首页> 外文期刊>Journal of Experimental and Theoretical Physics >Structural features and the microscopic dynamics of the three-component Zr47Cu46Al7 system: Equilibrium melt, supercooled melt, and amorphous alloy
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Structural features and the microscopic dynamics of the three-component Zr47Cu46Al7 system: Equilibrium melt, supercooled melt, and amorphous alloy

机译:三组分Zr47Cu46Al7系统的结构特征和微观动力学:平衡熔体,过冷熔体和非晶态合金

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The structural and dynamic properties of the three-component Zr47Cu46Al7 system are subjected to a molecular dynamics simulation in the temperature range T = 250-3000 K at a pressure p = 1.0 bar. The temperature dependences of the Wendt-Abraham parameter and the translation order parameter are used to determine the glass transition temperature in the Zr47Cu46Al7 system, which is found to be T (c) ae 750 K. It is found that the bulk amorphous Zr47Cu46Al7 alloy contains localized regions with an ordered atomic structures. Cluster analysis of configuration simulation data reveals the existence of quasi-icosahedral clusters in amorphous metallic Zr-Cu-Al alloys. The spectral densities of time radial distribution functions of the longitudinal (CI integral (L)(k, omega)) and transverse (CI integral (T) (k, omega)) fluxes are calculated in a wide wavenumber range in order to study the mechanisms of formation of atomic collective excitations in the Zr47Cu46Al7 system. It was found that a linear combination of three Gaussian functions is sufficient to reproduce the (CI integral (L) (k, omega)) spectra, whereas at least four Gaussian contributions are necessary to exactly describe the (CI integral (T) (k, omega)) spectra of the supercooled melt and the amorphous metallic alloy. It is shown that the collective atomic excitations in the equilibrium melt at T = 3000 K and in the amorphous metallic alloy at T = 250 K are characterized by two dispersion acoustic-like branches related with longitudinal and transverse polarizations.
机译:对三组分Zr47Cu46Al7系统的结构和动力学性质进行了分子动力学模拟,温度范围为T = 250-3000 K,压力p = 1.0 bar。使用Wendt-Abraham参数和转化顺序参数的温度依赖性来确定Zr47Cu46Al7系统的玻璃化转变温度,发现其为T(c)ae 750K。发现块状非晶Zr47Cu46Al7合金含有有序原子结构的局部区域。构型模拟数据的聚类分析揭示了非晶金属Zr-Cu-Al合金中存在准二十面体簇。在宽波数范围内计算纵向(CI积分(L)(k,ω))和横向(CI积分(T)(k,ω))通量的时间径向分布函数的谱密度,以便研究Zr47Cu46Al7系统中原子集体激发的形成机理。发现三个高斯函数的线性组合足以重现(CI积分(L)(k,Ω))谱,而至少四个高斯贡献对于精确描述(CI积分(T)(k ,omega))谱图,过冷的熔体和非晶态金属合金。结果表明,在T = 3000 K的平衡熔体中和在T = 250 K的非晶态金属合金中,集体原子激发的特征是两个与纵向和横向极化有关的色散声样分支。

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