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Solubility criterion for sequential disordering in metal-metal multilayers upon solid-state reaction

机译:固相反应后金属-金属多层结构中无序的溶解度准则

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An n-body Ni-Ti potential is derived and applied in a molecular dynamics simulation to study the maximum supersaturated solubility of the terminal solid solutions and solid-state reaction in a Ni/Ti bilayer. It reveals that during interfacial reaction of the Ni/Ti bilayer the Ti lattice reaches its maximum solubility by dissolving Ni earlier than Ni does through dissolution of Ti, which results in a sequential disordering of first Ti and then Ni, although Ti has a higher melting point than Ni. In the Ni-Zr, Ni-Mo and Ni-Ta systems, however, the Ni lattice collapses more rapidly because it reaches a maximum solubility earlier than its partners, which have higher melting points than Ni. A solubility criterion is thus relevant for all the above cases; the lower the maximum solid solubility the less stable is the lattice of the metal upon solid-state reaction.
机译:导出n体Ni-Ti电位并将其应用于分子动力学模拟,以研究末端固溶体的最大过饱和溶解度和Ni / Ti双层中的固态反应。结果表明,在Ni / Ti双层界面反应期间,Ti晶格通过溶解Ni早于通过溶解Ti溶解Ni来达到其最大溶解度,尽管Ti具有较高的熔融度,但会导致先生成Ti,然后依次形成Ni。点比镍。但是,在Ni-Zr,Ni-Mo和Ni-Ta系统中,Ni晶格崩溃的速度更快,因为它比其伙伴早达到了最大溶解度,后者的熔点高于Ni。因此,溶解度标准与上述所有情况有关;最大固溶度越低,固态反应时金属的晶格越不稳定。

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