Positioning tool for deep processing of aluminum profile

By adopting rotating components and gear plate meshing structures in the deep processing and positioning tooling of aluminum profiles, the positioning and flipping of aluminum is achieved, solving the problem of difficulty in flipping in deep processing of aluminum, and improving processing efficiency and convenience.

CN223130044UActive Publication Date: 2025-07-22JIANGSU XINHUA METAL PROD CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422022602.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-07-22
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

During the deep processing of existing aluminum profiles, there are problems such as the inability to flip the aluminum material, resulting in cumbersome processing steps and low efficiency.

Method used

A positioning tool for deep processing of aluminum profiles is designed, using rotating components and gear plate meshing structures, positioning and clamping aluminum through arcuate base and clamping plate, and flipping of aluminum is achieved by using motor-driven gear plate meshing to reduce the processing speed to ensure the stability and efficiency of flipping.

Benefits of technology

It realizes flexible flip and efficient processing of aluminum, improves processing efficiency and convenience, and solves the problem of difficulty in flipping in deep processing of aluminum.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223130044U_ABST
    Figure CN223130044U_ABST
Patent Text Reader

Abstract

The utility model discloses an aluminum profile deep processing positioning tool which comprises a processing platform and a storage platform, the storage platform is fixedly installed on one side of the processing platform, rotating assemblies are distributed at the two ends of the upper portion of the processing platform, each rotating assembly comprises a bearing base fixedly installed on the processing platform, and a rotating shaft is fixedly installed in each bearing base. Supporting plates are fixedly installed on the opposite end faces between the rotating shafts, arc-shaped bases are arranged on the lower portions of the end faces, away from the rotating shafts, of the supporting plates, a small fluted disc is driven by a motor, and a large fluted disc is installed on the small fluted disc in a meshed mode; the aluminum material overturning speed reduction is guaranteed, aluminum material overturning is achieved, the machining efficiency is improved, and machining is convenient.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of deep processing of aluminum profiles, and particularly relates to a positioning tooling for deep processing of aluminum profiles. Background Art

[0002] When aluminum materials are produced, they are usually first processed into castings, forgings, foils, plates, strips, tubes, rods, or profiles, and then made through processes such as cold bending, sawing, drilling, assembling, and coloring. In the deep processing steps of sawing and drilling aluminum materials on a platform, since pressure needs to be applied to the aluminum materials during sawing and drilling, it is necessary to position the aluminum materials. And when processing aluminum materials, it is necessary to feed or reverse the aluminum materials according to the processing needs to facilitate and efficiently deep process the aluminum materials;

[0003] Publication (Announcement) No.: CN209532187U discloses a drilling and milling machine for deep processing of aluminum profiles, which includes a base, a column, a first lead screw, a first slider, a moving plate, a second lead screw, a second slider, a workbench, a hydraulic rod, a sliding table, a housing, a rotating shaft, a drill rod, a fixed shaft, a fixing plate, a connecting plate, a sliding plate, a clamping block, a supporting block, a bolt, a fixed pipe, a sleeve, an extension block, and a spring. The movement of the sliding plate facilitates clamping of the drill rod, and the cooperation of the clamping block and the supporting block is beneficial to limiting the drill rod, facilitating the installation of the drill rod. The rotation of the bolt facilitates the replacement of the drill rod, improving the convenience of operation.

[0004] In the prior art: there are only protections for debris during processing and settings for positioning and installation, but there is no way to achieve flipping, resulting in cumbersome deep processing steps for aluminum materials and inability to achieve efficient and rapid deep processing of aluminum profiles, such as drilling and opening of shapes, etc.

[0005] Therefore, it is necessary to provide a positioning tooling for deep processing of aluminum profiles. Summary of the Utility Model

[0006] Aiming at the problems existing in the above-mentioned prior art, the utility model provides a positioning tooling for deep processing of aluminum profiles, aiming to solve the above-mentioned technical problems.

[0007] To achieve the above object, the utility model is realized through the following technical solutions: A positioning tooling for deep processing of aluminum profiles includes a processing platform and a storage platform. The storage platform is fixedly installed on one side of the processing platform. Rotating components are distributed at both ends of the upper part of the processing platform. The rotating component includes a bearing base fixedly installed on the processing platform. A rotating shaft is fixedly installed inside the bearing base. Support plates are fixedly installed on the opposite end faces between the rotating shafts. The lower part of the end face of the support plate away from the rotating shaft is set as an arc-shaped base. Rotating shafts are distributed at both side ends of the arc-shaped base. Both sides of the arc-shaped base are connected to clamping plates through the rotating shafts. The clamping plates are fixedly installed between them. A driving shaft is fixedly installed on the rotating shaft located on one side and away from the end face of the support plate. A large gear disc is installed on the driving shaft. The bottom of the large gear disc penetrates through the processing platform and is meshed with a small gear disc. The small gear disc is driven by a motor.

[0008] Preferably, a through opening is provided on one side of the processing platform for the large gear disc to penetrate through and be meshed with the small gear disc for installation.

[0009] Preferably, the storage platform includes a support frame and a storage base. One side of the support frame is fixedly installed on the processing platform. Storage bases are evenly distributed on both sides of the upper part of the support frame, and the storage bases are distributed in groups of two.

[0010] Preferably, a fixing plate is installed on the processing platform at the bottom of the through opening, and the motor is fixedly installed on the fixing plate.

[0011] In summary, the utility model provides a positioning tooling for deep processing of aluminum profiles, which realizes placing the aluminum profiles on the arc-shaped bases on both sides. The arc-shaped structure of the arc-shaped base realizes the positioning of the aluminum profiles. The clamping plates rotatably installed on both sides of the arc-shaped base are used to clamp and fix the aluminum profiles. And through the meshing installation of the large gear disc and the small gear disc, the positioning installation of the aluminum profiles is realized. After partial processing is completed, when the aluminum profiles need to be flipped and adjusted, the small gear disc is driven by the motor, and the small gear disc is meshed with the large gear disc. Through the setting of the large gear disc, the speed of the motor is reduced to ensure that the aluminum profiles are flipped at a reduced speed, realizing the flipping of the aluminum profiles, improving the processing efficiency and convenience of processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is the overall structural schematic diagram of the utility model;

[0013] Figure 2 is the structural schematic diagram of the bearing base, rotating shaft, and support plate in the rotating component of the utility model;

[0014] Figure 3 is the structural schematic diagram of the rotating component of the utility model;

[0015] In the figure: processing platform 1, storage platform 2, rotating assembly 3, bearing base 4, rotating shaft 5, support plate 6, arc-shaped base 7, rotating shaft 11, clamping plate 12, driving shaft 13, large gear disk 14, small gear disk 15, motor 16, through port 21, support frame 22, storage base 23, fixing plate 24. Detailed implementation mode

[0016] The following further describes the present utility model in conjunction with the attached drawings.

[0017] As Figures 1 to 3 shown:

[0018] The present utility model is a positioning tooling for deep processing of aluminum profiles, including a processing platform 1 and a storage platform 2. The storage platform 2 is fixedly installed on one side of the processing platform 1. Rotating assemblies 3 are distributed at both ends of the upper part of the processing platform 1. The rotating assembly 3 includes a bearing base 4 fixedly installed on the processing platform 1. A rotating shaft 5 is fixedly installed inside the bearing base 4. Support plates 6 are fixedly installed on the opposite end faces between the rotating shafts 5. The lower part of the end face of the support plate 6 away from the rotating shaft 5 is provided as an arc-shaped base 7. Rotating shafts 11 are distributed at both ends of the arc-shaped base 7. Both sides of the arc-shaped base 7 are connected to clamping plates 12 through the rotating shafts 11. The clamping plates 12 are fixedly installed between them. A driving shaft 13 is fixedly installed on the rotating shaft 5 located on one side and away from the end face of the support plate 6. A large gear disk 14 is installed on the driving shaft 13. The bottom of the large gear disk 14 penetrates through the processing platform 1 and is meshed with a small gear disk 15. The small gear disk 15 is driven by a motor 16.

[0019] To solve the problems of positioning and installing aluminum material processing and realizing flipping to solve the cumbersome and inefficient processing methods, the structure adopted in this patent is: rotating assemblies 3 are distributed at both ends of the upper part of the processing platform 1. Aluminum materials are positioned and installed between the two rotating assemblies 3. In this embodiment, circular aluminum materials are especially installed. One rotating assembly 3 at one end of the aluminum material serves as an auxiliary support, and the other rotating assembly 3 is driven by a motor 16. While realizing the positioning and installation of the aluminum material between the two rotating assemblies 3, it also realizes the deep processing of the aluminum material in a flippable manner, solving the problem of flexible processing that can be flipped and solving the technical problem that the processing can only be positioned and cannot be flipped.

[0020] Specifically: the aluminum materials are placed on the arc-shaped bases 7 on both sides. The arc-shaped structure of the arc-shaped base 7 realizes the positioning of the aluminum materials. The clamping plates 12 rotatably installed on both sides of the arc-shaped base 7 are used to clamp and fix the aluminum materials. Through the meshing installation of the large gear disk 14 and the small gear disk 15, the positioning and installation of the aluminum materials are realized. After partial processing is completed and the aluminum materials need to be flipped and adjusted, the small gear disk 15 is driven by the motor 16, and the small gear disk 15 is meshed with the large gear disk 14. Through the setting of the large gear disk 14, the speed of the motor is reduced to ensure that the aluminum materials are flipped at a reduced speed, realizing the flipping of the aluminum materials, improving the processing efficiency and convenience of processing.

[0021] In at least one embodiment, the large gear disk 14 is mounted on the processing platform 1 in the following manner: an opening 21 is formed on one side of the processing platform 1 for the large gear disk 14 to pass through and be meshed and mounted with the small gear disk 15.

[0022] In at least one embodiment, in order to store the processed or to-be-processed aluminum materials, the storage platform 2 includes a support frame 22 and a storage base 23. One side of the support frame 22 is fixedly mounted on the processing platform 1. The storage bases 23 are evenly distributed on both sides of the upper part of the support frame 22, and the storage bases 23 are distributed in pairs.

[0023] In at least one embodiment, by fixedly mounting the motor 16, the following structure is adopted: a fixing plate 24 is mounted on the processing platform 1 at the bottom of the opening 21, and the motor 16 is fixedly mounted on the fixing plate 24.

[0024] The embodiments in the present invention are only used to illustrate the present invention and do not constitute a limitation on the scope of the claims. Other substantially equivalent alternatives that can be conceived by those skilled in the art are within the protection scope of the present invention.

Claims

1. A positioning tooling for deep processing of aluminum profiles, characterized in that, It includes a processing platform (1) and a storage platform (2). The storage platform (2) is fixedly installed on one side of the processing platform (1). At both ends of the upper part of the processing platform (1), rotating components (3) are distributively arranged. The rotating component (3) includes a bearing base (4) fixedly installed on the processing platform (1). A rotating shaft (5) is fixedly installed inside the bearing base (4). Support plates (6) are fixedly installed on the opposite end faces between the rotating shafts (5). The lower part of the end face of the support plate (6) away from the rotating shaft (5) is provided with an arc-shaped base (7). Rotating shafts (11) are distributively arranged at both side ends of the arc-shaped base (7). Both sides of the arc-shaped base (7) are connected to clamping plates (12) through the rotating shafts (11). The clamping plates (12) are fixedly installed between them. A driving shaft (13) is fixedly installed on the rotating shaft (5) located on one side and away from the end face of the support plate (6). A large gear disk (14) is installed on the driving shaft (13). The bottom of the large gear disk (14) penetrates through the processing platform (1) and is meshingly installed with a small gear disk (15). The small gear disk (15) is driven by a motor (16).

2. The positioning tooling for deep processing of aluminum profiles according to claim 1, wherein, A through opening (21) is formed on one side of the processing platform (1) for the large gear disk (14) to penetrate through and be meshingly installed with the small gear disk (15).

3. The positioning tooling for deep processing of aluminum profiles according to claim 1, characterized in that, The storage platform (2) includes a support frame (22) and a storage base (23). One side of the support frame (22) is fixedly installed on the processing platform (1). The storage bases (23) are evenly distributively arranged on both sides of the upper part of the support frame (22), and the storage bases (23) are distributed in pairs.

4. The positioning tooling for deep processing of aluminum profiles according to claim 2, characterized in that, A fixing plate (24) is installed on the processing platform (1) at the bottom of the through opening (21). The motor (16) is fixedly installed on the fixing plate (24).

Citation Information

Patent Citations

  • Drilling and milling machine for aluminum profile deep processing

    CN209532187U