Yuan Gao
Investigation on strengthening and toughening mechanisms of Nb-Ti-ZrB2 metal matrix ceramic composites reinforced with in situ niobium and titanium boride
Gao, Yuan; Liu, Zongde; Wang, Qing; Liu, Congcong; Sun, Youmei
Abstract
Nb-Ti-ZrB2 metal matrix ceramic composites with a fixed atomic ratio Nb/Ti = 2/1 and ZrB2 volume fraction changing from 0, 11 vol%, 23 vol% to 36 vol% were hot pressed at 1600 °C under 30 MPa. The influence of ZrB2 content and Ti addition on the phase constitution, microstructure evolution, toughening mechanisms and strengthening mechanisms were investigated. It was shown that the formation of in situ Nb-rich (Ti,Nb)B and Ti-rich (Nb,Ti)B was attributed to a high mutual solubility of monoborides and the amount of niobium and titanium borides increased with increasing ZrB2 content. The needle-shaped (Ti,Nb)B phase weakened the damage to fracture toughness caused by ZrB2 particle fracture due to crack bridging, crack defection and the pull-out toughening mechanisms. The highest fracture toughness of the Nb-Ti-ZrB2 composites was 12.0 MPa·m1/2. The stiff (Nb,Ti)B phase acted as a strong obstacle to the dislocation motion, leading to dislocation pile-up and enhancing the strength of the Nb-Ti-ZrB2 composites during compression tests. However, stress concentration around the needle-shaped (Ti,Nb)B phase easily leads to crack initiation and extension, resulting in decreased strength. The yield strength of Nb-Ti-ZrB2 composites ranged from 657.3 MPa to 1783.0 MPa owing to the combined influence of the strenghening mechanism caused by (Nb,Ti)B and the weakening mechanism caused by (Ti,Nb)B. The compressive deformation and failure process were also discussed in detail in this study.
Citation
Gao, Y., Liu, Z., Wang, Q., Liu, C., & Sun, Y. (2020). Investigation on strengthening and toughening mechanisms of Nb-Ti-ZrB2 metal matrix ceramic composites reinforced with in situ niobium and titanium boride. International Journal of Refractory Metals and Hard Materials, 92, Article 105282. https://doi.org/10.1016/j.ijrmhm.2020.105282
Journal Article Type | Article |
---|---|
Acceptance Date | May 11, 2020 |
Online Publication Date | May 12, 2020 |
Publication Date | Nov 30, 2020 |
Deposit Date | May 13, 2020 |
Publicly Available Date | May 12, 2021 |
Journal | International Journal of Refractory Metals and Hard Materials |
Print ISSN | 0263-4368 |
Publisher | Elsevier |
Peer Reviewed | Peer Reviewed |
Volume | 92 |
Article Number | 105282 |
DOI | https://doi.org/10.1016/j.ijrmhm.2020.105282 |
Public URL | https://durham-repository.worktribe.com/output/1264428 |
Files
Accepted Journal Article
(8.9 Mb)
PDF
Publisher Licence URL
http://creativecommons.org/licenses/by-nc-nd/4.0/
Copyright Statement
© 2020 This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/
You might also like
Air-Gapped Current Transformer simulation and accuracy assessment
(2022)
Presentation / Conference Contribution
Structure health monitoring of concrete structures using magnetic flux leakage
(2022)
Presentation / Conference Contribution
A comparison of air pollution in developed and developing cities: A case study of London and Beijing
(2022)
Presentation / Conference Contribution
Downloadable Citations
About Durham Research Online (DRO)
Administrator e-mail: dro.admin@durham.ac.uk
This application uses the following open-source libraries:
SheetJS Community Edition
Apache License Version 2.0 (http://www.apache.org/licenses/)
PDF.js
Apache License Version 2.0 (http://www.apache.org/licenses/)
Font Awesome
SIL OFL 1.1 (http://scripts.sil.org/OFL)
MIT License (http://opensource.org/licenses/mit-license.html)
CC BY 3.0 ( http://creativecommons.org/licenses/by/3.0/)
Powered by Worktribe © 2025
Advanced Search