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Microstructural Evolution of Nb-V-Mo and V Containing TRIP assisted Steels during Thermomechanical Processing

机译:热机械加工过程中Nb-V-mo和V含TRIp辅助钢的微观组织演变

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摘要

The microstructural evolution and precipitation behaviour of Nb-V-Mo and single V containing transformation induced plasticity assisted steels were investigated during thermomechanical processing. A plane strain compression testing machine was used to simulate the thermomechanical processing. Microstructures were characterised by optical microscopy, scanning-transmission electron microscopy and microanalysis, and X-ray diffraction analysis, and Vickers hardness was obtained from the deformed specimens. The resulting microstructure of both Nb-V-Mo and V steels at room temperature primarily consisted of an acicular/bainitic ferrite, retained austenite and martensite surrounded by allotriomorphic ferrite. The TEM analysis showed that a significant number of Nb(V,Mo)(C,N) precipitates were formed in the microstructure down to the finishing stage in Nb-V-Mo steel (i.e. 830 °C). It was also found that the V(C,N) precipitation primarily occurred in both ferrite and deformed austenite below the finishing stage. The results suggested that Nb-Mo additions considerably increased the temperature stability of microalloy precipitates and controlled the microstructural evolution of austenite. However, the microalloy precipitation did not cause a significant precipitation strengthening in both Nb-V-Mo and V steels at room temperature.udud
机译:研究了热机械加工过程中Nb-V-Mo和单V相变诱发塑性辅助钢的组织演变和析出行为。使用平面应变压缩试验机来模拟热机械过程。通过光学显微镜,扫描透射电子显微镜和显微分析以及X射线衍射分析对显微组织进行表征,并从变形的样品获得维氏硬度。 Nb-V-Mo和V钢在室温下得到的显微组织主要由针状/贝氏体铁素体,残余奥氏体和马氏体组成,并被同素异形铁素体包围。 TEM分析表明,在Nb-V-Mo钢(即830℃)直至精加工阶段的显微组织中形成了大量的Nb(V,Mo)(C,N)沉淀。还发现,在精加工阶段以下,V(C,N)析出主要发生在铁素体和变形奥氏体中。结果表明,添加Nb-Mo大大提高了微合金沉淀物的温度稳定性,并控制了奥氏体的组织演变。但是,在室温下,Nb-V-Mo和V钢中的微合金沉淀都不会引起明显的沉淀强化。 ud ud

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    Abbasi E.; Rainforth W.M.;

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  • 年度 2017
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