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◆ Micron (Oxford, England : 1993)2026-08-03

Microscopic and thermodynamic insights into Ti-enriched high-entropy intermetallic formation during solidification of a multicomponent alloy.

Mohsen Saboktakin Rizi, Hossein Minouei, Marzieh Ebrahimian, Tea-Sung Jun, Temel Varol, Nokeun Park, Sun Ig Hong

原始摘要(英文原文)· Original abstract
The effect of Ti addition on solidification and intermetallic phase formation in the FeMn40Co10Cr10C0.5 HEA was investigated by combining advanced microscopy with CALPHAD thermodynamic calculations. The Ti-free FeMn40Co10Cr10C0.5 alloy solidified predominantly as an FCC dendritic structure with limited elemental partitioning. In contrast, the addition of 2 at% Ti produced a multiphase microstructure comprising 78.4 vol% FCC matrix, 20.3 vol% Ti-enriched intermetallic phase, and 1.3 vol% TiC, with a mean TiC particle size of ∼0.89 μm. Elemental mapping and line-scan analyses showed relatively uniform distributions of Fe, Mn, Co, and Cr within the FCC matrix, localized Ti enrichment within the interdendritic constituent, and pronounced Ti and C enrichment in discrete carbide particles. The Ti-enriched phase formed an interconnected network along the interdendritic channels. Thermodynamic calculations indicated that this phase becomes stable near the terminal stage of solidification. The results demonstrate that the Ti-enriched intermetallic phase nucleates from the compositionally enriched residual liquid through the combined influence of solidification-induced microsegregation, negative mixing enthalpies between Ti and the transition-metal constituents, and Ti-induced atomic-size mismatch, while TiC precipitates from the remaining liquid.
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Microscopic and thermodynamic insights into Ti-enriched high-entropy intermetallic formation during solidification of a multicomponent alloy. — 科研速览 Science Skim