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Solute and vacancy segregation to a/4l11 and a/2100 antiphase domain boundaries in Fe_3Al

机译:溶质和空位分离到 a/4l11 和 a/2100 反相域边界Fe_3Al

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摘要

Segregation of solute atoms and vacancies to antiphase domain boundaries (APDBs) in Fe-Al alloys near the stoichiometry Fe_3Al (Fe-22-28 at. percent Al) was studied using a phase-field model based on the Bragg-Williams approximation. Local equilibrium vacancy concentration was determined from experimental data for vacancy formation enthalpy and the configurational entropy of vacancies assuming that the formation enthalpy is independent of long-range order and chemical composition. Fe atoms and vacancies segregate to APDB with the phase-shift vector a/2(D0_3-APDB) in crystals with stoichiometric composition (Fe-25 at. percent Al) and with the Fe-rich composition, whereas both of them tend to be depleted in Al-rich crystals. On the other hand, Fe atoms and vacancies both segregate on APDBs with the phase-shift vector a/4(B2-APDB) in all compositions studied. The effects of vacancy segregation on APDB energy and thickness is negligibly small; however, the vacancy concentration at the center of APDBs can be up to 80 percent larger than in the bulk, and therefore it is anticipated that the mobility of APDBs can be significantly affected by the segregation of vacancies as well as by that of solute atoms.
机译:使用基于Bragg-Williams近似的相场模型研究了化学计量Fe_3Al附近Fe-Al合金中溶质原子的偏析和反相域边界(APDBs)空位。假设空位形成焓与长程有序和化学成分无关,则根据空位形成焓和空位构型熵的实验数据确定局部平衡空位浓度。在化学计量成分(Fe-25 at percent Al)和富Fe成分的晶体中,Fe原子和空位以相移矢量a/2(D0_3-APDB)偏离到APDB,而在富铝晶体中,两者趋于耗尽。另一方面,在所有研究的成分中,Fe原子和空位都以相移矢量a/4(B2-APDB)在APDBs上分离。空位分离对APDB能量和厚度的影响可以忽略不计;然而,APDB中心的空位浓度可能比整体大80%,因此预计APDB的迁移率会受到空位分离和溶质原子分离的显着影响。

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