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First-principles study of grain boundary embrittlement in Fe-Ni-S alloy

机译:Fe-Ni-S合金晶界脆化的第一性原理研究

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Grain boundary embrittlement due to grain boundary co-segregation of Ni and S atoms in face-centered cubic iron is examined for the (2 2? 1)Σ9[1 1 0] grain boundary by first-principles calculation. The phenomenon whereby the addition of Ni accelerates grain boundary embrittlement is reproduced for different concentrations of S at the grain boundary. With low concentrations of S, the cohesive energy of the grain boundary is reduced by Ni addition, while Ni addition leads to a steep reduction in binding energy as grain boundary separation increases with high concentrations of S. The mechanism of the embrittlement is related to repulsive interaction between S atoms induced by occupation of anti-bonding states between S atoms.
机译:通过第一性原理计算,研究了(2 2?1)Σ9[1 1 0]晶界中由面心立方铁中Ni和S原子的晶界共偏析引起的晶界脆化。对于在晶界处不同的S浓度,再现了Ni的添加加速晶界脆化的现象。当添加低浓度的S时,添加Ni会降低晶界的内聚能,而当添加高浓度的S时,Ni添加会导致束缚能急剧下降,这是因为晶界间距增加所致。 S原子之间的反键态占据引起的S原子之间的相互作用。

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