As an advanced manufacturing technology, laser intelligent manufacturing has become a key driver in boosting the overall competitiveness of the nation's foundational and pillar industries, making it a focal area of international research. The research group at the Institute of Mechanics, Chinese Academy of Sciences, which is responsible for the "Laser Intelligent Manufacturing Process Experimental Research System," has made significant progress by overcoming numerous challenges. They have successfully integrated software and hardware systems, developed process mechanics research, and completed the project's acceptance.
The "Laser Intelligent Manufacturing Process Experimental System" is equipped with multiple independent intellectual property rights, including a full digital control method for the laser system, embedded simulation of laser manufacturing processes, surface adaptive measurement techniques, laser-induced piston thermal fatigue analysis, laser-enhanced trajectory planning, and spatial intensity conversion of the laser beam. This system is capable of performing various laser-based intelligent manufacturing tasks such as material removal, joining, surface strengthening, and laser cladding, offering flexible processing solutions.
In addition, the system supports real-time detection, simulation, and evaluation of the manufacturing process, along with mechanical performance testing, temperature field analysis, and stress distribution simulations. It provides a comprehensive platform for both research and industrial applications.
This equipment system meets the needs of multiple research fields and production sectors, offering scientific theories and critical technological support for the development of laser intelligent manufacturing across the national industry. It has already been applied in mold reinforcement and heat load experiments.
Recently, the "Laser Intelligent Manufacturing Process Experimental Research System" successfully passed its acceptance test. An expert panel praised the project’s achievements, stating that “the system fully meets the contractual requirements, with some performance indicators exceeding expectations, and its overall capabilities are at an internationally advanced level.†This marks a significant milestone in the advancement of laser-based smart manufacturing in China.
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