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Non-Isothermal Kinetic Analysis of the Crystallization of Metallic Glasses Using the Master Curve Method

机译:用主曲线法对金属玻璃的结晶进行非等温动力学分析

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摘要

The non-isothermal transformation rate curves of metallic glasses are analyzed with the Master Curve method grounded in the Kolmogorov-Johnson-Mehl-Avrami theory. The method is applied to the study of two different metallic glasses determining the activation energy of the transformation and the experimental kinetic function that is analyzed using Avrami kinetics. The analysis of the crystallization of Cu47Ti33Zr11Ni8Si1 metallic glassy powders gives Ea = 3.8 eV, in good agreement with the calculation by other methods, and a transformation initiated by an accelerating nucleation and diffusion-controlled growth. The other studied alloy is a Nanoperm-type Fe77Nb7B15Cu1 metallic glass with a primary crystallization of bcc-Fe. An activation energy of Ea = 5.7 eV is obtained from the Master Curve analysis. It is shown that the use of Avrami kinetics is not able to explain the crystallization mechanisms in this alloy giving an Avrami exponent of n = 1.
机译:利用基于Kolmogorov-Johnson-Mehl-Avrami理论的Master Curve方法分析金属玻璃的非等温转变速率曲线。该方法用于研究两种不同的金属玻璃,以确定转化的活化能和使用Avrami动力学分析的实验动力学函数。 Cu47Ti33Zr11Ni8Si1金属玻璃态粉末的结晶分析得出Ea = 3.8 eV,与其他方法的计算结果非常吻合,并且由加速成核和扩散受控生长引发的转变。另一种研究的合金是具有bcc-Fe初晶的纳米铁型Fe77Nb7B15Cu1金属玻璃。从主曲线分析中可以得到Ea = 5.7 eV的活化能。结果表明,使用Avrami动力学无法解释给出n = 1的Avrami指数的这种合金的结晶机理。

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