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对两种耐火钢在室温和600℃进行拉伸力学实验,一种不含钒元素,一种钒元素含量为0.11at%,并用透射电镜(TEM)和原子探针层析技术(APT)观察这两种耐火钢的显微组织和分析合金元素的三维空间分布.结果表明,含钒元素实验钢中为(Nb,v)C碳化物,不含钒元素实验钢中为NbC碳化物,且含钒元素实验钢中碳化物数量远远高于不含钒元素实验钢,碳化物尺寸也稍大于不含钒元素实验钢.这表明耐火钢中适当含量的钒元素可以促进碳化物的弥散析出,增强析出强化作用,提高耐火钢室温和在600℃的力学性能.

参考文献

[1] Melngk S A;Smith R T .Green manufacturing[R].Dearborn,Michigan:Society of Manufacturing Engineers,1996.
[2] Sha W;Kirby B R;Kelly F S .The behavior of structural steels at elevated temperatures and the design of fire resistant steels[J].Materials Transactions,2001,42:1913-1927.
[3] W. Sha;F. S. Kelly;P. Browne .Development of structural steels with fire resistant microstructures[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2002(3):319-325.
[4] Assefpour-Dezfuly M;Hugaas B A;Brownrigg A .Fire resistant high-strength low-alloy steels[J].Materials Science and Technology,1990,6(12):1210-1214.
[5] Uemori R.;Tamehiro H. .AP-FIM Analysis of Ultrafine Carbonitrides in Fire-Resistant Steel for Building Construction[J].NIPPON STEEL TECHNICAL REPORT,1996(69):23-28.
[6] Miller M K;Cerezo A;Hetherington M G.Atom Probe Field Ion Microscopy[M].Oxford:Oxford Science Publications,Clarendon Press,1996
[7] Blavette D;Deconnihout B;Bostel A et al.Tomographic atom probe.A quantitative three-dimensional nanoanalytical instrument on an atomic scale[J].Review of Scientific Instruments,1993,64:2911-2919.
[8] 周邦新.三维原子探针--从探测逐个原子来研究材料的分析仪器[J].自然杂志,2005(03):125-129.
[9] Miller M K.Atom Probe Tomography:Analysis at the Atomic Level[M].New York:Kluwer Academic Publishers,2000:11.
[10] E.V. Pereloma;I. B. Timokhina;K.F. Russell .Characterization of Clusters and Ultrafine Precipitates in Nb-containing C-Mn-Si Steels[J].Scripta materialia,2006(3):471-476.
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