High-temperature Mechanical Properties and Dynamic Recrystallization Mechanism of in situ Silicide-reinforced MoNbTaTiVSi Refractory High-entropy Alloy Composite

The hypoeutectic composite material composed of BCC phase and in situ precipitated Ti 5 Si 3 was prepared by adding Si into MoNbTaTiV high-entropy alloy. The obvious oriented in situ Ti 5 Si 3 phase formed eutectic phase with BCC phase in the inter-dendritic area, which leads to excellent properties...

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Veröffentlicht in:Acta metallurgica sinica : English letters 2022-10, Vol.35 (10), p.1617-1630
Hauptverfasser: Ge, Shaofan, Lin, Shifeng, Fu, Huameng, Zhang, Long, Geng, Tieqiang, Zhu, Zhengwang, Li, Zhengkun, Li, Hong, Wang, Aimin, Zhang, Hongwei, Zhang, Haifeng
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Sprache:eng
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Zusammenfassung:The hypoeutectic composite material composed of BCC phase and in situ precipitated Ti 5 Si 3 was prepared by adding Si into MoNbTaTiV high-entropy alloy. The obvious oriented in situ Ti 5 Si 3 phase formed eutectic phase with BCC phase in the inter-dendritic area, which leads to excellent properties of the composite. The alloy exhibits ultra-high yield stress of 718 MPa at 1200 °C and obvious compression plasticity. After reaching the maximum strength, dynamic recovery (DRV) and dynamic recrystallization (DRX) caused soften phenomena. The DRX mechanism of the dual-phase eutectic structure is analyzed by electron backscatter diffraction. The DRX of the BCC phase conforms to the discontinuous DRX and continuous DRX mechanisms, while the Ti 5 Si 3 phase has a geometric DRX mechanism in addition to the above two mechanisms. The high performance of this composite has enough potential high-temperature applications such as nuclear and aero engine.
ISSN:1006-7191
2194-1289
DOI:10.1007/s40195-022-01394-7