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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Recent progress in microstructural hydrogen mapping in steels: quantification, kinetic analysis, and multi-scale characterisation
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Recent progress in microstructural hydrogen mapping in steels: quantification, kinetic analysis, and multi-scale characterisation

机译:钢材微观结构氢映射的最新进展:量化,动力学分析和多尺度表征

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摘要

This paper gives an overview of recent progress in microstructure-specific hydrogen mapping techniques. The challenging nature of mapping hydrogen with high spatial resolution, i.e. at the scale of finest microstructural features, led to the development of various methodologies: thermal desorption spectrometry, silver decoration, the hydrogen microprint technique, secondary ion mass spectroscopy, atom probe tomography, neutron radiography, and the scanning Kelvin probe. These techniques have different characteristics regarding spatial and temporal resolution associated with microstructure-sensitive hydrogen detection. Employing these techniques in a site-specific manner together with other microstructure probing methods enables multi-scale, quantitative, three-dimensional, high spatial, and kinetic resolution hydrogen mapping, depending on the specific multi-probe approaches used. Here, we present a brief overview of the specific characteristics of each method and the progress resulting from their combined application to the field of hydrogen embrittlement.
机译:本文概述了近期微观结构特异性氢映射技术的进展。用高空间分辨率映射氢气的挑战性,即在最佳微观结构特征的规模中导致了各种方法的发展:热解吸光谱,银色装饰,氢微胶体技术,二次离子质谱,原子探测断层扫描,中子造影和扫描kelvin探针。这些技术具有关于与微观结构敏感性氢检测相关的空间和时间分辨率的不同特性。采用这些技术以特定于站点的方式与其他微结构探测方法一起实现多尺度,定量,三维,高空间和动力学分辨率绘制,这取决于所用的特定的多探针方法。在此,我们简要概述了每种方法的具体特征和从它们的组合应用到氢脆化领域所产生的进展。

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