Frame assembly welding table with cooling structure

By integrating a cooling structure with a fan and a cooling block on the welding table, combined with a motor-driven clamping system, the problem of high temperature after welding is solved, achieving rapid cooling and efficient processing.

CN224073652UActive Publication Date: 2026-04-03WUHU ZHUODING QIHAN METAL PRODUCTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

After the frame assembly is welded on the welding platform, the temperature at the weld is high, which requires operators to wait for it to cool down naturally, affecting processing efficiency.

Method used

Design a frame assembly welding station with a cooling structure. By combining a fan and a cooling block, the heat at the welding point is quickly removed by cold air. The station is also equipped with a motor-driven clamping block system to accommodate frame assemblies of different sizes, thus improving adaptability.

Benefits of technology

Rapid cooling at the weld joints was achieved, saving waiting time and improving the overall processing efficiency of the frame assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of welding tables, and particularly relates to a frame assembly welding table with a cooling structure, which comprises a working table, a vertical frame is connected to the top surface of the working table, a conveying pipe is connected to the top surface of the vertical frame, and an air outlet nozzle is connected to the bottom surface of the vertical frame. And the other end of the air outlet nozzle penetrates through the vertical frame and is connected with a conveying pipe. By starting the fan, external air can pass through the interior of the mounting block, and when air flows through the through holes in the conduction block, the conduction block cooled by the refrigeration block can absorb heat in the circulating air, so that the cooled air enters the air inlet pipe and then is conveyed into the conveying pipe through the connecting pipe at the output end of the fan; in this way, cold air can be conveyed downwards from the air outlet nozzle, heat at the welding position of the frame assembly can be rapidly taken away when the cold air passes through the frame assembly, the welding position of the frame assembly can be rapidly cooled, the waiting time is saved, and the overall machining efficiency of the frame assembly is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of welding station technology, specifically relating to a frame assembly welding station with a cooling structure. Background Technology

[0002] Welding is one of the most common connection methods, especially in the welding of some metal frames, where the welding process can be considered crucial.

[0003] When welding the frame assembly, the operator first places the frame assembly on the welding platform, and then uses a handheld welding tool to weld the frame assembly. After the welding operation is completed on the welding platform, the temperature of the welded area is high. At this time, the operator needs to wait for the temperature of the welded area to drop naturally before proceeding with subsequent operations on the frame assembly. This waiting time is relatively long, which affects the overall processing efficiency of the frame assembly.

[0004] Therefore, this utility model provides a frame assembly welding station with a cooling structure to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a frame assembly welding station with a cooling structure, which aims to solve the problem in the prior art where the temperature of the welded part of the frame assembly is high after the welding operation is completed on the welding platform. At this time, the operator needs to wait for the temperature of the welded part to drop naturally before the subsequent operation of the frame assembly can be carried out. This waiting time is long and affects the overall processing efficiency of the frame assembly.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a frame assembly welding table with a cooling structure, comprising a workbench, a support frame connected to the top surface of the workbench, a conveying pipe connected to the top surface of the support frame, and an air outlet connected to the bottom surface of the support frame. The other end of the air outlet passes through the support frame and is connected to the conveying pipe. A connecting pipe is connected to the top surface of the conveying pipe, and the other end of the connecting pipe is connected to the output end of a fan. An air inlet pipe is connected to the output end of the fan, and the other end of the air inlet pipe extends into the interior of a mounting block. A through mounting groove is formed on the front surface of the mounting block, and a conductive block is connected to the inner surface of the mounting groove. A through hole is formed on the top surface of the conductive block. Cooling blocks are connected to both ends of the mounting block, and the cold surface of the cooling block contacts one end surface of the conductive block. A frame assembly is placed on the top surface of the workbench, and clamping blocks are connected to the top surfaces at both ends of the workbench.

[0007] In order to facilitate the assembly and disassembly of the protective net, as a preferred example of a frame assembly welding table with a cooling structure according to this utility model, the bottom surface of the mounting block is connected to the protective net, and a bolt is connected through the bottom surface of the protective net, with the other end of the bolt forming a threaded connection with the mounting block.

[0008] In order to protect the clamped frame assembly, as a preferred embodiment of the frame assembly welding station with a cooling structure of this utility model, a rubber block is connected to the side surface of the clamping block facing the frame assembly.

[0009] In order to realize the movement of the moving block, as a preferred example of a frame assembly welding table with a cooling structure of this utility model, the bottom surface of the worktable is provided with a moving groove, the inner two ends of the moving groove are embedded with bearings, a bidirectional screw is connected between the two bearings, one end of the bidirectional screw extends into the worktable and is connected to the output end of the motor, and the moving block is connected through both ends of the bidirectional screw.

[0010] In order to enable the movement of the clamping block, as a preferred example of a frame assembly welding table with a cooling structure according to this utility model, the top surfaces of both ends of the moving block are connected to connecting blocks, the other end of the connecting block passes through a sliding groove opened on the top surface of the workbench, and the top surface of the connecting block is connected to a clamping block.

[0011] In order to achieve normal operation control of the fan, cooling block and motor, as a preferred embodiment of the frame assembly welding station with cooling structure of this utility model, the fan, cooling block and motor are electrically connected to an external power supply through a control switch.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] This invention utilizes a fan to allow external air to pass through the mounting block. As the airflow passes through the through-holes in the conductive block, the conductive block, cooled by the cooling block, absorbs the heat from the flowing air. The cooled air then enters the air inlet pipe and is transported into the delivery pipe through the connecting pipe at the fan's output end. This allows the cold air to flow downwards from the air outlet, quickly carrying away the heat from the welded joints of the frame assembly. This enables the welded joints of the frame assembly to cool down more quickly, saving waiting time and improving the overall processing efficiency of the frame assembly.

[0014] This invention uses a motor to start, which drives a bidirectional screw to rotate. The moving block on the bidirectional screw moves the clamping block through the connecting block. By adjusting the position of the clamping block, it can clamp and fix frame assemblies of different sizes, thereby improving the adaptability of the welding station. Attached Figure Description

[0015] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0017] Figure 2 This is a schematic diagram of the structure of this utility model from below;

[0018] Figure 3 This is a partial exploded view of the mounting block of this utility model;

[0019] Figure 4 This utility model Figure 2 A magnified schematic diagram of the structure at point A in the middle.

[0020] In the diagram: 1. Workbench; 2. Stand; 3. Conveying pipe; 4. Air outlet; 5. Connecting pipe; 6. Fan; 7. Air inlet pipe; 8. Mounting block; 9. Mounting groove; 10. Conducting block; 11. Cooling block; 12. Through hole; 13. Protective net; 14. Bolt; 15. Frame assembly; 16. Clamping block; 17. Rubber block; 18. Moving groove; 19. Bearing; 20. Double-acting screw; 21. Motor; 22. Moving block; 23. Connecting block; 24. Slide groove. Detailed Implementation

[0021] 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.

[0022] Please see Figures 1-4The present invention provides the following technical solution: a frame assembly welding table with a cooling structure, including a workbench 1, a support frame 2 connected to the top surface of the workbench 1, a conveying pipe 3 connected to the top surface of the support frame 2, and an air outlet 4 connected to the bottom surface of the support frame 2. The other end of the air outlet 4 passes through the support frame 2 and is connected to the conveying pipe 3. A connecting pipe 5 is connected to the top surface of the conveying pipe 3. The other end of the connecting pipe 5 is connected to the output end of a fan 6. An air inlet pipe 7 is connected to the output end of the fan 6. The other end of the air inlet pipe 7 extends into the interior of a mounting block 8. A through mounting groove 9 is opened on the front surface of the mounting block 8. A conductive block 10 is connected to the inner surface of the mounting groove 9. A through hole 12 is opened on the top surface of the conductive block 10. Cooling blocks 11 are connected to both ends of the mounting block 8. The cold surface of the cooling block 11 is in contact with one end of the conductive block 10. A frame assembly 15 is placed on the top surface of the workbench 1. Clamping blocks 16 are connected to the top surfaces at both ends of the workbench 1.

[0023] Preferably, a protective net 13 is connected to the bottom surface of the mounting block 8, and a bolt 14 is connected through the bottom surface of the protective net 13, with the other end of the bolt 14 forming a threaded connection with the mounting block 8.

[0024] In practical use, bolts 14 are used to thread through the protective net 13 and screw it into the mounting block 8. The protective net 13 will be fixed to the bottom of the mounting block 8, so that the protective net 13 can cover and protect the opening at the bottom of the mounting block 8.

[0025] Preferably, a rubber block 17 is attached to the side surface of the clamping block 16 facing the frame assembly 15.

[0026] In actual use, when the clamping block 16 holds the frame assembly 15, the rubber block 17 on one side of the clamping block 16 will come into contact with the frame assembly 15, thereby protecting the contact surface of the frame assembly 15 and preventing the frame assembly 15 from being scratched.

[0027] Preferably, a movable groove 18 is provided on the bottom surface of the workbench 1, and bearings 19 are embedded on the inner two ends of the movable groove 18. A bidirectional screw 20 is connected between the two bearings 19. One end of the bidirectional screw 20 extends into the workbench 1 and is connected to the output end of the motor 21. Movable blocks 22 are connected through both ends of the bidirectional screw 20.

[0028] In actual use, start the motor 21, and let the output end of the motor 21 drive the bidirectional screw 20 to rotate in the bearing 19. At this time, the moving block 22 on the bidirectional screw 20 will move along the moving groove 18.

[0029] Preferably, the top surfaces of both ends of the movable block 22 are connected to connecting blocks 23, the other end of the connecting block 23 passes through the slide groove 24 opened on the top surface of the workbench 1, and the top surface of the connecting block 23 is connected to a clamping block 16.

[0030] In practical use, when the moving block 22 moves, it will drive the connecting block 23 to move in the slide 24. At this time, the connecting block 23 can drive the clamping block 16 to move.

[0031] Preferably, the fan 6, the cooling block 11, and the motor 21 are electrically connected to an external power source via a control switch.

[0032] In actual use, the fan 6, the cooling block 11 and the motor 21 can all be controlled by a switch. The fan 6 is a CX-125 blower. The cooling block 11 is a semiconductor cooling block, and the hot side of the cooling block 11 is located outside the mounting block 8. At the same time, a cooling fan is provided on the hot side of the cooling block 11 to ensure the cooling effect of the cold side of the cooling block 11.

[0033] Working principle: When using the frame assembly welding station with cooling structure, the operator places the frame assembly 15 on top of the workbench 1. At this time, the frame assembly 15 is positioned between the two clamping blocks 16. Then, the motor 21 is started, causing the output end of the motor 21 to drive the bidirectional screw 20 to rotate in the bearing 19. At this time, the moving block 22 on the bidirectional screw 20 will move along the moving groove 18, causing the moving block 22 to drive the connecting block 23 to move in the sliding groove 24. In this way, the connecting block 23 will drive the clamping block 16 to move, so that the rubber block 17 on one side of the clamping block 16 will contact the frame assembly 15. At this time, the two clamping blocks 16 can clamp and fix the frame assembly 15 on the workbench 1. By controlling the position of the two clamping blocks 16 in this way, the clamping blocks 16 can clamp and fix frame assemblies 15 of different sizes, thereby improving the adaptability of the welding station. After the frame assembly 15 is clamped and fixed on the workbench 1, The operator can then use the welding gun of the welding equipment to perform welding operations at the designated position of the frame assembly 15. After the frame assembly 15 is welded, the fan 6 and the cooling block 11 are started. The cold surface of the cooling block 11 will cool the conduction block 10. The input end of the fan 6 will allow external air to circulate into the mounting block 8 through the air inlet pipe 7. When the air flows through the through hole 12 on the conduction block 10 inside the mounting block 8, the cooled conduction block 10 will absorb the heat in the air, allowing the cooled air to enter the air inlet pipe 7. Then, it will be delivered into the conveying pipe 3 through the connecting pipe 5 at the output end of the fan 6. In this way, the air outlet 4 connected to the bottom of the conveying pipe 3 will blow air towards the frame assembly 15 on the workbench 1, so that the delivered cold air can quickly remove the heat from the welding point of the frame assembly 15, allowing the welding point to cool down faster, thereby saving waiting time and improving the overall processing efficiency of the frame assembly 15.

[0034] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A frame assembly welding station with a cooling structure, comprising a worktable (1), characterized in that: The workbench (1) has a support frame (2) connected to its top surface, a conveying pipe (3) connected to its top surface, and an air outlet (4) connected to its bottom surface. The other end of the air outlet (4) passes through the support frame (2) and connects to the conveying pipe (3). The top surface of the conveying pipe (3) has a connecting pipe (5) connected to its top surface, and the other end of the connecting pipe (5) connects to the output end of a fan (6). The output end of the fan (6) has an air inlet pipe (7) connected to its output end, and the other end of the air inlet pipe (7) extends into the mounting block. Inside the mounting block (8), a through mounting groove (9) is provided on the front end surface of the mounting block (8), a conductive block (10) is connected to the inner surface of the mounting groove (9), a through hole (12) is provided on the top surface of the conductive block (10), a cooling block (11) is connected to both ends of the mounting block (8), the cold surface of the cooling block (11) is in contact with one end surface of the conductive block (10), a frame assembly (15) is placed on the top surface of the workbench (1), and clamping blocks (16) are connected to the top surfaces at both ends of the workbench (1).

2. The frame assembly welding station with a cooling structure according to claim 1, characterized in that: The bottom surface of the mounting block (8) is connected to a protective net (13), and a bolt (14) is connected through the bottom surface of the protective net (13). The other end of the bolt (14) is threadedly connected to the mounting block (8).

3. The frame assembly welding station with a cooling structure according to claim 1, characterized in that: The clamp (16) has a rubber block (17) attached to the side surface facing the frame assembly (15).

4. A frame assembly welding station with a cooling structure according to claim 1, characterized in that: The bottom surface of the workbench (1) is provided with a moving groove (18), and the inner two ends of the moving groove (18) are embedded with bearings (19). A bidirectional screw (20) is connected between the two bearings (19). One end of the bidirectional screw (20) extends into the workbench (1) and is connected to the output end of the motor (21). Moving blocks (22) are connected through both ends of the bidirectional screw (20).

5. A frame assembly welding station with a cooling structure according to claim 4, characterized in that: The top surfaces of both ends of the movable block (22) are connected to connecting blocks (23), and the other end of the connecting block (23) passes through the slide groove (24) opened on the top surface of the workbench (1), and the top surface of the connecting block (23) is connected to a clamping block (16).

6. A frame assembly welding station with a cooling structure according to claim 1, characterized in that: The fan (6), cooling block (11) and motor (21) are electrically connected to an external power source via a control switch.