Milling mechanism for high-precision aluminum profile milling equipment

By designing two opposing milling cutters and a hydraulic rod drive system on the milling equipment and combining it with a linear module, the synchronous milling operation of both sides of the aluminum profile is achieved, which solves the problem of insufficient milling efficiency and precision in the existing technology and improves the processing efficiency and precision.

CN223368293UActive Publication Date: 2025-09-23JINGZHOU ALUMINUM (NANYANG) CO LTD
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Patent Information

Application Number
CN202422825581.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-23
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

The existing milling mechanism is difficult to achieve simultaneous milling operation on two surfaces of aluminum profiles while ensuring high precision, and the processing efficiency needs to be improved.

Method used

A milling mechanism for high-precision aluminum profile milling equipment has been designed. It uses two opposing milling cutters and is driven by a hydraulic rod. Combined with a motor and a linear module, it can achieve synchronous milling of both sides of the aluminum profile. The specified surface can be operated independently, and the clamping seat and linear module are used to adapt to aluminum profiles of different lengths.

Benefits of technology

It achieves high-precision and high-efficiency milling processing on both sides of the aluminum profile, avoids tedious disassembly and assembly operations, and improves processing flexibility and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a milling mechanism for high-precision aluminum profile milling equipment, relates to the technical field of aluminum profile milling equipment, and aims to solve the problems that the conventional milling mechanism has defects in synchronous milling operation on two symmetrical surfaces of an aluminum profile while ensuring high precision, and the overall processing efficiency needs to be improved. According to the technical scheme, the machining device is characterized by comprising a supporting table, a machining groove is formed in the middle of the upper surface of the supporting table, a movable seat is arranged in the machining groove, two second linear modules are fixedly installed on the inner wall of the supporting table, and the two second linear modules are oppositely arranged and distributed on the two side edges of the machining groove; the moving ends of the two second linear modules are fixedly connected to the symmetrical side surfaces of a movable base correspondingly, and the two ends of the movable base are each provided with a mounting hole. And the effect of high-precision and high-efficiency milling machining operation can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum profile milling equipment, in particular to a milling mechanism for high-precision aluminum profile milling equipment. Background Art

[0002] During the production process of aluminum profile products, secondary processing operations are required on the aluminum profiles, which include cutting, milling, drilling, etc. Among them, special milling equipment is required for milling.

[0003] The existing milling mechanism has shortcomings in ensuring high precision while being able to perform synchronous milling operations on two symmetrical surfaces of aluminum profiles, and the overall processing efficiency needs to be improved. Utility Model Content

[0004] The utility model aims to provide a milling mechanism for high-precision aluminum profile milling equipment, which can realize high-precision and high-efficiency milling processing operations.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A milling mechanism for high-precision aluminum profile milling equipment includes a support table, a processing groove is provided in the middle position of the upper surface of the support table, a movable seat is provided inside the processing groove, and two second linear modules are fixedly installed on the inner wall of the support table. The two second linear modules are opposite to each other and distributed on both sides of the processing groove. The movable ends of the two second linear modules are respectively fixedly connected to the symmetrical side surfaces of the movable seat, and a mounting hole is respectively provided at both ends of the movable seat, and a hydraulic rod is respectively fixedly installed inside the two mounting holes. The telescopic end of the hydraulic rod is fixedly connected to the motor seat, and a motor is fixedly installed on the inner end surface of the motor seat. A milling cutter is fixedly installed on one end of the rotating shaft of the motor.

[0007] By adopting the above technical solution, two milling cutters are placed on both sides of the aluminum profile, and then the milling cutters are driven to rotate by an electric motor, and then the hydraulic rod is used to drive the milling cutters to contact the aluminum profile, so that the synchronous milling operation of the two surfaces can be effectively realized, and the milling operation of the specified surface can be performed separately as needed, avoiding tedious disassembly and assembly operations, and thus avoiding repeated position correction operations, thereby improving processing accuracy.

[0008] Furthermore, two milling cutters are provided, and the two milling cutters are arranged opposite to each other.

[0009] By adopting the above technical solution, it is ensured that the two milling cutters can effectively perform milling operations on the two surfaces.

[0010] Furthermore, two sliding holes are respectively provided at both ends of the movable seat, and a limiting sliding rod passes through the interior of the sliding hole, and one end of the limiting sliding rod is fixedly connected to the end surface of the motor seat.

[0011] By adopting the above technical solution, the limiting slide bar can be used to improve the stability of the position movement and the working stability of the motor base.

[0012] Furthermore, two first linear modules are fixedly mounted on the upper surface of the support platform, and the two first linear modules are coaxially distributed.

[0013] By adopting the above technical solution, it is ensured that the two first linear modules can drive the aluminum profile to move in position.

[0014] Furthermore, the movable end of the first linear module is fixedly connected to a clamping seat, and the two clamping seats are opposite to each other. A threaded hole is provided on the upper surface of the clamping seat, and a clamping screw is passed through the inside of the threaded hole. A clamping block is rotatably installed at one end of the clamping screw, and the clamping block is located on the inner side of the clamping seat.

[0015] By adopting the above technical solution, the two ends of the aluminum profile can be effectively clamped and fixed.

[0016] Furthermore, the movable seat is C-shaped.

[0017] By adopting the above technical solution, the position distribution of the two milling cutters is ensured to be stable.

[0018] In summary, the beneficial technical effects of the present invention are:

[0019] 1. When milling aluminum profiles, the utility model places the aluminum profile between two milling cutters, then starts the motor, uses the motor to drive the milling cutter to rotate, and then extends the hydraulic rod so that the rotating milling cutter can contact the processing surface of the aluminum profile. At this time, the two surfaces of the aluminum profile can be milled at the same time, which effectively improves the work efficiency. At the same time, a milling cutter can be used separately as needed, and the entire processing operation is flexible. At the same time, it can avoid the need for repeated disassembly and assembly when processing different surfaces, as well as position correction, which can effectively improve the processing accuracy.

[0020] 2. The utility model can utilize the clamping seats to clamp at both ends of the aluminum profile. Since the two clamping seats are driven by two independent first linear modules, the distance between the two clamping seats can be flexibly adjusted, thereby adapting to the milling operation of aluminum profiles of different lengths, and making the two first linear modules move synchronously in the same direction, so that the clamped aluminum profile can be moved in an orderly manner between the two milling cutters, ensuring that the entire processing operation can be carried out stably and orderly. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1It is a schematic diagram of the three-dimensional structure of the utility model;

[0022] Figure 2 For this utility model Figure 1 A magnified view of;

[0023] Figure 3 For this utility model Figure 1 B is an enlarged view of .

[0024] In the figure: 1. Support table; 2. First linear module; 3. Clamping seat; 4. Processing groove; 5. Second linear module; 6. Movable seat; 7. Hydraulic rod; 8. Limiting slide; 9. Motor seat; 10. Clamping screw; 11. Clamping block; 12. Motor; 13. Milling cutter. DETAILED DESCRIPTION

[0025] The method of the utility model is further described in detail below with reference to the accompanying drawings.

[0026] Reference Figure 1 、 Figure 3 A milling mechanism for high-precision aluminum profile milling equipment includes a support table 1, a processing groove 4 is provided in the middle position of the upper surface of the support table 1, a movable seat 6 is provided inside the processing groove 4, and two second linear modules 5 are fixedly installed on the inner wall of the support table 1. The two second linear modules 5 are opposite to each other and distributed on both sides of the processing groove 4. The moving ends of the two second linear modules 5 are respectively fixedly connected to the symmetrical side surfaces of the movable seat 6. A mounting hole is provided at each end of the movable seat 6, and a hydraulic rod 7 is fixedly installed inside the two mounting holes. The telescopic end of the hydraulic rod 7 is fixedly connected to the motor seat 9, and a motor 12 is fixedly installed on the inner end surface of the motor seat 9. The motor 1 A milling cutter 13 is fixedly installed at one end of the rotating shaft of 2. Two milling cutters 13 are provided, and the two milling cutters 13 are placed opposite to each other. The movable seat 6 is C-shaped. When milling the aluminum profile, the aluminum profile can be placed between the two milling cutters 13, and then the motor 12 is started. The motor 12 drives the milling cutter 13 to rotate, and then the hydraulic rod 7 is extended so that the rotating milling cutter 13 can contact the processing surface of the aluminum profile. At this time, the two surfaces of the aluminum profile can be milled at the same time, and the work efficiency is effectively improved. At the same time, a milling cutter 13 can be used separately as needed. The entire processing operation is flexible, and it can avoid the need for repeated disassembly and assembly when processing different surfaces, as well as position correction, which can effectively improve the processing accuracy.

[0027] Reference Figure 1 Two sliding holes are respectively provided at both ends of the movable seat 6, and a limiting slide rod 8 passes through the interior of the sliding hole. One end of the limiting slide rod 8 is fixedly connected to the end face of the motor seat 9. The limiting slide rod 8 can be used to improve the position stability of the motor seat 9, thereby improving the working stability of the milling cutter 13.

[0028] Reference Figure 1 、 Figure 2 Two first linear modules 2 are fixedly installed on the upper surface of the support table 1. The two first linear modules 2 are coaxially distributed. The movable end of the first linear module 2 is fixedly connected to the clamping seat 3. The two clamping seats 3 are opposite to each other. A threaded hole is provided on the upper surface of the clamping seat 3, and a clamping screw 10 is passed through the inside of the threaded hole. A clamping block 11 is rotatably installed at one end of the clamping screw 10. The clamping block 11 is located on the inner side of the clamping seat 3, and the clamping seat 3 can be used to clamp the two ends of the aluminum profile. Since the two clamping seats 3 are driven by two independent first linear modules 2, the spacing between the two clamping seats 3 can be flexibly adjusted, thereby adapting to the milling operation of aluminum profiles of different lengths, and making the two first linear modules 2 move synchronously in the same direction, so that the clamped aluminum profile can be moved in an orderly manner from between the two milling cutters 13, ensuring that the entire processing operation can be carried out stably and orderly.

[0029] Working principle: When in use, first install the mechanism at the specified position, then adjust the distance between the two clamping seats 3, and then clamp the aluminum profile to be milled on the two clamping seats 3. When clamping, place one end of the aluminum profile inside the clamping seat 3, and then rotate the clamping screw 10 to move the clamping block 11 along the axial direction of the clamping screw 10. At this time, the moving clamping block 11 can firmly clamp and fix one end of the aluminum profile, then start the motor 12, and use the motor 12 to drive the milling cutter 13 to rotate, and then extend the hydraulic rod 7 so that the rotating milling cutter 13 can contact the processing surface of the aluminum profile. At this time, milling operations can be performed. During this process, the second linear module 5 can be used to drive the movable seat 6 to move in position, and the first linear module 2 can be used to drive the aluminum profile to pass through the two milling cutters 13 in an orderly manner. This can perform milling operations on the aluminum profile as needed.

[0030] The real-time examples of this specific real-time method are all preferred real-time examples of the present utility model, and are not intended to limit the protection scope of the present utility model. Therefore, any equivalent changes made based on the structure, shape, and principle of the present utility model should be included in the protection scope of the present utility model.

Claims

1. A milling mechanism for high-precision aluminum profile milling equipment, comprising a support table (1), characterized in that: A processing groove (4) is provided at the middle position of the upper surface of the support platform (1), and a movable seat (6) is provided inside the processing groove (4). Two second linear modules (5) are fixedly installed on the inner wall of the support platform (1), and the two second linear modules (5) are opposite to each other and distributed on both sides of the processing groove (4). The movable ends of the two second linear modules (5) are respectively fixedly connected to the symmetrical side surfaces of the movable seat (6). A mounting hole is provided at each end of the movable seat (6), and a hydraulic rod (7) is fixedly installed inside the two mounting holes. The telescopic end of the hydraulic rod (7) is fixedly connected to the motor seat (9), and a motor (12) is fixedly installed on the inner end surface of the motor seat (9). A milling cutter (13) is fixedly installed at one end of the rotating shaft of the motor (12).

2. The milling mechanism for high-precision aluminum profile milling equipment according to claim 1, characterized in that: Two milling cutters (13) are provided, and the two milling cutters (13) are arranged opposite to each other.

3. The milling mechanism for high-precision aluminum profile milling equipment according to claim 1, characterized in that: Two sliding holes are respectively provided at both ends of the movable seat (6), and a limiting sliding rod (8) passes through the interior of the sliding hole. One end of the limiting sliding rod (8) is fixedly connected to the end surface of the motor seat (9).

4. The milling mechanism for high-precision aluminum profile milling equipment according to claim 1, characterized in that: Two first linear modules (2) are fixedly mounted on the upper surface of the support platform (1), and the two first linear modules (2) are coaxially distributed.

5. The milling mechanism for high-precision aluminum profile milling equipment according to claim 4, characterized in that: The movable end of the first linear module (2) is fixedly connected to a clamping seat (3), and the two clamping seats (3) are opposite to each other. A threaded hole is provided on the upper surface of the clamping seat (3), and a clamping screw (10) passes through the inside of the threaded hole. A clamping block (11) is rotatably installed on one end of the clamping screw (10), and the clamping block (11) is located on the inner side of the clamping seat (3).

6. The milling mechanism for high-precision aluminum profile milling equipment according to claim 1, characterized in that: The movable seat (6) is C-shaped.