On the role of transmission electron microscopy for precipitation analysis in metallic materials

IF 8.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Critical Reviews in Solid State and Materials Sciences Pub Date : 2021-07-02 DOI:10.1080/10408436.2021.1941751
T. Zhou, Revathy Prasath Babu, Z. Hou, P. Hedström
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引用次数: 5

Abstract

Abstract Precipitation hardening is one of the most important strengthening mechanisms in metallic materials, and thus, controlling precipitation is often critical in optimizing mechanical performance. Also other performance requirements such as functional and degradation properties are critically depending on precipitation. Control of precipitation in metallic materials is, thus, vital, and the approach presently in the limelight for this purpose is an integrated approach of theory, computations and experimental characterization. An empirical understanding is essential to build physical models upon and, furthermore, quantitative experimental data is needed to build databases and to calibrate the models. The most versatile tool for precipitation characterization is the transmission electron microscope (TEM). The TEM has sufficient resolving power to image even the finest precipitates, and with TEM-based microanalysis, overall quantitative data such as particle size distribution, volume fraction and number density of particles can be gathered. Moreover, details of precipitate structure, morphology and chemistry, can be revealed. TEM-based postmortem and in situ analysis of precipitation has made significant progress over the last decade, largely stimulated by the widespread application of aberration corrected microscopes and accompanying novel analytics. The purpose of this report is to review these recent developments in precipitation analysis methodology, including sample preparation. Application examples are provided for precipitation analysis in metals, and future prospects are discussed.
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透射电镜在金属材料中沉淀分析中的作用
摘要沉淀硬化是金属材料最重要的强化机制之一,因此控制沉淀硬化是优化金属材料力学性能的关键。此外,其他性能要求,如功能和降解性能,也严重依赖于沉淀。因此,控制金属材料中的沉淀是至关重要的,目前为实现这一目的而受到关注的方法是理论、计算和实验表征的综合方法。经验的理解对于建立物理模型至关重要,此外,需要定量的实验数据来建立数据库和校准模型。最通用的沉淀表征工具是透射电子显微镜(TEM)。TEM具有足够的分辨率,即使是最细的析出物也能成像,并且基于TEM的微观分析可以收集颗粒尺寸分布、体积分数和颗粒数密度等整体定量数据。此外,还可以揭示析出相的结构、形态和化学细节。在过去十年中,基于tem的降水死后和原位分析取得了重大进展,这主要是由于像差校正显微镜的广泛应用和伴随的新型分析方法。本报告的目的是回顾这些沉淀分析方法的最新发展,包括样品制备。给出了金属中沉淀分析的应用实例,并对其应用前景进行了展望。
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来源期刊
CiteScore
22.10
自引率
2.80%
发文量
0
审稿时长
3 months
期刊介绍: Critical Reviews in Solid State and Materials Sciences covers a wide range of topics including solid state materials properties, processing, and applications. The journal provides insights into the latest developments and understandings in these areas, with an emphasis on new and emerging theoretical and experimental topics. It encompasses disciplines such as condensed matter physics, physical chemistry, materials science, and electrical, chemical, and mechanical engineering. Additionally, cross-disciplinary engineering and science specialties are included in the scope of the journal.
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