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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Anomalous small-angle X-ray scattering (ASAXS) study of irradiation-induced nanostructure change in Fe-ion beam irradiated oxide dispersion-strengthened (ODS) steel
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Anomalous small-angle X-ray scattering (ASAXS) study of irradiation-induced nanostructure change in Fe-ion beam irradiated oxide dispersion-strengthened (ODS) steel

机译:异常的小角X射线散射(Asaxs)对Fe离子束照射氧化物分散体的照射诱导的纳米结构变化的研究 - 加强(ODS)钢

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摘要

We have succeeded in observing Fe-ion-beam induced nanostructural change of MA956 oxide dispersion-strengthened (ODS) steel using anomalous small-angle X-ray scattering (ASAXS) diffractometry. The ASAXS curve shows a power-law scattering that follows the Porod's law and an overlapped shoulder peak at the magnitude of scattering vector, Q, around 0.6 nm(-1). As the X-ray energy approaches the absorption K-edge of Cr (5.990 keV), the intensity of the power-law scattering slightly decreases, but that of the shoulder peak remarkably increases. From these results, the power-law scattering is attributed to Cr-poor scatterers with a radius much larger than 5 nm, and the shoulder peak is attributed to Cr-rich alpha' precipitates with a mean radius of 2.8 nm. After the ion-beam irradiation, intensity of the power-law scattering is nearly doubled, but the shoulder peak remains unchanged within an error of 2%. The latter result indicates that the irradiation-induced changes of radius and inter-precipitation distance of the alpha' precipitates are smaller than 10%, and the change of their interface thickness is less than 0.5 nm. In this way, our ASAXS results guarantee an absence of irradiation-induced nanostructure change of specific kinds of precipitates together with statistical errors, while observing changes of other precipitates. (C) 2019 Elsevier B.V. All rights reserved.
机译:使用异常的小角X射线散射(Asaxs)衍射法,我们成功地观察了Fe离子束诱导的MA956氧化物分散型(ODS)钢的纳米结构变化。 Asaxs曲线示出了沿着Porod的定律和重叠肩峰的动力律散射,在散射载体的幅度下,Q,约0.6nm(-1)。随着X射线能量接近Cr(5.990kev)的吸收k边缘,电力律散射的强度略微降低,但肩峰的强度显着增加。从这些结果来看,电力法散射归因于半径大于5nm的Cr差距散射仪,肩峰归因于富含Cr的α'沉淀物,平均半径为2.8nm。在离子束照射之后,电力法散射的强度几乎加倍,但肩峰在2%的误差内保持不变。后一种结果表明,α'沉淀物的半径和沉淀距离的辐射诱导的变化小于10%,并且它们的界面厚度的变化小于0.5nm。通过这种方式,我们的刺激结果能够在没有统计误差的情况下不存在辐射诱导的特异性沉淀物的纳米结构变化,同时观察到其他沉淀物的变化。 (c)2019 Elsevier B.v.保留所有权利。

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