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Effect of Heavy Ion Irradiation Dosage on the Hardness of SA508-IV Reactor Pressure Vessel Steel

机译:重离子辐照剂量对SA508-IV反应堆压力容器钢硬度的影响

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Specimens of the SA508-IV reactor pressure vessel (RPV) steel, containing 3.26 wt. % Ni and just 0.041 wt. % Cu, were irradiated at 290 °C to different displacement per atom (dpa) with 3.5 MeV Fe ions (Fe 2+ ). Microstructure observation and nano-indentation hardness measurements were carried out. The Continuous Stiffness Measurement (CSM) of nano-indentation was used to obtain the indentation depth profile of nano-hardness. The curves showed a maximum nano-hardness and a plateau damage near the surface of the irradiated samples, attributed to different hardening mechanisms. The Nix-Gao model was employed to analyze the nano-indentation test results. It was found that the curves of nano-hardness versus the reciprocal of indentation depth are bilinear. The nano-hardness value corresponding to the inflection point of the bilinear curve may be used as a parameter to describe the ion irradiation effect. The obvious entanglement of the dislocations was observed in the 30 dpa sample. The maximum nano-hardness values show a good linear relationship with the square root of the dpa.
机译:SA508-IV反应堆压力容器(RPV)钢的样品,含3.26 wt。镍和0.041重量%。在290°C下用3.5 MeV Fe离子(Fe 2+)辐照%Cu,以不同的位移取代每个原子(dpa)。进行了显微组织观察和纳米压痕硬度测量。纳米压痕的连续硬度测量(CSM)用于获得纳米硬度的压痕深度分布。曲线显示出最大的纳米硬度和受辐照样品表面附近的平台损伤,这归因于不同的硬化机理。使用Nix-Gao模型分析纳米压痕测试结果。发现纳米硬度与压痕深度的倒数的曲线是双线性的。可以将与双线性曲线的拐点相对应的纳米硬度值用作描述离子辐照效果的参数。在30 dpa的样品中观察到了明显的位错缠结。最大纳米硬度值与dpa的平方根表现出良好的线性关系。

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