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Characterization of the carbides and the martensite phase in powder-metallurgy high-speed steel

机译:粉末冶金高速钢中碳化物和马氏体相的表征

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摘要

A microstructural characterization of the powder-metallurgy high-speed-steel S390 Microclean was performed based on an elemental distribution of the carbide phase as well as crystallographic analyses. The results showed that there were two types of carbides present: vanadium-rich carbides, which were not chemically homogeneous and exhibited a tungsten-enriched or tungsten-depleted central area; and chemically homogeneous tungsten-rich M_6C-type carbides. Despite the possibility of chemical inhomogenities, the crystallographic orientation of each of the carbides was shown to be uniform. Using electron backscatter diffraction the vanadium-rich carbides were determined to be either cubic VC or hexagonal V_6C_5, while the tungsten-rich carbides were M_6C. The electron backscatter diffraction results were also verified using X-ray diffraction. Several electron backscatter diffraction pattern maps were acquired in order to define the fraction of each carbide phase as well as the amount of martensite phase. The fraction of martensite was estimated using band-contrast images, while the fraction of carbides was calculated using the crystallographic data.
机译:基于碳化物相的元素分布以及晶体学分析,对粉末冶金高速钢S390 Microclean进行了显微组织表征。结果表明,存在两种类型的碳化物:富钒的碳化物,化学性质不均一,并且具有富钨或贫钨的中心区域。化学均匀的富钨M_6C型碳化物。尽管存在化学不均匀性的可能性,但每种碳化物的晶体学取向均显示为均匀。使用电子背散射衍射,富钒碳化物被确定为立方VC或六方晶V_6C_5,而富钨碳化物为M_6C。电子背散射衍射结果也使用X射线衍射进行了验证。为了确定每个碳化物相的分数以及马氏体相的数量,获取了几个电子反向散射衍射图。使用能带对比图像估计马氏体的分数,而使用晶体学数据计算碳化物的分数。

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