首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.3; Jul 7-11, 2003; Leganes, Madrid, Spain >Development of Submicrocrystalline Fe - O Steels under Mechanical Milling Followed by Consolidation
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Development of Submicrocrystalline Fe - O Steels under Mechanical Milling Followed by Consolidation

机译:机械球磨固溶后亚微晶Fe-O钢的开发。

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Microstructure evolution in Fe - O steels under mechanical milling followed by consolidating rolling was studied. The final microstructure that developed after consolidation was shown to depend on the volume fraction of the dispersed oxides. In the samples milled for 100 hours, the average grain size decreased from 0.7 to 0.2μm with increase in the amount of oxygen from 0.2 to 1.5 mass%. The milling time had a similar effect on the final microstructure. The relatively short milling time of 20 hours resulted in the evolution of relatively coarse elongated grains with a large fraction of low-angle subgrain boundaries. In contrast, fine equiaxed grains (about 0.2μm in size) with a near random boundary misorienations developed in the Fe - 0.6%O sample that was milled for 300 hours. The structural changes taking place under mechanical milling followed by consolidating rolling and the effect of dispersed oxides on final microstructures are discussed in some detail.
机译:研究了Fe-O钢在机械铣削和固结轧制后的组织演变。固结后形成的最终微观结构显示出取决于分散的氧化物的体积分数。在研磨100小时的样品中,随着氧含量从0.2质量%增加至1.5质量%,平均晶粒尺寸从0.7μm减小至0.2μm。研磨时间对最终的微观结构有类似的影响。 20小时的相对较短的铣削时间导致了具有较大比例的低角度亚晶界的相对粗大的拉长晶粒的演变。相反,在研磨了300小时的Fe-0.6%O样品中,出现了具有近乎随机的边界错误取向的细等轴晶粒(尺寸约为0.2μm)。详细讨论了在机械研磨后进行固结轧制后发生的结构变化,以及分散的氧化物对最终微观结构的影响。

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