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首页> 外文期刊>Journal of Materials Science >Advanced TEM characterization of oxide nanoparticles in ODS Fe-12Cr-5Al alloys
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Advanced TEM characterization of oxide nanoparticles in ODS Fe-12Cr-5Al alloys

机译:ODS Fe-12Cr-5Al合金中氧化物纳米颗粒的先进TEM表征

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The oxide nanoparticles present in three oxide-dispersion-strengthened (ODS) Fe-12Cr-5Al alloys containing additions of (1) Y2O3 (125Y), (2) Y2O3 + ZrO2 (125YZ), and (3) Y2O3 + HfO2 (125YH), were investigated using transmission and scanning transmission electron microscopy. In all three alloys nano-sized (<3.5 nm) oxide particles distributed uniformly throughout the microstructure were characterized using advanced electron microscopy techniques. In the 125Y alloy, mainly Al2O3 and yttrium-aluminum garnet (YAG) phases (Y3Al5O12) were present, while in the 125YZ alloy, additional Zr(C,N) precipitates were identified. The 125YH alloy had the most complex precipitation sequence whereby in addition to the YAG and Al2O3 phases, Hf(C,N), Y2Hf2O7, and HfO2 precipitates were also found. The presence of HfO2 was mainly due to the incomplete incorporation of HfO2 powder during mechanical alloying of the 125YH alloy. The alloy having the highest total number density of the oxides, the smallest grain size, and the highest Vickers hardness was the 125YZ alloy indicating, that Y2O3 + ZrO2 additions had the strongest effect on grain size and tensile properties. High-temperature mechanical testing will be addressed in the near future, while irradiation studies are underway to investigate the irradiation resistance of these new ODS FeCrAl alloys.
机译:存在于三种氧化物弥散强化(ODS)Fe-12Cr-5Al合金中的氧化物纳米颗粒,这些合金包含(1)Y2O3(125Y),(2)Y2O3 + ZrO2(125YZ)和(3)Y2O3 + HfO2(125YH) ),使用透射和扫描透射电子显微镜进行研究。在所有三种合金中,使用先进的电子显微镜技术对在整个微观结构中均匀分布的纳米级(<3.5 nm)氧化物颗粒进行了表征。在125Y合金中,主要存在Al2O3和钇铝石榴石(YAG)相(Y3Al5O12),而在125YZ合金中,发现了其他Zr(C,N)沉淀物。 125YH合金具有最复杂的沉淀顺序,因此,除了YAG和Al2O3相之外,还发现了Hf(C,N),Y2Hf2O7和HfO2沉淀。 HfO2的存在主要是由于在125YH合金的机械合金化过程中HfO2粉末的掺入不完全。具有最高氧化物总数密度,最小晶粒尺寸和最高维氏硬度的合金是125YZ合金,表明添加Y2O3 + ZrO2对晶粒尺寸和拉伸性能的影响最大。高温机械测试将在不久的将来解决,同时正在进行辐照研究以研究这些新型ODS FeCrAl合金的辐照强度。

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