A water-air cooling unit device for a welding robot
By introducing a combination structure of a moving cylinder and a bolt torsion handle into the water-air cooling unit of the welding robot, the problem of the single adjustment direction of the cooling circulation pipe and the drainage pipe is solved, realizing multi-directional adjustment and stable docking, improving the convenience and stability of water pipe docking, and supporting the normal operation of the welding robot.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI ERSHIDA TECHNOLOGY CO LTD
- Filing Date
- 2025-07-14
- Publication Date
- 2026-07-24
AI Technical Summary
The existing water-air cooling unit of welding robots can only adjust the cooling circulation pipe and drainage pipe along the length direction, which is a single adjustment direction and affects the efficiency of water pipe connection work.
The structure adopts a design that includes two support rods and a crossbar. By combining the moving cylinder and the bolt torsion handle, the cooling circulation pipe and the drainage pipe can be adjusted in multiple directions. The position of the locking cylinder can be adjusted by the telescopic adjustment of the support plate, which improves stability and ease of connection.
It enables multi-directional adjustment of cooling circulation pipes and drainage pipes, improves the stability and convenience of water pipe connection, simplifies the operation process, enhances the adjustability of the device, and supports the normal operation of welding robots.
Smart Images

Figure CN224543533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water-air cooling unit technology, and in particular to a water-air cooling unit device for a welding robot. Background Technology
[0002] Industrial welding robots require auxiliary equipment during use. The water and air unit is an important component of the welding robot system. The water unit provides circulating cooling water to the welding torch to ensure its normal operation, while the air unit provides air source filtration and pressure regulation for the fixtures around the robot to ensure their normal operation.
[0003] Chinese patent CN209094810U discloses a water-air cooling unit device for a welding robot. This technical solution, through the arrangement of a crossbar, support plate, adjusting seat, and arc-shaped plate, allows for the following: During use, a slider is installed on the lower outer surface of the adjusting seat, and this slider is slidably connected to a groove inside the crossbar. The user moves the adjusting seat to a suitable position. An arc-shaped plate is installed on the upper outer surface of the adjusting seat, and this arc-shaped plate is rotatably connected to the adjusting seat via a rotating shaft. A connecting plate is installed on the upper outer surface of the arc-shaped plate, with a threaded groove inside and a bolt on the right side of the connecting plate. The user passes the cooling circulation pipe and drain pipe through the arc-shaped plate, and the bolt passes through the threaded groove inside the connecting plate to fix the cooling circulation pipe and drain pipe in place.
[0004] However, the water-air cooling unit of this welding robot can only be adjusted along the length of the device during use, which is a single adjustment direction and is not conducive to the connection of water pipes.
[0005] Therefore, it is necessary to provide a new water-air cooling unit device for welding robots to solve the above-mentioned technical problems. Summary of the Invention
[0006] This utility model provides a water-air cooling unit device for a welding robot. The technical problem it solves is that, during use, the water-air cooling unit device for a welding robot can only be adjusted along the length of the device by adjusting the cooling circulation pipe and the drain pipe, which is a single adjustment direction.
[0007] To solve the above technical problems, the water and air cooling unit device for welding robots provided by this utility model includes two support rods. The upper and lower parts of the opposite surfaces of the two support rods are fixedly connected to crossbars. Four movable cylinders are slidably sleeved on the surface of the crossbars. A fixed seat is provided on the rear side of the movable cylinders. A first bolt with its front end abutting against the rear side of the crossbar is provided on the fixed seat. A first torsion handle is fixedly connected to the rear end of the first bolt.
[0008] The front side of the movable cylinder is fixedly connected to a receiving cylinder, and a support plate is pulled out inside the receiving cylinder. A snap-fit cylinder is fixedly connected to the front end of the support plate. Drain pipes are installed inside the two snap-fit cylinders at one end, and cooling circulation pipes are installed inside the two snap-fit cylinders at the other end.
[0009] Preferably, a second bolt is provided at the top of the receiving cylinder, the bottom end of the second bolt extends rotatably into the interior of the receiving cylinder and abuts against the top of the support plate, and a second torsion handle is fixedly connected to the top of the second bolt.
[0010] Preferably, the front end face of the snap-fit cylinder is provided with a third bolt, the rear end of the third bolt extends rotatably into the interior of the snap-fit cylinder and is rotatably connected to a clamping plate, and the front end of the third bolt is fixedly connected to a third torsion handle.
[0011] Preferably, a limiting rod is fixedly connected to the front side of the clamping plate, and the front end of the limiting rod extends outward to the outside of the snap-fit cylinder.
[0012] Preferably, a control panel is provided on the surface of one of the support rods.
[0013] Preferably, a gas filter is provided on the surface of one of the support rods, and a regulating valve is provided on the gas filter.
[0014] Preferably, the bottom end of the support rod is provided with a caster assembly.
[0015] Compared with related technologies, the water-air cooling unit device for welding robots provided by this utility model has the following beneficial effects:
[0016] This utility model provides a water-air cooling unit device for a welding robot. By moving the movable cylinder along the surface of the crossbar, the position of the drain pipe or cooling circulation pipe installed inside the clamping cylinder can be adjusted. Then, by turning the first torsion handle, the front end of the first bolt abuts against the rear side of the crossbar, and the movable cylinder is locked and fixed after movement, improving the stability after adjusting the drain pipe or cooling circulation pipe. By extending and retracting the support plate, the working position of the clamping cylinder can be adjusted, thereby enabling better adjustment of the working position of the drain pipe or cooling circulation pipe, which is beneficial for the docking of the drain pipe or cooling circulation pipe. The operation is simple and quick, improving the adjustability of the device, and the support is stable after adjustment, making it convenient for the welding robot to work. Attached Figure Description
[0017] Figure 1 A schematic diagram of a preferred embodiment of the water-air cooling unit device for the welding robot provided by this utility model;
[0018] Figure 2 for Figure 1 The diagram shows the structure of the movable cylinder and the second torsion handle.
[0019] Figure 3 for Figure 1 The diagram shows the structure of the container and the support plate.
[0020] The following are the labels in the diagram: 1. Support rod; 2. Moving wheel assembly; 3. Control panel; 4. Gas filter; 5. Regulating valve; 6. Crossbar; 7. Moving cylinder; 8. Fixed base; 9. First torsion handle; 10. First bolt; 11. Receiving cylinder; 12. Support plate; 13. Second bolt; 14. Second torsion handle; 15. Snap-fit cylinder; 16. Third bolt; 17. Clamping plate; 18. Third torsion handle; 19. Limiting rod; 20. Drain pipe; 21. Cooling circulation pipe. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please refer to the following: Figure 1 , Figure 2 and Figure 3 ,in, Figure 1 A schematic diagram of a preferred embodiment of the water-air cooling unit device for the welding robot provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the movable cylinder and the second torsion handle. Figure 3 for Figure 1 The diagram shows the structure of the receiving cylinder and the support plate. The water-air cooling unit of the welding robot includes two support rods 1. The upper and lower parts of the opposite surfaces of the two support rods 1 are fixedly connected to crossbars 6. Four movable cylinders 7 are slidably sleeved on the surface of the crossbars 6.
[0023] A fixed seat 8 is provided on the rear side of the movable cylinder 7. A first bolt 10 is provided on the fixed seat 8, the front end of which abuts against the rear side of the crossbar 6. A first torsion handle 9 is fixedly connected to the rear end of the first bolt 10.
[0024] The front side of the movable cylinder 7 is fixedly connected to the receiving cylinder 11. The receiving cylinder 11 is provided with a support plate 12 that can be pulled out. The front end of the support plate 12 is fixedly connected to the snap-fit cylinder 15. The two snap-fit cylinders 15 at one end are provided with a drain pipe 20, and the two snap-fit cylinders 15 at the other end are provided with a cooling circulation pipe 21.
[0025] After the movable cylinder 7 moves along the surface of the crossbar 6, the position of the drain pipe 20 or the cooling circulation pipe 21 set inside the locking cylinder 15 can be adjusted. Then, by turning the first torsion handle 9, the front end of the first bolt 10 abuts against the rear side of the crossbar 6, and the movable cylinder 7 can be locked and fixed after movement, thereby improving the stability after adjusting the drain pipe 20 or the cooling circulation pipe 21.
[0026] After the support plate 12 is extended or retracted, the working position of the snap-fit cylinder 15 can be adjusted, thereby allowing for better adjustment of the working position of the drain pipe 20 or the cooling circulation pipe 21. This facilitates the docking of the drain pipe 20 or the cooling circulation pipe 21, making the operation simple and quick, improving the adjustability of the device, and ensuring stable support after adjustment, which is convenient for the welding robot to use.
[0027] A second bolt 13 is provided at the top of the receiving cylinder 11. The bottom end of the second bolt 13 extends into the interior of the receiving cylinder 11 and abuts against the top of the support plate 12. A second torsion handle 14 is fixedly connected to the top of the second bolt 13.
[0028] After the support plate 12 extends or retracts, the second torsion handle 14 is twisted, and the support plate 12 is locked and fixed after the bottom end of the second bolt 13 comes into contact with the top of the support plate 12.
[0029] The front end face of the snap-fit cylinder 15 is provided with a third bolt 16. The rear end of the third bolt 16 extends rotatably into the interior of the snap-fit cylinder 15 and is rotatably connected to a clamping plate 17. The front end of the third bolt 16 is fixedly connected to a third torsion handle 18.
[0030] After the drain pipe 20 or the cooling circulation pipe 21 passes through the inside of the snap-fit cylinder 15, the third torsion handle 18 is turned, and the clamping plate 17 is moved by the third bolt 16. After the clamping plate 17 comes into contact with the drain pipe 20 or the cooling circulation pipe 21, the drain pipe 20 and the cooling circulation pipe 21 can be locked and fixed after passing through the inside of the snap-fit cylinder 15.
[0031] A limiting rod 19 is fixedly connected to the front side of the clamping plate 17. The front end of the limiting rod 19 is pulled out to the outside of the snap-fit cylinder 15. During the movement of the clamping plate 17, the limiting rod 19 is pulled out, which improves the stability of the clamping plate 17 during the movement.
[0032] A control panel 3 is provided on the surface of a support rod 1, a gas filter 4 is provided on the surface of a support rod 1, a regulating valve 5 is provided on the gas filter 4, and a caster assembly 2 is provided at the bottom end of the support rod 1.
[0033] The control panel 3, the moving wheel assembly 2, the gas filter 4, and the regulating valve 5 are all existing technologies and will not be described in detail here.
[0034] The working principle of the water-air cooling unit device for the welding robot provided by this utility model is as follows:
[0035] After the drain pipe 20 or cooling circulation pipe 21 passes through the inside of the snap-fit cylinder 15, the third torsion handle 18 is turned, and the clamping plate 17 is moved by the third bolt 16. After the clamping plate 17 comes into contact with the drain pipe 20 or cooling circulation pipe 21, the drain pipe 20 or cooling circulation pipe 21 is locked and fixed after passing through the inside of the snap-fit cylinder 15. After the moving cylinder 7 moves along the surface of the crossbar 6, the position of the drain pipe 20 or cooling circulation pipe 21 set inside the snap-fit cylinder 15 can be adjusted. Then, by turning the first torsion handle 9, the front end of the first bolt 10 comes into contact with the rear side of the crossbar 6, and the moving cylinder 7 is locked and fixed after moving, which improves the stability after adjusting the drain pipe 20 or cooling circulation pipe 21. After the support plate 12 extends and retracts, the working position of the snap-fit cylinder 15 can be adjusted, which can better adjust the working position of the drain pipe 20 or cooling circulation pipe 21, which is conducive to the docking work of the drain pipe 20 or cooling circulation pipe 21.
[0036] Compared with related technologies, the water-air cooling unit device for welding robots provided by this utility model has the following beneficial effects:
[0037] This utility model provides a water-air cooling unit device for a welding robot. By moving the movable cylinder 7 along the surface of the crossbar 6, the position of the drain pipe 20 or cooling circulation pipe 21 installed inside the locking cylinder 15 can be adjusted. Then, by twisting the first torsion handle 9, the front end of the first bolt 10 abuts against the rear side of the crossbar 6, and the movable cylinder 7 is locked and fixed after movement, improving the stability after adjusting the drain pipe 20 or cooling circulation pipe 21. By extending and retracting the support plate 12, the working position of the locking cylinder 15 can be adjusted, thereby better adjusting the working position of the drain pipe 20 or cooling circulation pipe 21, which is conducive to the docking work of the drain pipe 20 or cooling circulation pipe 21. The operation is simple and fast, improving the adjustability of the device, and the support is stable after adjustment, which is convenient for the welding robot to work.
[0038] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A water-air cooling unit device for a welding robot, comprising two support rods (1), characterized in that, A crossbar (6) is fixedly connected to the upper and lower parts of the two opposing surfaces of the support rods (1). Four movable cylinders (7) are slidably sleeved on the surface of the crossbar (6). A fixed seat (8) is provided on the rear side of the movable cylinder (7). A first bolt (10) is provided on the fixed seat (8) with its front end abutting against the rear side of the crossbar (6). A first torsion handle (9) is fixedly connected to the rear end of the first bolt (10). The front side of the movable cylinder (7) is fixedly connected to a receiving cylinder (11). A support plate (12) is pulled out inside the receiving cylinder (11). A snap-fit cylinder (15) is fixedly connected to the front end of the support plate (12). Drain pipes (20) are installed inside the two snap-fit cylinders (15) at one end, and cooling circulation pipes (21) are installed inside the two snap-fit cylinders (15) at the other end.
2. The water-air cooling unit device for the welding robot according to claim 1, characterized in that, The top of the receiving cylinder (11) is provided with a second bolt (13), the bottom end of the second bolt (13) extends rotatably into the interior of the receiving cylinder (11) and abuts against the top of the support plate (12), and the top end of the second bolt (13) is fixedly connected with a second torsion handle (14).
3. The water-air cooling unit device for the welding robot according to claim 2, characterized in that, The front end face of the snap-fit cylinder (15) is provided with a third bolt (16), the rear end of the third bolt (16) extends rotatably into the interior of the snap-fit cylinder (15) and is rotatably connected to a clamping plate (17), and the front end of the third bolt (16) is fixedly connected to a third torsion handle (18).
4. The water-air cooling unit device for the welding robot according to claim 3, characterized in that, The front side of the clamping plate (17) is fixedly connected to a limiting rod (19), and the front end of the limiting rod (19) is pulled out to the outside of the snap-fit cylinder (15).
5. The water-air cooling unit device for the welding robot according to claim 1, characterized in that, A control panel (3) is provided on the surface of one of the support rods (1).
6. The water-air cooling unit device for the welding robot according to claim 1, characterized in that, A gas filter (4) is provided on the surface of one of the support rods (1), and a regulating valve (5) is provided on the gas filter (4).
7. The water-air cooling unit device for the welding robot according to claim 1, characterized in that, The bottom end of the support rod (1) is provided with a movable wheel assembly (2).