility model are:
[0018] After stretching and shaping the soft metal sheet, it needs to be cut to the required dimensions. During cutting, the laser cutting device can move back and forth by using the drive component and the cutting component together, thus cutting the sheet. When it is necessary to cut the sheet at an angle so that the end of the sheet is at a certain angle, the deflection angle of the laser cutting device can be adjusted by the cutting component, thus enabling the sheet to be cut at an angle. Attached Figure Description
[0019] Figure 1 This is a first perspective structural diagram of the present invention;
[0020] Figure 2 This utility model Figure 1 A magnified view of a section at point A in the middle;
[0021] Figure 3 This is a second perspective structural diagram of the present invention;
[0022] Figure 4 This utility model Figure 3 A magnified view of a section at point B in the middle;
[0023] Figure 5 This is a first partial exploded view of the present invention;
[0024] Figure 6 This is a partial structural diagram of the present invention;
[0025] Figure 7 This is a second partial exploded view of the present invention.
[0026] In the diagram: 1. Main component; 11. Mobile cabinet; 12. Casters; 13. Extension plate; 14. Roller; 2. Mobile component; 21. Mobile plate; 22. Fixing component; 23. Rotating component; 24. Spring A; 25. Hollow component; 3. Clamping component; 31. Clamping plate; 32. Pulling component; 33. Sleeve rod; 34. Spring B; 4. Limiting component; 41. Mounting component; 42. Rotating wheel; 43. Threaded component; 44. Connecting component; 45. Lead screw; 46. Handle; 5. Drive component; 51. U-shaped component; 52. Motor A; 53. Sliding plate; 54. Drive gear; 55. Rack; 6. Cutting component; 61. Laser cutting device; 62. Motor B; 63. Angle adjustment component; 64. Extension component; 65. Telescopic component; 66. Deflection gear A; 67. Deflection gear B; 68. Deflection gear C; 69. Protective plate. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] Please see Figures 1-7 This utility model provides a soft metal sheet rolling processing device for building steel structure, including a main component 1, a moving component 2 on the main component 1, a clamping component 3 and a limiting component 4 on the moving component 2, a driving component 5 on the main component 1, and a cutting component 6 on the driving component 5, and the driving component 5 and the cutting component 6 are used in cooperation.
[0029] The drive assembly 5 includes a U-shaped part 51, which is disposed on the main body assembly 1. A moving groove is provided on the U-shaped part 51, a rack 55 is disposed in the moving groove, a sliding plate 53 is disposed in the moving groove, and a drive gear 54 is disposed on the sliding plate 53, and the drive gear 54 and the rack 55 mesh.
[0030] The cutting assembly 6 includes an extension 64, which is disposed in a moving groove and rotatably connected to a drive gear 54. An angle adjustment component 63 is disposed inside the extension 64, and a laser cutting device 61 is disposed at the lower end of the angle adjustment component 63. A B motor 62 is disposed on the extension 64, and the output end of the B motor 62 passes through the extension 64 and is connected to the angle adjustment component 63. The driving assembly 5 also includes an A motor 52, which is disposed on a sliding plate 53, and the output end of the A motor 52 passes through the sliding plate 53 and is connected to the drive gear 54. A U-shaped component 51 is disposed on an extension plate 13.
[0031] Specifically, when cutting a stretched and plasticized soft metal sheet, the end of the sheet can be clamped by the clamping component 3. By pushing the sheet forward, the moving component 2 can extend and retract, thereby controlling the length of the sheet. Once the sheet has moved to the appropriate position and its length matches the preset dimensions, the laser cutting device 61 can be activated to cut the sheet. During cutting, the A motor 52 can be activated to drive the drive gear 54 to rotate, which in turn moves the sliding plate 53 and the extension 64. Since the laser cutting device 61 is mounted on the angle adjustment component 63, which is mounted on the extension 64, the laser cutting device 61 can move to perform straight cuts on the sheet. When it is necessary to cut the end of the sheet at an angle, the angle adjustment component 63 can be rotated to control the laser cutting device 61 to deflect the angle. Repeating the above operation can drive the laser cutting device 61 to perform angled cuts, allowing the end of the sheet to be at a certain angle, typically 30°, 45°, or 60°.
[0032] In this embodiment, the main component 1 includes a mobile cabinet 11, casters 12, an extension plate 13, and rollers 14. Multiple casters 12 are provided, and all casters 12 are provided on the mobile cabinet 11. The extension plate 13 is provided on the mobile cabinet 11, and the rollers 14 are provided on the extension plate 13.
[0033] Specifically, in order to facilitate the movement of the device during use, multiple casters 12 can be installed at the lower end of the mobile cabinet 11, so that the device can be moved by pushing the mobile cabinet 11. During use, an extension plate 13 can be installed at the upper end of the mobile cabinet 11 to facilitate the subsequent installation of the moving component 2. Rollers 14 are installed on the extension plate 13 to facilitate the transport of the material to the upper end of the extension plate 13.
[0034] In this embodiment, the movable component 2 includes a movable plate 21 and a hollow component 25. An installation groove is provided on the expansion plate 13, the hollow component 25 is disposed in the installation groove, and the movable plate 21 is slidably disposed in the hollow component 25.
[0035] In this embodiment, the moving component 2 also includes a fixing member 22, a rotating member 23 and an A spring 24. There are two fixing members 22 and two rotating members 23. The two fixing members 22 are respectively disposed on the extension plate 13 and the moving plate 21. The two rotating members 23 are distributed inside the two fixing members 22. The A spring 24 is disposed at the close ends of the two rotating members 23.
[0036] Specifically, during use, the end of the sheet can be clamped by the clamping component 3. Then, the sheet can be pulled by moving the moving plate 21, thereby changing the length of the sheet and facilitating subsequent cutting. After cutting, in order to allow the moving plate 21 to return to its original position, fixing parts 22 can be provided on both the moving plate 21 and the extension plate 13, and rotating parts 23 can be provided on the fixing parts 22. A spring 24 is provided between the two rotating parts 23. When the moving plate 21 is pulled, thereby changing the length of the sheet, the A spring 24 will be stretched. When the cutting is finished, the moving plate 21 will return to its original position under the elastic force of the A spring 24.
[0037] In this embodiment, the clamping assembly 3 includes a clamping plate 31, a pulling member 32, a sleeve rod 33, and a B spring 34. A sliding groove is provided on the moving plate 21, the sleeve rod 33 is disposed in the sliding groove, the clamping plate 31 is disposed in the sliding groove, and the clamping plate 31 is sleeved on the sleeve rod 33. The B spring 34 is disposed between the moving plate 21 and the clamping plate 31.
[0038] Specifically, when clamping the end of the plate, the pulling member 32 can be pulled upward to move the clamping plate 31 upward. Then the end of the plate can be positioned below the clamping plate 31. At this time, the pulling member 32 is released, and the clamping plate 31 will press the plate downward under the elastic force of the B spring 34, thereby fixing the end of the plate.
[0039] In this embodiment, the limiting component 4 includes a mounting part 41, a rotating wheel 42, a threaded part 43, a connecting part 44, a lead screw 45, and a handle 46. There are two mounting parts 41, and both mounting parts 41 are mounted on the hollow part 25 and arranged symmetrically. There are multiple rotating wheels 42, and the multiple rotating wheels 42 are respectively mounted on two mounting parts 41. The threaded part 43 is mounted on the mounting part 41. The connecting part 44 is mounted on the extension plate 13. The lead screw 45 is mounted on the connecting part 44, and the threaded part 43 and the lead screw 45 are threadedly connected. The handle 46 is mounted on the lead screw 45.
[0040] Specifically, when changing the length of the sheet material, to prevent the sheet material from moving left and right, two mounting parts 41 can be set on the hollow part 25, and multiple rotating wheels 42 can be set in each of the two mounting parts 41. The rotating wheels 42 can limit the position of the sheet material. Since the rotating wheels 42 can rotate during use, it makes pulling the sheet material easier when it is lengthened. During use, the handle 46 can be rotated to control the rotation of the lead screw 45, which in turn controls the movement of the threaded part 43. The distance between the two mounting parts 41 can be adjusted according to the sheet material of different widths, thereby limiting the position of the sheet material.
[0041] In this embodiment, the cutting assembly 6 further includes a telescopic member 65, an A deflection gear 66, a B deflection gear 67, a C deflection gear 68, and a protective plate 69. The A deflection gear 66, B deflection gear 67, and C deflection gear 68 are disposed on the U-shaped member 51. The B deflection gear 67 meshes with the A deflection gear 66 and the C deflection gear 68 respectively. The telescopic member 65 is disposed on the A deflection gear 66, and the telescopic end of the telescopic member 65 passes through the extension member 64 and is connected to the angle adjustment member 63. The protective plate 69 is disposed on the C deflection gear 68.
[0042] Specifically, in use, in order to ensure that when the laser cutting device 61 deflects at an angle, the protective plate 69 can also deflect, thereby preventing laser scattering, the telescopic end of the telescopic member 65 can be connected to the extension member 64 and the angle adjustment member 63. When the angle adjustment member 63 deflects, it can drive the extension member 64 to deflect as well. The A deflection gear 66 is set on the telescopic member 65 and meshes with the A deflection gear 66 through the B deflection gear 67. The B deflection gear 67 meshes with the C deflection gear 68. When the telescopic member 65 deflects, it can drive the A deflection gear 66 to rotate, thereby controlling the C deflection gear 68 to rotate. The protective plate 69 is set on the C deflection gear 68. When the C deflection gear 68 rotates, it can drive the protective plate 69 to deflect at the same angle, thus ensuring that the protective plate 69 is always perpendicular to the laser cutting device 61.
[0043] The working principle and usage process of this utility model are as follows: When cutting a stretched and plasticized soft metal sheet, the end of the sheet can be clamped by the clamping component 3. At this time, by controlling the moving distance of the moving plate 21, the length of the sheet above the extension plate 13 can be adjusted. After adjusting to a suitable length, the laser cutting device 61 can be controlled to move horizontally by the driving component 5, so that the laser cutting device 61 can cut the sheet in a straight line. Before cutting, in order to prevent the sheet from moving during the cutting process, which would result in the end of the cut sheet not being straight, a limiting component can be used. 4. Limiting the plate material: When the cutting end of the plate material needs to be set to a certain angle, such as 30°, the angle adjustment component 63 can be controlled to deflect by 30° by motor B 62, thereby controlling the laser cutting device 61 to deflect by 30°, and thus the plate material can be cut at an angle. During cutting, in order to avoid laser scattering, the protective plate 69 can be set perpendicular to the laser cutting device 61. Through the transmission of deflection gear B 67 and deflection gear C 68, even if the laser cutting device 61 deflects, the protective plate 69 can still be set perpendicular to the laser cutting device 61, thereby avoiding laser scattering.
[0044] The electronic components and modules used in this utility model can all be parts that are commonly used in the market and can achieve the specific functions in this case. The specific models and sizes can be selected and adjusted according to actual needs.
[0045] 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 illustrative of 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. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A device for processing soft metal sheets for building steel structures by drawing and rolling, comprising a main component (1), characterized in that: The main body component (1) is provided with a moving component (2), the moving component (2) is provided with a clamping component (3) and a limiting component (4), the main body component (1) is provided with a driving component (5), the driving component (5) is provided with a cutting component (6), and the driving component (5) and the cutting component (6) are used together. The drive assembly (5) includes a U-shaped part (51), which is disposed on the main body assembly (1). A moving groove is provided on the U-shaped part (51), a rack (55) is disposed in the moving groove, a sliding plate (53) is disposed in the moving groove, and a drive gear (54) is disposed on the sliding plate (53), and the drive gear (54) and the rack (55) mesh. The cutting assembly (6) includes an extension (64), which is disposed in a moving groove and is rotatably connected to a drive gear (54). An angle adjustment component (63) is disposed inside the extension (64), and a laser cutting device (61) is disposed at the lower end of the angle adjustment component (63). A B motor (62) is disposed on the extension (64), and the output end of the B motor (62) passes through the extension (64) and is connected to the angle adjustment component (63).
2. The device for processing soft metal sheets for building steel structures according to claim 1, characterized in that: The main component (1) includes a mobile cabinet (11), casters (12), an extension plate (13), and rollers (14). Multiple casters (12) are provided, and all casters (12) are provided on the mobile cabinet (11). The extension plate (13) is provided on the mobile cabinet (11), and the rollers (14) are provided on the extension plate (13).
3. The device for processing soft metal sheets for building steel structures according to claim 2, characterized in that: The drive assembly (5) also includes an A motor (52), which is mounted on a sliding plate (53). The output end of the A motor (52) passes through the sliding plate (53) and is connected to the drive gear (54). The U-shaped piece (51) is mounted on the extension plate (13).
4. The device for processing soft metal sheets for building steel structures by drawing and rolling according to claim 2, characterized in that: The movable component (2) includes a movable plate (21) and a hollow component (25). The expansion plate (13) has an installation groove, the hollow component (25) is disposed in the installation groove, and the movable plate (21) is slidably disposed in the hollow component (25).
5. The device for processing soft metal sheets for building steel structures according to claim 4, characterized in that: The moving component (2) also includes a fixing member (22), a rotating member (23), and an A spring (24). There are two fixing members (22) and two rotating members (23). The two fixing members (22) are respectively disposed on the extension plate (13) and the moving plate (21). The two rotating members (23) are distributed inside the two fixing members (22). The A spring (24) is disposed at the close ends of the two rotating members (23).
6. The device for processing soft metal sheets for building steel structures according to claim 4, characterized in that: The clamping assembly (3) includes a clamping plate (31), a pulling member (32), a sleeve rod (33), and a B spring (34). The moving plate (21) has a sliding groove, the sleeve rod (33) is disposed in the sliding groove, the clamping plate (31) is disposed in the sliding groove, and the clamping plate (31) is sleeved on the sleeve rod (33). The B spring (34) is disposed between the moving plate (21) and the clamping plate (31).
7. The device for processing soft metal sheets for building steel structures according to claim 2, characterized in that: The limiting component (4) includes a mounting part (41), a rotating wheel (42), a threaded part (43), a connecting part (44), a lead screw (45), and a handle (46). There are two mounting parts (41), and both mounting parts (41) are set on the hollow part (25) and arranged symmetrically. There are multiple rotating wheels (42), and multiple rotating wheels (42) are respectively set on two mounting parts (41). The threaded part (43) is set on the mounting part (41). The connecting part (44) is set on the extension plate (13). The lead screw (45) is set on the connecting part (44), and the threaded part (43) and the lead screw (45) are threadedly connected. The handle (46) is set on the lead screw (45).
8. The device for processing soft metal sheets for building steel structures according to claim 1, characterized in that: The cutting assembly (6) further includes a telescopic member (65), an A deflection gear (66), a B deflection gear (67), a C deflection gear (68), and a protective plate (69). The A deflection gear (66), B deflection gear (67), and C deflection gear (68) are mounted on the U-shaped member (51). The B deflection gear (67) meshes with the A deflection gear (66) and the C deflection gear (68) respectively. The telescopic member (65) is mounted on the A deflection gear (66), and the telescopic end of the telescopic member (65) passes through the extension member (64) and is connected to the angle adjustment member (63). The protective plate (69) is mounted on the C deflection gear (68).