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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Stability of nanometer-sized oxide clusters in mechanically-alloyed steel under ion-induced displacement cascade damage conditions
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Stability of nanometer-sized oxide clusters in mechanically-alloyed steel under ion-induced displacement cascade damage conditions

机译:离子诱导位移级联损伤条件下机械合金钢中纳米尺寸氧化物簇的稳定性

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摘要

Oxide dispersion strengthened ferritic steels are being considered for a number of advanced nuclear reactor applications because of their high strength and potential for high temperature application. Since these properties are attributed to the presence of a high density of very small (nanometer-sized) oxide clusters, there is interest in examining the radiation stability of such clusters. A novel experiment has been carried out to examine oxide nanocluster stability in a mechanically alloyed, oxide dispersion strengthened ferritic steel designated 12YWT. Pre-polished specimens were ion irradiated and the resulting microstructure was examined by atom probe tomography. After ion irradiation to similar to 0.7 dpa with 150 keV Fe ions at 300 degrees C, a high number density of similar to 4 nm-diameter nanoclusters was observed in the ferritic matrix. The nanoclusters are enriched in yttrium, titanium and oxygen, depleted in tungsten and chromium, and have a stoichiometry close to (Ti + Y):O. A similar cluster population was observed in the unirradiated materials, indicating that the ultrafine oxide nanoclusters are resistant to coarsening and dissolution under displacement cascade damage for the ion irradiation conditions used. (c) 2006 Elsevier B.V. All rights reserved.
机译:氧化物弥散强化铁素体钢因其高强度和高温应用潜力而被考虑用于许多先进的核反应堆应用中。由于这些性质归因于非常小的(纳米级)氧化物簇的高密度存在,因此有兴趣研究这种簇的辐射稳定性。已经进行了一项新的实验,以检查机械合金化的,氧化物弥散强化的铁素体钢(称为12YWT)中的氧化物纳米簇稳定性。对预抛光的样品进行离子辐照,并通过原子探针层析成像技术检查所得的微观结构。在300摄氏度下用150 keV Fe离子进行离子辐照至0.7 dpa左右后,在铁素体基体中观察到了与4 nm直径纳米簇相似的高数密度。纳米簇富含钇,钛和氧,贫了钨和铬,化学计量比接近(Ti + Y):O。在未辐照的材料中观察到相似的簇数,这表明在所使用的离子辐照条件下,超细氧化物纳米簇在位移级联损伤下耐粗化和溶解。 (c)2006 Elsevier B.V.保留所有权利。

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