Cargando…

A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials

Grain boundary engineering (GBE) is considered to be an attractive approach to microstructure control, which significantly enhances the grain-boundary-related properties of face-centered cubic (FCC) metals. During the twinning-related GBE, the microstructures are characterized as abundant special tw...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Yu-Qing, Quan, Guo-Zheng, Zhao, Jiang, Yu, Yan-Ze, Xiong, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342337/
https://www.ncbi.nlm.nih.gov/pubmed/37444876
http://dx.doi.org/10.3390/ma16134562
_version_ 1785072474991362048
author Zhang, Yu-Qing
Quan, Guo-Zheng
Zhao, Jiang
Yu, Yan-Ze
Xiong, Wei
author_facet Zhang, Yu-Qing
Quan, Guo-Zheng
Zhao, Jiang
Yu, Yan-Ze
Xiong, Wei
author_sort Zhang, Yu-Qing
collection PubMed
description Grain boundary engineering (GBE) is considered to be an attractive approach to microstructure control, which significantly enhances the grain-boundary-related properties of face-centered cubic (FCC) metals. During the twinning-related GBE, the microstructures are characterized as abundant special twin boundaries that sufficiently disrupt the connectivity of the random boundary network. However, controlling the grain boundary character distribution (GBCD) is an extremely difficult issue, as it strongly depends on diverse processing parameters. This article provides a comprehensive review of controlling GBCD during the twinning-related GBE of FCC materials. To commence, this review elaborates on the theory of twinning-related GBE, the microscopic mechanisms used in the optimization of GBCD, and the optimization objectives of GBCD. Aiming to achieve control over the GBCD, the influence of the initial microstructure, thermo-mechanical processing (TMP) routes, and thermal deformation parameters on the twinning-related microstructures and associated evolution mechanisms are discussed thoroughly. Especially, the development of twinning-related kinetics models for predicting the evolution of twin density is highlighted. Furthermore, this review addresses the applications of twinning-related GBE in enhancing the mechanical properties and corrosion resistance of FCC materials. Finally, future prospects in terms of controlling the GBCD during twinning-related GBE are proposed. This study will contribute to optimizing the GBCD and designing GBE routes for better grain-boundary-related properties in terms of FCC materials.
format Online
Article
Text
id pubmed-10342337
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103423372023-07-14 A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials Zhang, Yu-Qing Quan, Guo-Zheng Zhao, Jiang Yu, Yan-Ze Xiong, Wei Materials (Basel) Review Grain boundary engineering (GBE) is considered to be an attractive approach to microstructure control, which significantly enhances the grain-boundary-related properties of face-centered cubic (FCC) metals. During the twinning-related GBE, the microstructures are characterized as abundant special twin boundaries that sufficiently disrupt the connectivity of the random boundary network. However, controlling the grain boundary character distribution (GBCD) is an extremely difficult issue, as it strongly depends on diverse processing parameters. This article provides a comprehensive review of controlling GBCD during the twinning-related GBE of FCC materials. To commence, this review elaborates on the theory of twinning-related GBE, the microscopic mechanisms used in the optimization of GBCD, and the optimization objectives of GBCD. Aiming to achieve control over the GBCD, the influence of the initial microstructure, thermo-mechanical processing (TMP) routes, and thermal deformation parameters on the twinning-related microstructures and associated evolution mechanisms are discussed thoroughly. Especially, the development of twinning-related kinetics models for predicting the evolution of twin density is highlighted. Furthermore, this review addresses the applications of twinning-related GBE in enhancing the mechanical properties and corrosion resistance of FCC materials. Finally, future prospects in terms of controlling the GBCD during twinning-related GBE are proposed. This study will contribute to optimizing the GBCD and designing GBE routes for better grain-boundary-related properties in terms of FCC materials. MDPI 2023-06-24 /pmc/articles/PMC10342337/ /pubmed/37444876 http://dx.doi.org/10.3390/ma16134562 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Zhang, Yu-Qing
Quan, Guo-Zheng
Zhao, Jiang
Yu, Yan-Ze
Xiong, Wei
A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title_full A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title_fullStr A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title_full_unstemmed A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title_short A Review on Controlling Grain Boundary Character Distribution during Twinning-Related Grain Boundary Engineering of Face-Centered Cubic Materials
title_sort review on controlling grain boundary character distribution during twinning-related grain boundary engineering of face-centered cubic materials
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342337/
https://www.ncbi.nlm.nih.gov/pubmed/37444876
http://dx.doi.org/10.3390/ma16134562
work_keys_str_mv AT zhangyuqing areviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT quanguozheng areviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT zhaojiang areviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT yuyanze areviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT xiongwei areviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT zhangyuqing reviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT quanguozheng reviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT zhaojiang reviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT yuyanze reviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials
AT xiongwei reviewoncontrollinggrainboundarycharacterdistributionduringtwinningrelatedgrainboundaryengineeringoffacecenteredcubicmaterials