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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Direct Measurements of Sample Heating by a Laser-Induced Air Plasma in Pre-Ablation Spark Dual-Pulse Laser-Induced Breakdown Spectroscopy (LIBS)
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Direct Measurements of Sample Heating by a Laser-Induced Air Plasma in Pre-Ablation Spark Dual-Pulse Laser-Induced Breakdown Spectroscopy (LIBS)

机译:在消融前火花双脉冲激光诱导击穿光谱法(LIBS)中通过激光诱导的空气等离子体直接测量样品加热

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摘要

Direct measurements of temperature changes were made using small thermocouples (TC), placed near a laser-induced air plasma. Temperature changes up to approx500 deg C were observed. From the measured temperature changes, estimates were made of the amount of heat absorbed per unit area. This allowed calculations to be made of the surface temperature, as a function of time, of a sample heated by the air plasma that is generated during orthogonal pre-ablation spark dual-pulse (DP) LIBS measurements. In separate experiments, single-pulse (SP) LIBS emission and sample ablation rate measurements were performed on nickel at sample temperatures ranging from room temperature to the maximum surface temperature that was calculated using the TC measurement results (500 deg C). A small, but real sample temperature-dependent increase in both SP LIBS emission and the rate of sample ablation was found for nickel samples heated up to 500 deg C. Comparison of DP LIBS emission enhancement values for bulk nickel samples at room temperature versus the enhanced SP LIBS emission and sample ablation rates observed as a function of increasing sample temperature suggests that sample heating by the laser-induced air plasma plays only a minor role in DP LIBS emission enhancement.
机译:使用放置在激光感应空气等离子体附近的小型热电偶(TC)直接测量温度变化。观察到高达约500摄氏度的温度变化。根据测得的温度变化,可以估算出每单位面积吸收的热量。这允许根据在正交预烧蚀火花双脉冲(DP)LIBS测量期间生成的被空气等离子体加热的样品的表面温度随时间的变化进行计算。在单独的实验中,在从室温到使用TC测量结果(500摄氏度)计算的最大表面温度范围内的样品温度下,对镍进行了单脉冲(SP)LIBS发射和样品烧蚀速率测量。对于加热到500摄氏度的镍样品,发现SP LIBS排放量和样品烧蚀速率都有很小的但与样品温度有关的实际增加。在室温下,散装镍样品的DP LIBS排放增强值与增强后的DP LIBS排放增强值比较随样品温度升高而观察到的SP LIBS发射和样品消融速率表明,激光诱导的空气等离子体对样品的加热在DP LIBS发射增强中仅起次要作用。

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