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Experimental study on double-pulse laser ablation of steel upon multiple parallel-polarized ultrashort-pulse irradiations

机译:多次平行极化超短脉冲辐照对钢进行双脉冲激光烧蚀的实验研究

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摘要

In this paper, double-pulse laser processing is experimentally studied with the aim to explore the influence of ultrashort pulses with very short time intervals on ablation efficiency and quality. For this, sequences of 50 double pulses of varied energy and inter-pulse delay, as adjusted between 400 fs and 18 ns by splitting the laser beam into two optical paths of different length, were irradiated to technical-grade stainless steel. The depth and the volume of the craters produced were measured in order to evaluate the efficiency of the ablation process; the crater quality was analyzed by SEM micrographs. The results obtained were compared with craters produced with sequences of 50 single pulses and energies equal to the double pulse. It is demonstrated that double-pulse processing cannot exceed the ablation efficiency of single pulses of optimal fluence, but the ablation crater surface formed smoother if inter-pulse delay was in the range between 10 ns and 18 ns. In addition, the influence of pulse duration and energy distribution between the individual pulses of the double pulse on ablation was studied. For very short inter-pulse delay, no significant effect of energy variation within the double pulse on removal rate was found, indicating that the double pulse acts as a big single pulse of equal energy. Further, the higher removal efficiency was achieved when double-pulse processing using femtosecond pulses instead of picosecond pulses.
机译:本文通过实验研究双脉冲激光加工,目的是探索具有非常短时间间隔的超短脉冲对消融效率和质量的影响。为此,通过将激光束分成两个不同长度的光路,在400 fs和18 ns之间进行调整,在50 fs和18 ns之间进行调整,以50个具有不同能量和脉冲间延迟的双脉冲序列照射到工业级不锈钢上。测量产生的弹坑的深度和体积,以评估烧蚀过程的效率。通过SEM显微照片分析了火山口的质量。将获得的结果与由50个单脉冲和等于双脉冲的能量产生的陨石坑进行比较。结果表明,双脉冲处理不能超过具有最佳注量的单脉冲的烧蚀效率,但是如果脉冲间延迟在10 ns和18 ns之间,则烧蚀坑表面会变得更光滑。此外,研究了脉冲持续时间和双脉冲的各个脉冲之间的能量分布对消融的影响。对于非常短的脉冲间延迟,未发现双脉冲内的能量变化对去除率有显着影响,这表明双脉冲充当了具有相同能量的大单脉冲。此外,当使用飞秒脉冲而非皮秒脉冲进行双脉冲处理时,可以获得更高的去除效率。

著录项

  • 来源
    《Applied Physics》 |2016年第7期|644.1-644.11|共11页
  • 作者单位

    Laserinstitut Hochschule Mittweida, University of Applied Sciences Mittweida, Technikumplatz 17, 09648 Mittweida, Germany;

    Laserinstitut Hochschule Mittweida, University of Applied Sciences Mittweida, Technikumplatz 17, 09648 Mittweida, Germany;

    Laserinstitut Hochschule Mittweida, University of Applied Sciences Mittweida, Technikumplatz 17, 09648 Mittweida, Germany;

    Laserinstitut Hochschule Mittweida, University of Applied Sciences Mittweida, Technikumplatz 17, 09648 Mittweida, Germany;

    Laserinstitut Hochschule Mittweida, University of Applied Sciences Mittweida, Technikumplatz 17, 09648 Mittweida, Germany;

  • 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
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