Esperanto
Shqiptare
Euskara
Zulu
Latinus
Cymraeg
தமிழ்
Slovak
Slovak
Afrikaans
Welding Robot-RH06A3-1700
Collaborative welding robots represent a significant advancement in the field of welding. Application field: It is widely used in automobiles and their accessories, motorcycles and their accessories, and agricultural machines, engineering machines and other hardware welding fields.
![]() |
6 axis | ![]() |
±0.05mm | |
![]() |
6KG |
|
1700mm |
Classification:
Keywords:
BOSHENG
Injection molding robots
Welding Robot
collaborative welding robot
Product Details
In recent years, the demand for highly efficient and precise welding processes has increased significantly in various industrial sectors. To meet these demands, collaborative welding robots have emerged as a revolutionary solution.
Features of Collaborative Welding Robots:
Collaborative welding robots are designed to work in close collaboration with human welders. They are equipped with advanced sensor systems, allowing them to interact and respond to human input. These robots can sense the presence of humans and adjust their movements accordingly, ensuring safe and efficient joint operations.
Advantages of Collaborative Welding Robots:
a) Increased Productivity: Collaborative welding robots can work continuously without breaks, resulting in improved productivity and increased output. They also minimize human errors and inconsistencies commonly associated with manual welding, leading to higher quality welds and reduced rework.
b) Enhanced Safety: Safety is a primary concern in welding operations. Collaborative robots are designed to minimize the risk of accidents and injuries. Through the use of advanced safety features such as force and torque sensors, these robots can detect unexpected contact and immediately stop operations, ensuring the safety of both humans and the robot itself.
c) Greater Flexibility: Collaborative welding robots are highly flexible and can be easily programmed to perform various welding tasks. They can adapt to different joint configurations and welding techniques, making them suitable for a wide range of applications in diverse industries.
Potential Applications:
Collaborative welding robots find applications in numerous industries, including automotive, aerospace, shipbuilding, and construction. They can be utilized for tasks such as arc welding, spot welding, and laser welding, effectively meeting the requirements of complex welding operations.
Instruction List
| Type | RH06A3-1700 | ||
| DOF | 6 | ||
| Drive Method | AC Servo Drive | ||
| Payload | (kg) | 6 | |
| Repeatability | (mm) | ±0.05 | |
| Motion Range(°) | J1 | ±170 | |
| J2 | +120~-85 | ||
| J3 | +83~-150 | ||
| J4 | ±180 | ||
| J5 | ±135 | ||
| J6 | ±360 | ||
| Top Velocity(°/s) | J1 | 180 | |
| J2 | 180 | ||
| J3 | 180 | ||
| J4 | 400 | ||
| J5 | 356 | ||
| J6 | 600 | ||
| Allowed Top Torque | (N.m) | J4 | 14 |
| J5 | 12 | ||
| J6 | 7 | ||
| Motion | Radius | (mm) | 1700 |
| Machine | Weight | (kg) | 187 |
Range Of Motion


Previous page
Next page
Robot Arm
Joint Movement
Control Panel
Teach Pendant



