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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Investigation of vacancy-type defects in helium irradiated FeCrNi alloy by slow positron beam
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Investigation of vacancy-type defects in helium irradiated FeCrNi alloy by slow positron beam

机译:慢正电子束研究氦气辐照FeCrNi合金中的空位型缺陷

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摘要

The evolution of microstruture for Fe16.7Cr14.5Ni model alloy and 316 stainless steel irradiated with 140 keV He ions were studied by Positron annihilation spectroscopy. The fluences were 1 x 10(16) and 5 x 10(16) He ions/cm(2). The irradiation temperature was room temperature and 573 K, respectively. The variation of S parameter-incident positron energy profile indicated that large amount of vacancy-type defects formed after He ion irradiation. Meanwhile, helium atoms deposited in bulk and certain amount of He-vacancy complexes were formed. The vacancy-type defects could be the major defects in track region and He-vacancy complexes would be the main defects in cascade region. The vacancy-type defects could migrate and aggregate to form vacancy clusters and even microvoids at elevated temperature irradiation. The diffusion mechanism of helium atoms might be changed at different irradiation temperature. (C) 2014 Elsevier B.V. All rights reserved.
机译:用正电子an没光谱法研究了Fe16.7Cr14.5Ni模型合金和316不锈钢在140 keV He离子辐照下的显微组织的演变。能量密度为1 x 10(16)和5 x 10(16)He离子/ cm(2)。照射温度分别为室温和573K。 S参数入射正电子能谱的变化表明He离子辐照后形成了大量的空位型缺陷。同时,氦原子大量沉积并形成一定量的He空位络合物。空位型缺陷可能是轨道区域的主要缺陷,He空位复合体可能是级联区域的主要缺陷。空位型缺陷在高温辐射下会迁移并聚集形成空位簇甚至微孔。氦原子的扩散机理可能在不同的辐照温度下发生变化。 (C)2014 Elsevier B.V.保留所有权利。

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