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Original Reports

Hierarchical {332}<113> twinning in a metastable β Ti-alloy showing tolerance to strain localization

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Pages 247-253 | Received 18 Jan 2020, Published online: 15 Apr 2020

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X. X. Dong, Y. F. Shen & Y. T. Zhu. (2023) Moderating strain hardening rate to produce high ductility and high strength in a medium carbon TRIP steel. Materials Research Letters 11:1, pages 69-75.
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P. Kwasniak, F. Sun, S. Mantri, R. Banerjee & F. Prima. (2022) Polymorphic nature of {332} 〈 113 〉 twinning mode in BCC alloys. Materials Research Letters 10:5, pages 334-342.
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Articles from other publishers (29)

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Guohua Zhao, Xiaoqing Li & Nik Petrinic. (2021) Materials information and mechanical response of TRIP/TWIP Ti alloys. npj Computational Materials 7:1.
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M.C. Zang, H.Z. Niu, H.R. Zhang, H. Tan & D.L. Zhang. (2021) Cryogenic tensile properties and deformation behavior of a superhigh strength metastable beta titanium alloy Ti–15Mo–2Al. Materials Science and Engineering: A 817, pages 141344.
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Wei Chen, Keer Li, Guoxiang Yu, Junqiang Ren, You Zha & Jun Sun. (2021) Deformation twinning-induced single-variant ω-plates in metastable β-Ti alloys containing athermal ω-precipitates. Journal of Materials Science 56:12, pages 7710-7726.
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Bingnan Qian, Jinyong Zhang, Yangyang Fu, Fan Sun, Yuan Wu, Jun Cheng, Philippe Vermaut & Frédéric Prima. (2021) In-situ microstructural investigations of the TRIP-to-TWIP evolution in Ti-Mo-Zr alloys as a function of Zr concentration. Journal of Materials Science & Technology 65, pages 228-237.
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