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首页> 外文期刊>Journal of thermal analysis and calorimetry >Nucleation and growth of nano-crystallites in a new multicomponent Fe-based BMG during the partial crystallization process
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Nucleation and growth of nano-crystallites in a new multicomponent Fe-based BMG during the partial crystallization process

机译:在部分结晶过程中,在新的多组分Fe基BMG中成核和生长纳米微晶

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摘要

In this study, the non-isothermal kinetic of nucleation and growth of nano-crystallites in [(Fe0.9Ni0.1)(77)Mo5P9C7.5B1.5](100-0.1)Cu-0.1 (at %) BMG was systematically investigated. The crystallization process in the BMG occurred in four stages. The KAS, Augis-Bennett, and Gao-Wang methods were used to determine activation energies of all four crystallization stages. Also, to investigate the mechanism of nucleation and growth phenomena, which occurred during the crystallization process, other kinetic parameters including n, K-p, and m were determined using Augis-Bennett, Gao-Wang, and Matusita methods. Also, the JMAK method, as an accurate isokinetic method, was used to confirm the results obtained by other methods. The research findings revealed that the growth mechanisms of all crystallization stages were controlled by the interface. Moreover, the values of n and b parameters were increased in the fourth crystallization stage; indicating an increase in nucleation rate in this stage.
机译:本研究系统地研究了[(Fe0.9Ni0.1)(77)Mo5P9C7.5B1.5](100-0.1)Cu-0.1(at%)BMG中纳米晶粒的非等温成核和生长动力学。BMG的结晶过程分为四个阶段。KAS、Augis Bennett和Gao Wang方法用于测定所有四个结晶阶段的活化能。此外,为了研究结晶过程中发生的成核和生长现象的机理,使用Augis Bennett、Gao Wang和Matusita方法测定了其他动力学参数,包括n、K-p和m。此外,作为一种精确的等速法,JMAK法也被用于确认其他方法获得的结果。研究结果表明,所有结晶阶段的生长机制均受界面控制。此外,在第四结晶阶段,n和b参数值增加;表明在这一阶段成核率增加。

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