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Ultrafine microstructure in microalloyed steel by a new thermomechnical process

Ultrafine microstructure in microalloyed steel by a new thermomechnical process
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摘要 Low carbon microalloyed steel containing 0.062 percent C, 2.34 percent Mn,0.044 percent Nb, 0.029 percent Ti, 0.032 percent V in mass fraction and small amount of B wasprepared in laboratory. Slabs of the steel were rolled into plates of 6mm in thickness followed byaccelerated cooling. The plates possess very high yield strength and reasonable ductility, and theyield ratio is about 0.8. Ultra-fine ferrite structure with micrometer dimension was observed in thesurface layer of the plates. Moreover, the effect of the finishing rolling temperature on the finalmicrostructure and formation mechanism of ultra-fine ferrite as well as the gamma->alphatransformation behavior of the steel was discussed. Low carbon microalloyed steel containing 0.062 percent C, 2.34 percent Mn,0.044 percent Nb, 0.029 percent Ti, 0.032 percent V in mass fraction and small amount of B wasprepared in laboratory. Slabs of the steel were rolled into plates of 6mm in thickness followed byaccelerated cooling. The plates possess very high yield strength and reasonable ductility, and theyield ratio is about 0.8. Ultra-fine ferrite structure with micrometer dimension was observed in thesurface layer of the plates. Moreover, the effect of the finishing rolling temperature on the finalmicrostructure and formation mechanism of ultra-fine ferrite as well as the gamma->alphatransformation behavior of the steel was discussed.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2002年第2期114-117,共4页 北京科技大学学报(英文版)
基金 This work was financially supported by the State Foundation of China for Fundamental Research(No.G1998061500).
关键词 microalloyed steel gamma->alpha transformation grain refinement microstructure boron-containing steel microalloyed steel gamma->alpha transformation grain refinement microstructure boron-containing steel
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参考文献1

  • 1Sunghak Lee,Dongil Kwon,Young Kook Lee,Ohjoon Kwon.Transformation strengthening by thermomechanical treatments in C-Mn-Ni-Nb steels[J].Metallurgical and Materials Transactions A.1995(5)

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