Radiator assembling tool
By designing a radiator assembly tooling including swing cylinders and deep groove ball bearings, the problems of low assembly efficiency and position deviation in the prior art are solved, and a more efficient assembly process and more accurate consistent position are achieved.
Patent Information
- Application Number
- CN202421765119.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-24
AI Technical Summary
In the prior art, the assembly and welding of the radiator sheet tube requires manual assembly and welding, resulting in high repetitive work strength and low efficiency, and easy position deviation when the components move in different processes.
A radiator assembly tool is designed, including a base, a manual valve, a swing cylinder mounting seat, a deep groove ball bearing mounting seat and a radiator mounting seat. The radiator mounting seat is rotated by the swing cylinder and a deep groove ball bearing, which is easy to operate. The limit structure of the graphite sheet placement groove and the radiator placement groove and the clamping direction of the G-shaped clamp are opposite to the driving direction of the threaded cylinder, ensuring the consistency of the position between the graphite sheet and the radiator.
It improves the efficiency of radiator assembly, facilitates the movement of components in different processes, avoids positional deviation between graphite sheet and radiator during rotation, and ensures the accuracy and consistency of the assembly process.
Smart Images

Figure CN223028852U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of radiator processing and manufacturing, and particularly relates to a radiator assembly tooling. Background Technique
[0002] In the prior art, the processes of assembling and welding radiator fin tubes need to be sequentially assembled and welded manually, and positioning and welding fixation are required multiple times. These repetitive tasks not only have a large manual labor intensity and low efficiency, but also during the transfer of assembled components in different processes, the assembled components are prone to relative movement during the movement, resulting in position deviation. Content of the Utility Model
[0003] The purpose of the utility model is to provide a radiator assembly tooling that can improve the assembly efficiency and facilitate transfer.
[0004] The technical solution of the utility model is: a radiator assembly tooling, including a base, a manual valve, a swing cylinder mounting seat, and a deep groove ball bearing mounting seat arranged on the base. The swing cylinder mounting seat and the deep groove ball bearing mounting seat are coaxially arranged facing each other. A swing cylinder is fixedly installed on the swing cylinder mounting seat, the manual valve is connected to the swing cylinder, a deep groove ball bearing is fixedly installed on the deep groove ball bearing mounting seat, and a radiator mounting seat is arranged between the swing cylinder and the deep groove ball bearing.
[0005] A further technical solution is that a cavity is formed inside the radiator mounting seat. Limiting protrusions are arranged on the inner walls of the left and right ends of the radiator mounting seat located in the cavity, and a graphite sheet placement groove is formed between the two limiting protrusions. The inner wall of the top of the radiator mounting seat located in the cavity is recessed inward to form a radiator placement groove.
[0006] A further technical solution is that at least one threaded cylinder is installed on the front side wall or the rear side wall of the radiator mounting seat.
[0007] A further technical solution is that an installation groove for installing a G-clamp is arranged on the radiator mounting seat on one side of the threaded cylinder, and the clamping direction of the G-clamp is opposite to the driving direction of the threaded cylinder.
[0008] The beneficial effects of the utility model:
[0009] The structure of the utility model is simple. The radiator mounting seat can rotate under the action of the swing cylinder and the deep groove ball bearing, which is convenient for staff or manipulators to operate. The graphite sheet placement groove and the radiator placement groove form limits, ensuring the positional relationship between the graphite sheet and the radiator during the assembly process. The clamping direction of the G-clamp is opposite to the driving direction of the threaded cylinder, thus ensuring the position consistency of the graphite sheet and the radiator after placement, avoiding the position deviation of the graphite sheet and the radiator during rotation, and facilitating the movement of the assembled components in different processes. Description of the Drawings
[0010] Figure 1 This is a schematic structural view of the present utility model.
[0011] Figure 2 It is Figure 1 a schematic structural view of the radiator mounting seat in
[0012] Among them, 1. Base, 2. Manual valve, 3. Swing cylinder mounting seat, 4. Swing cylinder, 5. Deep groove ball bearing mounting seat, 6. Deep groove ball bearing, 7. Radiator mounting seat, 8. Limit projection, 9. Graphite sheet, 10. Radiator, 11. Threaded cylinder, 12. G-clamp. Specific embodiments
[0013] The present utility model will be further elaborated and understood through non-restrictive embodiments below.
[0014] As Figure 1-2 shown, the present utility model provides a radiator assembly tooling, including a base 1, a manual valve 2, a swing cylinder mounting seat 3, and a deep groove ball bearing mounting seat 5 provided on the base 1. The swing cylinder mounting seat 3 and the deep groove ball bearing mounting seat 5 are coaxially arranged facing each other. A swing cylinder 4 is fixedly installed on the swing cylinder mounting seat 3, and a deep groove ball bearing 6 is fixedly installed on the deep groove ball bearing mounting seat 5. A radiator mounting seat 7 is provided between the swing cylinder 4 and the deep groove ball bearing 6.
[0015] At least one threaded cylinder 11 is installed on the front side wall or the rear side wall of the radiator mounting seat 7. An installation groove for installing the G-clamp 12 is provided on the radiator mounting seat 7 on one side of the threaded cylinder 11. The clamping direction of the G-clamp 12 is opposite to the driving direction of the threaded cylinder 11.
[0016] A cavity is formed inside the radiator mounting seat 7. Limit projections 8 are provided on the inner walls of the left and right ends of the cavity on the radiator mounting seat 7. A graphite sheet 9 placement groove is formed between the two limit projections 8. The inner wall of the top of the cavity of the radiator mounting seat 7 is recessed inward to form a radiator 10 placement groove.
[0017] During use, first place the G-clamp 12 into the installation groove. After inserting the graphite sheets into the graphite sheet 9 placement groove respectively, place the radiator in the radiator 10 placement groove. The threaded cylinder 11 works, acting on one side of the graphite sheet, so that the graphite sheet clamps the radiator, avoiding relative movement between the graphite sheet and the radiator. Open the manual valve 2, the swing cylinder 4 works, rotate the radiator mounting seat 7, so that the tightened G-clamp 12 is set upward, and tighten the G-clamp 12, thus facilitating subsequent welding work.
[0018] In summary, the structure of the present utility model is simple. The radiator mounting seat 7 can rotate under the action of the oscillating cylinder 4 and the deep groove ball bearing 6, which is convenient for the operation of workers or manipulators. The placement grooves for the graphite sheet 9 and the radiator 10 form a limit, ensuring the positional relationship between the graphite sheet 9 and the radiator 10 during the assembly process. The clamping direction of the G-clamp 12 is opposite to the driving direction of the threaded cylinder 11, thus ensuring the positional consistency of the graphite sheet 9 and the radiator 10 after placement, and avoiding the displacement of the positions of the graphite sheet 9 and the radiator 10 during rotation, which is convenient for the assembled components to move in different processes.
[0019] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various changes and modifications can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A radiator assembly tool, characterized in that: It includes a base, a manual valve arranged on the base, a swing cylinder mounting seat, and a deep groove ball bearing mounting seat. The swing cylinder mounting seat and the deep groove ball bearing mounting seat are coaxially arranged facing each other. A swing cylinder is fixedly mounted on the swing cylinder mounting seat. The manual valve is connected to the swing cylinder. A deep groove ball bearing is fixedly mounted on the deep groove ball bearing mounting seat. A radiator mounting seat is arranged between the swing cylinder and the deep groove ball bearing.
2. The heat sink assembly tool according to claim 1, characterized in that: A cavity is formed in the radiator mounting seat, and limiting protrusions are arranged on the inner walls of the left and right ends of the cavity. A graphite sheet placement groove is formed between the two limiting protrusions. The radiator mounting seat is located on the top inner wall of the cavity and is recessed inward to form a radiator placement groove.
3. The heat sink assembly tool according to claim 2, characterized in that: At least one threaded cylinder is installed on the front side wall or the rear side wall of the radiator mounting seat.
4. The heat sink assembly tool according to claim 3, characterized in that: A mounting groove for mounting a G-shaped clamp is arranged on one side of the threaded cylinder on the radiator mounting seat, and the clamping direction of the G-shaped clamp is opposite to the driving direction of the threaded cylinder.