Welding robot operation application platform
By designing an operating application platform that includes at least two welding robots and utilizing concave guide rails and connecting sliding parts, the problems of work delays and safety risks caused by damage to the welding robots are solved, and rapid replacement and safe operation of the robots in the event of failure are achieved.
Patent Information
- Application Number
- CN202511109109.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2025-09-30
AI Technical Summary
Welding robots are easily damaged during use, which causes delays in work progress and poses safety risks. The existing technology of adding wheels for staggered use poses a safety hazard.
A welding robot operation application platform is designed, which includes at least two welding robots. The operating range of the two robots is limited by a concave guide rail, and a connecting slide is used to maintain a sliding connection with the guide rail. A closed box is used to lock unused robots, and a control cabinet controls the movement of the robots.
This ensures that when one robot breaks down or needs maintenance, another robot can be immediately used to replace it, avoiding work stagnation and ensuring safety and work continuity.
Smart Images

Figure CN120715515A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of welding robot platforms, and in particular to a welding robot operation application platform. Background Art
[0002] In the process of using welding robots for operation and application, it is common to encounter the phenomenon of welding robots being damaged. Once damaged, the work progress will be delayed. At the same time, in order to extend the service life of the welding robot, the welding robot equipment that has been used for a period of time should be repaired and maintained. In the prior art, patent CN201721397977.7 mentions installing wheels under the chassis of the welding robot. By adding several welding robots for staggered use, the problem of delaying the work progress due to the need for repair and maintenance of a certain equipment can be solved. However, welding robots are special equipment and there are certain safety risks when placed alone. Summary of the Invention
[0003] To solve the above-mentioned problems, this patent designs a welding robot operation application platform, which has redundant welding robots as backup and the movement of the robots is limited within the range of the platform guide rails, ensuring the safety of the operation application process.
[0004] The technical solution provided by the present invention is: A welding robot operation application platform includes at least two welding robots and a welding workbench of the welding robots, and its operation is controlled by a control cabinet. It is characterized in that the operation application platform has a concave guide rail to limit the operating range of the welding robot, and the welding robot chassis is fixed with a connecting sliding part to maintain a sliding connection with the guide rail.
[0005] Furthermore, the welding robot operation application platform also includes a closed box for locking a welding robot that is not in use temporarily.
[0006] Furthermore, the connecting sliding member is a sliding hook.
[0007] Furthermore, the robot chassis and the connecting sliding member are connected using threads.
[0008] Furthermore, the welding robot chassis has threaded holes, which are fixed to the operating application platform using bolts after reaching the designated position.
[0009] Furthermore, the welding robot chassis is also equipped with a driving positioning device, and the control cabinet controls the welding robot to reach a specified position.
[0010] The beneficial effects of the present invention are: The welding robot operation application platform involved in the present invention includes at least two welding robots, which are connected to guide rails using connecting sliding parts and can slide therein, ensuring that when one welding robot fails or needs maintenance, another welding robot can be put into use without suspending work.
[0011] The use of sliding hooks as connecting sliding parts allows the welding robot to be confined to a specific operating range without running around and causing accidents; at the same time, the presence of the sliding hooks makes the movement of the welding robot within the guide rail range smoother. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a general overview diagram of the present invention Figure 2 This is a side view of the present invention when a closed box is installed Figure 3 This is an enlarged view showing the relationship between the welding robot, the concave rail, and the connecting sliding parts. DETAILED DESCRIPTION
[0013] The present invention will be further described below with reference to the accompanying drawings, but is not limited to the following embodiments.
[0014] The present invention provides a welding robot operation application platform, comprising at least two welding robots 1, a welding workbench 2 of the welding robots 1, and a control cabinet 3 controlling the operation thereof. The operation application platform has a concave guide rail 4 for limiting the operating range of the welding robots (1), and a connecting sliding member fixed to the welding robot chassis to maintain a sliding connection with the guide rail.
[0015] like Figure 1 As shown, under normal circumstances, one welding robot 1 is used in conjunction with the welding worktable 2 and is confined to a suitable position on the guide rail 4 near the welding worktable 2; the other is placed in an additional location as a backup. The operation of the welding robot 1 and its range of motion on the guide rail 4 are controlled by the control cabinet 3. The chassis of the welding robot 1 is fixed with connecting sliding members, which ensure that the welding robot 1 has a certain range of movement while preventing it from leaving the guide rail 4 and causing harm to personnel.
[0016] like Figure 2 As shown, when the welding robot 1 on the left is working normally, the other welding robots 1 are locked in the closed box 10 to prevent accidental contact by personnel; when the welding robot 1 on the left needs repair or maintenance, the other one can be activated and pushed to the welding workbench 2 through the concave guide rail 4 for use, so as not to affect the work progress and ensure that it will not run around in the operating room and cause personal injury.
[0017] Furthermore, the entire process can be achieved by installing a driving positioning device under the chassis of the welding robot 1 and then being fully controlled by a control cabinet.
[0018] like Figure 3 As shown, the sliding connection part, that is, the connection between the sliding hook 5 and the concave guide rail 4 is shown. The sliding hook 5 moves synchronously with the welding robot 1. At the same time, because the width of the bottom of the sliding hook 5 is greater than the width of the top of the concave guide rail 4, the sliding hook 5 will be restricted in the concave guide rail. At the same time, the upper part of the lower part of the sliding hook 5 is "convex", and the resistance when it rubs with the concave guide rail 4 is not large, which facilitates the transfer of the welding robot 1.
[0019] The above examples are merely specific embodiments of the present invention. Obviously, the present invention is not limited to the above examples and is subject to numerous variations. All variations that can be directly derived or conceived by a person skilled in the art from the disclosure of the present invention are considered to be within the scope of protection of the present invention.
Claims
1. A welding robot operation application platform, comprising at least two welding robots (1), a welding workbench (2) of the welding robots, and a control cabinet (3) controlling the operation thereof, characterized in that: The robot platform has a concave guide rail (4) for limiting the operating range of the welding robot (1); a connecting sliding member is fixed to the welding robot chassis to maintain sliding connection with the guide rail (4).
2. The welding robot operation application platform according to claim 1, further comprising a closed box (10) for locking a welding robot that is not in use temporarily.
3. The welding robot operation application platform according to claim 1 or 2, wherein the connecting sliding member is a sliding hook (5).
4. According to the welding robot operation application platform of claim 1, the robot chassis and the connecting sliding member are connected using threads.
5. According to the welding robot operation application platform of claim 1, the welding robot chassis also has threaded holes, which are fixed to the operation application platform using bolts after reaching the specified position.
6. According to the welding robot operation application platform of claim 1, the welding robot chassis is also equipped with a driving positioning device, and the control cabinet controls the welding robot to reach the specified position.
Citation Information
Patent Citations
Remove teaching robot welding tool table
CN207534209U