Русский

The team of researcher Wei Chaoyang of Shanghai Optical Machinery Institute has realized the manufacture of fused quartz components with high resistance to UV laser damage

218
2023-09-11 14:40:05
Посмотреть перевод

Recently, a team led by researcher Zhaoyang Wei of the Precision Optics Manufacturing and Testing Center of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has realized the manufacture of fused quartz components with high resistance to UV laser damage based on the defect characterization and removal process of CO2 laser. The research is published in Light: Advanced Manufacturing.

The problem of UV laser induced damage of fused quartz elements seriously restricts the development of high power laser systems. Due to the inevitable processing defects in the current contact polishing process, and it is difficult to be completely removed by post-processing, the service performance and life of fused quartz components are greatly reduced.

The research team proposed a laser chromatography ablation method to characterize subsurface defects based on microsecond pulsed laser low stress uniform ablation technology, and coupled it to the rapid material removal process to achieve complete removal of subsurface defects in the grinding stage. After that, the CO2 laser laser full link flexible machining of fused quartz components is realized by using laser conformal cleaning method to clean the redeposited contaminants on the ablative surface, and using laser melting polishing to smooth the ablative trajectory.

Compared with the traditional process, the CO2 laser processing link can effectively inhibit the introduction of machining defects and realize the preparation of fused quartz components with higher damage threshold. The laser-based defect characterization and removal method proposed in this study provides a new tool for the study of subsurface defects and the formulation of suppression strategies, and also provides a new idea for the low-defect machining of fused quartz components.

This work was supported by the National Key Research and Development Program, Shanghai Sailing Program, National Natural Science Youth Foundation, Shanghai Natural Science Foundation, Astronomy Joint Foundation and Youth Innovation Promotion Association of Chinese Academy of Sciences.

Figure 1 (a) Traditional process link; (b)CO2 laser processing link; (c) Three-dimensional full aperture subsurface defect characterization method

FIG. 2 Comparison of damage properties between conventional and laser-based samples: (a)1-on-1 damage probability (355nm, 8.3ns); (b) Typical damage morphology

Source: Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences

Связанные рекомендации
  • Marvel Fusion announces completion of € 50 million B+round funding

    On March 28th, Marvel Fusion, a laser fusion company from Munich, Germany, announced the completion of a B+round financing of 50 million euros, bringing the total amount of this round of financing to 113 million euros. It is reported that the company's cumulative financing has reached 385 million euros, making it the largest fusion company in Europe in terms of financing scale. This capital incr...

    03-31
    Посмотреть перевод
  • Changchun Institute of Optics and Fine Mechanics has developed a high brightness HiBBEE non-uniform waveguide semiconductor laser

    High brightness semiconductor lasers have extremely important applications in fields such as laser radar. Traditional semiconductor lasers face challenges such as large vertical divergence angle, elliptical beam output, multiple lateral modes, and poor beam quality, which limit the direct application of high brightness semiconductor lasers.In response to this challenge, the team from the Bimberg S...

    03-18
    Посмотреть перевод
  • The Japanese team uses laser technology for ice core sampling to accurately study climate change

    Recently, a research team from the Astronomical Glaciology Laboratory under the RIKEN Nishina Center (RNC) of the Japanese Institute of Physics and Chemistry announced that they have developed a new laser based sampling system for studying the composition of glacier ice cores.The above image shows the discrete holes sampled 150mm from the shallow ice core of the Fuji Ice Dome in Japan (Southeast ...

    2023-09-23
    Посмотреть перевод
  • Mazak will showcase high-speed fiber lasers on Tube 2024

    Yamazaki Mazak designed the FT-150 fiber laser tube processing machine for high-speed cutting of small and medium-sized diameter pipes, for use in Tube 2024. The machine tool will be controlled by a new type of pipe cutting CNC, which will be exhibited for the first time in Europe.Tube 2024 will be held from April 15th to 19th in Dusseldorf, Germany. Mazak will be exhibited at booth C17 in Hall 5....

    2024-03-16
    Посмотреть перевод
  • 20 million dollars! Undersea fiber optic agreement reached, fully operational by 2026

    Recently, Confluence Networks LLC has announced a long-term partnership agreement with Laser Light Communications Inc., a developer and provider of software controlled optical network services.According to the agreement, Laser Light will adopt Confluence-1 submarine fiber optic network, which Confluence Networks is about to launch, as the core part of its global network. The protocol will last for...

    2024-05-24
    Посмотреть перевод