Anshan Heli Laser Equipment Co., Ltd.
National Service Hotline : 400-641-6888
Address: No. 368 Qianshan Road, High-tech Zone, Anshan City
Dongguan Heli Laser Equipment Co., Ltd.
Address: No. 48 Wenxiang Road, Xiaoxiang, Wanjiang District, Dongguan City, Guangdong Province
Contact: Mr. Yang
您的位置： 首页 - 公司动态 - 公司新闻 The 239th Oriental Science and Technology Forum with the theme of "Structural Design and Performance Control of High-power Laser Cutting Machine Laser Materials" was held in ShanghaiYour position: 杏鑫平台 - Company News - Company News
The 239th Oriental Science and Technology Forum held in Shanghai with the theme of "Structural Design and Performance Control of High-power Laser Cutting Machine Laser Materials" Academicians and experts at the conference suggested that measures be taken to strengthen cooperation and strive for new breakthroughs in the field of high-power laser materials. Fan Dianyuan, chairman of the conference and academician of the Chinese Academy of Engineering, proposed in the keynote report "Development Status and Trends of Laser Materials for Inertial Confinement Fusion Fusion Systems" that laser technology is one of the eight cutting-edge technologies in China's medium and long-term science and technology planning. Among them, laser materials are the core and foundation of the development of laser technology, and have a milestone meaning and role in the development of laser technology.
Participating experts said that the laser manufacturing industry is developing rapidly in China and penetrates into various industries and fields, especially in the fields of laser weapon technology application and laser inertial confinement fusion technology. At present, the United States, Japan, the European Union, Russia and other countries and regions are vigorously developing laser inertial confinement nuclear fusion technology, and China has also listed the laser fusion ignition project as one of the 16 major scientific and technological projects. Current fusion laser drivers use neodymium-doped glass as the gain medium, but the low thermal conductivity of glass limits the ability of the laser system to work at repeated frequencies. At the same time, existing neodymium-doped laser glass cannot meet the requirements of fusion energy laser drivers. Therefore, there is an urgent need to find laser materials with better performance.
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