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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Dislocation loop evolution and radiation hardening in nickel-based concentrated solid solution alloys
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Dislocation loop evolution and radiation hardening in nickel-based concentrated solid solution alloys

机译:镍基浓浓固体溶液合金脱位环逸出与辐射硬化

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Effects of chemical composition, ion irradiation dose and temperature on unfaulting of irradiation induced Frank dislocation loops to perfect loops in two nickel based single-phase solid solution alloys, Ni -20Fe and NiFe-20Cr, have been studied. The fraction of Frank loops decreases with irradiation dose from 7.2 to 38.4 dpa at 500 degrees C, but with more Frank loops remaining in the ternary alloy. However, perfect loops and dislocation networks become the dominant features of defects at 580 degrees C in both alloys. The results indicate a thermally assisted loop unfaulting process that may be hindered by more sluggish defect motion in the alloy with more chemical components. Nano-indentation with both continuous stiffness method and single indentation method are used to measure radiation hardening. Loop unfaulting in both alloys irradiated at 580 degrees C reduced radiation hardening while significant hardening is observed after irradiation at 500 degrees C. The quasi-static single indentation method exhibits lower hardness results compared to continuous stiffness method, because dislocations induced from the cyclic loading in the latter method get relaxed and stabilized, resulting in higher resistance to the indenter. (c) 2020 Elsevier B.V. All rights reserved.
机译:研究了化学成分,离子辐照剂量和温度对辐照辐射诱导的弗兰克脱位环,以两种基于镍的单相固溶合金,Ni -20Fe和NiFe-20cr的完美环。弗兰克环的一部分在500摄氏度下以7.2至38.4dPa的辐射剂量减少,但在三元合金中剩下更坦率的环。然而,完美的循环和位错网络成为两种合金中580摄氏度的缺陷的主导特征。结果表明,具有更多化学成分的合金中的更缓解缺陷运动,可以阻碍热辅助环形通道工艺。用连续刚度法和单个压痕法的纳米压痕用于测量辐射硬化。在580℃照射的两种合金中的环路减少辐射硬化,同时在500℃照射后观察到显着硬化。与连续刚度法相比,准静态单个缩进方法表现出较低的硬度结果,因为循环载荷诱导的脱位诱导后一种方法放松且稳定,导致对压紧的抗性更高。 (c)2020 Elsevier B.v.保留所有权利。

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