Precision Impact
- Single-pulse "time-space" cooperative closed-loop control, realizing one-to-one correspondence between a single pulse and physical information such as spatial position, sound and light
High-Efficiency Machining
- Precise triggering of laser pulses at target positions during continuous robot movement, improving the machining efficiency of complex curved surfaces by more than 7 times compared with traditional methods
Intelligent Control
- Integrating AI and sensor monitoring technologies to achieve online intelligent monitoring of process quality such as pulse energy and confinement layer status
Digital Twin
- Integrating information including physical models, sensor data and operation history to realize simulation and real-time dynamic display of the laser shock process
Environmental Protection and Safety
- Integrating devices such as air purification and wastewater treatment to achieve green disposal of waste gas and wastewater, ensuring cleanliness and environmental friendliness
Human-Machine Friendly
- Realizing fully automated machining of the laser peening process with a concise and user-friendly human-machine interface