Bordín S Fernandez, Limandri S, Ranalli J M, Castellano G
Instituto de Física Enrique Gaviola, CONICET. M. Allende s/n, Ciudad Universitaria, 5000 Córdoba, Argentina.
Comisión Nacional de Energía Atómica, Av. Gral. Paz 1499, San Martín, 1650 Buenos Aires, Argentina.
Ultramicroscopy. 2016 Dec;171:177-185. doi: 10.1016/j.ultramic.2016.09.010. Epub 2016 Sep 20.
The spatial resolution of the electron backscatter diffraction signal is explored by Monte Carlo simulation for the sigma phase in steel at a typical instrumental set-up. In order to estimate the active volume corresponding to the diffracted electrons, the fraction of the backscattered electrons contributing to the diffraction signal was inferred by extrapolating the Kikuchi pattern contrast measured by other authors, as a function of the diffracted electron energy. In the resulting estimation, the contribution of the intrinsic incident beam size and the software capability to deconvolve patterns were included. A strong influence of the beam size on the lateral resolution was observed, resulting in 20nm for the aperture considered. For longitudinal and depth directions the resolutions obtained were 75nm and 16nm, respectively. The reliability of this last result is discussed in terms of the survey of the last large-angle deflection undergone by the backscattered electrons involved in the diffraction process. Bearing in mind the mean transversal resolution found, it was possible to detect small area grains of sigma phase by EBSD measurements, for a stabilized austenitic AISI 347 stainless steel under heat treatments, simulating post welding (40h at 600°C) and aging (284h at 484°C) effects-as usually occurring in nuclear reactor pressure vessels.
在典型仪器设置下,通过蒙特卡罗模拟研究了钢中西格玛相的电子背散射衍射信号的空间分辨率。为了估计与衍射电子相对应的有效体积,通过外推其他作者测量的菊池花样对比度(作为衍射电子能量的函数),推断出对衍射信号有贡献的背散射电子的比例。在所得估计中,包括了固有入射束尺寸和软件解卷积花样能力的贡献。观察到束尺寸对横向分辨率有很大影响,对于所考虑的孔径,横向分辨率为20nm。对于纵向和深度方向,获得的分辨率分别为75nm和16nm。根据对参与衍射过程的背散射电子所经历的最后一次大角度偏转的研究,讨论了最后一个结果的可靠性。考虑到所发现的平均横向分辨率,对于经过热处理的稳定化奥氏体AISI 347不锈钢,模拟焊接后(600°C下40小时)和时效(484°C下284小时)效应(通常发生在核反应堆压力容器中),通过电子背散射衍射测量可以检测到西格玛相的小面积晶粒。