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定量测定氧化物弥散强化钢中富钇和富氧纳米颗粒的组成。

Quantifying the composition of yttrium and oxygen rich nanoparticles in oxide dispersion strengthened steels.

机构信息

Department of Materials, University of Oxford, OX1 3PH, UK.

出版信息

Ultramicroscopy. 2013 Feb;125:10-7. doi: 10.1016/j.ultramic.2012.10.003. Epub 2012 Oct 27.

Abstract

Atom probe tomography (APT) is used to investigate the composition of oxygen rich nanoparticles within a ferritic matrix in Fe-14Cr-2W-0.1Ti oxide-dispersion-strengthened (ODS) steel. This study investigates whether artifacts associated with APT analysis are the cause of a sub-stoichiometric oxide composition measurement. Bulk Y₂O₃ is analyzed by APT, thus demonstrating the ability of the technique to measure near-stoichiometric composition measurements in insulating oxides. Through analysis of the sequence of ion hits on the detector during APT data acquisition, it is shown that a proportion of yttrium hits are spatially correlated but oxygen hits are not. Y-O based nanoparticles in a ferritic matrix are analyzed by APT using voltage pulsing and a laser pulsing with a range of laser energies from 0.3-0.8 nJ. When the material is analyzed using a high effective evaporation field, this influences the effect of trajectory aberrations, and the apparent size of the nanoparticles is reduced. Some reduction in Y:O ratio is observed, caused by high instances of multiple-ion evaporation events. From a detailed comparison between the results of APT analysis of the bulk Y₂O₃ the nanoparticles in the ODS material are concluded to have an approximate Y:O ratio of 1:1.

摘要

原子探针层析技术(APT)用于研究铁素体基体中富氧纳米颗粒的组成,这些纳米颗粒存在于 Fe-14Cr-2W-0.1Ti 氧化物弥散强化(ODS)钢中。本研究探讨了与 APT 分析相关的假象是否是导致氧化合物组成测量出现亚化学计量的原因。通过 APT 分析大块 Y₂O₃,证明了该技术在测量绝缘氧化物中近化学计量组成测量的能力。通过分析 APT 数据采集过程中探测器上离子撞击的顺序,可以看出一部分钇离子撞击在空间上是相关的,但氧离子撞击则不是。采用电压脉冲和激光脉冲(激光能量范围为 0.3-0.8nJ)对铁素体基体中的 Y-O 基纳米颗粒进行 APT 分析。当使用高有效蒸发场分析材料时,这会影响轨迹偏差的影响,纳米颗粒的表观尺寸会减小。观察到 Y:O 比的一些降低,这是由于多次离子蒸发事件的高发生率所致。通过对 ODS 材料中纳米颗粒的大块 Y₂O₃ 的 APT 分析结果进行详细比较,可以得出它们的 Y:O 比约为 1:1。

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