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Revealing the Nuclei Formation in Carbon-Inoculated Mg-3%Al Alloys Containing Trace Fe

机译:揭示含微量铁的碳接种Mg-3%Al合金中的核形成

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In this study, Fe-bearing Mg-3%Al alloys were inoculated by combining carbon with or without Ca. Both processes can significantly refine the grain size of Mg-3%Al alloys. The highest refining efficiency can be obtained by carbon combined with Ca. The synergistic grain refining efficiency can be attributed to the constitutional undercooling produced by the addition of Ca. Two kinds of carbon-containing nuclei with duplex-phase particles and cluster particles were observed in the carbon-inoculated alloys. A thermodynamic model was established to disclose the formation mechanisms of the duplex-phase particles and Al 4 C 3 cluster particles. This thermodynamic model is based on the change of Gibbs free energy for the formation of these two kinds of particles. The calculated results show that these two particles can form spontaneously, since the change of Gibbs free energy is negative. However, the Gibbs free change of the duplex-phase particle is more negative than the Al 4 C 3 cluster particle. This indicates that the adsorption process is more spontaneous than the cluster process, and tiny Al 4 C 3 particles are preferred to form duplex-phase particle, rather than gathering to form an Al 4 C 3 cluster particle. In addition, the addition of Ca can reduce the interfacial energy between the Al 4 C 3 phase and the Al–Fe phase and promote the formation of duplex-phase particles.
机译:在这项研究中,通过结合碳和不结合钙来接种含铁的Mg-3%Al合金。两种工艺均可显着改善Mg-3%Al合金的晶粒尺寸。碳与Ca结合可获得最高的精炼效率。协同晶粒细化效率可归因于通过添加Ca产生的结构性过冷。在接种碳的合金中观察到两种具有双相相颗粒和团簇颗粒的含碳核。建立了热力学模型以揭示双相相颗粒和Al 4 C 3团簇颗粒的形成机理。该热力学模型基于吉布斯自由能的变化来形成这两种粒子。计算结果表明,由于吉布斯自由能的变化为负,因此这两个粒子可以自发形成。但是,双相粒子的吉布斯自由变化比Al 4 C 3团簇粒子更负。这表明吸附过程比团簇过程更自发,并且优选微小的Al 4 C 3颗粒形成双相相颗粒,而不是聚集形成Al 4 C 3团簇颗粒。另外,添加Ca可以减少Al 4 C 3相和Al-Fe相之间的界面能,并促进双相相颗粒的形成。

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