A type of aluminum single-panel processing shearing machine

By designing the support, gantry block, and slide structure of the aluminum panel processing shearing machine, the shearing length of the aluminum panel can be automatically adjusted, solving the problems of large workload and low efficiency caused by manual adjustment, and improving the efficiency of aluminum panel shearing.

CN224574768UActive Publication Date: 2026-07-31GUANGDONG YUANFA TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG YUANFA TECHNOLOGY CO LTD
Filing Date
2025-09-09
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

During the processing of aluminum panels, the cutting length needs to be adjusted manually, which results in a heavy workload for workers and affects efficiency.

Method used

An aluminum panel processing shearing machine was designed, comprising a support, a gantry block, and a slide. The shearing length of the aluminum panel is automatically adjusted by a telescopic rod between the slide and the support. Combined with a three-axis shearing module, it realizes horizontal, vertical, and lifting movements, and automatically adjusts the shearing length of the aluminum panel.

Benefits of technology

It reduced the workload of staff, improved the efficiency of aluminum panel cutting, and enabled automatic adjustment of the cutting length of aluminum panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model proposes an aluminum single-panel processing shearing machine, including a support, a gantry block, and a slide. The support has feet on its bottom surface and a groove on one side of its top surface. A protruding guard rod is located on one side of the support. The gantry block is located on one side of the guard rod, and a three-axis shearing module is located on one side of the gantry block. The slide is opposite to the support. A support rod is located on the bottom surface of the slide, and an adjusting block is located on one side of the slide. A pulley is located at one end of the support rod. The adjusting block includes a second telescopic rod and a driving device. One end of the second telescopic rod is fixed to one side of the support, and the other end is located at one end of the driving device. After the slide moves forward and backward, the aluminum single-panel is limited by the limiting block to form a limited movement shape. The aluminum single-panel is then sheared by the three-axis shearing machine. The beneficial effects of this utility model are: its structural design is simple and reasonable, and it can automatically adjust the length of the aluminum single-panel to be sheared, thus improving work efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of aluminum single-panel shearing, and specifically relates to an aluminum single-panel processing shearing machine. Background Technology

[0002] Currently, during the processing of aluminum panels, a shearing machine is required to cut the aluminum panels to the required length and size.

[0003] However, before cutting aluminum panels, workers need to adjust the cutting length. Each cut requires adjustment of the required length, resulting in a heavy workload for workers and affecting work efficiency. Utility Model Content

[0004] This utility model proposes an aluminum single-panel processing shearing machine, including a support, a gantry block, and a slide block. The gantry block is positioned between the support and the slide block. The support is fixed to the ground, and the support and the gantry block are also fixed. The bottom of the slide block is equipped with a pulley, which is connected to the support by a telescopic rod. The distance between the slide block and the support is adjustable, which helps to adjust the length of the aluminum single-panel to be cut. This adjustment is achieved by sliding the slide block, reducing the workload of the workers and improving work efficiency. This solves the problems mentioned in the prior art.

[0005] The technical solution of this utility model is implemented as follows: The shearing machine includes:

[0006] The support has feet on its bottom surface and a groove on one side of its top surface.

[0007] The support has a protruding guard rod on one side;

[0008] Preferably, one end of the support leg is provided with a fixing plate;

[0009] Preferably, the groove is symmetrical in shape;

[0010] Preferably, the guard rod has an arc-shaped groove inside;

[0011] The first clamp, the bottom of the first clamp passing through the slide groove;

[0012] The first fixture has a protruding first bearing seat on its bottom surface and a recessed positioning hole on its top surface;

[0013] The first bearing housing has a shaft hole on one side, and the first bearing housing is connected to the drive shaft through the shaft hole;

[0014] Preferably, a first deflector block is provided in the middle of the drive shaft, and a drive device is provided on one side of the first deflector block;

[0015] The second clamp is disposed on one side of the first clamp;

[0016] The second clamp has a fixed base on one side and a pressing block on the other side;

[0017] A drive device is provided on one side of the fixed base;

[0018] One side of the extrusion block is provided with a protruding positioning rod;

[0019] The drive device is provided with a first telescopic rod at one end, and one end of the first telescopic rod is fixed to the other side of the extrusion block.

[0020] Preferably, the extrusion block is L-shaped;

[0021] Preferably, the positioning rod passes through the positioning hole;

[0022] The gantry block is located on one side of the guardrail.

[0023] A three-axis shearing module is provided on one side of the gantry block;

[0024] Preferably, the gaps between the triaxial shearing module and the guard rod are symmetrical;

[0025] The slide block is in a relative configuration to the support.

[0026] The bottom surface of the slide block is provided with a support rod, and the top surface is provided with an opening and a limiting block respectively;

[0027] An adjustment block is provided on one side of the slide block;

[0028] One end of the support rod is equipped with a pulley;

[0029] The adjusting block includes a second telescopic rod and a driving device;

[0030] One end of the second telescopic rod is fixed to one side of the support, and the other end is provided with a second deflector block, with a drive device provided on one side of the second deflector block;

[0031] Preferably, the second telescopic rod passes through the arc-shaped groove provided on the guard rod;

[0032] A support plate, wherein the support plate is disposed within the opening;

[0033] The support plate has a protruding first shaft on one side;

[0034] One side of the support plate is designed to be in contact with the limiting block, and the other side is provided with a protruding second bearing seat;

[0035] The first shaft passes through a hole provided in the through opening;

[0036] The second bearing housing is provided with a second shaft, which passes through the hole provided in the third telescopic rod. One end of the third telescopic rod is located at one end of the drive device.

[0037] Preferably, the support plate is formed into a movable shape by a driving device;

[0038] A reinforcing block, wherein the reinforcing block is disposed on one side of the limiting block;

[0039] Each of the reinforcing blocks is equipped with a fourth telescopic rod, a reinforcing plate, and a driving device;

[0040] One end of the fourth telescopic rod is located on one side of the reinforcing plate, and the other end is located at one end of the driving device;

[0041] Preferably, the reinforcing plate is positioned opposite to the top surface of the slide and the top surface of the support plate.

[0042] After adopting the above technical solution, the beneficial effects of this utility model are as follows: its structural design is simple and reasonable, and it has the function of automatically adjusting the length of aluminum single panel to be cut, thereby improving work efficiency; the shearing machine includes a support, a gantry block and a slide block; the top surface of the support is respectively provided with a first clamp and a second clamp, and the support is provided with a structure that can stabilize the aluminum single panel; the gantry block is located between the support and the slide block, and a three-axis shearing module is provided on one side of the gantry block. The three-axis shearing module can be existing technology, and the three-axis shearing module can perform horizontal, vertical and lifting movements, which helps to cut the stabilized aluminum single panel; an adjusting block is provided on one side of the slide block, and the adjusting block is connected to the support by a second telescopic rod. The slide block is driven by the second telescopic rod to help the slide block form a back-and-forth movement; a limiting block is provided on one side of the slide block, and the limiting block is attached to one end of the aluminum single panel. After the slide block moves back and forth, the aluminum single panel forms a limited movement shape through the limiting block. The aluminum single panel is then cut by the three-axis shearing machine, realizing the effect of automatically adjusting the cutting length of the aluminum single panel. Attached Figure Description

[0043] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0044] Figure 1 This is a schematic diagram of the overall structure of the shearing machine of this utility model.

[0045] Figure 2 This is an exploded view of the overall structure of the shearing machine of this utility model.

[0046] Figure 3This is a schematic diagram of the overall structure of the support of this utility model.

[0047] Figure 4 This is a schematic diagram of the overall structure of the slide block of this utility model.

[0048] Figure 5 This is a schematic diagram of the overall structure of the support plate of this utility model. Detailed Implementation

[0049] 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.

[0050] Example 1:

[0051] like Figures 1-2 As shown,

[0052] This utility model proposes an aluminum single-panel processing shearing machine, including a support 2, a gantry block 6, and a slide block 7. The top surface of the support 2 is respectively provided with a first clamp 3 and a second clamp 5; however, the support 2 has a structure to stabilize the aluminum single-panel. The gantry block 6 is located between the support 2 and the slide block 7. A three-axis shearing module 60 is provided on one side of the gantry block 6. The three-axis shearing module 60 can be existing technology, but it can perform lateral, longitudinal, and lifting movements, aiding in shearing the stabilized aluminum single-panel. An adjusting block is provided on one side of the slide block 7. The adjusting block is connected to the support 2 via a second telescopic rod 73; however, the slide block 7 is connected to the support 2 via the second telescopic rod 73. The drive facilitates the forward and backward movement of the slide block 7. A limiting block 72 is provided on one side of the slide block 7, which is attached to one end of the aluminum panel. The support 2 is fixed to the ground and the gantry block 6. A pulley 700 is provided at the bottom of the slide block 7, which is connected to the support 2 via a telescopic rod. After the slide block 7 moves forward and backward, the aluminum panel is limited by the limiting block 72. The aluminum panel is then cut by the three-axis shearing machine. The length of the aluminum panel to be cut is adjustable through the sliding of the slide block 7, reducing the workload of workers and improving work efficiency.

[0053] like Figure 4 As shown, the bottom surface of the slide block 7 is provided with a support rod 70, and one end of the support rod 70 is provided with a pulley 700, which helps the slide block 7 to slide.

[0054] The slide block 7 is provided with an adjustment block on one side. The adjustment block includes a second telescopic rod 73 and a drive device 4 (motor). One end of the second telescopic rod 73 is fixed to one side of the support 2, and the other end is provided with a second deflector block 730. The drive device 4 is provided on one side of the second deflector block 730. The slide block 7 is driven by the extension and retraction of the second telescopic rod 73 and by the sliding of the pulley 700, which helps the slide block 7 to form a back-and-forth sliding motion.

[0055] The slide block 7 slides forward, but the length of the shearing machine increases, achieving the effect of automatically adjusting the shearing length of the aluminum single panel;

[0056] The slide block 7 slides backward, but the length of the shearing machine becomes shorter, achieving the effect of automatically adjusting the shearing length of the aluminum single panel.

[0057] like Figure 3 As shown, the support 2 has a support leg 20 on its bottom surface, and a fixing plate 23 is provided at one end of the support leg 20. The fixing plate 23 is connected to the ground with bolts, which helps the support 2 to form a fixed and positioned installation form.

[0058] The support 2 has a symmetrical groove 21 on one side of its top surface. The first clamp 3 is fitted with a first bearing seat 30 at the bottom, which is inserted into the groove 21. The first clamp 3 is also symmetrical. The first bearing seat 30 has a shaft hole on one side, which is connected to the drive shaft 300. The drive shaft 300 has a first deflector block 301 in the middle (existing technology, which changes the direction of the drive equipment spindle to help the drive shaft drive the two first clamps). The drive equipment 4 is located on one side of the first deflector block 301. The first clamp 3 is driven by the drive shaft 300, which helps the first clamp 3 to form an automatically centered shape, which can clamp the aluminum single panel being processed, and helps the aluminum single panel to form a centered clamping structure.

[0059] The second clamp 5 has a fixed seat 50 on one side and an extrusion block 51 on the other side; a driving device 4 is provided on one side of the fixed seat 50, and a first telescopic rod 52 is provided at one end of the driving device 4, and one end of the first telescopic rod 52 is fixed on the other side of the extrusion block 51. However, the extrusion block 51 forms a lifting and lowering motion, which helps to further clamp the shape of the aluminum single panel.

[0060] The extrusion block 51 is L-shaped, but one side of the extrusion block 51 has a protruding shape, which helps the extrusion block 51 to extrude one side of the aluminum panel, thereby improving the stability of the aluminum panel shearing.

[0061] The support 2 has a protruding guard rod 22 on one side, and its gantry block 6 is located on one side of the guard rod 22 and is fixed (welded or bolted). The support 2 has a protruding guard rod 22 on one side, but the gantry block 6 and the support 2 form a fixed position, which helps the slide block 7 to slide and achieve the effect of automatically adjusting the cutting length of the aluminum single panel.

[0062] A three-axis shearing module 60 is provided on one side of the gantry block 6. The gap between the three-axis shearing module 60 and the guard rod 22 is symmetrical, so as to realize the shape of aluminum single panel shearing.

[0063] Example 2:

[0064] like Figures 1-2 As shown, the guard rod 22 has an arc-shaped groove inside, and the second telescopic rod 73 passes through the arc-shaped groove provided in the guard rod 22. However, the guard rod 22 has the problem of preventing the second telescopic rod 73 from being hit.

[0065] Example 3:

[0066] The top surface of the first clamp 3 is provided with a recessed positioning hole 31, and one side of the extrusion block 51 is provided with a protruding positioning rod 510. The positioning rod 510 passes through the positioning hole 31, which helps to improve the stability of the lifting and lowering movement of the extrusion block 51 and has the stability to prevent the extrusion block 51 from deviating, which would cause the extrusion block 51 to fail to complete the extrusion of one side of the aluminum single plate.

[0067] Example 4:

[0068] The top surface of the slide block 7 is provided with an opening 71 and a limiting block 72 respectively;

[0069] A first shaft 80 protrudes from one side of the support plate 8. The first shaft 80 passes through a hole provided in the through opening 71, which helps the support plate 8 to form a movable shape, such as... Figure 5 As shown, the other side of the support plate 8 is provided with a protruding second bearing seat 81. The second bearing seat 81 is provided with a second shaft 810. The second shaft 810 passes through the hole provided in the third telescopic rod 811. One end of the third telescopic rod 811 is provided at one end of the drive device 4. The third telescopic rod 811 and the drive device 4 are placed at an angle. However, the support plate 8 achieves a movable form through the telescopic movement of the third telescopic rod 811.

[0070] The support plate 8 is movable, with one side of it able to be attached to the limiting block 72. However, the support plate 8 can support the aluminum panel, and it can also help the cut aluminum panel slide into the bottom of the slide block 7 in an inclined shape through the support plate 8.

[0071] Preferably, the bottom side of the slide 7 is provided with a transportable device (not shown in the figure) to facilitate the transport device to accept the cut aluminum single sheet for further processing.

[0072] Example 5:

[0073] A reinforcing block 9 is provided on one side of the limiting block 72. The reinforcing block 9 is provided with a fourth telescopic rod 90, a reinforcing plate 91 and a driving device 4. One end of the fourth telescopic rod 90 is located on one side of the reinforcing plate 91 and the other end is located on one end of the driving device 4. The reinforcing plate 91 is in a position opposite to the top surface of the slide block 7 and the top surface of the support plate 8. However, the reinforcing plate 91 can be in a position to be attached to one side of the aluminum single panel, which helps to improve the stability of the aluminum single panel during shearing.

[0074] Briefly describe the working principle:

[0075] The support 2 has a first clamp 3 on its top surface for centered clamping, and a second clamp 5 on one side of the first clamp 3. The support 2 has a structure for clamping aluminum panels, and the support 2 is connected to the ground by a fixing plate 23 on the support leg 20. The fixing plate 23 is bolted to the ground, which helps the support 2 to form a fixed and positioned installation. A protruding guard rod 22 is provided on one side of the support 2, and one side of the guard rod 22 is connected to the gantry block 6 and is fixed, which helps the gantry block 6 to form a fixed and positioned installation. A three-axis shearing module 60 is provided on one side of the gantry block 6, which can move laterally, longitudinally, and vertically, helping to shear the already secured aluminum panels. Support 2 and slide 7 are in a relative configuration, and gantry block 6 is located between support 2 and slide 7. Slide 7 has an adjustment block on one side, which is connected to support 2 by a second telescopic rod 73. Slide 7 has a pulley 700 at one end of a support rod 70. Slide 7 can move back and forth by the extension and retraction of the second telescopic rod 73. Slide 7 has a limiting block 72 on its top surface. The aluminum panel is limited by the limiting block 72. When the aluminum panel is cut by a three-axis shearing machine, the length of the aluminum panel to be cut can be adjusted by the sliding of slide 7, which reduces the workload of the workers and improves work efficiency.

[0076] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An aluminum veneer processing shearing machine characterized by, include: The support has feet on its bottom surface and a groove on one side of its top surface. The support has a protruding guard rod on one side; A gantry block is located on one side of the guardrail, and a three-axis shearing module is provided on one side of the gantry block; The slide block is in a relative configuration to the support. The bottom surface of the slide block is provided with a support rod, and an adjustment block is provided on one side of the slide block; One end of the support rod is equipped with a pulley; The adjusting block includes a second telescopic rod and a driving device. One end of the second telescopic rod is fixed to one side of the support, and the other end is located at one end of the driving device.

2. The aluminum veneer processing shearing machine as claimed in claim 1, wherein: The support has a first clamp on its top surface, a first bearing seat on its bottom surface, a shaft hole on one side of the first bearing seat, the first bearing seat being connected to the drive shaft via the shaft hole, a first deflector block in the middle of the drive shaft, and a drive device on one side of the first deflector block.

3. The aluminum single-panel processing and shearing machine as described in claim 2, characterized in that: The first clamp is provided with a second clamp on one side, the second clamp has a fixed seat on one side and a pressing block on the other side, the fixed seat has a driving device on one side, the pressing block has a protruding positioning rod on one side, the driving device has a first telescopic rod at one end, and one end of the first telescopic rod is fixed to the other side of the pressing block.

4. The aluminum veneer processing shearing machine as claimed in claim 3, wherein: The first clamp has a recessed positioning hole on its top surface, and the positioning rod passes through the positioning hole.

5. The aluminum veneer processing shearing machine as claimed in claim 4, wherein: The second telescopic rod is inserted into the arc-shaped groove provided on the guard rod.

6. The aluminum veneer processing shearing machine as claimed in claim 5, wherein: The top surface of the slide block is provided with an opening and a limiting block.

7. The aluminum veneer processing shearing machine as claimed in claim 6, wherein: The passage has a hole on one side, and a first shaft is installed inside the hole. The first shaft is located on one side of the support plate.

8. The aluminum veneer processing shearing machine as claimed in claim 7, wherein: One side of the support plate is in a form that can be attached to the limiting block, and the other side is provided with a protruding second bearing seat. The second bearing seat is provided with a second shaft, which passes through the hole provided in the third telescopic rod. One end of the third telescopic rod is provided at one end of the driving device.

9. The aluminum veneer processing shearing machine as claimed in claim 8, wherein: A reinforcing block is provided on one side of the limiting block. The reinforcing block is provided with a fourth telescopic rod, a reinforcing plate and a driving device. One end of the fourth telescopic rod is located on one side of the reinforcing plate and the other end is located on one end of the driving device.

10. The aluminum veneer processing shearing machine as claimed in claim 9, wherein: The reinforcing plate is positioned opposite to the top surface of the slide and the top surface of the support plate.