Phase Composition and Defect Substructure of Strengthening Layer Surfaced on Low Alloyed Steel

Y. Ivanov, V. Gromov, S. Konovalov, V. Kormyshev, R. Qin, O. Semina
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Abstract

The microstructure and microhardness distribution in surface of low carbon Hardox 450 steel coated with alloyed powder wires of different chemical compositions are studied. It is shown that the microhardness of 6-8 mm thickness surfaced layer exceeds that of base metal by more than 2 times. The increased mechanical properties of surfaced layer are caused by the submicro and nanoscale dispersed martensite, containing the niobium carbides Nb2C, NbC and iron borides Fe2B. In the bulk plates a dislocation substructure of the net-like type with scalar dislocation density of 1011 cm-2 is observed. The layer surfaced with the wire containing B possesses the highest hardness. The possible mechanisms of niobium and boron carbides formation in surfacing are discussed.
低合金钢表面强化层的相组成及缺陷子结构
研究了不同化学成分的合金粉末线包覆低碳Hardox 450钢表面的显微组织和显微硬度分布。结果表明,6 ~ 8mm厚度的表面层的显微硬度是母材的2倍以上。表面层力学性能的提高是由于含有铌碳化物Nb2C、铌碳化物NbC和硼化铁Fe2B的亚微米级和纳米级分散马氏体所致。在块板中观察到网状位错亚结构,位错密度为1011 cm-2。含有B的线材表面层具有最高的硬度。讨论了堆焊过程中铌硼碳化物形成的可能机理。
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