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Grain Boundary Decohesion by Impurity Segregation in a Nickel-SulfurSystem

机译:镍-硫体系中杂质偏析引起的晶界脱粘

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The sulfur-induced embrittlement of nickel has long been wrapped in mystery as to why and how sulfur weakens the grain boundaries of nickel and why a critical intergranular sulfur concentration is required. From first-principles calculations, we found that a large grain-boundary expansion is caused by a short-range overlap repulsion among densely segregated and neighboring sulfur atoms. This expansion results in a drastic grain-boundary decohesion that reduces the grain-boundary tensile strength by one order of magnitude. This decohesion may directly cause the embrittlement, because the critical sulfur concentration of this decohesion agrees well with experimental data on the embrittlement.
机译:关于硫为何以及如何削弱镍的晶界以及为何需要临界的晶间硫浓度的问题一直困扰着由硫引起的镍脆化。从第一性原理计算,我们发现大的晶界膨胀是由密集分离和相邻的硫原子之间的短程重叠排斥引起的。这种膨胀导致剧烈的晶界脱粘,使晶界拉伸强度降低一个数量级。这种脱粘作用可能直接导致脆化,因为这种脱粘作用的临界硫浓度与有关脆化作用的实验数据非常吻合。

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