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Study on nonthermal-thermal processing boundary in drilling of ceramics using ultrashort pulse laser system with variable parameters over a wide range

机译:超大脉冲激光系统在宽范围内使用超大脉冲激光系统钻探陶瓷的非热热处理边界研究

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摘要

Quality and throughput of laser material processing are influenced by multiple laser parameters as well as material properties. Since material degradation due to laser processing is generally related to heat-affected zone, quick optimization and realization of nonthermal process is one of the most important issues for higher-grade laser processing. In this work, we developed various parameter-controlled ultrashort pulse laser system that can control various laser parameters over a wide range, such as pulse duration over three orders of magnitude. Using this laser system (wavelength: 1033 nm, pulse duration: 0.4 to 400 ps, repetition: up to 1 MHz), we have investigated nonthermal-thermal processing boundary in drilling of ceramics: aluminum nitride (A1N) and yttria-stabilized zirconia (YSZ), with high and low thermal conductivity, respectively. As a result, the A1N ceramic exhibited strong dependence of ablation rate on fluence: low-, mid- and high-fluence regimes appeared with different logarithmic correlations. Further, the nonthermal-thermal process boundaries appeared, depending on the pulse duration. On the other hand, the ablation behavior of YSZ was much different from A1N; the ablation rate did not show distinct three regimes. Further, there were no nonthermal process windows for the YSZ. Therefore, the nonthermal-thermal process boundaries were governed by the laser parameters like pulse duration as well as the material thermal conductivity.
机译:激光材料加工的质量和产量受多种激光参数的影响以及材料特性。由于激光加工引起的材料降解通常与热影响区域有关,因此快速优化和实现非热过程是高级激光加工的最重要问题之一。在这项工作中,我们开发了各种参数控制的超微脉冲激光系统,可以在宽范围内控制各种激光参数,例如脉冲持续时间超过三个级。使用该激光系统(波长:1033nm,脉冲持续时间:0.4至400 ps,重复:高达1 MHz),我们已经研究了陶瓷钻井中的非热热处理边界:氮化铝(A1N)和氧化钇稳定的氧化锆( YSZ)分别具有高和低导热性。结果,A1N陶瓷表现出对烧蚀率的强烈依赖性流量:低,中高流量的政权出现不同的对数相关性。此外,取决于脉冲持续时间,出现了非热热过程边界。另一方面,YSZ的消融行为与A1N不同;消融率没有显示不同的三个制度。此外,YSZ没有非热进程窗口。因此,非热 - 热过程边界由激光参数等脉冲持续时间以及材料导热率控制。

著录项

  • 来源
    《Applied Physics》 |2020年第4期|252.1-252.8|共8页
  • 作者单位

    Electronoics and Photonics Research Institute National Institute of Advanced Industrial Science and Technology (AIST) Central 2 1-1-1 Umezono Tsukuba Ibaraki 305-8568 Japan;

    Electronoics and Photonics Research Institute National Institute of Advanced Industrial Science and Technology (AIST) Central 2 1-1-1 Umezono Tsukuba Ibaraki 305-8568 Japan;

    Electronoics and Photonics Research Institute National Institute of Advanced Industrial Science and Technology (AIST) Central 2 1-1-1 Umezono Tsukuba Ibaraki 305-8568 Japan;

    Electronoics and Photonics Research Institute National Institute of Advanced Industrial Science and Technology (AIST) Central 2 1-1-1 Umezono Tsukuba Ibaraki 305-8568 Japan;

    The Institute for Solid State Physics The University of Tokyo 5-1-5 Kashiwanoha Kashiwa 277-8581 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultrashort pulse laser; Drilling; Ceramics;

    机译:超短脉冲激光;钻孔;陶瓷;

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