首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Depth profiling of hydrogen in ferritic/martensitic steels by means of a tritium imaging plate technique
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Depth profiling of hydrogen in ferritic/martensitic steels by means of a tritium imaging plate technique

机译:t成像板技术对铁素体/马氏体钢中氢的深度分析

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In order to understand how hydrogen loaded by plasma in F82H is removed by annealing at elevated temperatures in vacuum, depth profiles of plasma-loaded hydrogen were examined by means of a tritium imaging plate technique. Owing to large hydrogen diffusion coefficients in F82H, the plasma-loaded hydrogen easily penetrates into a deeper region becoming solute hydrogen and desorbs by thermal annealing in vacuum. However the plasma-loading creates new hydrogen trapping sites having larger trapping energy than that for the intrinsic sites beyond the projected range of the loaded hydrogen. Some surface oxides also trap an appreciable amount of hydrogen which is more difficult to remove by the thermal annealing.
机译:为了理解如何通过在真空中在升高的温度下进行退火来去除F82H中等离子体所负载的氢,通过a成像板技术检查了等离子体所负载的氢的深度分布。由于F82H中的氢扩散系数大,等离子负载的氢很容易渗入更深的区域,成为溶质氢,并在真空中通过热退火解吸。然而,等离子负载产生了新的氢捕获位点,其俘获能量大于固有位点的捕获能量,而固有位点超出了负载氢的预计范围。一些表面氧化物还捕获了相当数量的氢,该氢更难通过热退火除去。

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