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首页> 外文期刊>HTM: Zeitschrift fur Werkstoffe Warmebehandlung Fertigung >Bainite Formation in Carbon and Nitrogen enriched Low Alloyed Steels: Kinetics and Microstructures
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Bainite Formation in Carbon and Nitrogen enriched Low Alloyed Steels: Kinetics and Microstructures

机译:碳和氮的贝氏体形成低合金钢:动力学和微观结构

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The effect on the bainite formation of carburizing (0.6 wt.% C), nitriding (0.12 wt.% C-0.25 wt.% N) and carbonitriding (0.7 wt.% C-0.25 wt.% N) of a 23MnCrMo5 low-alloyed steel in the austenitic field was examined by in situ high-energy synchrotron X-ray diffraction (HEXRD) and transmission electron microscopy. The enrichment in nitrogen induces strong acceleration of the bainite transformation kinetics in carbonitrided steel compared to carburized steel, despite the γ-stabilizing character of nitrogen. This is attributed to the nucleation of ferrite on CrN nitrides, which precipitated during the enrichment, either at γ grain boundaries or intragranularly. AlN, VN and MnSiN_2 nitrides were observed as well, with much smaller number density. They formed frequently aggregates with the CrN nitrides. The bainite microstructure is much finer than in initial or carburized steel. It shares some common features with intragranularly nucleated bainite, i.e. acicular ferrite. From HEXRD, the chronology of the phase formation (ferrite and precipitates) during bainite formation as well as cell parameter evolutions are analyzed.
机译:对渗碳(0.6重量%C)的贝氏体形成的影响,氮化(0.12重量%C-0.25重量%N)和碳氮共g(0.7重量%C-0.25重量%N)的23mnCrMO5低 - 通过原位高能同步调节X射线衍射(六磷酸)和透射电子显微镜检查奥氏体场中的合金钢。尽管氮气稳定的氮气相比,氮气中的富集诱导碳氮化钢中贝氏体转化动力学的强加加速。这归因于铁氧体对CrN氮化物的成核,其在富集期间在γ晶界或腔内沉淀。观察到AlN,Vn和MnSin_2氮化物,数量密度较小。它们与CRN氮化物形成经常聚集。贝氏体微观结构比初始或渗碳钢更细。它分享了一些常见的特征,具有内术核心的贝氏体,即针状铁氧体。从六峰,分析了在贝氏体形成期间的相形成(铁氧体和沉淀物)的年代学以及细胞参数演进。

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