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作 者:Yanyuan Zhou Zhenqiang Wang Haokai Dong Fengchun Jiang
机构地区:[1]Key Laboratory of Superlight Materials and SurfaceTechnology,Ministry of Education College of MaterialScience and Chemical Engineering,Harbin EngineeringUniversity,Harbin150001,China [2]National Engineering Research Center of Near-Net-ShapeForming for Metallic Materials,South China Universityof Technology,Guangzhou510641,China
出 处:《Acta Metallurgica Sinica(English Letters)》2022年第7期1090-1102,共13页金属学报(英文版)
基 金:the National Natural Science Foundation of China(No.52001084);the Tianjin Key Laboratory of Materials Laminating Fabrication and Interface Control Technology,the Central University Foundation of Harbin Engineering University(No.GK2100260329);the Jian-Hua Research Foundation of Hebei University of Technology(Nos.HB1921 and HB1920)。
摘 要:In this study,the carbide precipitation at 925 ℃ in austenite(γ)of a 0.04C–1.5Mn–0.10Ti–0.39 W(wt%)low-carbon steel was investigated by stress relaxation(SR)high-resolution transmission electron microscopy and atom probe tomography.First-principles calculations were employed to reveal the precipitation mechanism.Results indicate that a high dispersion of W-and Fe-rich M C-type ultrafi ne carbides(<10 nm)forms during the very early stage prior to the onset of precipitation determined by SR.These ultrafi ne carbides possess a B1-crystal structure with a lattice parameter of 3.696Å,which is quite close to that ofγ(3.56Å).It can signifi cantly decrease the misfi t of carbide/γinterface with a cube-on-cube relationship,thus assisting the carbide nucleation.As the time prolongs,a few spherical or polygonal Ti-rich(Ti,W)C particles(18–60 nm)are formed at the expense of the ultrafi ne carbides by nucleation and growth on them.These(Ti,W)C particles are identifi ed with a“core–shell”structure(Ti-rich core and Ti,W-rich shell),which leads to a better-coarsening resistance compared with pure TiC in Ti steel.Calculation results show that the composition and structure of carbides at certain stage are closely related to a combined eff ect of W,Fe,and Ti atoms together with interstitial vacancies.
关 键 词:Alloy carbide Precipitation (TI W)C Aging hardening Stability Microalloyed steel
分 类 号:TG142.31[一般工业技术—材料科学与工程]
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