Aluminum-magnesium-manganese roof panel processing and cutting device
The cutting device, which combines linear guide modules and positive and negative screws, solves the problems of stability and precision in the fixing and cutting process of aluminum-magnesium-manganese roofing panels, and realizes the diversified cutting needs of aluminum-magnesium-manganese panels of different specifications.
Patent Information
- Application Number
- CN202422937775.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing aluminum-magnesium-manganese roofing panels are prone to damage during fixing and cannot be adapted to different cutting requirements, especially for raised structures.
The cutting device, which combines a linear guide module, a cross slide module, and positive and negative screws, avoids the protrusions on the surface of the aluminum-magnesium-manganese plate by adjusting the spacing of the pressure blocks. It achieves stable cutting of the aluminum-magnesium-manganese plate by fixing it with positive and negative screws and pressure blocks, and then performs precise cutting in conjunction with a cutting saw.
It achieves stable fixing and precise cutting of aluminum-magnesium-manganese plates, avoiding cutting deviations and meeting diverse size requirements.
Smart Images

Figure CN223733993U_ABST
Abstract
Description
Technical fields:
[0001] This application relates to the field of sheet metal processing technology, and in particular to a processing and segmentation device for aluminum-magnesium-manganese roofing panels. Background technology:
[0002] In the field of modern architecture, aluminum-magnesium-manganese (AMM) roofing panels are widely used in various building roofs, greatly improving the overall performance and durability of roofing systems. Due to the wide range of applications, the required dimensions for AMM panels are also diverse, making cutting a crucial step in the processing of AMM panels.
[0003] Utility model application CN202420435418.4 discloses an aluminum profile cutting device, comprising an operating table. A cutting platform is fixed to one end of the operating table, and a cutting blade is mounted on the cutting platform. A clamping assembly is located at the other end of the operating table. The clamping assembly is movably mounted on the operating table via a linear module. The clamping assembly includes two vertical clamping members and one horizontal clamping member. The horizontal clamping member is mounted on a slide between the two vertical clamping members. Each vertical clamping member includes a gate-shaped bracket and a vertical telescopic rod. A pressure plate is fixedly connected to the telescopic end of the vertical telescopic rod. The horizontal clamping member includes a horizontal telescopic rod, and a movable plate is fixedly connected to the telescopic end of the horizontal telescopic rod. This utility model can fix aluminum profiles, preventing movement during cutting, ensuring cutting effect and accuracy, flexibly controlling the cutting length, and is suitable for cutting aluminum profiles of different sizes. It reduces labor costs and cutting errors.
[0004] Aluminum-magnesium-manganese sheets can be divided into flat sheets and profiled sheets according to their surface structure. Profiled sheets are made by pressing the surface into a concave-convex structure in order to increase structural stability, waterproof design and aesthetics. However, the position of the pressure block in this patent cannot be adjusted, which will make it impossible to avoid the protrusions on the sheet surface when fixing the aluminum-magnesium-manganese sheet. The protrusions on the sheet surface will be pressed and deformed, affecting the structural stability of the sheet surface and making it unsuitable for cutting aluminum-magnesium-manganese sheets of different specifications. Utility Model Content:
[0005] To solve the above-mentioned technical problems, this utility model provides an aluminum-magnesium-manganese roofing panel processing and cutting device. The technical problem it solves is that fixing the aluminum-magnesium-manganese panel causes damage to the panel, making it unsuitable for cutting aluminum-magnesium-manganese panels of different specifications. The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows:
[0006] An aluminum-magnesium-manganese roofing panel processing and cutting device includes:
[0007] frame;
[0008] Linear guide rail modules are fixedly mounted on the upper surfaces of both sides of the frame.
[0009] The cross slide module is connected with the output end of the linear guide rail module.
[0010] The cutting mechanism vertically lifts, and is fixedly connected with the output end of the cross slide module.
[0011] The positive and negative screw rods are respectively arranged on the two sides of the cutting mechanism, and are slidably connected with the rack in a rotating structure mode.
[0012] The pressing blocks are respectively connected with the positive screw rod and the negative screw rod in a threaded engagement mode.
[0013] Further, the linear guide rail module is provided with three sliders, the middle slider is connected with the cross slide module in a fixed structure mode, and the sliders on the two sides are connected with the mounting box in a fixed structure mode.
[0014] The mounting box is vertically provided with sliding holes matched with the positive and negative screw rods, and the positive and negative screw rods are provided with rotating discs in a fixed structure mode and pass through the sliding holes on the two sides.
[0015] Further, the sliding hole is provided with a placing hole on one side.
[0016] Further, the mounting box is provided with a pad plate in a fixed structure mode.
[0017] Further, the cutting mechanism is a cutting saw.
[0018] The utility model discloses the beneficial effects are:
[0019] 1. setting the pressing block and the positive and negative screw rod, adjusting the interval of the pressing block through the positive and negative screw rod, making the pressing block avoid the protrusion on the surface of the aluminum magnesium manganese plate, and being pressed in the recess of the aluminum magnesium manganese plate to be fixed, preventing the aluminum magnesium manganese plate from moving in the cutting process, causing the deviation of the cutting direction, and guaranteeing the cutting effect and the precision of cutting.
[0020] 2. through the setting of the third linear guide rail module, the pressing block and the cutting mechanism can move relative to the length direction of the aluminum magnesium manganese plate, thereby cutting the aluminum magnesium manganese plate at different positions, and meeting the diversified size requirement of the aluminum magnesium manganese plate. DRAWINGS:
[0021] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0022] Figure 2 It is the three-dimensional structure schematic diagram of the mounting box of the utility model.
[0023] In the drawings:
[0024] 1, rack, 2, linear guide module, 3, positive and negative screw, 4, briquetting, 5, installation box, 6, sliding hole, 7, placement hole, 8, turntable, 9, pad, 10, cross slide module, 11, cutting saw. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical scheme and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the drawings and embodiments, so that the public can better master the implementation method of the utility model, and the specific implementation scheme of the utility model is as follows:
[0026] A kind of aluminum magnesium manganese roof panel processing and dividing device, including rack 1, rack 1 both sides upper end face are with fixed structure way linear guide module 2 is set, linear guide module 2 output end is connected with cross slide module 10 with fixed structure way, the output end of cross slide module 10 is fixedly connected with cutting mechanism along vertical lifting, the lifting and left and right movement of cutting mechanism relative to aluminum magnesium manganese plate are realized by cross slide module 10, so as to cope with the protruding structure on aluminum magnesium manganese plate of different specifications, guarantee cutting effect;Cutting mechanism both sides are provided with positive and negative screw 3, positive and negative screw 3 are connected with rack 1 with rotating structure, and positive and negative screw 3 can slide up and down relative to rack 1, and the positive screw and the reverse screw of positive and negative screw 3 are respectively engaged with two briquetting 4 with thread engagement;Setting briquetting 4 and positive and negative screw 3, the distance between briquetting 4 is adjusted by positive and negative screw 3, so that briquetting 4 avoids the protrusion on the surface of aluminum magnesium manganese plate and fixes the groove of aluminum magnesium manganese plate, prevents aluminum magnesium manganese plate from moving during cutting, causes deviation of cutting direction, guarantees cutting effect and cutting accuracy.
[0027] Specifically, linear guide module 2 is provided with three sliding blocks, the middle sliding block is connected with cross slide module 10 with fixed structure, and the sliding blocks on both sides are connected with installation box 5 with fixed structure;Installation box 5 is vertically provided with sliding hole 6 matched with positive and negative screw 3, and positive and negative screw 3 can move up and down through sliding hole 6, pull up positive and negative screw 3 to drive briquetting 4 to rise, facilitate the placement of aluminum magnesium manganese plate, and facilitate the fixation of aluminum magnesium manganese plate of different thicknesses;Sliding hole 6 is provided with placement hole 7 on one side, and positive and negative screw 3 can be placed in placement hole 7, leaving a gap between briquetting 4 and pad 9, facilitating the placement of aluminum magnesium manganese plate;Positive and negative screw 3 is provided with turntable 8 on both sides through sliding hole 6 with fixed structure, to provide a force support point, facilitating rotation.
[0028] Further, by the setting of linear guide module 2, positive and negative screw 3, briquetting 4 and cutting mechanism can move relative to the length direction of aluminum magnesium manganese plate, so as to cut aluminum magnesium manganese plate at different positions, meet the size requirement of diversified aluminum magnesium manganese plate.
[0029] Need to explain, the lower part of the installation box 5 is provided with a base plate 9 in a fixed structure; the aluminum magnesium manganese plate is placed on the base plate 9, and there is a gap between the aluminum magnesium manganese plate and the rack 1, preventing the cutting saw 11 from contacting the rack 1 during cutting, causing damage to the surface of the cutting saw 11 and the rack 1.
[0030] Need to explain, the cutting mechanism is the cutting saw 11.
[0031] The working principle and working process of the utility model are as follows:
[0032] Rotating the rotating disc 8, the forward and reverse screw rod 3 is rotated to drive the pressing block 4 in contact with the rack 1 to move to both sides, and after the distance between the pressing block 4 is adjusted to the required distance, the rotating is stopped, then the forward and reverse screw rod 3 is moved upward and drives the pressing block 4 to rise, after that, the forward and reverse screw rod 3 is placed into the placing hole 7, then the aluminum magnesium manganese plate is placed horizontally through the forward and reverse screw rod 3 and the base plate 9, and the two ends are placed on the base plate 9 on the front and rear sides respectively; then the third linear guide rail module 2 is started, the pressing block 4, the forward and reverse screw rod 3, the installation box 5, the cutting mechanism and the cutting mechanism are moved to the specified cutting position together, the forward and reverse screw rod 3 is taken out from the placing hole 7, the pressing block 4 is in contact with the upper surface of the aluminum magnesium manganese plate groove, and the fixing is carried out.
[0033] The cross slide module 10 is started, the cutting mechanism is moved to the edge of the aluminum magnesium manganese plate, then the cutting saw 11 is lowered to contact the aluminum magnesium manganese plate with the output end of the cross slide module 10, the cutting saw 11 is started, and the cutting of the aluminum magnesium manganese plate from left to right is started, and the cutting is completed after the cutting saw 11 moves to the other side edge of the aluminum magnesium manganese plate.
[0034] In the description of the utility model, it should be understood that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "front", "rear", "lower left", "upper right", "outer", "clockwise", "counterclockwise" and the like are based on the directions or positional relationships shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the scope of protection of the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. Although the utility model is described according to a limited number of embodiments, those skilled in the art should understand from the above description that other embodiments can be conceived within the scope of the utility model described herein.
Claims
1. A processing and cutting device for aluminum-magnesium-manganese roofing panels, characterized in that, Include: Rack (1); Linear guide module (2), linear guide module (2) is respectively provided on the upper end face of the rack (1) in a fixed structure; Cross slide module (10), cross slide module (10) is connected with the output end of linear guide module (2); Cutting mechanism along the vertical lifting, cutting mechanism is fixedly connected with the output end of cross slide module (10); Respectively located on both sides of the cutting mechanism positive and negative silk screw rod (3), positive and negative silk screw rod (3) can slide up and down relative to the rack (1), positive and negative silk screw rod (3) is connected with the rack (1) in a rotating structure; Briquetting (4), two briquetting (4) are connected with the positive silk and negative silk of positive and negative silk screw rod (3) in a threaded engagement manner.
2. The apparatus for processing and dividing aluminum-magnesium-manganese roof panels according to claim 1, characterized in that: Linear guide module (2) is provided with three sliders, the middle slider is connected with cross slide module (10) in a fixed structure, and the sliders on both sides are connected with mounting box (5) in a fixed structure; Mounting box (5) is vertically provided with sliding hole (6) matched with positive and negative silk screw rod (3), and rotating disc (8) is arranged on both sides of positive and negative silk screw rod (3) in a fixed structure.
3. The apparatus for processing and dividing aluminum-magnesium-manganese roof panels according to claim 2, characterized in that: The side of sliding hole (6) is provided with a placing hole (7).
4. The apparatus for processing and dividing aluminum-magnesium-manganese roof panels according to claim 3, characterized in that: The lower part of mounting box (5) is provided with a base plate (9) in a fixed structure.
5. The apparatus for processing and dividing aluminum-magnesium-manganese roof panels according to claim 2, characterized in that: Cutting mechanism is cutting saw (11).
Citation Information
Patent Citations
Aluminum profile cutting device
CN221936012U