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首页> 外文期刊>Acta Materialia >EFFECT OF NITROGEN ON STACKING FAULT ENERGY OF F.C.C. IRON-BASED ALLOYS
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EFFECT OF NITROGEN ON STACKING FAULT ENERGY OF F.C.C. IRON-BASED ALLOYS

机译:氮对F.C.C.堆垛层错能量的影响铁基合金

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摘要

A method is proposed to estimate the stacking fault energies of face-centered-cubic (f.c.c.) iron- based alloys. The segregation of alloying elements to stacking faults and the interaction of substitutional and interstitial alloying elements in solid solution and their effect on stacking fault energy have been taken into account. It is shown that at low nitrogen concentrations (e.g. 0.05 wt), the stacking fault energy is increased mainly due to the effect arising from the bulk of the alloy. At high nitrogen concentration (e.g. 0.5 wt), the stacking fault energy is decreased due to the segregation of the alloying elements (mainly nitrogen) on the stacking faults of the alloy. Moreover, it is shown that in nitrogen alloying of f.c.c. iron- based alloys the magnetic contribution of the nitrogen to the stacking fault energy is negligible. The method shows reasonable agreement with existing experimental data.
机译:提出了一种方法来估算面心立方(f.c.c.)铁基合金的堆垛层错能。已经考虑了合金元素对堆垛层错的偏析以及固溶体中置换和间隙合金元素的相互作用及其对堆垛层错能量的影响。结果表明,在低氮浓度(例如0.05wt%)下,堆垛层错能增加,这主要是由于合金的体积引起的。在高氮浓度(例如0.5wt%)下,由于合金元素(主要是氮)在合金的堆垛层错上的偏析而降低了堆垛层错能量。此外,还表明在f.c.c的氮合金化中。铁基合金中,氮对堆垛层错能的磁性影响可忽略不计。该方法与现有实验数据显示出合理的一致性。

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