Power supply case assembling and processing equipment

Through the innovative design of support base, drive assembly and adjustment assembly, the problem of overlapping assembly and transfer area in traditional chassis assembly equipment is solved, and the convenience and efficiency of chassis assembly are achieved, ensuring the precise adjustment and stability of the assembly table.

CN223160859UActive Publication Date: 2025-07-29SPRING ELECTRONICS WUJIANG
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Patent Information

Application Number
CN202422395117.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-29
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The assembly area and the transfer area of the traditional chassis assembly equipment overlap, affecting the work efficiency of the operating area staff and inconvenient for the continuous transfer of the chassis.

Method used

A power supply chassis assembly and processing equipment is designed. Through the combination of support base, drive assembly and adjustment assembly, the plug-and-release connection and limit of the operating table and the support are realized, and the cylinder drives the transmission shaft for lifting and lowering adjustment. The servo motor drives the worm gear and worm transmission to achieve 180° rotation of the operating table, combining positioning parts and gear transmission to ensure the precise adjustment and transport of the assembled table.

Benefits of technology

It improves the convenience and efficiency of chassis assembly, ensures accurate switching of the assembly table between different stations, realizes the separation operation between the assembly area and the transfer area, and improves the processing efficiency and equipment stability.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223160859U_ABST
    Figure CN223160859U_ABST
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Abstract

The utility model relates to the technical field of machining equipment, in particular to power supply case assembling and machining equipment which comprises a supporting base and a driving assembly, an air cylinder is arranged in a cavity of the supporting base, a transmission shaft is rotatably arranged at the output end of the air cylinder and penetrates through a through hole of a supporting piece, and the supporting piece is arranged at the top end of the supporting base. An operation table is coaxially arranged on the transmission shaft and is in matched plugging connection with a positioning groove of the supporting piece, assembling tables are rotationally arranged in inner grooves in the two ends of the operation table respectively, positioning shafts are coaxially arranged on the assembling tables and rotationally arranged in shaft holes of the operation table, and the driving assembly is arranged in a cavity of the supporting base; the driving assembly is used for adjusting the working positions of the two assembling tables on the operation table driven by the transmission shaft. The adjusting assembly is arranged on the supporting piece, and the adjusting assembly is used for driving the assembling table in the assembling area to rotate; the claim 1 is beneficial effect abbreviation.
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Description

Technical Field

[0001] The utility model relates to the technical field of processing equipment, in particular to power supply chassis assembly processing equipment. Background Art

[0002] A power supply chassis is usually a housing used to accommodate a computer power supply and other related hardware. In a computer system, the power supply chassis not only provides physical protection but also manages the internal cables to ensure good air circulation, thereby helping with heat dissipation and reducing electromagnetic interference. In industrial production and manufacturing environments, the power supply chassis may refer to the housings used for electrical or electronic equipment within a wider range of applications, and these housings also need to meet certain protection level standards, such as IP ratings, to ensure that the internal components are not affected by the external environment.

[0003] In traditional chassis assembly equipment, the assembly area and the transfer area overlap. The disassembly and assembly process of the chassis will affect the work of the staff in the operation area. At the same time, it is not convenient for the chassis to be assembled and the completed chassis to be continuously transferred, affecting the processing efficiency. Summary of the Utility Model

[0004] To solve the above technical problems, the utility model provides a power supply chassis assembly processing equipment with smooth assembly processes and improved processing efficiency.

[0005] The power supply chassis assembly processing equipment of the utility model includes:

[0006] A support base and a drive assembly. Inside the cavity of the support base, there is a cylinder. The output end of the cylinder is rotatably provided with a transmission shaft. The transmission shaft passes through the through-hole of the support member. The support member is arranged at the top of the support base. A console is coaxially arranged on the transmission shaft. The console is connected to the positioning groove of the support member in a pluggable and unplugable manner. Inside the inner grooves at both ends of the console, there are respectively rotatably arranged assembly tables. On the assembly tables, there are coaxially arranged positioning shafts. The positioning shafts are rotatably arranged inside the shaft holes of the console. The drive assembly is arranged inside the cavity of the support base. The drive assembly is used to adjust the working positions of the two groups of assembly tables on the console driven by the transmission shaft;

[0007] An adjustment assembly is arranged on the support member. The adjustment assembly is used to drive the assembly table in the assembly area to rotate.

[0008] Further, the drive assembly includes a mounting member arranged inside the cavity of the support base. Inside the inner hole of the mounting member, there is a hollow shaft rotatably arranged. The transmission shaft is slidably arranged inside the inner cavity of the hollow shaft. A worm gear is coaxially arranged on the hollow shaft. The worm gear is in meshing transmission connection with a worm. The worm is coaxially arranged at the output end of a servo motor. The servo motor is arranged inside the cavity of the support base.

[0009] Preferably, when the servo motor is started once, it drives the console to rotate 180° through the meshing of the worm gear and the worm.

[0010] Further, a fixing member is provided on the mounting member, and the worm is rotatably arranged in the positioning hole of the fixing member.

[0011] Preferably, the adjusting assembly includes a transmission member rotatably arranged in the mounting hole of the support member. A positioning member is coaxially arranged on the positioning shaft. The positioning member is in plug-in connection with the positioning hole of the transmission member in a matching manner. The transmission member is provided with rotational power by the power assembly.

[0012] Further, the power assembly includes a conduction shaft rotatably arranged on the support member. A driving gear is coaxially arranged on the conduction shaft. A driven gear is coaxially arranged on the transmission member. The driven gear is in meshing transmission connection with the driving gear.

[0013] Preferably, an adjusting wheel is coaxially arranged on the conduction shaft.

[0014] Further, an isolating member is provided on the support member. The driving gear and the driven gear are located in the inner groove of the isolating member.

[0015] Preferably, a plurality of support feet are provided at the bottom end of the support base.

[0016] Further, a damping pad is provided at the rotational connection between the positioning shaft and the operation table.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: Through the plug-in connection between the operation table and the positioning groove of the support member, the operation table is limited during the assembly work, and at the same time, it is convenient to contact during the position adjustment of the operation table. The cylinder drives the transmission shaft to drive the position of the operation table to be adjusted up and down. This design increases the disassembly and assembly convenience between the operation table and the support member. Two assembly tables are provided on the operation table, so that the assembly area and the transportation area can be operated separately. That is, when assembling in the assembly area, the assembled chassis on the assembly table in the disassembly area is transferred, and then the chassis to be assembled is positioned and placed. The rotation connection between the assembly table and the operation table makes it convenient to rotate the angle during the chassis assembly, which is convenient for multi-sided assembly of the chassis. The driving assembly is used to drive the transmission shaft to adjust the working positions of the two assembly tables on the operation table, and to transfer the assembled chassis and convey the chassis to be assembled. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the front view structural schematic diagram of the present utility model;

[0019] Figure 2 is the axonometric structural schematic diagram of the present utility model;

[0020] Figure 3 is the internal structural schematic diagram of the present utility model;

[0021] Figure 4 is the part structural schematic diagram of the present utility model;

[0022] Reference numerals in the drawings: 1, support base; 2, cylinder; 3, transmission shaft; 4, operating table; 5, support member; 6, assembly table; 7, positioning shaft; 8, mounting member; 9, hollow shaft; 10, worm gear; 11, worm; 12, servo motor; 13, fixing member; 14, transmission member; 15, positioning member; 16, conduction shaft; 17, driving gear; 19, driven gear; 20, adjusting wheel; 21, spacer; 22, support foot. Detailed implementation manners

[0023] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0024] As Figures 1 to 4 shown, the power supply chassis assembly and processing equipment of the present utility model includes:

[0025] A support base 1 and a driving assembly. Inside the cavity of the support base 1, a cylinder 2 is arranged. The output end of the cylinder 2 is rotatably provided with a transmission shaft 3. The transmission shaft 3 passes through the through hole of the support member 5. The support member 5 is arranged at the top end of the support base 1. A coaxial operating table 4 is arranged on the transmission shaft 3. The operating table 4 is in plug-and-play connection with the positioning groove of the support member 5. Assembly tables 6 are respectively rotatably arranged in the inner grooves at both ends of the operating table 4. A positioning shaft 7 is coaxially arranged on the assembly table 6. The positioning shaft 7 is rotatably arranged inside the shaft hole of the operating table 4. The driving assembly is arranged inside the cavity of the support base 1. The driving assembly is used to drive the two groups of assembly tables 6 on the operating table 4 to adjust their working positions;

[0026] An adjusting assembly is arranged on the support member 5. The adjusting assembly is used to drive the assembly table 6 in the assembly area to rotate; through the plug-and-play connection between the operating table 4 and the positioning groove of the support member 5, the operating table 4 is limited during the assembly work, and at the same time, it is convenient to contact during the station adjustment of the operating table 4. The position of the operating table 4 is lifted and adjusted by the cylinder 2 to drive the transmission shaft 3. This design increases the disassembly and assembly convenience between the operating table 4 and the support member 5. By arranging two groups of assembly tables 6 on the operating table 4, the assembly area and the transportation area are respectively operated. That is, when assembling in the assembly area, the assembled chassis on the assembly table 6 in the disassembly and assembly area is transferred, and then the chassis to be assembled is positioned and placed. The chassis is convenient to rotate at an angle during assembly by the rotational connection between the assembly table 6 and the operating table 4, which is convenient for multi-faceted assembly of the chassis. The driving assembly is used to drive the two groups of assembly tables 6 on the operating table 4 to adjust their working positions and transfer the assembled chassis and convey the chassis to be assembled.

[0027] As Figures 1 to 4As shown, as a preferred solution, the drive assembly includes a mounting member 8 disposed inside the cavity of the support base 1. A hollow shaft 9 is rotatably disposed in the inner hole of the mounting member 8. A transmission shaft 3 is slidably disposed in the inner cavity of the hollow shaft 9. A worm gear 10 is coaxially disposed on the hollow shaft 9. The worm gear 10 is in meshing transmission connection with a worm 11. The worm 11 is coaxially disposed at the output end of a servo motor 12. The servo motor 12 is disposed inside the cavity of the support base 1. Each time the servo motor 12 is started, it drives the operation table 4 to rotate 180° through the meshing of the worm gear 10 and the worm 11. A fixing member 13 is disposed on the mounting member 8. The worm 11 is rotatably disposed in the positioning hole of the fixing member 13. The drive assembly includes a mounting member 8 disposed inside the cavity of the support base 1. A hollow shaft 9 is rotatably disposed in the inner hole of the mounting member 8. A transmission shaft 3 is slidably disposed in the inner cavity of the hollow shaft 9. This design makes the transmission shaft 3 more stable when driving the operation table 4 to rotate. At the same time, when the air cylinder 2 drives the position of the transmission shaft 3 to move, the transmission relationship between the transmission shaft 3 and the hollow shaft 9 remains unchanged. Each time the servo motor 12 is started, it drives the operation table 4 to rotate 180° through the meshing of the worm gear 10 and the worm 11. This design makes the rotation angle of the operation table 4 very accurate, ensuring the accurate switching of the assembly table 6 between different workstations. A fixing member 13 is disposed on the mounting member 8. The worm 11 is rotatably disposed in the positioning hole of the fixing member 13. This design makes the worm 11 more stable when rotating, avoiding the position deviation of the operation table 4 caused by unstable transmission. The meshing of the worm 11 and the worm gear 10 enables speed reduction transmission, and at the same time, the transmission has a self-locking function.

[0028] As Figures 1 to 4 shown, as a preferred solution, the adjustment assembly includes a transmission member 14 rotatably disposed in the mounting hole of the support member 5. A positioning member 15 is coaxially disposed on the positioning shaft 7. The positioning member 15 is in pluggable connection with the positioning hole of the transmission member 14. The transmission member 14 is provided with rotational power by a power assembly. When the operation table 4 is lifted and adjusted through the pluggable connection of the positioning member 15 and the transmission member 14, the connection can be freely disassembled and assembled. The positioning member 15 enables the transmission member 14 to be coaxially connected with the positioning shaft 7 in the assembly area. The transmission member 14 enables the assembly table 6 in the assembly area to drive the chassis for angle adjustment.

[0029] As Figures 1 to 4As shown in the figure, as a preferred solution, the power assembly includes a conduction shaft 16 rotatably arranged on the support member 5. An active gear 17 is coaxially arranged on the conduction shaft 16, and a driven gear 19 is coaxially arranged on the transmission member 14. The driven gear 19 is meshed and drivingly connected with the active gear 17. An adjustment wheel 20 is coaxially arranged on the conduction shaft 16. An isolation member 21 is arranged on the support member 5. The active gear 17 and the driven gear 19 are located in the inner groove of the isolation member 21. Through the meshing of the active gear 17 and the driven gear 19, power can be efficiently transmitted from the conduction shaft 16 to the transmission member 14. The design of the adjustment wheel 20 enables the user to conveniently drive the conduction shaft 16 to rotate by rotating the adjustment wheel 20. The active gear 17 and the driven gear 19 are isolated by the isolation member 21, avoiding accidental contact of the operator with the rotating gears during the operation of the equipment and improving the safety of the equipment.

[0030] As Figures 1 to 4 shown in the figure, as a preferred solution, multiple groups of support feet 22 are arranged at the bottom end of the support base 1; multiple groups of support feet 22 are arranged at the bottom end of the support base 1. This design makes the equipment more stable when placed, avoiding the inclination or movement of the equipment caused by uneven ground or slight vibration and improving the stability of the equipment.

[0031] As Figures 1 to 4 shown in the figure, as a preferred solution, a damping pad is arranged at the rotational connection of the positioning shaft 7 and the operation table 4; through the damping pad, the rotational friction between the assembly table 6 and the operation table 4 is increased, increasing the stability during the cabinet assembly process and preventing the sliding of the assembly table 6 during the assembly process from affecting the assembly process.

[0032] As Figures 1 to 4 shown in the figure, as a preferred solution, its working process is as follows:

[0033] When the angle needs to be adjusted during the cabinet assembly, the user drives the conduction shaft 16 to rotate by rotating the adjustment wheel 20. The active gear 17 on the conduction shaft 16 drives the driven gear 19 to rotate. The rotation of the driven gear 19 drives the positioning shaft 7 to rotate through the transmission member 14, thereby adjusting the angle of the assembly table 6. When the cabinet assembly is completed, the user starts the cylinder 2. The output end of the cylinder 2 pushes the transmission shaft 3 upward, causing the operation table 4 to separate from the support member 5. At the same time, the positioning member 15 separates from the transmission member 14. Then, the servo motor 12 is started. The servo motor 12 drives the worm gear 10 to rotate through the worm 11. When the worm gear 10 rotates, it drives the hollow shaft 9 and the transmission shaft 3 to rotate together. After the transmission shaft 3 drives the two operation tables 4 to rotate 180°, the rotation of the servo motor 12 stops. Then, the cylinder 2 drives the operation table 4 to descend for reset. Then, the positioning member 15 is re-mated with the transmission member 14. At this time, the assembled cabinet is flipped to the transfer area, and the cabinet to be assembled is flipped to the assembly area for assembly.

[0034] The power supply chassis assembly and processing equipment of the present utility model adopts common mechanical methods for installation, connection or setting, and any implementation method that can achieve its beneficial effects is acceptable.

[0035] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. Power supply chassis assembly and processing equipment, characterized in that, Comprising: A support base and a drive assembly. Inside the cavity of the support base, there is a cylinder. The output end of the cylinder is rotatably provided with a transmission shaft. The transmission shaft passes through the through-hole of the support member. The support member is arranged at the top of the support base. A console is coaxially arranged on the transmission shaft. The console is detachably connected in a plug-and-play manner with the positioning groove of the support member. Assembly tables are respectively rotatably arranged in the inner grooves at both ends of the console. A positioning shaft is coaxially arranged on the assembly table. The positioning shaft is rotatably arranged inside the shaft hole of the console. The drive assembly is arranged inside the cavity of the support base. The drive assembly is used to adjust the working positions of the two groups of assembly tables on the console driven by the transmission shaft. An adjustment assembly. The adjustment assembly is arranged on the support member. The adjustment assembly is used to drive the assembly table in the assembly area to rotate.

2. The power supply chassis assembly and processing equipment according to claim 1, characterized in that The drive assembly includes a mounting member arranged inside the cavity of the support base. A hollow shaft is rotatably arranged in the inner hole of the mounting member. The transmission shaft is slidably arranged inside the inner cavity of the hollow shaft. A worm gear is coaxially arranged on the hollow shaft. The worm gear is in meshing transmission connection with a worm. The worm is coaxially arranged at the output end of a servo motor. The servo motor is arranged inside the cavity of the support base.

3. The power supply chassis assembly and processing equipment according to claim 2, characterized in that, Each time the servo motor is started, it drives the console to rotate 180° through the meshing of the worm gear and the worm.

4. The power supply chassis assembly and processing equipment according to claim 3, characterized in that, A fixing member is arranged on the mounting member. The worm is rotatably arranged in the positioning hole of the fixing member.

5. The power supply chassis assembly and processing equipment according to claim 1, characterized in that, The adjustment assembly includes a transmission member rotatably arranged in the mounting hole of the support member. A positioning member is coaxially arranged on the positioning shaft. The positioning member is detachably connected in a plug-and-play manner with the positioning hole of the transmission member. The transmission member is provided with rotational power by a power assembly.

6. The power supply chassis assembly and processing equipment according to claim 5, wherein The power assembly includes a conduction shaft rotatably arranged on the support member. A driving gear is coaxially arranged on the conduction shaft. A driven gear is coaxially arranged on the transmission member. The driven gear is in meshing transmission connection with the driving gear.

7. The power supply chassis assembly and processing equipment according to claim 6, characterized in that, An adjustment wheel is coaxially arranged on the conduction shaft.

8. The power supply chassis assembly and processing equipment according to claim 6, characterized in that, An isolating member is arranged on the support member. The driving gear and the driven gear are located in the inner groove of the isolating member.

9. The power supply chassis assembly and processing equipment according to claim 1, characterized in that, Multiple support feet are arranged at the bottom end of the support base.

10. The power supply chassis assembly and processing equipment according to claim 1, characterized in that, A damping pad is arranged at the rotational connection between the positioning shaft and the console.