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  5. Cryoforged nanotwinned titanium with ultrahigh strength and ductility

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Article
English
2021

Cryoforged nanotwinned titanium with ultrahigh strength and ductility

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0 Files

English
2021
Science
Vol 373 (6561)
DOI: 10.1126/science.abe7252

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Shiteng Zhao
Ruopeng Zhang
Qin Yu
+3 more

Abstract

Nanostructured metals are usually strong because the ultrahigh density of internal boundaries restricts the mean free path of dislocations. Usually, they are also more brittle because of their diminished work-hardening ability. Nanotwinned materials, with coherent interfaces of mirror symmetry, can overcome this inherent trade-off. We show a bulk nanostructuring method that produces a multiscale, hierarchical twin architecture in a hexagonal closed-packed, solute-free, and coarse-grained titanium (Ti), with a substantial enhancement of tensile strength and ductility. Pure Ti achieved an ultimate tensile strength of almost 2 gigapascals and a true failure strain close to 100% at 77 kelvin. The multiscale twin structures are thermally stable up to 873 kelvin, which is above the critical temperature for many applications in extreme environments. Our results demonstrate a practical route to achieve attractive mechanical properties in Ti without involving exotic and often expensive alloying elements.

How to cite this publication

Shiteng Zhao, Ruopeng Zhang, Qin Yu, Jon Ell, Robert O. Ritchie, Andrew M. Minor (2021). Cryoforged nanotwinned titanium with ultrahigh strength and ductility. Science, 373(6561), pp. 1363-1368, DOI: 10.1126/science.abe7252.

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Publication Details

Type

Article

Year

2021

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

Science

DOI

10.1126/science.abe7252

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