Regulation of Ta element on the B2+γ like pearlitic microstructure and mechanical properties of Ti-46Al-2Cr-0.3Si alloy

The β/B2 phase is recognized to impair the room temperature plasticity of TiAl alloys. To address this problem, a novel B2+γ like pearlitic microstructure (LPM) has been proposed to enhance performance. In this work, Ti-46Al-2Cr-0.3Si- x Ta ( x = 0, 0.5, 1, 2, and 4 at.%) alloys were prepared to elucidate the influence of LPM formation on microstructural evolution and mechanical properties. The results show that initial alloy is dominated by γ+α 2 lamellar colonies, whereas Ta addition promotes the precipitation of LPM within these lamellar colonies. The comprehensive properties increase first and then decrease with increasing Ta content. The room-temperature fracture stress and fracture strain of the Ti-46Al-2Cr-0.3Si-2Ta alloy are increased by 26.99% and 8.97%, respectively. It can be attributed to the synergistic effect of LPM formation and Ta-induced solid-solution strengthening.

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Publication Details

Journal
Intermetallics
Published
2026-09-22
DOI
https://doi.org/10.1016/j.intermet.2026.109569
Primary Topic
Intermetallics and Advanced Alloy Properties
Type
article
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article

Regulation of Ta element on the B2+γ like pearlitic microstructure and mechanical properties of Ti-46Al-2Cr-0.3Si alloy

Jinhu Ju, yong zhang, Dongdong Zhu, Ning Fang et al.
Intermetallics
Intermetallics and Advanced Alloy Properties
article

Regulation of Ta element on the B2+γ like pearlitic microstructure and mechanical properties of Ti-46Al-2Cr-0.3Si alloy

Jinhu Ju, yong zhang, Dongdong Zhu, Ning Fang, Qibin Wang, Qi Wang, Duo Dong, Shiyu Wu, Ruirun Chen, Qi Wang
article en

Abstract

The β/B2 phase is recognized to impair the room temperature plasticity of TiAl alloys. To address this problem, a novel B2+γ like pearlitic microstructure (LPM) has been proposed to enhance performance. In this work, Ti-46Al-2Cr-0.3Si- x Ta ( x = 0, 0.5, 1, 2, and 4 at.%) alloys were prepared to elucidate the influence of LPM formation on microstructural evolution and mechanical properties. The results show that initial alloy is dominated by γ+α 2 lamellar colonies, whereas Ta addition promotes the precipitation of LPM within these lamellar colonies. The comprehensive properties increase first and then decrease with increasing Ta content. The room-temperature fracture stress and fracture strain of the Ti-46Al-2Cr-0.3Si-2Ta alloy are increased by 26.99% and 8.97%, respectively. It can be attributed to the synergistic effect of LPM formation and Ta-induced solid-solution strengthening.

IntermetallicsVol. 198
Harbin Institute of Technology (CN), Taizhou University (CN)
Openalex Percentile: Top 20%
Intermetallics and Advanced Alloy Properties
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