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◆ Virtual and Physical Prototyping2026-07-31· Materials science

Nitrogen-regulated δ→γ phase transformation behavior in wire arc additively manufactured duplex stainless steel with in situ acoustic emission monitoring

Hongbin Dai, Jiabao Zhang, Fengyuan Bao, Xianqing Liu, Shanlin He

原始摘要(英文原文)· Original abstract
Duplex stainless steel, DSS, is prone to δ/γ phase imbalance during wire arc additive manufacturing, WAAM, which affects mechanical and corrosion performance. In this work, 2209 DSS walls were deposited under Ar, Ar + 2%N₂ and Ar + 10%N₂ shielding gases to regulate the δ/γ phase balance, while contact acoustic emission, AE, signals were synchronously acquired to evaluate acoustic responses associated with microstructural evolution. Increasing the N₂ fraction promoted γ-austenite formation and shifted the deposits from a near-balanced duplex structure to an austenite-rich state. Scheil-Gulliver calculations, XRD and EBSD indicated primary δ-ferrite solidification followed by enhanced δ→γ transformation during cooling and interlayer reheating. AE features, including RMS, characteristic frequency and spectral entropy, varied systematically with γ-austenite fraction. PCA further distinguished the acoustic responses under different shielding gases, and trend-level association linked AE features with phase constitution and tensile behaviour. These results demonstrate that AE can serve as an auxiliary process-level indicator for phase-balance regulation and process optimisation in WAAM-fabricated DSS.
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Nitrogen-regulated δ→γ phase transformation behavior in wire arc additively manufactured duplex stainless steel with in situ acoustic emission monitoring — 科研速览 Science Skim