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Martensitic transformation induced strength-ductility synergy in additively manufactured maraging 250 steel by thermal history engineering
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作者 Shahryar Mooraj Shuai Feng +11 位作者 Matthew Luebbe Matthew Register Jian Liu Tianyi Li Baris Yavas David P.Schmidt Matthew W.Priddy Michael B.Nicholas Victor K.Champagne mark aindow Haiming Wen Wen Chen 《Journal of Materials Science & Technology》 2025年第8期212-225,共14页
Maraging steels are known for their exceptional strength but suffer from limited work hardening and ductility.Here,we report an intermittent printing strategy to tailor the microstructure and mechanical properties of ... Maraging steels are known for their exceptional strength but suffer from limited work hardening and ductility.Here,we report an intermittent printing strategy to tailor the microstructure and mechanical properties of maraging 250 steel via tuning the thermal history during wire-arc directed energy deposition.By introducing a dwell time between adjacent layers,the maraging 250 steel is cooled below the martensite start temperature,triggering thermally-driven martensitic transformation during the printing process.Thermal cycling during subsequent layer deposition results in the formation of reverted austenite which shows a refined microstructure and induces elemental segregation between martensite and reverted austenite.The Ni enrichment in the austenite promotes stabilization of the reverted austenite upon cooling to room temperature.The reverted austenite is metastable during deformation,leading to strain-induced martensitic transformation under loading.Specifically,a 3 min interlayer dwell time produces a maraging 250 steel with approximately 8% reverted austenite,resulting in improved work hardening via martensitic transformation induced plasticity during deformation.Meanwhile,the higher cooling rate and refined prior austenite grains lead to substantially refined martensitic grains(by approximately fivefold)together with an increased dislocation density.With 3 min interlayer dwell time,the yield strength of the printed maraging 250 steel increases from 836 MPa to 990 MPa,and the uniform elongation is doubled from 3.2% to 6.5%.This intermittent deposition strategy demonstrates the potential to tune the microstructure of maraging steels for achieving strength-ductility synergy by engineering the thermal history during additive manufacturing. 展开更多
关键词 Additive manufacturing Maraging steel Mechanical properties Martensitic transformation Thermal history
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离子束合成TiSi_2薄膜及显微结构的研究
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作者 金星 宫泽祥 +3 位作者 李晓娜 马腾才 杨大智 mark aindow 《电子显微学报》 CAS CSCD 1996年第1期7-12,共6页
本文主要以电子显微镜为手段研究了离子注入形成的TiSi_2薄膜的微观结构,发现了一种新的TiSi_2相,初步确定它为简单正交结构,点阵常数与已知的C49-TiSi_2相等,并发现新的TiSi_2可向C49-TiSi_2转化;在800℃条件下保温30分钟,C54-TiSi_2可... 本文主要以电子显微镜为手段研究了离子注入形成的TiSi_2薄膜的微观结构,发现了一种新的TiSi_2相,初步确定它为简单正交结构,点阵常数与已知的C49-TiSi_2相等,并发现新的TiSi_2可向C49-TiSi_2转化;在800℃条件下保温30分钟,C54-TiSi_2可在Si(111)基片上外延生长,取向关系为:[121]_(TiSi)_2∥[110]_(Si),(111)_(TiSi)_2∥(111)_(Si)。 展开更多
关键词 离子注入 金属硅化物 电子显微学
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