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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Origin of Fine Ferrite grain Structure of Sheet Steel Hot-roll in Ferrite Region without Lubrication
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Origin of Fine Ferrite grain Structure of Sheet Steel Hot-roll in Ferrite Region without Lubrication

机译:铁素体区域无润滑薄钢板热轧细铁素体晶粒组织的形成

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The structrual variation in the thicknessdirection of ultra-low C sheet steel rolled in theferrite region without lubrication is analyzed withEBSD technique as well as conventional measuringmethod.(1)A nonuniform microstructure through thethickness is formed due to the additional shear strainintroduced by frictional force between the rolls andthe material, and the fine grains with the size of 1.0to1.5 microns are observed near the surface where theshear strain is maximum. Since the dislocation densityof these grains is relatively low and these grains aresurrounded by high-angle boundaries having amisorientation angle over 15, these grains might berecrystallized ones.(2)The microstructure observed inthe etched steel with SEM are changed continuously fromthe deformed grains to the subgrains and therecrystallized grains with increasing shear strains.On the other hand , the size of the subgrains consistingof substructure is 0.5 to 1.0 microns by means of EBSD,and it is independent of shear strain.(3)Themisorientation angle between the adjacent subgrains isincreased with increasing shear strain, and high-angleboundaries are formed near the surface.(4)Theseexperimental results suggest that the finerecrystallized grain might have formed in such a waythat the subgrains are rotated continuously and themisorientation angle between the adjacent subgrains isincreased over 15 with increasing shear strain, and therearrangement of dislocations occurs during and/orafter rolling, resulting in the formation of recrystallized grains.
机译:用EBSD技术和常规测量方法分析了在无润滑条件下在铁素体区域轧制的超低碳薄钢板的厚度方向的结构变化。(1)由于厚度之间的摩擦力引入了额外的剪切应变,因此通过厚度形成了不均匀的显微组织。在剪切应变最大的表面附近观察到尺寸为1.0至1.5微米的细晶粒。由于这些晶粒的位错密度相对较低,并且这些晶粒被取向角大于15的高角度边界包围,因此这些晶粒可能是再结晶的晶粒。(2)用SEM观察到的腐蚀钢中的显微组织从变形的晶粒连续转变为亚晶粒。另一方面,通过EBSD,由亚结构组成的亚晶粒的尺寸为0.5至1.0微米,并且与剪切应变无关。(3)相邻亚晶粒之间的取向差角随着增大而增大。 (4)这些实验结果表明,细的再结晶晶粒可能以这样的方式形成:子晶粒连续旋转,并且随着剪切应变的增加,相邻子晶粒之间的取向差角增加了15以上,并且在和/或后发生脱位r轧制,导致形成重结晶晶粒。

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