Deutsch

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

632
2024-07-08 14:48:44
Übersetzung anzeigen

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

Ähnliche Empfehlungen
  • Breakthrough! Extending the lifespan of solar panels to 50 years using lasers

    Recently, the National Renewable Energy Laboratory (NREL) under the US Department of Energy has made a revolutionary breakthrough by developing a concept validation method aimed at completely removing polymers from solar panel manufacturing, thereby achieving more efficient and environmentally friendly recycling.Solar panels have always been praised for their recyclability. However, the thin plast...

    2024-04-30
    Übersetzung anzeigen
  • OPO laser testing optical components

    Optical parametric oscillator laser tests fibers and components to characterize the spectral response of optical components, thereby providing a competitive advantage in the optical industry.OPO lasers have long been used in complex testing and measurement applications, such as mass spectrometry, photoacoustic imaging, and spectroscopy. Now, these "tunable" pulse lasers are being used to facilitat...

    2024-02-20
    Übersetzung anzeigen
  • Romania Center launches the world's most powerful laser

    Are you ready? The signal is out! "In the control room of a research center in Romania, engineer Antonio Toma has activated the world's most powerful laser, which is expected to make revolutionary progress in various fields from the health sector to space. The laser located in the center near the Romanian capital Bucharest is operated by the French company Thales and utilizes the invention of Nobe...

    2024-04-01
    Übersetzung anzeigen
  • New super-resolution microscopy imaging technology: rapid imaging of neurons

    The research group led by Wang Kai from the Center for Excellence in Brain Science and Intelligent Technology of the Chinese Academy of Sciences has published a research paper titled "Super solution imaging of fast morphological dynamics of neurons in eating animals" online in Nature Methods. The team has developed a new type of super-resolution microscopy imaging technology, which solves the two ...

    2024-12-04
    Übersetzung anzeigen
  • Professor Wu Dong's team at the University of Science and Technology of China created a "dancing microrobot" using femtosecond laser composite materials.

    It was learned from the University of Science and Technology of China that the team of Professor Wu Dong of the Micro and Nano Engineering Laboratory of the school proposed a femtosecond laser two-in-one multi-material processing strategy, manufactured a micromechanical joint composed of temperature-sensitive hydrogel and metal nanoparticles, and then developed a multi-joint humanoid micromachine ...

    2023-08-11
    Übersetzung anzeigen