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Effect of Small Addition of Niobium on the Mechanical Properties of FGBA/ BG Duplex Phase Air cooling Bainitic Steel

机译:少量添加铌对FGBA / BG双相空冷贝氏体钢力学性能的影响

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The effect of small addition of niobium on the mechanical properties of grain boundary allotriomorphic ferrite (FGBA)/ granular bainite (BG) air cooling bainitic steel has been investigated by tensile test, Optical Microscopy (OM), and scanning electron microscopy (SEM) observation. The results show that (1) The small addition of niobium improves the mechanical properties of the FGBA/BG steel obviously. Compared with Non-Nb FGBA/ BG steel, 0.02% Nb increases the tensile strength and yield strength about 20% (From 780Mpa to 937Mpa)and 17%(From 557Mpa to 650Mpa) respectively, remaining 18% elongation. (2) With the addition of 0.02%Nb, both the size and the volume fraction of FGBA decrease. Meanwhile, the volume fraction of refined intragranular ferrite and M-A islands increases. Compared with Non-Nb steel, the volume fraction of M-A island in 0.02Nb steel increases from 21% to 31%, and the average size of M-A island decreases from 1.2μm to 0.95um.(3)It is indicated that the small addition of Nb(0.02%) not only refines the allotriomorphic ferrite grain but also promotes the nucleation of intragranular ferrite, both of which in turn contribute to the refinement of granular bainite cluster including its ferrite platelets and M-A islands. (4)It is suggested that the strengthening effect of 0.02%Nb can be mainly attributed to the segregation of Nb to γ/α phase boundaries(solute drag-like effect) rather than the precipitation strengthening of Nb(C,N). Nb enrichment in the α/γ interphase causes the decrease of C-activities and activity gradient in the austenite matrix around the α/γ interphase and thus causes the decrease of C-diffusion rate in austenite, and further the restraint to ferrite growth. The effects also depress bainite transformation temperature and driving force, as a result, the bainite cluster is refined.
机译:通过拉伸试验,光学显微镜(OM)和扫描电子显微镜(SEM)观察,研究了少量添加铌对晶界同素异形铁素体(FGBA)/贝氏体(BG)空冷贝氏体钢力学性能的影响。 。结果表明:(1)少量添加铌明显改善了FGBA / BG钢的力学性能。与非Nb FGBA / BG钢相比,0.02%Nb分别使抗拉强度和屈服强度分别提高20%(从780Mpa到937Mpa)和17%(从557Mpa到650Mpa),而伸长率保持18%。 (2)添加0.02%Nb,FGBA的尺寸和体积分数均减小。同时,细晶内铁素体和M-A岛的体积分数增加。与非Nb钢相比,0.02 Nb钢中MA岛的体积分数从21%增加到31%,MA岛的平均尺寸从1.2μm减小到0.95um。(3) Nb(0.02%)不仅细化了同素异形铁素体晶粒,而且还促进了晶粒内铁素体的形核,这两者反过来又有助于细化贝氏体簇,包括其铁素体薄片和MA岛。 (4)建议0.02%Nb的强化作用主要归因于Nb在γ/α相界的偏析(溶质类拖动效应),而不是Nb(C,N)的析出强化。 Nb富集在α/γ相中导致α/γ相周围奥氏体基体中C活性和活性梯度降低,从而导致奥氏体C扩散速率降低,并进一步抑制了铁素体的生长。该效果还降低了贝氏体转变温度和驱动力,结果使贝氏体团簇细化。

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