Characterization of Laser-Generated Microparticles by Means of a Dust Monitor and SEM Imaging

Laser Chemistry Pub Date : 2006-12-27 DOI:10.1155/2006/31862
R. Wurster, S. Pentzien, A. Conradi, J. Krüger
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引用次数: 1

Abstract

Nanosecond laser (1064 nm wavelength) cleaning of artificially soiled paper as a model sample simulating a real-world artwork was performed. During the cleaning process, the ejection of particles was monitored in situ by means of a dust monitor (8 size classes, ranging from 0.3 μ m to > 2 μ m) and ex situ using a mini-cascade impactor (MKI, 5 stages). The cleaning result was analyzed by scanning electron microscopy (SEM) considering possible laser-induced damages to the substrate. Size distributions of emitted particles were measured depending on the processing parameters: laser fluence, F , and pulse number per spot, N . High numbers of large ( > 2 μ m) particles were collected by the mini-cascade impactor indicating a gas dynamical liftoff process. Obviously, these particles were not affected by the laser-matter interaction. The different methods (SEM, MKI, and dust monitor) are compared with respect to their usefulness for a proper interpretation of the cleaning results.
用粉尘监测仪和扫描电镜成像表征激光产生的微粒
采用纳秒激光(波长1064nm)对模拟真实艺术品的人工污纸进行清洗。在清洗过程中,通过粉尘监测器(8个尺寸等级,范围从0.3 μ m到bbb20 μ m)原位监测颗粒的喷射,并使用微型级联冲击器(MKI, 5级)进行非原位监测。考虑到激光对基体可能造成的损伤,用扫描电镜对清洗结果进行了分析。发射粒子的尺寸分布根据加工参数进行测量:激光通量,F,和每点脉冲数,N。小型串级撞击器收集了大量的大颗粒(bbb20 μ m),表明这是一个气体动力升空过程。显然,这些粒子不受激光与物质相互作用的影响。不同的方法(SEM, MKI,和粉尘监测器)进行比较,就他们的有用性,以正确解释清洁结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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