板条马氏体的习性面与三维形态之间的相关性:利用低碳不锈钢连续切片断层扫描直接进行三维观察

IF 5.3 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Mehdi Mosayebi , Daniel Paquet , Pierre-Antony Deschênes , Laurent Tôn-Thât , Betty Huang , Nabil Bassim
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引用次数: 0

摘要

结合氙等离子体聚焦离子束(PFIB)和电子反向散射衍射(EBSD)分析,通过大体积、高分辨率序列切片断层扫描分析了低碳 13Cr-4Ni 不锈钢中板条马氏体的结晶学和形态学。提取的三维 EBSD 结果与二维观测结果进行了比较,并强调了二维分析可能产生的误解。晶包的三维重建显示,每个先奥氏体晶粒(PAG)的体积都被四种不同类型的晶包占据,在三维中排列成特定的四面体模式。通过几何计算,这种四面体图案的三维特征与微结构的主要习性面{557}γ之间建立了直接联系。这些发现是通过二维表征无法实现的,有望加深我们对板条马氏体形成的理解,并为近期旨在准确表示这些合金的三维结构和机械性能的建模工作提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On the correlation between the habit plane and 3D morphology of lath martensite: A direct 3D observation using serial sectioning tomography of a low-carbon stainless steel

On the correlation between the habit plane and 3D morphology of lath martensite: A direct 3D observation using serial sectioning tomography of a low-carbon stainless steel

The crystallography and morphology of lath martensite in a low-carbon 13Cr-4Ni stainless steel were analyzed by large-volume, high-resolution serial sectioning tomography using a combination of Xe plasma focused ion beam (PFIB) and electron backscatter diffraction (EBSD) analysis. The extracted 3D EBSD results were compared with 2D observations, and potential misinterpretations arising from 2D analyses were highlighted. 3D reconstruction of the packets revealed that the volume of each prior austenite grain (PAG) is occupied with four distinct types of packets, arranged as a specific tetrahedral pattern in 3D. Through geometrical calculations, a direct link between 3D characteristics of this tetrahedral pattern and the dominant habit plane of the microstructure, {557}γ, was established. These findings, unattainable through 2D characterizations, are expected to enhance our understanding of lath martensite formation and inform recent modeling efforts aimed at accurately representing the 3D structure and mechanical properties of these alloys.

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来源期刊
Scripta Materialia
Scripta Materialia 工程技术-材料科学:综合
CiteScore
11.40
自引率
5.00%
发文量
581
审稿时长
34 days
期刊介绍: Scripta Materialia is a LETTERS journal of Acta Materialia, providing a forum for the rapid publication of short communications on the relationship between the structure and the properties of inorganic materials. The emphasis is on originality rather than incremental research. Short reports on the development of materials with novel or substantially improved properties are also welcomed. Emphasis is on either the functional or mechanical behavior of metals, ceramics and semiconductors at all length scales.
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