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Correlation between mechanical properties and Cu precipitates induced by neutron irradiation of Fe-Cu alloys

机译:Fe-Cu合金中子辐射诱导力学性能与Cu沉淀的相关性

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It is well known that Cu precipitates are formed by neutron irradiation of Fe-Cu alloys, which are the model alloys of reactor pressure vessels (RPVs), and Cu precipitates increase the yield stress and decrease the total elongation of Fe-Cu alloys. However, the correlation between the formation of Cu precipitates and the mechanical properties of Fe-Cu alloys is not clear. In this study, two model alloys, Fe-0.3Cu and Fe-0.6Cu were irradiated with neutrons at 573 K with up to 6.2 x 10(22) neutrons/m(2) (E 0.1 MeV), corresponding to 9.5 x 10(-3) dpa (displacement per atom). Cu precipitates were formed in both FeCu alloys even after an irradiation of 1.1 x 10(-5) dpa. The Vickers microhardness, 0.2% yield stress, and tensile stress increased, but the total elongation decreased with an increased irradiation dose up to about 4.7 x 10(-4) - 2.4 x 10(-3) dpa for both alloys. After that, the Vickers microhardness, 0.2% yield stress, and tensile stress decreased with an increased irradiation dose. These changes in the mechanical properties of the alloys are related to the growth of microvoids. (C) 2018 Elsevier B.V. All rights reserved.
机译:众所周知,Cu沉淀物通过Fe-Cu合金的中子照射形成,即反应器压力容器(RPV)的模型合金,Cu沉淀物增加屈服应力并降低Fe-Cu合金的总伸长率。然而,Cu沉淀物的形成与Fe-Cu合金的机械性能之间的相关性尚不清楚。在该研究中,使用高达6.2×10(22)中子/ m(2)(E& 0.1 mev),用573k辐射中子,用中子照射两种模型合金,Fe-0.3cu和Fe-0.6cu,对应于9.5 x 10(-3)DPA(每个原子位移)。即使在1.1×10(-5)DPA的照射后,也可以在两个FECU合金中形成Cu沉淀物。维氏微硬度,0.2%屈服应力,拉伸应力增加,但总伸长率降低,辐照剂量增加至约4.7×10(-4) - 2.4×10(-3)DPA。之后,Vickers显微硬度,0.2%屈服应力,并用增加的辐照剂量降低。合金的机械性能的这些变化与微脂糖的生长有关。 (c)2018年elestvier b.v.保留所有权利。

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