Wang Jun, Yang Haoxue, Guo Tong, Wang Jiaxiang, Wang William Yi, Li Jinshan
State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072, China.
Entropy (Basel). 2018 Nov 30;20(12):917. doi: 10.3390/e20120917.
The solid state phase transformation kinetics of as-cast and cold rolling deformed AlCoCrFeNi high-entropy alloys have been investigated by the thermal expansion method. The phase transformed volume fractions are determined from the thermal expansion curve using the lever rule method, and the deformed sample exhibits a much higher transformation rate. Two kinetic parameters, activation energy () and kinetic exponent () are determined using Kissinger- Akahira-Sunose (KAS) and Johnson-Mehl-Avrami (JMA) method, respectively. Results show that a pre-deformed sample shows a much lower activation energy and higher kinetic exponent compared with the as-cast sample, which are interpreted based on the deformation induced defects that can promote the nucleation and growth process during phase transformation.
采用热膨胀法研究了铸态和冷轧变形AlCoCrFeNi高熵合金的固态相变动力学。利用杠杆定律法从热膨胀曲线确定相变体积分数,变形后的样品显示出更高的转变速率。分别使用基辛格-赤平-ose(KAS)法和约翰逊-梅尔-阿夫拉米(JMA)法确定了两个动力学参数,活化能()和动力学指数()。结果表明,与铸态样品相比,预变形样品的活化能更低,动力学指数更高,这是基于变形诱导缺陷来解释的,这些缺陷可以促进相变过程中的形核和生长过程。