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Crystallization kinetics of Zr_(55)Cu_(30)Al_(10)Ni_5 bulk amorphous alloy

机译:Zr_(55)Cu_(30)Al_(10)Ni_5大块非晶合金的结晶动力学

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摘要

The crystallization kinetics of Zr_(55)Cu_(30)Al_(10)Ni_5 bulk amorphous alloy was studied by differential scanning calorimetry in the mode of continuous heating and isothermal annealing. It is found that, in the case of continuous heating, both the glass transition temperature T_g and the crystallization peak temperature T_p display a strong dependence on the heating rate. The activation energy for glass transition and crystallization were determined by the Kissinger method, which yields E_g=894 kJ/mol and E_c=230 kJ/mol, respectively. On the other hand, the isothermal kinetics was modeled by the Johnson-Mehl-Avrami equation, the Avrami exponents were calculated to be in the range of 2.67 to 3.05. This implies that the crystallization of Zr_(55)Cu_(30)Al_(10)Ni_5 bulk amorphous alloy is governed by diffusion-controlled three-dimensional growth. On the basis of Arrhenius relation, the activation energy in the isothermal process was calculated to be E-c=245 kJ/mol. finally, details of the nucleation and growth behaviors during the isothermal crystallization are discussed in terms of local Avrami exponent and local activation energy.
机译:采用差示扫描量热法以连续加热和等温退火的方式研究了Zr_(55)Cu_(30)Al_(10)Ni_5块状非晶合金的结晶动力学。发现在连续加热的情况下,玻璃化转变温度T_g和结晶峰温度T_p都显示出对加热速率的强烈依赖性。通过基辛格方法确定玻璃化转变和结晶化的活化能,分别得到E_g = 894 kJ / mol和E_c = 230 kJ / mol。另一方面,等温动力学是通过Johnson-Mehl-Avrami方程建模的,Avrami指数的计算范围为2.67至3.05。这意味着Zr_(55)Cu_(30)Al_(10)Ni_5块状非晶态合金的结晶受扩散控制的三维生长的支配。根据Arrhenius关系,等温过程中的活化能计算为E-c = 245 kJ / mol。最后,根据局部Avrami指数和局部活化能讨论了等温结晶过程中成核和生长行为的细节。

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