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首页> 外文期刊>Philosophical Magazine Letters >Composition and magnetic character of nanometre-size Cu precipitates in reactor pressure vessel steels: implications for nuclear power plant lifetime extension
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Composition and magnetic character of nanometre-size Cu precipitates in reactor pressure vessel steels: implications for nuclear power plant lifetime extension

机译:反应堆压力容器钢中纳米级Cu析出物的成分和磁性特征:对延长核电站寿命的影响

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摘要

The sensitivity of positrons to nanometre-size Cu precipitates in Fe alloys has enabled us to apply a novel spin-polarized element-specific method to probe the composition and magnetic character of the precipitates responsible for reactor pressure vessel (RPV) steel embrittlement. The results clearly show that the precipitates are non-magnetic and place an upper limit of about 10 at% on their Fe content. The practical implication of this result is that the Cu precipitate contribution to PRV steel embrittlement saturates is not expected to contribute further during lifetime extension. Our study demonstrates that polarized positrons can be used as a powerful probe of the magnetic character of nanoscale materials, even those embedded in a strongly magnetic host.
机译:正电子对Fe合金中纳米级Cu析出物的敏感性使我们能够应用一种新型的自旋极化特定元素方法来探测造成反应堆压力容器(RPV)钢脆化的析出物的组成和磁性。结果清楚地表明,析出物是非磁性的,并且其Fe含量的上限设定为约10at%。该结果的实际含义是,在延长使用寿命期间,预计不会对PRV钢脆化饱和产生Cu沉淀物的贡献。我们的研究表明,极化的正电子可以用作纳米级材料(甚至是嵌入强磁性基质中的那些材料)的磁性特征的有力探针。

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