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  5. Hydriding of titanium: Recent trends and perspectives in advanced characterization and multiscale modeling

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Article
en
2022

Hydriding of titanium: Recent trends and perspectives in advanced characterization and multiscale modeling

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0 Files

en
2022
Vol 26 (6)
Vol. 26
DOI: 10.1016/j.cossms.2022.101020

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Digby D Macdonald
Digby D Macdonald

University of California, Berkeley

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Yakun Zhu
Tae Wook Heo
Jennifer N. Rodriguez
+23 more

Abstract

Titanium (Ti) and its alloys are attractive for a wide variety of structural and functional applications owing to excellent specific strength, toughness and stiffness, and corrosion resistance. However, if exposed to hydrogen sources, these alloys are susceptible to hydride formation in the form of TiHx (0 < x ≤ 2), leading to crack initiation and mechanical failure due to lattice deformation and stress accumulation. The kinetics of the hydriding process depends on several factors, including the critical saturation threshold for hydrogen within Ti, the specific interaction of hydrogen with protective surface oxide, the rates of mass transport, and the kinetics of nucleation and phase transformation. Unfortunately, key knowledge gaps and challenges remain regarding the details of these coupled processes, which take place across vast ranges of time and length scales and are often difficult to probe directly. This work reviews recent advances in multiscale characterization and modeling efforts in Ti hydriding. We identify unanswered questions and key challenges, propose new perspectives on how to solve these remaining issues, and close knowledge gaps by discussing and demonstrating specific opportunities for integrating advanced characterization and multiscale modeling to elucidate chemistry and composition, microstructure phenomena, and macroscale performance and testing.

How to cite this publication

Yakun Zhu, Tae Wook Heo, Jennifer N. Rodriguez, Peter Weber, Rongpei Shi, Bruce J. Baer, Felipe F. Morgado, Stoichko Antonov, Kyoung E. Kweon, Erik B. Watkins, Daniel J. Savage, James Chapman, Nathan Keilbart, Y. Song, Zhen Qi, Baptiste Gault, Sven C. Vogel, Shohini Sen-Britain, Matthew Shalloo, Christine A. Orme, Michael Bagge‐Hansen, Christopher N Hahn, Tuan Anh Pham, Digby D Macdonald, S. Roger Qiu, Brandon C. Wood (2022). Hydriding of titanium: Recent trends and perspectives in advanced characterization and multiscale modeling. , 26(6), DOI: https://doi.org/10.1016/j.cossms.2022.101020.

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Publication Details

Type

Article

Year

2022

Authors

26

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1016/j.cossms.2022.101020

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