Haley Daniel, McCarroll Ingrid, Bagot Paul A J, Cairney Julie M, Moody Michael P
Department of Materials,Oxford University,16 Parks Road, Oxford, OX1 3PH,UK.
School of Aerospace, Mechanical and Mechatronic Engineering, The University of Sydney,NSW 2006,Australia.
Microsc Microanal. 2019 Apr;25(2):410-417. doi: 10.1017/S1431927618016240. Epub 2019 Feb 13.
In this work, we demonstrate a new system for the examination of gas interactions with surfaces via atom probe tomography. This system provides capability of examining the surface and subsurface interactions of gases with a wide range of specimens, as well as a selection of input gas types. This system has been primarily developed to aid the investigation of hydrogen interactions with metallurgical samples, to better understand the phenomenon of hydrogen embrittlement. In its current form, it is able to operate at pressures from 10-6 to 1000 mbar (abs), can use a variety of gasses, and is equipped with heating and cryogenic quenching capabilities. We use this system to examine the interaction of hydrogen with Pd, as well as the interaction of water vapor and oxygen in Mg samples.
在这项工作中,我们展示了一种通过原子探针断层扫描技术来研究气体与表面相互作用的新系统。该系统能够检测多种样品表面及亚表面与气体的相互作用,以及多种输入气体类型。该系统主要是为辅助研究氢与冶金样品的相互作用而开发的,以便更好地理解氢脆现象。以其目前的形式,它能够在10⁻⁶至1000毫巴(绝对压力)的压力下运行,可以使用多种气体,并且具备加热和低温淬火能力。我们使用该系统来研究氢与钯的相互作用,以及镁样品中水蒸气和氧气的相互作用。