Mobile phone aluminum alloy plate machining equipment
Through the integrated design of mobile phone aluminum alloy plate processing equipment, multiple processes are completed on one device at the same time, solving the problem of low production efficiency and improving processing accuracy and automation.
Patent Information
- Application Number
- CN202422377027.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing mobile phone aluminum alloy plate processing equipment requires multiple equipment to be processed through multiple processes, resulting in low production efficiency.
An integrated mobile aluminum alloy plate processing equipment is designed, using components such as rotary trench, fixture, drilling knife, laser, loading and discharge robot, to achieve multiple processes simultaneously on one equipment, including drilling, laser engraving and other processing methods. Accurate cutting and stamping are achieved through hydraulic jacks and deflection joints, and the servo motor drives the rotary trench to achieve continuous production.
It improves production efficiency, realizes multi-process automation and continuous production, reduces equipment replacement time, and improves processing accuracy and product quality.
Smart Images

Figure CN223160104U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mobile phone processing equipment, and particularly relates to a processing equipment for mobile phone aluminum alloy plates. Background Art
[0002] The mobile phone aluminum alloy plate is a component of the mobile phone. It is a component located between the bottom plate and the panel, mainly used for installing the circuit board and the battery, and protecting the circuit board and the battery when the mobile phone is collided; the middle plate plays a key structural and supporting role inside the smart phone, enhancing the durability of the mobile phone during use and protecting important internal components from damage, and being able to resist the impact force generated by accidental collision or impact. Each qualified mobile phone aluminum alloy plate needs to be processed through multiple processes such as feeding, cutting, stamping, drilling, laser engraving, and discharging, and mechanical processing equipment needs to be used for processing and forming.
[0003] The existing processing equipment for mobile phone aluminum alloy plates needs to separate multiple processes into multiple pieces of equipment for processing, and use multiple pieces of equipment to perform each process separately, so that the originally integratable processes such as feeding, cutting, stamping, drilling, laser engraving, and discharging are all separated and executed, which will reduce the production efficiency. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is to overcome the defects of the prior art and solve the problem of low production efficiency of the existing processing equipment for mobile phone aluminum alloy plates.
[0005] The technical solution adopted by the utility model to solve its technical problem is: a processing equipment for mobile phone aluminum alloy plates, including a machine table, a turntable frame is arranged at the front end of the machine table, a plurality of jigs are detachably connected around the upper end of the turntable frame, a drill bit and a laser are respectively arranged on the left and right sides above the jigs;
[0006] A reference plate fixedly connected to the surface of the machine table is arranged on the left side of the turntable frame, an upper template is arranged at the lower end of the reference plate, a lower template is arranged below the upper template, cutting edges are respectively arranged at the front, rear, left and right ends of the upper template, a stamping edge is arranged in the middle of the lower template, and a deflection joint is drivingly connected between the reference plate and the upper template.
[0007] In a preferred technical solution of the utility model, a discharge conveyor belt is fixedly installed at the right end of the machine table, and a feeding rack is arranged at the left end of the machine table.
[0008] In a preferred technical solution of the utility model, hydraulic jacks are respectively installed at the four corners between the upper template and the lower template, and a driving motor drivingly connected to the upper end of the deflection joint is fixedly connected to the upper end of the reference plate.
[0009] In a preferred technical solution of the present utility model, a first servo motor is drivingly connected to the lower end of the turntable frame, and a loading manipulator and an unloading manipulator are respectively arranged on the left and right sides in front of the first servo motor.
[0010] In a preferred technical solution of the present utility model, a second servo motor is drivingly connected to the upper end of the drill bit, a first moving arm is drivingly connected to the rear end of the second servo motor, and the lower end of the first moving arm is fixedly connected to the upper end of the machine table.
[0011] In a preferred technical solution of the present utility model, a second moving arm is installed at the rear end of the laser, and the lower end of the second moving arm is fixedly connected to the upper end of the machine table.
[0012] Compared with the prior art, the beneficial effects achieved by the present utility model are as follows:
[0013] Around the upper end of the turntable frame, a plurality of jigs can be detachably connected to simultaneously fix a plurality of plate parts for clamping. A drill bit and a laser are respectively arranged on the left and right sides above the turntable frame to simultaneously perform two processing methods of punching and laser engraving on the mobile phone aluminum alloy plate parts, and two different processes such as drilling and laser processing can be carried out simultaneously.
[0014] A reference plate is arranged on the left side of the turntable frame to provide a horizontal reference plane for hanging support of the upper template and the lower template. The reference plate is fixed in front of the machine table to stably support the upper template and the lower template in front of the machine table. Hydraulic jacks form a stable support and guiding structure at the four corners between the upper template and the lower template. Relying on the hydraulic jacks, the upper template and the lower template are moved up and down to change the height. The hydraulic jacks make the upper template and the lower template approach or move away from each other. The upper template and the lower template are used in cooperation to simultaneously contact the upper and lower surfaces of the same mobile phone aluminum alloy plate part. The upper template and the lower template are mutually extruded to ensure uniform and stable pressure during the processing. The cutting edges at the four ends of the upper template and the punching edge in the middle of the lower template can perform precise cutting and punching on the plate part. A deflection joint is drivingly connected between the reference plate and the upper template, and the processing angle can be adjusted as needed to meet different processing requirements, ensure the processing accuracy, and can also simultaneously perform two processing methods of cutting and punching on the mobile phone aluminum alloy plate part. On the premise of having the advantage of precise processing, the two processing processes of cutting and punching can be carried out simultaneously to improve the product quality.
[0015] The first servo motor drives the turntable to rotate, enabling the mobile phone aluminum alloy plates clamped by multiple jigs to be processed in turn. With only one processing device, all processing procedures of each mobile phone aluminum alloy plate can be continuously completed from start to finish. All procedures of the mobile phone aluminum alloy plate can be integrated onto the same device, eliminating the need to replace the device during processing and saving the time and process of intermediate device replacement. The discharging manipulator outputs the processed mobile phone aluminum alloy plates from the discharging conveyor belt, and then the loading manipulator continuously grabs the mobile phone aluminum alloy plates from inside the feeding rack and places them inside each jig for further processing, achieving continuous feeding and discharging of the mobile phone aluminum alloy plates. The loading manipulator and the discharging manipulator achieve automatic loading and discharging, reducing manual operation, realizing continuous production, having a high degree of automation, saving processing time, and further improving production efficiency. Brief Description of the Drawings
[0016] Figure 1 It is the left view of the present utility model;
[0017] Figure 2 It is the right view of the present utility model;
[0018] Figure 3 It is the schematic diagram of the stamping and cutting composite structure of the present utility model.
[0019] In the figure: 1. The first servo motor; 2. The loading manipulator; 3. The turntable; 4. The jig; 5. The discharging manipulator; 6. The feeding rack; 7. The discharging conveyor belt; 8. The machine table; 9. The second servo motor; 10. The reference plate; 11. The lower template; 12. The hydraulic jack; 13. The upper template; 14. The deflection joint; 15. The stamping blade; 16. The cutting blade; 17. The driving motor; 18. The first moving arm; 19. The second moving arm; 20. The laser; 21. The drill bit. Detailed Description of the Preferred Embodiment
[0020] Please refer to Figures 1 - 3, the utility model provides a technical solution: a processing device for mobile phone aluminum alloy plates, including a machine table 8. A turntable frame 3 is arranged at the front end of the machine table 8. A plurality of clamps 4 are detachably connected around the upper end of the turntable frame 3. By detachably connecting a plurality of clamps 4 around the upper end of the turntable frame 3, it is convenient to combine and separate the clamps 4 from the turntable frame 3 according to processing requirements, so as to adjust the quantity and arrangement layout of the clamps 4 on the upper end of the turntable frame 3. A feeding frame 6 is arranged at the left end of the machine table 8. Workers pre-place the mobile phone aluminum alloy plates to be processed into the feeding frame 6 from bottom to top for storage. The lower end of the turntable frame 3 is drivingly connected to a first servo motor 1. A loading manipulator 2 and an unloading manipulator 5 are respectively arranged on the left and right sides in front of the first servo motor 1. When starting processing, workers place the feeding frame 6 at the left end of the machine table 8, making the feeding frame 6 close to the feeding manipulator. The feeding manipulator grabs each mobile phone aluminum alloy plate from the feeding frame 6 one by one and places them on the clamps 4 respectively. A plurality of clamps 4 can simultaneously fix a plurality of plates for clamping.
[0021] A reference plate 10 fixedly connected to the surface of the machine table 1 is arranged on the left side of the turntable frame 3. An upper template 13 is arranged at the lower end of the reference plate 10. A lower template 11 is arranged below the upper template 13. Cutting edges 16 are provided at the front, rear, left and right ends of the upper template 13. A punching edge 15 is provided in the middle of the lower template 11. A deflection joint 14 is drivingly connected between the reference plate 10 and the upper template 13. The upper end of a drill 21 is drivingly connected to a second servo motor 9. The rear end of the second servo motor 9 is drivingly connected to a first moving arm 18. The lower end of the first moving arm 18 is fixedly connected to the upper end of the machine table 8. The second servo motor 9 drives the drill 21 to rotate. The first moving arm 18 controls the placement posture of the second servo motor 9 and the drill 21 by swinging to control the position and movement of the drill 21. Drills 21 and lasers 20 are respectively arranged on the left and right sides above the clamps 4. A second moving arm 19 is installed at the rear end of the laser 20. The lower end of the second moving arm 19 is fixedly connected to the upper end of the machine table 8. The second moving arm 19 controls the position and movement of the laser 20 by swinging. The second moving arm 19 aligns the laser 20 with the parts on the surface of the mobile phone aluminum alloy plate that need to be processed. Drills 21 and lasers 20 are respectively arranged on the left and right sides above the turntable frame 3 to simultaneously achieve two processing methods of punching and laser engraving on the mobile phone aluminum alloy plate, and can simultaneously perform two different processing procedures such as drilling and laser processing on the mobile phone aluminum alloy plate.
[0022] A reference plate 10 is arranged on the left side of the turntable frame 3 to provide a horizontal reference surface for the upper template 13 and the lower template 11 for suspended support. The reference plate 10 suspends the upper template 13 and the lower template 11, so that the turntable frame 3 and the mold are located between the upper template 13 and the lower template 11. The reference plate 10 is fixed in front of the machine table 8 to stably support the upper template 13 and the lower template 11 in front of the machine table 8, achieving the effect of firmly installing the upper template 13 and the lower template 11.
[0023] Hydraulic jacks 12 are installed at all four corners between the upper template 13 and the lower template 11. The hydraulic jacks 12 form a stable support and guiding structure at the four corners between the upper template 13 and the lower template 11. The upper and lower ends of the hydraulic jacks 12 jack up the four corners between the upper template 13 and the lower template 11 respectively. When the hydraulic jacks 12 expand and contract, their lengths will change. When the hydraulic jacks stretch and become longer, they will move the upper template 13 and the lower template 11 away from each other. Conversely, when the hydraulic jacks contract and become shorter, they will move the upper template 13 and the lower template 11 closer to each other. Relying on the hydraulic jacks 12, the upper template 13 and the lower template 11 are moved up and down to change the height. The hydraulic jacks 12 make the upper template 13 and the lower template 11 approach or move away from each other. When the upper template 13 and the lower template 11 approach each other, they will contact the mobile phone aluminum alloy plate clamped on the turntable 3 of the mold. The upper template 13 and the lower template 11 are used in cooperation to simultaneously contact the upper and lower surfaces of the same mobile phone aluminum alloy plate. The upper template 13 and the lower template 11 are pressed against each other, so that the cutting edge 16 and the stamping edge 15 are respectively close to the upper and lower surfaces of the mobile phone aluminum alloy plate clamped by the fixture 4. The cutting edge 16 cuts the mobile phone aluminum alloy plate into a cutout or cut surface with the exact same shape as the cutting edge 16, so as to complete the step of cutting the mobile phone aluminum alloy plate.
[0024] The hydraulic jacks 12 expand and contract to synchronously move the upper template 13 and the lower template 11 up and down to respectively contact the upper and lower surfaces of the mobile phone aluminum alloy plate, so as to ensure uniform and stable pressure during the processing. The cutting edges 16 at the four ends of the upper template 13 and the stamping edge 15 in the middle of the lower template 11 can accurately cut and stamp the plate, improving the stability of the upper and lower molds for cutting the mobile phone aluminum alloy plate. It can simultaneously realize two processing methods of cutting and stamping for the mobile phone aluminum alloy plate. On the premise of having the advantage of precise processing, it can also perform the two processing procedures of cutting and stamping simultaneously, improving work efficiency.
[0025] A driving motor 17 is fixedly connected to the upper end of the reference plate 10 and is drivingly connected to the upper end of the deflection joint 14. The driving motor 17 drives the deflection joint 14 to move, and the deflection joint 14 changes its angle. The upper template 13 changes along with the change of the deflection joint 14. The driving motor 17 adjusts the relative position of the upper template 13 at the lower end of the reference plate 10 by relying on the deflection joint 14 between the reference plate 10 and the upper template 13, so that the lower template 11 moves synchronously with the movement of the upper template 13 through the hydraulic jacks 12. The upper template 13 and the lower template 11 are inclined, and the processing angle of the upper template 13 and the lower template 11 for the mobile phone aluminum alloy plate can be adjusted according to the processing requirements, realizing the function of finely adjusting the placement postures of the upper template 13 and the lower template 11, so as to meet different processing requirements for the mobile phone aluminum alloy plate, ensure the processing accuracy, and improve the product quality.
[0026] The first servo motor 1 drives the turntable 3 to rotate, enabling the mobile phone aluminum alloy plates clamped by multiple jigs 4 to be processed in turn. Only one processing device can continuously complete all processing procedures for each mobile phone aluminum alloy plate from beginning to end. All processes of the mobile phone aluminum alloy plate can be integrated onto the same device, eliminating the need to replace the device during processing and saving the time and process of replacing the device in the middle. An output conveyor belt 7 is fixedly installed at the right end of the machine table 8. The discharging manipulator 5 outputs the processed mobile phone aluminum alloy plates from the output conveyor belt 7, and then the loading manipulator 2 continuously grabs the mobile phone aluminum alloy plates from inside the feeding rack 6 and places them inside each jig 4 for continuous processing, realizing continuous feeding and discharging of the mobile phone aluminum alloy plates. The loading manipulator 2 and the discharging manipulator 5 achieve automatic loading and discharging, integrating processes such as loading, cutting, stamping, drilling, laser engraving, and discharging, reducing manual operations, realizing continuous production, with a high degree of automation, saving processing time, and further improving production efficiency.
Claims
1. A processing device for mobile phone aluminum alloy plates, comprising a machine table (8), characterized in that: A turntable frame (3) is arranged at the front end of the machine table (8). A plurality of clamps (4) are detachably connected around the upper end of the turntable frame (3). A drill bit (21) and a laser (20) are respectively arranged on the left and right sides above the clamp (4). A reference plate (10) fixedly connected to the surface of the machine table (8) is arranged on the left side of the turntable frame (3). An upper template (13) is arranged at the lower end of the reference plate (10). A lower template (11) is arranged below the upper template (13). Cutting edges (16) are provided at the front, rear, left and right ends of the upper template (13). A stamping edge (15) is provided in the middle of the lower template (11). A deflection joint (14) is drivingly connected between the reference plate (10) and the upper template (13).
2. The processing equipment for mobile phone aluminum alloy plates according to claim 1, characterized in that: An output conveyor belt (7) is fixedly installed at the right end of the machine table (8). A feeding rack (6) is arranged at the left end of the machine table (8).
3. The processing equipment for mobile phone aluminum alloy plates according to claim 1, characterized in that: Hydraulic jacks (12) are installed at the four corners between the upper template (13) and the lower template (11). A driving motor (17) drivingly connected to the upper end of the deflection joint (14) is fixedly connected to the upper end of the reference plate (10).
4. A processing device for mobile phone aluminum alloy plates according to claim 1, characterized in that: The lower end of the turntable frame (3) is drivingly connected to a first servo motor (1). A loading manipulator (2) and an unloading manipulator (5) are respectively arranged on the left and right sides in front of the first servo motor (1).
5. The processing equipment for mobile phone aluminum alloy plates according to claim 1, characterized in that: The upper end of the drill bit (21) is drivingly connected to a second servo motor (9). The rear end of the second servo motor (9) is drivingly connected to a first moving arm (18). The lower end of the first moving arm (18) is fixedly connected to the upper end of the machine table (8).
6. The processing equipment for mobile phone aluminum alloy plates according to claim 1, characterized in that: A second moving arm (19) is installed at the rear end of the laser (20). The lower end of the second moving arm (19) is fixedly connected to the upper end of the machine table (8).