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Oxygen trapping in defect clusters in Fe and FeCr alloy by ion channeling and ab-initio study

机译:离子沟道和AB-Initio研究缺氧在Fe和FECR合金中缺陷簇诱捕

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摘要

Ion channeling experiment and ab-initio density functional theory (DFT) calculations are used to study O interactions with interstitial and vacancy clusters in Fe and FeCr alloy. Chromium and O-18 ions are implanted at the same depth in a Fe crystal and annealed at 400 degrees C. Lattice location of O-18 is found to be tetrahedral interstitial site by nuclear reaction analysis (NRA)/channeling and Cr is found at substitutional site with small displacement by particle induced X-ray emission (PIXE)/channeling experiment. DFT calculations predict similar sites of O-18 and Cr for trapping in self-interstitial clusters. On the other hand, O-18 is implanted in a Fe15at%Cr alloy and annealed at 400 degrees C. The O-18 is found to be displaced 0.6 A along <100> from the octahedral interstitial site in FeCr alloy. DFT calculations predict similar lattice location of O for trapping in vacancy clusters. The Cr atoms show strong influence on the O trapping at defects in FeCr alloy. (C) 2020 Elsevier B.V. All rights reserved.
机译:离子信道实验和AB-initio密度泛函理论(DFT)计算用于研究FE和FECR合金中的间质和空位簇的交互。铬和O-18离子在Fe晶体中的相同深度处植入,并在400摄氏度下退火。发现O-18的晶格位置通过核反应分析(NRA)/沟道和CR在粒子诱导X射线发射(PIXE)/沟道实验小位具有小位移的替代部位。 DFT计算预测了O-18和Cr的类似部位,用于捕获自普拉斯特群。另一方面,O-18植入Fe15At%Cr合金中,并在400℃下退火。发现O-18从FECR合金中的八半骨间位点沿<100沿<100℃。 DFT计算预测O的类似晶格位置用于捕获空缺簇。 CR原子对of ofr合金的缺陷显示出强烈影响。 (c)2020 Elsevier B.v.保留所有权利。

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