Non-Isothermal Crystallization Kinetics of a Rapidly Solidified as-Cast TiZrHfNiCu High Entropy Bulk Metallic Glass

N. H. Nordin, Faizi Mohamad, N. A. Jamal
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引用次数: 5

Abstract

This paper aims to investigate the thermal behavior and crystallization kinetics of TiZrHfNiCu high entropy bulk metallic glass (HE-BMG) alloy using the standard procedure of Differential Scanning Calorimetric (DSC) annealing technique. The alloy was produced using an arc melting machine with a critical diameter of 1.5 mm. The crystallization kinetics and phase transformation mechanism of TiZrHfNiCu HE-BMG was investigated under the isochronal condition at a single heating run based on the Johnson-Mehl- Avrami (JMA) theory. In isochronal heating, the apparent activation energy for glass transition and crystallization events was analyzed by Kissinger and Ozawa methods. The average activation energy value for crystallization of TiZrHfNiCu amorphous alloys in isochronal modes was 226.41 kJ/mol for the first crystallization and 297.72 kJ/mol for second crystallization stages. The crystallization mechanism of the first step was dominated by two- and three-dimensional growth with increasing nucleation rate, while the crystallization mechanism in the second stage was dominated by two-dimensional crystallization growth with a constant nucleation rate. The diffusion mechanism result proved the theory of sluggish atomic diffusion of HEA at elevated temperature.
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快速凝固铸态TiZrHfNiCu高熵大块金属玻璃的非等温结晶动力学
采用差示扫描量热(DSC)退火技术研究了TiZrHfNiCu高熵大块金属玻璃(HE-BMG)合金的热行为和结晶动力学。该合金采用临界直径为1.5 mm的电弧熔炼机生产。基于Johnson-Mehl- Avrami (JMA)理论,研究了TiZrHfNiCu HE-BMG在单次加热等时条件下的结晶动力学和相变机理。在等时加热条件下,用Kissinger和Ozawa方法分析了玻璃化转变和结晶事件的表观活化能。在等时模式下,TiZrHfNiCu非晶合金第一次结晶的平均活化能为226.41 kJ/mol,第二次结晶阶段为297.72 kJ/mol。第一步结晶机制以增大成核速率的二维和三维生长为主,第二阶段结晶机制以恒定成核速率的二维结晶生长为主。其扩散机理证明了HEA在高温下原子缓慢扩散的理论。
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