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Application of a Tritium Imaging Plate Technique to Depth Profiling of Hydrogen in Metals and Determination of Hydrogen Diffusion Coefficients

机译:三氚成像板技术在金属中深度分析的应用及氢气扩散系数的测定

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摘要

A new methodology for depth profiling of hydrogen in metals is developed applying a tritium imaging plate technique (TIPT) with cross sectional observation. Owing to its high sensitivity and wide dynamic range for tritium detection, depth distribution of hydrogen dissolved in the BCC metals such as tungsten (W) and steels are successfully obtained. The depth distributions enable us to determine reliable lattice diffusion coefficients of hydrogen in W and a ferritic/martensitic steel (F82H) within 20% errors taking into account three dimensional desorption/ release from the surfaces of the sample metals. Hydrogen trapped at surface and subsurface are clearly separated from the dissolved one. In BCC metals, since the former could be much larger than the latter, observation of overall hydrogen behavior without knowing detailed depth distributions could lead to wrong estimation of diffusion coefficients and solubility.
机译:开发了一种新的金属深度分析方法,其具有横截面观察的氚成像板技术(Tipt)。 由于其高灵敏度和宽动态范围进行氚检测,成功地获得溶解在诸如钨(W)和钢等BCC金属中的深度分布。 深度分布使我们能够在20%误差内确定W和铁素体/马氏体钢(F82H)中的可靠的晶格扩散系数,以考虑来自样品金属的表面的三维解吸/释放。 捕获在表面和地下的氢气与溶解的一个清楚地分离。 在BCC金属中,由于前者可能远远大于后者,但是在不知道详细的深度分布的情况下观察整体氢行为可能导致扩散系数和溶解度的错误估计。

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