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定量分析紫外激光诱导低压氦等离子体中钛样品的氘含量。

Quantitative deuterium analysis of titanium samples in ultraviolet laser-induced low-pressure helium plasma.

机构信息

Department of Physics, Faculty of Mathematics and Natural Sciences, Syiah Kuala University, Darussalam, Banda Aceh 43111, Nanggroe Aceh Darussalam, Indonesia.

出版信息

Appl Spectrosc. 2010 Apr;64(4):365-9. doi: 10.1366/000370210791114202.

Abstract

An experimental study of ultraviolet (UV) laser-induced plasma spectroscopy (LIPS) on Ti samples with low-pressure surrounding He gas has been carried out to demonstrate its applicability to quantitative micro-analysis of deuterium impurities in titanium without the spectral interference from the ubiquitous surface water. This was achieved by adopting the optimal experimental condition ascertained in this study, which is specified by 5 mJ laser energy, 10 Torr helium pressure, and 1-50 mus measurement window, which resulted in consistent D emission enhancement and effective elimination of spectral interference from surface water. As a result, a linear calibration line exhibiting a zero intercept was obtained from Ti samples doped with various D impurity concentrations. An additional measurement also yielded a detection limit of about 40 ppm for D impurity, well below the acceptable threshold of damaging H concentration in Ti and its alloys. Each of these measurements was found to produce a crater size of only 25 mum in diameter, and they may therefore qualify as nondestructive measurements. The result of this study has therefore paved the way for conducting further experiments with hydrogen-doped Ti samples and the technical implementation of quantitative micro-analysis of detrimental hydrogen impurity in Ti metal and its alloys, which is the ultimate goal of this study.

摘要

进行了低压周围氦气环境下紫外(UV)激光诱导等离子体光谱(LIPS)对 Ti 样品的实验研究,以证明其在没有普遍存在的表面水的光谱干扰的情况下对钛中氘杂质进行定量微分析的适用性。这是通过采用本研究中确定的最佳实验条件来实现的,该条件具体规定为 5mJ 激光能量、10 托氦气压和 1-50 微秒测量窗口,这导致了一致的 D 发射增强和表面水的有效光谱干扰消除。结果,从掺杂各种 D 杂质浓度的 Ti 样品中获得了一条具有零截距的线性校准线。进一步的测量还得出了约 40ppm 的 D 杂质检测限,远低于 Ti 及其合金中可接受的有害 H 浓度阈值。这些测量中的每一个都发现产生的蚀坑直径仅为 25 微米,因此它们可能被视为无损测量。本研究的结果为进一步进行掺氢 Ti 样品的实验以及在 Ti 金属及其合金中有害氢杂质的定量微分析的技术实现铺平了道路,这是本研究的最终目标。

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