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◆ Materials Research Letters2025-12-04· Materials science

Achieving high-density oxides and superior high-temperature properties in additively manufactured superalloys via precise oxygen control

Tianhong Gui, Lilin Wang, Xin Lin, Weidong Huang

原始摘要(英文原文)· Original abstract
To further increase dispersoid number density in oxide dispersion strengthened (ODS) alloys fabricated by laser powder bed fusion (L-PBF), this study employs a precise oxygen-controlled treatment of Y-alloyed Hastelloy X powders, eliminating the need for direct addition of Y2O3. In situ precipitation during L-PBF, followed by secondary precipitation during heat treatment, markedly increased dispersoid density. The heat-treated alloy contained Y2O3 particles averaging 16.8 nm in size with a number density of 4.93 × 1021 m−3. These ultrafine dispersoids delivered superior tensile and creep performance, demonstrating strong potential for the development of L-PBF ODS superalloys.
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Achieving high-density oxides and superior high-temperature properties in additively manufactured superalloys via precise oxygen control — 科研速览 Science Skim