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September 27, 2018SHILAP Revista de lepidopterología624 citationsOpen Access

High-content ductile coherent nanoprecipitates achieve ultrastrong high-entropy alloys

YLYao-Jian LiangLWLinjing WangYWY. R. Wen

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Abstract

Precipitation-hardening high-entropy alloys (PH-HEAs) with good strength-ductility balances are a promising candidate for advanced structural applications. However, current HEAs emphasize near-equiatomic initial compositions, which limit the increase of intermetallic precipitates that are closely related to the alloy strength. Here we present a strategy to design ultrastrong HEAs with high-content nanoprecipitates by phase separation, which can generate a near-equiatomic matrix in situ while forming strengthening phases, producing a PH-HEA regardless of the initial atomic ratio. Accordingly, we develop a non-equiatomic alloy that utilizes spinodal decomposition to create a low-misfit coherent nanostructure combining a near-equiatomic disordered face-centered-cubic (FCC) matrix with high-content ductile Ni3Al-type ordered nanoprecipitates. We find that this spinodal order-disorder nanostructure contributes to a strength increase of ~1.5 GPa (>560%) relative to the HEA without precipitation, achieving one of the highest tensile strength (1.9 GPa) among all bulk HEAs reported previously while retaining good ductility (>9%).

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Cite This Study

Liang et al. (2018) studied this question.

synapsesocial.com/papers/69d9ade6ed2e131d3c6842cbhttps://doi.org/10.1038/s41467-018-06600-8
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