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The effect of constrained groove pressing on grain size, dislocation density and electrical resistivity of low carbon steel

机译:沟槽压制对低碳钢晶粒度,位错密度和电阻率的影响

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In this research, constrained groove pressing (CGP) technique is used for imposing severe plastic deformation (SPD) on the low carbon steel sheets. Using transmission electron microscopy (TEM), X-ray diffraction (XRD) and optical microscopy, the microstructural characteristics of produced sheets are investigated. The results show that CGP process can effectively refine the coarse-grained structure to an ultrafine grain range. Dislocation densities of the ultrafine grained low carbon steel sheets are quantitatively calculated and it is found that the CGP can effectively enhance the dislocation density of the sheets. Measurements of their electrical resistivity values show that microstructure refinement and increasing the dislocation density can efficiently increase the electrical resistivity of the CGPed sheets up to ~100%.
机译:在这项研究中,约束沟槽压制(CGP)技术用于在低碳钢板上施加严重的塑性变形(SPD)。使用透射电子显微镜(TEM),X射线衍射(XRD)和光学显微镜,对制得的板材的显微组织特性进行了研究。结果表明,CGP工艺可以有效地将粗晶粒组织细化至超细晶粒范围。定量计算了超细晶低碳钢板的位错密度,发现CGP可以有效地提高钢板的位错密度。对它们的电阻率值的测量表明,微结构的细化和位错密度的提高可以有效地将CGPed板的电阻率提高到约100%。

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