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First Principles Study of Adsorption of Hydrogen on Typical Alloying Elements and Inclusions in Molten 2219 Al Alloy

机译:氢在熔融2219铝合金中典型合金元素和夹杂物上吸附氢的基本原理研究

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摘要

To better understand the effect of the components of molten 2219 Al alloy on the hydrogen content dissolved in it, the H adsorption on various positions of alloying element clusters of Cu, Mn and Al, as well as the inclusion of Al2O3, MgO and Al4C3, were investigated by means of first principles calculation, and the thermodynamic stability of H adsorbed on each possible site was also studied on the basis of formation energy. Results show that the interaction between Al, MgO, Al4C3 and H atoms is mainly repulsive and energetically unfavorable; a favorable interaction between Cu, Mn, Al2O3 and H atoms was determined, with H being more likely to be adsorbed on the top of the third atomic layer of Cu(111), the second atomic layer of Mn(111), and the O atom in the third atomic layer of Al2O3, compared with other sites. It was found that alloying elements Cu and Mn and including Al2O3 may increase the hydrogen adsorption in the molten 2219 Al alloy with Al2O3 being the most sensitive component in this regard.
机译:为了更好地理解2219铝合金成分对溶解氢含量的影响,Cu,Mn和Al合金元素簇各个位置的H吸附以及Al2O3,MgO和Al4C3的夹杂,通过第一性原理计算研究了H,并在形成能的基础上研究了H在每个可能位点上吸附的热力学稳定性。结果表明,Al,MgO,Al4C3和H原子之间的相互作用主要是排斥性的,并且在能量上不利。确定了Cu,Mn,Al2O3和H原子之间的良好相互作用,其中H更有可能吸附在Cu(111)的第三原子层,Mn(111)的第二原子层和O的顶部与其他位点相比,Al2O3的第三原子层中的一个原子。已经发现,合金元素Cu和Mn以及包括Al 2 O 3可以增加熔融的2219铝合金中的氢吸附,其中Al 2 O 3在这方面是最敏感的组分。

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