Accurate cutting device for aluminum veneer

By setting a cutting groove formed by a set of limiting plates on the aluminum single-panel cutting device, precise cutting of aluminum single-panels is achieved, solving the problems of low cutting accuracy and efficiency in the existing technology, and improving the cutting quality and production efficiency of aluminum single-panels.

CN223981272UActive Publication Date: 2026-03-10LECHANG CHANGXIONG IND INVESTMENT DEVELOPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing aluminum panel cutting technology relies on manual scribing and cutting, resulting in insufficient cutting accuracy and low efficiency, which cannot meet quality requirements.

Method used

Design a precision cutting device for aluminum single panels, including a cutting table, a cutting station and a cutting component. By setting a cutting groove formed by a limiting plate group on the cutting table, the aluminum single panel is matched and placed in the cutting groove, and the cutting component cuts at a precise position, replacing traditional manual cutting.

Benefits of technology

It significantly improves the cutting accuracy and efficiency of aluminum panels, reduces errors, and has the advantages of simple structure, easy operation, strong adaptability and low cost. It is suitable for the production of aluminum panels of different sizes and specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an aluminum veneer precise cutting device which comprises a cutting table, a cutting station arranged on the cutting table and a cutting assembly arranged on the cutting table and located above the cutting station, and the cutting station comprises a limiting plate set arranged on the cutting table and a cutting groove defined by the limiting plate set. After the aluminum veneer is arranged in the cutting groove in a matched mode and limited to the target cutting size, the cutting assembly can cut off the redundant part of the aluminum veneer so as to obtain the aluminum veneer of the target size, a traditional pure manual cutting mode can be completely replaced, the aluminum veneer can be conveniently cut by a cutting tool at the accurate position, and the cutting efficiency of the aluminum veneer is improved. Therefore, errors in the cutting process are reduced, the cutting efficiency and accuracy of the aluminum veneer are remarkably improved, and the aluminum veneer cutting device has the advantages of being simple in structure, easy and convenient to operate, high in adaptability, low in implementation cost, capable of meeting the production requirements of aluminum veneers of different sizes and specifications and convenient to popularize and implement.
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Description

Technical Field

[0001] This application belongs to the field of aluminum processing technology, specifically relating to a precision cutting device for aluminum single panels. Background Technology

[0002] In the existing technology, aluminum single panel refers to building decoration material made of aluminum alloy as the main material and processed through forming, surface treatment and other processes. It has the characteristics of being lightweight, high-strength, corrosion-resistant and easy to process, and is widely used in building curtain walls, interior decoration, electronic equipment housings and other fields.

[0003] In existing technologies, aluminum panel cutting technology mainly uses manual cutting. By marking the target cutting size on the aluminum panel, the operator cuts the aluminum panel with a handheld cutting machine to obtain the aluminum panel of the target size.

[0004] In the existing technology, the following drawbacks are common in the manual cutting process of aluminum single panels: firstly, the cutting accuracy is insufficient and easily affected by the operator's experience; secondly, the cutting efficiency is low. Traditional cutting methods require marking lines on the aluminum single panel before cutting, which requires frequent operation and adjustment, resulting in low cutting efficiency. Therefore, in order to improve the cutting efficiency and cutting accuracy of aluminum single panels, there is an urgent need for a precision cutting device for aluminum single panels. Utility Model Content

[0005] This application aims to address the technical problem that in the existing technology, traditional aluminum panel cutting technology typically involves operators marking lines on the aluminum panel and then using a handheld cutting machine to cut along those lines. In actual operation, the cutting accuracy and efficiency are low, which cannot meet the quality requirements of aluminum panels. Therefore, this application proposes a precision aluminum panel cutting device.

[0006] This application adopts the following solution: a precision cutting device for aluminum single panels, including a cutting table, a cutting station disposed on the cutting table, and a cutting component disposed on the cutting table and located at a corresponding position above the cutting station. The cutting station includes a limiting plate group disposed on the cutting table and a cutting groove surrounded by the limiting plate group. The cutting groove is used to limit the size of the aluminum single panel to the target cutting size. When the aluminum single panel is matched and disposed in the cutting groove, the cutting component is located near the opening of the cutting groove.

[0007] In some feasible embodiments, the limiting plate group includes a plurality of vertical limiting plates spaced apart along the length direction of the cutting table, and a horizontal limiting plate disposed between two of the vertical limiting plates. The vertical limiting plates are perpendicular to the horizontal limiting plates, and the vertical limiting plates and the horizontal limiting plates together form the cutting groove.

[0008] In some feasible embodiments, the limiting plate assembly further includes a first connecting component disposed between the vertical limiting plate and the cutting table, wherein the vertical limiting plate is detachably disposed on the cutting table via the first connecting component.

[0009] In some feasible embodiments, the first connecting component includes a plurality of first connecting slots spaced apart along the length direction of the cutting table, and a first connecting block disposed on the side of the vertical limiting plate near the first connecting slot. The first connecting block can be matched and extended into the first connecting slot so that the vertical limiting plate can be detachably disposed on the cutting table.

[0010] In some feasible embodiments, the limiting plate assembly further includes a second connecting component disposed between the vertical limiting plate and the horizontal limiting plate, wherein the horizontal limiting plate is detachably disposed on the vertical limiting plate via the second connecting component.

[0011] In some feasible embodiments, the second connecting component includes a second connecting groove disposed on the vertical limiting plate and a second connecting block disposed on both ends of the horizontal limiting plate. The second connecting block can be matched and extended into the second connecting groove so that the horizontal limiting plate can be detachably disposed on the vertical limiting plate.

[0012] In some feasible embodiments, the second connecting groove is provided at intervals along the length direction of the vertical limiting plate.

[0013] In some feasible embodiments, the cutting assembly includes a bracket disposed on the cutting table near the cutting groove opening, a cutter disposed on the bracket, a sliding assembly disposed between the cutter and the bracket, and a driving member disposed on the cutter, the driving member being used to drive the cutter to move towards the cutting table to cut the aluminum panel.

[0014] In some feasible embodiments, the sliding assembly includes a slide rail disposed along the height direction of the bracket and sliders disposed at both ends of the cutter, and the driving member is used to drive the cutter to slide along the slide rail.

[0015] Compared with the prior art, this application has the following beneficial effects:

[0016] This application provides a precision cutting device for aluminum single-panel panels, comprising a cutting table, a cutting station disposed on the cutting table, and a cutting assembly disposed on the cutting table and above the cutting station. The cutting station includes a limiting plate assembly disposed on the cutting table and a cutting groove formed by the limiting plate assembly. By setting the cutting groove on the cutting table, the aluminum single-panel panel is matched and placed in the cutting groove and limited to the target cutting size. The cutting assembly can remove the excess part of the aluminum single-panel panel to obtain the aluminum single-panel panel of the target size. This device can completely replace the traditional purely manual cutting method, which helps the cutting tool to cut the aluminum single-panel panel at a precise position, thereby reducing errors in the cutting process and significantly improving the cutting efficiency and accuracy of aluminum single-panel panels. It has the advantages of simple structure, easy operation, strong adaptability, low implementation cost, and can meet the production needs of aluminum single-panel panels of different sizes and specifications, making it easy to promote and implement. Attached Figure Description

[0017] Figure 1 This is a structural schematic diagram of a precision cutting device for aluminum single-panel according to this application;

[0018] Figure 2 This is a structural schematic diagram of a precision cutting device for aluminum single-panel according to this application from another perspective;

[0019] Figure 3 This is a top view of a precision cutting device for aluminum single-panel according to this application;

[0020] Figure 4 This application Figure 3 Sectional view at point AA;

[0021] Figure 5 This is a structural schematic diagram of the aluminum single-panel precision cutting device used in this application. Detailed Implementation

[0022] Combination Figure 1-5 The content shown further illustrates the technical solution provided in this application. This application provides a precision cutting device for aluminum single panels, including a cutting table 1, a cutting station 2 disposed on the cutting table 1, and a cutting component 3 disposed on the cutting table 1 and located at a corresponding position above the cutting station 2. The cutting station 2 includes a limiting plate group 4 disposed on the cutting table 1 and a cutting groove 5 formed by the limiting plate group 4. The cutting groove 5 is used to limit the size of the aluminum single panel to the target cutting size. When the aluminum single panel is matched and disposed in the cutting groove 5, the cutting component 3 is located near the opening of the cutting groove 5.

[0023] This application provides a precision cutting device for aluminum single-panel panels, comprising a cutting table, a cutting station disposed on the cutting table, and a cutting assembly disposed on the cutting table and above the cutting station. The cutting station includes a limiting plate assembly disposed on the cutting table and a cutting groove formed by the limiting plate assembly. By setting the cutting groove on the cutting table, the aluminum single-panel panel is matched and placed in the cutting groove and limited to the target cutting size. The cutting assembly can remove the excess part of the aluminum single-panel panel to obtain the aluminum single-panel panel of the target size. This device can completely replace the traditional purely manual cutting method, which helps the cutting tool to cut the aluminum single-panel panel at a precise position, thereby reducing errors in the cutting process and significantly improving the cutting efficiency and accuracy of aluminum single-panel panels. It has the advantages of simple structure, easy operation, strong adaptability, low implementation cost, and can meet the production needs of aluminum single-panel panels of different sizes and specifications, making it easy to promote and implement.

[0024] In this embodiment, the limiting plate group 4 includes a plurality of vertical limiting plates 40 spaced apart along the length direction of the cutting table 1, and a horizontal limiting plate 41 disposed between two of the vertical limiting plates 40. The vertical limiting plates 40 are perpendicular to the horizontal limiting plates 41, and the vertical limiting plates 40 and the horizontal limiting plates 41 together form the cutting groove 5.

[0025] In actual implementation, the vertical and horizontal limiting plates are made of stainless steel with a DLC coating. By designing the materials of the vertical and horizontal limiting plates, the surface performance of the plates can be effectively improved. When the aluminum panel is placed in the cutting groove, the surface of the vertical and horizontal limiting plates can be effectively prevented from being deformed by the impact of the aluminum panel, thus affecting the cutting accuracy of the aluminum panel.

[0026] In this embodiment, the limiting plate group 4 further includes a first connecting component 42 disposed between the vertical limiting plate 40 and the cutting table 1, and the vertical limiting plate 40 is detachably disposed on the cutting table 1 through the first connecting component 42.

[0027] In this embodiment, the first connecting component 42 includes a plurality of first connecting grooves 420 spaced apart along the length of the cutting table 1, and a first connecting block 421 disposed on the side of the vertical limiting plate 40 near the first connecting grooves 420. The first connecting block 421 can be matched and extended into the first connecting grooves 420 so that the vertical limiting plate 40 can be detachably disposed on the cutting table 1.

[0028] In actual implementation, the first connecting component also includes a threaded hole that passes through both the cutting table and the first connecting groove, and a fastening bolt that is matched and disposed in the threaded hole. When the first connecting block is matched and disposed in the first connecting groove, the fastening bolt can be matched and disposed in the threaded hole so that the vertical limiting plate 40 can be detachably disposed on the cutting table 1.

[0029] In actual implementation, multiple first connecting slots are set at intervals along the length of the cutting table to adjust the spacing between the two vertical limiting plates, so as to meet the cutting requirements of aluminum single panels with different length requirements.

[0030] In this embodiment, the limiting plate group 4 further includes a second connecting component 43 disposed between the vertical limiting plate 40 and the horizontal limiting plate 41. The horizontal limiting plate 41 is detachably disposed on the vertical limiting plate 40 through the second connecting component 43.

[0031] In this embodiment, the second connecting component 43 includes a second connecting groove 430 disposed on the vertical limiting plate 40, and a second connecting block 431 disposed on both ends of the horizontal limiting plate 41. The second connecting block 431 can be matched and extended into the second connecting groove 430 so that the horizontal limiting plate 41 can be detachably disposed on the vertical limiting plate 40.

[0032] In this embodiment, the second connecting groove 430 is provided with multiple grooves spaced apart along the length of the vertical limiting plate 40.

[0033] In actual implementation, multiple second connecting grooves are set at intervals along the length of the vertical limiting plate to adjust the depth of the aluminum single panel matching the cutting groove, so as to meet the cutting requirements of aluminum single panels with different width requirements.

[0034] In this embodiment, the cutting assembly 3 includes a bracket 30 disposed on the cutting table 1 near the opening of the cutting groove 5, a cutter 31 disposed on the bracket 30, a sliding assembly 32 disposed between the cutter 31 and the bracket 30, and a driving member disposed on the cutter 31. The driving member is used to drive the cutter 31 to move towards the cutting table 1 to cut the aluminum single panel.

[0035] In this embodiment, the sliding component 32 includes a slide rail 320 arranged along the height direction of the bracket 30, and sliders 321 provided on both ends of the cutter 31. The driving member is used to drive the cutter 31 to slide along the slide rail 320.

[0036] In actual implementation, the sliding component 32 also includes a reinforcing rib disposed between the bracket and the cutting table, and the reinforcing rib and the bracket are provided with an included angle A, the degree of which is 30°.

[0037] In actual implementation, the driving component is a motor or pneumatic rod. When the aluminum panel is matched and placed in the cutting groove, the user can start the driving component by remote control, thereby driving the cutter to move along the slide rail towards the cutting table, and thus cut the aluminum panel.

[0038] In actual implementation, to prevent aluminum chips from sticking to the cutter, an air blowing component is also provided on the cutting table to blow away the aluminum chips.

[0039] This application provides a precision cutting device for aluminum single-panel panels, comprising a cutting table, a cutting station disposed on the cutting table, and a cutting assembly disposed on the cutting table and above the cutting station. The cutting station includes a limiting plate assembly disposed on the cutting table and a cutting groove formed by the limiting plate assembly. By setting the cutting groove on the cutting table, the aluminum single-panel panel is matched and placed in the cutting groove and limited to the target cutting size. The cutting assembly can remove the excess part of the aluminum single-panel panel to obtain the aluminum single-panel panel of the target size. This device can completely replace the traditional purely manual cutting method, which helps the cutting tool to cut the aluminum single-panel panel at a precise position, thereby reducing errors in the cutting process and significantly improving the cutting efficiency and accuracy of aluminum single-panel panels. It has the advantages of simple structure, easy operation, strong adaptability, low implementation cost, and can meet the production needs of aluminum single-panel panels of different sizes and specifications, making it easy to promote and implement.

[0040] The above are merely embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An aluminum veneer precision cutting device, characterized in that, The cutting device comprises a cutting table (1), a cutting station (2) arranged on the cutting table (1), and a cutting assembly (3) arranged on the cutting table (1) and located at a corresponding position above the cutting station (2). The cutting station (2) comprises a limiting plate group (4) arranged on the cutting table (1), and a cutting groove (5) surrounded by the limiting plate group (4), which is used to limit the size of an aluminum veneer to a target cutting size. When the aluminum veneer is matched in the cutting groove (5), the cutting assembly (3) is located close to the slot opening of the cutting groove (5).

2. The aluminum veneer precise cutting device according to claim 1, wherein, The limiting plate group (4) comprises a plurality of vertical limiting plates (40) arranged at intervals along the length direction of the cutting table (1), and a horizontal limiting plate (41) arranged between two vertical limiting plates (40). The vertical limiting plate (40) is perpendicular to the horizontal limiting plate (41), and the vertical limiting plate (40) and the horizontal limiting plate (41) together surround the cutting groove (5).

3. The aluminum veneer precise cutting device according to claim 2, wherein, The limiting plate group (4) further comprises a first connecting assembly (42) arranged between the vertical limiting plate (40) and the cutting table (1). The vertical limiting plate (40) is detachably arranged on the cutting table (1) through the first connecting assembly (42).

4. The aluminum veneer precise cutting device according to claim 3, wherein, The first connecting assembly (42) comprises a plurality of first connecting grooves (420) arranged at intervals along the length direction of the cutting table (1), and a first connecting block (421) arranged on one side of the vertical limiting plate (40) close to the first connecting groove (420). The first connecting block (421) can be matched into the first connecting groove (420) so that the vertical limiting plate (40) can be detachably arranged on the cutting table (1).

5. The aluminum veneer precise cutting device according to claim 2, wherein, The limiting plate group (4) further comprises a second connecting assembly (43) arranged between the vertical limiting plate (40) and the horizontal limiting plate (41). The horizontal limiting plate (41) is detachably arranged on the vertical limiting plate (40) through the second connecting assembly (43).

6. The aluminum veneer precise cutting device according to claim 5, wherein, The second connecting assembly (43) comprises a second connecting groove (430) arranged on the vertical limiting plate (40), and a second connecting block (431) arranged on both ends of the horizontal limiting plate (41). The second connecting block (431) can be matched into the second connecting groove (430) so that the horizontal limiting plate (41) can be detachably arranged on the vertical limiting plate (40).

7. The aluminum veneer precise cutting device according to claim 6, wherein, The second connecting groove (430) is arranged at intervals along the length direction of the vertical limiting plate (40).

8. The aluminum veneer precise cutting device according to claim 1, wherein, The cutting assembly (3) comprises a support (30) arranged on one side of the cutting table (1) close to the slot opening of the cutting groove (5), a cutter (31) arranged on the support (30), a sliding assembly (32) arranged between the cutter (31) and the support (30), and a driving member arranged on the cutter (31). The driving member is used to drive the cutter (31) to move towards the cutting table (1) to cut the aluminum veneer.

9. The aluminum veneer precise cutting device according to claim 8, wherein, The sliding assembly (32) comprises a sliding rail (320) arranged along the height direction of the support (30), and a sliding block (321) arranged on both ends of the cutter (31), and the driving member is used for driving the cutter (31) to slide along the sliding rail (320).