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Microanalysis of tool steel and glass with laser-induced breakdown spectroscopy

机译:激光诱导击穿光谱法对工具钢和玻璃进行微量分析

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摘要

A laser microscope system for the microanalytical characterization of complex materials is described. The universal measuring principle of laser-induced breakdown spectroscopy (LIBS) in combination with echelle optics permits a fast simultaneous multielement analysis with a possible spatial resolution below 10 pm. The developed system features completely UV-transparent optics for the laser-microscope coupling and the emission beam path and enables parallel signal detection within the wavelength range of 200-800 nm with a spectral resolution of a few picometers. Investigations of glass defects and tool steels were performed. The characterization of a glass defect in a tumbler by a micro-LIBS line scan, with use of a 266-nm diode-pumped Nd:YAG laser for excitation, is possible by simple comparison of plasma spectra of the defect and the surrounding area. Variations in the main elemental composition as well as impurities by trace elements are detected at the same time. Through measurement of the calibration samples with the known concentration of the corresponding element, a correlation between the intensity of spectral lines and the element concentration was also achieved. The change of elemental composition at the transient stellite solder of tool steels has been determined by an area scan. The two-dimensional pictures show abrupt changes of the element distribution along the solder edge and allow fundamental researches of dynamic modifications (e.g., diffusion) in steel.
机译:描述了一种用于复杂材料的微观分析表征的激光显微镜系统。激光诱导击穿光谱仪(LIBS)与echelle光学器件结合使用的通用测量原理允许快速同时进行多元素分析,可能的空间分辨率低于10 pm。所开发的系统具有用于激光显微镜耦合和发射光束路径的完全紫外线透明的光学器件,并能够在200-800 nm的波长范围内以几皮秒的光谱分辨率进行并行信号检测。对玻璃缺陷和工具钢进行了研究。通过简单比较缺陷和周围区域的等离子体光谱,可以通过使用266 nm二极管泵浦的Nd:YAG激光器通过微型LIBS线扫描对玻璃杯中的玻璃缺陷进行表征。同时检测主要元素组成的变化以及微量元素的杂质。通过用已知浓度的相应元素测量校准样品,还可以得到谱线强度与元素浓度之间的相关性。通过面积扫描确定了工具钢的瞬态星状钎料中元素组成的变化。二维图片显示了沿焊料边缘元素分布的突然变化,并允许对钢中的动态变化(例如扩散)进行基础研究。

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    《Applied optics》 |2003年第30期|共8页
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  • 正文语种 eng
  • 中图分类 光学;
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