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首页> 外文期刊>Intermetallics >Effects of solute and vacancy segregation on antiphase boundary migration in stoichiometric and Al-rich Fe_3Al: A phase-field simulation study
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Effects of solute and vacancy segregation on antiphase boundary migration in stoichiometric and Al-rich Fe_3Al: A phase-field simulation study

机译:溶质和空位偏析对化学计量和富铝Fe_3Al的反相边界迁移的影响:一个相场模拟研究

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Effects of segregation of solute atoms and vacancies on migration of antiphase boundaries (APBs) in stoichiometric (Fe-25 at%Al) and Al-rich (Fe-28 at%Al) Fe_3Al at 673 K have been studied using a phasefield method in which local vacancy concentration is taken into account [Koizumi Y, Allen SM, Minamino Y. Acta Mater 2008;56:5861, ibid. 2009:57:3039]. Boundary mobility (M) of APBs having different phaseshift vectors of a/4<111> and a/2<100> (hereafter denoted as B2-APB and DO_3-APB, respectively) was evaluated by measuring the boundary velocity of shrinking circular APBs. Similar effects of the segregation on the migration of B2-APBs were observed in both compositions. Vacancies segregated and Alatoms were depleted at B2-APBs in both compositions. Vacancy concentration at B2-APBs was up to 80% higher than that in the bulk. As a result, the migration of B2-APBs was greatly enhanced by the vacancy segregation. In contrast, the segregation to DO_3-APBs showed a marked composition dependence. Vacancies were depleted and Al-atoms segregated at D03-APBs in the Al-rich Fe_3A1, whereas vacancies segregated and Al-atoms were depleted at DO_3-APB in the stoichiometric Fe_3Al. The Al segregation in the Al-rich Fe_3Al decreased M of DO_3-APBs much more significantly than the Al-depletion in the stoichiometric Fe_3Al. As the APDs shrank, DO_3-APBs broke away from the segregation atmospheres and the M increased rapidly in both compositions. A greater increase in the M due to the breakaway was observed in the Al-rich Fe_3Al than in Fe_3Al with the stoichiometric composition.
机译:采用相场法研究了固溶原子和空位的分离对673 K的化学计量(Fe-25 at%Al)和富Al(Fe-28 at%Al)Fe_3Al中反相边界(APBs)迁移的影响。 [Koizumi Y,Allen SM,Minamino Y. Acta Mater 2008; 56:5861,同上。 2009:57:3039]。通过测量收缩的圆形APB的边界速度来评估具有不同a / 4 <111>和a / 2 <100>的相移矢量的APB的边界迁移率(M)(以下分别称为B2-APB和DO_3-APB) 。在两种组合物中均观察到分离对B2-APBs迁移的类似作用。两种组合物中的B2-APB处的空位隔离且Alatoms耗尽。 B2-APB的空缺浓度比散装的空缺浓度高80%。结果,空位隔离大大提高了B2-APB的迁移。相反,对DO_3-APB的分离显示出明显的组成依赖性。富铝的Fe_3A1中的空位被耗尽并且Al原子在D03-APB处分离,而化学计量的Fe_3Al中的空位被隔离并且Al原子在DO_3-APB处被耗尽。富铝的Fe_3Al中的铝偏析使DO_3-APBs的M降低比化学计量的Fe_3Al中的Al损耗显着得多。随着APD的收缩,DO_3-APBs从偏析气氛中分离出来,并且两种成分中的M均迅速增加。与化学计量组成的Fe_3Al相比,富Al的Fe_3Al的分解引起的M的增加更大。

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