首页> 美国卫生研究院文献>Scientific Reports >On the Elevated Temperature Thermal Stability of Nanoscale Mn-Ni-Si Precipitates Formed at Lower Temperature in Highly Irradiated Reactor Pressure Vessel Steels
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On the Elevated Temperature Thermal Stability of Nanoscale Mn-Ni-Si Precipitates Formed at Lower Temperature in Highly Irradiated Reactor Pressure Vessel Steels

机译:高辐照反应堆压力容器钢中较低温度下形成的纳米Mn-Ni-Si沉淀物的高温热稳定性研究

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摘要

Atom probe tomography (APT) and scanning transmission electron microscopy (STEM) techniques were used to probe the long-time thermal stability of nm-scale Mn-Ni-Si precipitates (MNSPs) formed in intermediate and high Ni reactor pressure vessel steels under high fluence neutron irradiation at ≈320 °C. Post irradiation annealing (PIA) at 425 °C for up to 57 weeks was used to determine if the MNSPs are: (a) non-equilibrium solute clusters formed and sustained by radiation induced segregation (RIS); or, (b) equilibrium G or Γ2 phases, that precipitate at accelerated rates due to radiation enhanced diffusion (RED). Note the latter is consistent with both thermodynamic models and x-ray diffraction (XRD) measurements. Both the experimental and an independently calibrated cluster dynamics (CD) model results show that the stability of the MNSPs is very sensitive to the alloy Ni and, to a lesser extent, Mn content. Thus, a small fraction of the largest MNSPs in the high Ni steel persist, and begin to coarsen at long times. These results suggest that the MNSPs remain a stable phase, even at 105 °C higher than they formed at, thus are most certainly equilibrium phases at much lower service relevant temperatures of ≈290 °C.
机译:原子探针层析成像(APT)和扫描透射电子显微镜(STEM)技术用于探测在高温和高Ni反应堆压力容器钢中形成的纳米级Mn-Ni-Si析出物(MNSP)的长期热稳定性≈320C的注量中子辐照。在425°C下进行长达57周的辐照后退火(PIA),以确定MNSP是否为:(a)通过辐射诱导偏析(RIS)形成并维持的非平衡溶质团簇; (b)平衡G或Γ2相,由于辐射增强的扩散(RED)而以加速的速率沉淀。请注意,后者与热力学模型和X射线衍射(XRD)测量均一致。实验和独立校准的团簇动力学(CD)模型结果均表明,MNSP的稳定性对合金Ni非常敏感,在较小程度上对Mn含量也非常敏感。因此,高镍钢中一小部分最大的MNSP持续存在,并开始长时间粗化。这些结果表明,即使在比其形成的温度高105 C的条件下,MNSP仍保持稳定的相态,因此最肯定的是在约290 C的较低服务相关温度下处于平衡相。

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