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Role of irradiation spectrum in the microstructural evolution of magnesium aluminate spinel

机译:辐照光谱在铝酸镁尖晶石显微组织演变中的作用

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In-situ observations of the nucleation and growth of defect clusters in MgAl2O4 were made in transmission electron microscope-accelerator facilities using concurrent irradiation with ions and electrons to obtain insight into the role of the irradiation spectrum. Various kinds of 30 or 300 keV ions (He+, O+, Mg+, Ar+ and Xe+) and 200 keV or 1 MeV electrons were used to provide a wide range of nuclear and ionizing stopping powers as well as a various effects of displacement cascades. Dislocation loops were formed both inside and outside the electron beam at 870 K under concurrent irradiation with 30 keV ions and 1 MeV electrons. We observed a variety of microstructures that formed during concurrent irradiation with 300 keV ions and 200 keV electrons. These include preferential formation of cavities, suppression of dislocation loop formation and preferential formation of loops at the periphery of the focused electron beam. We discuss the irradiation spectrum effects in terms of the ionizing, displacive and subthreshold nuclear stopping powers, the localized energy density within displacement cascades and the flux distribution of the focused electron beam. Cation diffusion from the inside to the outside of the electron beam, which is probably caused by the subthreshold nuclear and ionizing stopping powers, plays an important role in microstructure evolution during concurrent irradiation. [References: 37]
机译:在透射电子显微镜-加速器设备中使用离子和电子的同时照射对MgAl2O4中的缺陷簇的形核和生长进行了原位观察,以了解照射光谱的作用。各种30或300 keV离子(He +,O +,Mg +,Ar +和Xe +)和200 keV或1 MeV电子被用来提供广泛的核和电离停止能力,以及位移级联的各种作用。在30 keV离子和1 MeV电子的同时照射下,在870 K电子束的内部和外部都形成了位错环。我们观察到在同时照射300 keV离子和200 keV电子的过程中形成的各种微观结构。这些包括优先形成腔,抑制位错回路的形成以及在聚焦电子束的外围优先形成回路。我们从电离,位移和亚阈值核停止能力,位移级联内的局部能量密度以及聚焦电子束的通量分布等方面讨论了辐照光谱效应。阳离子从电子束的内部到外部的扩散,可能是由亚阈值的核能和电离停止能引起的,在同时辐射过程中的微观结构演变中起着重要作用。 [参考:37]

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