Laser processing technology and industrial development research and development

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Laser processing technology is a technology that uses the characteristics of the interaction of a laser beam and a substance to cut, weld, surface-treat, punch, and microfabricate materials (including metals and nonmetals). Laser processing as an advanced manufacturing technology has been widely used in important sectors of national economy such as automotive, electronics, electrical appliances, aerospace, metallurgy, and machinery manufacturing. It has become increasingly effective in improving product quality, labor productivity, automation, pollution-free, and reducing material consumption. The important role. Laser processing technology is one of the main symbols of the development of science and technology in the 20th century and one of the pillars of modern information society optoelectronic technology. The development of laser technology and laser industry has been highly valued by advanced countries in the world.
Current research and development of laser processing technology and industrial development include:
(1) The research of a new generation of industrial lasers is currently in the technologically updated period. Its mark is the development and application of diode-pumped all-solid-state lasers.
(2) Models of high-power CO2 and solid-state lasers and excimer lasers for laser processing, development and development of dedicated laser processing machine tools to improve the stable operation of laser products in the production line.
(3) Carry out laser processing technology research, focusing on research and promotion of surface modification and heat treatment of materials; carry out application research of laser rapid prototyping technology and broaden the scope of laser applications.
(4) The processing system is intelligent. The system integration is not only the processing itself, but also the real-time detection and feedback processing. With the establishment of the expert system, the intelligentization of the processing system has become an inevitable development trend.
(5) Laser processing beam quality and processing peripheral devices. To study the quality requirements of laser beams for various laser processing technologies, laser beam and processing quality monitoring techniques, design and development of optical systems and processing heads.
(6) Laser cutting technology research. Develop and industrialize the existing laser cutting system, provide a 2-3 axis CNC CO2 cutting machine with good performance and low cost, and carry out research on the corresponding cutting process, so that the process is widely used in materials processing, automotive , aerospace and shipbuilding and other fields. This should focus on the laser peripheral devices, such as: light guide system, process monitoring and control, nozzle, floating device design and development and CAD / CAM and other aspects of the work.
(7) Research on laser welding technology. To carry out laser welding process and materials, welding process equipment requirements and welding process parameters monitoring and control technology research, in order to master ordinary steel, non-ferrous metals and special steel welding process.
(8) Laser surface treatment technology research. Carry out CAD/CAM technology, laser surface treatment process, material performance and laser surface treatment process parameter monitoring and control research, so that the laser surface treatment process can be applied to production to a greater extent.
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