金属间化合物Fe3Y机械合金化氧化物分散强化钢的纳米结构

IF 0.3 4区 物理与天体物理 Q4 PHYSICS, NUCLEAR
S. V. Rogozhkin, A. V. Klauz, A. A. Nikitin, A. A. Khalyavina, O. A. Raznitsyn, A. A. Bogachev, N. A. Iskandarov, A. G. Zaluzhny
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引用次数: 0

摘要

本文研究了氧化基体钢粉与Fe3Y金属间化合物粉机械合金化制备的氧化分散强化钢13.5Cr-Fe3Y ODS的纳米结构。除了初始状态外,还研究了650℃、500和1000 h热时效对该钢纳米组织的影响。在研究的13.5Cr-Fe3Y ODS钢的状态下,透射电镜(TEM)检测到纳米级氧化物(~10 ~ 12 nm),其数量密度为~4 ~ 7 × 1021 m-3,气孔(~3.0 ~ 3.6 nm和~2 ~4 × 1022 m-3),位错(~ 2 × 1014 m-2)。能量色散x射线能谱分析表明,氧化颗粒主要富集于Y和O,检测到的孔隙中含有高达3个at。原子探针断层扫描(APT)显示存在~ 3-5 nm和~ 8-30 × 1022 m-3的团簇。探测到的星团也含有0.1 at以内的Ar。%。对比热时效初始态和热时效后状态的数据发现,随着热时效时间的延长,氧化物的数量密度增加,尺寸减小,而在误差范围内,1000 h氧化相的体积相对于初始状态保持不变。APT数据的比较表明,在时效至500 h时,团簇的体积增加,而在1000 h时,团簇的体积减少。在热时效至1000 h时,氧化物数量的增加与相同状态下团簇体积的减少相关。热老化过程中孔隙体积明显减小(约2倍)。时效1000 h时,位错密度增大到~5 × 1014 m-2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanostructure of Oxide Dispersion-Strengthened Steel Mechanically Alloyed with Intermetallic Fe3Y

Nanostructure of Oxide Dispersion-Strengthened Steel Mechanically Alloyed with Intermetallic Fe3Y

In this work, the nanostructure of oxide dispersion-strengthened steel 13.5Cr–Fe3Y ODS, obtained by mechanical alloying of oxidized matrix steel powder and Fe3Y intermetallic powder. In addition to the initial state, the effect of thermal aging on the nanostructure of this steel at 650°C for 500 and 1000 h was investigated. In the studied states of 13.5Cr–Fe3Y ODS steel, transmission electron microscopy (TEM) has detected nanoscale oxides (~10–12 nm) with a number density of ~4–7 × 1021 m–3, pores (~3.0–3.6 nm and ~2–4 × 1022 m–3), as well as the dislocations ~2 × 1014 m–2. According to the energy-dispersive X-ray spectroscopy analysis, oxide particles are mainly enriched in Y and O, and the detected pores contain up to 3 at. % Ar. Atom probe tomography (APT) revealed the presence of clusters (~3–5 nm and ~8–30 × 1022 m–3). The detected clusters also contain Ar within 0.1 at. %. Comparison of the data on the initial state and states after thermal aging revealed an increase in the number density of oxides and a decrease in their size with an increase in the thermal aging time, while the volume of the oxide phase at 1000 h remains the same relative to the initial state within the limits of error. Comparison of APT data showed an increase in the volume of clusters during aging up to 500 h and a decrease in the volume at 1000 h. An increase in the number of oxides during thermal aging up to 1000 h correlates with a decrease in the volume of clusters in the same state. There is a significant (~2 times) decrease in pore volume during thermal aging. The density of dislocations increases to ~5 × 1014 m–2 when reaching 1000 h of aging.

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来源期刊
Physics of Atomic Nuclei
Physics of Atomic Nuclei 物理-物理:核物理
CiteScore
0.60
自引率
25.00%
发文量
56
审稿时长
3-6 weeks
期刊介绍: Physics of Atomic Nuclei is a journal that covers experimental and theoretical studies of nuclear physics: nuclear structure, spectra, and properties; radiation, fission, and nuclear reactions induced by photons, leptons, hadrons, and nuclei; fundamental interactions and symmetries; hadrons (with light, strange, charm, and bottom quarks); particle collisions at high and superhigh energies; gauge and unified quantum field theories, quark models, supersymmetry and supergravity, astrophysics and cosmology.
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