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On the role of Icosahedral-like clusters in the solidification and the mechanical response of Cu-Zr metallic glasses by Molecular Dynamics simulations and Density Functional Theory computations

机译:通过分子动力学模拟和密度泛函理论计算二十面体类团簇在Cu-Zr金属玻璃的凝固和力学响应中的作用

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Cu-Zr Metallic glasses (MG) are considered to be composed of Icosahedral-like (ICO) clusters that may be distorted, truncated and/or interconnected. Aiming in gaining insight on the role of these units in the solidification-glass formation processes, as well as under mechanical solicitation, we performed detailed analysis of the electronic density of states, based on the Density Functional Theory, of the basic ICO-like clusters that were extracted from Cu_(65)Zr_(35) equilibrium Molecular Dynamics (MD) configurations at various temperatures within the range from 2000 K to 300 K. In line with previous studies, we found that the d valence electrons of the Zr shell atoms occupy states close to the Fermi level, while s-s and d-s electronic hybridizations of the Cu-core/Cu-shell with the Cu shell atoms, respectively, occur at lower energy states and account for the deformation of the clusters, which is exclusively accomplished by these Cu-Cu distortions. Moreover, we found that upon quenching the mean atomic distances of the ICOs are decreasing due to shortening of the Cu-core/shell - Cu shell bonds, resulting in shifts of the corresponding states towards lower energies. Interestingly, it came out that the temperature dependence of these energies is linear, exhibiting slope changes at the melting and glass transition points. We applied the same analysis on ICOs extracted from Cu_(50)Zr_(50) MD configurations under tensile solicitation from where we deduced the alterations that are caused in the electronic densities of states. These results could be of use for the understanding of the bonding characteristics of Cu-Zr model MGs and the mechanisms for the accommodation of the mechanical deformation.
机译:Cu-Zr金属玻璃(MG)被认为是由二十面体状(ICO)簇组成的,它们可能会扭曲,截断和/或相互连接。为了深入了解这些单元在凝固玻璃形成过程中以及在机械诱导下的作用,我们根据密度泛函理论对基本的类ICO团簇进行了电子态电子密度的详细分析。这些是从Cu_(65)Zr_(35)平衡分子动力学(MD)配置在2000 K至300 K范围内的不同温度下提取的。与以前的研究一致,我们发现Zr壳原子的d电子价占据接近费米能级的状态,而Cu-核/ Cu-壳与Cu壳原子的ss和ds电子杂化分别以较低的能级发生并解释了团簇的变形,这只能通过以下方式实现这些Cu-Cu变形。此外,我们发现,淬灭后,由于铜核/壳-铜壳键的缩短,ICO的平均原子距离正在减小,从而导致相应态向较低能的移动。有趣的是,结果表明这些能量的温度依赖性是线性的,在熔化和玻璃化转变点处表现出斜率变化。我们对拉应力下从Cu_(50)Zr_(50)MD构型中提取的ICOs进行了相同的分析,从中我们推导出了状态电子密度引起的变化。这些结果可能有助于理解Cu-Zr模型MG的键合特性以及调节机械变形的机制。

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