Magnesium alloy computer shell transfer device
By designing a magnesium alloy computer casing transfer device, and utilizing components such as brackets, guide rails, clamping components, and suction cups, the problems of poor impact resistance and defect detection of magnesium alloy casings during the transfer process were solved, achieving stable transfer and efficient detection.
Patent Information
- Application Number
- CN202520618686.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Magnesium alloy computer casings have poor impact resistance during transportation, making them prone to cracking or breakage. They also require support and fixation during quality inspection and transfer, and existing technologies struggle to ensure stable transportation and efficient defect detection.
A magnesium alloy computer casing transfer device was designed, which uses components such as bracket, guide rail, clamping assembly, lifting drive and suction cup to achieve stable transfer through clamping, rotation and lifting movements, and to take pictures to detect defects during the transfer process.
This technology enables stable transport and efficient defect detection of magnesium alloy computer casings, ensuring no damage during transport and improving the safety and efficiency of the transport process.
Smart Images

Figure CN223851666U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of transfer devices, and particularly relates to a magnesium alloy computer shell transfer device. BACKGROUND
[0002] As a light and high-strength material, magnesium alloy is increasingly applied to computer shells. It not only improves the portability of computers and has good durability, but also has good thermal conductivity, which helps to dissipate the temperature inside the computer and improve the heat dissipation effect of the computer, avoids overheating, and ensures the stable operation of the computer.
[0003] Although magnesium alloy has high strength, it has poor impact resistance compared with existing shell materials, and may easily crack or break under a large external force. In the transfer process, it also needs to pass through the quality inspection area, and the defects are detected and photographed in the quality inspection area. In the entire transfer process, the shell needs to be turned over and transferred from one transport line to another, which requires supporting and fixing the shell to ensure the stable completion of the transfer process. CONTENT OF THE INVENTION
[0004] The application provides a magnesium alloy computer shell transfer device to solve the above problems.
[0005] The purpose of the application is to provide a magnesium alloy computer shell transfer device.
[0006] To achieve the purpose of the application, the application adopts the following scheme:
[0007] A magnesium alloy computer shell transfer device, comprising a support, a guide rail is arranged on the support, a movable clamping assembly is arranged on the guide rail, the clamping assembly comprises a rotary drive part, a clamping part is arranged on the output shaft of the rotary drive part, a conveying belt assembly is arranged below the guide rail, a support assembly capable of lifting is arranged below the conveying belt assembly, the support assembly comprises a lifting drive part, a connecting plate is arranged on the output shaft of the lifting drive part, a first contact seat, a second contact seat and a third contact seat are arranged on the connecting plate, the first contact seat, the second contact seat and the third contact seat are arranged in a "pin" shape, a recording assembly is arranged in front of the conveying belt assembly, and a single-color background plate is arranged directly below the recording assembly.
[0008] Further, the third contact seat is arranged in front of the first contact seat and the second contact seat.
[0009] Further, the first contact seat and the second contact seat are suction cups, and the cavities in the first contact seat and the second contact seat are connected with the air pump through the air pipe.
[0010] Further, the third contact seat is a suction cup, and a cavity in the third contact seat is connected with the air pump through the air conveying pipe.
[0011] Further, the clamping assembly comprises a first clamping assembly and a second clamping assembly, the first clamping assembly and the second clamping assembly are arranged in a face-to-face manner, and the first clamping assembly and the second clamping assembly clamp the magnesium alloy computer shell from two ends of the magnesium alloy computer shell.
[0012] Further, the first clamping assembly comprises a first sliding block slidingly arranged on the guide rail, the first sliding block is provided with a first rotary driving part, an output shaft of the first rotary driving part is provided with a first connecting seat, and an end of the first connecting seat away from the first rotary driving part is provided with a first clamping part; the second clamping assembly comprises a second sliding block slidingly arranged on the guide rail, the second sliding block is provided with a second rotary driving part, an output shaft of the second rotary driving part is provided with a second connecting seat, and an end of the second connecting seat away from the second rotary driving part is provided with a second clamping part.
[0013] Further, the first clamping assembly and the second clamping assembly are connected together through a connecting structure, and the first clamping assembly is provided with a driving wheel.
[0014] Further, the first clamping assembly and the second clamping assembly are both provided with a driving wheel.
[0015] Further, a fixing plate is arranged between the first sliding block and the first rotary driving part, the fixing plate is provided with a driving assembly, and the driving wheel is arranged on an output shaft of the driving assembly.
[0016] Further, a fixing plate is arranged between the first sliding block and the first rotary driving part, the fixing plate is provided with a driving assembly, and the driving wheel is arranged on an output shaft of the driving assembly.
[0017] Compared with the prior art, the application has the following beneficial effects:
[0018] 1、The magnesium alloy computer shell is clamped by the clamping assembly, and is moved to the conveying belt assembly along the guide rail, the connecting plate is driven to move up and down by the lifting driving part at the conveying belt assembly, so that the first contact seat, the second contact seat and the third contact seat arranged in a "pin" shape are in contact with the magnesium alloy computer shell at the same time, and the magnesium alloy computer shell is stably driven to move down by the lifting driving part and falls into the conveying belt assembly, so that the magnesium alloy computer shell can continue to move to the next station along the conveying belt assembly, and the transfer of the magnesium alloy computer shell is completed.
[0019] 2. The clamping assembly of this application includes a rotary drive unit and a clamping unit, which can both drive the magnesium alloy computer housing to rotate and clamp the magnesium alloy computer housing. During the transfer process, the rotary drive unit drives the magnesium alloy computer housing to rotate from the reverse side to the front side, and the recording assembly takes pictures of the magnesium alloy computer housing. If quality problems occur in the magnesium alloy computer housing, such as scratches, the quality problems of the magnesium alloy computer housing can be detected in time. Attached Figure Description
[0020] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an undue limitation of this application.
[0021] Figure 1 This is a schematic diagram of the overall structure of this application.
[0022] Figure 2 for Figure 1 A top-view structural diagram.
[0023] Figure 3 for Figure 1 A schematic diagram of the front view structure.
[0024] Figure 4 for Figure 1 A schematic diagram of the structure of region A.
[0025] Figure 5 for Figure 1 A structural diagram of region B.
[0026] In the picture:
[0027] 1. Bracket; 2. Guide rail; 3. First clamping assembly; 4. Second clamping assembly; 5. Monochrome background plate; 6. Conveyor belt assembly; 7. Lifting drive unit; 8. Connecting plate; 9. First contact seat; 10. Second contact seat; 11. Third contact seat; 12. Recording assembly.
[0028] 31. First slider; 32. First rotary drive unit; 33. First clamping unit; 34. First connecting seat; 35. Fixed plate; 36. Drive wheel;
[0029] 41. Second slider; 42. Second rotary drive unit; 43. Second clamping unit; 44. Second connecting seat;
[0030] 100. Magnesium alloy computer casing. Detailed Implementation
[0031] The present application will be further described below with reference to the accompanying drawings and embodiments.
[0032] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0033] In this application, terms such as "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "side", and "bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only used to facilitate the description of the structural relationship between the various parts or elements of this application and do not specifically refer to any part or element in this application. They should not be construed as limiting this application.
[0034] Example 1
[0035] like Figures 1-5 As shown, this embodiment is a magnesium alloy computer casing transfer device, including a bracket 1, which is a frame structure. A guide rail 2 is installed on the upper end of the bracket 1, and a movable clamping component is installed on the guide rail 2. The clamping component moves along the guide rail 2.
[0036] The clamping assembly includes a rotary drive unit, and a clamping part is mounted on the output shaft of the rotary drive unit. Specifically, the clamping assembly includes a first clamping assembly 3 and a second clamping assembly 4. The first clamping assembly 3 and the second clamping assembly 4 are arranged face-to-face at intervals, that is, the guide rail 2 has two parallel rails, and each guide rail 2 has a clamping assembly. The first clamping assembly 3 and the second clamping assembly 4 clamp the magnesium alloy computer housing 100 from both ends. The rotary drive unit adopts a stepper motor, a rotary cylinder, or other equipment, and the clamping part adopts a pneumatic gripper, an electric gripper, or other equipment.
[0037] The first clamping assembly 3 includes a first slider 31 slidably mounted on the guide rail 2, a first rotary drive 32 mounted on the first slider 31, the first rotary drive 32 being fixed to the first slider 31 by bolts, a first connecting seat 34 mounted on the output shaft of the first rotary drive 32, a first clamping part 33 mounted on the end of the first connecting seat 34 away from the first rotary drive 32, and the first clamping part 33 being fixed to the first connecting seat 34 by bolts. The second clamping assembly 4 includes a second slider 41 slidably mounted on the guide rail 2, a second rotary drive 42 mounted on the second slider 41, a second connecting seat 44 on the output shaft of the second rotary drive 42, a second clamping part 43 mounted on the end of the second connecting seat 44 away from the second rotary drive 42, and the second clamping part 43 being fixed to the second connecting seat 44 by bolts.
[0038] Specifically, the first connecting seat 34 and the second connecting seat 44 in this embodiment have the same structure, both being "mouth"-shaped block structures with cavities inside. To enhance the strength, rib plate structures can be arranged in the cavities.
[0039] As an implementation scheme, the first clamping component 3 and the second clamping component 4 are connected together through a connecting structure. A driving wheel 36 is installed on the first clamping component 3, and the driving wheel 36 drives the first clamping component 3 to move so that the first clamping component 3 and the second clamping component 4 move synchronously. Specifically, the connecting structure can be an integral connecting plate, with one end of the connecting plate fixed to the first slider 31 and the other end fixed to the second slider 41.
[0040] As another implementation scheme, driving wheels 36 are installed on both the first clamping component 3 and the second clamping component 4.
[0041] The driving wheel 36 is driven by a driving assembly. For example, the driving assembly is a motor.
[0042] Specifically, as an implementation scheme, a fixing plate 35 is installed between the first slider 31 and the first rotary driving part 32. A driving assembly is installed on the fixing plate 35, and the driving wheel 36 is fixed to the output shaft of the driving assembly.
[0043] As another implementation scheme, fixing plates 35 are installed between the first slider 31 and the first rotary driving part 32, and between the second slider 41 and the second rotary driving part 42. A driving assembly is installed on the fixing plate 35, the driving wheel 36 is installed on the output shaft of the driving assembly, and the driving assembly is installed on the fixing plate 35 through bolts.
[0044] In this embodiment, the shape of the fixing plate 35 can be L-shaped.
[0045] In this embodiment, a limit switch is installed on the side of the guide rail 2 to limit the moving distance of the clamping component on the guide rail 2.
[0046] In this embodiment, a conveyor belt assembly 6 is arranged below the guide rail 2. The clamping component transports the clamped housing to the conveyor belt on the conveyor belt assembly 6 to complete the transfer of the housing from one transport line to another. A support assembly capable of making a lifting movement is installed below the conveyor belt assembly 6. The support assembly includes a lifting driving part 7. In this embodiment, the lifting driving part 7 is one of an electric cylinder and a cylinder. A connecting plate 8 is installed on the output shaft of the lifting driving part 7. A first contact seat 9, a second contact seat 10, and a third contact seat 11 are installed on the connecting plate 8. The lifting driving part 7 drives the connecting plate 8 to make a lifting movement, thereby enabling the first contact seat 9, the second contact seat 10, and the third contact seat 11 to move simultaneously. Specifically, the first contact seat 9, the second contact seat 10, and the third contact seat 11 are arranged in a "pin" shape.
[0047] In terms of direction, based on the magnesium alloy computer casing 100 moving from the front end to the rear end, the third contact seat 11 is arranged in front of the first contact seat 9 and the second contact seat 10.
[0048] As one implementation scheme, the first contact seat 9 and the second contact seat 10 are suction cups, and the cavities inside the first contact seat 9 and the second contact seat 10 are connected to the air pump through an air supply pipe.
[0049] In another implementation, the third contact seat 11 is a suction cup, and the cavity inside the third contact seat 11 is connected to the air pump through an air supply pipe.
[0050] A contact seat is connected to an air pump, allowing the contact seat to contact and adhere to the magnesium alloy computer housing 100. Two different implementation schemes are applied to different magnesium alloy computer housing 100 structures. For example, some housings have a ventilation hole structure at the top, which is suitable for a scheme where the first contact seat 9 and the second contact seat 10 are suction cups.
[0051] A recording assembly 12 is installed in front of the conveyor belt assembly 6. A monochrome background plate 5 is arranged directly below the recording assembly 12. A contact switch is arranged at the recording assembly 12. When the clamping component moves to the recording assembly 12, the clamping component stops moving. The recording assembly 12 takes a picture of the back of the magnesium alloy computer housing 100. After a set time, the magnesium alloy computer housing 100 is flipped over, and the front of the magnesium alloy computer housing 100 is taken into picture. The pictures are sent to the quality inspection department for quality inspection and archiving.
[0052] The above are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
[0053] While the specific embodiments of this application have been described above in conjunction with the accompanying drawings, this is not intended to limit the scope of protection of this application. Those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without creative effort based on the technical solutions of this application are still within the scope of protection of this application.
Claims
1. A magnesium alloy computer shell transfer device, comprising a support (1), a guide rail (2) is arranged on the support (1), characterized in that, a clamping assembly movably arranged on the guide rail (2) is arranged, the clamping assembly comprises a rotary drive part, a clamping part is arranged on the output shaft of the rotary drive part; a conveying belt assembly (6) is arranged below the guide rail (2), a support assembly capable of lifting and descending is arranged below the conveying belt assembly (6), the support assembly comprises a lifting drive part (7), a connecting plate (8) is arranged on the output shaft of the lifting drive part (7), the connecting plate (8) is provided with a first contact seat (9), a second contact seat (10) and a third contact seat (11), and the first contact seat (9), the second contact seat (10) and the third contact seat (11) are arranged in a "pin" shape. A recording assembly (12) is arranged in front of the conveying belt assembly (6), and a single-color background plate (5) is arranged directly below the recording assembly (12).
2. The magnesium alloy computer shell transfer device according to claim 1, characterized in that, the third contact seat (11) is arranged in front of the first contact seat (9) and the second contact seat (10).
3. The magnesium alloy computer shell transfer device according to claim 2, characterized in that, the first contact seat (9) and the second contact seat (10) are suction cups, and the cavities in the first contact seat (9) and the second contact seat (10) are connected with the air pump through the air conveying pipe.
4. The magnesium alloy computer shell transfer device according to claim 2, characterized in that, the third contact seat (11) is a suction cup, and the cavity in the third contact seat (11) is connected with the air pump through the air conveying pipe.
5. The magnesium alloy computer shell transfer device according to claim 1, characterized in that, the clamping assembly comprises a first clamping assembly (3) and a second clamping assembly (4), the first clamping assembly (3) and the second clamping assembly (4) are arranged face to face and spaced apart, and the first clamping assembly (3) and the second clamping assembly (4) clamp the magnesium alloy computer shell (100) from both ends of the magnesium alloy computer shell (100).
6. The magnesium alloy computer shell transfer device according to claim 5, characterized in that, the first clamping assembly (3) comprises a first sliding block (31) slidingly arranged on the guide rail (2), a first rotary drive part (32) is arranged on the first sliding block (31), a first connecting seat (34) is arranged on the output shaft of the first rotary drive part (32), and a first clamping part (33) is arranged on one end of the first connecting seat (34) away from the first rotary drive part (32); the second clamping assembly (4) comprises a second sliding block (41) slidingly arranged on the guide rail (2), a second rotary drive part (42) is arranged on the second sliding block (41), a second connecting seat (44) is arranged on the output shaft of the second rotary drive part (42), and a second clamping part (43) is arranged on one end of the second connecting seat (44) away from the second rotary drive part (42).
7. The magnesium alloy computer shell transfer device according to claim 6, characterized in that, The first clamping assembly (3) and the second clamping assembly (4) are connected together through a connecting structure, and the first clamping assembly (3) is provided with a driving wheel (36).
8. The magnesium alloy computer housing transfer device of claim 6, wherein, The first clamping assembly (3) and the second clamping assembly (4) are connected together through a connecting structure, and the first clamping assembly (3) is provided with a driving wheel (36).
9. The magnesium alloy computer housing transfer device of claim 7, wherein, The first sliding block (31) and the first rotary driving part (32) are provided with a fixing plate (35), the fixing plate (35) is provided with a driving assembly, and the driving wheel (36) is arranged on an output shaft of the driving assembly.
10. The magnesium alloy computer housing transfer device of claim 8, wherein, The first sliding block (31) and the first rotary driving part (32) and the second sliding block (41) and the second rotary driving part (42) are provided with a fixing plate (35), the fixing plate (35) is provided with a driving assembly, and the driving wheel (36) is arranged on an output shaft of the driving assembly.