Türkçe

New progress in research on laser cleaning and improving the damage threshold of fused quartz components at Shanghai Optics and Machinery Institute

202
2024-07-08 14:48:44
Çeviriyi gör

Recently, the research team of the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made new progress in the study of improving the damage threshold of fused quartz elements through laser cleaning. The study proposes for the first time the use of microsecond pulse CO2 laser cleaning to enhance the damage resistance performance of fused quartz components. The relevant research results were published in the International Journal of Mechanical Sciences under the title "Microsecond pulsed CO2 laser cleaning of high damage threshold fused silica".

With the development of modern optical technology, the problem of ultraviolet laser-induced damage to fused quartz components seriously restricts the development of high-power laser systems. At present, the contact polishing process inevitably produces defects and pollution, and it is difficult to completely remove them through post-treatment, greatly reducing the performance and lifespan of fused quartz components.

Principle and experimental schematic diagram of microsecond pulse CO2 laser cleaning
To this end, the research team revealed the modulation mechanism of defects and pollution on component damage performance through a multi-scale simulation method of macro micro nano scale. Through multimodal characterization of the distribution patterns of defects and contamination, it has been confirmed that laser cleaning can effectively eliminate and suppress surface/subsurface defects, absorption defects, chemical structural defects, and elemental contamination, without generating residual thermal stress and severely damaging the surface roughness of materials. The samples cleaned by laser showed a higher damage threshold compared to those processed by traditional processing techniques (mechanical chemical polishing, mechanical chemical polishing+magnetorheological polishing, mechanical chemical polishing+hydrofluoric acid etching). The damage threshold increased by 47.6% with a 0% probability and 27.0% with a 100% probability, respectively. The laser cleaning method proposed in this study provides a new approach for the low defect and clean manufacturing of fused quartz components.

The related work has received support from key research and development programs of the Ministry of Science and Technology, the National Natural Science Foundation of China, and the Shanghai Sailing Plan.

Source: Shanghai Institute of Optics and Mechanics

İlgili öneriler
  • Leading listed laser company Novanta moves to new location

    Recently, Novanta, a pioneer in advanced laser and optical subsystems for medical and industrial applications, announced that the company will relocate from its original official address (Emery Court in Stockport, UK) to a state-of-the-art 70000 square foot factory facility in nearby Orion Business Park. Its business capabilities will also be expanded fourfold to serve an expanding team and custom...

    2024-08-08
    Çeviriyi gör
  • 85000W laser cutting machine emerged and led the world

    Recently, Pentium Laser and Shenzhen Chuangxin Laser launched the world's first 85000W laser cutting machine, once again breaking the record for the highest power in the cutting field.Zhang Qingmao, Director of the Laser Processing Committee of the Chinese Optical Society, Xu Xia, rotating CEO of Pentium Group, Cai Liang, Director of the Final Inspection Department of Pentium Laser Manufactu...

    2023-09-16
    Çeviriyi gör
  • Laser based ultra precision gas measurement technology

    Laser gas analysis can achieve high sensitivity and selectivity in gas detection. The multi-component capability and wide dynamic range of this detection method help analyze gas mixtures with a wide concentration range. Due to the fact that this method does not require sample preparation or pre concentration, it is easy to adopt in the laboratory or industry.Gas analysis is crucial for determining...

    2024-01-03
    Çeviriyi gör
  • China has successfully developed the world's first 193 nanometer compact solid-state laser

    The Chinese Academy of Sciences reduced the volume of the deep ultraviolet laser by 90% and achieved 193 nm vortex beam output for the first time. Professor Xuan Hongwen described "loading truck equipment into the car trunk". This technology enables a 30% reduction in the size of lithography features, breaking through the bottleneck of the 2-nanometer process. In the next three years, laser power ...

    03-24
    Çeviriyi gör
  • Fraunhofer ISE develops a faster laser system for wafer processing

    By using a new type of laser, the processing speed of wafers can be 10 to 20 times faster than before. This is the result of a research project at the Fraunhofer Institute for Solar Systems in Germany.Researchers have developed a prototype that can use ultraviolet waves to carve the most intricate structures on silicon wafers. The new system concept enables solar cell manufacturers to perform lase...

    2023-12-23
    Çeviriyi gör