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Deformation/Fracture Behavior, Microstructure Evolution and Mechanical Properties of Steel

A special issue of Materials (ISSN 1996-1944). This special issue belongs to the section "Metals and Alloys".

Deadline for manuscript submissions: 31 May 2026 | Viewed by 755

Special Issue Editor


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Guest Editor
Department of Materials and Mineral Resources Engineering, National Taipei University of Technology, Taipei 10608, Taiwan
Interests: powder metallurgy; sintering theory; additive manufacturing; metals and alloys; material analysis; mechanical property; fracture
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Special Issue Information

Dear Colleagues,

This Special Issue aims to cover the mechanical behaviors comprise, but are not limited to, tensile, compressive, fatigue, impact, and creep loadings. The microstructural and fracture analyses include optical microscopy, scanning electron microscopy, transmission electron microscopy, X-ray diffraction, electron backscatter diffraction, electron probe microanalysis, and other novel analytical techniques. In addition, research on the simulation of mechanical behavior and deformation/fracture progress is extremely useful in clarifying the mechanical behaviors of materials, and such studies are also warmly welcome. The types of submissions in this Special Issue include full papers, communications, and reviews.

Prof. Dr. Ming-Wei Wu
Guest Editor

Manuscript Submission Information

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Keywords

  • steel
  • microstructure
  • mechanical behavior
  • deformation
  • fracture
  • material analysis
  • simulation

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Published Papers (1 paper)

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Research

16 pages, 6284 KB  
Article
Recrystallization Texture Evolution in Fe–3.0 wt.% Si Hot-Rolled Silicon Steel Sheet by Quasi In Situ EBSD Analysis
by Fang Zhang, Huabing Zhang, Songtao Chang, Gengsheng Cao, Yuhui Sha and Liang Zuo
Materials 2026, 19(4), 650; https://doi.org/10.3390/ma19040650 - 8 Feb 2026
Viewed by 495
Abstract
The microstructural and textural evolution in hot-rolled Fe–3.0 wt.% Si steel sheets was investigated by quasi in situ electron backscatter diffraction (EBSD) analysis. During recrystallization, the Goss texture intensity in the surface region remains essentially unchanged, whereas the α and α* textures are [...] Read more.
The microstructural and textural evolution in hot-rolled Fe–3.0 wt.% Si steel sheets was investigated by quasi in situ electron backscatter diffraction (EBSD) analysis. During recrystallization, the Goss texture intensity in the surface region remains essentially unchanged, whereas the α and α* textures are strengthened. In the center region, the α texture weakens, and the α* texture shows little variation, while the Goss texture becomes intensified. In the surface region, {112}<110> recrystallized grains nucleate by consuming deformed matrices with orientations near {114}<221> and {110}<112>. Recrystallized {114}<481> and {001}<210> grains consume deformed matrices near {114}<221> and Goss orientations, while Goss grains nucleate by consuming Goss-oriented deformed matrices. In the center region, {112}<110>, {114}<481>, and {001}<210> recrystallized grains nucleate and grow by consuming α and λ type deformed matrices, whereas Goss recrystallized grains preferentially consume deformed matrices with orientations of {111}<112>. Full article
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