Scanning Three-Dimensional X-ray Diffraction Microscopy for Carbon Steels

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION Quantum Beam Science Pub Date : 2023-07-14 DOI:10.3390/qubs7030023
Yujiro Hayashi, H. Kimura
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Abstract

Plastically deformed low-carbon steel has been analyzed by nondestructive three-dimensional orientation and strain mapping using scanning three-dimensional X-ray diffraction microscopy (S3DXRD). However, the application of S3DXRD is limited to single-phase alloys. In this study, we propose a modified S3DXRD analysis for dual-phase alloys, such as ferrite–pearlite carbon steel, which is composed of grains detectable as diffraction spots and a phase undetectable as diffraction spots. We performed validation experiments for ferrite–pearlite carbon steel with different pearlite fractions, in which the ferrite grains and the pearlite corresponded to the detectable grains and an undetectable phase, respectively. The regions of pearlite appeared more remarkably in orientation maps of the ferrite grains obtained from the carbon steel samples than that of the single-phase low-carbon steel and increased with the increase in the carbon concentration. The fractions of the detectable grains and the undetectable phase were determined with an uncertainty of 15%–20%. These results indicate that the proposed modified analysis is qualitatively valid for dual-phase alloys comprising detectable grains and an undetectable phase.
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碳钢的扫描三维X射线衍射显微镜
利用扫描三维X射线衍射显微镜(S3DXRD)对塑性变形低碳钢进行了无损三维定向和应变映射分析。然而,S3DXRD的应用仅限于单相合金。在本研究中,我们对双相合金(如铁素体-珠光体碳钢)提出了一种改进的S3DXRD分析,该分析由可检测为衍射点的晶粒和无法检测为衍射斑的相组成。我们对具有不同珠光体组分的铁素体-珠光体碳钢进行了验证实验,其中铁素体晶粒和珠光体分别对应于可检测晶粒和不可检测相。与单相低碳钢相比,从碳钢样品中获得的铁素体晶粒的取向图中出现了更显著的珠光体区域,并且珠光体区域随着碳浓度的增加而增加。可检测晶粒的分数和不可检测相的不确定度为15%-20%。这些结果表明,所提出的改进分析对包括可检测晶粒和不可检测相的双相合金在质量上是有效的。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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