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Optimization of experimental conditions by orthogonal test design in a laser-induced breakdown experiment to analyze aluminum alloys

机译:在铝合金诱导的激光击穿实验中通过正交试验设计优化实验条件

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The orthogonal test design is used to optimize the parameters of aluminum alloy laser-induced breakdown spectroscopy (LIBS). The signal to background ratio (SBR) of the line of Al I 396.15 nm dependence on the experimental parameters is analyzed. It is shown that the delay time of the ICCD, the gate width of the ICCD and the laser pulse energy have a great influence on the SBR, the parameters which affect the SBR of Al I 396.15 nm are, in order of the laser pulse energy, delay time of the ICCD, gate width. By optimizing the parameters of the experiment, the optimum conditions are determined and high spectral intensity and SBR are obtained under low laser energy. Besides, the sequential test is used to verify the result of the orthogonal test design, and it shows that they are in good agreement with each other. Therefore the orthogonal test design can be used as an optional scheme for the optimization of the LIBS. There are many advantages of the orthogonal test design, such as greatly reducing the workload, simple and rapid analysis, and with accurate results. It is useful to analyze the components of the aluminum alloy or other solid materials qualitatively and quantitatively under the optimum conditions.
机译:正交试验设计用于优化铝合金激光诱导击穿光谱(LIBS)的参数。分析了Al I 396.15 nm线的信噪比(SBR)对实验参数的依赖性。结果表明,ICD的延迟时间,ICCD的栅极宽度和激光脉冲能量对SBR有很大影响,影响Al I 396.15 nm的SBR的参数按激光脉冲能量的顺序排列,ICCD的延迟时间,栅极宽度。通过优化实验参数,确定了最佳条件,并在低激光能量下获得了高光谱强度和SBR。此外,采用顺序测试对正交测试设计的结果进行验证,表明它们相互之间具有很好的一致性。因此,正交测试设计可以用作LIBS优化的可选方案。正交测试设计具有许多优点,例如,大大减少了工作量,分析简单,快速且结果准确。在最佳条件下定性和定量分析铝合金或其他固体材料的成分非常有用。

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