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重离子辐照损伤分布对CLF-1钢辐照硬化测试结果影响的研究

Study on the Influence of Heavy-ion Irradiation Damage Distribution on Irradiation Hardening Test Results of CLF-1 Steel

  • 摘要: 为研究辐照损伤分布均匀性对CLF-1钢(China Low Activation Ferrite steel-1)力学性能的影响,利用3.0 MeV的Fe离子和3.0, 1.5, 0.7 MeV 3种能量的Fe离子,分别对样品进行单一能量辐照和多能量叠加辐照,均辐照至4.0 dpa,通过透射电镜对辐照后样品的微观形貌进行观察,并采用纳米压痕技术表征不同辐照损伤分布下样品的硬化效应。结果表明,在单一能量辐照条件下,在样品近表面区域相较于离子射程深处观测到的缺陷密度更小,相较于3种能量叠加辐照样品的辐照硬化效应更为显著。通过Nix-Gao模型对数据拟合分析表明,等效硬度依赖于损伤峰值区和近样品表面之间损伤的差异程度,这一差异将影响Nix-Gao模型拟合的等效硬度结果。

     

    Abstract: To investigate the influence of irradiation damage distribution uniformity on the mechanical properties of CLF-1 steel (China Low Activation Ferrite steel-1), samples were irradiated with 3.0 MeV Fe ions (Single Energy) and a combination of 3.0, 1.5, and 0.7 MeV Fe ions (Multi-energy Superposition), both to a dose of 4.0 dpa. The microstructural evolution of irradiated samples was characterized using transmission electron microscopy (TEM). Nanoindentation was used to evaluate the hardening effects under different irradiation damage distributions. The results indicated that under single-energy irradiation, the defect density near the sample surface was lower compared to the peak damage region, and the irradiation hardening effect was more pronounced than in multi-energy irradiated samples. Data fitting using the Nix-Gao model revealed that the equivalent hardness depended on the disparity in damage between the peak damage region and the near-surface region. This disparity influenced the equivalent hardness results derived from the Nix-Gao model fitting.

     

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