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Quad-heterostructure precipitation-strengthened high-entropy alloy overcomes strength-ductility trade-off from cryogenic to intermediate temperatures

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Taylor & Francis Group2025-04-04 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Quad-heterostructure_precipitation-strengthened_high-entropy_alloy_overcomes_strength-ductility_trade-off_from_cryogenic_to_intermediate_temperatures/28491148/1
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资源简介:
We use a multi-heterostructure strategy to mitigate temperature-induced brittleness and strain-softening in precipitation-strengthened high-entropy alloys (PSHEAs). A PSHEA consisting of four types of heterostructures, including deformed/recrystallization grains bands inside with irregularly-shaped/spheroidal coherent precipitates, and smooth/serrated grain and precipitate-matrix interfaces, is successfully synthesized. The resultant PSHEA exhibits significantly-enhanced strength and uniform elongation simultaneously at −196–700 °C. This overcoming of the strength-ductility trade-off is attributed to a synergistic hetero-deformation-induced strengthening effect, and a two-level strain-delocalization toughening effect. Our findings offer a promising pathway to develop ultra-strong, ductile, and strain-hardenable PSHEAs and superalloys in a wide temperature range. A precipitation-strengthened high-entropy alloy consisting of four types of heterostructures is designed and investigated, achieving significantly-enhanced strength and uniform elongation simultaneously at −196–700 °C.
提供机构:
Yang, T.; Cao, B.X.; Ren, C.; Liaw, P.K.; Wang, G.; Jia, Yuefei; Wu, Shiwei; Zhu, J.X.; Ren, J.L.
创建时间:
2025-02-26
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