Aluminum extruding machine convenient to produce
By designing the guiding and extrusion structures, the problem of micro-deformation during aluminum material transport in the aluminum extrusion press was solved, achieving stable aluminum material transport and forming, and improving production efficiency.
Patent Information
- Application Number
- CN202423179958.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing aluminum extrusion presses do not provide adequate support and protection for the aluminum material after extrusion, which makes the aluminum material prone to micro-deformation during transport.
It adopts a guiding structure and an extrusion structure. The guiding structure controls the aluminum material transmission through an electric motor and contact wheels, while the extrusion structure assists in the extrusion of aluminum material through a hydraulic control rod and a heating seat. The position is adjusted by combining a support frame and a height adjustment frame.
This method enables stable transport and forming of aluminum materials, avoiding micro-deformation caused by direct transport and improving production efficiency and forming stability.
Smart Images

Figure CN223543743U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of extrusion equipment technology, specifically to an aluminum extrusion press that is convenient for production. Background Technology
[0002] Extrusion presses are the main equipment for the production of light alloy (aluminum alloy, copper alloy and magnesium alloy) tubes, bars and profiles. Their emergence and development have only been a little over a century, but they have undergone tremendous changes, from manual hydraulic presses with a few mega-newtons to fully automatic hydraulic presses with two hundred mega-newtons. The types of extrusion presses have also greatly increased. The capacity and number of extrusion presses reflect the production technology level of a company.
[0003] However, the current aluminum extrusion press has the following problems: it is not convenient to carry out support and protection work, so the aluminum material is directly transported through the rollers after extrusion, which is prone to micro-deformation, and needs to be improved. Utility Model Content
[0004] The purpose of this invention is to provide an aluminum extrusion press that is convenient for production, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an aluminum extrusion press that is easy to produce, comprising a guiding structure and an extrusion structure, wherein the front end of the extrusion structure is fixedly connected to the guiding structure;
[0006] The guiding structure includes a motor, a telescopic control seat, a contact wheel, a power seat, a transmission roller, and a support base. The power seat is fixedly installed on the support base, and the transmission roller is driven and connected to the power seat. The telescopic control seat is installed at the upper end of the power seat, and the motor is installed on the telescopic control seat. The contact wheel is driven and connected to the motor.
[0007] Specifically, the extrusion structure includes a pusher seat, a support frame, a height adjustment frame, a docking seat, a heating seat, a die seat, a push rod, a first hydraulic control rod, and a second hydraulic control rod. The front end of the second hydraulic control rod is telescopically connected to the push rod, and the front end of the first hydraulic control rod is also telescopically connected to the push rod. The front end of the push rod is connected to the docking seat, and a heating seat is installed on the docking seat. A die seat is connected to the front end of the docking seat, and a support frame is provided at the lower rear end of the docking seat. A height adjustment frame is telescopically connected to the lower end of the support frame, and a pusher seat is installed on the side end of the height adjustment frame.
[0008] Specifically, the propulsion seat controls the lateral adjustment of the support frame and the height adjustment frame, and the height adjustment frame controls the height adjustment of the support frame.
[0009] Specifically, the front end of the mold base is connected to the contact wheel, and the motor controls the rotation of the contact wheel to transfer the aluminum material.
[0010] Specifically, the support frame is used for the transfer of aluminum materials, and the first hydraulic control rod and the second hydraulic control rod control the extension and retraction adjustment of the push rod.
[0011] Specifically, the push rod is pushed forward within the docking seat, causing the aluminum material to be squeezed through the docking seat and the mold seat, and the mold seat is equipped with a mold.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] 1. By installing a guide structure, the telescopic control seat within the guide structure can control the position change of the motor and contact wheel, and the motor can drive the contact wheel to rotate, thereby facilitating the transfer of extruded aluminum material. The power seat can drive the transfer roller to rotate, so that the transfer roller can guide the subsequent transfer. The aluminum material is transferred through the rotation of the contact wheel as soon as possible, which can avoid direct transfer and provide a certain amount of time to ensure the stability of aluminum material forming.
[0014] 2. By installing the extrusion structure, the first and second hydraulic control rods within the extrusion structure extend and retract synchronously, changing the position of the push rod. The push rod pushes the aluminum material to move within the docking seat. The heating seat can assist in heating, allowing the aluminum material to be extruded and formed through the mold seat. Furthermore, the push seat can change the lateral position of the support frame and the height adjustment frame, facilitating the loading of the aluminum material. The height adjustment frame can also change the height of the support frame, enabling position adjustment. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of the present utility model;
[0016] Figure 2 This is a perspective view of the guiding structure of this utility model;
[0017] Figure 3 This is a perspective view of the extrusion structure of this utility model.
[0018] In the diagram: 1-Guiding structure; 2-Extrusion structure; 3-Motor; 4-Telescopic control seat; 5-Contact wheel; 6-Power seat; 7-Transmission roller; 8-Support base frame; 9-Propulsion seat; 10-Carrier frame; 11-Height adjustment frame; 12-Dating seat; 13-Heating seat; 14-Die seat; 15-Propulsion rod; 16-First hydraulic control rod; 17-Second hydraulic control rod. Detailed Implementation
[0019] 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.
[0020] Please see Figure 1-3 This utility model provides a technical solution: an aluminum extrusion press that is easy to produce, including a guide structure 1 and an extrusion structure 2, wherein the front end of the extrusion structure 2 is fixedly connected to the guide structure 1;
[0021] The guiding structure 1 includes a motor 3, a telescopic control seat 4, a contact wheel 5, a power seat 6, a transmission roller 7, and a support base 8. The power seat 6 is fixedly installed on the support base 8, and the transmission roller 7 is driven and connected to the power seat 6. The telescopic control seat 4 is installed at the upper end of the power seat 6, and the motor 3 is installed on the telescopic control seat 4. The contact wheel 5 is driven and connected to the motor 3. By installing the guiding structure 1, the telescopic control seat 4 in the guiding structure 1 can control the position change of the motor 3 and the contact wheel 5, and the motor 3 can drive the contact wheel 5 to rotate, thereby facilitating the transmission of the extruded aluminum material. The power seat 6 can drive the transmission roller 7 to rotate, so that the transmission roller 7 can guide and transmit the aluminum material in the subsequent process. The aluminum material is transmitted through the rotation of the contact wheel 5 in the first time, which can avoid direct transmission and provide a certain time to ensure the stability of the aluminum material forming.
[0022] The extrusion structure 2 includes a pusher seat 9, a support frame 10, a height adjustment frame 11, a docking seat 12, a heating seat 13, a die holder 14, a push rod 15, a first hydraulic control rod 16, and a second hydraulic control rod 17. The front end of the second hydraulic control rod 17 is telescopically connected to the push rod 15, and the front end of the first hydraulic control rod 16 is also telescopically connected to the push rod 15. The front end of the push rod 15 is connected to the docking seat 12, and the heating seat 13 is installed on the docking seat 12. The front end of the docking seat 12 is connected to the die holder 14, and the lower rear end of the docking seat 12 is provided with the support frame 10. The lower end of the support frame 10 is telescopically connected to... A height adjustment frame 11 is connected, and a pusher seat 9 is installed on the side end of the height adjustment frame 11. By installing the extrusion structure 2, the first hydraulic control rod 16 and the second hydraulic control rod 17 in the extrusion structure 2 extend and retract synchronously, changing the position of the pusher rod 15. The pusher rod 15 pushes the aluminum material to move in the docking seat 12. The heating seat 13 can assist in heating, so that the aluminum material is extruded and formed by the mold seat 14. The pusher seat 9 can change the lateral position of the support frame 10 and the height adjustment frame 11, which is convenient for feeding aluminum material. The height adjustment frame 11 can change the height of the support frame 10 to realize the position adjustment work.
[0023] The propulsion seat 9 controls the lateral adjustment of the support frame 10 and the height adjustment frame 11, and the height adjustment frame 11 controls the height adjustment of the support frame 10.
[0024] The front end of the mold base 14 is connected to the contact wheel 5, and the motor 3 controls the rotation through the contact wheel 5 to transfer the aluminum material.
[0025] The support frame 10 is used for the transfer of aluminum materials, and the first hydraulic control rod 16 and the second hydraulic control rod 17 control the extension and retraction adjustment of the push rod 15.
[0026] The push rod 15 is pushed forward in the docking seat 12, so that the aluminum material is squeezed through the docking seat 12 and the mold seat 14, and the mold seat 14 is provided with a mold.
[0027] Working principle: When work is required, the user places the aluminum material on the support frame 10. Then, the push seat 9 retracts, driving the support frame 10 and the height adjustment frame 11 to the loading position. The height adjustment frame 11 then controls the height adjustment of the support frame 10 so that the aluminum material is aligned with the docking seat 12. Then, the first hydraulic control rod 16 and the second hydraulic control rod 17 extend, causing the push rod 15 to move, driving the aluminum material to move within the docking seat 12. The heating seat 13 can assist in heating. After that, the aluminum material is extruded and formed by the mold seat 14 and transmitted to the side of the contact wheel 5. At this time, the motor 3 controls the contact wheel 5 to rotate, changing the position of the aluminum material so that the aluminum material is transmitted. After heat dissipation, the transmission continues and reaches the transmission roller 7. At this time, the power seat 6 drives the aluminum material to be transmitted, completing the work.
[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An aluminum extrusion press that is easy to manufacture, characterized in that: It includes a guide structure (1) and an extrusion structure (2), wherein the front end of the extrusion structure (2) is fixedly connected to the guide structure (1); The guiding structure (1) includes a motor (3), a telescopic control seat (4), a contact wheel (5), a power seat (6), a transmission roller (7), and a support base (8). The power seat (6) is fixedly installed on the support base (8). The transmission roller (7) is driven and connected to the power seat (6). The telescopic control seat (4) is installed at the upper end of the power seat (6). The motor (3) is installed on the telescopic control seat (4). The contact wheel (5) is driven and connected to the motor (3).
2. The aluminum extrusion press for convenient production according to claim 1, characterized in that: The extrusion structure (2) includes a push seat (9), a support frame (10), a height adjustment frame (11), a docking seat (12), a heating seat (13), a mold seat (14), a push rod (15), a first hydraulic control rod (16), and a second hydraulic control rod (17). The front end of the second hydraulic control rod (17) is telescopically connected to the push rod (15), and the front end of the first hydraulic control rod (16) is also telescopically connected to the push rod (15). The front end of the push rod (15) is connected to the docking seat (12). A heating seat (13) is installed on the docking seat (12). The front end of the docking seat (12) is connected to the mold seat (14). The lower rear end of the docking seat (12) is provided with a support frame (10). The lower end of the support frame (10) is telescopically connected to a height adjustment frame (11). The side end of the height adjustment frame (11) is equipped with a push seat (9).
3. The aluminum extrusion press for convenient production according to claim 2, characterized in that: The propulsion seat (9) controls the lateral adjustment of the support frame (10) and the height adjustment frame (11), and the height adjustment frame (11) controls the height adjustment of the support frame (10).
4. The aluminum extrusion press for convenient production according to claim 3, characterized in that: The front end of the mold base (14) is connected to the contact wheel (5), and the motor (3) is controlled to rotate through the contact wheel (5) to transfer aluminum material.
5. The aluminum extrusion press for convenient production according to claim 4, characterized in that: The carrier (10) is used for the transfer of aluminum material, and the first hydraulic control rod (16) and the second hydraulic control rod (17) control the extension and retraction adjustment of the push rod (15).
6. The aluminum extrusion press for convenient production according to claim 5, characterized in that: The push rod (15) is pushed into the docking seat (12), so that the aluminum material is squeezed through the docking seat (12) and the mold seat (14), and the mold seat (14) is provided with a mold.