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Electronic Theoretical Study of the Interaction between Rare Earth Elements and Impurities at Grain Boundaries in Steel

机译:钢中晶界处稀土元素与杂质相互作用的电子理论研究

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摘要

The model of dislocations was used to construct the model of grain boundary (GB) with pure rare earths, and rare earth elements and impurities. The influence of the interaction between rare earth elements and impurities on the cohesive properties of 5.3°low angle GB of Fe was investigated by the recursion method. The calculated results of environment sensitive embeding energy ( E_(ESE)) show that the preferential segregation of rare earth elements towards GBs exists. Calculations of bond order integrals (BOI) show that rare earth elements increase the cohesive strength of low angle GB, and impurities such as S, P weaken the intergranular cohesion of the GB. So rare earth element of proper quantity added in steel not only cleanses other harmful impurities off the GBs, but also enhances the intergranular cohesion. This elucidates the action mechanism of rare earth elements in steel from electronic level and offers theoretical evidence for applications of rare earth elements in steels.
机译:用位错模型建立了纯稀土,稀土元素和杂质的晶界模型。采用递归法研究了稀土元素与杂质之间的相互作用对铁的5.3°低角GB粘结性能的影响。对环境敏感的嵌入能(E_(ESE))的计算结果表明,存在稀土元素向GBs的优先偏析。键序积分(BOI)的计算表明,稀土元素增加了低角度GB的内聚强度,而杂质(如S,P)则削弱了GB的晶间内聚力。因此,在钢中添加适量的稀土元素不仅可以清除GBs上的其他有害杂质,还可以增强晶间的内聚力。从电子层面阐明了稀土元素在钢中的作用机理,为稀土元素在钢中的应用提供了理论依据。

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