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Effects of Si on Microstructural Evolution and Mechanical Properties of Hot-rolled Ferrite and Bainite Dual-phase Steels

机译:硅对热轧铁素体和贝氏体双相钢组织和力学性能的影响

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Based on the thermo-mechanical controlled process, the effects of Si on microstructural evolution, tensile properties, impact toughness, and stretch-flangeability of ferrite and bainite dual-phase (FBDP) steels were systematically investigated. The addition of Si from 0 to 0.95% promoted the formation of fine and equiaxed ferrite grains, and high Si (0.95%) also resulted in the formation of blocky martensite islands and retained austenite. Yield and tensile strengths, and uniform and total elongations all increased with increasing Si content. Therefore, the tensile strength and ductility balance was improved by Si addition due to the increasing strain-hardening rate. The fractured morphologies after hole-expansion showed that the excellent stretch-flangeability of FBDP steels was associated with the micro-cracks propagating through in ferrite phase as well as the elongated ferrite grains along the direction perpendicular to the crack. 0.95% Si steel had a similar high combination of tensile strength and impact toughness to 0.55% Si steel, and especially 0.95% Si steel exhibited an excellent combination of tensile strength and stretch-flangeability.
机译:基于热机械控制过程,系统地研究了硅对铁素体和贝氏体双相(FBDP)钢的组织演变,拉伸性能,冲击韧性和拉伸凸缘性的影响。从0到0.95%添加Si促进了细晶和等轴的铁素体晶粒的形成,而高Si(0.95%)也导致了块状马氏体岛和残留奥氏体的形成。屈服强度和拉伸强度以及均匀伸长率和总伸长率都随着Si含量的增加而增加。因此,由于增加的应变硬化速率,通过添加Si改善了拉伸强度和延展性的平衡。扩孔后的断裂形态表明,FBDP钢优异的拉伸凸缘性与在铁素体相中传播的微裂纹以及沿垂直于裂纹方向的拉长的铁素体晶粒有关。 0.95%的硅钢具有与0.55%的硅钢相似的拉伸强度和冲击韧性的高组合,特别是0.95%的硅钢具有优异的抗拉强度和拉伸凸缘性的组合。

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