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Nondestructive characterization of polycrystalline 3D microstructure with time-domain Brillouin scattering

机译:多晶三维微观结构与时域布里渊散射的非破坏性鉴定

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We employ gigahertz frequency ultrasonic waves to non-invasively image grain microstructure in polycrystalline ceria. This technique, termed time-domain Brillouin scattering (TDBS), is a pump-probe technique that launches and monitors ultrasonic waves as they propagate into the sample. We demonstrate TDBS's capability to image microstructure by measuring mode and depth dependent acoustic velocities. The technique provides sufficient contrast to identify grains and offers means to reconstruct subsurface grain boundary's location. The results compare closely with electron backscatter diffraction measurement. This work expands the application of TDBS to 3D structural imaging and offers new route for the nondestructive characterization of grain boundary. (C) 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:我们使用Gigahertz频率超声波在多晶二氧化铈中的非侵入性图像晶粒微观结构。 该技术称为时域布里渊散射(TDB)是一种泵探针技术,其在传播到样品中时发射和监测超声波。 我们通过测量模式和深度相关的声速来展示TDBS对图像微观结构的能力。 该技术提供足够的对比度来识别谷物并提供重建地下晶界位置的手段。 结果与电子反向散射衍射测量密切相比。 这项工作扩展了TDBS对3D结构成像的应用,并为晶界无损表征提供了新的路径。 (c)2019年Acta Materialia Inc.出版By Elsevier Ltd.保留所有权利。

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