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纳秒脉冲激光辐照不锈钢产生的铁铬氧化物微球的拉曼光谱分析

Raman spectroscopic analysis of iron chromium oxide microspheres generated by nanosecond pulsed laser irradiation on stainless steel.

作者信息

Ortiz-Morales M, Soto-Bernal J J, Frausto-Reyes C, Acosta-Ortiz S E, Gonzalez-Mota R, Rosales-Candelas I

机构信息

Instituto Tecnológico de Aguascalientes, Lab. de Optoelectronica, Av. A. Lopez Mateos 1801 Ote., Fracc. Bonagens, Aguascalientes 20256, Mexico; Centro de Investigaciones en Óptica, A.C. Prol. Constitución 607, Fracc. Reserva Loma Bonita, Aguascalientes 20200, Mexico.

Instituto Tecnológico de Aguascalientes, Lab. de Optoelectronica, Av. A. Lopez Mateos 1801 Ote., Fracc. Bonagens, Aguascalientes 20256, Mexico.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jun 15;145:505-510. doi: 10.1016/j.saa.2015.03.015. Epub 2015 Mar 9.

Abstract

Iron chromium oxide microspheres were generated by pulsed laser irradiation on the surface of two commercial samples of stainless steel at room temperature. An Ytterbium pulsed fiber laser was used for this purpose. Raman spectroscopy was used for the characterization of the microspheres, whose size was found to be about 0.2-1.7 μm, as revealed by SEM analysis. The laser irradiation on the surface of the stainless steel modified the composition of the microspheres generated, affecting the concentration of the main elemental components when laser power was increased. Furthermore, the peak ratio of the main bands in the Raman spectra has been associated to the concentration percentage of the main components of the samples, as revealed by Energy-Dispersive X-ray Spectroscopy (EDS) analysis. These experiments showed that it is possible to generate iron chromium oxide microspheres on stainless steel by laser irradiation and that the concentration percentage of their main components is associated with the laser power applied.

摘要

通过在室温下用脉冲激光辐照两种商用不锈钢样品的表面来制备氧化铬铁微球。为此使用了一台镱脉冲光纤激光器。拉曼光谱用于表征微球,扫描电子显微镜(SEM)分析显示其尺寸约为0.2 - 1.7μm。对不锈钢表面的激光辐照改变了所生成微球的成分,当激光功率增加时会影响主要元素成分的浓度。此外,能量色散X射线光谱(EDS)分析表明,拉曼光谱中主要谱带的峰比与样品主要成分的浓度百分比相关。这些实验表明,通过激光辐照在不锈钢上生成氧化铬铁微球是可行的,并且其主要成分的浓度百分比与所施加的激光功率相关。

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