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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Microstructure evaluation of Fe-based amorphous alloys investigated by doppler broadening positron annihilation technique
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Microstructure evaluation of Fe-based amorphous alloys investigated by doppler broadening positron annihilation technique

机译:多普勒展宽正电子an没技术研究铁基非晶态合金的显微组织

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摘要

Microstructure of Fe-based amorphous and nanocrystalline soft magnetic alloy has been investigated by X-ray diffraction (XRD), transmission electronic microscopy (TEM) and Doppler broadening positron annihilation technique (PAT). Doppler broadening measurement reveals that amorphous alloys (Finemet, Type I) which can form a nanocrystalline phase have more defects (free volume) than alloys (Metglas, Type II) which cannot form this microstructure. XRD and TEM characterization indicates that the nanocrystallization of amorphous Finemet alloy occurs at 460°C, where nanocrystallites of α-Fe with an average grain size of a few nanometers are formed in an amorphous matrix. With increasing annealing temperature up to 500°C, the average grain size increases up to around 12 nm. During the annealing of Finemet alloy, it has been demonstrated that positron annihilates in quenched-in defect, crystalline nanophase and amorphous-nanocrystalline interfaces. The change of line shape parameter S with annealing temperature in Finemet alloy is mainly due to the structural relaxation, the pre-nucleation of Cu nucleus and the nanocrystallization of α-Fe(Si) phase during annealing. This study throws new insights into positron behavior in the nanocrystallization of metallic glasses, especially in the presence of single or multiple nanophases embedded in the amorphous matrix.
机译:通过X射线衍射(XRD),透射电子显微镜(TEM)和多普勒展宽正电子technique灭技术(PAT)研究了铁基非晶态和纳米晶软磁合金的微观结构。多普勒展宽测量表明,可以形成纳米晶相的非晶态合金(Finemet,I型)比不能形成这种微结构的合金(Metglas,II型)具有更多的缺陷(自由体积)。 XRD和TEM表征表明,非晶Finemet合金的纳米晶在460℃发生,其中在非晶基质中形成平均晶粒尺寸为几纳米的α-Fe纳米晶。随着退火温度升高到500°C,平均晶粒尺寸增加到12 nm左右。在Finemet合金的退火过程中,已证明正电子an灭了淬火缺陷,晶体纳米相和非晶-纳米晶界面。 Finemet合金中线形参数S随退火温度的变化主要归因于退火过程中的结构弛豫,Cu核的预成核和α-Fe(Si)相的纳米结晶。这项研究对金属玻璃的纳米结晶中的正电子行为提出了新的见解,特别是在非晶基质中嵌入单个或多个纳米相的情况下。

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