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首页> 外文期刊>Computational Materials Science >Ab initio molecular dynamics simulation on interfacial reaction behavior of Fe-Cr-Ni stainless steel in high temperature water
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Ab initio molecular dynamics simulation on interfacial reaction behavior of Fe-Cr-Ni stainless steel in high temperature water

机译:高温水中Fe-Cr-Ni不锈钢界面反应行为的AB INITIO分子动力学模拟

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摘要

The interfacial reaction behavior of Fe-Cr-Ni stainless steel in 320 degrees C high temperature water is investigated using an ab initio Born-Oppenheimer molecular dynamics simulation. After the Fe-Cr-Ni stainless steel is immersed in water, the water molecule is dissociated into OH and H ions. The dissociated OH makes bond with the Cr and Fe atoms to form (Cr, Fe)-OH hydroxide, and the dissociated H adsorbs on the Fe atoms with a certain negative charge. The surface layers of Fe-Cr-Ni stainless steel are negatively charged before immersion, whereas after immersion there is a net positive charge in the surface layers. Most of the valence electrons lost from the surface layers transfer to the water solution through the interface, only a small amount of electrons comes into the inner layer atoms of Fe-Cr-Ni stainless steel. The dissociation characteristics of dissolved oxygen molecule and dissolved hydrogen molecule in high temperature water are also analyzed, and both of them can enhance the interfacial charge transfer.
机译:使用AB Initio出生的oppeneheimer分子动力学模拟研究了320℃高温水中Fe-Cr-Ni不锈钢的界面反应行为。在将Fe-Cr-Ni不锈钢浸入水中后,将水分子解离哦和H离子。解离OH与Cr和Fe原子结合以形成(Cr,Fe)-OH的氢氧化物,并且在Fe原子上具有一定负电荷的解离的HAdsorbs。 Fe-Cr-Ni不锈钢的表面层在浸泡前负荷,而在浸入后存在净正电荷在表面层中。从表面层丢失的大多数价电子通过界面转移到水溶液,只有少量电子进入Fe-Cr-Ni不锈钢的内层原子。还分析了溶解的氧分子和溶解氢分子在高温水中的解离特性,两者都可以增强界面电荷转移。

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