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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Kinetic of solute clustering in neutron irradiated ferritic model alloys and a French pressure vessel steel investigated by atom probe tomography
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Kinetic of solute clustering in neutron irradiated ferritic model alloys and a French pressure vessel steel investigated by atom probe tomography

机译:用原子探针层析成像技术研究中子辐照铁素体模型合金和法国压力容器钢中溶质团簇的动力学

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摘要

The embrittlement of reactor pressure vessel steels under neutron irradiation is partly due to the formation of solute clusters. To gain more insight into their formation mechanisms, ferritic model alloys (low copper Fe–0.08 at.% Cu, Fe–0.09 Cu–1.1 Mn–0.7 Ni (at.%), and a copper free Fe–1.1 Mn–0.7 Ni (at.%)) and a French 16MND5 reactor pressure vessel steel, were irradiated in a test reactor at two fluxes of 0.15 and 9 × 1017 n(E> 1 MeV) m-2 s-1 and at increasing doses from 0.18 to 1.3 × 1024 n(E> 1 MeV) m-2. Atom probe tomography analyses revealed that nanometer-size solute clusters were formed during irradiation in all the materials, even in the copper free Fe–1.1 Mn–0.7 Ni (at.%) alloy. It should be noted that solute segregation in a low-Ni ferritic material was never reported before in absence of the highly insoluble copper impurity. The manganese and nickel segregation is suggested to result from a radiation-induced mechanism.
机译:中子辐射下反应堆压力容器钢的脆化部分归因于溶质团簇的形成。为了更深入地了解其形成机理,铁素体模型合金(低铜Fe–0.08 at。%Cu,Fe–0.09 Cu–1.1 Mn–0.7 Ni(at。%)和无铜Fe–1.1 Mn–0.7 Ni (at。%))和法国16MND5反应堆压力容器钢在测试反应堆中以0.15和9×1017 n(E> 1 MeV)m-2 s-1的两个通量和从0.18至1.3×1024 n(E> 1 MeV)m-2。原子探针层析成像分析表明,即使在无铜的Fe–1.1 Mn–0.7 Ni(原子%)合金中,所有材料在辐照过程中均形成了纳米级溶质簇。应该注意的是,在没有高不溶性铜杂质的情况下,从未报道过低镍铁素体材料中的溶质偏析。锰和镍的偏析被认为是由辐射诱导的机理引起的。

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