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First-principles analysis of the inhibitive effect of interstitial carbon on an active dissolution of martensitic steel

机译:间隙碳对马氏体钢主动溶解的抑制作用的第一性原理分析

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摘要

The effect of interstitial carbon on the anodic dissolution rate of AISI 1045 martensitic carbon steel was investigated. The active dissolution current of high carbon martensite was lower than that of low carbon martensite, indicating that active dissolution was suppressed by interstitial carbon. First-principles calculations were performed to investigate the electronic structure of martensite. The electronic density of states near and at the Fermi level of bct Fe (martensite) decreased with increasing interstitial carbon. The number of valence electrons on the iron atom in the Fe-C system was lower than that in the pure Fe system.
机译:研究了间隙碳对AISI 1045马氏体碳钢阳极溶解速率的影响。高碳马氏体的活性溶解电流低于低碳马氏体的活性溶解电流,表明间隙碳抑制了活性溶解。进行第一性原理计算以研究马氏体的电子结构。随着间隙碳的增加,bct Fe(马氏体)的费米能级附近和处的电子密度降低。 Fe-C系统中铁原子上的价电子数低于纯Fe系统中的价电子数。

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