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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Assessment of phase stability of oxide particles in different types of 15Cr-ODS ferritic steels under 6.4 MeV Fe ion irradiation at 200 degrees C
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Assessment of phase stability of oxide particles in different types of 15Cr-ODS ferritic steels under 6.4 MeV Fe ion irradiation at 200 degrees C

机译:在200摄氏度下,在6.4mev Fe离子照射下不同类型的15Cr-ODS铁素体钢中氧化物颗粒的相位稳定性评估

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摘要

Three types of 15Cr-ODS ferritic steels were irradiated with 6.4 MeV Fe3+ at 200 degrees C up to a nominal displacement damage of 10 dpa to assess the phase stability of different sorts of oxide particles under ion-irradiation. Before the irradiation, dominant oxide particles in (Y, Ti) ODS, (Y, Al) ODS and (Y, Zr) ODS steels were identified as Y-Ti-O, Y-Al-O, and Y-Zr-O types, respectively, and the difference in the average diameters and number densities of oxide particles among the three ODS ferritic steels was as small as within the factor of two. After the irradiation, the number densities and volume fractions of oxide particles in all the three ODS steels decreased with increasing dpa regardless of the different dispersion morphologies, chemical compositions and crystal structures of the particles, which was interpreted in terms of the dominant mechanism of ballistic dissolution with a moderate occurrence of radiation-enhanced diffusion (RED) and re-precipitation of the nano-clusters. Almost no significant difference in the phase stability of oxide particles was recognized among the three types of ODS ferritic steels. However, normalized volume fractions of Y-Zr-O particles were slightly bigger than those of Y-Ti-O and Y-Al-O at high damage levels. Moreover, Y-Al-O particles underwent the loss of moire fringe because of the amorphization of oxide particles, while the delta-phase Y4Zr3O12 in (Y, Zr) ODS still maintained crystalline structure even at similar to 20 dpa/local. It is concluded that Y-Zr-O particles are more stable than Y-Al-O and possibly Y-Ti-O particles. (C) 2019 Elsevier B.V. All rights reserved.
机译:将三种类型的15Cr-ODS铁素体钢用6.4meV Fe3 +以200摄氏度辐射至10dPa的标称位移损伤,以评估离子辐射下不同各种氧化物颗粒的相位稳定性。在辐射之前,鉴定为(Y,Al)ODS(Y,Al)OD和(Y,Zr)ODS钢中的氧化物颗粒鉴定为Y-Ti-O,Y-Al-O和Y-Zr-O三种ODS铁素体钢中的氧化物颗粒中的平均直径和数量密度的差异分别与两个倍数一样小。在照射之后,所有三个ODS钢中氧化物颗粒的数量密度和体积分数随着DPA的增加而降低,无论不同的分散形貌,化学组合物和颗粒的晶体结构如何,这在弹道的主要机制方面被解释随着辐射增强扩散(红色)的中等出现和纳米簇的再沉淀溶解。在三种类型的ODS铁素体钢中,氧化物颗粒的相位稳定性几乎没有显着差异。然而,Y-ZR-O颗粒的归一化体积分数略大于高损伤水平的Y-Ti-O和Y-Al-O的略大。此外,Y-Al-O颗粒由于氧化物颗粒的非形态化而经历了Moire条纹的损失,而迄今为止δ-相Y4Zr3O12仍保持晶体结构,即使类似于20dPA /局部。结论是,Y-Zr-O颗粒比Y-Al-O更稳定,并且可能是Y-Ti-O颗粒。 (c)2019 Elsevier B.v.保留所有权利。

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